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Mechanical Analysis for Anchorage Zone Connecting Main Cable and Main Girger of Self-anchored Suspension Bridge

机译:连接主电缆和自锚式悬架桥主吉尔的锚固区力学分析

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Self-anchored suspension bridge is a self-balancing system by anchored the main cable at each end of main girder. With complicated configuration and important rule of transferring tension in main cable to main girder, the anchorage region is one of the most critical issues during designing a self-anchored suspension bridge. It is impossible to fully understand the mechanical behavior only by spatial beam and column model but spatial refined model. Because the behavior of anchorage region is greatly influenced by its boundary condition, in this paper, reasonable length of main girder in calculation model is discussed based on the spatial refined model. The mechanical behavior of initial anchorage structure is calculated. A modified anchorage configuration is proposed according to the stresses distribution of anchorage zone. Calculation results show the modified anchorage configuration can make the force transferring smoothly and decrease the stresses of anchorage structure, and it can be referenced to similar bridges.
机译:通过将主电缆固定在主梁的每一端,自锚式悬挂桥是自平衡系统。具有复杂的配置和将主电缆中的张力转移到主梁的复杂配置和重要规则,锚地区域是设计自锚固悬架桥期间最关键的问题之一。只有仅通过空间梁和柱式模型,而是空间精制模型即可完全理解机械行为是不可能完全理解的。因为锚固区域的行为受到其边界条件的极大影响,因为本文基于空间精制模型讨论了计算模型中的主要梁的合理长度。计算初始锚固结构的力学行为。根据锚固区的应力分布提出改进的锚固配置。计算结果显示改进的锚固构造可以使力平稳地传递并降低锚固结构的应力,并且可以参考类似的桥梁。

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