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Delivery: <= 4 days. True-PDF full-copy in English will be manually translated and delivered via email. GB/T 41507-2022: Additive manufacturing - Terminology - Coordinate systems and test methodologies Status: Valid
Basic dataStandard ID: GB/T 41507-2022 (GB/T41507-2022)Description (Translated English): Additive manufacturing - Terminology - Coordinate systems and test methodologies Sector / Industry: National Standard (Recommended) Classification of Chinese Standard: J04 Word Count Estimation: 21,264 Issuing agency(ies): State Administration for Market Regulation, China National Standardization Administration GB/T 41507-2022: Additive manufacturing - Terminology - Coordinate systems and test methodologies---This is a DRAFT version for illustration, not a final translation. Full copy of true-PDF in English version (including equations, symbols, images, flow-chart, tables, and figures etc.) will be manually/carefully translated upon your order.Additive manufacturing - Terminology - Coordinate systems and test methodologies ICS 25.030 CCSJ04 National Standards of People's Republic of China Additive Manufacturing Terminology Coordinate Systems and Test Methods Published on 2022-07-11 2023-02-01 Implementation State Administration for Market Regulation Released by the National Standardization Administration directory Preface III 1 Scope 1 2 Normative references 1 3 Terms and Definitions 1 3.1 Additive Manufacturing Equipment and Coordinate Systems 1 3.2 Part position and orientation in forming space 3 4 Importance and use 3 5 Keywords 4 Appendix A (informative) This document and ISO /ASTM52921.2013 structure number comparison list 5 Appendix B (informative) List of technical differences between this document and ISO /ASTM52921.2013 and their reasons 6 Figures 7 mentioned in Appendix C (normative) terminology C.1 General Effect of Additive Manufacturing Equipment/System (Z-axis Up) Figure 7 C.2 General Effect of Additive Manufacturing Equipment/System (Z-axis Down) Figure 7 C.3 The origin of the forming space follows the right-hand rule 7 C.4 Minimum Bounding Box in Any Direction 8 C.5 Different types of bounding boxes8 C.6 Initial forming direction 9 C.7 Representation method of initial forming direction 10 C.8 Orthogonal orientation dimension 10 C.9 Left-right symmetry 11 C.10 Symmetry Simplified Orthogonal Direction Abbreviations 12 C.11 Part positioning 12 C.12 Part Reorientation 13 Reference 15 index 16 forewordThis document is in accordance with the provisions of GB/T 1.1-2020 "Guidelines for Standardization Work Part 1.Structure and Drafting Rules of Standardization Documents" drafted. This document is modified using ISO /ASTM52921.2013 "Additive Manufacturing Standard Terminology Coordinate System and Test Methods". Compared with ISO /ASTM52921.2013, this document has many adjustments in structure, and the structure number changes between the two documents are compared See Appendix A for a list. Compared with ISO /ASTM52921.2013, there are many technical differences in this document, in the outer margin of the clauses involved Marked with a vertical single line (|). See Appendix B for a list of these technical differences and their reasons. Please note that some content of this document may be patented. The issuing agency of this document assumes no responsibility for identifying patents. This document is proposed by China Machinery Industry Federation. This document is under the jurisdiction of the National Standardization Technical Committee for Additive Manufacturing (SAC/TC562). This document is drafted by. Shandong Chuangrui Additive Manufacturing Industry Technology Research Institute Co., Ltd., Beijing Satellite Manufacturing Factory Co., Ltd., China Machinery Research Institute Standard Technology Research Institute (Beijing) Co., Ltd., Shenzhen Haoqing Technology Co., Ltd., Xinjinghe Laser Technology Development (Beijing) Co., Ltd., General Research Institute of Mechanical Sciences Haixi (Fujian) Branch Co., Ltd., Beijing Machinery Science and Technology Guochuang Lightweight Science Research Institute Co., Ltd., Nanjing Aerospace the University. The main drafters of this document. Lv Zhongli, Yang Sanqiang, Xiao Chengxiang, Jia Mintao, Xue Lian, Xu Xuan, Li Guangsheng, Li Haibin, Li Mingjie, Jiang Chao, Liu Bin, Wang Miaohui, Liu Wenzhi, Gu Dongdong. Additive Manufacturing Terminology Coordinate Systems and Test Methods1 ScopeThis document defines the terms and definitions involved in additive manufacturing technology, as well as the related abbreviations of additive manufacturing coordinate systems and test methods. Abbreviation. This document is intended for additive manufacturing users, producers, researchers, educators, publishers/media, and others, and can be used for additive manufacturing Reports of test results for parts produced by the manufacturing system. The term includes a coordinate system for the position and orientation of the machine/system and the parts it contains Definition, the purpose is to be compatible with GB/T 19660 where possible, and to clarify the adaptability of these principles in additive manufacturing. Note 1.This document does not address the evaluation of suitability for surface cladding. Note 2.This document does not deal with non-Cartesian systems. This document does not contain the handling of all security issues. Users of this document are responsible for establishing appropriate safety and health measures prior to use, and determine the applicability of its limitations.2 Normative referencesThere are no normative references in this document.3 Terms and Definitions3.1 Additive Manufacturing Equipment and Coordinate System 3.1.1 buildplatform A platform that provides a working surface at the beginning of forming and supports the forming process (see C.1 in Appendix C). NOTE. In some systems, the part or object is attached to the forming platform directly or through a support structure during the manufacturing process. In some other systems, such as powder bed systems system, not required. [Source. GB/T 35351-2017, 2.3.4] 3.1.2 buildsurface A flat area of superimposed material, usually the latest deposited layer, that serves as the basis for the formation of the next layer. Note 1.For the first layer, the forming surface is usually the forming platform. Note 2.In the directional energy deposition process, the forming surface can be an existing part or a real object, and on this basis, the material accumulation is formed. Note 3.If the material deposition or curing direction is changed (or both change), can be defined relative to the forming surface. [Source. GB/T 35351-2017, 2.3.7] 3.1.3 front The side of the operator interface and/or main viewing window on the device that the operator faces. Note. Unless otherwise specified by the equipment manufacturer, usually refers to the front of the equipment (see C.1). [Source. GB/T 35351-2017, 2.3.16] ......Tips & Frequently Asked Questions:Question 1: How long will the true-PDF of GB/T 41507-2022_English be delivered?Answer: Upon your order, we will start to translate GB/T 41507-2022_English as soon as possible, and keep you informed of the progress. The lead time is typically 2 ~ 4 working days. 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