Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5437610 | Ceramics International | 2017 | 8 Pages |
Abstract
evolution and mechanical properties was investigated. Experimental results indicated that with the increase of ultrasonic output power, the clad depth increased, the wettability between coating and substrate was improved, the size of equiaxed grains in the cladding zone decreased, and the band structures were broken up gradually. Simultaneously, the element content distribution along the thickness of coating in the transition region changed from exponential to linear distribution gradually, together with the increase of dilution rate. With the increase of ultrasonic output power, the microhardness distribution of fusion zone also converted from an exponential to a linear distribution. Additionally, the friction and wear tests showed that the wear mechanism of coatings both with and without ultrasonic vibration was abrasive wear while the friction coefficients of coating with ultrasonic vibration were lower than that without ultrasonic vibration, which was related to the refined microstructures within the YSZ coatings.
Related Topics
Physical Sciences and Engineering
Materials Science
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Authors
Guangyi Ma, Shuai Yan, Dongjiang Wu, Qiuyu Miao, Miaoran Liu, Fangyong Niu,