首页> 外文期刊>Journal of mechanics in medicine and biology >SIMPLIFIED VERSUS REAL GEOMETRY FINGERTIP MODELS: A FINITE ELEMENT STUDY TO PREDICT FORCE-DISPLACEMENT RESPONSE UNDER FLAT CONTACT COMPRESSION
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SIMPLIFIED VERSUS REAL GEOMETRY FINGERTIP MODELS: A FINITE ELEMENT STUDY TO PREDICT FORCE-DISPLACEMENT RESPONSE UNDER FLAT CONTACT COMPRESSION

机译:简化与实际几何指数型号:有限元研究,以预测平面接触压缩下的力 - 位移响应

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摘要

Finite element fingertip models are useful tools to assess product ergonomics. While "real geometry" approaches provide accurate results, developing models requires medical images. "Simpified geometry" approaches have to date not been tested to see whether they can provide equally accurate results in terms of mechanical response, i.e. force-displacement response and dimensions of fingertip contact area. Four fingertip models were built either from medical images (Visible Human project) or from simplified geometries. Simulations of fingertip flat contact compression at 20 degrees were performed. A 2nd order hyperelastic material property was used to effectively reproduce the mechanical behavior of the fingertip. Models based on simplified geometries such as conics proved as accurate as models reconstructed from medical images. However, accurate positioning of the bony phalanx is paramount if a biofidelic mechanical response is to be reproduced.
机译:有限元指尖模型是评估产品人体工程学的有用工具。 虽然“真实几何”方法提供准确的结果,但开发模型需要医学图像。 迄今为止,“纤细几何”方法尚未测试,看看它们是否可以在机械响应方面提供同样准确的结果,即Fingertip接触区域的力 - 位移响应和尺寸。 四种指尖模型是从医学图像(可见人体项目)或简化的几何形状构建的。 进行20度的指尖平面接触压缩。 使用2nd阶超弹性材料性能来有效地再现指尖的力学行为。 基于简化几何形状的模型被证明是从医学图像重建的模型被证明是准确的。 然而,如果要再现生物硅基机械响应,则骨棒烷基的精确定位至关重要。

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