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首页> 外文期刊>Journal of Computing and Information Science in Engineering >An Energy-Based Framework for Nonlinear Kinetostatic Modeling of Compliant Mechanisms Utilizing Beam Flexures
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An Energy-Based Framework for Nonlinear Kinetostatic Modeling of Compliant Mechanisms Utilizing Beam Flexures

机译:利用梁挠力的柔顺机制的非线性运动型建模的基于能量的框架

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摘要

Although energy-based methods have advantages over the Newtonian methods for kinetostatic modeling, the geometric nonlineari-ties inherent in deflections of compliant mechanisms preclude most of the energy-based theorems. Castigliano's first theorem and the Crotti-Engesser theorem, which do not require the problem being solved to be linear, are selected to construct the energy-based kinetostatic modeling framework for compliant mechanisms in this work. Utilization of these two theorems requires explicitly formulating the strain energy in terms of deflections and the complementary strain energy in terms of loads, which are derived based on the beam constraint model. The kinetostatic modeling of two compliant mechanisms are provided to demonstrate the effectiveness of the explicit formulations in this framework derived from Castigliano's first theorem and the Crotti-Engesser theorem.
机译:尽管基于能量的方法具有对牛顿模型的牛顿方法的优势,但符合符合机制的偏转中固有的几何非线性关系排除了大部分基于能量的定理。 Castigliano的第一个定理和Crotti-engeser定理,不需要解决的问题是线性的,以构建在这项工作中兼容机制的基于能量的运动学建模框架。 利用这两个定理需要在偏转方面明确地制定应变能量,并且在载荷方面是基于光束约束模型导出的载荷方面的互补能量。 提供了两种柔顺机制的动作建模,以展示来自Castigliano的第一个定理和Crotti-engeser定理的本框架中的显式配方的有效性。

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