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MODELING LARGE DEFLECTIONS OF INITIALLY CURVED BEAMS IN COMPLIANT MECHANISMS USING CHAINED BEAM-CONSTRAINT-MODEL

机译:使用链束约束模型对初始机制中的初始弯曲梁进行大挠度建模

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Understanding and analyzing large and nonlinear deflections is one of the major challenges of designing compliant mechanisms. Initially curved beams can offer potential advantages to designers of compliant mechanisms and provide useful alternatives to initially straight beams. However, the literature on analysis and design using such beams is rather limited. This paper presents a general and accurate method for modeling large planar deflections of initially curved beams of uniform cross-sections, which can be easily adapted to curved beams of various shapes. This method discretizes a curved beam into a few elements and models each element as a circular-arc beam using the beam constraint model (BCM). Two different discretization schemes are provided for the method, among which the equal discretization is suitable for circular-arc beams and the unequal discretization is for curved beams of other shapes. Compliant mechanisms utilizing initially curved beams of circular-arc, cosine and parabola shapes are modeled to demonstrate the effectiveness of CBCM for initially curved beams of various shapes. The method is also accurate enough to capture the relevant nonlinear load-deflection characteristics.
机译:理解和分析大的和非线性的挠度是设计顺应机构的主要挑战之一。初始弯曲的梁可以为柔顺机构的设计人员提供潜在的优势,并为初始的直梁提供有用的替代方法。但是,有关使用此类光束进行分析和设计的文献非常有限。本文提出了一种通用而准确的方法,用于对横截面均匀的初始弯曲梁的大平面挠度建模,该方法可以轻松地适应各种形状的弯曲梁。该方法将弯曲光束离散为几个元素,并使用光束约束模型(BCM)将每个元素建模为圆弧光束。为该方法提供了两种不同的离散化方案,其中等分离散化适用于圆弧形梁,不等分离散化适用于其他形状的弯曲梁。对利用圆弧,余弦和抛物线形状的初始弯曲光束的顺应性机制进行了建模,以证明CBCM对于各种形状的初始弯曲光束的有效性。该方法也足够精确,可以捕获相关的非线性载荷-挠度特性。

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