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Optimization of process parameters for thermal shock resistance and thermal barrier effects of 8YSZ thermal barrier coatings through orthogonal test

机译:通过正交试验优化8苏斯热阻挡涂层的热抗冲击性和热阻效应的过程参数

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The thermal shock resistance and the thermal barrier effects are the key indices for thermal barrier coating (TBC) performances. The performance optimization of 7~8 wt.?% Y 2 O 3 stabilized ZrO 2 (7~8YSZ) TBCs is a research focus at present. In this work, an orthogonal test was employed to study the relationship between parameters and performances and match process parameters for TBCs preparation. The scanning electron microscope was employed to analyze the microstructures of 8YSZ TBCs. The thermal shock resistance test and thermal barrier effect test were conducted to judge the performances of 8YSZ TBCs. It was found that the process factor had the greatest influences on porosity and elastic modulus was spraying distance and the factor had the greatest influence on bond strength was spraying power. The selected parameters were a spraying distance of 90?mm, an argon flow of 32 L/min, a hydrogen flow of 8 L/min, an electric current of 550?A, a spraying power of 35 kW, a feeding rate of 45 g/min, and a substrate preheating temperature of 373?K. The thermal shock life was ~100 times under 1173~298?K, and the thermal barrier temperature of optimized 8YSZ TBCs with thicknesses of 250 and 300 μ m was ~90 and ~130?K under 1473?K, respectively. Through a comparative study, both thermal shock resistance and thermal barrier effects of 8YSZ TBCs were improved after process parameters’ optimization conducted by this method.
机译:热抗震性和热障效应是热障涂层(TBC)性能的关键指标。 7〜8重量的性能优化为7〜8℃3稳定ZrO 2(7〜8〜80sz)TBC是目前的研究重点。在这项工作中,采用正交试验来研究参数和性能与TBCS制备的过程参数之间的关系。使用扫描电子显微镜来分析8倍的TBC的微观结构。进行了热防震试验和热屏障效应试验以判断8苏斯坦TBC的性能。发现处理因素对孔隙率和弹性模量的影响最大,因此对粘合强度的影响最大的影响是喷涂的。所选参数的喷射距离为90Ωmm,氩流量为32升/分钟,氢气流量为8升/分钟,电流为550〜,喷涂功率为35 kW,饲养速度为45 G / min,底物预热温度为373Ω·k。热冲击寿命在1173〜298Ω·k以下〜100倍,分别优化的8倍的TBC的热阻温度分别为250和300μm的厚度为约90〜130 k,分别为1473Ω·k。通过对比研究,在通过该方法进行的工艺参数的优化之后,改善了8毫秒TBC的热抗冲击性和热阻挡效应。

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