基板涂层对WC-Co LPBF的影响

Preyin Govender, D. C. Blaine, N. Sacks
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引用次数: 0

摘要

虽然增材制造(AM)作为一种成熟的制造工艺在许多行业中迅速普及,但为了开发经过验证的工艺链,了解和控制工艺参数仍然是一个有待研究和开发的领域。作为应用最广泛的金属增材制造技术,激光粉末床熔合(LPBF)的关键参数是基板材料的选择。这尤其适用于不常见的建筑材料,如硬质合金。在本研究中,研究了WC-Co硬质合金的LPBF,评估了基板涂层对构建的影响。在未涂层和涂层状态下,WC-Co LPBF构建使用DIN 1.2343工具钢底板。使用WC-CoCr (1350VM)粉末涂覆底板,同时使用两种不同Co含量(分别为17和12 wt%)的WC-Co粉末来比较这些合金的构建。对WC-Co粉末进行了表征,以确定其在LPBF中的适用性。长方体印刷,有或没有支撑,在涂层和未涂层的底板上。低密度构建(~88%密度)与较差的打印参数有关。存在Co的蒸发,但支架上的WC-17Co样品蒸发很少,构建体积良好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence Of Base Plate Coating On LPBF Of WC-Co
While additive manufacturing (AM) is rapidly gaining ground as an established manufacturing process for many industries, understanding and controlling process parameters in order to develop validated process chains remains an area for research and development. A critical parameter that is relevant to laser powder bed fusion (LPBF), the most widely used metal AM technology, is baseplate material selection. This is especially relevant for uncommon build materials such as cemented carbides. In this study, LPBF of WC-Co cemented carbides is investigated, evaluating the influence of baseplate coating on the build. A DIN 1.2343 tool steel baseplate was used for WC-Co LPBF builds, both in the uncoated and coated state. WC-CoCr (1350VM) powder was used to coat the baseplate, while two WC-Co powders with different Co content (17 and 12 wt%, respectively) were used to compare builds of these alloys. The WC-Co powders were characterized to establish their suitability for LPBF. Cuboids were printed, with and without supports, on the coated and uncoated baseplates. Low density builds were built (~88% dense) relating to poor printing parameters. Evaporation of Co is present, yet WC-17Co samples on supports showed little evaporation and good build volume.
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