ASTM F 3318 : 2018
Current
The latest, up-to-date edition.
Standard for Additive Manufacturing – Finished Part Properties – Specification for AlSi10Mg with Powder Bed Fusion – Laser Beam
Hardcopy , PDF
English
01-05-2018
CONTAINED IN VOL. 10.04, 2018 Defines additively manufactured AlSi10Mg (similar to DIN EN 1706:2013-12 EN AC-43000) parts using powder bed fusion such as laser melting.
Committee |
F 42
|
DocumentType |
Standard
|
Pages |
8
|
PublisherName |
American Society for Testing and Materials
|
Status |
Current
|
1.1This specification covers additively manufactured AlSi10Mg (similar to DIN EN 1706:2013-12 EN AC-43000) parts using powder bed fusion such as laser melting. The parts produced by these processes are used typically in applications that require mechanical properties similar to or exceeding those of cast aluminum products of equivalent alloys. Parts 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 AlSi10Mg parts for defining the requirements and ensuring part properties.
1.3Users are advised to use this specification as a basis for obtaining parts 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 values stated in SI units are to be regarded as the standard. Other units are included only for informational purposes.
1.6This 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.
1.7This 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.
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ASTM E 1820 : 2013 : EDT 1 | Standard Test Method for Measurement of Fracture Toughness |
ASTM E 1820 : 2015 : REV A | Standard Test Method for Measurement of Fracture Toughness |
ASTM E 1820 : 2022 | Standard Test Method for Measurement of Fracture Toughness |
ASTM E 1450 : 2016 : REDLINE | Standard Test Method for Tension Testing of Structural Alloys in Liquid Helium |
ASTM E 1820 : 2009 | Standard Test Method for Measurement of Fracture Toughness |
ASTM E 2368 : 2010 | Standard Practice for Strain Controlled Thermomechanical Fatigue Testing |
ASTM E 1820 : 2005 : REV A | Standard Test Method for Measurement of Fracture Toughness |
ASTM E 1450 : 1992 : R1998 : EDT 1 | Standard Test Method for Tension Testing of Structural Alloys in Liquid Helium |
ASTM E 1251 : 2017 : REV A | Standard Test Method for Analysis of Aluminum and Aluminum Alloys by Spark Atomic Emission Spectrometry |
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