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Standard

ZINC PLATING

1991-10-01
AMS2402F
This specification covers the engineering requirements for electrodepositton of zinc and the properties of the deposit.
Standard

Welding, Electron-Beam

2022-01-21
AMS2681B
This specification defines the procedures and requirements for joining metals and alloys using the electron-beam (EB) welding process.
Standard

Weldability Test for Weld Filler Metal Wire

2011-04-13
ARP1876B
This SAE Aerospace Recommended Practice defines a method for determining the weldability of weld filler metal in continuous coil or cut length form. It is applicable to all solid (non flux-containing) wires. It is intended as a referee method for testing weld filler metals in case of dispute between purchaser and vendor.
Standard

Weldability Test for Weld Filler Metal Wire

2017-08-15
ARP1876C
This SAE Aerospace Recommended Practice defines a method for determining the weldability of weld filler metal in continuous coil or cut length form. It is applicable to all solid (non flux-containing) wires. It is intended as a referee method for testing weld filler metals in case of dispute between purchaser and vendor.
Standard

WELDABILITY TEST FOR WELD FILLER METAL WIRE

1993-04-01
ARP1876A
This SAE Aerospace Recommended Practice defines a method for determining the weldability of weld filler metal in continuous coil or cut length form. It is applicable to all solid (non flux-containing) wires. It is intended as a referee method for testing weld filler metals in case of dispute between purchaser and vendor.
Standard

VACUUM INVESTMENT CAST PH13-8Mo CORROSION RESISTANT STEEL

1991-07-01
AIR4394
An industry-wide interest has arisen with regards to the properties and capabilities of investment cast PH 13-8Mo corrosion resistant steel. Specifically of interest are the structural applications in the aerospace industry for this product heat treated to the H1000 condition. The objective of this AMEC cooperative test program was to generate and compile useful data for aerospace structural evaluation of investment cast PH 13-8Mo heat treated to H1000. The focus of the test program was the determination of overall mechanical properties, fatigue, fracture toughness, and crack growth data along with basic microstructural evaluation of the investment cast material. Additional objectives included the evaluation of mechanical property variations between cast and machined tensile specimens and evaluation of microstructural constituents. All testing was performed to determine the suitability of PH 13-8Mo, H1000 investment castings for use in the aerospace industry.
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