TJ-583-02A_Davit Rescue Boat.pdf

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MO FY27 Thomas Jefferson Drydock REFERENCES and ATTACHMENTS Federal contract opportunity
Solicitation number
1305M226Q0100REF
Issued by
Department of Commerce National Oceanic and Atmospheric Administration

About this file

This is a technical manual for the Allied Systems Company DC-8600CTS Boat Davit (Model 80-1286, Revision 5-2019), a rescue boat launching and recovery system designed for rigid hull inflatable boats (RHIBs) in heavy seas.

The davit system has a rated safe working load of 8,600 pounds (3,900 kg) and operates up to Sea State 5 with wire rope hoisting capability of approximately 80 feet on a 5/8-inch diameter Endurance Dyform rope with 56,400-pound breaking strength. The system is powered by a 75 horsepower 460VAC 3-phase 60Hz electric motor driving a pressure-compensated axial piston pump that delivers 47 gallons per minute at 3,000 psi, supported by a 125-gallon hydraulic tank. The constant tension winch includes a load motor, constant tension motor, planetary gear reducer, spring-applied/hydraulically-released friction brakes, and spooling capacity of 112 feet. Key operational features include an emergency launch system using charged accumulators, SOLAS (Safety of Life At Sea) emergency launching capability with deck-mounted control handles, anti-2-block protection to prevent hook-to-sheave contact, wire rope tension control, and remote operator console with joystick controls for boom launch/retract and winch up/down functions. The manual provides comprehensive sections on installation, operation, preventive and corrective maintenance schedules (ranging from daily to every 5-8 years), troubleshooting, spare parts lists, and warranty coverage limited to 12 months from service or 18 months from factory shipment, excluding components not manufactured by Allied Systems Company.

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Text version

80-1286Rev: 5-2019

TECHNICAL MANUAL

BOAT DAVIT

MODEL DC-8600CTS

S/N 2394

Please check the Allied Systems website regularly for updates to the technical manual.

Important: Be certain to specify the serial number of your crane or davit when ordering parts.

MANUFACTURED BY

21433 S.W. OREGON ST., SHERWOOD 97140, OR U.S.A.

PHONE: 503.625.2560 • FAX: 503.625.7980

E-MAIL: cranes@alliedsystems.com WEBSITE: http://www.alliedsystems.com

Marine Crane

80-1286 Rev: 5-2019

INTENTIONALLY LEFT BLANK

0-1 80-1286Rev: 5-2019 hapter Front atter Table of Contents......................................................0-1 Abbreviations and Acronyms....................................0-4 Safety Summary.......................................................0-5 hapter Introduction

