Rigid-compliant hybrid cellular expansion mechanisms with motion amplification and superposition

IF 2.9 3区 工程技术 Q2 ENGINEERING, MECHANICAL Journal of Mechanical Design Pub Date : 2023-12-07 DOI:10.1115/1.4064240
Tingwei Wang, Jingjun Yu, Hongzhe Zhao
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Abstract

Motivated by heat dissipation, the rigid-compliant hybrid cellular expansion mechanisms with motion amplification and superposition are proposed in this paper. Compared with existing studies, the expansion mechanism is not only easy to realize the plane tessellation via cellular design due to its regular polygon structure, but also has the ability of motion amplification and superposition due to its compliant displacement amplifier and rigid scissors. Firstly, scheme of expansion mechanisms, especially working principle of motion amplification and superposition are introduced. The configuration design of a family of expansion mechanisms is presented, including varying number of edges, concave/convex property, inner/outer layout. Secondly, the constraint condition and analytical modeling of relations between output performances of expansion mechanisms and dimensional parameters is carried out. Third, the displacement amplification ratio of expansion mechanisms, and output performances of several typical expansion mechanisms when they are acted as cells to tessellate a plane with constrained area are analyzed. Finally, the output performances of expansion mechanisms are verified via the finite element analysis. The results show that proposed cellular expansion mechanisms are beneficial for realizing plane tessellation, offer motion amplification and superposition, which provide prospects in the field of mechanism design such as metamaterials.
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具有运动放大和叠加功能的刚性顺应型混合细胞膨胀机制
以散热为动力,提出了具有运动放大和运动叠加的刚柔混合元胞膨胀机构。与已有研究相比,该扩展机构不仅由于其正多边形结构易于通过元胞设计实现平面镶嵌,而且由于其柔性位移放大器和刚性剪刀,具有运动放大和叠加的能力。首先介绍了膨胀机构的方案,特别是运动放大和叠加的工作原理。给出了一类膨胀机构的结构设计,包括边数变化、凸/凹特性、内外布局。其次,建立了膨胀机构输出性能与尺寸参数关系的约束条件和解析建模;第三,分析了扩展机构的位移放大比,以及几种典型的扩展机构作为单元对具有约束面积的平面进行镶嵌时的输出性能。最后,通过有限元分析验证了膨胀机构的输出性能。结果表明,所提出的细胞膨胀机制有利于实现平面镶嵌,提供运动放大和叠加,为超材料等机构设计领域提供了前景。
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来源期刊
Journal of Mechanical Design
Journal of Mechanical Design 工程技术-工程:机械
CiteScore
8.00
自引率
18.20%
发文量
139
审稿时长
3.9 months
期刊介绍: The Journal of Mechanical Design (JMD) serves the broad design community as the venue for scholarly, archival research in all aspects of the design activity with emphasis on design synthesis. JMD has traditionally served the ASME Design Engineering Division and its technical committees, but it welcomes contributions from all areas of design with emphasis on synthesis. JMD communicates original contributions, primarily in the form of research articles of considerable depth, but also technical briefs, design innovation papers, book reviews, and editorials. Scope: The Journal of Mechanical Design (JMD) serves the broad design community as the venue for scholarly, archival research in all aspects of the design activity with emphasis on design synthesis. JMD has traditionally served the ASME Design Engineering Division and its technical committees, but it welcomes contributions from all areas of design with emphasis on synthesis. JMD communicates original contributions, primarily in the form of research articles of considerable depth, but also technical briefs, design innovation papers, book reviews, and editorials.
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