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Simple Computational Methods for Large Deformation of Plate-Spring End Imposed by Varying Load

机译:改变负荷施加的板簧末端大变形的简单计算方法

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In this paper, a pneumatic flexible finger joint is recommended, which uses the plate-spring as skeleton. Bending status of the plate-spring is equal to the large deflection of elastic cantilever, which is actuated by a pneumatic artificial muscle actuator of longitudinal expandable rubber bellows. By this actuator, a follower force tangential to the axis of the plate-spring as well as a moment is imposed at the end of the beam. The equations to define the relation between deformation and air pressure in the actuator have been established, and mathematical methods have been derived. Two numerical solutions have been given severally by means of software Mathematica5 and Mat lab, and calculation results show the error between two methods is tiny.
机译:在本文中,建议使用气动柔性手指接头,其使用板簧作为骨架。板簧的弯曲状态等于弹性悬臂的大偏转,其由纵向可膨胀橡胶波纹管的气动人工肌动致动器致动。通过该致动器,在光束的末端施加到板簧的轴线的跟随力与板簧的轴线相切。已经建立了确定致动器中变形与空气压力之间关系的等式,并且已经得出数学方法。通过软件Mathematica5和Mat实验室分别给出了两个数值解决方案,并且计算结果显示了两种方法之间的误差是微小的。

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