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FORD WSS-M3B73-A3 - PHOSPHATE SOLUTION, ZINC, NICKEL FREE, FEED MATERIAL
June 24, 1998 - FORD

1. SCOPE The materials defined by these specifications are the basic components for the automotive Ni free Zinc phosphating process, containing essentially Zinc Phosphate..

AMS5640B - STEEL, CORROSION RESISTANT 18 Chromium 8 Nickel (Free Machining)
May 1, 1945 - SAE International
A description is not available for this item.
AMS5640A - STEEL, CORROSION RESISTANT 18 Chromium - 8 Nickel (Free Machining)
June 1, 1942 - SAE International
A description is not available for this item.
AMS5640 - STEEL, CORROSION RESISTANT 18 Chromium - 8 Nickel (Free Machining)
December 1, 1939 - SAE International
A description is not available for this item.
FORD WSS-M3B73-A1 - PHOSPHATE SOLUTION, ZINC, NICKEL FREE, INITIAL FILL ***TO BE USED WITH FORD WSS-M99P1111-A***
March 31, 2003 - FORD

1. SCOPE The materials defined by these specifications are the basic components for the automotive Ni free Zinc phosphating process, containing essentially Zinc Phosphate.

FORD WSS-M12A4-A2 - LUBRICANT, SOLID FILM, HIGH TEMPERATURE ANTISEIZE (NICKEL FREE) ***TO BE USED WITH FORD WSS-M99P1111-A***
February 10, 2005 - FORD

The material defined by this specification is a metal-free, semi-synthetic lubricating paste containing inorganic lubricants and other additives to provide good adhesion to substrates and high temperature performance without the use of toxic metal powders.

FORD WSS-M21P25-B1 - CORROSION PROTECTIVE COATING, ZINC NICKEL ALLOY, CHROMIUM-FREE PASSIVATE, U.V. RESISTANT BLACK SEALER ***TO BE USED WITH FORD WSS-M99P1111-A***
February 20, 2006 - FORD

The materials defined by this specification provide a corrosion protective coating applied over steel. The materials consist of an alkaline zinc nickel alloy electro-deposit, followed by a chromium-free passivate, with the addition of a water soluble organic sealer designed to provide...

MIL-S-16598 - STEEL BAR (LOW EXPANSION,FREE CUTTING,36% NICKEL)
NPFC
A description is not available for this item.
AMS4674B - NICKEL-COPPER ALLOY, CORROSION RESISTANT 67Ni - 30Cu Free Machining
May 1, 1954 - SAE International
A description is not available for this item.
AMS4674A - NICKEL-COPPER ALLOY, CORROSION RESISTANT 67Ni - 30Cu Free Machining
March 1, 1951 - SAE International
A description is not available for this item.
AMS4674 - NICKEL-COPPER ALLOY, CORROSION RESISTANT 67Ni - 30Cu Free Machining
May 1, 1948 - SAE International
A description is not available for this item.
MIL-PRF-32647 - ZINC‐NICKEL ELECTROPLATING FOR FASTENERS
January 4, 2021 - NPFC

Scope. This specification covers requirements for an electrodeposited zinc‐nickel (Zn‐Ni) alloy plating with a hexavalent chromium‐free conversion coating and supplementary top coat or sealant. This MIL specification selects desired options from ASTM F1941/F1941M and details...

FORD WSS-M1A343-A2 - STEEL, ZINC/NICKEL PLATED, IMMERSION COATED, HEXAVALENT CHROMIUM FREE ***TO BE USED WITH FORD WSS-M99P1111-A***
February 24, 2011 - FORD

The material defined by this specification is a low carbon steel sheet coated on both sides with an electrolytic zinc/nickel alloy. The coated sheet is formed into a component, which then goes through a pretreatment and an immersion organic top coating to produce a duplex system.

AMS4674C - NICKEL-COPPER ALLOY, CORROSION RESISTANT 67Ni - 30Cu - 0.04S Free Machining
July 1, 1957 - SAE International
A description is not available for this item.
ISO 6283 - Refined Nickel
September 1, 2017 - ISO

This document specifies the designation and chemical composition of grades of refined nickel.

GM1828M - Nickel Anodes
January 1, 1989 - GMNA

These specifications cover the requirements for four types of nickel anodes for use in nickel plating solutions. Two are primary (high nickel) products (one with controlled sulfur); and two are processed products (one with controlled oxygen and one with controlled carbon and...

Nickel Alloys
September 1, 2000 - CRC

This book evaluates the latest developments in nickel alloys and high-alloy special stainless steels by material number, price, wear rate in corrosive media, mechanical and metallurgical characteristics, weldability, and resistance to pitting and crevice corrosion. Nickel Alloys is at...

ASTM F2082/F2082M-16 - Standard Test Method for Determination of Transformation Temperature of Nickel-Titanium Shape Memory Alloys by Bend and Free Recovery
April 1, 2016 - ASTM International

1.1 This test method describes a procedure for determining the martensite-to-austenite transformation temperatures of either fully annealed or heat-treated nickel titanium alloys by measuring the deformation recovered during the thermal transformation. 1.2 The values stated in either SI...

ASTM F2082-15 - Standard Test Method for Determination of Transformation Temperature of Nickel-Titanium Shape Memory Alloys by Bend and Free Recovery
May 1, 2015 - ASTM International

1.1 This test method describes a procedure for determining the martensite-to-austenite transformation temperatures of either fully annealed or heat-treated nickel titanium alloys by measuring the deformation recovered during the thermal transformation. 1.2 The values stated in either SI...

ASTM F2004-05(2010) - Standard Test Method for Transformation Temperature of Nickel-Titanium Alloys by Thermal Analysis
June 1, 2010 - ASTM International

Differential scanning calorimetry provides a rapid method for determining the transformation temperature(s) of nickel-titanium shape memory alloys. This test method uses small, stress-free, annealed samples to determine whether a sample of nickel-titanium alloy containing...

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