Attch 7 08 33 23.pdf
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- Attached to
- DLA Building 54 Navy Artifact Restoration Federal contract opportunity
- Solicitation number
- W9123622B2041
About this file
This document provides specifications for overhead coiling doors to be installed at Building 54 of the Navy Artifact Restoration project. The specifications cover door materials and construction, performance requirements to withstand wind loads and cycle life, components including slats, bottom bars, locks, guides and hood, and counterbalancing mechanisms. It also includes requirements for electric door operators, controls, enclosures, sensing edges and remote control stations. Submittal requirements and procedures, delivery and storage standards, installation instructions, adjustment and cleaning procedures, warranties, and operation and maintenance manuals are outlined. The Army Corps of Engineers is soliciting bids for the restoration project under solicitation number W91236-22-B-2041, with responses due by December 7th, 2022.
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Text version
DSCR W91236-17-D-0001-0455737
B54 HVAC NAVY ARTIFACT
SECTION 08 33 23
OVERHEAD COILING DOORS
11/19
PART 1 GENERAL
1.1 REFERENCES
The publications listed below form a part of this specification to the extent referenced. The publications are referred to within the text by the basic designation only.
AMERICAN SOCIETY OF CIVIL ENGINEERS (ASCE)
ASCE 7-16 (2017; Errata 2018; Supp 1 2018) Minimum Design Loads and Associated Criteria for Buildings and Other Structures
AMERICAN SOCIETY OF HEATING, REFRIGERATING AND AIR-CONDITIONING
ENGINEERS (ASHRAE)
ASHRAE FUN IP (2017) Fundamentals Handbook, I-P Edition
AMERICAN SOCIETY OF MECHANICAL ENGINEERS (ASME)
ASME B29.400 (2001; (R 2008) (R 2013) (R 2018))
Combination, "H" Type Mill Chains, and Sprockets
ASTM INTERNATIONAL (ASTM)
ASTM A36/A36M (2014) Standard Specification for Carbon Structural Steel
ASTM A47/A47M (2018) Standard Specification for Ferritic Malleable Iron Castings
ASTM A53/A53M (2020) Standard Specification for Pipe, Steel, Black and Hot-Dipped, Zinc-Coated, Welded and Seamless
ASTM A153/A153M (2016) Standard Specification for Zinc Coating (Hot-Dip) on Iron and Steel Hardware
ASTM A307 (2014; E 2017) Standard Specification for Carbon Steel Bolts, Studs, and Threaded Rod 60 000 PSI Tensile Strength
ASTM A653/A653M (2020) Standard Specification for Steel Sheet, Zinc-Coated (Galvanized) or Zinc-Iron Alloy-Coated (Galvannealed) by the Hot-Dip Process
ASTM A666 (2015) Standard Specification for Annealed or Cold-Worked Austenitic Stainless Steel Sheet, Strip, Plate and Flat Bar
SECTION 08 33 23 Page 1
ASTM A780/A780M (2009; R 2015) Standard Practice for Repair of Damaged and Uncoated Areas of Hot-Dip Galvanized Coatings
ASTM A924/A924M (2018) Standard Specification for General Requirements for Steel Sheet, Metallic-Coated by the Hot-Dip Process
ASTM B221 (2014) Standard Specification for Aluminum and Aluminum-Alloy Extruded Bars, Rods, Wire, Profiles, and Tubes
ASTM E84 (2020) Standard Test Method for Surface Burning Characteristics of Building Materials
ASTM E330/E330M (2014) Structural Performance of Exterior Windows, Doors, Skylights and Curtain Walls by Uniform Static Air Pressure Difference
ASTM F568M (2007) Standard Specification for Carbon and Alloy Steel Externally Threaded Metric Fasteners
NATIONAL ELECTRICAL MANUFACTURERS ASSOCIATION (NEMA)
NEMA ICS 2 (2000; R 2005; Errata 2008) Industrial Control and Systems Controllers, Contactors, and Overload Relays Rated 600 V
NEMA ICS 6 (1993; R 2016) Industrial Control and Systems: Enclosures
NEMA MG 1 (2018) Motors and Generators
NEMA ST 1 (1988; R 1994; R 1997) Specialty Transformers (Except General Purpose Type)
NATIONAL FIRE PROTECTION ASSOCIATION (NFPA)
NFPA 70 (2020; ERTA 20-1 2020; ERTA 20-2 2020; TIA
20-1; TIA 20-2; TIA 20-3; TIA 20-4)
National Electrical Code
UNDERWRITERS LABORATORIES (UL)
UL 325 (2017; Reprint Feb 2020) UL Standard for Safety Door, Drapery, Gate, Louver, and Window Operators and Systems
1.2 SUBMITTALS
Government approval is required for submittals with a "G" designation;
