材料科学
弹丸
喷丸
研磨
疲劳试验
刀(考古)
汽轮机
涡轮机
翼型
冶金
复合材料
法律工程学
结构工程
机械工程
工程类
残余应力
研磨
作者
Binyan He,Chao You,Kath Soady,Brian Mellor,Benjamin M. D. Cunningham,P.A.S. Reed
标识
DOI:10.1177/02670836241259869
摘要
In this study, a blend-grind-peen repair technique was applied to a 12-Cr tempered martensitic steam turbine blade material containing a pre-existing fatigue crack. Manually grinding out the crack increased the elastic stress concentration factor K t from 1.6 to 1.8. The repaired sample which was not re-peened showed a ∼50% improvement in cycles to failure compared with baseline samples. Sub-surface coalescence effects in shot peened surfaces are not always evident from surface crack measurements, which has implications for considering how much material to remove in such a repair. Despite the presence of a pre-existing crack, re-peening slowed the growth of the crack and extended the lifetime beyond that expected in the original shot peened surface.
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