变形
顺应机制
流离失所(心理学)
机制(生物学)
计算机科学
有限元法
机械工程
铰链
执行机构
非线性系统
结构工程
工程类
人工智能
物理
量子力学
心理学
心理治疗师
作者
Patrick McGowan,Guangbo Hao
摘要
Abstract A key aspect of robotics and automation is continuous repetition of predefined travel and actions. One such example is a robotic gripper, gripping an object, retracting, and displacing it. Usually, two separate actuations are needed to implement the decoupled gripping and retraction modes. In this article, a morphing compliant gripper is proposed that grips an object (X displacement) and retracts it linearly (Y displacement) based on one single actuation, to reduce the input efforts. The mechanism is first designed by the rigid body replacement method and is based on the double-slider mechanism. Morphing is successfully achieved through the use of contact-aided features and a pseudo spring beam to decouple the X and Y displacements. The design is comprehensively analyzed through the nonlinear finite element analysis method and is optimized using the integrated design exploration tools. Simulation results closely match an ideal X and Y displacement path and a displacement-activated transition from X displacement to Y displacement while minimizing the input actuation force. Finally, a 3D-printed prototype is made and preliminarily tested to verify the design.
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