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基于磁场强度检测的悬索桥缆索锈蚀风险概率计算方法 被引量:2
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作者 姚国文 李啸林 +1 位作者 刘宇森 靳永志 《科学技术与工程》 北大核心 2020年第23期9609-9614,共6页
为了分析和评定服役期内悬索桥缆索结构的锈蚀状态及屈曲破坏风险概率,开展缆索结构的加速腐蚀试验,通过拟合得到磁场总强度与腐蚀失重率的关系。在已有的抗力概率模型和荷载概率模型研究的基础上,剔除次要因素,通过极限状态方程建立缆... 为了分析和评定服役期内悬索桥缆索结构的锈蚀状态及屈曲破坏风险概率,开展缆索结构的加速腐蚀试验,通过拟合得到磁场总强度与腐蚀失重率的关系。在已有的抗力概率模型和荷载概率模型研究的基础上,剔除次要因素,通过极限状态方程建立缆索结构锈蚀屈曲破坏风险概率计算方法。以某大跨径悬索桥为背景,根据三轴磁场强度检测结果,判断缆索结构的锈蚀状况,通过现场检测数据建立悬索桥有限元模型,计算缆索的抗力概率模型、荷载概率模型,从而得到悬索桥在当前缆索系统锈蚀状态下的破坏率。结果表明:随着试样腐蚀率的增加,磁场总强度呈现下降趋势,且其测值越离散。锈蚀评定方法能够较好地拟合磁场总强度和腐蚀失重率的关系。基于现场锈蚀评定和有限元模拟建立的悬索桥缆索结构锈蚀风险概率计算方法切实可行。 展开更多
关键词 悬索桥缆索结构 加速腐蚀试验 三轴磁场强度 锈蚀评定 风险概率
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Spatial structural analysis of main saddle for single tower spatial cable self-anchored suspension bridge
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作者 李建慧 李爱群 +1 位作者 袁辉辉 李喜平 《Journal of Southeast University(English Edition)》 EI CAS 2009年第3期372-375,共4页
Based on the engineering background of the Jiangxinzhou Bridge in Nanjing, issues related to the spatial main saddle of the self-anchored suspension bridge are studied. The refinement finite element model is establish... Based on the engineering background of the Jiangxinzhou Bridge in Nanjing, issues related to the spatial main saddle of the self-anchored suspension bridge are studied. The refinement finite element model is established by the secondary development technology based on the platform of the general finite element program, and a reasonable load pattern is used in its spatial structural analysis, by which its path of force transference and stress distribution are obtained. Matched with the spatial main cable, the tangency point correction method is also discussed. The results show that the lateral wall stress of the saddle groove is higher than the stress within the wall due to the role of lateral forces in the finished bridge state; the horizontal volume force of the main cable can generate a gradient distributed vertical extrusion pressure on the saddle clamping device and the main saddle body; the geometric nonlinear effect of the self- anchored suspension bridge cable system in the construction process is significant, which can be reflected in the spatial tangent point position of the main cable with the main saddle changes a lot from free cable to finished cable. 展开更多
关键词 self-anchored suspension bridge finite element main saddle spatial cable structural design
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