1.1 SAFETY PRECAUTIONS...............................1-1

1.2 INTRODUCTION ............................................1-1

1.2.1 Scope ..........................................................1-1

1.2.2 Applicability..................................................1-1

1.3 DAVIT DESCRIPTION ....................................1-1

1.3.1 Davit Installation ..........................................1-1

1.3.2 Hydraulic Power Unit ...................................1-1

1.3.3 Remote Control Console .............................1-2

1.3.4 Constant Tension Winch ..............................1-2

1.3.5 Hydraulic System.........................................1-2

1.3.5.1 Control Valve.............................................1-2

1.3.5.2 Pivot System.............................................1-2

1.3.5.3 Winch System...........................................1-2

1.3.5.4 Emergency System (SOLAS) ...................1-2

1.3.6 Electrical System........................................1-2

1.3.6.1 Electric Motor...........................................1-2

1.4 REFERENCE DATA ........................................1-3

1.5 WARRANTY ...................................................1-8

hapter Preparation for se

2.1 UNPACKING...................................................2-1

2.2 INSPECTION..................................................2-1

2.3 MAJOR COMPONENTS ................................2-1

hapter Installation

3.1 GENERAL.......................................................3-1

3.2 INSTALLATION ...............................................3-1

3.2.1 Davit Installation ..........................................3-1

3.3 PREPARATION FOR OPERATION.................3-2

3.4 PREPARATION FOR RESHIPMENT..............3-2

hapter Principles of Operation

4.1 INTRODUCTION ............................................4-1

4.2 MECHANICAL SYSTEM ................................4-1

4.2.1 Davit ............................................................4-1

4.2.2 Winch...........................................................4-2

4.2.3 Control Console...........................................4-2

4.3 HYDRAULIC SYSTEM ...................................4-3

4.3.1 Hydraulic Power Unit ...................................4-3

4.3.1.1 Axial Piston Pump ....................................4-4

4.3.1.2 Pressure Compensator.............................4-5

4.3.2 Control Valve................................................4-6

4.3.3 Pivot System................................................4-7

4.3.4 Winch System..............................................4-7

4.3.5 Emergency Launch System.........................4-9

4.3.6 SOLAS Emergency Launching System.......4-9

4.4 ELECTRICAL SYSTEM..................................4-9

4.4.1 Wire Rope Tension Control..........................4-9

4.4.2 Anti-2-Block Control.....................................4-9 hapter Operation

5.1 INTRODUCTION ............................................5-1

5.2 OPERATING CREW .......................................5-1

5.3 INSTRUMENTS AND CONTROLS ................5-1

5.3.1 Control Console...........................................5-1

5.3.2 HPU (Hydraulic Power Unit) ........................5-3

5.4 OPERATING THE DAVIT................................5-3

5.4.1 Pre-Operational Test....................................5-3

5.4.2 Initial Operational Test .................................5-4

5.4.3 Launching Operation ...................................5-4

5.4.4 Recovery Operation.....................................5-6

5.4.5 Emergency Operation..................................5-7

5.4.5.1 Emergency Control Valve Controls ...........5-7

5.4.5.2 SOLAS Launch Operation from Deck.......5-8

5.4.5.3 SOLAS Emergency Launching Op. .........5-8

5.4.5.4 Winch Emerg. Recovery Hand Crank .....5-10

5.5 HAND SIGNALS ...........................................5-10

hapter Pre enti e aintenance

6.1 INTRODUCTION ............................................6-1

6.2 LUBRICATION SPECIFICATIONS..................6-1

6.3 PREVENTIVE MAINTENANCE......................6-1

6.4 HYDRAULIC OIL MAINTENANCE .................6-2

6.4.1 Storage and Handling..................................6-2

6.4.2 In-Operation Care........................................6-2

6.5 SCHEDULED MAINTENANCE ......................6-2

6.5.1 Daily or Every 10 Hours...............................6-4

6.5.1.1 Inspect Fasteners .....................................6-4

6.5.1.2 Inspect Hydraulic Hoses, Tubes, etc.........6-4

6.5.1.3 Inspect Winch Drum .................................6-4

6.5.1.4 Check Hydraulic Oil Level.........................6-4

6.5.1.5 Inspect Anti-2-Block..................................6-5

6.5.2 Weekly or Every 50 Hours...........................6-5

6.5.2.1 Wash with Fresh Water .............................6-5

6.5.3 Monthly or Every 200 Hours ........................6-5

6.5.3.1 Wash with Fresh Water/Detergent ............6-5

6.5.3.2 Inspect And Lubricate Wire Rope.............6-5

6.5.3.3 Inspect SOLAS Ropes............................6-10

6.5.3.4 Inspect Lifting Eye ..................................6-10

6.5.3.5 Inspect Hydraulic Cylinders ....................6-10

6.5.3.6 Inspect Davit Structure ...........................6-11

6.5.3.7 Check Accumulator Precharge...............6-11

6.5.3.8 Clean Hydraulic Tank Breather ...............6-11

6.5.3.9 Inspect Electrical Boxes..........................6-11

6.5.3.10 Check Winch Housing Oil Level..............6-11

Marine Crane Chapter 0 Table of ontents

0-280-1286 Rev: 5-2019

6.5.4 Every 3 Months or Every 500 Hours..........6-12

6.5.4.1 Replace Hydraulic Return Filter..............6-12

6.5.4.2 Lubricate Electric Motor..........................6-12

6.5.5 Every 6 Months or Every 1000 Hours........6-13

6.5.5.1 Check Bolts and Fasteners.....................6-13

6.5.6 Annually or Every 2000 Hours...................6-13

6.5.6.1 Obtain Oil Samples for Analysis .............6-13

6.5.6.2 Change Winch Assembly Oils ................6-13

6.5.6.2.1 Change Winch Brake Oil .....................6-13

6.5.6.2.2 Change Winch Gear Reducer Oil ........6-13

6.5.6.3 Inspect Sheave.......................................6-14

6.5.6.4 Change Hydraulic System Oil.................6-16

6.5.7 Every 5 to 8 Years or As Required.............6-17

6.5.7.1 Replace Hydraulic Hoses .......................6-17

6.6 MAINTENANCE RECORDS.........................6-17

hapter orrecti e aintenance

7.1 INTRODUCTION ............................................7-1

7.1.1 Maintenance Practices ................................7-1

7.2 ADJUSTMENTS .............................................7-2

7.2.1 Main System Relief Pressure ......................7-2

7.2.2 CT Winch Pressure Adjustments.................7-3

7.2.3 Anti-2-Block Control Adjustment..................7-4

7.2.4 Wire Rope Tension Sensor Adjustment .......7-4

7.3 REPAIRS .......................................................7-5

7.3.1 CT Winch.....................................................7-5

7.3.1.1 Removal....................................................7-5

7.3.1.2 Constant Tension Motor Replacement......7-6

7.3.1.3 Load Motor Replacement .........................7-6

7.3.1.4 Winch Brake Replacement .......................7-7

7.3.1.5 Winch Brake .............................................7-8

7.3.1.5.1 Disassembly ..........................................7-8

7.3.1.5.2 Assembly ...............................................7-9

7.3.1.6 Winch Gear Reducer ..............................7-10

7.3.1.7 Winch Installation....................................7-10

7.3.1.8 Wire Rope Installation.............................7-11

7.3.2 Lift Cylinder................................................7-12

7.3.2.1 Cylinder Removal ...................................7-12

7.3.2.2 Cylinder Disassembly .............................7-13

7.3.2.3 Replace Cylinder Seals ..........................7-15

7.3.2.4 Reassemble Cylinder .............................7-15

7.3.3 Control Valve..............................................7-17

7.3.3.1 Remove Control Valve ............................7-17

7.3.3.2 Disassemble Control Valve .....................7-17

7.3.3.3 Reassemble Control Valve......................7-17

7.3.3.4 Install Control Valve ................................7-18

7.3.4 Accumulator...............................................7-19

7.3.4.1 Precharging The Accumulator ................7-19

7.3.4.2 Checking the Precharge .........................7-19

7.3.4.3 Precharging ............................................7-19 hapter Storage

8.1 SHORT TERM STORAGE..............................8-1

8.2 LONG TERM STORAGE ................................8-1

hapter Troubleshooting

9.1 INTRODUCTION ............................................9-1

9.1.1 Safety ..........................................................9-1

9.1.2 Problem Area Isolation ................................9-1

9.2 PRELIMINARY TROUBLESHOOTING...........9-1

9.2.1 Pump Test....................................................9-1

9.2.2 Control Valve Test ........................................9-1

9.2.3 Winch System Test ......................................9-1

9.3 FAULT DETECTION........................................9-2

9.3.1 Probable Mechanical Causes......................9-2

9.3.2 Probable Hydraulic Causes .........................9-2

9.3.3 Probable Electrical Causes .........................9-2 hapter Parts Lists

10.1 INTRODUCTION ..........................................10-1

10.1.1 Major Subassemblies ................................10-1

10.1.2 Special Notes ............................................10-1

10.2 FORMAT .......................................................10-1

10.2.1 Item............................................................10-1

