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Microstructures and Properties of FeAl-Fe_3AlC_(0.5) Composites Prepared by SHS Casting
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作者 Jun DING Jun YANG +3 位作者 Qinling BI Jiqiang MA Weimin LIU Qunji XUE 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2008年第5期733-736,共4页
FeAl composites with 21, 37 and 50 wt pct Fe3AlC0.5 were fabricated by a self-propagating high temperature synthesis (SHS) casting. Phases and microstructures were analyzed by X-ray diffraction (XRD) and scanning ... FeAl composites with 21, 37 and 50 wt pct Fe3AlC0.5 were fabricated by a self-propagating high temperature synthesis (SHS) casting. Phases and microstructures were analyzed by X-ray diffraction (XRD) and scanning electron microscopy (SEM). Microhardness and bending strength of the composites were measured. The composites with 21 and 50 wt pct Fe3AlC0.5 mainly consisted of FeAl and FesAlC0.5 phases, whereas the composite with 37 wt pct Fe3AlC0.5 was composed of FeAl, Fe3AlC0.5 and graphite phases. The bonding of the reinforcement and the matrix was good. Hardness and bending strength of the composite with 37 wt pct Fe3AlC0.5 was lower than those of the 21 and 50 wt pct composites owing to the presence of the soft graphite phase. 展开更多
关键词 feal-fe3alc0.5 composites Iron aluminides Self-propagating high temperature synthesis (SHS) casting Microstructure Mechanical properties
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Ti_(2)AlC粉末粒径分布对TiC_(0.5)-Al_(2)O_(3)/Cu复合材料组织及性能的影响
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作者 聂智超 严仰先 +4 位作者 洪嘉婷 廖航宇 宋文龙 邹金明 张雪辉(导师) 《机械工程材料》 CAS CSCD 北大核心 2023年第3期66-71,共6页
通过不同时间的湿法球磨得到不同粒径分布的Ti_(2)AlC粉末,再与Cu_(2)O粉末和铜粉末混合,利用放电等离子烧结技术制备TiC_(0.5)-Al_(2)O_(3)/Cu复合材料,研究了Ti_(2)AlC粉末粒径分布对其组织和性能的影响。结果表明:随着Ti_(2)AlC粉末... 通过不同时间的湿法球磨得到不同粒径分布的Ti_(2)AlC粉末,再与Cu_(2)O粉末和铜粉末混合,利用放电等离子烧结技术制备TiC_(0.5)-Al_(2)O_(3)/Cu复合材料,研究了Ti_(2)AlC粉末粒径分布对其组织和性能的影响。结果表明:随着Ti_(2)AlC粉末中亚微米级颗粒体积分数由0增加到70.27%,复合材料中增强相颗粒TiC_(0.5)和Al_(2)O_(3)在基体中分散更均匀,但是当亚微米级颗粒体积分数为98.07%时,增强相颗粒出现聚集现象;随着亚微米级颗粒体积分数的增加,复合材料的导电率与相对密度先减小后增大,硬度与屈服强度则先升后降,当亚微米级颗粒体积分数为70.27%时,复合材料综合性能最优异。 展开更多
关键词 TiC_(0.5)-Al_(2)O_(3)/Cu复合材料 Ti_(2)alc粉末粒径 力学性能
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热浸镀铝钢扩散层的AlFe_3C_(0.5)相 被引量:3
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作者 张伟 文九巴 +2 位作者 王晓峰 熊飞 催新安 《中国有色金属学报》 EI CAS CSCD 北大核心 2007年第10期1632-1636,共5页
采用740℃热浸镀铝方法,在20碳钢表面制备热浸镀铝层。镀铝层经850℃扩散处理4 h后,采用SEM和XRD确定扩散层的相组成,采用TEM研究组成相的晶体学取向关系。分析AlFe3C0.5相的形成原因。结果表明:扩散层与基体之间存在Fe3Al、FeAl和点阵... 采用740℃热浸镀铝方法,在20碳钢表面制备热浸镀铝层。镀铝层经850℃扩散处理4 h后,采用SEM和XRD确定扩散层的相组成,采用TEM研究组成相的晶体学取向关系。分析AlFe3C0.5相的形成原因。结果表明:扩散层与基体之间存在Fe3Al、FeAl和点阵常数为0.377 nm的针叶状AlFe3C0.5相;针状AlFe3C0.5与Fe3Al相之间存在的晶体学取向关系是(220)Fe3Al//(■11)AlFe 3C0.5、[1■0]Fe3Al//[■2■]AlFe 3 C0.5。 展开更多
关键词 热浸镀铝钢 扩散层 Fe3alc0.5 晶体学
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