submittals not having a "G" designation are for Contractor Quality Control approval. Submit the following in accordance with Section 01 33 00.00 50
SUBMITTAL PROCEDURES:
SECTION 08 33 23 Page 2
SD-02 Shop Drawings
Overhead Coiling Doors; G
Counterbalancing Mechanism; G
Electric Door Operators; G
Bottom Bars; G
Guides; G
Mounting Brackets; G
Hood; G
Installation Drawings; G
SD-03 Product Data
Overhead Coiling Doors; G
Hardware; G
Counterbalancing Mechanism; G
Electric Door Operators; G
SD-05 Design Data
Overhead Coiling Doors; G
Hardware; G
Counterbalancing Mechanism; G
Electric DoorOperators; G
SD-10 Operation and Maintenance Data
Operation and Maintenance Manuals; G
Materials; G
Devices; G
Procedures; G
Manufacturer's Brochures; G
Parts Lists; G
SD-11 Closeout Submittals
Warranty; G
1.3 DELIVERY, STORAGE, AND HANDLING
Deliver doors to the jobsite wrapped in a protective covering with the
SECTION 08 33 23 Page 3 brands and names clearly marked thereon. Store doors in an adequately ventilated dry location that is free from dirt and dust, water, or other contaminants. Store in a manner that permits easy access for inspection and handling.
PART 2 PRODUCTS
2.1 SYSTEM DESCRIPTION
Provide overhead coiling doors, with interlocking slats, complete with anchoring and door hardware, guides, hood, and operating mechanisms, and designed for use on openings as indicated. Use grease-sealed or self-lubricating bearings for rotating members.
2.1.1 Design Requirements
2.1.1.1 Overhead Coiling Door Detail Shop Drawings
Provide installation drawings for overhead coiling door assemblies which show: elevations of each door type, shape and thickness of materials, finishes, details of joints and connections, details of guides and fittings, rough opening dimensions, location and description of hardware, anchorage locations, and counterbalancing mechanism and door operator details. Show locations of replaceable fusible links on wiring diagrams for power, signal and controls. Include a schedule showing the location of each door with the drawings.
2.1.2 Performance Requirements
2.1.2.1 Wind Loading
Design and fabricate door assembly to withstand the wind loading pressure of at least 20 pounds per square foot. Provide test data showing compliance with ASTM E330/E330M . Sound engineering principles may be used to interpolate or extrapolate test results to door sizes not specifically tested. Ensure that the complete assembly meets or exceeds the requirements of ASCE 7-16 .
2.1.2.2 Operational Cycle Life
Design all portions of the door, hardware and operating mechanism that are subject to movement, wear, or stress fatigue to operate through a minimum number of 20 cycles per day hour. One complete cycle of door operation is defined as when the door is in the closed position, moves to the fully open position, and returns to the closed position.
2.2 COMPONENTS
2.2.1 Overhead Coiling Doors
2.2.1.1 Curtain Materials and Construction
Provide curtain slats fabricated from Grade A steel sheets conforming to ASTM A653/A653M , with the additional requirement of a minimum yield point of 33,000 psi. Provide sheets, galvanized in conformance with ASTM A653/A653M and ASTM A924/A924M .
Fabricate doors from interlocking cold-rolled slats, with section profiles as specified, designed to withstand the specified wind loading. Ensure
SECTION 08 33 23 Page 4 the provided slats are continuous without splices for the width of the door.
Provide slats filled with manufacturer's standard thermal insulation, complying with the maximum flame-spread and smoke-developed indexes of 75 and 450, respectively, according to ASTM E84. Enclose the insulation completely within the slat faces on the interior surface of the slats.
2.2.1.2 Insulated Curtains
Form curtains from manufacturer's standard shapes of interlocking slats.
Supply a slat system with a minimum R-value of 4 when calculated in accordance with ASHRAE FUN IP . Slats to consist of a urethane core not less than 11/16 inch thick, completely enclosed within metal facings.
Slat steel thickness as required by the size of the door to meet specified performance requirements. The insulated slat assembly requires a flame spread rating of not more than 25 and a smoke development factor of not more than 50 when tested in accordance with ASTM E84.
