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Experimental and numerical investigation of expanded metal tube absorber under axial impact loading

机译:轴向冲击载荷下金属网管吸收器的实验与数值研究

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In this research, the cylindrical absorber made of expanded metal sheets under impact loading has been examined. Expanded metal sheets due to their low weight, effective collapse mechanism has a high energy absorption capacity. Two types of absorbers with different cells angle were examined. First, the absorber with cell angle alpha=0 and then the absorber with angle cell alpha=90. Experimental Study is done by drop Hammer device and numerical investigation is done by finite element of ABAQUS software. The output of device is acceleration-time Diagram which is shown by Accelerometer that is located on the picky mass. Also the output of ABAQUS software is shown by force-displacement diagram. In this research, the numerical and experimental study of the collapse type, force-displacement diagrams and effective parameters has been investigated. Similarly, the comparison between numerical and experimental results has been observed that these results are matched well with each other. From the obtained results it was observed that the absorber with cell angle alpha=0, have symmetric collapse and had high energy absorption capacity but the absorber with cell angle alpha=90, had global buckling and the energy absorption value was not suitable.
机译:在这项研究中,已经研究了在冲击载荷下由膨胀金属板制成的圆柱形吸收器。膨胀金属板由于其重量轻,有效的塌陷机理而具有较高的能量吸收能力。研究了两种具有不同孔角度的吸收器。首先,吸收角为α= 0的吸收体,然后吸收角为α= 90的吸收体。通过落锤装置进行实验研究,并通过ABAQUS软件的有限元进行数值研究。设备的输出是加速时间图,由位于质量块上的加速度计显示。力-位移图也显示了ABAQUS软件的输出。在这项研究中,对塌陷类型,力-位移图和有效参数进行了数值和实验研究。类似地,已经观察到数值结果与实验结果之间的比较,这些结果彼此匹配良好。从获得的结果中观察到,具有单元角α= 0的吸收体具有对称的塌陷并且具有高能量吸收能力,但是具有单元角α= 90的吸收体具有整体屈曲并且能量吸收值不适合。

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