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Spinning Process Test and Optical Topography Measurement Technology for the Shell with Longitudinal and Latitudinal Inner Ribs

机译:带纵向和纬度内肋的壳体纺纱工艺测试和光学地形测量技术

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摘要

The paper studies the complicated problem in the spinning process of the shell with longitudinal and latitudinal inner ribs. The finite element software ABAQUS is used to establish the finite element model of the cylindrical shell with the longitudinal and latitudinal inner ribs. The numerical simulation of the spinning process is carried out. The stress distribution and strain distribution of the inner and outer surfaces during the spin-forming process are determined, and the orthogonal test method is used to determine the optimization process test parameters. The influence of the main process parameters on the wall thickness difference of the inner rib shell is obtained by the range analysis: wall thickness reduction rate > rotary wheel feed speed > rotor working angle (arranging according to their influences). And then the corresponding process parameters recommended by the spinning test are given. The measurement problem of inner ribs is solved by building of the robot shape measurement system which helps detect the three-dimensional shape of the inner ribs, and the precision of the spun sample was detected by the point cloud deviation comparison.
机译:本文研究了纵向和纬度内肋的壳体纺纱过程中的复杂问题。有限元软件ABAQUS用于建立具有纵向和纬度内肋的圆柱形壳的有限元模型。进行纺纱工艺的数值模拟。确定内表面和外表面在旋转成形过程中的应力分布和应变分布,正交试验方法用于确定优化过程测试参数。通过测距分析:壁厚减速率>旋转轮进料速度>转子工作角度(根据其影响排列)获得了内肋壳壁厚度差差的影响。然后给出纺纱测试推荐的相应过程参数。内肋的测量问题通过构建机器人形状测量系统来解决,这有助于检测内肋的三维形状,并且通过点云偏差比较检测旋转样品的精度。

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