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Prediction and correction of manufacturing induced distortions of automotive composite parts through simulation

机译:通过模拟预测和校正汽车复合部件的畸变

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One of the biggest challenges for designers and manufacturers of composites-parts nowadays is to ensure that designed parts can be produced within tolerance that will cause no issue at the assembly stage. This paper that focuses on automotive applications of composite materials for structural parts will first review adapted manufacturing processes for mass production and then describes involved physics in resulting shape distortions. Computational techniques developed to predict manufacturing-induced residual stresses and shape distortion of composites parts made of continuous fibers and thermoset matrix will be presented supported by an industrial example. Knowing how the part will distort after manufacturing is a first step. The second one consists in finding a solution to these geometrical defects in regards to the designed part. Simulation can then be of a great help in determining the proper process parameters and new mold geometry to reach tolerances. However this paper intends to demonstrate that only the simulation of the complete manufacturing chain can validate a solution to distortions.
机译:如今,设计师和复合材料件制造商的最大挑战之一是确保在容差内生产设计的部件将在汇编阶段不会产生问题。本文专注于构造部件的复合材料的汽车应用将首先审查适应的批量生产制造过程,然后描述了导致造成形状扭曲的物理学。将通过工业实例支持制定由连续纤维和热固性矩阵制成的复合材料部件的复合材料部件的计算技术。了解制造后,该部件如何扭曲是第一步。第二个内部包括在设计部件方面找到对这些几何缺陷的解决方案。在确定适当的工艺参数和新的模具几何体以达到公差时,模拟可以有很大的帮助。然而,本文打算证明只有完整的制造链的仿真可以验证扭曲的解决方案。

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