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Toughness Test in Railway Wheels

机译:铁路车轮韧性试验

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The railway industry has been enhancing rail and train safety over the last few years on a global scale. We have noticed that there are two well-defined trends: railroad car capacity increase in the freight sector and increased speeds in the passenger sector. Both increased freight capacity and higher speed imposes an overload on wheels. Early cracks and breaks, especially due to fatigue, are more likely to occur. The fracture toughness test, initially developed for the naval sector, has been used for several years in railway wheels, especially those of passenger cars, in order to analyze this material's behavior when there are cracks. The wheel manufacturing process had to undergo some adaptations in order to meet this test's requirements. This paper shows this process' evolution, in an effort to improve the fracture toughness test results, as well as a theoretical introduction of this test's conceptual aspects. The results obtained in forged wheels bound for several railroads (New York City Transit, New Jersey Transit) are shown herein, attesting, in practice, to the results obtained in theoretical studies. In its conclusion, the paper shows the manner in which the fracture toughness test results are being used to develop new railway wheel materials.
机译:在全球范围内,铁路行业一直在过去几年中加强铁路和火车安全。我们注意到,有两种明确的趋势:货运部门的铁路汽车能力增加,乘客领域的速度增加。随着货运能力和更高速度的增加,车轮上的过载。早期裂缝和断裂,特别是由于疲劳,更有可能发生。最初为海军部门开发的断裂韧性试验已经在铁路车轮,特别是乘用车的几年内使用了几年,以便在有裂缝时分析这种材料的行为。轮式制造过程必须经历一些适应,以满足该测试的要求。本文展示了这一过程的进化,努力改善骨折韧性测试结果,以及该测试的概念方面的理论介绍。在本文中显示出用于几个铁路(纽约市际运输,新泽西州过境)的锻造轮中获得的结果,实际上证明了在理论研究中获得的结果。在其结论中,本文显示了骨折韧性试验结果用于开发新的铁路轮材料的方式。

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