• CN:11-2187/TH
  • ISSN:0577-6686

机械工程学报 ›› 2026, Vol. 62 ›› Issue (13): 283-293.doi: 10.3901/JME.260698

• 数字化设计与制造 • 上一篇    下一篇

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多输入多输出柔顺机构的特征驱动拓扑优化设计

蔡守宇, 张倩倩, 徐文涛, 周文尚   

  1. 郑州大学力学与安全工程学院 郑州 450001
  • 收稿日期:2025-06-10 修回日期:2025-12-07 发布日期:2026-08-28
  • 作者简介:蔡守宇(通信作者),男,1984年出生,博士,副教授,博士研究生导师。主要研究方向为结构拓扑优化设计。E-mail:caishouyu@zzu.edu.cn
  • 基金资助:
    国家自然科学基金(12372125)、河南省本科高校青年骨干教师培养计划(2023GGJS004)和河南省科技攻关(252102221042)资助项目。

Feature-driven Topology Optimization Design of Multi-input-multi-output Compliant Mechanism

CAI Shouyu, ZHANG Qianqian, XU Wentao, ZHOU Wenshang   

  1. School of Mechanics and Safety Engineering, Zhengzhou University, Zhengzhou 450001
  • Received:2025-06-10 Revised:2025-12-07 Published:2026-08-28

摘要: 针对多输入多输出柔顺机构拓扑优化设计中存在的三个典型问题——输入输出耦合、类铰链现象和拓扑图提取困难,提出了一种基于特征驱动技术的新型有效解决方法。首先,在初始布局中使用多个特征(基本设计要素)将柔顺机构的输入端、输出端和固定端两两相连,每个特征均由两个B样条曲线函数分别控制其弯曲变形和宽度变化,因而在优化过程中具备足够的变形能力。然后,构建兼顾耦合效应和类铰链现象的优化设计模型,通过添加抑制耦合位移的约束以期实现完全解耦的高精度操纵;通过在目标函数中对结构柔顺度和输出位移进行自适应加权以期获得“刚柔并济”、不含类铰链的分布式柔顺机构。进而推导出优化目标函数和约束函数对特征变量的灵敏度。最后,通过典型多输入多输出柔顺机构优化算例验证了所提方法在解决输入输出耦合及类铰链问题上的有效性和优越性,并且得益于可灵活变形特征的参数化几何描述,本方法的优化结果可直接、精确地在CAD系统中生成,无需繁琐的拓扑图提取操作。

关键词: 柔顺机构, 拓扑优化, 特征驱动, 输入输出耦合, 类铰链

Abstract: A new topology optimization design framework based on the feature-driven method is proposed to solve the three typical problems in the multi-input-multi-output (MIMO) compliant mechanism synthesis — movement coupling, de facto hinge and topology extraction. In the initial layout of topology optimization, the fixed boundary as well as input and output ports of the MIMO compliant mechanism are connected in pairs by using several features (i.e., basic design primitives) with sufficient deformation capacity, whose bending deformation and width variation are expressed by B-spline curve functions. The optimization design model considering the coupling issue and de facto hinges is then established, in which input and output coupling constraints are introduced to achieve the fully decoupled design, and a weighted objective function is adopted to realize the synthesis of the rigid-flexible combined compliant mechanism (i.e., the distributed compliant mechanism) without de facto hinges. The sensitivity analysis related to the objective function and constraint functions is further carried out. A numerical example concerning the topology optimization of the classical MIMO displacement inverter is tested to demonstrate the effectiveness of the proposed method in tackling the movement coupling and de facto hinge problems, and it can also be seen that, owing to the parametric geometric description of the flexibly deformable features, the design result composed of multiple features can be directly and precisely generated in CAD systems without tedious topology extraction.

Key words: compliant mechanism, topology optimization, feature driven, input and output coupling terms, de facto hinge

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