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首页> 外文期刊>Journal of Mechanisms and Robotics: Transactions of the ASME >Qualitative Mobility Analysis of Wire Flexure Systems Using Load Flow Visualization
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Qualitative Mobility Analysis of Wire Flexure Systems Using Load Flow Visualization

机译:使用负载流量可视化的线弯系统定性移动性分析

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摘要

Mobility analysis is an important step in the conceptual design of flexure systems. It involves identifying directions with relatively compliant motion (freedoms) and directions with relatively restricted motion (constraints). This paper proposes a deterministic framework for mobility analysis of wire flexure systems based on characterizing a kinetostatic vector field known as "load flow" through the geometry. A hypothesis is proposed to identify constraints and freedoms based on the relationship between load flow and the flexure geometry. This hypothesis is mathematically restated to formulate a matrix-based reduction technique that determines flexure mobility computationally. Several examples with varying complexity are illustrated to validate the efficacy of this technique. This technique is particularly useful in analyzing complex hybrid interconnected flexure topologies, which may be nonintuitive or involved with traditional methods. This is illustrated through the computational mobility analysis of a bio-inspired fiber reinforced elastomer pressurized with fluids. The proposed framework combines both visual insight and analytical rigor, and will complement existing analysis and synthesis techniques.
机译:移动性分析是挠性系统概念设计的重要一步。它涉及用相对柔性的运动(自由)和具有相对限制的运动(约束)的方向识别方向。本文提出了一种基于表征称为“负载流动”的动态矢量场的线弯系统移动性分析的确定性框架。提出了一个假设,以识别基于负载流和弯曲几何之间的关系的限制和自由。该假设在数学上被重新定位,以制定基于矩阵的还原技术,该技术计算地确定柔性迁移率。示出了具有不同复杂性的几个例子以验证该技术的功效。该技术特别适用于分析复杂的混合互连的弯曲拓扑,其可以是非直接的或与传统方法涉及的。这是通过用流体加压的生物启发纤维增强弹性体的计算迁移率分析来说明。拟议的框架结合了视觉洞察力和分析严格,并补充了现有的分析和合成技术。

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