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Microstructural effect of α-Sialon ceramic on the resistance to cavitation erosion in deionized water

机译:α-Sialon陶瓷对去离子水的抗空蚀性的微观结构影响

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摘要

The resistance to cavitation erosion of one Yb-α-Sialon ceramic and two Dy-α-Sialon ceramics (Dy-α-Sialon-1 and Dy-α-Sialon-2) was investigated in deionized water using an ultrasonic vibratory apparatus. The incubation periods of Dy-α-Sialon-1, Dy-α-Sialon-2 and Yb-α-Sialon ceramic were 210 min, 300 min and 360 min, respectively. Surface roughness and area fraction of cavities were found good indicators for the evolution of ceramics erosion. The microstructural features, including main phase (a phase), inhomogeneities of the microstructures and type of rare earth oxide, were correlated to the cavitation erosion behavior. It was found that the elongated α-Sialon grains in Yb-α-Sialon and Dy-α-Sialon-2 produced a self-toughening effect to increase the incubation period. The aggregation of Dy_2O_3 in Dy-rx-Sialon-l had an adverse effect on the resistance to cavitation erosion. Impurity phases and type of rare earth oxide had impacts on resistance to cavitation erosion. The findings in this work indicate that the cavitation erosion resistance of α-Sialon ceramics could be improved by microstructure optimization.
机译:使用超声振动装置,研究了一种Yb-α-Sialon陶瓷和两种Dy-α-Sialon陶瓷(Dy-α-Sialon-1和Dy-α-Sialon-2)对空蚀的抗性。 Dy-α-Sialon-1,Dy-α-Sialon-2和Yb-α-Sialon陶瓷的孵育时间分别为210分钟,300分钟和360分钟。发现表面粗糙度和腔的面积分数是陶瓷侵蚀发展的良好指标。微观结构特征包括主相(a相),微观结构的不均匀性和稀土氧化物的类型与空化腐蚀行为相关。发现Yb-α-Sialon和Dy-α-Sialon-2中的拉长的α-Sialon晶粒产生自增韧作用,从而延长了潜伏期。 Dy-rx-Sialon-1中Dy_2O_3的聚集对耐空蚀性有不利影响。杂质相和稀土氧化物的类型对耐气蚀性有影响。这项工作的发现表明,通过微观结构优化可以提高α-Sialon陶瓷的抗气蚀性能。

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