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首页> 外文期刊>Journal of Computing and Information Science in Engineering >Combining Variation Simulation With Welding Simulation for Prediction of Deformation and Variation of a Final Assembly
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Combining Variation Simulation With Welding Simulation for Prediction of Deformation and Variation of a Final Assembly

机译:将变化模拟与焊接模拟相结合以预测最终组件的变形和变化

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摘要

In most variation simulations, i.e., simulations of geometric variations in assemblies, the influence from heating and cooling processes, generated when two parts are welded together, is not taken into consideration. In most welding simulations, the influence from geometric tolerances on parts is not taken into consideration, i.e., the simulations are based on nominal parts. In this paper, these two aspects, both crucial for predicting the final outcome of an assembly, are combined. Monte Carlo simulation is used to generate a number of different non-nominal parts in a software for variation simulation. The translation and rotation matrices, representing the deviations from the nominal geometry due to positioning error, are exported to a software for welding simulation, where the effects from welding are applied. The final results are then analyzed with respect to both deviation and variation. The method is applied on a simple case, a T-weld joint, with available measurements of residual stresses and deformations. The effect of the different sources of deviation on the final outcome is analyzed and the difference between welding simulations applied to nominal parts and to disturbed (non-nominal) parts is investigated. The study shows that, in order to achieve realistic results, variation simulations should be combined with welding simulations. It does also show that welding simulations should be applied to a set of non-nominal parts since the difference between deviation of a nominal part and deviation of a non-nominal part due to influence of welding can be quite large.
机译:在大多数变化模拟中,即在组件中的几何变化模拟中,没有考虑到将两个零件焊接在一起时产生的加热和冷却过程的影响。在大多数焊接模拟中,没有考虑几何公差对零件的影响,即,模拟是基于名义零件的。在本文中,这两个方面对预测装配的最终结果至关重要。蒙特卡洛模拟用于在用于变化模拟的软件中生成许多不同的非标称零件。表示由于定位误差而导致与标称几何形状的偏差的平移和旋转矩阵将导出到用于焊接仿真的软件中,在该软件中应用来自焊接的效果。然后针对偏差和变化分析最终结果。该方法适用于T形焊接的简单情况,并具有残余应力和变形的可用测量值。分析了不同偏差源对最终结果的影响,并研究了应用于名义零件和受干扰(非名义)零件的焊接模拟之间的差异。研究表明,为了获得逼真的结果,应将变化模拟与焊接模拟相结合。它还确实表明,应将焊接模拟应用于一组非标称零件,因为由于焊接的影响,标称零件的偏差和非标称零件的偏差之间的差异可能会很大。

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