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Toward Feedback Control for Additive Manufacturing Processes Via Enriched Analytical Solutions

机译:通过丰富的分析解决方案实现增材制造过程的反馈控制

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Additive manufacturing (AM) enables the fabrication of objects using successive additions of mass and energy. In this paper, we explore the use of analytic solutions to model the thermal aspects of AM, in an effort to achieve high computational performance and enable "in the loop" use for feedback control of AM processes. It is shown that the utility of existing analytical solutions is limited due to their underlying assumption of a homogeneous semi-infinite domain. These solutions must, therefore, be enriched from their exact form in order to capture the relevant thermal physics associated with AM processes. Such enrichments include the handling of strong nonlinear variations in material properties, finite nonconvex solution domains, behavior of heat sources very near boundaries, and mass accretion coupled to the thermal problem. The enriched analytic solution method (EASM) is shown to produce results equivalent to those of numerical methods, which require six orders of magnitude greater computational effort. It is also shown that the EASM's computational performance is sufficient to enable AM process feedback control.
机译:增材制造(AM)可以使用质量和能量的连续添加来制造物体。在本文中,我们探索使用解析解决方案对AM的热​​方面进行建模,以实现较高的计算性能,并使“在回路中”用于AM过程的反馈控制。结果表明,现有分析解决方案的实用性受到限制,原因是它们对齐次半无限域的基本假设。因此,这些解决方案必须从其确切形式中加以充实,以便捕获与增材制造过程相关的相关热物理学。这样的丰富包括处理材料特性中的强烈非线性变化,有限的非凸解域,非常接近边界的热源行为以及与热问题相关的质量累积。富集的解析解方法(EASM)的显示结果与数值方法的结果相当,后者需要六倍数量级的计算量。还表明,EASM的计算性能足以实现AM过程反馈控制。

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