2.2.1.3 Curtain Bottom Bar
Install curtain bottom bars as pairs of angles or using extrusions from the manufacturer's standard steel, stainless and aluminum extrusions not less than 2.0 by 2.0 inches by 0.188 inch.Ensure steel extrusions conform to ASTM A36/A36M. Stainless steel extrusions conforming to ASTM A666, Type 304. Aluminum extrusions conforming to ASTM B221. Galvanize angles and fasteners in accordance with ASTM A653/A653M and ASTM A924/A924M .
Coat welds and abrasions with paint conforming to ASTM A780/A780M .
Provide two minimum 2 inch by 2 inch by 1/8 inch structural steel angles.
2.2.1.4 Locks
Provide end and/or wind locks of Grade B cast steel conforming to ASTM A47/A47M, galvanized in accordance with ASTM A153/A153M . Secure locks at every other curtain slat.
2.2.1.5 Weather Stripping
Provide a hood baffle inside the hood that is a minimum 1/16 inch thick sheet of neoprene rubber. Provide guide weather stripping that is a minimum 1/16 inch thick sheet of neoprene rubber.
Provide bottom bar weather-stripping that is a minimum1/16 inch thick sheet of vinyl, neoprene rubber, or equivalent.
2.2.1.6 Locking Devices
Provide a locking device assembly which includes cylinder lock, operating handle, cam plate, and adjustable locking bars to engage through slots in tracks.
Provide a chain lock keeper suitable for a standard padlock.
2.2.1.7 Safety Interlock
Equip power-operated doors with a safety interlock switch to disengage power supply when the door is locked, or provide an operator with an internal lock sensing device to prevent the door opening when the door is
SECTION 08 33 23 Page 5 locked.
2.2.1.8 Slats
20 gauge, Grade 40 steel, ASTM A653/A653M galvanized steel zinc coating.
2.2.2 Hardware
Ensure that all hardware conforms to ASTM A153/A153M , ASTM A307, and
ASTM F568M.
2.2.2.1 Guides
Fabricate curtain jamb guides from the manufacturer's standard angles or channels of same material and finish as curtain slats unless otherwise indicated. Provide guides with sufficient depth and strength to retain curtain, and to withstand loading. Ensure curtain operates smoothly.
Slot bolt holes for track adjustment.
2.2.2.2 Hood
Provide a hood with a minimum aluminum 22-gauge or 24 gauge gal vani zed steel , flanged at top for attachment to header and flanged at bottom to provide longitudinal stiffness. The hood encloses the curtain coil and counterbalance mechanism.
Provide intermediate support brackets as required to prevent excessive sag.
2.2.3 Counterbalancing Mechanism
Counterbalance doors by means of manufacturer's standard mechanism with an adjustable-tension, steel helical torsion spring mounted, around a steel shaft and contained in a spring barrel connected to top of curtain with barrel rings. Use grease-sealed or self-lubricating bearings for rotating members.
2.2.3.1 Brackets
Provide the manufacturer's standard mounting brackets with one located at each end of the counterbalance barrel conforming to ASTM A36/A36M.
Provide brackets of hot-rolled steel.
2.2.3.2 Counterbalance Barrels
Fabricate spring barrel of manufacturer's standard hot-formed, structural-quality, welded or seamless carbon-steel pipe, conforming to ASTM A53/A53M or equivalent. Ensure the barrel is of sufficient diameter and wall thickness to support rolled-up curtain without distortion of slats. Limit barrel deflection to not more than 0.03 inch per foot of span under full load.
a. Barrel
Provide steel pipe capable of supporting curtain load with maximum deflection of 0.03 inches per foot of width.
b. Spring Balance
Provide an oil-tempered, heat-treated steel helical torsion spring
SECTION 08 33 23 Page 6 assembly designed for proper balance of door. Ensure that effort to operate manually operated units does not exceed 25 lbs. Provide wheel for applying and adjusting spring torque.
2.2.3.3 Torsion Rod for Counter Balance
Fabricate rod from the manufacturer's standard cold-rolled steel, sized to hold fixed spring ends and carry torsional load.
2.2.4 Electric Door Operators
Provide electrical wiring and door operating controls conforming to the applicable requirements of NFPA 70 and UL 325 .
Electric door-operator assemblies needs to be the sizes and capacities recommended and provided by the door manufacturer for specified doors.
