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COMPLIANT MECHANISM RECONFIGURATION BASED ON POSITION SPACE CONCEPT FOR REDUCING PARASITIC MOTION

机译:基于位置空间概念的减少寄生运动的顺应性机构重构

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This paper introduces a compliant mechanism reconfiguration approach that can be used to minimize the parasitic motions of a compliant mechanism. This reconfiguration approach is based on the position spaces, identified by the screw theory, of independent compliant modules in a compliant mechanism system. The parasitic motions (rotations) of a compliant mechanism are first modelled associated with the variables representing any positions of the compliant modules in the position spaces. The optimal positions of the compliant modules are then obtained where the parasitic motions are reduced to minimal values. A procedure of the compliant mechanism reconfiguration approach is summarized and demonstrated using a decoupled XYZ compliant parallel mechanism as an example. The analytical results show that the parasitic motions of the XYZ compliant parallel mechanism in the example can be dramatically reduced by the position/structure reconfiguration, which is also validated by finite element analysis. The position space of a compliant module contains a number of possible positions, thus a compliant mechanism can also be efficiently reconfigured to a variety of practical patterns such as the configuration with compact structure.
机译:本文介绍了一种顺应性机制重新配置方法,该方法可用于使顺应性机制的寄生运动最小化。这种重新配置方法基于依从机构系统中独立依从模块的由螺钉理论确定的位置空间。首先对柔顺机构的寄生运动(旋转)进行建模,这些变量与代表柔顺模块在位置空间中任何位置的变量相关联。然后获得顺应模块的最佳位置,其中将寄生运动减小到最小值。以解耦的XYZ兼容并行机制为例,总结并演示了兼容机制重新配置方法的过程。分析结果表明,示例中的XYZ兼容并联机构的寄生运动可以通过位置/结构重新配置而大大降低,这也通过有限元分析得到了验证。柔顺模块的位置空间包含许多可能的位置,因此柔顺机构也可以有效地重新配置为多种实用模式,例如结构紧凑的配置。

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