首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >A CASE STUDY: DESIGN OF AN AUTOMOTIVE SEAT BACKREST BY CARBON FIBER REINFORCED PLASTICS
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A CASE STUDY: DESIGN OF AN AUTOMOTIVE SEAT BACKREST BY CARBON FIBER REINFORCED PLASTICS

机译:一种案例研究:碳纤维增强塑料的汽车座椅靠背设计

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摘要

The current automotive seats are mainly manufactured by steel that increases the vehicle weights, fuel consumption and CO_2 emissions, and hence, lightweight carbon fiber-reinforced polymer (CFRP) will be a prospective substitute material. The integrated design method of a CFRP seat backrest will be studied and verified numerically. On the condition that the unchangeable seat dimensions and previous mounting positions on the floor, a three-dimensional CAD conceptual model in which the design and non-design domains were separated was established firstly, and then, the optimal material distribution in the design domain was determined by topology optimization technology according to the ECE (European Union standards) test standard. Next, the positions of ribs are determined and the manufacturing feasibility was verified numerically. Finally, the finite element model of the CFRP seat backrest was established, and static bending stiffness and crashworthiness were analyzed and the simulation results were compared with the previous all-steel structure. It is demonstrated that a 20.4% weight reduction is achieved, and previous 26 steel components could be replaced by only one CFRP component and no additional assembly is required. Both the static and impact test standards are satisfied.
机译:目前汽车座椅由钢增加车辆的重量,燃料消耗和排放CO_2,因此,轻质碳纤维增强的聚合物(CFRP)将是一项前瞻性替代材料主要制造。一个CFRP座椅靠背的集成设计方法进行了研究和数字验证。上不变的座椅的尺寸和在地板前面的安装位置,其中,所述设计和非设计结构域分离的三维CAD概念模型首先建立,然后的条件下,在设计域的最佳的材料分布是根据ECE(欧盟标准)的测试标准通过拓扑优化技术确定。接着,肋的位置被确定,并且制造可行性进行了数值验证。最后,CFRP座椅靠背的有限元模型的成立,和静态抗弯刚度和耐撞性进行了分析和仿真结果与以前的全钢结构进行比较。据证明,20.4%的重量减少被实现,并且前面的26个钢部件可以仅由一个CFRP部件代替,并且不需要额外的组装。静态和冲击试验的标准是满意的。

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