ASTM F2033-2012 Standard Specification for Total Hip Joint Prosthesis and Hip Endoprosthesis Bearing Surfaces Made of Metallic Ceramic and Polymeric Materials《金属陶瓷和聚合材料制全髋关节假体和髋部内用.pdf
《ASTM F2033-2012 Standard Specification for Total Hip Joint Prosthesis and Hip Endoprosthesis Bearing Surfaces Made of Metallic Ceramic and Polymeric Materials《金属陶瓷和聚合材料制全髋关节假体和髋部内用.pdf》由会员分享,可在线阅读,更多相关《ASTM F2033-2012 Standard Specification for Total Hip Joint Prosthesis and Hip Endoprosthesis Bearing Surfaces Made of Metallic Ceramic and Polymeric Materials《金属陶瓷和聚合材料制全髋关节假体和髋部内用.pdf(5页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: F2033 12Standard Specification forTotal Hip Joint Prosthesis and Hip Endoprosthesis BearingSurfaces Made of Metallic, Ceramic, and PolymericMaterials1This standard is issued under the fixed designation F2033; the number immediately following the designation indicates the year oforiginal
2、 adoption or, in the case of revision, 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 requirements for the mat-ing bearing
3、surfaces of total hip prostheses and hip endopros-theses. More specifically, this specification covers hip jointreplacement of the ball-and-socket configuration.1.2 This specification covers the sphericity, surface finishrequirements, and dimensional tolerances for the sphericalarticulating metallic
4、 or ceramic femoral heads of total hip jointprostheses.1.3 This specification covers the sphericity, surface finishrequirements, and dimensional tolerances for the sphericalconcave mating surface of metallic and ceramic acetabularcomponents, including the inner polymeric bearing surface ofbipolar he
5、ads, and the surface finish requirements and dimen-sional tolerances for the spherical concave mating surface ofpolymeric acetabular components.1.4 This specification covers the sphericity and surfacefinish requirements for the spherical metallic or ceramicfemoral heads of hip endoprostheses, and th
6、e outer bearingsurface of bipolar heads.1.5 This specification is intended for standard practiceregarding the design of total hip joint bearing surfaces.Additionally, the tolerances imposed on the polymeric portionof the bearing surface are intentionally large due totemperature-induced size changes
7、and other manufacturingconcerns. Some manufacturing methods or designs may inten-tionally reduce the diameter of the polymeric bearing to moreclosely mate with the diameter of the head.1.6 The values stated in SI units are to be regarded as thestandard. The values given in parentheses are for inform
8、ationonly.2. Referenced Documents2.1 ISO Documents:2ISO 4287/1 Surface RoughnessTerminologyISO 4291 Methods for the Assessment of Departure fromRoundness, Measurement of Variations, and RadiusISO 5436 Surface Texture of ProductsCalibration Speci-mens for Stylus InstrumentsISO 6318-1985 Measurement o
9、f RoundnessTerms, Defi-nitions, and Parameters of Roundness (Equivalent to BS3730 Part 1: 1987)ISO 7206-1 Implants for SurgeryPartial and Total HipJoint ProsthesisPart I: Classification, Designation ofDimensions, and RequirementsISO 7206-2 Implants for SurgeryPartial and Total HipJoint ProsthesisPar
10、t II: Bearing Surfaces Made of Me-tallic and Plastics Materials2.2 ANSI/ASME Document:2ANSI/ASME B46.1 -1995 Surface Texture3. Dimensions and Characteristics3.1 Definition:3.1.1 pole of the articulating surfaceThe pole of anarticulating surface is defined by a point at the intercept of therevolution
11、 axis of the component and the spherical articulationsurface.3.1.2 equator of the articulating surfaceThe equator ofthe articulating surface is the circle normal to the revolutionaxis of the component, the center of which is the center of thespherical articulating surface.3.1.3 cutoff lengthThe cuto
