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DESIGN OF A COMPLIANT HINGE BASED ON CLOSED FORM PRESSURE BALANCING

机译:基于封闭式压力平衡的柔顺铰链设计

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摘要

Compliant mechanisms consist of a monolithic body and obtain motion through elastic deformation.Multiple compliant flexure designs are known but their translational to rotation stiffness ratio is often limited.This work introduces a novel compliant hinge design with increased stiffness ratio compared to the state of the art compliant hinges.The hinge functions by having an encapsulated fluid medium that contributes to high normal stiffness,but doesn't influence the rotational stiffness.A 2D design model is presented that shows the effect of the geometry on the stiffness ratio performance.Subsequently,a computational 3D analysis is performed and the resulting design is realized as a demonstrator.The performance is compared to conventional compliant hinges based on the stiffness ratio.This shows an increase of at least a factor 30 on the stiffness ratio.
机译:柔顺机构由整体体组成并通过弹性变形获得运动。符合柔性的弯曲设计是已知的,但它们的平移到旋转刚度比通常是有限的。本工作引入了与现有技术相比具有增加的刚度比的新颖兼容铰链设计符合铰链。铰链功能通过具有有助于高正常刚度的封装的流体介质,但不会影响旋转刚度。提出了2D设计模型,其显示几何形状对刚度比率的效果。它们,a执行计算3D分析,并且所得到的设计实现为演示。将性能与基于刚度比的常规兼容铰链进行比较。该表现为刚度比上的至少因子30增加。

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