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Formation of Tensile Stress Induced Cracks in Flame Hardening Surface Treatment of 12Cr blade steel

机译:拉伸应力诱导裂纹的拉伸应力诱导12CR叶片钢的表面处理裂缝

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This paper reports on the formation of tensile stress induced cracks by the application of a flame hardening to 12Cr steels and the monitoring of the flame hardening process at the desirable residual stress state. During the flame hardening of the steels elastic residual tensile stresses were typically generated due to a phase transformation of austenite into martensite and they became greater by increasing both the process temperature and cooling rate. Eventually the cracks were nucleated and propagated across the prior austenite grain boundaries by a generation of large tensile stress, which was accompanied by a drastic decrease in the tensile stress due to a stress relaxation.
机译:本文通过在所需残余应力状态下施加火焰硬化并监测火焰硬化和监测火焰硬化过程的抗拉应力诱导裂纹的形成。在钢的火焰硬化期间,由于奥氏体进入马氏体的相变,通常产生弹性残余拉伸应力,并且通过增加工艺温度和冷却速率,它们变得更大。最终,通过产生大的拉应力,裂缝在先前的奥氏体晶界中繁殖并繁殖,其伴随着由于应力松弛而伴随着拉伸应力的急剧下降。

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