SATPC0041170 Tab 04 4 SOW_Redacted.pdf

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Attached to
Injection Molded Pressure Bubbles for Spacesuit Helmets Federal contract opportunity
Solicitation number
80NSSC26933381Q
Issued by
National Aeronautics and Space Administration Shared Services Center

About this file

This is a Statement of Work (SOW) for the development and manufacturing of an injection-molded Protective Visor for the Exploration Extravehicular Mobility Unit (xEMU) spacesuit. The contract is a Firm Fixed Price RFQ issued by NASA's Crew and Thermal Systems Division, Space Suit and Crew Survival Systems Branch, with evaluation criteria based on Technical Capability, Past Performance, and Price.

The vendor must develop an injection mold, build the mold, and deliver 20 prototype Protective Visors that meet specified design and performance requirements. Key technical requirements include outer dimensions per provided specifications, a retainer ring for circumferential retention, critical area of vision requirements (entire area except 60 degrees from zenith to nadir), optical quality with imperfection limits (pit/scratch diameter 0.015–0.035 inches, length 0.1–0.15 inches, maximum 3 occurrences with 0.5-inch spacing), haze not exceeding 2 percent per ASTM D1003, minimum 82 percent visible light transmission (380–800 nm), refractive error not exceeding ±0.125 diopters, impact resistance from 125 lbs over 4×4 inches during IVA operations, and survivability of 2-inch steel ball impact at 1.4 ft/s in microgravity. Deliverables include monthly status meetings (PowerPoint), a mold design presentation detailing feasibility and manufacturing parameters, a Process Definition and Control Plan with process flow diagrams and standard operating procedures, and hardware delivery with material certifications and inspection records. All deliverables must be completed within 6 months from Authorize to Proceed (ATP). Hardware shall be shipped to NASA Johnson Space Center (Building 420, Central Receiving, Houston, Texas) as Class III with a DD Form 250 and accompanying Certificates of Compliance containing customer order number, product name, part/serial numbers, manufacturing location, lot/batch/date code information, quantity, and company authorization signature.

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SATPC0041170 Tab 07 Capability Statement.pdf PDF

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Alternative Manufacturing for Spacesuit Protective Visor Statement of Work

Contract Mechanism:

RFQ Title:

Contract Type: Firm Fixed Price Expected Cost:

RFQ Requirements:

Evaluation Criteria:

a) Technical Capability

b) Past Performance

c) Price

1. Background:

The Crew and Thermal Systems Division’s Space Suit and Crew Survival Systems Branch is requesting the development of an injection mold, build of a mold, and delivery of a prototype for an injection molded Protective Visor for future spacesuit designs. The development will be based on the design of the Exploration Extravehicular Mobility Unit (xEMU) spacesuit which is the government reference design. The intent of this procurement is to execute initial research and development of manufacturing the xEMU Protective Visor using an injection molded system.

2. Objectives:

The objective of this contract is to execute development and manufacturing of the xEMU Protective Visor using an injection molded system.

Requirements:

2.1 Outer Dimensions Protective Visor

The xPGS Protective Visor shall follow the outer dimensions as listed in Figure 3 (listed in inches).

2.4.1 The Protective Visor imperfections (defined as any pit, scratch, bubble coating imperfection, foreign particles or inclusions) in the critical area of vision should be limited by the Imperfection Parameters Table 1.

2.5 Haze

2.5.1 Haze in the critical and noncritical areas of the Protective Visor prior to coating should not exceed 2 percent as determined in accordance with ASTM D1003. Verification is not required by the vendor.

2.6 Visible light transmission

2.6.1 The Protective Visor transmittance percentage in the visible light spectrum (380-800 nm) in both photopic and scotopic conditions shall be a minimum of 82%. Verification is not required by the vendor.

2.7 Refractive Power

2.7.1 Refractive error of the Protective Visor in the critical area of vision should not exceed ±

0.125 D (TBD) in the critical area for spherical or cylindrical power in any meridian.

Verification is not required by the vendor.

