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Metal Plastic Hybrid (MPH) Rocker Panel for EV Battery Protection

机译:用于电动车电池保护的金属塑料混合动力(MPH)翘板

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Multi-material solutions for the light weighting of electric and internal combustion engine vehicles is the new trend to replace structural components made of metal. Automotive chassis consists of structural members such as rails, posts and rockers, which form frames that need to meet crashworthiness requirements such as frontal, side (IIHS & Pole) and roll over impacts. In the present paper, we discuss the design and optimization of metal plastic hybrid (MPH) based rocker panel solutions to meet pole impact requirements. Rocker panel structures are situated at the bottom in the lateral edges of the vehicle and extend longitudinally along the length of the vehicle, between the front and rear wheels. Electric Vehicles (EVs) having batteries below the floor along the vehicle length. Rocker panel structures are reinforced to absorb the energy during a crash protecting the battery from intrusion and shock. Metal rocker panel structures are made with multiple reinforcements (sandwich/ extruded tubular metal structures) and a sequence of assembly processes are involved to attach them onto the vehicle frame. Lower package space and energy absorption to avoid intrusion and damage to sub-structural parts during pole impact (a regulatory requirement) is the key challenge for rocker panel design. Honeycomb-based MPH rocker panel structures were designed to absorb impact energy in the available/limited package space for pole impact requirements. Material models (MAT 24 & MAT187) were developed using high strain rate data, and simulations were performed to optimize the design using LS Dyna. The MPH rocker panel developed is 40% lighter in weight with similar performance, when compared with the metal solution.
机译:电动和内燃机车辆轻量化的多材料解决方案是替代金属结构部件的新趋势。汽车底盘由诸如导轨,立柱和门槛之类的结构部件组成,这些部件形成需要满足防撞性要求的框架,例如正面,侧面(IIHS和立杆)和侧翻冲击力。在本文中,我们讨论了基于金属塑料混合动力(MPH)的门槛板解决方案的设计和优化,以满足杆冲击的要求。翘板面板结构位于车辆的侧边缘的底部,并且在前后轮之间沿着车辆的长度纵向延伸。电动汽车(EV),其电池沿地板长度在地板下方。车门槛板结构经过加固,可以吸收碰撞时的能量,从而保护电池免受侵入和撞击。金属门槛板结构由多种增强材料制成(三明治/挤压管状金属结构),涉及一系列组装过程,以将它们固定到车架上。减小包装空间和能量吸收以避免在撞杆时(规章要求)侵入和损坏子结构零件是门槛板设计的关键挑战。基于蜂窝的MPH翘板面板结构旨在吸收可用/有限的封装空间中的冲击能量,以满足极点冲击的要求。使用高应变率数据开发了材料模型(MAT 24和MAT187),并使用LS Dyna进行了仿真以优化设计。与金属解决方案相比,开发的MPH翘板重量减轻了40%,性能相似。

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