12、ff length defines the maximalvalue of the mean twist of profile irregularities that shall beconsidered in the roughness measurement, that is, with a cutofflength of 0.8 mm, the profile irregularities with a mean twisthigher than 0.8 mm shall not be considered.1This specification is under the jurisdi
13、ction of ASTM Committee F04 onMedical and Surgical Materials and Devices and is the direct responsibility ofSubcommittee F04.22 on Arthroplasty.Current edition approved Feb. 15, 2012. Published March 2012. Originallyapproved in 2000. Last previous edition approved in 2005 as F2033 05. DOI:10.1520/F2
14、033-12.2Available from American National Standards Institute (ANSI), 25 W. 43rd St.,4th Floor, New York, NY 10036, http:/www.ansi.org.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.3.1.3.1 Precise definitions of roughness parameters
15、, cutofflength, and roundness are given in ISO 4287/1, ISO 5436,ISO 4291, and ISO 6318:1985.3.1.4 stylus tipThe stylus tip is the tip of the measuringdevice (diamond or Focodyn) which measures the surfaceroughness. A stylus has a pseudoconical shape with a hemi-spherical tip. Typical sizes for the t
16、ip are 2, 5, or 10 m. Theselection of the stylus tip is dependent on the range of theroughness measured.3.2 Total Hip Joint Prosthesis:3.2.1 Femoral Head:3.2.1.1 When inspected visually under 5-diopter magnifica-tion, the bearing surface shall be free from particles, scratches,and score marks other
17、than those arising from the finishingprocess.3.2.1.2 sphericityThe metal or ceramic spherical bearingsurface of a femoral hip component shall have a departure fromroundness of not greater than 10 m (390 in.) This shall bemeasured as DZzin accordance with the Minimum Zone CenterMethod in ISO 4291 mea
18、suring the roundness in more thantwo planes, or by the method in Appendix X2. For metallicfemoral heads used in conjunction with metallic acetabularcomponents and ceramic femoral heads used in conjunctionwith ceramic acetabular components, the departure fromroundness values shall not be greater than
19、 5 m (200 in.).3.2.1.3 surface finishWhen measured in accordance withANSI/ASME B46.1, the spherical bearing surface of a femoralcomponent shall have a Ravalue not greater than 0.05 m (2in.). The measurements shall be taken at the location of thepole and 30 from the pole.3.2.1.4 dimensional tolerance
20、sThe spherical bearing sur-face shall have a diameter equal to the nominal diameter witha tolerance of +0.0, 0.2 mm (+0.000, 0.008 in.)3.2.1.5 For metallic femoral heads used in conjunction withmetallic acetabular components, or ceramic femoral heads usedin conjunction with ceramic acetabular compon
21、ents, the manu-facturer should report the diameters and tolerances of theheads, if different from the tolerance values in 3.2.1.4.3.2.2 Polymeric Acetabular Components:3.2.2.1 When inspected visually under 5-diopter magnifica-tion, the bearing surface shall be free from particles, scratches,and scor
22、e marks other than those arising from the finishingprocess.3.2.2.2 surface finishWhen measured in accordance withANSI/ASME B46.1, the spherical bearing surface of theacetabular component shall have a Ravalue not greater than 2m (80 in.)3.2.2.3 dimensional tolerancesThe spherical socket shallhave a d
23、iameter equal to the nominal diameter within atolerance of +0.3, 0.0 mm (+0.012, 0.0 in) at a temperatureof 20 6 2C (68 6 4F). The socket should be oversized to thenominal within the given tolerance range.3.2.3 Metallic Acetabular Components:3.2.3.1 When inspected visually under 5-diopter magnifica-
24、tion, the bearing surface shall be free from particles, scratches,and score marks other than those arising from the finishingprocess.3.2.3.2 sphericityThe spherical bearing surface of themetal acetabular component shall have a departure fromroundness of not greater than 15 m (590 in.). This shall be
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