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Study on Bending Fatigue Life of 42CrMo Steel with M+F Dual-Phase Structure

机译:用M + F双相结构弯曲42Crmo钢弯曲寿命的研究

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The effect of undissolved ferrite amount on bending fatigue properties and failure mechanism were studied by using 42CrMo steel with subcritical quenching process The amount of undissolved ferrite were 0%, 10% and 15%, respectively. The hardness of the specimen was treated to medium hardness. The experimental results show that the existence of undissolved ferrite can not only change the microstructure, but also increase the bending fatigue life. The bending fatigue life elongates with increasing of amounts of undissolved ferrite. The grains can be fined by using subcritical quenching process and the area of phase boundaries can also be greatly increased because of undissolved spheroidal carbide. The martensite and carbide can also be changed using subcritical quenching process. Stress relaxation due to the move of dislocations inside the ferrite and the promotion of strength due to occurring of plastic deformation and enwinded dislocations are main reasons of improving the bending fatigue life. The bending fatigue life elongates with the increase of amounts of undissolved ferrite before the amount of undissolved ferrite reaches 10%. Under the experiment conditions, when the amount of undissolved ferrite is 10%, the bending fatigue life will be the longest.
机译:通过使用42crmo钢与亚临界猝灭过程研究了未溶解铁氧体的量分别研究了未溶解的铁素体对弯曲疲劳性能和失效机理的影响分别为0%,10%和15%。将样品的硬度处理为中等硬度。实验结果表明,未溶解的铁氧体的存在不仅可以改变微观结构,还可以增加弯曲疲劳寿命。弯曲疲劳寿命随着未溶解的铁氧体的增加而伸长。通过使用亚临界猝灭过程可以通过亚临界猝灭过程来罚化,并且由于未溶解的球状碳化物,相界面积也可以大大增加。使用亚临界淬火过程也可以改变马氏体和碳化物。由于铁氧体内的脱位的移动和由于塑性变形而导致的强度促进而引起的应力松弛是提高弯曲疲劳寿命的主要原因。在未溶解的铁素体的量达到10%之前,弯曲疲劳寿命随着未溶解的铁氧体的增加而增加。在实验条件下,当未溶解的铁素体的数量为10%时,弯曲疲劳寿命将是最长的。

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