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采用原位等效静荷载试验方法,检测和验证13m跨简支钢筋混凝土单块板,铰缝处理前后结构的受力性能,铰缝处理前后单板挠度分别为1/307、1/786,单板经铰缝处理满足了正常使用要求。 相似文献
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建立了以板单元为基本单元的泵车有限元分析模型,利用MSC/NASTRAN软件对其进行了静强度分析,并进行了测试试验.计算结果与试验数据相吻合,验证了计算的正确性.找出了臂架过早出现裂纹的原因,并给出了结构改造的方法. 相似文献
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首先对赣江大桥公路桥进行病害调查,评定全桥各部位损伤状态。根据评定结果,再对材料退化、结构损伤与受力性能进行实桥测试。应用断裂力学方法,采用观测和超声波探测方法确定初始裂纹尺寸,通过裂纹扩展模拟得出临界杆件的剩余寿命。综合实测数据与理论分析,评估该桥使用安全性和剩余寿命,并建议维护加固措施。 相似文献
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Probabilistic fatigue analysis of offshore structures requires the numerical simulation of a huge number of loading cases to compute the long-term multi-dimensional integral associated to the fatigue damage assessment. This paper proposes the implementation of the univariate dimension-reduction method developed by Rahman and Xu [1] in order to compute the long-term fatigue damage more efficiently. This method is particularly attractive because it reduces significantly the number of simulations by decomposing the N-dimensional integral associated to expected long-term fatigue damage assessment into the sum of N one-dimensional integrals. In addition, this paper compares the univariate-dimension reduction method with the brute force direct integration methodology and other methods based on Taylor expansions, such as perturbation approach and asymptotic expansion method discussed by Low and Cheung [2]. Two comprehensive examples are included to show the effectiveness of the method. At first, the performance of the univariate dimension-reduction method is evaluated by assessing the fatigue damage of a theoretical structure represented by a single stress response amplitude operator (RAO). Then, in order to show a case of practical application, the fatigue damage is evaluated for a Steel Lazy Wave Riser (SLWR) connected to an FPSO in a water depth of 2200 m. 相似文献
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王沛沛 《城市轨道交通研究》2020,(5):192-195,199
以成都地铁为例,基于钢轨绝缘节的老化和单向导通装置频繁导通问题,将车辆段及停车场等效为小电阻接地支路进行仿真。仿真结果表明,小电阻接地支路可使正线钢轨电位最大提升27.2 V,威胁了正线的安全运营。据此提出一种应用于车辆段与停车场的新型钢轨回流装置,并介绍其控制方法。该新型钢轨回流装置具有辅助列车安全通过绝缘节遏制车辆段与停车场内杂散电流、评估钢轨绝缘节绝缘性能和测量出入段线钢轨过渡电阻的功能。 相似文献
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Stress concentration and residual stress have a significant influence on fatigue life of welded joints. In order to reduce the stress concentration of welded joints, a mathematical design method of tensile triangles (MTT) based on bionics was applied to weld shape design. Accordingly, the stress concentration of various weld beads in the corner boxing welded joint and the fillet welded T-joint was dissected using our in-house FEM software JWRIAN. It was found that there existed a large stress concentration in the conventional welded joints, whereas those welded joints with elongated weld bead were accompanied by a lower stress concentration, especially for elongated weld bead with MTT design. Furthermore, among the weld shapes of the corner boxing fillet welded joint, the rectangle shape of weld bead had the minimum stress concentration factor (1.05). For the fillet welded T-joint with MTT design, the stress concentration of weld toe decreased dramatically with the increase of the index of designed shape, but there was a minor difference of stress concentration at weld root between the weld beads with MTT design. In addition, application of low transformation temperature (LTT) weld metal utilizing martensitic transformation to the fillet welded T-joints can produce compressive residual stress at weld toe. 相似文献