短跑对灰铸铁抗型腔侵蚀性的影响

IF 0.8 Q4 ELECTROCHEMISTRY Corrosion Science and Technology-Korea Pub Date : 2021-06-30 DOI:10.14773/CST.2021.20.3.143
박일초
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引用次数: 0

摘要

本文研究了在海洋环境下提高灰铸铁抗气蚀性能的最佳喷丸工艺条件。喷丸处理是在注射压力和注射时间的变量下进行的。然后通过根据修改的ASTM G-32标准进行的气蚀试验来评估耐久性。通过试验前后试样的失重率、表面和横截面分析,研究了不同喷丸工艺条件下试样的气蚀损伤趋势。结果表明,当注射压力最低和注射时间最短时,可以最大限度地减少气蚀的喷丸工艺条件。这是因为暴露在灰铸铁表面上的片状石墨在这种条件下可以很容易地去除。因此,可以通过表面改性来防止凹口效应。此外,还对灰口铸铁的空蚀损伤机理进行了详细的探讨。
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쇼트피닝이 회주철의 캐비테이션 침식 저항성에 미치는 영향
In this study, optimal shot peening process conditions were investigated for improving the cavitation erosion resistance of gray cast iron under a marine environment. Shot peening was performed with variables of injection pressure and injection time. The durability was then evaluated through cavitation erosion test which was conducted according to the modified ASTM G-32 standard. The tendency of cavitation erosion damage according to shot peening process condition was investigated through weight loss rate, surface and cross-sectional analysis of the specimen before and after the test. As a result, the shot peening process condition that could minimize cavitation erosion was when the injection pressure was the lowest and when the injection time was the shortest. This was because the flake graphite exposed on the gray cast iron surface could be easily removed under such condition. Therefore, the notch effect can be prevented by surface modification. In addition, the cavitation erosion damage mechanism of gray cast iron was discussed in detail.
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来源期刊
CiteScore
1.30
自引率
66.70%
发文量
0
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