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Effect of Various Heat and Surface Treatment Conditions on the Fatigue Behavior of SKD11 Steel

机译:各种热处理和表面处理条件对SKD11钢疲劳性能的影响

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摘要

Effects of various heat treatment processes, including Q/L-T, Q/H-T, Q/L-T + Ti-nitriding, Q/H-T + Ti-nitriding, and Q/CT/H-T on the S-N fatigue behavior of SKD11 steel were investigated. Ti-nitriding is a modified nitriding process that entails a small addition of approximately 2 g to 20 g of electrolyzed fine, metallic titanium in a salt bath. In the present work, depending on the applied stress and surface conditions, different crack initiators were operative, resulting in three types of crack initiation. Multi-site crack initiation around the specimen surface, observed only for the Ti-nitrided specimens at a high stress range, decreased the resistance to S-N fatigue by reducing the crack initiation cycles, N_i. At low and intermediate stress ranges, the cracked carbide particles located near the surface or internally served as crack initiators for all the specimens, regardless of whether Ti-nitriding was applied, resulting in similar resistances to S-N fatigue. Different heat treatment parameters, such as tempering temperature and cryogenic treatment, did not affect the fatigue behavior of SKD11 steel to any considerable degree. The fatigue behavior of SKD11 specimens with different heat and surface treatment conditions is discussed based on micrographic and fractographic observations.
机译:研究了Q / L-T,Q / H-T,Q / L-T + Ti氮化,Q / H-T + Ti氮化和Q / CT / H-T等各种热处理工艺对SKD11钢的S-N疲劳行为的影响。钛氮化是一种改进的氮化工艺,需要在盐浴中少量添加约2 g至20 g的电解金属细钛。在目前的工作中,根据所施加的应力和表面条件,使用了不同的裂纹引发剂,导致了三种类型的裂纹萌生。仅在高应力范围内对钛氮化试样观察到的试样表面周围的多点裂纹萌生通过减少裂纹萌生周期N_i降低了对S-N疲劳的抵抗力。在低应力和中等应力范围内,无论是否采用Ti氮化工艺,位于表面附近或内部的裂纹碳化物颗粒都是所有试样的裂纹引发剂,从而产生了类似的抗S-N疲劳性能。回火温度和低温处理等不同的热处理参数不会在很大程度上影响SKD11钢的疲劳性能。基于显微和分形观察,讨论了在不同热处理和表面处理条件下SKD11试样的疲劳行为。

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