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Influence of Precracked Diffusion Coating of Pt-Modified Aluminide on HCF Fracture Mechanism of IN 792 Nickel-Based Superalloy

机译:Pt改性铝化物的预裂纹扩散涂层对IN 792镍基高温合金HCF断裂机理的影响

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High-cycle-fatigue (HCF) fracture mechanism of nickel-based superalloy IN 792 coated with Ptmodified aluminide outward-diffusion coating is studied with focus on the influence of coating cracks. It is found that cracking of the diffusion coating prior to HCF tests has little influence on the fatigue limit of specimens with thin coating (50 μrn) but lowers the fatigue limit of specimens with thick coating (70 μm). By fractographic analysis, three types of fractural modes are established according to their crack initiations: internal, external and mixed. While external fractural mode is related to the propagation of existing cracks in the coating, internal facture initiates often at Ti-Ta-W-rich carbides and/or topological-closepacked (TCP) phases and grainboundaries in the superalloy. Increasing the thickness of diffusion coating or the amplitude stress promotes the fractural mode transition from internal/mixed to external. The influence of precracking of coatings on the HCF fracture mechanism can be qualitatively explained by its influence on the stress intensity factor.
机译:研究了Pt改性铝化物向外扩散涂层对镍基高温合金IN 792的高循环疲劳(HCF)断裂机理,重点研究了涂层裂纹的影响。发现在HCF测试之前扩散涂层的破裂对薄涂层(50μm)的样品的疲劳极限几乎没有影响,但降低了厚涂层(70μm)的样品的疲劳极限。通过分形分析,根据其裂纹萌生建立了三种类型的断裂模式:内部,外部和混合。尽管外部断裂模式与涂层中现有裂纹的扩展有关,但内部断裂通常始于富含Ti-Ta-W的碳化物和/或高温合金中的拓扑密堆积(TCP)相和晶界。增加扩散涂层的厚度或振幅应力会促进从内部/混合到外部的断裂模式转变。涂层的预裂纹对HCF断裂机理的影响可以通过其对应力强度因子的影响来定性地解释。

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