首页> 外文会议>Reconfigurable Mechanisms and Robots, 2009. ReMAR 2009 >A new large-stroke compliant joint u00026; microano positioner design based on compliant building blocks
【24h】

A new large-stroke compliant joint u00026; microano positioner design based on compliant building blocks

机译:一个新的大行程顺应关节。基于兼容积木的微/纳米定位器设计

获取原文

摘要

During the phase of concept design of compliant joints & mechanisms, also synthesis of the mechanism, an effective design method is definitely important for generating a creative design. Currently, these design methods can boil down to three categories: creative thinking stepped from designer's intuition and experience, systematic design method based on topological synthesis or pseudo-rigid-body model (PRBM), and a ldquonaturerdquo design method in terms of compliant building block (CBB), whilst CBB method combines the advantages of the first two kinds of approaches. This paper mainly introduces the CBB design method which may lead to some new large-stroke compliant joints & microano positioners. All joint and mechanism design is based on a special CBB family, i.e. virtual-center-of-motion (VCM) pivots including a leaf-type isosceles-trapezoidal flexural (LITF), etc. The main advantage of the VCM CBBs is that they can achieve a virtual center of motion and regarded as a kind of high-performance flexure primitive as well. A method to construct complex compliant joints and microano positioners is presented by combination of several identical or different CBBs. This method is mainly considering the trends of center-shift or error motion after combination. Some applications of this design method is tested correspondingly. As a result, a novel family of high-performance complex compliant joints or microano positioners can be obtained.
机译:在顺应性关节和机构的概念设计阶段,以及机构的综合阶段,有效的设计方法对于产生创意设计绝对重要。目前,这些设计方法可以归结为三类:从设计师的直觉和经验出发的创造性思维,基于拓扑综合或伪刚体模型(PRBM)的系统设计方法以及就合规构件而言的“经典”设计方法。 (CBB),而CBB方法结合了前两种方法的优点。本文主要介绍了CBB设计方法,该方法可能会导致一些新的大行程柔性接头和微型/纳米定位器。所有关节和机构设计均基于特殊的CBB系列,即虚拟运动中心(VCM)枢轴,包括叶型等腰梯形弯曲(LITF)等。VCMCBB的主要优点是它们可以实现虚拟的运动中心,也被视为一种高性能的挠性基元。通过几种相同或不同的CBB的组合,提出了一种构造复杂的柔顺关节和微/纳米定位器的方法。该方法主要考虑组合后的中心偏移或误差运动的趋势。相应地测试了该设计方法的一些应用。结果,可以获得新型的高性能复杂顺应性接头或微型/纳米定位器。

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