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原位反应纳米TiB_2/Cu复合材料的制备和微结构 被引量:28
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作者 王耐艳 涂江平 +5 位作者 杨友志 齐卫笑 刘芙 张孝彬 卢焕明 刘茂森 《中国有色金属学报》 EI CAS CSCD 北大核心 2002年第1期151-154,共4页
利用原位反应技术 ,通过控制反应物B2 O3 和石墨的含量制备了原位生长纳米TiB2 增强Cu基复合材料。用XRD ,EDS ,TEM对TiB2 /Cu原位复合材料进行微结构分析 ,研究表明铜基体中弥散分布着 5 0nm的TiB2颗粒 ,并对Cu基体有良好的增强作用。
关键词 原位反应 硼化钛 铜基复合材料 制备 微结构 纳米材料
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Influence of TiB_2 nanoparticles on elevated-temperature properties of Al-Mn-Mg 3004 alloy 被引量:4
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作者 Kun LIU 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2017年第4期771-778,共8页
Two contents(1.5%and3%)of TiB2nanoparticles were introduced in Al?Mn?Mg3004alloy to study their effects on theelevated-temperature properties.Results show that TiB2nanoparticles were mainly distributed at the interden... Two contents(1.5%and3%)of TiB2nanoparticles were introduced in Al?Mn?Mg3004alloy to study their effects on theelevated-temperature properties.Results show that TiB2nanoparticles were mainly distributed at the interdendritic grain boundarieswith a size range of20?80nm,which is confirmed by transmission electron microscopy(TEM)and X-ray diffraction(XRD).Therefore,the volume fraction of the dispersoid free zones is greatly reduced and the motion of grain boundaries and dislocations isinhibited more effectively at elevated temperature.After peak precipitation heat treatment,the yield strengths in the alloy with3%TiB2addition at room temperature and300°C were increased by20%and13%respectively,while the minimum creep rate at300°Cwas reduced to only1/5of the base alloy free of TiB2,exhibiting a considerable improvement of elevated-temperature properties inAl?Mn?Mg alloys. 展开更多
关键词 Al-Mn-Mg 3004 alloy tib2 nanoparticle dispersoid free zone elevated temperature property creep
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