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An Investigation of Sintering Parameters on Titanium Powder for Electron Beam Melting Processing Optimization

机译:用于电子束熔化工艺优化的钛粉烧结参数研究

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摘要

Selective electron beam melting (SEBM) is a relatively new additive manufacturing technology for metallic materials. Specific to this technology is the sintering of the metal powder prior to the melting process. The sintering process has disadvantages for post-processing. The post-processing of parts produced by SEBM typically involves the removal of semi-sintered powder through the use of a powder blasting system. Furthermore, the sintering of large areas before melting decreases productivity. Current investigations are aimed at improving the sintering process in order to achieve better productivity, geometric accuracy, and resolution. In this study, the focus lies on the modification of the sintering process. In order to investigate and improve the sintering process, highly porous titanium test specimens with various scan speeds were built. The aim of this study was to decrease build time with comparable mechanical properties of the components and to remove the residual powder more easily after a build. By only sintering the area in which the melt pool for the components is created, an average productivity improvement of approx. 20% was achieved. Tensile tests were carried out, and the measured mechanical properties show comparatively or slightly improved values compared with the reference.
机译:选择性电子束熔化(SEBM)是一种相对较新的金属材料增材制造技术。该技术特有的是在熔化过程之前对金属粉末进行烧结。烧结过程具有后处理的缺点。 SEBM生产的零件的后处理通常涉及通过使用喷粉系统去除半烧结粉末。此外,在熔化之前大面积的烧结降低了生产率。当前的研究旨在改进烧结过程,以实现更好的生产率,几何精度和分辨率。在这项研究中,重点在于烧结工艺的改进。为了研究和改进烧结工艺,建立了具有各种扫描速度的高孔隙度钛试样。这项研究的目的是减少具有类似部件机械性能的成型时间,并在成型后更轻松地去除残留的粉末。通过仅烧结在其中形成部件的熔池的区域,平均生产率提高了约20%。实现了20%。进行了拉伸试验,测得的机械性能与参考值相比显示出相对或略有改善的值。

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