Diesel-Engine Crankshaft That Fractured in Fatigue Because of Subsurface Inclusions

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引用次数: 0

Abstract

A 1050 steel crankshaft with 6.4 cm (2.5 in.) diam journals that measured 87 cm (34.25 in.) in length and weighed 31 kg (69 lb) fractured in service. The shaft had been quenched and tempered to a hardness of 19 to 26 HRC, then selectively hardened on the journals to a surface hardness of 40 to 46 HRC. Visual inspection and 100x micrographs showed the fracture surface as having a complex type of fatigue failure initiated from subsurface inclusions in the transition zone between the induction-hardened surface and the softer core. The fractured shaft was examined for chemical composition and hardness, both of which were found to be within prescribed limits. This evidence supports the conclusions that the failure was caused by fatigue cracks that initiated in an area having an excessive amount of inclusions. The inclusions were located in a transition zone, which is a region of high stress. No recommendations were made.
由于地下夹杂物导致疲劳断裂的柴油机曲轴
一个直径6.4厘米(2.5英寸)、长87厘米(34.25英寸)、重31公斤(69磅)的1050钢曲轴在使用中发生了断裂。轴经过淬火回火,硬度达到19 ~ 26 HRC,然后在轴颈上选择性硬化,表面硬度达到40 ~ 46 HRC。目视检查和100倍显微照片显示,断口表面具有复杂的疲劳破坏类型,由诱导硬化表面和软岩心之间过渡区的地下夹杂物引起。对断裂的轴进行了化学成分和硬度检查,两者都在规定的范围内。这一证据支持了这一结论,即失效是由在含有过量夹杂物的区域产生的疲劳裂纹引起的。包裹体位于过渡带,即高应力区。没有提出任何建议。
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