10.2.2 Notes .........................................................10-1

10.2.3 ASC P/N ....................................................10-1

10.2.4 Qty .............................................................10-1

10.2.5 Description.................................................10-1

10.2.6 Illustrations ................................................10-1

10.3 SPARE PARTS LIST .....................................10-2

Table 10-1 DC8600CTS..................................... 10-5 Table 10-2 Boom Assembly ............................... 10-7 Table 10-3 Boom Weldment............................... 10-8 Table 10-4 Sheave Case Assembly ................... 10-9 Table 10-5 Bracket Assembly .......................... 10-10 Table 10-6 Cylinder Assembly ......................... 10-13 Table 10-7 Power Pack Assembly.................... 10-16 Table 10-8 Motor/Pump Assembly................... 10-17 Table 10-9 Starter Assembly ........................... 10-19 Table 10-10 Accumulator Assembly .................. 10-20 Table 10-11 Filter Assembly .............................. 10-21 Table 10-12 Reeving Arrangement .................... 10-23 Table 10-13 Winch Complete............................. 10-24 Table 10-14 Manifold Installation ....................... 10-28 Table 10-15 Manifold Assembly ......................... 10-31 Table 10-16 Valve Shield Assembly................... 10-32 Table 10-17 Constant Tension Winch................. 10-33 Table 10-18 Winch Brake................................... 10-35 Table 10-19 Winch Lockout Assembly ............... 10-36 Table 10-20 Haul Ball......................................... 10-37 Table 10-21 Remote Console Assembly............ 10-39 Table 10-22 Control Box Assembly.................... 10-42 Table 10-23 Inlet & Return System.................... 10-47 Table 10-24 Control Valve.................................. 10-48

0-3 80-1286Rev: 5-2019

Table 10-25 Ball Valve Assembly ....................... 10-49 Table 10-26 Pivot System .................................. 10-51 Table 10-27 Manifold Assembly ......................... 10-52 Table 10-28 Winch System................................ 10-55 Table 10-29 Electrical System ........................... 10-58 Table 10-30 Anti-2-Block Assembly ................... 10-60 Table 10-31 A-2-B Switch Assembly.................. 10-61 Table 10-32 Weight Assembly ........................... 10-62 Table 10-33 Tension Switch Assembly .............. 10-63 Table 10-34 Junction Box Assembly .................. 10-64 Table 10-35 Power Box Assembly ..................... 10-65 Table 10-36 Downstop Assembly ...................... 10-66 Table 10-37 Davit Assembly .............................. 10-67 Table 10-38 SOLAS Controls Installation .......... 10-71 Table 10-39 Decal Installation............................ 10-73 Table 10-40 Cradle Installation .......................... 10-77 Table 10-41 Pad Assembly, Stern...................... 10-78 Table 10-42 Pad Assembly, Stern...................... 10-79 Table 10-43 Pad Assembly, Bow........................ 10-80 Table 10-44 Stop Assembly, RH ........................ 10-81 Table 10-45 Stop Assembly, LH......................... 10-82 Table 10-47 Spare Parts List ............................. 10-83

APPEN I A odel ri e

APPEN I B Oilgear Pump

APPEN I arathon otor

0-480-1286 Rev: 5-2019

ABS ................................ American Bureau of Shipping Adj ...............................................................Adjustment amp................................................................... Ampere API...................................American Petroleum Institute APL................................................Allowance Parts List A/R............................................................. As Required ASC .......................................Allied Systems Company Aux .................................................................. Auxiliary AWG ...........................................American Wire Gauge bar ................................... 14.5 pounds per square inch Brg.................................................................... Bearing C.................................................... Celsius (centigrade) CAGE ...................Commercial And Government Entity CFR ................................. Code of Federal Regulations cid ............................................cubic inch displacement CNTRL............................................................... Control CT...................................................... Constant Tension CTRL ................................................................. Control DIN ..................................Deutsche International Norm EIPS ................................ Extra Improved Plough Steel Elec................................................................. Electrical Ext ....................................................................External F ...................................................................Fahrenheit fpm......................................................... feet per minute FSCM ............. Federal Supply Code for Manufacturers gal........................................................................Gallon Galv ............................................................. Galvanized Gnd....................................................................Ground gpm..................................................Gallons Per Minute hp................................................................Horsepower HPU..............................................Hydraulic Power Unit Hyd .................................................................Hydraulic Hz .........................................Hertz (cycles per second) ID..........................................................Inside Diameter IEEE .....Institute of Electrical and Electronic Engineers ISO ..................... International Standards Organization IWRC.............................. Independent Wire Rope Core kPa ................................................................ kilopascal kw ..................................................................... Kilowatt lb..........................................................................pound lbs...................................................................... pounds LH.................................................................. Left Hand lpm......................................................Liters Per Minute LT.............................................................................Left

Max................................................................ Maximum m...........................................................................meter micron...................................................0.001 millimeter Min.................................................................. Minimum N.C...................................................... Normally Closed N.O.........................................................Normally Open NATO ....................... North Atlantic Treaty Organization NC ....................................................... National Coarse NEMA ... National Electrical Manufacturer’s Association NF.............................................................National Fine NLGI ....................National Lubrication Grease Institute N-m......................................................... Newton-meter Nom..................................................................Nominal NPTF .............................National Pipe Tapered for Fuel NSS ........................................ Not Serviced Separately NSTM .............................. Naval Ship Technical Manual OD .....................................................Outside Diameter PC.............................................Pressure Compensator Pl ...........................................................................Plate P/N.............................................................Part Number POS.................................................................. Position Pot ...........................................................Potentiometer psi ............................................ pounds per square inch PVB .................................................Pump Side Module PVE .................................. Proportional Valve Electrical Qty ....................................................................Quantity Ref ................................................................ Reference RH ...............................................................Right Hand rpm ........................................... Revolutions Per Minute RT..........................................................................Right SAE ........................... Society of Automotive Engineers SOL .................................................................Solenoid SOLAS..........................................Safety Of Life At Sea Spec ..........................................................Specification SS.......................................................... Stainless Steel SW...................................................................... Switch TEFC .............................. Totally Enclosed, Fan-Cooled Thk........................................................................ Thick TMCR ............ Technical Manual Contract Requirement TYP.....................................................................Typical v...............................................................................Volt vac ..........................................Volts Alternating Current vdc..................................................Volts Direct Current VOM .....................................................Volt-Ohm Meter

