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Mechanical properties and fracture toughness of rail steels and thermite welds at low temperature

机译:铁路钢和铝热焊接的低温力学性能和断裂韧性

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摘要

Brittle fracture occurs frequently in rails and thermite welded joints, which intimidates the security and reliability of railway service. Railways in cold regions, such as Qinghai-Tibet Railway, make the problem of brittle fracture in rails even worse. A series of tests such as uniaxial tensile tests, Charpy impact tests, and three-point bending tests were carried out at low temperature to investigate the mechanical properties and fracture toughness of U71Mn and U75V rail steels and their thermite welds. Fracture micromechanisms were analyzed by scanning electron microscopy (SEM) on the fracture surfaces of the tested specimens. The ductility indices (percentage elongation after fracture and percentage reduction of area) and the toughness indices (Charpy impact energy A_k and plane-strain fracture toughness K_(IC) of the two kinds of rail steels and the corresponding thermite welds all decrease as the temperature decreases. The thermite welds are more critical to fracture than the rail steel base metals, as indicated by a higher yield-to-ultimate ratio and a much lower Charpy impact energy. U71 Mn rail steel is relatively higher in toughness than U75V, as demonstrated by larger A_k and K_(IC) values. Therefore, U71Mn rail steel and the corresponding thermite weld are recommended in railway construction and maintenance in cold regions.
机译:钢轨和铝热焊接头经常发生脆性断裂,从而加剧了铁路服务的安全性和可靠性。诸如青藏铁路等寒冷地区的铁路,使铁路脆性断裂的问题更加严重。在低温下进行了一系列测试,例如单轴拉伸测试,夏比冲击测试和三点弯曲测试,以研究U71Mn和U75V轨道钢及其铝热焊接的力学性能和断裂韧性。通过扫描电子显微镜(SEM)在测试样品的断裂表面上分析断裂微机制。两种钢轨及相应的铝热焊接头的延展性指数(断裂后的伸长率百分比和面积减小的百分比)和韧性指数(夏比冲击能A_k和平面应变断裂韧性K_(IC))均随温度降低而降低。与更高的屈服比和更低的夏比冲击能相比,铝热焊接对断裂的关键性更高,这表明U71 Mn钢的韧性比U75V高。通过较大的A_k和K_(IC)值,因此建议在寒冷地区的铁路建设和维护中使用U71Mn轨道钢和相应的铝热焊接。

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