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Design framework for multifunctional additive manufacturing: coupled optimization strategy for structures with embedded functional systems

机译:多功能增材制造的设计框架:具有嵌入式功能系统的结构的耦合优化策略

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摘要

The driver for this research is the development of multi-material additive manufacturing processes that provide the potential for multi-functional parts to be manufactured in a single operation. In order to exploit the potential benefits of this emergent technology, new design, analysis and optimization methods are needed. This paper presents a method that enables in the optimization of a multifunctional part by coupling both the system and structural design aspects. This is achieved by incorporating the effects of a system, comprised of a number of connected functional components, on the structural response of a part within a structural topology optimization procedure. The potential of the proposed method is demonstrated by performing a coupled optimization on a cantilever plate with integrated components and circuitry. The results demonstrate that the method is capable of designing an optimized multifunctional part in which both the structural and system requirements are considered.
机译:这项研究的推动力是多材料增材制造工艺的开发,该工艺为在一次操作中制造多功能零件提供了潜力。为了利用这种新兴技术的潜在优势,需要新的设计,分析和优化方法。本文提出了一种通过结合系统和结构设计方面来优化多功能部件的方法。这是通过在结构拓扑优化过程中并入系统(由多个连接的功能组件组成)对零件的结构响应的影响来实现的。通过在具有集成组件和电路的悬臂板上执行耦合优化,证明了所提出方法的潜力。结果表明,该方法能够设计一种既考虑结构要求又考虑系统要求的优化多功能部件。

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