Abbre iations and Acronyms

0-5 80-1286Rev: 5-2019

Safety Summary

ENE AL SAFETY NOTI ES

The following pages contain general safety warnings which supplement specific warning and cautions ap-pearing elsewhere in this manual. All electrical and hydraulic equipment is dangerous. You must thorough-ly review and understand the Safety Summary before attempting to operate, troubleshoot or service your equipment.

All possible safety hazards cannot be foreseen so as to be included in this manual. Therefore, you must al-ways be alert to potential hazards that could endanger personnel and/or damage the equipment.

The following symbols/terms are used to emphasize safety precautions and notices in this manual:

AN ER

The AN E symbol indicates a ha ardous situation which if not a oided will result in death or serious in ury. arefully read the mes sage that follows to pre ent serious in ury or death.

ARNIN

The A NIN symbol appears where er incorrect operating procedures or practices could cause serious in ury or death. arefully read the message that follows to pre ent seri ous in ury or death.

A TION

The A TION symbol appears where a ha ardous situation which if not a oided could result in minor to moderate in ury and e uip ment damage.

NOTICE

This signal word alerts to a situation that is not related to personal injury but may cause equip-ment damage.

NOTE The term NOTE highlights operating pro cedures or practices that may impro e e uipment reliability and or personnel performance.

Obey the following cautions and warnings before using your machine to a oid e uipment damage personal in ury or death.

OPE ATIN SAFETY

uali cations

• This equipment must be operated and maintained by experienced and trained personnel.

• You must receive training prior to operating this equipment.

• If you do not routinely operate this equipment, refresher training is recommended. You must reac-quaint yourself with this manual and the equipment before starting, and then proceed slowly.

o Not Operate Alone

• It is essential that someone be on deck to watch clearances and hand signals. Ensure that the director is clear of the Davit or other moving parts and the load before you move it. Do not move the Davit or load if you cannot see this person.

Safety egulations

• Each country has its own safety legislation. It is in the operator’s own interest to be conversant with these regulations and to comply with them in full.

This also applies to local bylaws and regulations in force on a particular worksite.

• Should the recommendations in this manual devi-ate from those in the user’s country, the national regulations should be followed.

0-680-1286 Rev: 5-2019

E uipment a ards

• Do not operate this equipment if you know of mal-functions, missing parts, and/or incorrect adjust-ments. Any one of these situations can cause or contribute to an accident or damage to the equip-ment. Lower the load and stop the HPU immedi-ately if problems arise after starting.

• Do not start the hydraulic power unit if the “start” switch has been tagged-out with a “DO NOT START” or other red tag.

• Never allow anyone under the load. Ensure the area is clear before moving the Davit or the load.

• Never attempt to disconnect any of the safety devices installed on your equipment.

• When moving the load, always make sure that there is adequate clearance for both the boom and the load.

• Do not overload the Davit. Always operate within the rated capacity of the Davit and rigging. Refer to the load chart for this Davit’s lifting capacity.

• Always wear appropriate safety clothing and use prescribed safety equipment such as head, foot, hand, eye protection, etc.

• Accurately place the load, keeping in mind how you expect the load to respond when released.

• Lower and remove the load before leaving the Davit or securing the hydraulic power.

• Maintain proper clearance from electrically ener-gized equipment. If the Davit contacts energized equipment, stay clear and prevent anyone else from coming in contact with the Davit.

AINTENAN E SAFETY

Unless properly serviced, this Davit can be extremely dangerous.

uali cations

• To ensure safety, each person working on this Davit must have the necessary skills, informa-tion, tools and equipment. Do not attempt to make adjustments or perform repairs unless you are authorized and qualified to do so.

o Not ork Alone

• Never attempt to service energized equipment alone. Make sure that someone capable of provid-ing aid is present in the event of accidental shock or other incidents.

Secure the E uipment

• Do not rely on the hydraulic system to support any part of the Davit during maintenance or lubrication.

Never stand under a component that is supported only by the hydraulic system. Make sure that components are resting on their mechanical stops or supported with appropriate safety stands during maintenance or lubrication.

• Unless otherwise directed in this manual, never attempt service procedures when power is on. Tag the “START” switch and/or the disconnect switch with a “DO NOT START” sign when required.

• Never attempt to service the hydraulic power sys-tem or the Davit while it is moving or the hydraulic power unit is running. Lower the load and secure the power.

0-7 80-1286Rev: 5-2019

E uipment Safety

• Test Equipment:

» Make sure that the equipment used to test the hydraulic power system and the Davit is calibrated and in good working condition.

» If an instrument must be held while taking measurements, electrically ground the case of the instrument before energizing the equip-ment when appropriate. There are some kinds of measuring devices that should not be grounded.

» Do not hold ungrounded measurement de-vices while they are in use.

» Do not touch energized equipment or person-nel working on energized equipment while holding a multimeter.

• Heavy Equipment:

» Use lifting devices with a lifting capacity greater than twice the weight of any objects to be lifted to prevent personal injury or equip-ment damage.

• Pressurized Equipment:

» Wear safety goggles when working on or near pressurized equipment.

