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首页> 外文期刊>Canadian Journal of Mathematics >Optimal Design for Metal Additive Manufacturing: An Integrated Computational Materials Engineering (ICME) Approach
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Optimal Design for Metal Additive Manufacturing: An Integrated Computational Materials Engineering (ICME) Approach

机译:金属添加剂制造的最佳设计:综合计算材料工程(ICME)方法

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We present our latest results on linking the process-structure-properties-performance (PSPP) chain for metal additive manufacturing (AM), using a multi-scale and multi-physics integrated computational materials engineering (ICME) approach. The abundance of design parameters and the complex relationship between those and the performance of AM parts have so far impeded the widespread adoption of metal AM technologies for structurally critical load-bearing components. To unfold the full potential of metal AM, establishing a full quantitative PSPP linkage is essential. It will not only help in understanding the underlying physics but will also serve as a powerful and effective tool for optimal computational design. In this work, we illustrate an example of ICME-based PSPP linkage in metal AM, along with a hybrid physics-based data-driven strategy for its application in the optimal design of a component. Finally, we discuss our outlook for the improvement of each part in the computational linking of the PSPP chain.
机译:我们使用多尺度和多物理综合计算材料(ICME)方法将Grance-Surality-Propersion-Performance(PSPP)链连接到金属添加剂制造(AM)的过程 - 结构 - 属性 - 性能(PSPP)链接。到目前为止,这些设计参数的丰富与AM部件的性能与AM部件的性能之间的性能和性能均妨碍了金属AM技术在结构临界承载部件的广泛采用。为了展开金属AM的全部潜力,建立完全量化的PSPP联系至关重要。它不仅有助于理解潜在的物理,而且还可以作为最佳计算设计的强大有效的工具。在这项工作中,我们说明了金属AM的基于ICME的PSPP联动的示例,以及一种基于混合物理学的数据驱动策略,其应用于其在组件的最佳设计中。最后,我们讨论了我们在PSPP链的计算链接中的每个部分的改进的前景。

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