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首页> 外文期刊>Thin-Walled Structures >Experimental and numerical investigations of the plastic response and fracturing of an aluminium-plated structure with transition circular arcs subjected to impact loading
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Experimental and numerical investigations of the plastic response and fracturing of an aluminium-plated structure with transition circular arcs subjected to impact loading

机译:冲击载荷作用下过渡圆弧镀铝结构塑性响应和断裂的实验和数值研究

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摘要

A new aluminium-plated structure with transition circular arcs used for railway vehicles is presented. Two impact experiments were performed using a test trolley to examine the plastic response and fracturing of the aluminium-plated structure. The results show that the deformation mode of the aluminium-plated structure switches from global plastic bending deformation to local fracturing at the transition circular arc region, which is consistent with the design. Numerical results are presented in terms of deformation modes, force responses and levels of absorbed energy, demonstrating good agreement with the experimental results. From the results of the numerical simulation, fracturing processes and variations in element stress triaxiality are presented. It is found that the stress state of elements affecting the initiation of cracking is of a tension state, while the stress state of elements affecting the end of cracking is of a shear state. A validated finite element analysis of an aluminium plated structure with right-angled, circular arcs and chamfering transition sections is presented. Plastic and fracture energy levels of the aluminium-plated structure with three transition sections are measured as 2.56, 27.62, and 30.13 kJ and 0.98, 2.41, and 2.16 kJ, respectively, as the second fracturing point. Finally, the finite element analysis illustrates the impact energy effects involving different combinations of trolley mass and velocity, and experimental boundary conditions for varying bolt yield stress and pre-stress levels are defined in the finite element model to investigate the effects of bolted joints on the dynamic responses of an aluminium-plated structure with transition circular arcs.
机译:提出了一种用于铁路车辆的具有过渡圆弧的新型镀铝结构。使用试验台车进行了两次冲击实验,以检验铝镀层结构的塑性响应和断裂。结果表明,在过渡圆弧区域,镀铝结构的变形模式从整体塑性弯曲变形转变为局部断裂,与设计吻合。数值结果以变形模式,力响应和吸收能水平表示,与实验结果吻合良好。根据数值模拟的结果,给出了压裂过程和单元应力三轴性的变化。发现影响裂纹开始的元素的应力状态为拉伸状态,而影响裂纹结束的元素的应力状态为剪切状态。提出了一种具有直角,圆弧和倒角过渡段的镀铝结构的有限元分析方法。具有三个过渡段的镀铝结构的塑性能级和断裂能级分别测量为2.56、27.62和30.13 kJ,以及0.98、2.41和2.16 kJ作为第二个断裂点。最后,有限元分析说明了涉及小车质量和速度的不同组合的冲击能量效应,并在有限元模型中定义了用于改变螺栓屈服应力和预应力水平的实验边界条件,以研究螺栓连接对节点的影响。过渡圆弧的镀铝结构的动态响应。

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