» Lower all loads and relieve all hydraulic pres-sure before disconnecting hydraulic lines. If this is not done the load could fall or pressur-ized hydraulic oil could cause personal injury or death. Never try to stop a hydraulic leak with any part of your body.

• Personal Protective Equipment:

» Always use personal protective equipment

(PPE) appropriate to the situation. This may include the use of hearing protection, eye pro-tection, a respirator, a hard hat, leather gloves, steel toed boots, etc.

Electrical a ards

• An electrical shock could be fatal. Be aware that the hydrau-lic power unit (HPU) is typi-cally driven by a 440 or 450 vac, 3-phase, 60Hz motor. Make sure that the power is “OFF” before opening electrical panels.

• Never attempt electrical test-ing or repair while standing in water.

• Remove watch-es, rings or any jewelry that may contact ener-gized circuits.

ot Oil a ards

• Burns from hot oil can be severe. Always allow lubricating and hydraulic oil to cool before draining or disconnecting hydraulic fittings and hoses.

Fire a ards

• Hydraulic oil is flammable.

Do not smoke when check-ing or filling the tank. Keep open flames and sparks away from the hydrau-lic power system and the Davit.

• Regular pres-sure washing is recommended for fire prevention and improves general safety by removing oil, and dirt.

• Never overfill the hydraulic tank because the over-flow could contribute to a fire. Immediately repair any hydraulic leaks and clean up any spills.

0-880-1286 Rev: 5-2019 ompressed Air a ards

• When using compressed air to dry parts, pressure should not exceed 30 psi (200kPa).

• Air pressure penetrating your skin can be fatal.

Never direct compressed air at anyone.

Pressuri ed ydraulics a ards

• Be aware of the hazards related to pressurized hydraulics:

» Wear personal protective equipment, such as gloves and safety glasses, whenever servicing or checking a hydraulic system.

» Assume that all hydraulic hoses and com-ponents are pressurized. Relive all hydraulic pressure before disconnecting any hydraulic line.

» Never try to stop or check for a hydraulic leak with any part of your body. Use a piece of cardboard to check for hydraulic leaks.

» Small hydraulic hose leaks are extremely dan-gerous and can inject hydraulic oil under the skin, even through gloves.

» Infection and gangrene are possible when hydraulic oil penetrates the skin. See a doctor immediately to prevent loss of a limb or death.

Falling a ard

• Due to the height of some lubrication points, it is essential to personnel safety that approved ladders, personnel lifts and/or scaffolding is used while servicing the Davit. Always put the Davit in it’s parked position before attempting to perform repairs or service.

• Always use safety treads and handholds where provided.

The Davit can be dangerously slick whenever oily surfaces are exposed to rain or frost.

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Figure 1-1. Component Identification

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Marine Crane Chapter 1 Introduction

1.1 SAFETY PRE A TIONS

Warnings and cautions appearing throughout this technical manual are extremely important to personnel and equipment safety. Before attempting to operate, troubleshoot, or service this equipment, you must thor-oughly review and understand the Safety Summary that precedes this chapter.

1.2 INTRO TION

This manual has been prepared to assist person-nel operating and servicing the Rescure Boat Davit- DC8600CTS. Chapters 1 through 9 comprise the in-stallation, operating and servicing instructions. Chapter 10 contains parts lists for all components of the crane.

1.2.1 Scope

This manual provides instructions for personnel to ac-complish the following:

1. Install the davit.

2. Prepare, operate, and secure the crane.

3. Detect, isolate, and correct malfunctions.

4. Remove, repair or replace, and reinstall parts.

5. Perform scheduled maintenance.

Intermediate and depot level maintenance, specifically inspection, operability tests, fault isolation, and over-haul of items such as motors, brakes, and winches, will normally be accomplished at more extensive shop facilities.

1.2.2 Applicability

This manual is applicable to the Rescue Boat Davit

DC8600CTS, S/N 2394.

1. A IT ES RIPTION

See Figure 1-1. Model DC8600CTS davit was devel-oped for launching and retrieving rigid hull inflatable boats (RHIB’s) in heavy seas. Maintenance straps are provided to secure the boat in place when being stowed.

This davit is rated for a safe working load of 8,600 pounds (3900 kg) up to Sea State 5, and has the capability to raise and lower the hook approximately 80 feet (24.4 m) on a 5/8 inch diameter Endurance Dyform 34LR 3 wire rope, rated for nominal breaking strength of 56,400 pounds (25582 kg). Winch hoisting speed is a minimum of 72 feet per minute (fpm), 22 meters per minute (mpm) .

1. .1 avit Installation The davit weldments, the structural members which support the load, are constructed of high strength steel with continuous welds. The winch is mounted to the davit, and a hook rated for 8,600 lb. (3900 kg) is rigged for one-part reeving from the winch line, through a sheave. The davit’s base assembly is bolted to the deck.

1. .2 ydraulic Power nit See Figure 1-1. System pressure is supplied by a hydraulic power unit (HPU) including a motor driven, pressure compensated, axial piston, variable displace-ment pump and a 125 gallon (473 liter) tank. Oil return-ing to the tank passes through a 10 micron return filter.

Delivery is up to 47 gpm (178 lpm), maintained at 3000 psi (20684 kPa) by a pressure compensator on the pump.

Figure 1-2. Constant Tension Winch

Constant Tension Hydraulic MotorWire Rope

Anchor

Drum

Gear Reducer

Hydraulic Motor

Main Winch Brake

Spring Brake

Winch Frame

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1. . Remote ontrol onsole All controls required for operating the davit are located at the control console. System condition indicators are located here and are protected from the weather by a hinged cover when not in use.

1. . onstant Tension inch See Figure 1-2. A constant tension type winch is mounted to the davit assembly. The winch consists of a load hydraulic motor, constant tension hydraulic motor, planetary gear reducer, spring applied/ hydraulically released friction brakes, frame, cable drum and shaft.

