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首页> 外文期刊>Engineering with Computers >Design curve determination for two-layered wire rope strand using p-version finite element code
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Design curve determination for two-layered wire rope strand using p-version finite element code

机译:使用p版本有限元代码确定两层钢丝绳股的设计曲线

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摘要

Parametric analysis of a two-layered axially loaded strand is performed using the recently developed p-version finite element code, which describes the geometry well and takes into account all possible inter-wire motions and frictional contact between the wires. A special nonlinear contact theory was developed based on the Hertz-theory. It is assumed that the wires have homogenous, isotropic, linear elastic material properties. The developed code is a tool for designing wire rope strands that require low computer resources and short computational time. Case studies are performed to verify and demonstrate the efficiency and applicability of the method. Design curves are presented according to the strand geometry parameters such as helix angle and ratio of the wire radius in the different layers. The optimal geometry parameters for a given strand can be determined using these design curves.
机译:使用最近开发的p版本有限元代码对两层轴向受力绞线进行参数分析,该代码很好地描述了几何形状,并考虑了所有可能的线间运动和线之间的摩擦接触。基于赫兹理论,发展了一种特殊的非线性接触理论。假设金属丝具有均质,各向同性,线性弹性材料的特性。开发的代码是一种用于设计钢丝绳股的工具,该工具需要的计算机资源少且计算时间短。进行案例研究以验证和证明该方法的效率和适用性。根据绞合线几何参数(如螺旋角和不同层中的线径比)显示设计曲线。可以使用这些设计曲线确定给定钢绞线的最佳几何参数。

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