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DESIGN AND ANALYSIS OF A SHELL MECHANISM BASED TWO-FOLD FORCE CONTROLLED SCOLIOSIS BRACE

机译:基于壳体机制的双倍力量控制脊柱侧凸支架的设计与分析

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In this paper a first iteration of a new scoliosis brace design and correction strategy is presented using compliant shell mechanisms to create both motion and correction. The motion profile of the human spine was found using a segmented motion capture approach. The brace was designed for a case study using a conceptual ellipsoid design approach. The force controlled correction profile was re-invented using a two fold zero and positive stiffness profile. These force generators were built and validated to prove their zero stiffness characteristic. The kinematic part of the brace was detail designed with the correct order of magnitude and validated through their force-deflection characteristic. The end result was a first iteration of a new brace validated and analysed on some critical components which can form the basis for a future biomechanical study.
机译:在本文中,使用柔顺的壳体机制来提出新的脊柱侧凸支撑设计和校正策略的首次迭代,以创造运动和校正。使用分段的运动捕获方法发现人脊柱的运动轮廓。使用概念椭圆设计方法设计了括号,用于案例研究。使用两个折叠零和正刚度曲线来重新发明力控制的校正曲线。建立并验证这些力发生器以证明其零刚度特性。支撑括号的运动部分是设计的,设计具有正确的数量级,并通过其力偏转特性验证。最终结果是在一些关键组件上验证和分析的新支架的首次迭代,这可以构成未来生物力学研究的基础。

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