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首页> 外文期刊>Theoretical and Applied Fracture Mechanics >Axial compression and energy absorption characteristics of high-strength thin-walled cylinders under impact load
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Axial compression and energy absorption characteristics of high-strength thin-walled cylinders under impact load

机译:冲击载荷下高强度薄壁圆筒的轴向压缩和能量吸收特性

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Non-linear finite element software LS-DYNA is used to analyze the axial compression behavior and energy absorption of a high-strength thin-walled member under an impact load. To elucidate the effect of dynamic impact on the strain rate, the Cowper-Symonds equation is applied to analyze the plastic state of stress and the onset of dynamic yielding under different strain rates, such that the modeled deformation behavior of the member is consistent with the actual situation. Results for the thin-walled members made of mild steel and dual phase steel are compared. Assuming two different materials with equal sectional areas, an analysis confirms that the energy absorption of high-strength steel thin-walled component is better than the mild steel thin-walled component. Hence, thin-walled tubes made of high-strength steel are investigated using a series of analysis. The relationships between displacement and load, average load and energy absorption properties are obtained.
机译:非线性有限元软件LS-DYNA用于分析高强度薄壁构件在冲击载荷下的轴向压缩行为和能量吸收。为了阐明动态影响对应变率的影响,应用Cowper-Symonds方程分析了不同应变率下的塑性应力状态和动态屈服的开始,从而使构件的变形行为与应力的变化相一致。实际情况。比较了低碳钢和双相钢制成的薄壁构件的结果。假设两种不同的材料具有相同的截面积,则分析证实高强度钢薄壁构件的能量吸收优于低碳钢薄壁构件的能量吸收。因此,使用一系列分析研究了由高强度钢制成的薄壁管。得到了位移与载荷,平均载荷与能量吸收性能之间的关系。

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