首页> 外文会议>IFToMM World Congress on Mechanism and Machine Science >Elasto-Kinematic Modeling of Planar Flexure Hinge-Based Compliant Mechanisms Incorporating Branched Links
【24h】

Elasto-Kinematic Modeling of Planar Flexure Hinge-Based Compliant Mechanisms Incorporating Branched Links

机译:基于平面挠性铰链的柔性柔性机制的弹性 - 运动型施工组成分支链路

获取原文

摘要

Compliant mechanisms with notch flexure hinges are widely used in industry and research, especially in precision engineering applications. The motion and deformation behavior of these systems is a result of bending of the compliant segments, mainly influenced by the notch geometry. The accurate analysis is a challenging task and the synthesis of compliant mechanisms is done non-intuitively and iteratively due to the materially coherent joints and the monolithic design. Apart from FEM simulations, analytical modeling methods are proposed which are mostly restricted to certain hinge contours or do not offer the possibility to calculate important elasto-kinematic properties. Therefore, this paper presents an analytical approach based on the theory for large deflections of rod-like structures to support the design process. The planar mechanisms are analyzed with respect to arbitrary oriented and shaped flexure hinges using power functions. The non-linear approach is extended by the modeling of a branched link to also consider guided coupler points. For this purpose, two example path-generating mechanisms are regarded. The four-bar mechanisms are modeled as curved rods of arbitrary geometry, and the properties are numerically calculated with the use of MAT-LAB. It is shown, that the results are in good correlation with FEM-based simulations. Thus, the approach allows for the contour-specific accelerated and accurate analysis of compliant guidance mechanisms with respect to optimized flexure hinge shapes.
机译:符合陷波弯曲铰链的符合机制广泛用于工业和研究,特别是在精密工程应用中。这些系统的运动和变形行为是弯曲段的弯曲的结果,主要受到凹口几何形状的影响。准确的分析是一个具有挑战性的任务,并且由于材料相干的接头和整体设计,柔顺机构的合成是不直观的和迭代的。除了有限元模拟之外,提出了分析模拟方法,这些方法主要限于某些铰链轮廓,或者不提供计算重要的弹性运动性能的可能性。因此,本文介绍了一种基于对杆状结构的大偏转理论来支持设计过程的分析方法。相对于使用功率功能的任意定向和形弯曲铰链来分析平面机构。通过分支链路的建模扩展了非线性方法,也考虑了引导耦合点。为此目的,考虑了两个示例的路径生成机制。四个条机构用任意几何形状的弯曲杆进行建模,并且使用MAT-LAB的使用数值计算。结果表明,结果与基于FEM的模拟良好相关。因此,该方法允许关于优化挠性铰链形状的兼容引导机制的轮廓特异性加速和准确地分析。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号