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ESTIMATION OF THE STRENGTH AND CRACK RESISTANCE OF THE METAL OF RAILWAY WHEELS AFTER LONG-TERM OPERATION

机译:长期运行后铁路车轮金属强度和抗裂性的估算

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摘要

We describe the results of investigations of the state of the metal near the roll surfaces of solid-rolled railway wheels after operation. It is shown that the greatest changes in structure (phase components, grain, subgrain, and dislocation structures, phase precipitates, etc.) over the width of the working surface of wheels take place in the zone of passage to the flange and propagate to a depth of up to 200 to 300 ìm (from the roll surface). The analytical estimate of changes in the strength and crack-resistance properties of the metal in different zones of railway wheels, based on the results of structural examinations, enabled us to establish that separate zones are characterized by a substantial strengthening of the near-surface layers, a dramatic increase in the local internal stresses up to the value of theoretical strength, and, correspondingly, a decrease in crack resistance.
机译:我们描述了实心轧制铁路车轮轧制表面附近金属状态的调查结果。结果表明,在车轮工作表面的整个宽度范围内,结构(相成分,晶粒,亚晶粒和位错结构,相沉淀等)的最大变化发生在通向法兰的通道区域中,并传播至深度达200至300微米(从辊子表面开始)。根据结构检查的结果,对铁路车轮不同区域中金属的强度和抗裂性能变化的分析估计使我们能够确定分离的区域的特征是近表面层的显着增强,局部内部应力急剧增加,直至达到理论强度,相应地,抗裂性降低。

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