ASTM F2921-2011e2 Standard Terminology for Additive ManufacturingCoordinate Systems and Test Methodologies《叠层制造中所用标准术语 坐标系统和测试方法》.pdf
《ASTM F2921-2011e2 Standard Terminology for Additive ManufacturingCoordinate Systems and Test Methodologies《叠层制造中所用标准术语 坐标系统和测试方法》.pdf》由会员分享,可在线阅读,更多相关《ASTM F2921-2011e2 Standard Terminology for Additive ManufacturingCoordinate Systems and Test Methodologies《叠层制造中所用标准术语 坐标系统和测试方法》.pdf(13页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: F2921 112Standard Terminology forAdditive ManufacturingCoordinate Systems and TestMethodologies1This standard is issued under the fixed designation F2921; the number immediately following the designation indicates the year oforiginal adoption or, in the case of revision, the year of las
2、t revision. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon () indicates an editorial change since the last revision or reapproval.1NOTEReferences ISO 527 and ISO 6892 were added editorially in August 2012.2NOTENote 1 was added editorially in September 2012.1. Sco
3、pe1.1 This terminology includes terms, definitions of terms,descriptions of terms, nomenclature, and acronyms associatedwith coordinate systems and testing methodologies for additivemanufacturing (AM) technologies in an effort to standardizeterminology used by AM users, producers, researchers,educat
4、ors, press/media, and others, particularly when reportingresults from testing of parts made on AM systems. Termsincluded cover definitions for machines/systems and theircoordinate systems plus the location and orientation of parts. Itis intended, where possible, to be compliant with ISO 841 andto cl
5、arify the specific adaptation of those principles to additivemanufacturing.NOTE 1The applicability of this standard to cladding has to beevaluated. Discussions are under progress.1.2 This standard does not purport to address all of thesafety concerns, if any, associated with its use. It is therespon
6、sibility 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:2D638 Test Method for Tensile Properties of PlasticsE8/E8M Test Methods for Tension Testing of
7、 Metallic Ma-terialsF2792 Terminology for Additive ManufacturingTechnologies,2.2 ISO Standard:3ISO 841 Industrial Automation Systems and IntegrationNumerical Control of MachinesCoordinate System andMotion NomenclatureISO 527 Plastics Determination of tensile propertiesISO 6892 Metallic materials Ten
8、sile testing Part 1:Method of test at room temperature3. Significance and Use3.1 Although many additive manufacturing systems arebased heavily upon the principles of Computer NumericalControl (CNC), the coordinate systems and nomenclaturespecific to CNC are not sufficient to be applicable across the
9、full spectrum of additive manufacturing equipment. This ter-minology expands upon the principles of ISO 841 and appliesthem specifically to additive manufacturing. Although thisterminology is intended to complement ISO 841, if thereshould arise any conflict, this terminology shall have priorityfor a
10、dditive manufacturing applications. For any issues notcovered in this terminology, the principles in ISO 841 may beapplied.3.2 Furthermore, this terminology does not prescribe the useof any specific existing testing methodologies or standards thatpractitioners of AM may wish to employ for testing pu
11、rposes;however, it is expected that practitioners will employ appro-priate existing methodologies and standards to test parts madeby AM.4. Terminology4.1 DefinitionsDefinitions shall be in accordance withTerminology F2792 and the following:1This terminology is under the jurisdiction of ASTM Committe
12、e F42 onAdditive Manufacturing Technologies and is the direct responsibility of Subcom-mittee F42.01 on Test Methods.Current edition approved July 15, 2011. Published September 2011. DOI:10.1520/F292111E02.2For referenced ASTM standards, visit the ASTM website, www.astm.org, orcontact ASTM Customer
13、Service at serviceastm.org. For Annual 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.Copyright ASTM International
14、, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959. United States1Terms and DefinitionsAM Machines and their Coordinate Systemsbuild platform, nof a machine, any base which provides asurface upon which the build is started and supportedthroughout the build process (see A1.1).DISC
15、USSIONThe machine build platform may be solid or perforatedand made from a wide variety of materials and constructions.DISCUSSIONIn some systems the parts are built attached to the buildplatform, either directly or through a support structure. In othersystems, such as powder bed systems, no direct m
16、echanical fixturebetween the build and the platform may be required.build surface, narea where material is added, normally onthe last deposited layer which becomes the foundation uponwhich the next layer is formed.DISCUSSIONFor the first layer the build surface is often the buildplatform.DISCUSSION
17、If the orientation of the material deposition or consoli-dation means, or both, is variable, it may be defined relative to the buildsurface (for example, a blown powder head may be kept normal to it.See also Z axis discussion).front, nof a machine, shall be designated by the machinebuilder.DISCUSSIO
18、NGenerally, this is the side of the machine that theoperator faces to access the user interface or primary viewing window,or both. (See A1.1).machine coordinate system, na three-dimensional Carte-sian coordinate system as defined by a fixed point on thebuild platform “with the three principal axes l
19、abeled X, Y,and Z , with rotary axes about each of theses axes labeled A,B, and C , respectively” (see A1.1, A1.2, and A1.3) as statedin ISO 841.origin, na designated reference point at which the threeprimary axes in a Cartesian coordinate system intersect.Synonyms: zero point, or (0, 0, 0) when usi
20、ng X, Y, and Zcoordinates.build volume origin, nshall be located at the center of thebuild platform fixed on the build facing surface.DISCUSSIONThis is a universal origin reserved for the purpose ofidentifying the location of parts within the build volume. (See A1.1 andA1.2).machine origin, norigin
21、as defined by the original equip-ment manufacturer. Synonyms: machine home, machine zeropoint.Z axis, nof a machine, for processes employing planarlayerwise addition of material, shall run normal to the layers.(See A1.1 and A1.2.)DISCUSSIONFor processes employing planar layerwise addition ofmaterial
22、, the positive Z shall be the direction from the first layer to thesubsequent layers (see A1.1 and A1.2).DISCUSSIONWhere addition of material is possible from multipledirections (such as with blown powder systems), the Z axis may beidentified according to the principles in ISO 841 (section 4.3.3) wh
23、ichaddresses “swiveling or gimballing.”X axis, nof a machine, shall run perpendicular to the Z axisand parallel to the front of the machine. (See A1.1 and A1.2.)DISCUSSIONWhere possible, the X axis shall be horizontal andparallel with one of the edges of the build platform.DISCUSSIONThe positive X d
24、irection shall be from left to right asviewed from the front of the machine while facing toward the buildvolume origin.Y axis, nof a machine, shall run perpendicular to the Z andX axes with positive direction defined to make a right handset of coordinates as specified in ISO 841.DISCUSSIONWhere poss
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