A sprague clutch in the main winch brake allows the load to be lifted without brake drag.

1. .5 ydraulic System

1. .5.1 ontrol alve The control valve has three sections. The first (winch) section is a motor spool actuated by a control lever or proportional solenoid. The second (pivot) section has a three position cylinder spool actuated by a control lever or proportional solenoid. The third (constant ten-sion winch) section is a motor spool actuated by an electric solenoid.

1. .5.2 Pivot System The pivot system controls hydraulic power to pivot the davit. Hydraulic pressure from the control valve alters the pressure level within the hydraulic cylinder, causing it to shift. As it extends or contracts evening the pres-sure within, the davit pivots at the attachment points.

1. .5. inch System The winch system controls hydraulic power to the winch for normal hoisting and lowering. Hydraulic power is applied to a load hydraulic motor. A counter-balance valve hydraulically locks the winch and keeps the load from dropping. A spring applied hydraulic release brake acts as a parking brake.

1. .5. Emergency System SOLAS The emergency operating system is designed to allow limited use of the hydraulically controlled functions of the davit (pivot and lowering) in the event of a loss of power. The system consists of the four accumulators, the pressure gauge and associated plumbing. The accumulators are pressurized when hydraulic power is applied to the davit and remains pressurized until discharged by the accumulator valve. The emergency system can also be operated when the davit is under full power.

1. .6 Electrical System Both power distribution and control functions are served by the electrical system. The electrical system consists of a starter, wiring to the motor, a solenoid, a proximity sensor, and the constant tension electrical system constant tension electrical components, and constant tension proximity sensor.

1. .6.1 Electric otor The hydraulic pump is driven by a 75 hp 460 vac 3-phase, 60 Hz electric motor. This motor is energized by a solid state soft start system.

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Characteristics Description

Ratings: PERSONNEL RATED Safety Factor, Wire Rope 6:1 Load 8,600 lbs (3,900 kg) Hoist Speed 72 fpm nominal (Bare Drum Speed) Wire Rope 5/8" (1.6 cm) Dia

Test Weights:

Dynamic (110% of Rated Load) 9,460 lbs (4,290 kg) Static (150% of Rated Load) 12,900 lbs (5,851 kg)

Electrical Power Requirements: 440 vac, 3-phase, 60 Hz, 95 Amp

Hydraulic System:

Operating Pressure 3,000 psi (20,684 kPa) Relief Pressure 3,200 psi (22,063 kPa) Required Pump Output 47 gpm (177 lpm) Temperature Range 0° F to 180° F (-17° C to 82° C) Hydraulic Fluid Mobil DTE 13M

Hydraulic Power Unit:

Pump Axial Piston, Pressure Compensated, Variable Displacement Motor 75 hp, 460 vac, 3-phase, 60 Hz, 1800 rpm Return Filter In-Tank Type, 6 Micron Element Tank 125 Gallon (473 Liters) Capacity

Control Valve: 3-Section Lever/ Solenoid Actuated

Winch:

Maximum Rated Load 8,600 lbs (3,900 kg) Normal Hoisting Speed 72 fpm (22 meters per minute) Drum Speed 33.58 rpm Drum Capacity 112 feet (34 meters)

Environmental:

Atmospheric Davit and equipment will withstand frequent soaking by salt spray and ambient atmospheric conditions

Temperature Davit and equipment will operate within ambient temperature range of -40° to 120° F (-40° C to 49° C)

Humidity Davit and equipment will withstand effects of relative humidity ranging from 0 to 100% under operating and stowage conditions

Stability Davit can withstand horizontal force along longitudinal axis of at least 10% of rated load and function satisfactorily in Sea State 5

Table 1-1. Reference Data

1. REFEREN E ATA

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"Solas Pivot" (Back Corner Under Handle on Base)

"High Voltage" "Start" "Stop" (Decals on Starter Box)

"Allied

DC8600CTS"

(Both Sides of Boom)

"Allied

DC8600CTS"

(Both Sides of Boom)

"Hydraulic Oil" (Oil Reservoir)

"Warning-No Step"

(Oil Reservoir)

"Accumulator Drain"

(Oil Reservoir)

"Solas Winch" "Handle Reset (Left on Base)

"Warning:

Hands Off"

(Both Cradle Legs)

"Warning:

Hands Off" (Both Cradle Legs)

"Warning: High Voltage"

"Warning:

Hands Off"

"Hand Crank" (On PVC Tube)

SOLAS winch approval decal

SOLAS Structural Approval Number

Reeving Chart

Winch Serial Number Plate

"Warning:

Manual Handles"

Figure 1-3. Decal Location

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Model ........................................................ DC8600CTS Nomenclature ...............................................Boat Davit Rated Capacity ............................. 8,600 lbs (3,900 kg) Overturn Moment ................... 155,000 lb-ft (17512Nm) Davit Total Gross Weight ............... 9,000 lbs (4082 kg)

Rated Capacity ............................. 8,600 lbs (3,900 kg) Overturn Moment................... 155,000 lb-ft (17512Nm) Davit Total Gross WeightTT ............... 9,000 lbs (4082 kg)

Note: apacities shown in this manual make no allowances for such factors as freely suspended loads operating speeds or weights of any accessories.

