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On the conjoint influence of broaching and heat treatment on bending fatigue behavior of Inconel 718

机译:拉削和热处理的共同影响对Inconel 718弯曲疲劳行为的影响

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In this study, the conjoint effect of a broaching operation, similar to that used for machining fir-tree slots on turbine discs, and subsequent heat treatments at 550 ℃ and 650 ℃ on the fatigue performance and corresponding crack initiation behavior of forged Inconel 718 has been investigated. Four-point bending fatigue tests were conducted under load control on specimens of two groups, i.e. a polished group and a broached group, with totally six different surface conditions. Compared to the as-polished specimens, a beneficial effect of the broaching operation was found on the fatigue life due to the high compressive residual stresses on the broached surface which transfer the fatigue crack initiation from surface to subsurface regions. Introducing a heat treatment generally deteriorated the fatigue performance of the alloy because of the oxidation assisted crack initiation, while the reduction in fatigue life was found to be more remarkable for the broached specimens, in particular when heat treated at 650 ℃, as the thermal impact also led to a great relaxation of the compressive residual stresses; the combined effect, together with the substantial anomalies created by broaching on the surface, such as cracked carbides and machining grooves, caused an increased propensity to surface cracking in fatigue and consequently a loss of the lifetime. Furthermore, it was found that the occurrence of surface recrystallization at elevated temperatures in machined Inconel 718 could lead to intergranular oxidation, creating micro-notches as preferable sites for the fatigue crack initiation.
机译:在这项研究中,拉削操作的联合效果(类似于在涡轮机圆盘上加工枞树槽所用的方法)以及随后在550℃和650℃进行的热处理对锻造的Inconel 718的疲劳性能和相应的裂纹萌生行为具有共同作用。被调查。在载荷控制下,对两组试样(总共有六个不同的表面条件)(即抛光组和拉削组)进行了四点弯曲疲劳测试。与抛光后的试样相比,由于拉削表面的高压缩残余应力将疲劳裂纹的产生从表面转移到了地下区域,因此拉削操作对疲劳寿命产生了有益的影响。引入热处理通常会由于氧化辅助裂纹的产生而降低合金的疲劳性能,而发现拉削试样的疲劳寿命降低更为显着,特别是在650℃热处理时,由于热冲击还导致了残余压应力的极大松弛;这种综合作用,再加上由于表面拉削而产生的大量异常现象,例如破裂的碳化物和加工槽,导致疲劳时表面破裂的可能性增加,从而导致使用寿命降低。此外,已发现在机加工的Inconel 718中高温下表面再结晶的发生可能导致晶间氧化,从而产生微缺口作为疲劳裂纹萌生的优选部位。

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