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The effect of roll-forming onto fatigue life of railway axles

机译:滚压成型对铁路车轴疲劳寿命的影响

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In the last years, roll-forming has been adopted as a technique to improve the strength against crack propagation in railway axles, but very few scientific analyses and studies of the phenomenon are available in the literature. For this reason, the Maraxil Project was started in order to give the opportunity of experimentally and theoretically investigating some aspects related to this technological process in the case of railway axles made of EA4T, a typical steel for manufacture of high speed axles. Firstly, an experimental campaign on small-scale SE(B) specimens was carried out for determining the crack propagation behavior at stress ratios below -1, which correspond to the ones in presence of the high compressive residual stresses due to the roll-forming procedure. At the same time, the compressive residual stress field along the radial direction and due to the roll-forming process was evaluated from axles coming from the production using both hole-drilling and x-ray diffractometry methods. The results obtained from crack propagation tests and residual stress field measurements were used together to build up a predictive crack growth model in presence of very high compressive stresses. This model was, then, validated through dedicated experimental crack propagation tests carried out on full-scale roll-formed axles made of EA4T; good agreement was found between the model and the experiments.
机译:在过去的几年中,采用滚压成形作为一种提高强度以抵抗铁路轴中裂纹扩展的技术,但是在文献中很少有对此现象的科学分析和研究。因此,启动了Maraxil项目,以提供实验和理论上与该工艺过程有关的方面的机会,以EA4T(一种用于制造高速车轴的典型钢)制造的车轴为例。首先,对小型SE(B)试样进行了实验,以确定应力比-1以下的裂纹扩展行为,该应力比对应于由于轧制过程而存在高压缩残余应力的情况。 。同时,使用钻孔和X射线衍射法,从生产的车轴上评估了沿径向方向以及由于轧制成形过程而产生的压缩残余应力场。从裂纹扩展测试和残余应力场测量中获得的结果一起用于在非常高的压缩应力存在的情况下建立预测性裂纹扩展模型。然后,通过在由EA4T制成的全尺寸辊压成型车轴上进行的专用实验裂纹扩展测试,对该模型进行了验证;在模型和实验之间找到了很好的一致性。

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