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首页> 外文期刊>International journal of crashworthiness >Thin-walled structural configurations for enhanced crashworthiness
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Thin-walled structural configurations for enhanced crashworthiness

机译:薄壁结构配置,提高了耐撞性

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Passenger safety is an important aspect in the design and construction of automobiles. This is achieved in frontal collisions by introducing energy absorbing (EA) structures known as crumple zones or crush cans within the frontal structures that absorb impact energy by controlled plastic deformation and attenuate the intensity of impact during collisions. Although considerable research is carried out till date in developing a variety of EA structures, major limitations in most structures is that they exhibit high initial peak force (F-peak) and low stroke efficiency (SE). This paper aims to develop thin walled EA structural configurations that can weaken the intensity of impact-induced decelerations while maximising the energy absorbed. It initially presents finite element analysis (FEA) of an existing EA structure taken from a literature whose experimental results are available for validation of numerical modelling and analysis procedures. Subsequently, it presents five EA structural configurations, their numerical analyses and assessment of their crashworthiness based on important parameters such as crush force efficiency (CFE), SE and specific energy absorption (SEA). Aluminium alloy AA7005 in T6 state is used for the proposed EA structures. The relative merits of each configuration are discussed based on results of numerical analyses and the best configuration with all-round performance in crashworthiness is recommended.
机译:乘客安全是汽车设计和制造中的重要方面。在正面碰撞中,这可以通过在正面结构中引入称为“压碎区”或“压碎罐”的能量吸收(EA)结构来实现,该结构通过受控的塑性变形吸收冲击能并减弱碰撞过程中的碰撞强度。尽管迄今为止在开发各种EA结构方面进行了大量研究,但大多数结构的主要局限性在于它们具有较高的初始峰值力(F-peak)和较低的冲程效率(SE)。本文旨在开发薄壁EA结构构型,该构型可以减弱冲击引起的减速的强度,同时最大程度地吸收能量。它首先介绍了现有EA结构的有限元分析(FEA),该结构取自文献,其实验结果可用于验证数值建模和分析程序。随后,它基于重要参数(如挤压力效率(CFE),SE和比能量吸收(SEA))介绍了五个EA结构配置,其数值分析和耐撞性评估。拟议的EA结构使用T6状态的AA7005铝合金。根据数值分析的结果,讨论了每种配置的相对优点,并建议了在耐撞性方面具有全面性能的最佳配置。

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