ASTM F2977 Standard Test Method for Small Punch Testing of Polymeric Biomaterials Used in Surgical Implants
Данный раздел/документ содержится в продуктах:
- Техэксперт: Машиностроительный комплекс
- Картотека зарубежных и международных стандартов
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- IEC 61788-12 Superconductivity - Part 12: Matrix to superconductor volume ratio measurement - Copper to noncopper volume ratio of Nb3Sn composite superconducting wires - Edition 2.0
- BSI PD IEC/TR 61788-20 Superconductivity Part 20: Superconducting wires — Categories of practical superconducting wires — General characteristics and guidance
- IEC 61788-12 Superconductivity - Part 12: Matrix to superconductor volume ratio measurement - Copper to noncopper volume ratio of Nb3Sn composite superconducting wires - Edition 2.0
- BSI BS EN 61788-21 Superconductivity Part 21: Superconducting wires — Test methods for practical superconducting wires — General characteristics and guidance
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- CENELEC EN 61788-10 Superconductivity Part 10: Critical temperature measurement Critical temperature of composite superconductors by a resistance method
- BSI BS EN 61788-21 Superconductivity Part 21: Superconducting wires — Test methods for practical superconducting wires — General characteristics and guidance
- IEC 61788-12 Superconductivity - Part 12: Matrix to superconductor volume ratio measurement - Copper to noncopper volume ratio of Nb3Sn composite superconducting wires - Edition 2.0
- BSI PD IEC/TR 61788-20 Superconductivity Part 20: Superconducting wires — Categories of practical superconducting wires — General characteristics and guidance
- IEC 61788-12 Superconductivity - Part 12: Matrix to superconductor volume ratio measurement - Copper to noncopper volume ratio of Nb3Sn composite superconducting wires - Edition 2.0
- BSI BS EN 61788-21 Superconductivity Part 21: Superconducting wires — Test methods for practical superconducting wires — General characteristics and guidance
- 29.050
- CENELEC EN 61788-10 Superconductivity Part 10: Critical temperature measurement Critical temperature of composite superconductors by a resistance method
- BSI BS EN 61788-21 Superconductivity Part 21: Superconducting wires — Test methods for practical superconducting wires — General characteristics and guidance
- IEC 61788-12 Superconductivity - Part 12: Matrix to superconductor volume ratio measurement - Copper to noncopper volume ratio of Nb3Sn composite superconducting wires - Edition 2.0
- BSI PD IEC/TR 61788-20 Superconductivity Part 20: Superconducting wires — Categories of practical superconducting wires — General characteristics and guidance
- IEC 61788-12 Superconductivity - Part 12: Matrix to superconductor volume ratio measurement - Copper to noncopper volume ratio of Nb3Sn composite superconducting wires - Edition 2.0
- BSI BS EN 61788-21 Superconductivity Part 21: Superconducting wires — Test methods for practical superconducting wires — General characteristics and guidance
- CENELEC EN 61788-10 Superconductivity Part 10: Critical temperature measurement Critical temperature of composite superconductors by a resistance method
- CENELEC EN 61788-10 Superconductivity Part 10: Critical temperature measurement Critical temperature of composite superconductors by a resistance method
- CENELEC EN 61788-18 Superconductivity - Part 18: Mechanical properties measurement - Room temperature tensile test of Ag- and/or Ag alloy-sheathed Bi-2223 and Bi-2212 composite superconductors
- BSI BS EN 61788-21 Superconductivity Part 21: Superconducting wires — Test methods for practical superconducting wires — General characteristics and guidance
- IEC 61788-12 Superconductivity - Part 12: Matrix to superconductor volume ratio measurement - Copper to noncopper volume ratio of Nb3Sn composite superconducting wires - Edition 2.0
- BSI PD IEC/TR 61788-20 Superconductivity Part 20: Superconducting wires — Categories of practical superconducting wires — General characteristics and guidance
- IEC 61788-12 Superconductivity - Part 12: Matrix to superconductor volume ratio measurement - Copper to noncopper volume ratio of Nb3Sn composite superconducting wires - Edition 2.0
- BSI BS EN 61788-21 Superconductivity Part 21: Superconducting wires — Test methods for practical superconducting wires — General characteristics and guidance
- BSI BS EN 61788-21 Superconductivity Part 21: Superconducting wires — Test methods for practical superconducting wires — General characteristics and guidance
- IEC 61788-12 Superconductivity - Part 12: Matrix to superconductor volume ratio measurement - Copper to noncopper volume ratio of Nb3Sn composite superconducting wires - Edition 2.0
- BSI PD IEC/TR 61788-20 Superconductivity Part 20: Superconducting wires — Categories of practical superconducting wires — General characteristics and guidance
- IEC 61788-12 Superconductivity - Part 12: Matrix to superconductor volume ratio measurement - Copper to noncopper volume ratio of Nb3Sn composite superconducting wires - Edition 2.0
- IEC 61788-12 Superconductivity - Part 12: Matrix to superconductor volume ratio measurement - Copper to noncopper volume ratio of Nb3Sn composite superconducting wires - Edition 2.0
- BSI PD IEC/TR 61788-20 Superconductivity Part 20: Superconducting wires — Categories of practical superconducting wires — General characteristics and guidance
- BSI PD IEC/TR 61788-20 Superconductivity Part 20: Superconducting wires — Categories of practical superconducting wires — General characteristics and guidance
- IEC 61788-18 Superconductivity – Part 18: Mechanical properties measurement – Room temperature tensile test of Ag- and/or Ag alloy-sheathed Bi-2223 and Bi-2212 composite superconductors - Edition 1.0
- ASTM E83 REV A Standard Practice for Verification and Classification of Extensometer Systems
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- Картотека зарубежных и международных стандартов
ASTM International
Standard Test Method for Small Punch Testing of Polymeric Biomaterials Used in Surgical Implants
N F2977
Annotation
This test method covers the determination of mechanical behavior of polymeric biomaterials by small punch testing of miniature disk specimens (0.5 mm in thickness and 6.4 mm in diameter). The test method has been established for characterizing surgical materials after ram extrusion or compression molding (1-3)2; for evaluating as-manufactured implants and sterilization method effects (4, 5); as well as for testing of implants that have been retrieved (explanted) from the human body (6, 7).
The results of the small punch test, namely the peak load, ultimate displacement, ultimate load, and work to failure, provide metrics of the yielding, ultimate strength, ductility, and toughness under multiaxial loading conditions. Because the mechanical behavior can be different when loaded under uniaxial and multiaxial loading conditions (8), the small punch test provides a complementary mechanical testing technique to the uniaxial tensile test. However, it should be noted that the small punch test results may not correlate with uniaxial tensile test results.
In addition to its use as a research tool in implant retrieval analysis, the small punch test can be used as a laboratory screening test to evaluate new materials with minimal material waste (1).
The small punch test has been applied to other polymers, including polymethyl methacrylate (PMMA) bone cement, polyacetal, and high density polyethylene (HDPE), ultra high molecular weight polyethylene (UHMWPE), and polyetheretherketone (PEEK) (2, 3, 5, 10, 11). This standard outlines general guidelines for the small punch testing of implantable polymers.
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.



