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首页> 外文期刊>Procedia Manufacturing >Statistical Analysis of Porosity and Process Parameter Relationships in Metal Additive Manufacturing
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Statistical Analysis of Porosity and Process Parameter Relationships in Metal Additive Manufacturing

机译:金属添加剂制造中孔隙率和过程参数关系的统计分析

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摘要

Metal additive manufacturing is susceptible to formation of porosities in the build. Numerous process and material parameters have been reported to impact formation and evolution of different types of porosities in metallic additively manufactured parts. Conducting extensive experiments is a typical approach to investigate the effects of process and material parameters to formation of porosities. In this work, a computational framework is proposed to use two-point correlations to capture statistical distribution of porosities in metallic additively manufactured parts. The proposed scheme is robustly built based on mathematics of correlation functions, by combining the overall effects of all the parameters impacting porosity formation, into a coefficient term in a Fourier-type expansion of two-point correlation statistics. The functionality of the coefficients with respect to scanning speed (i.e. a process parameter) in selective laser melting of 304L stainless steel is derived numerically and consistency of the trend in change of the coefficient values compared to porosity volume fraction is confirmed. The formalism outlined and tested in this work provides a robust framework for prediction of porosity volume fraction as a function of process parameters for metal additive manufacturing.
机译:金属添加剂制造易于在构建中形成孔隙率。据报道,众多方法和材料参数在金属增塑部件中冲击不同类型孔隙座的形成和演化。进行广泛的实验是一种典型的方法,用于研究过程和材料参数对形成孔隙率的影响。在这项工作中,提出了一种计算框架来利用两点相关性以捕获金属加成制造部件中孔隙率的统计分布。通过将所有参数撞击孔隙形成的总体效应相结合,基于相关函数的数学,基于相关函数的数学来强大地构建所提出的方案,以两点相关统计的傅立叶型扩展的系数项。在304L不锈钢的选择性激光熔化中,系数相对于扫描速度(即处理参数)的功能是在数值上产生的,并且确认与孔隙体积分数相比系数值变化的变化趋势的一致性。在本工作中概述和测试的形式主义提供了一种稳健的框架,用于预测孔隙率级分作为金属添加剂制造的工艺参数的函数。

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