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首页> 外文期刊>International Journal of Refractory Metals & Hard Materials >Fundamental analysis of the influence of powder characteristics in Selective Laser Melting of molybdenum based on a multi-physical simulation model
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Fundamental analysis of the influence of powder characteristics in Selective Laser Melting of molybdenum based on a multi-physical simulation model

机译:基于多物理仿真模型的钼粉末特性对粉末特性影响的根本分析

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摘要

Selective Laser Melting (SLM) offers great potential for the processing of molybdenum as it allows the production of parts that can hardly be fabricated in a classical way. The workpiece is built up by melting up powder layer by layer. Besides the applied laser parameters, the characteristics of the powder and the deposited powder layer have a crucial influence on the dynamics of the process and the final processing result. In order to get a fundamental understanding of these influences, numerical simulations are a versatile tool as they allow a detailed look on isolated parameters. In this contribution a coupled thermo-fluid dynamical simulation model for SLM is applied for a fundamental analysis of the influence of powder characteristics in SLM of molybdenum. The results allow a deeper insight into the influences of powder particle size and powder particle arrangement on the SLM process and the formation of the molten track.
机译:选择性激光熔化(SLM)为钼加工提供了很大的潜力,因为它允许生产可能以古典方式制造的零件。 通过层熔化粉末层来构建工件。 除了应用的激光参数之外,粉末和沉积的粉末层的特性对工艺的动态和最终处理结果具有至关重要的影响。 为了获得对这些影响的基本理解,数值模拟是一种多功能工具,因为它们允许详细的孤立参数。 在该贡献中,SLM的耦合热流体动态模拟模型应用于钼SLM中粉末特性影响的基本分析。 结果允许深入了解粉末粒度和粉末颗粒布置对SLM工艺的影响以及熔融轨道的形成。

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