The quality systems of additive technologies for aerospace parts manufacturing

V. Kokareva, V. Smelov, Maksim Zvyagincev
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引用次数: 0

Abstract

In this study, the quality system for Ti-6Al-4V alloy manufacturing by selective laser melting was analyzed by using the Grey relation analysis and additive manufacturing quality methodology. In proposed methodology, the multicriteria problem is solved by selecting an optimal alternative AM technological process parameters combinations to meet the required quality parameters (desired goals) of the aerospace parts according several criteria. Decision algorithm for planning additive manufacturing was developed for building alternatives matrix and the adaptation coefficient evaluating. As quality criteria in model were chosen accuracy, roughness, strength, cost, printing time. Based on the analysis of the values of the adaptation coefficients for SLM, DMD and EBM technologies, the first type of technology for the manufacture of aerospace product, selective laser melting, is accepted as optimal.
航空航天零部件增材制造技术质量体系
采用灰色关联分析和增材制造质量方法,对选择性激光熔化Ti-6Al-4V合金的质量体系进行了分析。该方法通过选择一种最佳的可选增材制造工艺参数组合来解决多准则问题,以满足航空航天零件所需的质量参数(期望目标)。提出了一种增材制造规划决策算法,用于构建备选矩阵和评价自适应系数。以精度、粗糙度、强度、成本、打印时间为质量标准。通过对SLM、DMD和EBM技术的自适应系数值的分析,优选出用于航天产品制造的第一类技术——选择性激光熔化。
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