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首页> 外文期刊>日本機械学会論文集. A編 >Optimal Structural Design of Compliant Mechanisms (Consideration of Quantitative Displacement Constraint)
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Optimal Structural Design of Compliant Mechanisms (Consideration of Quantitative Displacement Constraint)

机译:顺应性机构的最佳结构设计(考虑定量位移约束)

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摘要

Structural optimization using the homogenization method which was introduced by Bends ∮e and Kikuchi in l988 is established as a theory of optimal design of layout (topology and shape). This theory has been applied to the various kind of problems, especially in meso-micro-scale design, for example in the microstructure of composite and piezo-ceramic material. Frecker and Nishiwaki studied the possibility of the extension of the homogenization design method for topology/shape optimization for elastic structures into the design of flexible structures such as compliant mecha- nisms. Compliant mechanisms is a relatively new breed of jointless mechanism in which elastic deformation is intended to be a source of motion. In the past, most flexible structural design optimization was considered only for the direction of the flexible point, by using the material density or equivalent homogenization method to identify the optimum layout. Here we shall extend it to the case of a two dimensional design for compliant mechanism which control the deflection of the flexible point. Moreover we also applied the image-based design method to extract a FE model for prototype from the optimal layout and propose the integrated structural design methodology.
机译:使用Bends∮e和Kikuchi在1988年提出的均质化方法进行结构优化是作为布局(拓扑和形状)优化设计的理论而建立的。该理论已被应用于各种问题,特别是在中微尺度设计中,例如在复合材料和压电陶瓷材料的微观结构中。 Frecker和Nishiwaki研究了将弹性结构的拓扑/形状优化的均质化设计方法扩展到柔性结构(例如顺应性机构)设计中的可能性。顺应性机构是相对较新的无关节机构,其弹性变形旨在作为运动源。过去,通过使用材料密度或等效均质化方法来确定最佳布局,只考虑了柔性点的方向来进行最灵活的结构设计优化。在这里,我们将其扩展到控制柔性点挠度的顺应机构的二维设计情况。此外,我们还应用了基于图像的设计方法,从最佳布局中提取了原型的有限元模型,并提出了集成的结构设计方法。

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