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DEVELOPMENT OF A METHODOLOGY FOR PSEUDO-RIGID-BODY MODELS OF COMPLIANT BEAMS WITH INSERTS, AND EXPERIMENTAL VALIDATION

机译:开发符合插件兼容梁的伪刚体模型的方法,实验验证

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Compliant mechanisms have shown a great deal of potential, in just a few decades of its development, in providing innovative solutions to design problems. However, their use has been limited due to challenges associated with the materials. With ever increasing focus on the applications of compliant mechanisms, it is necessary to find alternatives to the existing material usage and methods of prototyping. This paper presents a methodology for the design of compliant segments and compliant mechanisms with improved creep resistance and fatigue life properties using the current state-of-the-art materials. The methodology proposes using a stronger material at the core of a softer casing. The paper provides an equivalent pseudo-rigid-body model and a closed-form elliptic integral formulation for a fixed-free compliant segment with an insert. The equivalent pseudo-rigid-body model is verified experimentally for the prediction of beam end point displacements. The paper also presents experimental results that show improvements obtained in the creep recovery properties as expected using the proposed design philosophy.
机译:在其开发中仅仅几十年来提供创新解决方案,符合符合机制潜在的潜力很大。然而,由于与材料相关的挑战,它们的使用受到限制。随着符合符合机制的应用,必须找到符合符合机制的应用,有必要找到现有材料使用和原型化方法的替代品。本文介绍了使用当前最先进的材料改善抗蠕变性和疲劳寿命性能的柔顺区段和柔顺寿命性能的方法。该方法在更柔软的壳体的核心处使用更强的材料提出。本文提供了一种等效的伪刚体模型和具有插入件的无固定柔性段的闭合椭圆形整体配方。通过实验验证等效的伪刚体模型,用于预测光束端点位移。本文还介绍了使用拟议的设计理念的预期显示在蠕变回收性质中获得的改进的实验结果。

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