2.8 IVA Contact Load

2.8.1 The Protective Visor should be acceptable for nominal EVA operations after an impact during IVA operations of 125 lbs over an area 4"x4". The load can be applied anywhere on the external surface of the suit assembly. Verification is not required by the vendor.

2.9 Micro-Gravity Impact

2.9.1 The Protective Visor should not fail catastrophically following impact with a 2 inch diameter steel ball when manned, pressurized to exploration pressure, in microgravity, translating at 1.4 ft/s, and in the heaviest EVA configuration, approximately 300 lbs.

Verification is not required by the vendor.

3. Scope of Work:

3.1 Assessment of Injection Molding for Protective Visor designs

Table 1: Imperfection Parameters

3.1.1 Feasibility

Evaluate the ability to manufacture the size/shape required of the Protective Visor to the requirements detailed in section 2.0 as executed by simulations If needed, recommend design changes to the Protective Visor to improve manufacturability.

3.1.2 Mold Design and Surface Properties

Evaluate effective mold design and required surface properties to meet the requirements detailed in section 2.0.

Post machining to be maintained to a minimum, expect for necessary deburring or if necessary, please advise NASA team.

All chamfers, fillets, and rounds to be molded and not post machined

3.2 Manufacturing

3.2.1 Molds: Build mold

Protective Visor

3.2.2 Visors

Build Protective Visor (Deliver 20 highest quality prototypes to NASA)

4. Deliverables:

4.1 Monthly status meetings

Status meetings will occur each month to update the government on the project. The deliverable of the monthly status meeting will be a PowerPoint presentation.

4.2 Mold design Presentation:

The vendor will provide a mold design presentation that will communicate the feasibility, mold design for injection mold production, design of the proposed finished products, and any additional information for how the Protective Visor meets requirements identified in Section 2.

Design information to be included: wall thickness, draft, knit/weld lines, sink, warpage, ribs/bosses, tolerance feasibility, gate type/location, and venting strategy. The delivery presentation will be a PowerPoint presentation.

4.3 Process Definition and Control Plan

a) Process Flow Diagram covering raw material receipt through finished goods shipment.

b) Standard Operating Procedures (SOPs)/Work Instructions (WIs) for:

• Nominal process parameters and control limits. Examples: Barrel/zone temperatures, mold temperature, injection speed/pressure, pack/hold profile, cooling time, cushion, screw speed/backpressure, clamp force, cycle time, and alarm limits.

• Resin information to be included is crying time and temperature, moisture content target before molding, shrink rate of material, material technical data sheet.

4.4 Hardware:

The vendor will deliver 20 Protective Visors to Johnson Space Center on the shipping requirements as defined in section 5. Hardware shall be delivered with an Acceptance Data Package that includes at minimum:

Material certifications Inspection records

5. Shipping Requirements

5.1 Ship all hardware to the following address, unless otherwise directed:

NASA LYNDON B. JOHNSON SPACE CENTER

BLDG.420,CENTRAL RECEIVING

2101 NASA PARKWAY

HOUSTON, TEXAS 77058

Hardware shall be delivered as Class III to NASA with all hardware listed on a DD Form 250, with the following information listed, at minimum:

Contract and Task Order Number Part Number Lot # Serial # (if applicable) Nomenclature Shelf Life Quantity Class: III Unit cost Total Cost

6. Period of Performance / Schedule:

All products identified in section 4 shall be delivered by 6 months from ATP.

7. Travel:

None.

8. Duty Information:

9. Quality Requirements -- Certificate of Compliance (C of C)

Supplier shall provide a certification with each shipment to attest that the parts, assemblies, subassemblies, or detail parts conform to the Order requirements. When applicable, the true manufacturers, lot, heat, batch, date code, and/or serial number must appear on the certification.

Certification shall contain the following:

Customer’s Order number Product name Part and Serial number Name and address of manufacturing or processing location Manufacturer’s lot, heat, batch, date code, and/or serial number (if applicable) Quantity and unit of measurement (each, box, case, gallons, etc.)

Be signed and dated by an official of the company

10. Other Considerations:

File details come from the government source that posted it. Updated .