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Fatigue Life Prediction of Short Fiber Reinforced Composite

机译:短纤维增强复合材料的疲劳寿命预测

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摘要

Toincrease stiffness and strength of injection moulded components short glass fibres were added as filler material. The application of short fibre reinforced plastic materials has become more important over the last years, because they can be designed as per specific requirements. Short fibre-reinforced plastics provide the combination of lower weight with adequate strength. The recent trend in industry is to have the lighter product; somany structural parts are manufactured with short fibre-reinforced polymers instead of traditional metal. The design of the final product has to pass assessment of durability or reliability aspects in addition to structural strength aspects. Prediction of fatigue life for fiber reinforced composite identifies critical areas for the product development in early stage, which saves the cost of re-test and redesign. This paper is concerned with animplementation of virtual durability product development process to predict fatigue life of short fibre-reinforced materials. The multi-disciplinary process consists of aninjection moulding simulation, followed by a structural stress analysis and a fatigue calculation. This analysis method and simulation process which takes into account the fibre orientation and distribution as result from moulding simulation have been verified with component test.
机译:为了增加注射成型部件的刚度和强度,添加了短玻璃纤维作为填充材料。短纤维增强塑料材料的应用在最近几年变得越来越重要,因为可以根据特定要求进行设计。短纤维增强塑料提供了更轻的重量和足够的强度。工业上的最新趋势是拥有更轻的产品。许多结构零件都是用短纤维增强聚合物代替传统金属制造的。除了结构强度方面,最终产品的设计还必须通过耐久性或可靠性方面的评估。纤维增强复合材料的疲劳寿命预测为早期产品开发确定了关键领域,从而节省了重新测试和重新设计的成本。本文涉及虚拟耐用性产品开发过程的实现,以预测短纤维增强材料的疲劳寿命。多学科过程包括注塑成型模拟,然后进行结构应力分析和疲劳计算。考虑到成型过程中纤维取向和分布的这种分析方法和模拟过程已通过组件测试得到验证。

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