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碳钢空蚀磨粒形态特征与空蚀阶段的关系
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作者 刘诗汉 陈大融 《科学通报》 EI CAS CSCD 北大核心 2009年第7期966-971,共6页
对3种不同含碳量的碳钢进行振动空蚀实验,收集空蚀过程中产生的磨粒,对磨粒形态特征进行量化表征和显微观察,结合空蚀表面的XRD检测结果和显微图像进行分析,发现表面材料沿滑移面变形或解理导致整个空蚀过程中的片状磨粒较多(超过4... 对3种不同含碳量的碳钢进行振动空蚀实验,收集空蚀过程中产生的磨粒,对磨粒形态特征进行量化表征和显微观察,结合空蚀表面的XRD检测结果和显微图像进行分析,发现表面材料沿滑移面变形或解理导致整个空蚀过程中的片状磨粒较多(超过45%),条状磨粒一直较少(少于25%),而颗粒状磨粒数量开始较少,在空蚀加速阶段迅速增加,到空蚀稳定期又略有减少.磨粒的球形度值的变化与材料的空蚀阶段有较好的对应关系.空蚀初生期和加速期的磨粒球形度值分别在0.3~0.4和0.5~0.7之间.到空蚀稳定期,球形度值略有下降但不低于0.5. 展开更多
关键词 碳钢 空蚀期 磨粒 形态特征
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Study on prediction model of cavitation erosion incubation period of duplex stainless steel surfacing layer in a benign medium
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作者 Yefeng Bao Chong Cao +3 位作者 Bingqi Xie Qining Song Yongfeng Jiang Nan Xu 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2022年第8期112-121,共10页
In order to estimate the cavitation incubation period of duplex stainless steel(DSS)under ultrasonic cavitation erosion(CE),this paper analyzed the loading process of material during ultrasonic CE.Local strain theory,... In order to estimate the cavitation incubation period of duplex stainless steel(DSS)under ultrasonic cavitation erosion(CE),this paper analyzed the loading process of material during ultrasonic CE.Local strain theory,cumulative damage theory,and Bernoulli probability model were used to derive the minimum number of cavitation impacts required for the initiation of fatigue cracks,and the predictive equation of the material cavitation incubation period was given.DSS was obtained by tungsten inert gas welding(TIG)powder surfacing method.Tensile test and ultrasonic CE test were performed,and the tensile test data were used to calculate the cavitation incubation period by using the predictive equation.Due to the possible presence of precipitates and micro-cracks in the sample,there was an error between the calculated and the test results.The results showed that the max error between the calculated results and the test results was 8.1%,and the errors of the remaining two groups were within 3.5%. 展开更多
关键词 Duplex stainless steel Ultrasonic cavitation erosion Incubation period CALCULATION Tensile properties
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