ASTM F2516-07e1
Standard Test Method for Tension Testing of Nickel-Titanium Superelastic Materials

Standard No.
ASTM F2516-07e1
Release Date
2007
Published By
American Society for Testing and Materials (ASTM)
Status
Replace By
ASTM F2516-07e2
Latest
ASTM F2516-22
Scope

Tension tests provide information on the strength and ductility of materials under uniaxial tensile stresses.

Tension tests, as described in this test method, also provide information on the superelasticity, as defined in Terminology F 2005, of the material at the test temperature.

1.1 This test method covers the tension testing of superelastic nickel-titanium (nitinol) materials, specifically the methods of determination of upper plateau strength, lower plateau strength, residual elongation, tensile strength, and elongation.

1.2 The values stated in SI units are to be regarded as standard. No other units of measurement are included in this standard.

1.3 This standard does not purport to address all of the safety concerns, if any, associated with its use. It is the responsibility of the user of this standard to establish appropriate safety and health practices and determine the applicability of regulatory limitations prior to use.

ASTM F2516-07e1 history

  • 2022 ASTM F2516-22 Standard Test Method for Tension Testing of Nickel-Titanium Superelastic Materials
  • 2018 ASTM F2516-18 Standard Test Method for Tension Testing of Nickel-Titanium Superelastic Materials
  • 2014 ASTM F2516-14 Standard Test Method for Tension Testing of Nickel-Titanium Superelastic Materials
  • 2007 ASTM F2516-07e2 Standard Test Method for Tension Testing of Nickel-Titanium Superelastic Materials
  • 2007 ASTM F2516-07e1 Standard Test Method for Tension Testing of Nickel-Titanium Superelastic Materials
  • 2007 ASTM F2516-07 Standard Test Method for Tension Testing of Nickel-Titanium Superelastic Materials
  • 2006 ASTM F2516-06 Standard Test Method for Tension Testing of Nickel-Titanium Superelastic Materials
  • 2005 ASTM F2516-05 Standard Test Method for Tension Testing of Nickel-Titanium Superelastic Materials



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