ISO/TC 261“增材制造”第21次全体会议

IF 4.4 Q2 ENGINEERING, MANUFACTURING
Eujin Pei, Christian Seidel
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引用次数: 0

摘要

ISO/TC 261的主要目标是标准化增材制造的过程、过程链(数据、材料、过程、硬件和软件、应用)、测试程序、质量参数、供应协议、环境、健康和安全、基础和词汇。本节为读者提供有关ISO/TC 261标准化工作的新闻。有关最近发布的文件的进一步最新信息,如新标准,修订标准,标准状态可以在ISO/TC261网页上找到:https://www.iso.org/committee/629086.html和委员会网页:https://committee.iso.org/sites/tc261/home/news.html。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Standardisation efforts of ISO/TC 261 “additive manufacturing” 21st plenary meeting of ISO/TC 261 “additive manufacturing”
Abstract The main objective of ISO/TC 261 is to standardise the processes of Additive Manufacturing, the process chains (Data, Materials, Processes, Hard- and Software, Applications), test procedures, quality parameters, supply agreements, environment, health and safety, fundamentals and vocabularies. This section provides readers with news regarding standardisation efforts of ISO/TC 261. Further up-to-date information regarding recently published documents, such as new standards, revised standards, the status of standards can be found in the ISO/TC261 webpages: https://www.iso.org/committee/629086.html and the committee webpages: https://committee.iso.org/sites/tc261/home/news.html .
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来源期刊
Progress in Additive Manufacturing
Progress in Additive Manufacturing Engineering-Industrial and Manufacturing Engineering
CiteScore
7.20
自引率
0.00%
发文量
113
期刊介绍: Progress in Additive Manufacturing promotes highly scored scientific investigations from academia, government and industry R&D activities. The journal publishes the advances in the processing of different kinds of materials by well-established and new Additive Manufacturing (AM) technologies. Manuscripts showing the progress in the processing and development of multi-materials by hybrid additive manufacturing or by the combination of additive and subtractive manufacturing technologies are also welcome. Progress in Additive Manufacturing serves as a platform for scientists to contribute full papers as well as review articles and short communications analyzing aspects ranging from data processing (new design tools, data formats), simulation, materials (ceramic, metals, polymers, composites, biomaterials and multi-materials), microstructure development, new AM processes or combination of processes (e.g. additive and subtractive, hybrid, multi-steps), parameter and process optimization, new testing methods for AM parts and process monitoring. The journal welcomes manuscripts in several AM topics, including: • Design tools and data format • Material aspects and new developments • Multi-material and composites • Microstructure evolution of AM parts • Optimization of existing processes • Development of new techniques and processing strategies (combination subtractive and additive    methods, hybrid processes) • Integration with conventional manufacturing techniques • Innovative applications of AM parts (for tooling, high temperature or high performance    applications) • Process monitoring and non-destructive testing of AM parts • Speed-up strategies for AM processes • New test methods and special features of AM parts
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