ASTM F2989-2012 Standard Specification for Metal Injection Molded Unalloyed Titanium Components for Surgical Implant Applications《外科植入物应用的金属注射成型的非合金钛部件的标准规范》.pdf
《ASTM F2989-2012 Standard Specification for Metal Injection Molded Unalloyed Titanium Components for Surgical Implant Applications《外科植入物应用的金属注射成型的非合金钛部件的标准规范》.pdf》由会员分享,可在线阅读,更多相关《ASTM F2989-2012 Standard Specification for Metal Injection Molded Unalloyed Titanium Components for Surgical Implant Applications《外科植入物应用的金属注射成型的非合金钛部件的标准规范》.pdf(5页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: F2989 12Standard Specification forMetal Injection Molded Unalloyed Titanium Components forSurgical Implant Applications1This standard is issued under the fixed designation F2989; the number immediately following the designation indicates the year oforiginal adoption or, in the case of r
2、evision, the year of last revision. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon () indicates an editorial change since the last revision or reapproval.1. Scope1.1 This specification covers the chemical, mechanical, andmetallurgical requirements for three grade
3、s of metal injectionmolded (MIM) unalloyed titanium components in two types tobe used in the manufacture of surgical implants.1.2 The Type 1 MIM components covered by this specifi-cation may have been densified beyond their as-sintereddensity by post-sinter processing.1.3 Values in either inch-pound
4、 or SI are to be regardedseparately as standard. The values stated in each system maynot be exact equivalents; therefore each system shall be usedindependent of the other. Combining values from the twosystems may result in non-conformance with the specification.1.4 This standard does not purport to
5、address all of thesafety concerns, if any, associated with its use. It is theresponsibility of the user of this standard to establish appro-priate safety and health practices and determine the applica-bility of regulatory limitations prior to use.2. Referenced Documents2.1 ASTM Standards:2B243 Termi
6、nology of Powder MetallurgyB311 Test Method for Density of Powder Metallurgy (PM)Materials Containing Less Than Two Percent PorosityB923 Test Method for Metal Powder Skeletal Density byHelium or Nitrogen PycnometryE3 Guide for Preparation of Metallographic SpecimensE8/E8M Test Methods for Tension Te
7、sting of Metallic Ma-terialsE29 Practice for Using Significant Digits in Test Data toDetermine Conformance with SpecificationsE165 Practice for Liquid Penetrant Examination for GeneralIndustryE407 Practice for Microetching Metals and AlloysE539 Test Method forAnalysis ofTitaniumAlloys by X-RayFluore
8、scence SpectrometryE1409 Test Method for Determination of Oxygen and Nitro-gen in Titanium and Titanium Alloys by the Inert GasFusion TechniqueE1447 Test Method for Determination of Hydrogen in Tita-nium and Titanium Alloys by Inert Gas Fusion ThermalConductivity/Infrared Detection MethodE1941 Test
9、Method for Determination of Carbon in Refrac-tory and Reactive Metals and TheirAlloys by CombustionAnalysisE2371 Test Method for Analysis of Titanium and TitaniumAlloys by Atomic Emission Plasma SpectrometryE2626 Guide for Spectrometric Analysis of Reactive andRefractory MetalsF67 Specification for
10、Unalloyed Titanium, for Surgical Im-plant Applications (UNS R50250, UNS R50400, UNSR50550, UNS R50700)F601 Practice for Fluorescent Penetrant Inspection of Me-tallic Surgical ImplantsF629 Practice for Radiography of Cast Metallic SurgicalImplantsSI 10 American National Standard for Use of the Intern
11、a-tional System of Units (SI): The Modern Metric System2.2 ISO Standards:3ISO 5832-3 Implants for SurgeryMetallic MaterialsPart3: Wrought Titanium 6-Aluminum 4-Vanadium AlloyISO 6892 Metallic MaterialsTensile Testing at AmbientTemperatureISO 9001 Quality Management SystemsRequirements2.3 Aerospace M
12、aterial Specifications:4AMS 2249 Chemical Check Analysis Limits, Titanium andTitanium Alloys2.4 MPIF Standards:5Standard 10 Determination of the Tensile Properties ofPowder Metallurgy Materials1This specification is under the jurisdiction of ASTM Committee F04 onMedical and Surgical Materials and De
13、vices and is the direct responsibility ofSubcommittee F04.12 on Metallurgical Materials.Current edition approved Dec. 1, 2012. Published January 2013. DOI: 10.1520/F2989-12.2For referenced ASTM standards, visit the ASTM website, www.astm.org, orcontact ASTM Customer Service at serviceastm.org. For A
14、nnual Book of ASTMStandards volume information, refer to the standards Document Summary page onthe ASTM website.3Available from American National Standards Institute (ANSI), 25 W. 43rd St.,4th Floor, New York, NY 10036, http:/www.ansi.org.4Available from SAE International (SAE), 400 Commonwealth Dr.
15、, Warrendale,PA 15096-0001, http:/aerospace.sae.org.5Available from Metal Powder Industries Federation (MPIF), 105 College Rd.East, Princeton, NJ 08540, http:/www.mpif.org.Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959. United States1Standard 42 De
16、termination of Density of Compacted orSintered Powder Metallurgy ProductStandard 50 Preparing and Evaluating Metal InjectionMolded Sintered/Heat Treated Tension SpecimensStandard 63 Density Determinations of MIM Components(Gas Pycnometry)Standard 64 Terms Used in Metal Injection Molding3. Terminolog
17、y3.1 Definitions of powder metallurgy and MIM terms can befound in Terminology B243 and MPIF Standard 64.Additionaldescriptive information is available in the Related MaterialSection of Vol. 02.05 of the Annual Book of ASTM Standards.3.2 The materials produced by means of the metal injectionmolding
18、process are designated by the prefix, “MIM”, followedby the appropriate designation for the alloy grade. The MIMdesignates that it was made by metal injection molding.3.3 Definitions of Terms Specific to This Standard:3.3.1 absolute density, nthe value of density used tocharacterize a powder materia
19、l with a particular chemicalcomposition as if it were a fully dense material, completelyfree of porosity.3.3.1.1 DiscussionFor the purposes of this specification,the skeletal density (also referred to as pycnometer density)measured on the raw material powders using the pycnometrymethod of Test Metho
20、d B923 shall be used to represent theabsolute density of the particular chemical composition.3.3.2 debinding, va step between molding and sinteringwhere the majority of the binder used in molding is extractedby heat, solvent, a catalyst, or other techniques.3.3.3 feedstock, nin metal injection moldi
21、ng, a moldablemixture of metal powder and binder.3.3.4 feedstock batch, na specified quantity of feedstockmade up of the same lot of metallic powders and the same lotof binder materials mixed under the same conditions atessentially the same time.3.3.5 lot, na specified quantity of components made up
22、 ofthe same batch of feedstock, debound, sintered, and post-processed under the same conditions at essentially the sametime.3.3.6 metal injection molded component, nproduct fabri-cated by a metal injection molding process consisting ofmixing metal powders with binders to make a feedstock,introducing
23、 this feedstock into a mold by injection or othermeans, debinding to remove the binders, and sintering.3.3.7 near net component, na component that meetsdimensional tolerance as built with little post processing.3.3.8 net component, na component that meets dimen-sional tolerance as built with no post
24、 processing.3.3.9 pre-alloyed powder, npowder composed of two ormore elements that are alloyed in the powder manufacturingprocess in which the particles are of the same nominalcomposition throughout.3.3.10 relative density, nthe density ratio, often expressedas a percentage, of the density of a poro
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