首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Study of damage in windshield glazing subject to impact by a pedestrian's head
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Study of damage in windshield glazing subject to impact by a pedestrian's head

机译:受到行人头部撞击的风挡玻璃的损坏研究

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摘要

The windshield is one of the major components in a vehicle that determines the injury to a pedestrian's head. Therefore, it is critical to study the damage to windshield glazing so as to promote the protection structure for pedestrians. In this paper, classical plate theory in combination with the Green strain and the von Karman assumption is used to develop constitutive relations to describe the large-deformation behaviour of composite poly(vinyl butyral) (PVB) windshield glazing. Previous test data are used to verify the constitutive relations model. A three-dimensional finite element model describing the impact between the head of a pedestrian and the windshield is constructed to investigate the mechanism underlying the damage to the windshield. Three main crack patterns of composite PVB glazing are proved to exist: a circumferential crack, a spider-web crack, and a plastic crack. Therefore, this paper studies the effect of different impact conditions and windshield structures on the damage to the windshield glazing and on the head injury. The results show that a high speed will cause not only a high initial impact speed but also the equivalent impact weight, which can increase both the probability and extent of head injury. Furthermore, the study proves that the PVB film greatly improves the protection for a pedestrian in a traffic accident and it is advised that more layers of PVB film are introduced into the windshield to protect pedestrians better.
机译:挡风玻璃是车辆中决定行人头部受伤的主要部件之一。因此,研究挡风玻璃的损伤对提高行人保护结构至关重要。在本文中,结合格林应变和冯·卡曼假设的经典板理论被用来发展本构关系来描述复合聚乙烯醇缩丁醛(PVB)挡风玻璃的大变形行为。先前的测试数据用于验证本构关系模型。建立了描述行人头部与挡风玻璃之间碰撞的三维有限元模型,以研究挡风玻璃损坏的潜在机理。事实证明,复合PVB玻璃的三个主要裂纹类型是:圆周裂纹,蜘蛛网裂纹和塑性裂纹。因此,本文研究了不同的冲击条件和挡风玻璃结构对挡风玻璃窗玻璃损伤和头部受伤的影响。结果表明,高速不仅会导致较高的初始撞击速度,而且会导致等效的撞击重量,从而增加头部受伤的可能性和程度。此外,研究证明,PVB膜可大大改善交通事故中对行人的保护,建议在挡风玻璃中引入更多层PVB膜,以更好地保护行人。

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