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STRESS ANALYSIS OF A FIXED-FREE COMPLIANT SEGMENT USING THE PSEUDO-RIGID-BODY MODEL (PRBM) CONCEPT

机译:基于伪刚体模型(PRBM)的无固定限位段应力分析

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摘要

A method is presented to analyze stress in ambient-temperature, fixed-free compliant segments subjected to end load or displacement boundary conditions. The analysis method outlined herein relies on key outputs from the pseudo-rigid-body models (PRBMs). Simplified equations for stress are presented for both homogeneous and metallic-reinforced segments. Stresses in both the polymer compliant segment and the metallic reinforcing element are addressed to enable a comprehensive stress analysis method. The stress analysis method is exemplified by using two design cases: one, a homogeneous compliant segment, and two, a compliant segment reinforced with a spring steel element. The results showed that introducing a metallic reinforcement increases the flexural rigidity, but does not reduce the bending stress in the casing unless the cross-sectional thickness is reduced. This vein of research is undertaken using metallic reinforcement (inserts) toward the development of a new class of compliant mechanisms with significantly greater performance, particularly insofar as the problems of fatigue and creep are concerned.
机译:提出了一种分析环境温度,不受固定载荷的柔性管段中受到最终载荷或位移边界条件的应力的方法。本文概述的分析方法依赖于伪刚体模型(PRBM)的关键输出。给出了均质段和金属增强段的简化应力方程。应对聚合物顺应性链段和金属增强元件中的应力,以实现全面的应力分析方法。应力分析方法以两种设计案例为例:一种是均匀的柔性段,另一种是用弹簧钢元件加固的柔性段。结果表明,引入金属增强材料可以提高弯曲刚度,但是除非减小横截面的厚度,否则不会减小壳体中的弯曲应力。研究的方向是使用金属增强材料(插入件)来开发具有更高性能的新型顺应机构,特别是在涉及疲劳和蠕变问题方面。

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