PAWO自主高机动平台结构强度数值分析

K. Podkowski, Łukasz Okruch, P. Jasiński, K. Stańko-Pająk
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引用次数: 2

摘要

本文介绍了PAWO自主高机动车辆车架强度和扭转刚度试验的结果,采用有限元法进行数值分析,并根据UNECE第100号条例进行了储能(电池)强度分析。车辆结构中最重要的部件是部分空间框架或安全笼。发动机、制动系统、燃油系统和转向系统、悬架以及车身和零部件及其装配节、铰链、锁等都附着在车架上。因此,框架必须具有足够的强度,以在发生倾覆或撞击时保护结构和负载。框架由特定尺寸的钢管制成,强度由法规要求确定。汽车底盘的扭转刚度对其行驶特性有重要影响,因此是一个重要的测量参数。从电动汽车安全运行的角度来看,储能(电池)测试具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Strength numerical analyses of the construction of the PAWO autonomous high mobility platform
The paper presents the results of the tests of strength and torsional stiffness of the PAWO autonomous high mobility vehicle frame, using numerical analyses using the FEM finite element method, as well as energy storage (battery) strength analyses in accordance with UNECE Regulation No. 100. The most important element of the vehicle structure is part of the space frame or safety cage. The engine, braking system, fuel system and steering system, suspension, as well as the body and parts, their assembly knots, hinges, locks, etc. are attached to the frame. The frame must therefore be of sufficient strength to protect the structure and the load in the event of overturning or impact. The frame is made of steel pipes of specific dimensions, and strength is determined by regulatory requirements. The torsional stiffness of the vehicle chassis has a significant impact on its driving characteristics and is therefore an important parameter for measurement. Energy storage (battery) testing is of great importance from the point of view of the safe operation of an electric vehicle.
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