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Comparative Crashworthiness Assessment of the ULSAB-AVC model with Advance High Strength Steel and Conventional Steel

机译:高强度钢和常规钢的ULSAB-AVC模型对比较耐火性评估

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As the regulation and assessment program for passenger safety become stringent, automakers are required to develop light and safe vehicles. In order to fulfill both requirements which conflict with each other, automobile and steel companies have proposed the application of AHSS(Advance High Strength Steel) such as DP, TRIP and martensite steel. ULSAB-AVC model is one of the most remarkable reactions to offer solutions with the use of steel for the challenge to simultaneously improve the fuel efficiency, passenger safety, vehicle performance and affordability. This paper is concerned with the crash analysis of ULSABAVC model according to the US-SINCAP in order to compare the effectiveness between the model with AHSS and that with conventional steels. The crashworthiness is investigated by comparing the deformed shape of the cabin room, the energy absorption characteristics and the intrusion velocity of a car.
机译:作为乘客安全的监管和评估计划变得严格,汽车制造商需要开发光线和安全的车辆。为了满足彼此冲突的两个要求,汽车和钢铁公司提出了AHSS(推进高强度钢),如DP,Traw和Martensite钢。 Ulsab-AVC模型是提供钢铁提供解决方案的最具显着反应之一,以便挑战同时提高燃油效率,乘客安全性,车辆性能和负担能力。本文涉及根据US-CISCAP的Ulsabavc模型的碰撞分析,以比较模型与AHSS和传统钢的效果。通过比较驾驶室室的变形形状,能量吸收特性和汽车的入侵速度来研究耐火性。

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