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环境温度及外磁场对Fe-13Cr-2.5Mo合金阻尼性能的影响 被引量:2
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作者 胥永刚 李宁 +3 位作者 于学勇 沈保罗 邱绍宇 邹红 《材料工程》 EI CAS CSCD 北大核心 2005年第4期18-20,45,共4页
在环境温度和外磁场变化的条件下用改进的倒扭摆内耗仪分析了Fe-13Cr-2.5Mo合金的阻尼性能,用扫描电子显微镜分析了阻尼合金的组织结构。结果表明,合金的阻尼值包括铁磁部分和非铁磁部分。前者在室温条件下占整个阻尼的80%~90%,后者占... 在环境温度和外磁场变化的条件下用改进的倒扭摆内耗仪分析了Fe-13Cr-2.5Mo合金的阻尼性能,用扫描电子显微镜分析了阻尼合金的组织结构。结果表明,合金的阻尼值包括铁磁部分和非铁磁部分。前者在室温条件下占整个阻尼的80%~90%,后者占10%~20%。当环境温度从23℃升高到550℃,阻尼性能逐渐下降到原来的60%~70%。比较900℃水冷处理的试样,1100℃炉冷试样的阻尼峰值对应的扭转应变较低,这表明其因外界噪声产生阻尼的能力较强。组织中晶粒的大小,析出物的产生及快速冷却过程中产生的微观残余应力是900℃水冷试样扭转应变较高的主要原因。 展开更多
关键词 fe-13cr-2.5mo阻尼合金 环境温度 磁场 阻尼性能
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Effect of Cu content on microstructure and properties of Fe-16Cr-2.5Mo damping alloy 被引量:2
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作者 Xiaofeng Hu Yubin Du +1 位作者 Desheng Yan Lijian Rong 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2018年第5期774-781,共8页
Five Fe-16 Cr-2.5 Mo damping alloys with different Cu contents(0%,0.25%,0.5%,1.0% and 2.0%) were prepared.The microstructure was observed by scanning transmission electron microscopy(STEM) and the damping behavior... Five Fe-16 Cr-2.5 Mo damping alloys with different Cu contents(0%,0.25%,0.5%,1.0% and 2.0%) were prepared.The microstructure was observed by scanning transmission electron microscopy(STEM) and the damping behavior was measured by using a dynamic mechanical analyzer(DMA).The results show that the grain size of experimental alloy with(0.25–1.0%) Cu was refined compared with the 0 Cu alloy.The Cu element is fully dissolved in the matrix and there are no Cu precipitates and carbides observed.Although the internal stress increases because of Cu addition,the damping capacity of the 0.5 Cu and1.0 Cu alloys has been significantly improved.The reason of damping improvement is that the magnetic domain structure is strongly modified.Meanwhile,the strength was improved gradually due to the Cu solid solution strengthening and grain refining.In the 2.0 Cu alloy,lots of Cu-riched particles appeared in the matrix.These Cu precipitates with 10–15 nm in size are spherical and homogeneously distributed,which strongly induce strength improvement through precipitation strengthening.On the contrary,the elongation and impact energy of the 2.0 Cu alloy decrease sharply.In addition,lots of Cu precipitates will significantly decrease the damping capacity by hindering the mobility of domain walls. 展开更多
关键词 fe-16cr-2.5mo alloy CU damping capacity STRENGTH PRECIPITATION
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