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Strain rate dependent component based connection modelling for use in non-linear dynamic progressive collapse analysis

机译:基于应变率的基于分量的连接建模,用于非线性动态渐进倒塌分析

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This paper introduces the use of rate dependent springs to component-based joint models. This allows strain rate hardening as well as strain rate induced reductions in ductility to be included in component spring models for inclusion in non-linear dynamic analysis. Experimental tests of fin-plate connections are carried out under static and dynamic conditions with loading time as low as 32 ms to failure. The joints were tested under the combined effects of tensile load and rotation in order to simulate the complex conditions experienced by joints during catenary action. The strain rate modifications to the component models of the joint were observed to be able to accurately model strain rate induced hardening, as well as reductions in failure rotation which occur in joints under dynamic conditions. The rate dependent component models were subsequently incorporated directly into sub-frame models to simulate catenary action developed due to the loss of support to a column. The individual failure criteria of the joint components provide for an accurate simulation of the progressive fracture of joints during collapse. The results are compared with the conventional approach in which joints are modelled using axial and rotational springs. The comparison reveals that, for the scenario investigated, the conventional method leads to a 20% overestimation of load capacity, due to the lack of inclusion of dynamic material property effects and moment capacity reductions resulting from prying action and catenary action axial forces. Thus the approach goes some way to developing a more realistic approximation of moment-tension-rotation response through to fracture of joints in whole frame progressive collapse computer simulations.
机译:本文介绍了基于比率的弹簧在基于构件的关节模型中的使用。这允许将应变率硬化以及应变率引起的延性降低包括在零件弹簧模型中,以包括在非线性动态分析中。鳍板连接的实验测试是在静态和动态条件下进行的,故障加载时间低至32 ms。在拉伸载荷和旋转的共同作用下对关节进行了测试,以模拟关节在接链作用下所经历的复杂条件。观察到对接头部件模型的应变率修改能够准确地模拟应变率引起的硬化,以及在动态条件下在接头中发生的失效旋转的减少。随后将速率相关的组件模型直接合并到子框架模型中,以模拟由于失去支柱支撑而产生的悬链线作用。关节组件的个别失效标准可提供对塌陷过程中关节进行性骨折的准确模拟。将结果与传统方法进行比较,在传统方法中,使用轴向弹簧和旋转弹簧对接头进行建模。比较结果表明,对于所研究的情况,由于缺乏动态材料性能影响以及由于撬动作用和悬链作用轴向力而导致的力矩承载力降低,传统方法导致载荷能力高估了20%。因此,该方法在某种程度上逐步发展了在整个框架渐进式塌陷计算机模拟中直至接头断裂处的力矩-张力-旋转响应的更逼真的近似值。

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