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A numerical study on the influence of internal corrugated reinforcements on the biaxial bending collapse of thin-walled beams

机译:波纹内筋对薄壁梁双轴弯曲破坏影响的数值研究

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The Heat Treatment Forming and in-die Quench (HFQ) process allows for manufacturing of more complex geometries from Aluminium sheets than ever before, which can be exploited in lightweight automotive and aerospace structures. One possible application is manufacturing thin walled beams with corrugated internal reinforcements for complex geometries.This work considers different internal reinforcements (C-section and corrugated) to improve the energy absorption properties of thin walled rectangular beams under uniaxial and biaxial deep bending collapse, for loading angles ranging from 0 to 90 deg, in 15 degrees increments. Using LS-DYNA simulations experimentally validated through unreinforced metallic tubes under quasi-static bending collapse, the finite element results demonstrate the stabilising effect of the reinforcements and an increase in the buckling strength of the cross section.Corrugated reinforcements showed a greater potential for increasing specific energy absorption (SEA), which was supported by investigating key geometric parameters, including corrugation angle, depth and number. This favourable response is due to an increased amount of material undergoing plastic deformation, which consequently improves performance of the beam undergoing post buckling and deep collapse. This concept is applicable to vehicle and aircraft passive safety, with the requirement that the considered geometries are manufacturable from Aluminium Alloys sheet only, using the HFQ process.
机译:热处理成型和模内淬火(HFQ)工艺允许用铝板制造比以往更复杂的几何形状,可用于轻型汽车和航空航天结构。一种可能的应用是制造用于复杂几何形状的带有波纹内增强件的薄壁梁,该工作考虑了不同的内部增强件(C型截面和波纹形),以改善单壁和双轴深弯曲塌陷下薄壁矩形梁的能量吸收性能,以进行加载角度范围从0到90度,以15度为增量。通过在准静态弯曲塌陷下通过未增强金属管进行实验验证的LS-DYNA模拟,有限元结果证明了增强材料的稳定作用和横截面屈曲强度的增加。能量吸收(SEA),这是通过研究关键几何参数(包括波纹角,深度和数量)来支持的。这种有利的响应是由于经历塑性变形的材料数量增加,因此改善了经历后屈曲和深度塌陷的梁的性能。该概念适用于车辆和飞机的被动安全,要求考虑的几何形状只能使用HFQ工艺从铝合金薄板制造。

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