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Selective laser melting of a beta-solidifying TNM-B1 titanium aluminide alloy

机译:β固化TNM-B1铝化钛合金的选择性激光熔化

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The interest for a wider range of useable materials for the technology of selective laser melting is growing. In this work we describe a new way to optimize the process parameters for selective laser melting of a beta solidifying titanium aluminide. This kind of material has so far not been processed successfully by this method. The new approach is easy to conduct and well transferable to other materials. It is based on the fact that the parts generated from selective laser melting can be described by an addition of multiple single tracks. Multiple types of single track experiments are performed and in combination with knowledge from laser welding tests optimized parameter combinations are derived. Compact samples are built with the optimized process parameters and characterized in terms of microstructure, phase composition and mechanical properties. With this technique the generation of a TNMB1 titanium aluminide alloy sample with a density greater than 99% could be achieved. The mechanical properties are comparable with material produced by conventional techniques.
机译:对于选择性激光熔化技术,越来越多的有用材料引起了人们的兴趣。在这项工作中,我们描述了一种优化工艺参数的新方法,该工艺参数用于选择性固化β凝固铝化钛的激光。到目前为止,这种材料尚未通过这种方法成功处理。这种新方法易于实施,并且可以很好地转移到其他材料上。基于这样的事实,由选择性激光熔化产生的零件可以通过添加多个单个轨迹来描述。执行多种类型的单轨实验,并结合激光焊接测试的知识,得出优化的参数组合。利用优化的工艺参数构建紧凑的样品,并在微观结构,相组成和机械性能方面进行表征。利用这种技术,可以生成密度大于99%的TNMB1铝化钛合金样品。机械性能与常规技术生产的材料相当。

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