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首页> 外文期刊>Journal of Manufacturing Processes >Melt pool sensing and size analysis in laser powder-bed metal additive manufacturing
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Melt pool sensing and size analysis in laser powder-bed metal additive manufacturing

机译:激光粉末床金属增材制造中的熔池感应和尺寸分析

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摘要

Process temperature measurement for selective laser melting (SLM) can provide critical information such as melt pool dimension for real-time part quality control. In this study, a LumaSense MCS640 thermal imager with a spectral range of about 670 nm wavelength was utilized to collect process radiant temperature information during SLM fabrication using Inconel 718 powder. Sharp transition of cooling curve in collected radiant temperature profile along scanning direction was considered as material phase transition, and it was identified by minimum secondary derivative values of each camera pixel from fitted polynomial functions. Obtained liquidus-solidus transition was used to calculate melt pool size. Speed effect on melt pool dimension has been investigated. The major findings are as follows. (1) At a beam power of 180 W, typical melt pool has average dimensions of about 0.39 mm and 0.23 mm in length and width for 400 mm/s scanning speed. (2) Similar melt pool sizes were observed at different build heights for a given scanning speed. (3) Melt pool width decreases with the increase of scanning speed while the trend for melt pool length is unclear; no significant difference was observed for melt pool length at different scanning speeds under a beam power of 180 W.
机译:用于选择性激光熔化(SLM)的过程温度测量可以提供关键信息,例如用于实时零件质量控制的熔池尺寸。在这项研究中,使用Inconel 718粉末在SLM制造过程中,利用光谱范围约为670 nm波长的LumaSense MCS640热成像仪来收集过程辐射温度信息。冷却曲线在收集的辐射温度曲线中沿扫描方向的急剧转变被认为是材料相变,并且可以通过拟合多项式函数根据每个相机像素的最小二阶导数值来确定。获得的液相线-固相线转变用于计算熔池大小。研究了速度对熔池尺寸的影响。主要发现如下。 (1)在180 W的光束功率下,典型的熔池在400 mm / s的扫描速度下的平均尺寸约为0.39 mm,长度和宽度均为0.23 mm。 (2)对于给定的扫描速度,在不同的构建高度下观察到相似的熔池大小。 (3)熔池宽度随着扫描速度的增加而减小,熔池长度的趋势尚不清楚;在180 W的光束功率下,在不同的扫描速度下熔池长度没有观察到显着差异。

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