Standard Specification for Wrought Titanium-15 Molybdenum Alloy for Surgical Implant Applications (UNS R58150)

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1.1 This specification covers the chemical, mechanical, and metallurgical requirements for wrought titanium-15 molybdenum alloy to be used in the manufacture of surgical implants (1).2  
1.2 The values stated in either SI units or inch-pound units are to be regarded separately as standard. The values stated in each system may not be exact equivalents; therefore, each system shall be used independently of each other. Combining values from the two systems may result in non-conformance with the standard.

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ASTM F2066-13e1 - Standard Specification for Wrought Titanium-15 Molybdenum Alloy for Surgical Implant Applications (UNS R58150)
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NOTICE: This standard has either been superseded and replaced by a new version or withdrawn.
Contact ASTM International (www.astm.org) for the latest information
´1
Designation:F2066 −13
Standard Specification for
Wrought Titanium-15 Molybdenum Alloy for Surgical Implant
1
Applications (UNS R58150)
This standard is issued under the fixed designation F2066; the number immediately following the designation indicates the year of
original adoption or, in the case of revision, the year of last revision.Anumber in parentheses indicates the year of last reapproval.A
superscript epsilon (´) indicates an editorial change since the last revision or reapproval.
1
ε NOTE—The designation was corrected editorially in December 2013.
1. Scope* toryandReactiveMetalsandTheirAlloysbyCombustion
Analysis
1.1 This specification covers the chemical, mechanical, and
E2371Test Method for Analysis of Titanium and Titanium
metallurgical requirements for wrought titanium-15 molybde-
AlloysbyDirectCurrentPlasmaandInductivelyCoupled
num alloy to be used in the manufacture of surgical implants
2 Plasma Atomic Emission Spectrometry (Performance-
(1).
Based Test Methodology)
1.2 The values stated in either SI units or inch-pound units
F67Specification for Unalloyed Titanium, for Surgical Im-
are to be regarded separately as standard. The values stated in
plant Applications (UNS R50250, UNS R50400, UNS
each system may not be exact equivalents; therefore, each
R50550, UNS R50700)
system shall be used independently of each other. Combining
F748PracticeforSelectingGenericBiologicalTestMethods
values from the two systems may result in non-conformance
for Materials and Devices
with the standard.
F981Practice for Assessment of Compatibility of Biomate-
rials for Surgical Implants with Respect to Effect of
2. Referenced Documents
Materials on Muscle and Insertion into Bone
3
2.1 ASTM Standards:
F1408Practice for Subcutaneous ScreeningTest for Implant
E8/E8MTest Methods for Tension Testing of Metallic Ma-
Materials
terials
IEEE/ASTM SI 10American National Standard for Use of
E29Practice for Using Significant Digits in Test Data to
theInternationalSystemofUnits(SI):TheModernMetric
Determine Conformance with Specifications
System
E112Test Methods for Determining Average Grain Size
4
2.2 Aerospace Material Specifications:
E290Test Methods for Bend Testing of Material for Ductil-
AMS 2249Chemical Check Analysis Limits, Titanium and
ity
Titanium Alloys
E539TestMethodforAnalysisofTitaniumAlloysbyX-Ray
AMS 2631Ultrasonic Inspection — Titanium and Titanium
Fluorescence Spectrometry
Alloy Bar and Billet
E1409TestMethodforDeterminationofOxygenandNitro-
AMS 2380Approval and Control of Premium Quality Tita-
gen in Titanium and TitaniumAlloys by Inert Gas Fusion
nium Alloys
E1447Test Method for Determination of Hydrogen in Tita-
5
2.3 ISO Standards:
nium and Titanium Alloys by Inert Gas Fusion Thermal
ISO 6892Metallic Materials — Tensile Testing at Ambient
Conductivity/Infrared Detection Method
Temperature
E1941Test Method for Determination of Carbon in Refrac-
ISO9001 Quality Management Systems Requirements
2.4 American Society for Quality Standard:
1
This specification is under the jurisdiction of ASTM Committee F04 on
ASQ C1Specification of General Requirements for a Qual-
Medical and Surgical Materials and Devices and is the direct responsibility of
6
ity Control Program
Subcommittee F04.12 on Metallurgical Materials.
Current edition approved Oct. 1, 2013. Published November 2013. Originally
approved in 2001. Last previous edition approved in 2011 as F2066–11. DOI:
10.1520/F2066–13E01.
2 4
Theboldfacenumbersinparenthesesrefertothelistofreferencesattheendof Available from Society of Automotive Engineers (SAE), 400 Commonwealth
this standard. Dr., Warrendale, PA 15096-0001, http://www.sae.org.
3 5
For referenced ASTM standards, visit the ASTM website, www.astm.org, or Available fromAmerican National Standards Institute (ANSI), 25 W. 43rd St.,
contact ASTM Customer Service at service@astm.org. For Annual Book of ASTM 4th Floor, New York, NY 10036, http://www.ansi.org.
6
Standards volume information, refer to the standard’s Document Summary page on Available fromAmerican Society for Quality (ASQ), 600 N. PlankintonAve.,
the ASTM website. Milwaukee, WI 53203, http://www.asq.org.
*A Summary of Changes section appears at the end of this standard
Copyright © ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959. United States
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F2066−13
3. Terminology 6. Materials and Manufacture
3.1 Definitions of Terms Specific to This Standard: 6.1 Finish—The mill product may be furnished to the
implant manufacturer as descaled or pickled, abrasive-blasted,
3.1.1 alpha + beta annealed, n—the condition of the mate-
rial that is obtained if, following the final hot-working or chemically milled, ground, machined, peeled, polished, com-
binations of these operations, or as specified by the purchaser.
...

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