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A STEEL MATRIX WEAR RESISTANT COMPOSITE REINFORCED BY IN-SITU GRANULAR EUTECTICS 被引量:3
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作者 Z.M. Xu, T.X. Li and J.G. Li (School of Materials Science and Engineering, Shanghai Jiao Tong University, Shanghai 200030, China) 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2001年第2期79-84,共6页
A new steel matrix wear resistant composite reinforced by in situ granular eutectics can be obtained by modifying with a Si-Ce-Ti compound in the steel melt. The result indicates that the in situ granular eutectic is... A new steel matrix wear resistant composite reinforced by in situ granular eutectics can be obtained by modifying with a Si-Ce-Ti compound in the steel melt. The result indicates that the in situ granular eutectic is a pseudo-eutectic of austenite and (Fe,Mn)3C, which is formed between austenite dendrites during solidification due to the segregation of C and Mn impelled by modifying elements. The quantity of in situ granular eutectic reaches up to 8%-12% and its grain size is in the range from 10um to 20um. The austenite steel matrix wear resistant composite reinforced by in situ granular eutectic (abbreviated AGE composite) and austenite-bainite steel mains wear resistant composite reinforced by in situ granular eutectic (abbreviated ABGE composite) are obtained in the as-cast state and by air hardening, respectively. The wear resistance of the AGE and ABGE composites can be more greatly increased than that of their matrix steels under low and medium impact working condition. 展开更多
关键词 steel matrix composite si-ce-ti compound in situ granular eutectic mechanical property
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快速凝固粉末Al-Fe-Ce-Ti-(Si)耐热合金 被引量:4
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作者 汤亚力 沈宁福 +1 位作者 邵国胜 张东捷 《粉末冶金技术》 CAS CSCD 北大核心 1992年第2期115-119,共5页
研究了用旋转叶片法制得的快速凝固粉末热挤压成形的Al-Fe-Ce-Ti-(Si)合金的显微组织和性能。结果表明,在合金中加入Ti元素可以提高合金的再结晶温度,而加入Si时,由于形成的α-Al_(12)(Fe,Ti)_3Si相抗粗化能力较差,致使高温强度下降。不... 研究了用旋转叶片法制得的快速凝固粉末热挤压成形的Al-Fe-Ce-Ti-(Si)合金的显微组织和性能。结果表明,在合金中加入Ti元素可以提高合金的再结晶温度,而加入Si时,由于形成的α-Al_(12)(Fe,Ti)_3Si相抗粗化能力较差,致使高温强度下降。不加Si的01合金由于含有大量热稳定性好的第二相,在573K时强度达到275MPa。 展开更多
关键词 快速凝固粉末 热挤压 耐热合金
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Improved Visible Transparency of SiO_2/ZnO:Al/CeO_2-TiO_2/SiO_2 Multilayer Films with High UV Absorption and Infrared Reflection Rate 被引量:1
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作者 倪佳苗 赵修建 +1 位作者 ZHAO Qingnan ZHENG Mindong 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2015年第5期941-946,共6页
New visible transparent, UV absorption, and high infrared reflection properties have been realized by depositing multilayer Si O2/Zn O: Al/Ce O2-Ti O2/Si O2 films onto glass substrates at low temperature by radio freq... New visible transparent, UV absorption, and high infrared reflection properties have been realized by depositing multilayer Si O2/Zn O: Al/Ce O2-Ti O2/Si O2 films onto glass substrates at low temperature by radio frequency magnetron sputtering. Optimum thickness of Si O2, Zn O: Al(ZAO) and Ce O2-Ti O2(CTO) films were designed with the aid of thin film design software. The degree of antireflection can be controlled by adjusting the thickness and refractive index. The outer Si O2 film can diminish the interference coloring and increase the transparency; the inner Si O2 film improves the adhesion of the coating on the glass substrate and prevents Ca2+, Na+ in the glass substrate from entering the ZAO film. The average transmittance in the visible light range increases by nearly 18%-20%, as compared to double layer ZAO/CTO films. And the films display high infrared reflection rate of above 75% in the wavelength range of 10-25 μm and good UV absorption(> 98%) properties. These systems are easy to produce on a large scale at low cost and exhibit high mechanical and chemical durability. The triple functional films with high UV absorption, antireflective and high infrared reflection rate will adapt to application in flat panel display and architectural coating glass, automotive glass, with diminishing light pollution as well as decreasing eye fatigue and increasing comfort. 展开更多
关键词 Si O2/Zn O:Al /Ce O2-Ti O2/Si O2 TRANSPARENCY high infrared reflection rate ultraviolet absorption optimization
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Zr和Ce对Ti-11Si亚共晶合金组织及压缩性能的影响
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作者 许艳飞 易丹青 +2 位作者 湛永钟 孙顺平 刘会群 《材料热处理学报》 EI CAS CSCD 北大核心 2012年第11期12-17,共6页
采用显微组织观察(OM)、X射线衍射(XRD)、扫描电镜(SEM)、能谱分析(EDS)以及压缩性能测试等手段,研究了元素Zr和Ce对Ti-11 at%Si铸态亚共晶合金组织和室温压缩性能的影响。结果表明,在Ti-Si亚共晶合金中添加8.0 at%的Zr可降低Si在α-Ti... 采用显微组织观察(OM)、X射线衍射(XRD)、扫描电镜(SEM)、能谱分析(EDS)以及压缩性能测试等手段,研究了元素Zr和Ce对Ti-11 at%Si铸态亚共晶合金组织和室温压缩性能的影响。结果表明,在Ti-Si亚共晶合金中添加8.0 at%的Zr可降低Si在α-Ti中的固溶度,促进硅化物细小、弥散析出,可改善合金的压缩强度和塑性。而添加0.5 at%的Ce可以明显细化α-Ti枝晶和共晶团组织,也可提高合金的压缩强度和塑性。且Ce对Ti-Si亚共晶合金的细晶强化效果比Zr要好。物相分析和EDS结果表明,Zr和Ce都主要存在于Ti5Si3相中,Zr则取代了部分Ti原子,形成了(Ti,Zr)5Si3相,Ce取代了部分Si原子,形成了三元硅化物Ti5(Si,Ce)3相。 展开更多
关键词 Ti-Si亚共晶合金 ZR CE 显微组织 压缩性能
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