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Quick Profile Die Balancing of Automotive Rubber Seal Extrusion by CAE Technology

机译:利用CAE技术对汽车橡胶密封件挤出进行快速型材平衡

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The extrusion process of a type of automotive rubber seal was considered by using Computer Aided Engineering (CAE) technology. Based on the die balancing requirement, CAE technology was utilized to speed up the die development and balancing process. The rubber material was EPDMand unacceptable extrusion deformation was found by using a parallel die.More balancing dies were then designed following the procedures proposed by the die balancing method and the effect of them was evaluated with respect to CAE analytical results. It was found that the addition of an opening section in the die would provide a more uniform velocity distribution at the die exit than the parallel die. The length of opening section was also found to affect the die balancing and so an optimum length of the opening section was determined by CAE analysis. Further optimization of the die was carried out by adjusting the local length of the opening section. Finally, a real die was cut based on the optimization results and used for production. Ideal profile products were obtained and very small and acceptable deviation from the die was observed, which validated the advantage and accuracy of CAE technology combined with die balancing requirement.
机译:通过使用计算机辅助工程(CAE)技术考虑了一种汽车橡胶密封件的挤压工艺。根据模具平衡需求,利用CAE技术加快了模具开发和平衡过程。橡胶材料为EPDM,使用平行模具发现挤出变形不合格,然后根据模具平衡方法提出的步骤设计更多的平衡模具,并根据CAE分析结果评估了它们的效果。发现在模具中增加开口部分将比平行模具在模具出口处提供更均匀的速度分布。还发现开口部分的长度影响模具平衡,因此通过CAE分析确定了开口部分的最佳长度。通过调节开口部分的局部长度来进一步优化模具。最后,根据优化结果切割出真实的模具,并将其用于生产。获得了理想的轮廓产品,并且观察到与模具的偏差很小且可接受,这证明了CAE技术与模具平衡要求相结合的优势和准确性。

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