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Finite Element Analysis and Validation of Bus Seat Structure as per AIS023: Safety Features Evaluation of Bus Seat using Hybrid III Dummy

机译:按照AIS023的有限元分析和母线座椅结构验证:使用Hybrid III虚拟公共汽车座椅的安全功能评估

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Buses are always one of the main and favorite sources of public transit. Thousands of people die or injure every year in bus accidents. Bus seat can also cause severe injury to the occupants in case of frontal impact. Seat structure of the bus should absorb sufficient energy to minimize the passenger injury. Most of the occupants seated in the second row or further back were injured by hitting the seat back in the row in front of them. In India, AIS023 (Automotive Industry Standards) is one of the several mandatory standards from CMVR (Central Motor Vehicles Rules) to ensure the seat strength and occupant safety during accidents. This standard specifies minimum and maximum deformations range for the seat back to minimize the passenger injury with adequate seat strength. Present study includes the Finite Element Analysis (FEA) and correlation of bus seat as per AIS023 test setup with LS-Dyna explicit tool. Reasonable correlation was found between test and simulation results. This correlated Finite Element (FE) model then used to calculate the injury levels using 50th percentile Hybrid III midsize male dummy. Final results ensure the safety capability of the seat structure in front impact. This procedure was used to enhance safety in passenger bus seats.
机译:公共汽车始终是公共交通主要和最喜欢的来源之一。每年在巴士事故中每年死亡或伤害成千上万的人。在正面影响的情况下,巴士座椅也可能对乘员造成严重伤害。总线的座椅结构应吸收足够的能量以最大限度地减少乘客伤害。大多数坐在第二排或进一步背部的乘员通过将座椅击中在它们面前的行中击中座椅而受伤。在印度,AIS023(汽车行业标准)是CMVR(中央机动车规则)的若干强制性标准之一,以确保座椅强度和事故中的乘员安全。本标准规定了座椅靠背的最小和最大变形范围,以使乘客损伤具有足够的座椅强度。目前的研究包括根据LS-DYNA显式工具的AIS023测试设置的有限元分析(FEA)和总线座椅的相关性。测试和仿真结果之间发现了合理的相关性。然后,这种相关的有限元(Fe)模型用于使用第50百分位杂交III中型男性假人来计算损伤水平。最终结果确保座椅结构在前面的冲击中的安全性。该程序用于增强乘客公共座椅的安全性。

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