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Optimal design of thermally actuated compliant mechanisms and its application to product-embedded disassembly.

机译:热驱动顺应机构的优化设计及其在产品嵌入式拆卸中的应用。

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摘要

Compliant mechanisms are the type of mechanisms that use elastic deformation of flexible members to transfer force, motion or energy. This dissertation reviews the previous work on topology optimization design synthesis for compliant mechanisms, as well as suggests alternative problem formulations. Thermal transducers, which can be interpreted as thermally actuated compliant mechanisms, have found a wide range of applications, due to their accessible source, easy controllability and reliability. There has been research done to synthesize design of thermal actuation embedded electrical-thermal-compliant mechanisms, in which the non-uniform temperature change was generated by joule heating through non-uniform electric current. In this dissertation, time transient effect of heat transfer is proposed to produce the localized thermal actuation, while simple boundary heating is considered. Consequently non-uniform temperature distribution can be achieved by controlling the heating time. Homogenization design method is utilized for topology optimization where calculation of the effective material properties is conducted via homogenization theory. Numerical examples are presented to support the proposed design method with novel type of thermal actuators.; Disassembly is a fundamental process needed for component reuse and material recycling in all assembled products. Integral attachments, also known as “snap” fits, are favored fastening means in design for assembly (DFA) methodologies, but not necessarily a favored choice for design for disassembly. In this dissertation, design methods of a new class of integral attachments are proposed, where the snapped joints can be disengaged by the application of localized heat. The design problem of reversible integral attachments is posed as the optimization of compliant mechanisms actuated by the localized thermal expansion of materials. Topology optimization techniques for compliant mechanisms are utilized to obtain conceptual layout of snap-fit mechanisms that realizes a desired deformation of snapped features for joint release. Two design approaches are attempted and design results of each approach are presented, where the obtained optimal topologies are simplified to enhance the manufacturability for the conventional injection molding technologies. Final designs have been verified with commercial FEA software ABAQUS.; In topology optimization design problems, the design specifications, such as boundary conditions, loading conditions and definition of design domains are applied according to finite element discretization. The variables controlling these design specifications subsequently have discrete values. Discrete optimization methods deal with discrete variables. Genetic algorithm has been an effective discrete optimization algorithm. In this dissertation, the design specifications of topology optimization are proposed to be optimized using discrete optimization method. Two applications are presented using this improved design scheme. The first application involves the optimal shape and location of piezoelectric materials in flextensional actuators, while the second improves the performance of the heat-activated reversible snap-fit design.
机译:顺应性机构是利用柔性构件的弹性变形来传递力,运动或能量的机构的类型。本文回顾了有关顺应性机制的拓扑优化设计综合的先前工作,并提出了替代性的问题表述。热传感器,可以解释为热驱动的顺应机构,由于其可访问的来源,容易的可控制性和可靠性,已经得到了广泛的应用。已经进行了综合设计热致动嵌入式电热顺应机构的研究,其中通过不均匀电流通过焦耳加热产生不均匀的温度变化。本文提出了传热的时间瞬变效应来产生局部热激励,同时考虑了简单的边界加热。因此,可以通过控制加热时间来实现温度分布不均匀。均质化设计方法用于拓扑优化,其中通过均质化理论进行有效材料性能的计算。给出了算例,以支持采用新型热执行器的设计方法。拆卸是所有已组装产品中组件重复使用和材料回收所需要的基本过程。整体附件(也称为“卡扣”配合)在组装设计(DFA)方法中是首选的紧固方式,但在拆卸设计中不一定是首选的选择。本文提出了一种新型的整体式附件设计方法,通过局部加热可以使卡扣接头脱离。可逆的整体附件的设计问题是由材料的局部热膨胀驱动的顺应性机构的优化所引起的。利用用于顺应性机构的拓扑优化技术来获得按扣配合机构的概念布局,该布局可实现按扣特征的所需变形以实现关节释放。尝试了两种设计方法,并给出了每种方法的设计结果,其中简化了获得的最佳拓扑结构,以增强常规注塑技术的可制造性。最终设计已经通过商业FEA软件ABAQUS进行了验证。在拓扑优化设计问题中,根据有限元离散化应用设计规范,例如边界条件,加载条件和设计域的定义。控制这些设计规范的变量随后具有离散值。离散优化方法处理离散变量。遗传算法已成为一种有效的离散优化算法。本文提出了采用离散优化方法对拓扑优化设计规范进行优化的方法。使用这种改进的设计方案提出了两种应用。第一种应用涉及挠性执行器中压电材料的最佳形状和位置,而第二种应用则改善了热激活可逆卡扣配合设计的性能。

著录项

  • 作者

    Li, Ying.;

  • 作者单位

    University of Michigan.;

  • 授予单位 University of Michigan.;
  • 学科 Engineering Mechanical.; Engineering Industrial.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 138 p.
  • 总页数 138
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;一般工业技术;
  • 关键词

  • 入库时间 2022-08-17 11:46:11

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