ASTM F 3184 : 2016
Superseded
A superseded Standard is one, which is fully replaced by another Standard, which is a new edition of the same Standard.
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Standard Specification for Additive Manufacturing Stainless Steel Alloy (UNS S31603) with Powder Bed Fusion
Hardcopy , PDF
05-02-2024
English
26-10-2016
This specification covers additive manufacturing of UNS S31603 components by means of laser and electron beam-based full melt powder bed fusion processes.
Committee |
F 42
|
DocumentType |
Standard
|
Pages |
9
|
PublisherName |
American Society for Testing and Materials
|
Status |
Superseded
|
SupersededBy |
1.1This specification covers additive manufacturing of UNS S31603 components by means of laser and electron beam-based full melt powder bed fusion processes. The components produced by these processes are used typically in applications that require mechanical properties similar to machined forgings and wrought products. Components manufactured to this specification are often, but not necessarily, post processed via machining, grinding, electrical discharge machining (EDM), polishing, and so forth to achieve desired surface finish and critical dimensions.
1.2This specification is intended for the use of purchasers or producers, or both, of additively manufactured UNS S31603 components for defining the requirements and ensuring component properties.
1.3Users are advised to use this specification as a basis for obtaining components that will meet the minimum acceptance requirements established and revised by consensus of the members of the committee.
1.4User requirements considered more stringent may be met by the addition to the purchase order of one or more supplementary requirements, which may include, but are not limited to, those listed in Supplementary Requirements S1–S16.
1.5The compositional requirements specified in this specification do not meet the compositional requirements for surgical implant grade UNS S31673.
1.6The values stated in SI units are to be regarded as the standard. Other units are included only for informational purposes.
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 and health practices and determine the applicability of regulatory limitations prior to use.
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ASTM E 1820 : 2016 | Standard Test Method for Measurement of Fracture Toughness |
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ASTM E 407 : 2023 | Standard Practice for Microetching Metals and Alloys |
ASTM E 1019 : 2002 | Standard Test Methods for Determination of Carbon, Sulfur, Nitrogen, and Oxygen in Steel and in Iron, Nickel, and Cobalt Alloys |
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ASTM E 1479 : 1999 | Standard Practice for Describing and Specifying Inductively-Coupled Plasma Atomic Emission Spectrometers |
ASTM E 1019 : 2011 | Standard Test Methods for Determination of Carbon, Sulfur, Nitrogen, and Oxygen in Steel, Iron, Nickel, and Cobalt Alloys by Various Combustion and Fusion Techniques |
ASTM A 1080 : 2015 | Standard Practice for Hot Isostatic Pressing of Steel, Stainless Steel, and Related Alloy Castings |
ASTM A 262 : 2015 : R2021 | Standard Practices for Detecting Susceptibility to Intergranular Attack in Austenitic Stainless Steels |
ASTM E 1820 : 2023 : REV A | Standard Test Method for Measurement of Fracture Toughness |
ASTM B 769 : 2011 : R2016 | Standard Test Method for Shear Testing of Aluminum Alloys |
ASTM E 29 : 2022 | Standard Practice for Using Significant Digits in Test Data to Determine Conformance with Specifications |
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