Structure and Properties of the Bulk Standard Samples and Cellular Energy Absorbers

P. Kuznetcov, A. Zhukov, A. Deev, V. Bobyr, M. Staritcyn
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引用次数: 7

Abstract

The development of additive technology revealed a real prospect of their use for the manufacture of complex shapes. Now, it is possible to produce parts that previously were either very difficult to produce using the subtracting technology and joining technology, or it was not at all feasible. In the manufacture of parts of complex shape, it is necessary to use a supporting structure, which is necessary to place such a way that they can be easily removed. Additionally, they must necessarily be absent in certain places. In this regard, the preparation model can take significant time to satisfy all of these, often conflicting, requirements. In this paper, we show optimization examples of the model preparation with support structures for parts manufactured at the facility EOSINT M270 and used in medicine and engineering. Additional emphasis is on the fact that, during the manufacture of parts, solidification’s modes of massive parts differ from those of the thin-walled portions of parts. The results of the complex studies on the different stainless steels (including martensitic) are described with an emphasis on their structure and mechanical properties. The results of a honeycomb energy absorbers, which are quite seldom produced by the additive technologies, are presented in this chapter.
大块标准样品和细胞能量吸收剂的结构和性能
增材技术的发展揭示了它们用于制造复杂形状的真正前景。现在,使用减法技术和连接技术可以生产以前很难生产的零件,或者根本不可行的零件。在制造形状复杂的零件时,必须使用支撑结构,这种支撑结构必须以易于拆卸的方式放置。此外,它们必须在某些地方不存在。在这方面,准备模型可以花费大量时间来满足所有这些经常相互冲突的需求。在本文中,我们展示了在EOSINT M270工厂制造并用于医学和工程的部件的支持结构模型制备的优化示例。另外要强调的是,在零件制造过程中,大块零件的凝固模式不同于薄壁零件的凝固模式。对不同不锈钢(包括马氏体)的复杂研究结果进行了描述,重点介绍了它们的组织和力学性能。本章介绍了一种很少采用添加剂技术生产的蜂窝吸能材料的研究结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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