Research on heavy-haul adaptive technology and strengthening measures for existing railway steel bridge

Xiaochen Ju
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Abstract

PurposeThis research addresses the diverse characteristics of existing railway steel bridges in China, including variations in construction age, design standards, structural types, manufacturing processes, materials and service conditions. It also focuses on prominent defects and challenges related to heavy transportation conditions, particularly low live haul reserves and severe fatigue problems.Design/methodology/approachThe study encompasses three key aspects: (1) Adaptability assessment: It begins with assessing the suitability of existing railway steel bridges for heavy-haul operations through comprehensive analyses, experiments and engineering applications. (2) Strengthening: To combat frequent crack defects in the vertical stiffener end structure of girder webs, fatigue performance tests and reinforcement scheme experiments were conducted. These experiments included the development of a hot-spot stress S-N curve for this structure, validating the effectiveness of methods like crack stop holes, ultrasonic hammering and flange angle steel. (3) Service life extension: Research on the cruciform welded joint structure (non-fusion transfer type) focused on fatigue performance over the long life cycle. This led to the establishment of a fatigue S-N curve, enhancing Chinese design codes.FindingsThe research achieved several significant outcomes: (1) Successful implementation of strengthening and retrofitting measures on a 64-m single-span double-track railway steel truss girder on an existing heavy-duty line. (2) Post-reinforcement, a substantial 26% to 32% reduction in live haul stress on bridge members was achieved. (3) The strengthening and retrofitting efforts met design expectations, enabling the bridge to accommodate vehicles with a 30-ton axle haul on the railway line.Originality/valueThis research systematically tackles challenges and defects associated with Chinese existing railway steel bridges, providing valuable insights into adaptability assessment, strengthening techniques and service life extension methods. Furthermore, the development of fatigue S-N curves and the successful implementation of bridge enhancements have practical implications for improving the resilience and operational capacity of railway steel bridges in China.
既有铁路钢桥重载适应技术及加固措施研究
目的 本研究探讨了中国既有铁路钢桥的不同特点,包括建造年代、设计标准、结构类型、制造工艺、材料和使用条件的差异。本研究包括三个主要方面:(1) 适应性评估:首先,通过综合分析、实验和工程应用,评估现有铁路钢桥对重载运输的适用性。(2) 加固:为消除梁腹板垂直加劲端结构中频繁出现的裂缝缺陷,进行了疲劳性能测试和加固方案实验。这些实验包括绘制该结构的热点应力 S-N 曲线,验证裂缝止水孔、超声波锤击和翼缘角钢等方法的有效性。(3) 延长使用寿命:十字形焊接接头结构(非熔化传递型)的研究重点是长寿命周期内的疲劳性能。研究结果该研究取得了几项重要成果:(1)成功实施了既有重载线路上 64 米单跨双轨铁路钢桁梁的加固和改造措施。(2) 加固后,桥梁构件的活载应力大幅降低了 26% 至 32%。(3) 加固和改造工作达到了设计预期,使桥梁能够适应铁路线上 30 吨轴重的车辆。此外,疲劳 S-N 曲线的开发和桥梁加固措施的成功实施对提高中国铁路钢桥的抗灾能力和运营能力具有实际意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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