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Numerical studies on dynamic behavior of tubular T-joint subjected to impact loading

机译:冲击载荷作用下管状T型接头动力学行为的数值研究

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摘要

Joints play an important role in resisting impact loading in Tubular structures. In this paper, a finite element model validated by experimental results is developed to numerically study the failure modes and energy dissipation mechanism of tubular T-joint impacted by a drop hammer with the initial velocity of 7-10 m/s. The resistant mechanism is investigated based on the dynamic responses of the joints under impact loading. Strain, displacement and the failure modes of the T-joints are also predicted. Global and local deformations of the tubular joints are distinguished using an equal area axis method, which helps to discover the failure mechanism of the joints. Using the yield line theory, an equivalent impact force estimation method is also proposed based on the impact load versus displacement relationship. The numerical analysis and the simplified method provide a basis for impact resistance evaluation and progressive collapse mitigation of steel tubular structures in design practice in the future.
机译:接头在抵抗管状结构的冲击载荷中起着重要作用。本文建立了一个通过实验结果验证的有限元模型,以数值研究初始锤速为7-10 m / s的落锤冲击管状T形接头的破坏模式和能量耗散机理。基于冲击载荷作用下接头的动态响应,研究了其抵抗机理。还预测了T型接头的应变,位移和破坏模式。使用等面积轴方法区分管状接头的整体和局部变形,这有助于发现接头的破坏机理。利用屈服线理论,提出了一种基于冲击载荷与位移关系的等效冲击力估计方法。数值分析和简化方法为今后在设计实践中评估钢管结构的抗冲击性和逐步塌陷提供了依据。

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