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A prediction method for assembly surface contact considering form error

机译:考虑表单误差的组装表面触点的预测方法

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Form error deflects the assembly surfaces and thus greatly affects the assembly accuracy of precision mechanical systems. Based on rigid motion, this paper proposes a prediction method for assembly surface contact considering form error to improve the simulation accuracy of virtual assembly. The method estimates the assembly equilibrium state by simulating the realistic behaviour of surfaces in assembly process: Firstly, one surface is fixed and the other is transferred along the assembly direction until the first contact occurs. Then, the other surface is rotated according the assembly force and the previous contact positions to successively reach the second and third contacts. The rotation operation is repeated until the assembly equilibrium conditions are finally met. Particularly, a space slicing algorithm is put forward to achieve faster calculation of the rotation information including rotation axis, rotation direction and rotation angle. This method can be applied in the field of assembly simulation and assembly verification. At the end of this paper, an assembly case of two rectangular plates is carried out to prove the feasibility and effectiveness of the method.
机译:表单错误偏转了装配表面,从而大大影响精密机械系统的装配精度。基于刚性运动,本文提出了一种用于考虑表单误差以提高虚拟组件的模拟精度的预测方法。该方法通过模拟组装过程中表面的现实行为来估计组件平衡状态:首先,一个表面被固定,另一个表面沿组装方向传送,直到发生第一接触。然后,根据组装力和先前的接触位置旋转另一表面以连续地达到第二和第三触点。重复旋转操作,直到最终满足装配平衡条件。特别地,提出了一种空间切片算法以实现包括旋转轴,旋转方向和旋转角度的旋转信息的更快计算。该方法可以应用于组装仿真和装配验证领域。在本文的末尾,进行了两个矩形板的组装壳,以证明该方法的可行性和有效性。

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