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Brittle Cracking of a Cylindrical Spiral Gear of Axle Gearbox

机译:轴齿轮箱圆柱螺旋齿轮的脆性开裂

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摘要

A cylindrical spiral gear of locomotive axle gearbox failed after standing in site for 10 days. The failed gear had been assembled with the spiral gear-shaft. Inspection in site found that cracking occurred on the spoke plate between the shaft bore and the oil-pressed hole. The gear teeth are required to be carburized, but the surfaces of the shaft bore and the oil-pressed hole of gear are surface-coated to prevent carburizing. The crack initiated from the surface of oil-pressed hole and propagated along the radial of the oil-pressed hole. Metallurgical examination reveals that anti-carburizing measure was not conducted on the surface of oil-pressed hole as the specification. A simplified evaluation of the maximum hoop tensile on the wall of oil-pressed hole subjected to internal pressure for swelling bore is far insufficient to lead to brittle fracture. Delayed fracture of gear, the predominance of intergranular fracture micro-mechanism, and the presence of several secondary micro-cracks in the depth of case layer on the oil-pressed hole surface are a clear indication of hydrogen embrittlement. Hydrogen absorption occurred during gas carburizing process.
机译:机车轴齿轮箱的圆柱螺旋齿轮在现场停留10天后发生故障。故障齿轮已与螺旋齿轮轴组装在一起。现场检查发现,在轴孔和机油孔之间的辐条板上出现裂纹。齿轮齿需要渗碳,但是齿轮的轴孔和机油孔的表面都经过表面处理,以防止渗碳。裂纹从压油孔的表面开始,并沿压油孔的径向扩展。冶金检查表明,没有对油压孔表面进行抗渗碳措施。对受胀孔内压作用的油压孔壁的最大环向张力的简化评估远远不足以导致脆性断裂。齿轮的延迟断裂,晶间断裂的微观机制占主导地位,以及在油压孔表面的表壳层深度中存在多个次级微裂纹,这清楚地表明了氢脆。气体渗碳过程中发生氢吸收。

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