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作 者:刘禹昕 朱涛[1] 肖守讷[1] 阳光武[1] 杨冰[1] 王明猛[1] LIU YuXin;ZHU Tao;XIAO ShouNe;YANG GuangWu;YANG Bing;WANG MingMeng(Traction Power National Key Laboratory,Southwest Jiaotong University,Chengdu 610031,China)
机构地区:[1]西南交通大学牵引动力国家重点实验室,成都610031
出 处:《机械强度》2022年第1期74-80,共7页Journal of Mechanical Strength
基 金:四川省科技计划(2019YJ0216);牵引动力国家重点实验室自主课题(2019TPL_T13)资助~~。
摘 要:为研究轨道车辆车体常用SUS304不锈钢材料的动态力学性能,进行了0.0002 s^(-1)-500 s^(-1)宽应变率下的动态拉伸试验,得到了不同应变率下的应力应变曲线,结果表明在动态拉伸过程中该材料表现出应变硬化现象,应变率强化效应和一定的热软化效应。为准确描述该材料的动态力学性能,首先建立了该材料在室温下的Johnson-Cook模型。在此基础上,引入绝热温升,建立了塑性应变以及应变率相关的修正Johnson-Cook模型。通过对比,表明修正模型能够较好地描述该材料随应变和应变率增加逐步软化的特性,该修正模型为轨道车辆车体结构耐撞性分析提供了基础依据。In order to study the dynamic mechanical properties of SUS304 stainless steel commonly used in rail vehicles,tensile tests under wide strain rates of 0.0002 s^(-1)-500 s^(-1) were carried out respectively.The test results show that SUS304 stainless steel exhibits strain hardening during dynamic stretching.As the strain rate increases,the material exhibits a strain rate strengthening effect.At the same time,a certain thermal softening effect is produced.To accurately describe the dynamic mechanical properties of the material,the Johnson-Cook model of the material at room temperature was first established.On this basis,adiabatic temperature rise is introduced,and a modified Johnson-Cook model considering plastic strain and strain rate correlation is established.The modified Johnson-Cook model can better describe the dynamic mechanical characteristics of SUS304 stainless steel,which is the characteristic that the stress gradually weakens with the increase of strain and strain rate.This modified model provides a basic basis for the crashworthiness analysis of the rail vehicle body structure.
关 键 词:SUS304不锈钢 动态本构 Johnson-Cook模型 车体材料
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