Furnish complete assemblies with electric motors and factory-prewired motor controls, starter, gear reduction units, solenoid-operated brakes, clutch, remote-control stations, manual or automatic control devices, and accessories as required for proper operation of the doors.
Design the operators so that motors may be removed without disturbing the limit-switch adjustment and affecting the emergency auxiliary operators.
Provide a manual operator of crank-gear or chain-gear mechanisms with a release clutch to permit manual operation of doors in case of power failure. Arrange the emergency manual operator so that it may be put into and out of operation from floor level, and its use does not affect the adjustment of the limit switches. Provide an electrical or mechanical device that automatically disconnects the motor from the operating mechanism when the emergency manual operating mechanism is engaged.
2.2.4.1 Door-Operator Types
Provide an operator mounted to the right or left door head plate with the operator on coil side of the door-hood assembly and connected to the door drive shaft with drive chain and sprockets. Front clearance is required for this type of mounting.
2.2.4.2 Electric Motors
Provide motors which are the high-starting-torque, reversible, constant-duty electrical type with overload protection of sufficient torque and horsepower to move the door in either direction from any position. Ensure they produce a door-travel speed of not less than 8 nor more than 12 inches per second without exceeding the horsepower rating.
Provide motors which conform to NEMA MG 1 designation, temperature rating, service factor, enclosure type, and efficiency to the requirements specified.
2.2.4.3 Motor Bearings
Select bearings with bronze-sleeve or heavy-duty ball or roller antifriction type with full provisions for the type of thrust imposed by the specific duty load.
Pre-lubricate and factory seal bearings in motors less than 1/2 horsepower.
SECTION 08 33 23 Page 7
Equip motors coupled to worm-gear reduction units with either ball or roller bearings.
Equip bearings in motors 1/2 horsepower or larger with lubrication service fittings. Fit lubrication fittings with color-coded plastic or metal dust caps.
In any motor, bearings that are lubricated at the factory for extended duty periods do not need to be lubricated for a given number of operating hours. Display this information on an appropriate tag or label on the motor with instructions for lubrication cycle maintenance.
2.2.4.4 Motor Starters, Controls, and Enclosures
Provide each door motor with: a factory-wired, unfused, disconnect switch;
a reversing, across-the-line magnetic starter with thermal overload protection; 24-volt operating coils with a control transformer limit switch; and a safety interlock assembled in a NEMA ICS 6 type enclosure as specified herein. Ensure control equipment conforms to NEMA ICS 2 .
Provide adjustable switches, electrically interlocked with the motor controls and set to stop the door automatically at the fully open and fully closed position.
2.2.4.5 Control Enclosures
Provide control enclosures that conform to NEMA ICS 6 for oil-tight and dust-tight NEMA Type 12.
2.2.4.6 Transformer
Provide starters with 230/460 to 115 volt control transformers with one secondary fuse when required to reduce the voltage on control circuits to 24volts or less. Provide a transformer conforming to NEMA ST 1 .
2.2.4.7 Sensing-Edge Device
Provide each door with a pneumatic or electric sensing device that meets UL 325 , extends the full width of the door, and is located within a U-section neoprene or rubber astragal, mounted on the bottom rail of the bottom door section. Device needs to immediately stop and reverse the door upon contact with an obstruction in the door opening during downward travel and cause the door to return to full-open position. A sensing device is not a substitute for a limit switch.
Connect sensing device to the control circuit through a retracting cord and reel.
2.2.4.8 Remote-Control Stations
Provide interior remote control stations that are full-guarded, momentary-contact three-button, heavy-duty, surface-mounted NEMA ICS 6 type enclosures as specified. Mark buttons "OPEN," "CLOSE," and "STOP."
Ensure the "CLOSE" button requires a constant pressure to maintain the closing motion of the door. When the door is in motion and the "STOP" button is pressed, ensure the door stops instantly and remains in the stopped position. From the stopped position, the door may then be operated in either direction.
SECTION 08 33 23 Page 8
2.2.4.9 Speed-Reduction Units
Provide speed-reduction units consisting of hardened-steel worm and bronze worm gear assemblies or planetary gear reducers running in oil or grease and inside a sealed casing, coupled to the motor through a flexible coupling. Drive shafts need to rotate on ball- or roller-bearing assemblies that are integral with the unit.
Provide minimum ratings of speed reduction units in accordance with AGMA provisions for class of service.
Ground worm gears to provide accurate thread form; machine teeth for all other types of gearing. Surface harden all gears.
