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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Simulation of variational compliant assemblies with shape errors based on morphing mesh approach
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Simulation of variational compliant assemblies with shape errors based on morphing mesh approach

机译:基于变形网格方法的带有形状误差的变分柔性组件的仿真

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摘要

Variation analysis of assemblies is a strategic task in many industrial applications. Parts manufactured through plastic deformation processes exhibit appreciable shape deviations from the nominal geometry due mainly to spring-back phenomena. When these parts are assembled, initial shape deviations at part level highly influence the final assembly shape. This work focuses on the modeling and simulation of shape errors in order to perform variation analysis of compliant assemblies. The aim is to simulate variational shape of parts according to a small number of control points chosen on the part geometry through a morphing mesh procedure. These points are typically related to measurement or inspection points of manufactured parts. From the mesh model of parts, mesh nodes are moved by applying the morphing procedure. In particular, in order to assure control points belong to the "perturbed" shape, a linear-constrained approach is adopted. The so-morphed parts are used to accomplish the variational assembly analysis following the classical place, clamp, fasten, and release cycle. In order to achieve statistical results, Monte Carlo simulation is performed: a set of control points driving the perturbed parts is generated at each iteration; these parts are then assembled and results are stored. Numerical results are compared with ones coming from commercial software that uses a linear approach based on the sensitivity matrix.
机译:组件的差异分析是许多工业应用中的一项战略任务。通过塑性变形工艺制造的零件主要由于回弹现象而呈现出与标称几何形状明显的形状偏差。组装这些零件时,零件级别的初始形状偏差会严重影响最终的组装形状。这项工作着重于形状误差的建模和仿真,以便执行顺应组件的变化分析。目的是通过变形网格程序根据零件几何形状上选择的少量控制点来模拟零件的变化形状。这些点通常与制造零件的测量或检查点有关。从零件的网格模型中,通过应用变形过程来移动网格节点。特别地,为了确保控制点属于“扰动”形状,采用了线性约束方法。如此变形的零件用于按照经典的放置,夹紧,紧固和释放周期来完成变形装配分析。为了获得统计结果,执行了蒙特卡洛模拟:在每次迭代中生成一组驱动受扰零件的控制点;然后组装这些零件并存储结果。将数值结果与使用基于灵敏度矩阵的线性方法的商业软件得到的结果进行比较。

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