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Thermal Crack Propagation Behavior on Nitrided H13 Hot Work Die Steel

机译:氮化H13热工作模具钢上的热裂纹传播行为

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The influence of nitriding type and condition on the thermal crack propagation behavior of hot work die steel was investigated. Thermal fatigue tests were carried out using a special apparatus, which is consisted of induction heating and water spray cooling unit. The sum of crack length per unit specimen length, Lm is proposed as an index representing the susceptibility to crack propagation. The Lm values of the gas and ion nitrided specimens were lower than that of as-heat treated specimen. But in the case of maximum and average crack length of nitrided specimen was higher than those of as-heat treated specimen. The nitrogen diffusion layer still remained although the oxide scale was formed and fell off during thermal fatigue test. After 1000 cycles of the thermal fatigue test, the interior region of nitrided specimen showed lower hardness by softening. In particular, ion nitrided specimens of relatively less softening condition showed reduction both the depth and number of cracks compared with the other surface conditions.
机译:研究了氮化型和条件对热工作模具钢热裂纹传播行为的影响。使用特殊装置进行热疲劳试验,该特殊装置由感应加热和喷水冷却单元组成。每个单位样本长度的裂缝长度,LM被提出为表示裂纹繁殖易感性的指标。气体和离子氮化试样的LM值低于热处理的样品。但在最大和平均裂缝长度的情况下,氮化样品的裂缝长度高于热处理的样品。虽然在热疲劳试验期间形成氧化物尺度并脱落氧化物尺度,但仍然保持氮扩散层。在1000次循环的热疲劳试验后,通过软化,氮化试样的内部区域显示出较低的硬度。特别地,与其他表面条件相比,裂缝的离子氮化样品显示出降低裂缝的深度和数量。

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