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Multi-objective crashworthiness optimization of thin-walled multi-cell tubes with different wall lengths

机译:具有不同壁长的薄壁多电池管的多目标耐牢固优化

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Thin-walled tubes are extensively used in the automotive industry because of their high energy absorption capacity and lightweight advantages. These structures are expected to have high energy absorption and low peak force during any collision. In this study, to obtain low peak crushing force, different wall lengths have applied to the thin-walled tubes. Different wall lengths have investigated using doubly-walled walled, inner multi-cell walled and multi-cell walled tubes obtained from square, hexagon, octagon and circle cross-sections. To evaluate crashworthiness performance dynamic impact analyses at a constant velocity are carried out using the non-linear explicit Finite Element (FE) code Radioss. According to the FE results, tubes with different wall lengths give lower peak crushing force (PCF) of up to 36% compared to normal tubes. On the other hand, in tubes with different wall lengths, there is a decrease of up to 6% in specific energy absorption (SEA) compared to normal tubes. Thus, considering the decrease of the PCF, the advantage of tubes with different wall lengths is presented. Optimization studies have carried out for the second type octagonal tube with different wall lengths (O2G) and the third type octagonal tube with different wall lengths (O3G) which give better SEA and PCF values between all tubes.
机译:由于其高能量吸收能力和轻质优势,薄壁管广泛用于汽车行业。预期这些结构在任何碰撞期间都具有高能量吸收和低峰值力。在该研究中,为了获得低峰值破碎力,不同的壁长已经施加到薄壁管上。使用从正方形,六边形,八角形和圆形横截面获得的双墙壁,内部多细胞壁和多细胞壁壁管进行了不同的壁长。为了评估持续速度下的崩溃性能,使用非线性显式有限元(FE)代码Radioss进行恒定速度。根据Fe结果,与普通管相比,具有不同壁长的管子具有较低的峰值破碎力(PCF),可达36%可达36%。另一方面,与壁长度不同的管子中,与正常管相比,在特定能量吸收(海)中,在特定能量吸收(海)中的降低达6%。因此,考虑到PCF的减少,呈现了具有不同壁长度的管的优点。优化研究已经为具有不同壁长(O2G)的第二型八角形管,以及具有不同壁长(O3G)的第三型八角形管,其在所有管之间提供更好的海洋和PCF值。

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