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MODELING OF A SYMMETRIC FIVE-BAR DISPLACEMENT AMPLIFICATION COMPLIANT MECHANISM USING ENERGY METHODS

机译:使用能量方法对对称五杠位移放大兼容机制进行建模

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We present a symmetric five-bar compliant mechanism for the displacement amplification of mechanical vibration. When the proposed mechanism is connected to an energy harvester, amplification of the input excitation vibration amplitude leads to an increase in the harvested power. Displacements in the compliant mechanism are caused by deflections in its flexure hinges. The flexure hinges we use are either of the right-circular, or the corner-filleted types. The mechanism is analyzed using energy methods. The displacement amplification was verified analytically and numerically using a finite element model. Through our model we present relations governing the displacement amplification in terms of the design parameters, such as the geometry of the mechanism, the flexure hinges dimensions, in addition to the load caused by the harvester. The effects of the flexure hinge dimensions on displacement amplification, are also presented.
机译:我们提出了一种对称的五杆柔顺机构,用于机械振动的位移放大。当建议的机制连接到能量收集器时,输入激励振动幅度的放大会导致收集的功率增加。柔性机构中的位移是由其挠性铰链中的挠度引起的。我们使用的挠性铰链既可以是右圆型也可以是角圆角型。使用能量方法分析该机理。使用有限元模型对位移放大进行了分析和数值验证。通过我们的模型,除了由收割机引起的负载外,我们还根据设计参数(例如机构的几何形状,挠性铰链尺寸)提出了控制位移放大的关系。还介绍了挠性铰链尺寸对位移放大的影响。

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