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机构地区:[1]西南交通大学土木工程学院,四川成都610031 [2]江苏中泰桥梁钢构股份有限公司,江苏泰州214521
出 处:《西南交通大学学报》2015年第4期691-697,共7页Journal of Southwest Jiaotong University
基 金:国家自然科学基金资助项目(51378430);中央高校基本科研业务费专项资金科技创新项目(SWJTU11CX005)
摘 要:为了揭示钢板喷丸处理后残余应力场以及表面粗糙度的分布规律,采用有限元软件ABAQUS建立了多丸模型,模拟了铸铁丸对桥梁用钢Q345钢板的喷射过程,对比分析了冲击速度、冲击次数和弹丸直径对喷丸后钢板水平向残余应力沿板厚的分布以及表面粗糙度的影响.研究结果表明,随着冲击速度、冲击次数以及弹丸直径的增加,残余压应力有均匀化的趋势,并且分布范围逐渐向厚度方向发展,同时表面粗糙度也随之逐渐增大.根据表面粗糙度随冲击次数的变化规律,建议采用对数函数来表示二者的关系,并给出了弹丸直径为1.4 mm情况下表面粗糙度值与喷丸速度和冲击次数的相互关系.In order to study the distribution of residual stress field and surface roughness of a steel plate after shot peening treatment, finite element models of shot peening with multiple shots are established using ABAQUS. Through the models, the dynamic process of cast shot peening of Q345 steel plates used for bridge is simulated. Moreover, the effect of impact velocity, impact times, and shot diameter on the horizontal residual stress along the depth and on the surface roughness are analyzed. The results show that as the impact velocity, impact times, and shot diameter increase, the residual compressive stress has a trend of homogenization, the stress distribution range develops gradually in the direction of thickness, and the surface roughness increases gradually. According to the law of surface roughness changing with the impact times, a logarithmic function is proposed to represent the relationship between surface roughness and impact times. In addition, given a shot diameter of 1.4 ram, the relationship between surface roughness , impact velocity and impact times is presented.
分 类 号:TG142.7[一般工业技术—材料科学与工程]
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