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A Generalized Mathematical Model for the Bridge-Type and Lever-Type Mechanism

机译:桥梁式和杠杆式机制的广义数学模型

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The bridge-type amplifier and the lever-type amplifier are the two frequently used displacement amplifiers in the precision engineering. However, to the knowledge of the authors, a generalized mathematical model appropriate for the both types mechanism was not frequently reported, which is instrumental in selecting and designing of the displacement amplifiers in the practice application. To this end, the compliance matrix method based on screw theory is employed to establish a generalized mathematical model for the two amplifiers to offer an easy and objective way to analyze them. In addition, the performances of the amplifiers under external loads are presented in this paper. Theoretical and finite elemental analysis results shown that the prediction errors of the established model for the displacement amplification ratio is within 4.5%, which is so accurate to predict the performance of the two kinds of amplifiers. Finally, the analytical model are confirmed by finite element analysis and by experimental testing of a bridge-lever-type amplifier.
机译:桥式放大器和杠杆式放大器是精密工程中的两个经常使用的位移放大器。然而,对于作者的知识,不经常报告适合于这两种类型机制的广义数学模型,这在练习应用中的位移放大器选择和设计方面是有乐图的。为此,采用基于螺杆理论的合规矩阵方法来建立两个放大器的广义数学模型,为分析它们提供一种简单且客观的方式。此外,本文提出了外部载荷下放大器的性能。理论和有限元分析结果表明,位移放大比的建立模型的预测误差在4.5%范围内,这是如此准确的是预测两种放大器的性能。最后,通过有限元分析和桥式杆式放大器的实验测试确认分析模型。

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