Figure 1-4. Dimensional Data

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146.29 in (371.6 cm)

REMOTE

OPERATOR'S

CONSOLE

ED

G

E O

F H

U

LL

108.13 in (274.65 cm)

5/8 DIA WIRE ROPE

INTEGRATED

BOATCRADLE

107.26 in (272.4 cm)

HYDRAULIC

CONTROL VALVE

196.63 in (499.4 cm)

Allied CT10 Winch with SOLAS Capability

8600 (3,900 kg) Rated load

Figure 1-5. Dimensional Data

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172.88 in (439.12 cm)

44.52 in (113 cm)

188.53 in (478.87 cm)

54°

85°

Approximate Travel Path

Approximately 100”

Davit Range of Motion

Cylinder Extends from 70” to 116”

(177.8cm to 294.6cm)

Figure 1-6. Davit Range of Motion

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ARRANTY

ALLIED SYSTEMS COMPANY, referred to as the Company, warrants its products to be free from defects in material and workmanship under normal use in service for a period of twelve (12) months after being placed in service by dealer or user, or within eighteen (18) months from shipment from factory, whichever occurs first. Within the warranty period, the Company will replace, E W Sherwood, Oregon, or allow credit at the current dealer net price, any part that shall be proved defective, to the satisfaction of the Company. Upon the Company s request, all parts claimed defective must be properly identified and returned to the factory, freight prepaid. This policy makes no allowance for freight, travel expense or labor. ALLIED SYSTEMS COMPANY will honor properly documented and described warranty claims only on units for which a completed Warranty Validation form is in the Company s possession at the time when such claim is filed.

This Warranty is expressly in lieu of any other warranties, expressed or implied, including any implied warranty of merchantability or fitness for a specific purpose, and of any other obligations or liabilities on the part of ALLIED SYSTEMS COMPANY. No person, agent, distributor, or dealer is authorized to assume, for or on behalf of the Company any different or additional obligations in connection with the product. The Company s liability under this Warranty is limited to treatment of parts as set forth in the above paragraph. All other liabilities expressed or implied, arising under statute, through neglect or otherwise, including any warranty or merchantability or fitness for a particular purpose are hereby expressly waived.

This Warranty covers only new equipment in the possession of its original owner, which after shipment from the factory has not been modified, manufactured upon, altered, fitted with parts other than those specified in the parts book, or improperly repaired in any manner whatsoever, without the written consent of the Company. This Warranty is restricted to use within the specified performance rating or capacity in effect at time of sale of the equipment and excludes equipment which has been abused, misused, or operated under conditions other than those specified by

ALLIED SYSTEMS COMPANY.

Hydraulic and electrical components, engines, batteries, tools and similar equipment not manufactured by ALLIED SYSTEMS COMPANY, are covered only by the standard Warranty of the manufacturers of such equipment. Such items are not warranted by ALLIED SYSTEMS

COMPANY.

79-10B 2 October 2017

1.5 ARRANTY

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Marine Crane Chapter 2 Preparation for se

2.1 NPA KIN

Immediately upon receiving the DC8600CTS davit, the components should be unpacked, and an inventory taken. See Figure 2-1 and Figure 2-2 for a list of items that should be included. Report any missing items to Allied Systems Company (503.625.2560) immediately.

2.2 INSPE TION

Upon delivery of the system, inspect the shipment for lost items and any damage that may have occurred during transit. Refer to the shipping diagram and pack-ing slip for a list of items included in the shipment. If there is a package or crate that appears damaged, unpack the equipment for further inspection.

Some examples of damage:

• Scratched or scuffed paint

• Dents or cracks

• Broken or bent hydraulic tubes

• Leaking hydraulic components

• Corrosion It is the responsibility of the person receiving the ship-ment to inspect all shipments for visible and/or con-cealed loss or damage at the time of receipt. Any and all loss or damage must be properly documented and reported to the carrier within the time limits and in the form and format required by the carrier, the tariff, or any related insurance or transportation regulation.

Documentation of visible loss or damage and/or short-ages are to be clearly noted on the freight bill and appropriately signed by representatives of the carrier and the customer/receiver BEFORE ALLOWING THE

DRIVER TO LEAVE YOUR DOCK.

Appropriate documentation of concealed loss or damage shall include, but not limited to, photographs showing evidence of loss or damage, evidence of the carrier’s subsequent inspection and findings and where appropriate, copies of the customer’s formal claim made on the carrier. The carrier may also insist that the original packaging (carton, pallet, box, crate, etc.) be saved for their inspection.

Allied Systems Company assumes no responsibility for any loss or damage, which has not been appropriately documented and reported.

Report any damage or claims to Allied Systems Com-pany Traffic Department immediately at: 503.625.2560.

2. A OR O PONENTS

The major components (as shipped) of the davit are illustrated in Figure 2-1 and Figure 2-2.

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Figure 2-1. DC 6 CT - ro lbs

Figure 2-2. Remote Console - ro 1 lbs

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Marine Crane Chapter 3 Installation

.1 ENERAL

This chapter is provided to assure a smooth and sat-isfactory installation of the Rescue Boat Davit, model

DC8600CTS, S/N 2394.

1. Have a crane available that will safely lift the davit assembly including winch and electric motor and the hydraulic power unit (9,000 lbs).

2. When installing the davit, check for adequate pivoting clearance between the davit and the ship’s structures or any other deck mounted equipment.

.2 INSTALLATION

.2.1 avit Installation Figure 3-1.

1. Remove all access covers from the davit and console.

2. Lift the davit over the mounting flange so that the base assembly attachment points will be centered over the deck attachment points.

3. Position the davit so that all attachment points are in the correct position with the deck. Install (22) 3/4” Grade 8 capscrews, (22) 3/4” Esna Nuts, (22) 3/4” flat washers and (22) 3/4” lock washers under each capscrew and tighten as indicated in Figure 3-1. If welding to deck, critical weld zones are the 1/2” material regions around the bolt holes.

4. Connect the shipboard powerline (440v, 3 phase) to the starter box on the HPU (See Figure 10-8).

5. Mount the remote control console in it’s respective position. Clearance along the deck must be made for the electrical line between the remote control console to the davit.

6. Connect the electrical line from the hydraulic pow-er unit to the control console. Verify connections as shown the Figure 4-13, Electrical Schematic, and Figure 10-28, Electrical System.

