ASTM F2915-2011 Standard Specification for Additive Manufacturing File Format (AMF)《叠层制造文件格式(AMF)的标准规范》.pdf
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1、Designation: F2915 11Standard Specification forAdditive Manufacturing File Format (AMF)1This standard is issued under the fixed designation F2915; the number immediately following the designation indicates the year oforiginal adoption or, in the case of revision, the year of last revision. A number
2、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 describes a framework for an inter-change format to address the current and future needs ofadditive manufacturing technolog
3、y. For the last three decades,the STL file format has been the industry standard for trans-ferring information between design programs and additivemanufacturing equipment. An STL file contains informationonly about a surface mesh and has no provisions for represent-ing color, texture, material, subs
4、tructure, and other propertiesof the fabricated target object. As additive manufacturingtechnology is quickly evolving from producing primarilysingle-material, homogenous shapes to producing multimate-rial geometries in full color with functionally graded materialsand microstructures. There is a gro
5、wing need for a standardinterchange file format that can support these features.1.2 The additive manufacturing file (AMF) may be pre-pared, displayed, and transmitted on paper or electronically,provided the information required by this specification isincluded. When prepared in a structured electron
6、ic format,strict adherence to an extensible markup language (XML)(1)2schema is required to support standards-compliant interoper-ability. The adjunct to this specification contains a W3C XMLschema and Annex A1 contains an implementation guide forsuch representation.1.3 This standard does not purport
7、 to address all of thesafety concerns, if any, associated with its use. It is theresponsibility 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.1.4 This standard also does not purport to addres
8、s anycopyright and intellectual property concerns, if any, associatedwith its use. It is the responsibility of the user of this standardto meet any intellectual property regulations on the use ofinformation encoded in this file format.2. Terminology2.1 Definitions Specific to This StandardThis secti
9、on pro-vides definitions of terms specific to this standardthese termsalso include the common terms seen in many documentsrelated to extensible markup language (XML) and additivemanufacturing. See also Annex A1 for definitions of additionalterms specific to this specification.2.1.1 attribute, nchara
10、cteristic of data, representing oneor more aspects, descriptors, or elements of the data.2.1.1.1 DiscussionIn object-oriented systems, attributesare characteristics of objects. In XML, attributes are charac-teristics of elements.2.1.2 comments, nall text comments associated with anydata within the a
11、dditive manufacturing file (AMF) not contain-ing core relevant, technical, or administrative data and notcontaining pointers to references external to the AMF.2.1.3 domain-specific applications, nadditional, optionalsets of AMF data elements specific to such areas as noveladditive manufacturing proc
12、esses, enterprise workflow, andsupply chain management.2.1.3.1 DiscussionData sets for optional AMF domain-specific applications will be developed and balloted separatelyfrom this specification.2.1.4 extensible markup language, XML, nstandard fromthe WorldWideWeb Consortium (W3C) that provides forta
13、gging of information content within documents offering ameans for representation of content in a format that is bothhuman and machine readable.2.1.4.1 DiscussionThrough the use of customizable stylesheets and schemas, information can be represented in auniform way, allowing for interchange of both c
14、ontent (data)and format (metadata).2.1.5 STL (file format), nfile format native to the stereo-lithography computer-aided drafting (CAD) software that issupported by many software packages; it is widely used forrapid prototyping and computer-aided manufacturing.1This specification is under the jurisd
15、iction of ASTM Committee F42 onAdditive Manufacturing Technologies and is the direct responsibility of Subcom-mittee F42.04 on Design.Current edition approved June 1, 2011. Published July 2011. DOI: 10.1520/F2915-11.2The boldface numbers in parentheses refer to the list of references at the end ofth
16、is standard.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.2.1.5.1 DiscussionSTL files describe only the surfacegeometry of a three-dimensional object as a tessellation oftriangles without any representation of color, texture, or ot
17、hercommon CAD model attributes. The STL format specifies boththe American Standard Code for Information Interchange(ASCII) and binary representations.3. Key Considerations3.1 There is a natural a tradeoff between the generality of afile format and its usefulness for a specific purpose. Thus,features
18、 designed to meet the needs of one community mayhinder the usefulness of a file format for other uses. To besuccessful across the field of additive manufacturing, this fileformat is designed to address the following concerns:3.1.1 Technology IndependenceThe file format shall de-scribe an object in a
19、 general way such that any machine canbuild it to the best of its ability. It is resolution and layer-thickness independent and does not contain information spe-cific to any one manufacturing process or technique. This doesnot negate the inclusion of properties that only certain ad-vanced machines s
20、upport (for example, color, multiple mate-rials, and so forth), but these are defined in such a way as toavoid exclusivity.3.1.2 SimplicityTheAMF file format is easy to implementand understand. The format can be read and debugged in asimple ASCII text viewer to encourage understanding andadoption. N
21、o identical information is stored in multiple places.3.1.3 ScalabilityThe file format scales well with increasein part complexity and size and with the improving resolutionand accuracy of manufacturing equipment. This includes beingable to handle large arrays of identical objects, complexrepeated in
22、ternal features (for example, meshes), smoothcurved surfaces with fine printing resolution, and multiplecomponents arranged in an optimal packing for printing.3.1.4 PerformanceThe file format should enable reason-able duration (interactive time) for read-and-write operationsand reasonable file sizes
23、 for a typical large object. Detailedperformance data are provided in Appendix X1.3.1.5 Backwards CompatibilityAny existing STL file canbe converted directly into a valid AMF file without any loss ofinformation and without requiring any additional information.AMF files are also easily converted back
24、 to STL for use onlegacy systems, although advanced features will be lost. Thisformat maintains the triangle-mesh geometry representation totake advantage of existing optimized slicing algorithm andcode infrastructure already in existence.3.1.6 Future CompatibilityTo remain useful in a rapidlychangi
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