论文标题

铝泡沫填充的瓦楞纸和锥形管的压缩行为和撞车性分析,厚度为渐变

Compression behaviour and crashworthiness analysis of aluminum foam filled corrugated and tapered tubes with graded thickness

论文作者

Reddy, Santhosh, Sampath, Vignesh, Rao, C. Lakshmana

论文摘要

薄壁的直圆管(SCT)经常用作易碎应用中吸收能量的设备。本文引入了各种管构构型,即铝制泡沫填充的波纹管和带有渐变厚度的锥形管,以控制塌陷模式,并最大程度地减少峰值压缩力和力量放置曲线的波动。使用市售的有限元包abaqus Abaqus 6.13在60 km/h的冲击速度(对应于16.7 m/s)时进行动态破碎模拟。对铝制泡沫填充的动态粉碎行为进行了比较研究,并进行了分级厚度和波纹管。结果表明,在空管的情况下,波纹管变形模式更可控制和可预测。在泡沫填充的管中,变形模式从钻石或混合模式变为琴contergina模式,这对可碰撞的应用非常有用。与空管相比,泡沫填充管的压碎力效率增加,这是由于较高的平均力,这可以通过力置换曲线中的波动较小而实现。研究了波纹波长和波纹管的振幅对塌陷模式,峰值压碎力和能量吸收的影响。与常规的直圆管相比,瓦楞机的力置位曲线中的初始峰值和波动较小。可以通过更改波纹管的波纹波长和波纹管的振幅来获得所需的碰撞特征。

Thin-walled straight circular tubes (SCT) are frequently used as energy absorbing devices in the crashworthy applications. This paper introduces a various tubal configuration, namely aluminium foam filled corrugation tube and tapered tube with graded thickness, to control the collapse mode, and minimize the peak crushing force and fluctuations in force-displacement curves. Dynamic crushing simulations were carried out using commercially available finite element package ABAQUS explicit 6.13 at impact velocity of 60 km/h (corresponding to 16.7 m/s). A comparative study on the dynamic crushing behaviour of aluminum foam-filled tapered with graded thickness and corrugated tubes were performed. The results showed that deformation mode of corrugated tube is more controllable and predictable in the case of empty tubes. In foam filled tubes the mode of deformation changing from diamond or mixed mode to concertina mode which is useful for crashworthy applications. The crushing force efficiency of foam filled tubes increases when compared with the empty tubes because of a higher mean force which can be achieved by less fluctuations in force-displacement curves. The effects of corrugation wavelength and amplitude of corrugation tubes on the collapse mode, peak crushing force and energy absorption were studied. Compared to the conventional straight circular tube, initial peak force and fluctuation in the force-displacement curves of corrugated tube is considerably less. Desired crashworthy characteristics can be obtained by changing corrugation wavelength and amplitude of corrugated tubes.

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