ASTM F 897 : 2019
Current
The latest, up-to-date edition.
Standard Test Method for Measuring Fretting Corrosion of Osteosynthesis Plates and Screws
Hardcopy , PDF
English
01-12-2019
Committee |
F 04
|
DocumentType |
Test Method
|
Pages |
5
|
PublisherName |
American Society for Testing and Materials
|
Status |
Current
|
Supersedes |
1.1This test method provides a screening test for determining the amount of metal loss from plates and screws used for osteosynthesis (internal fixation of broken bones) due to fretting corrosion in the contact area between the screw head and the plate hole countersink area. The implants are used in the form they would be used clinically. The machine described generates a relative motion between plates and screws which simulates one type of motion pattern that can occur when these devices are used clinically.
1.2Since the environmental and stress conditions used in this test method may not be identical to those experienced by bone plates in the human body, this test method may produce fretting corrosion rates that are lower or higher than those experienced in practice. The recommended axial load of 400 N was selected as being in a range where the amount of fretting corrosion is not sensitive to small changes in axial load (1).2 The combination of the recommended load and angular displacement are such that a measurable amount of fretting corrosion of surgical alloys occurs in a comparatively short period of time (7 to 14 days). (Refs 1-3)
1.3The device is designed so as to facilitate sterilization of the test specimens and test chambers to permit testing with proteinaceous solutions that would become contaminated with microbial growth in nonsterile conditions.
1.4The specimens used can be standard osteosynthesis implants or can be materials fabricated into the appropriate shapes.
1.5This test method may be used for testing the fretting corrosion of metal plates and screws of similar or different alloy compositions, or it may be used for testing the fretting corrosion of metal-nonmetal combinations. This test method may also be used for wear or degradation studies of nonmetallic materials. This test method may be used as a screening test to rank the corrosivities of saline or proteinaceous solutions, or to rank metal-to-metal couples for resistance to fretting corrosion, or to study other material combinations.
1.6The values stated in either SI units or inch-pound units are to be regarded separately as standard. The values stated in each system are not necessarily exact equivalents; therefore, to ensure conformance with the standard, each system shall be used independently of the other, and values from the two systems shall not be combined.
1.7This 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, health, and environmental practices and determine the applicability of regulatory limitations prior to use.
1.8This international standard was developed in accordance with internationally recognized principles on standardization established in the Decision on Principles for the Development of International Standards, Guides and Recommendations issued by the World Trade Organization Technical Barriers to Trade (TBT) Committee.
ASTM D 1886 : 2014 | Standard Test Methods for Nickel in Water |
ASTM F 86 : 2013 | Standard Practice for Surface Preparation and Marking of Metallic Surgical Implants |
ASTM F 543 : 2023 | Standard Specification and Test Methods for Metallic Medical Bone Screws |
ASTM F 543 : 2002 : EDT 1 | Standard Specification and Test Methods for Metallic Medical Bone Screws |
ASTM F 382 : 2017 | Standard Specification and Test Method for Metallic Bone Plates |
ASTM F 382 : 2024 | Standard Specification and Test Method for Metallic Bone Plates |
ASTM D 1886 : 2014 : R2021 : EDT 1 | Standard Test Methods for Nickel in Water |
ASTM F 543 : 2017 | Standard Specification and Test Methods for Metallic Medical Bone Screws |
ASTM F 86 : 2021 | Standard Practice for Surface Preparation and Marking of Metallic Surgical Implants |
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