首页> 外文会议>International Welding/Joining Conference-Korea; 20070510-12; Seoul(KR) >A Rate-dependent Hysteresis Model for Structural Steel(SM490) considering the Coupled Effect of Strain Rate Hardening and Temperature Rise
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A Rate-dependent Hysteresis Model for Structural Steel(SM490) considering the Coupled Effect of Strain Rate Hardening and Temperature Rise

机译:考虑应变速率硬化和温升耦合效应的结构钢比率依赖型磁滞模型(SM490)

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摘要

In steel structures, the mechanical characteristics and the hysteretic behavior during dynamic behavior is different to those during static deformation. This is due to the coupled effect of strain rate hardening and temperature rise. To predict hysteretic behavior of steel structures under dynamic/cyclic loading such as earthquake, it is therefore necessary to develop a rate-dependent hysteresis model which can accurately describe the static-dynamic mechanical characteristics considered the coupled effect of strain rate hardening and temperature rise as well as the hysteretic behavior. In this paper, to develop a rate-dependent hysteresis model of SM490(structural steel according to Korean standard), the monotonic and cyclic loading tests were performed for strain rate. Based on the test results, the rate-dependent hysteresis model of SM490 was formulated and with the material parameters used, the model was derived. The validity and the accuracy of the developed model were verified by comparing between the analyses and the experiments. The comparison results show that the rate-dependent hysteresis model of SM490 developed by the authors can accurately predict the static-dynamic hysteretic behavior of steel structures under cyclic loading.
机译:在钢结构中,动态行为期间的机械特性和滞后行为与静态变形过程中的不同。这是由于应变速率硬化和温度升高的耦合作用。为了预测钢结构在动态/循环载荷(例如地震)下的滞后行为,因此有必要建立一个速率相关的滞后模型,该模型可以准确地描述考虑了应变速率硬化和温度上升的耦合作用的静力学特性。以及滞后行为。为了建立基于速率的磁滞模型SM490(根据韩国标准的结构钢),对应变率进行了单调和循环载荷试验。根据测试结果,制定了SM490的速率相关磁滞模型,并根据所用材料参数推导了该模型。通过将分析与实验进行比较,验证了所开发模型的有效性和准确性。比较结果表明,作者建立的基于速度的磁滞滞回模型SM490可以准确预测钢结构在循环载荷下的静动力滞后行为。

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