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Topological optimisation design of passenger car seat backrest frame based on multiple-loading conditions

机译:基于多重装载条件的乘用车座椅靠背框架拓扑优化设计

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摘要

The newly revised national standard GB 13057-2014 'The strength of the seats and their anchorages of passenger vehicles' puts forward higher requirements for occupant protection of passenger car seats in the dynamic test. Simply improving safety performance may increase seat weight. Considering the dual requirements of safety performance and light weight, this article adopted the topology optimisation method and took into account the strength requirements of multiple loading conditions: forward loading and rearward loading, and finally optimised the structure of seat backrest frame. By changing the weight ratio of loading conditions and the topological mass fraction, the optimal material distribution and force transmission paths of seat backrest frame were optimised. At the same time, considering the ergonomics and the strength of the seat fixing points, the structure of seat backrest frame was fully optimised. On the premise of improving the safety performance of the seats (occupant protection), significant weight reduction was also achieved.
机译:新修订的国家标准GB 13057-2014'座椅的实力及其乘客车辆的锚固件对动态试验中乘用车座椅的乘客保护的更高要求。简单地提高安全性能可能会增加座椅重量。本文考虑了安全性能和重量轻的双重要求,采用了拓扑优化方法,并考虑了多个装载条件的强度要求:前进加载和向后装载,最后优化了座椅靠背框架的结构。通过改变负载条件和拓扑质量分数的重量比,优化了座椅靠背框架的最佳材料分布和力传递路径。同时,考虑符合人体工程学和座椅定影点的强度,座椅靠背框架的结构完全优化。在提高座椅的安全性能(乘员保护)的前提下,还实现了显着的重量。

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