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Influence of Lamellar Interface Morphology on Cracking Resistance of Plasma-Sprayed YSZ Coatings

机译:层状界面形态对等离子喷涂YSZ涂层抗裂性的影响

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摘要

Splat morphology is an important factor that influences the mechanical properties and durability of thermal barrier coatings (TBCs). In this study, yttria-stabilized zirconia (YSZ) coatings with different lamellar interface morphologies were deposited by atmospheric plasma spraying (APS) using feedstocks with different particle sizes. The influence of lamellar interface roughness on the cracking resistance of the coatings was investigated. Furthermore, the thermal shock and erosion resistance of coatings deposited by two different powders was evaluated. It was found that the particle size of the feedstock powder affects the stacking morphology of the splat that forms the coating. Coatings fabricated from coarse YSZ powders (45–60 μm) show a relatively rough inter-lamellar surface, with a roughness about 3 times greater than those faricated from fine powders (15–25 μm). Coatings prepared with fine powders tend to form large cracks parallel to the substrate direction under indentation, while no cracking phenomena were found in coatings prepared with coarse powders. Due to the higher cracking resistance, coatings prepared with coarse powders show better thermal shock and erosion resistances than those with fine powders. The results of this study provide a reference for the design and optimization of the microstructure of TBCs.
机译:Splat形态是影响热障涂层(TBC)的机械性能和耐久性的重要因素。在这项研究中,使用不同粒径的原料通过大气等离子喷涂(APS)沉积了具有不同层状界面形态的氧化钇稳定的氧化锆(YSZ)涂层。研究了层状界面粗糙度对涂层抗裂性的影响。此外,评估了两种不同粉末沉积的涂层的抗热冲击性和抗侵蚀性。已发现原料粉末的粒径影响形成涂层的飞溅的堆积形态。由粗糙的YSZ粉末(45–60μm)制成的涂层表现出相对较粗糙的层间表面,其粗糙度大约是由精细粉末(15–25μm)所形成的涂层的3倍。用细粉制备的涂层在压痕下趋于形成平行于基材方向的大裂纹,而用粗粉制备的涂层中没有发现开裂现象。由于具有较高的抗裂性,所以与粗粉相比,使用粗粉制备的涂料具有更好的抗热冲击性和抗冲蚀性。研究结果为TBCs微观结构的设计和优化提供了参考。

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