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In-situ characterization of tungsten microcracking in Selective Laser Melting

机译:钨微ack在选择性激光熔化中的原位表征

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Additive Manufacturing is a promising way of processing tungsten, with opportunities to create more complex parts than are possible using other powder metallurgical routes. This may lead to extended applications such as collimators, in fusion reactors, or in other structurally loaded, high temperature environments. The poor thermal shock resistance and ductile-to-brittle transition that occurs in tungsten above room temperature are challenges that hinder production of fully dense and crack free parts This research employs high speed in-situ monitoring of Selective Laser Melting of single tracks to visualize crack initiation and propagation. The circumstances that lead to cracking are correlated with microstructural morphology and processing conditions.
机译:添加剂制造是加工钨的有希望的方式,有机会创造比使用其他粉末冶金途径更复杂的零件。这可能导致扩展的应用,例如准直器,融合反应器,或在其他结构上加载的高温环境中。在室温的钨中发生的贫困耐热抗冲击性和脆性过渡是妨碍妨碍完全密集和裂缝自由零件产生的挑战本研究采用了高速原位监测单轨的选择性激光熔化,以便可视化裂缝启动和传播。导致破裂的情况与微观结构形态和加工条件相关。

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