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Effect of Microstructure on Fatigue Crack Propagation and S–N Fatigue Behaviors of TMCP Steels with Yield Strengths of Approximately 450 MPa

机译:显微组织对屈服强度约为450 MPa的TMCP钢的疲劳裂纹扩展和SN疲劳性能的影响

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摘要

In the present study, stress (S) – number of cycles to failure (N) (S–N) fatigue and fatigue crack propagation behaviors of three thermomechanical control process steels with different microstructures but similar yield strengths of approximately 450 MPa were investigated. The P + F steel was predominately pearlite plus ferrite, whereas B1 and B2 steels were both bainitic steels with martensite-austenite and pearlitic islands. Despite the significant difference in microstructural features, the resulting fatigue crack propagation rates and near-threshold ΔK values were comparable with each other. The hard phases, such as pearlite colonies in the P + F specimen, tended to affect fatigue crack propagation behavior in a similar manner, and severe crack branching was observed in intermediate and high ΔK regimes. Despite similar fatigue crack propagation rates and near-threshold ΔK values, the resistance to S–N fatigue was substantially different for each steel specimen. Depending on fatigue crack initiators, such as the ferrite/pearlite phase boundaries for the P + F specimens and the cracked martensite-austenite and/or small pearlitic islands for the bainitic specimens, the cycles for crack initiation varied greatly.
机译:在本研究中,研究了三种具有不同组织但具有相似屈服强度(约450 MPa)的热力学控制过程钢的应力(S)–失效循环数(N)(SN)疲劳和疲劳裂纹扩展行为。 P + F钢主要是珠光体加铁素体,而B1和B2钢都是具有马氏体-奥氏体和珠光体岛的贝氏体钢。尽管在微观结构上存在显着差异,但最终的疲劳裂纹扩展速率和接近阈值ΔK值却是可比的。硬相,例如P + F试样中的珠光体菌落,倾向于以类似的方式影响疲劳裂纹扩展行为,并且在中等和高ΔK态下观察到严重的裂纹分支。尽管疲劳裂纹扩展速率相似,并且ΔK值接近阈值,但每个钢试样的抗S–N疲劳性却大不相同。取决于疲劳裂纹引发剂,例如P + F试样的铁素体/珠光体相界以及贝氏体试样的开裂马氏体-奥氏体和/或小珠光体岛,开裂的周期变化很大。

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