Analytical Approach for Vehicle Body Structures Behaviour Under Crash at Aspects of Overloading and Crumple Zone Length

IF 1 Q4 ENGINEERING, MECHANICAL
D. Kurpisz, Maciej Obst, T. Szymczak, Radosław Wilde
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引用次数: 0

Abstract

Abstract Road safety problem is still topical, especially since the number of vehicles and the volume of traffic are increasing. It is possible to increase the safety of road users through systemic changes in many areas related to transport. The deformation of the vehicle body during an accident has an impact on the loads acting on the passengers. Vehicle body deformation depends on complex parameters, and knowledge of these parameters is essential for designing crumple zones and the accident reconstruction process. Knowledge of the mechanical parameters of the vehicle structure during deformation is also a reference to passenger injury indicators assessment. This paper reports results from the analytical approach for determining the protection level of personal vehicles. The proposed conception is based on the results from the static stiffness characteristic of the Ford Taurus, which gives the possibility of phenomenological and simple body crumple analytical description at a speed equal to 10 km/h, 40 km/h, 56 km/h and 60 km/h, which is an original part of the work. The approach enables us to describe the vehicle crash by focusing on variations of deformation in time, stiffness, vehicle collision time (duration), deceleration and dynamic crash force. Basing on the body stiffness data of the personal vehicle, the length of the deformation zone in the front of the car and the maximum values of force at the crash for a speed of 60 km/h are presented. Results obtained by the authors show that is possible to estimate the overloading level during the crash time of a vehicle based on the stiffness characteristic of the car body. The proposed methodology can be developed and the advantage of the presented procedure is an uncomplicated useful tool for solving complex problems of a vehicle crash.
超载和碰撞区长度对车身结构碰撞行为的分析方法
摘要道路安全问题仍然是一个热门话题,特别是在车辆数量和交通量不断增加的情况下。通过与交通相关的许多领域的系统性变革,可以提高道路使用者的安全。事故期间车身的变形会对作用在乘客身上的载荷产生影响。车身变形取决于复杂的参数,了解这些参数对于设计褶皱区和事故重建过程至关重要。了解车辆结构在变形过程中的机械参数也是评估乘客伤害指标的参考。本文报告了确定个人车辆防护等级的分析方法的结果。所提出的概念是基于福特Taurus的静态刚度特性的结果,该特性提供了在速度等于10 km/h、40 km/h、56 km/h和60 km/h时进行现象学和简单车身褶皱分析描述的可能性,这是工作的原始部分。该方法使我们能够通过关注变形在时间、刚度、车辆碰撞时间(持续时间)、减速度和动态碰撞力方面的变化来描述车辆碰撞。根据个人车辆的车身刚度数据,给出了车速为60km/h时汽车前部变形区的长度和碰撞力的最大值。研究结果表明,基于车身刚度特性来估计车辆碰撞时的过载水平是可能的。所提出的方法是可以发展的,并且所提出的程序的优点是对于解决车辆碰撞的复杂问题来说是一个简单有用的工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Acta Mechanica et Automatica
Acta Mechanica et Automatica ENGINEERING, MECHANICAL-
CiteScore
1.40
自引率
0.00%
发文量
45
审稿时长
30 weeks
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