7. Fill the hydraulic tank with approximately 125 gal-lons of clean hydraulic fluid. Check the sight gauge on the tank for correct level Do not overfill.

Figure 3-1. Davit nstallation

DAVIT BASE

F

IG

-1

3/4” GR8 CAPSCREWS

CRITICAL WELD ZONES

AROUND THE 1 ” MATERIAL

BOLT HOLE REGIONS

or

/2

Torque 3/4" Grade 8 bolts to 340 ft-lb lubricated or 230 ft-lbs with anti-seize.

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8. To test if the motor is wired correctly, perform a “bump test”. Remove the access cover on the pump/motor adapter to observe the coupler be-tween the motor and the pump. Very briefly apply voltage to the motor while observing the rotation of the coupler. It must be as indicated by the red arrow. If the direction of rotation is opposite of what is indicated, a qualified electrician must rewire the motor to reverse direction.

. PREPARATION FOR OPERATION

1. Check all lines and fittings for security.

2. Start the hydraulic power unit by depressing and releasing the start button on the starter box. Allow the HPU to warm up, and purge any air from the system.

3. Inspect for hydraulic leaks, unusual sounds, vibra-tions, or other problems. Correct as required.

4. Perform preliminary checks described in Chapter 9, Troubleshooting.

5. Carefully operate the pivot control lever, and en-sure the davit stops at the correct points in its pivot arc.

NOTE: The winch should have at least 100 lbs 5 kg of weight on the hook to perform its functions.

If the winch does not stop at the correct point refer to hapter orrective aintenance.

6. Carefully operate the winch lever to ensure that the winch stops at the correct point. When hoisting, it should stop just before the lifting ring reaches the sheave.

. PREPARATION FOR RES IP ENT

To prepare the davit for reshipment, perform the follow-ing:

1. Remove the lifting ring. Wind the cable neatly onto the drum and secure the end of the cable to the drum.

2. Secure power to the hydraulic power unit.

3. Remove davit and console service covers. Close the console cover and secure with a nut and bolt.

4. Drain the hydraulic tank to prevent spills and cover the hydraulic tank breather to prevent contamina-tion of the system. Similarly drain the hydraulic power unit and console.

ARNIN

Ensure that the power to the e uipment is off before attempting to disconnect the cables. An electrical shock could be fatal.

5. Tag and disconnect hydraulic lines and electrical wiring between the davit, control console and HPU.

A TION

isconnected hydraulic lines must be covered to prevent hydraulic system contamination.

ake sure open ports on hydraulic compo-nents including hoses tubing and ttings are either capped or plugged during installation maintenance and repair procedures.

6. Support the davit with an overhead crane that can safely lift at least 9,000 lbs, and remove the davit base mounting bolts. Use care when the davit becomes free, in case it is not well balanced with the crane attachment being used. Move the davit to a safe location.

7. Long-term storage recommendations are listed in Chapter 8.

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PRIN IPLES OF OPERATION

.1 INTRO TION

The model DC8600CTS Davit provides the capability to launch or retrieve rigid hull inflatable boats (RHIB’s) in uneven seas.

The functions and capabilities of the davit are the result of several systems working together: Davit Winch Operator Controls Hydraulic System Electrical System and the Hydraulic Power Unit.

Figure 4-1. Com onent enti cation

Chapter 4

Hy

.2 E ANI AL SYSTE

.2.1 avit The davit is the structural member which supports the load, and the winch is mounted to the davit. A hook rat-ed for 8,600 lb (3,900 kg) is rigged for one-part reeving from the winch line, through a sheave at the end of the davit arm. The davit’s base assembly is bolted to the deck.

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Figure 4-2. CT Winch

Figure 4-3. Remote Control Console

.2.2 inch See Figure 4-2. The boom mounted winch consists of a main winch motor, planetary gear reducer, spring-applied/hydraulically released friction brakes, frame, wire rope drum, and constant tension motor.

Figure 4-2. CT Winch

Brake

Gear ReducerFrame

Wire Rope Drum

Main Winch Motor

Constant Tension Motor

.2. ontrol onsole See Figure 4-3. All instruments and controls are located in the control console which is mounted to the deck within 40 feet (12 meters) of the davit.

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. Y RA LI SYSTE

. .1 ydraulic Power nit P See Figures 4-4 and 4-5. The hydraulic power unit (HPU) provides hydraulic power for all davit functions.

The axial piston pump draws hydraulic oil from a 125 gallon (473 liter) reservoir and delivers 47 gpm (178 lpm) at 3000 psi (20.7 Mpa) to the control valve. Pres-sure compensated control ensures maximum flow until the preset pressure is reached, and then regulates discharge to maintain pressure in response to system demands.

Pump

125 Gallon (473 liter) Hydraulic Tank

Control Valve

Accumulators

Hydraulic Motor

Figure 4-4. raulic o er nit

Figure 4-5. raulic o er nit chematic

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MAXIMUM

PARTIAL

8 7 6 3 1 5

9 2 10 11

Legend

1. Control Actuator 7. Cylinder Barrel

2. Cylinder Bearing 8. Valve Plate

3. Swash Block 9. Valve Ports

4. Shaft 10. Shaft Seal

5. Shaft Bearing 11, Housing

6. Piston & Shoe

. .1.1 A ial Piston Pump See Figure 4-6. The axial piston, variable displacement pump is controlled by a pressure compensator which ensures maximum flow until it reaches the control pressure setting, and then regulates flow to match sys-tem requirements while maintaining control pressure.

As driveshaft (4) turns, piston and shoe assemblies

(6) held against swashblock (3) are drawn in and out of rotating cylinder barrel (7). By varying the angular difference between the cylinder barrel and control actuator (1), delivery changes.

See Figure 4-7. When the pressure compensator posi-tions the swashblock…

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