Provide antifriction type bearings equipped with oil seals.
2.2.4.10 Chain Drives
Provide roller chains that are a power-transmission series steel roller type conforming to ASME B29.400 , with a minimum safety factor of 10 times the design load.
Heat-treat or otherwise harden roller-chain side bars, rollers, pins, and bushings.
Provide high-carbon steel chain sprockets with machine-cut hardened teeth, finished bore and keyseat, and hollow-head setscrews.
2.2.4.11 Brakes
Provide 360-degree shoe brakes or shoe and drum brakes. Ensure the brakes are solenoid-operated and electrically interlocked to the control circuit to set automatically when power is interrupted.
2.2.4.12 Clutches
Ensure clutches are friction type or adjustable centrifugal type.
2.2.4.13 Weather/Smoke Seal Sensing Edge
Provide automatic stop control by an automatic sensing switch within neoprene astragal extending the full width of door bottom bar.
Provide an electric sensing edge device. Ensure the door immediately stops downward travel when contact occurs before door fully closes.
Provide a self-monitoring sensing edge connection to the motor operator.
2.2.5 Surface Finishing
Comply with NAAMM's "Metal Finishes Manual for Architectural and Metal Products" for recommendations for applying and designating finishes.
Noticeable variations in the same metal component are not acceptable.
Variations in appearance of adjoining components are acceptable if they are within the range of approved samples and are assembled or installed to minimize contrast.
2. 2. 5. 1 Fi ni sh Col or
a. I nt er i or f i ni sh on cur t ai n t o be gal vani zed met al . Pai nt bot t om f our
SECTION 08 33 23 Page 9 sl at s ( 12" A. F. F. ) , saf et y yel l ow.
b. Ext er i or f i ni sh on cur t ai n t o be f act or y f i ni shed pai nt t o mat ch existing.
PART 3 EXECUTION
3.1 INSTALLATION
Install overhead coiling door assembly, anchors and inserts for guides, brackets, motors, switches, hardware, and other accessories in accordance with approved detail drawings and manufacturer's written instructions.
Upon completion of installation, ensure doors are free from all distortion.
Install overhead coiling doors, motors, hoods, and operators at the mounting locations as indicated for each door in the contract documents and as required by the manufacturer.
Install overhead coiling doors, switches, and controls along accessible routes in compliance with regulatory requirements for accessibility and as required by the manufacturer.
3.2 ADJUSTING AND CLEANING
3.2.1 Acceptance Provisions
After installation, adjust the hardware and moving parts. Lubricate bearings and sliding parts as recommended by manufacturer to provide smooth operating functions for ease movement, free of warping, twisting, or distortion of the door assembly.
Adjust seals to provide a weather-tight fit around entire perimeter.
Engage a factory-authorized service representative to perform startup service and checks according to the manufacturer's written instructions.
Test the door opening and closing operation when activated by controls or alarm-connected fire-release system. Adjust controls and safeties.
Replace damaged and malfunctioning controls and equipment. Reset the door-closing mechanism after a successful test.
Test and make final adjustment of new doors at no additional cost to the Government.
3.2.1.1 Maintenance and Adjustment
Not more than 90 calendar days after completion and acceptance of the project, examine, lubricate, test, and re-adjust doors as required for proper operation.
3.2.1.2 Cleaning
Clean stainless steel doors in accordance with manufacturer's approved instructions.
SECTION 08 33 23 Page 10
3.3 CLOSEOUT ACTIVITIES
3.3.1 Warranty
Furnish a written guarantee that the helical spring and counterbalance mechanism are free from defects in material and workmanship for not less than two years after completion and acceptance of the project.
Warrant that upon notification by the Government, any defects in material, workmanship, and door operation are immediately correct within the same time period covered by the guarantee, at no cost to the Government.
3.3.2 Operation And Maintenance
Submit 6 copies of the Operation and Maintenance Manuals 30 calendar days prior to testing the Overhead Coiling Door Assemblies. Update and resubmit data for final approval no later than 30 calendar days prior to contract completion.
Submit Operation and Maintenance Manuals for Overhead Coiling Door Assemblies, including the following items:
Materials
Devices
Electric Door Operators
Hood
Counterbalancing Mechanism
Painting
Procedures
Manufacturer's Brochures
Parts Lists
Provide operation and maintenance manuals which are consistent with manufacturer's standard brochures, schematics, printed instructions, operating procedures, and safety precautions. Provide test data that is legible and of good quality.
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