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Energy Dissipation Test: Effect of After-market Interior Fitments on Deceleration Values and Sharp Edges in Passenger Cars

机译:能量耗散试验:后期内部装饰对乘用车减速值和锋利边缘的影响

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Energy dissipation testing of vehicle's interior fitments is done at various defined locations as per the regulation ECE R21. Interior fitting impact tests became mandatory in April 2006 for models manufactured from April 2006 and April 2007 for models being manufactured before April 2006 in India. With the implementation of stringent safety regulations in India, it is mandatory that every manufacturer tests and certifies their product to comply with the automotive safety standards. Automotive industry has a challenging task of designing and evaluating the components that play a vital role in the event of an unfortunate accident. In this context, a number of tests on safety belt anchorages, seat anchorages and interior fittings such as instrument panel, steering wheel, etc., are conducted. Although manufacturers have been introducing new technologies to ensure the safety of the occupants, it has been found that the vehicle interiors are modified by the customers to adjust to their life style. Various fitments such as instrumented panel mounted accessories (IPMA), steering wheel assists (SWA) are fitted in the passenger car, which might drastically affect the performance of the safety-certified components in the vehicle. Head-form impact tests were carried out to evaluate the deceleration levels and mode of deformations of IPMA & SWA fitments in head impact zone (HIZ). The results were analyzed to understand the injury severity upon impact. The intent of this paper is to evaluate the energy dissipation characteristics of IPMA & SWA fitments.
机译:根据调节ECE R21,车辆内部配件的能量耗散测试在各种定义的位置进行。内部拟合影响试验于2006年4月成为2006年4月和2007年4月制造的模型的强制性,适用于2006年4月在印度制造的模型。随着印度严格安全规定的实施,强制要求每个制造商测试和证明其产品符合汽车安全标准。汽车工业具有挑战性的设计和评估在不幸事故发生中发挥重要作用的组成部分的任务。在这种情况下,进行关于安全带锚固,座椅锚固和内部配件的许多测试,例如仪表板,方向盘等。虽然制造商一直在推出新技术,以确保占用者的安全性,但已经发现车辆内饰由客户修改,以适应他们的生活方式。各种配件,如仪表板安装的配件(IPMA),方向盘辅助(SWA)安装在乘用车中,这可能会大大影响车辆安全认证部件的性能。进行了头部冲击试验,以评估头部冲击区(HIZ)中IPMA&SWA配件的减速水平和变形模式。分析结果以了解损伤时的损伤严重程度。本文的目的是评估IPMA&SWA配件的能量耗散特征。

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