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作 者:付志国 FU Zhiguo(CCS Offshore Engineering Technology Center,Tianjin 300457,China)
机构地区:[1]中国船级社海洋工程技术中心,天津300457
出 处:《石油工程建设》2022年第6期6-9,共4页Petroleum Engineering Construction
基 金:科技部科研项目“南海现代化养殖设施及智能化养殖平台开发”(2020YFD0901001)。
摘 要:为分析凹陷深度和凹陷长度对H型钢残余极限强度的影响,采用非线性有限元分析方法,利用圆柱撞击H型钢腹板模拟其弹塑性变形,得到有凹陷的H型钢,在凹陷位置不变的前提下,通过控制凹陷深度和凹陷长度的变化,分析H型钢在轴向压力作用下的残余极限强度变化规律。数值模拟结果显示:(1)随着最大凹陷深度的增大,H型钢的残余极限强度逐渐降低,特别是当最大凹陷深度接近H型钢腹板厚度时,H型钢的残余极限强度仅为无凹陷H型钢极限强度的三分之一;(2)随着最大凹陷长度的不断增加,H型钢的残余极限强度成反比例直线下降。凹陷的模拟方法和有限元计算结果为评估有凹陷H型钢的残余极限强度提供了一定的参考。To analyze the influence of the depth and length of dents on the residual ultimate strength of H-beams,this study employs the nonlinear finite element analysis and makes a cylinder hit the web of an H-beam to simulate its elastoplastic deformation and obtain the H-beam with dents.Assuming that the position of the dent is constant,this paper analyzes the variation laws of residual ultimate strength of the H-beam under axial compression by controlling the depth and length of the dent.The results show that(1)the residual ultimate strength of the H-beam decreases with the increase in the maximum dent depth,and in particular,the residual ultimate strength of the H-beam is only one-third of that of the H-beam without dents when the maximum dent depth is close to the thickness of the Hbeam web.(2)The residual ultimate strength of the H-beam plummets in inverse proportion to the increase in the dent length.The simulation method of dents and the finite element calculation result provide a certain reference for evaluating the residual ultimate strength of H-beams with dents.
分 类 号:TG142.1[一般工业技术—材料科学与工程]
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