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Synthesis and spark plasma sintering of Al-Mg-Zr alloys 被引量:2
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作者 n.Saheb A.S.Hakeem +2 位作者 A.Khalil n.al-aqeeli T.Laoui 《Journal of Central South University》 SCIE EI CAS 2013年第1期7-14,共8页
Although casting is commonly used to process aluminum alloys, powder metallurgy remains a promising technique to develop aluminum based materials for structural and functional applications. The possibility to synthesi... Although casting is commonly used to process aluminum alloys, powder metallurgy remains a promising technique to develop aluminum based materials for structural and functional applications. The possibility to synthesize Al-Mg-Zr alloys through mechanical alloying and spark plasma sintering techniques was explored. Al-10Mg-5Zr and Al-5Mg-1Zr alloyed powders were synthesized through wet ball milling the appropriate amount of elemental powders. The dried milled powders were spark plasma sintered through passing constant pulsed electric current with fixed pulse duration at a pressure of 35 MPa. The samples were vacuum sintered at 450, 500, 550, 600 and 620 ℃ for 10, 15 and 20 min. The Al-10Mg-5Zr alloy displays poor densification at lower sintering temperatures of 450, 500, 550 and 600 ℃. Its sinterability is improved at a temperature of 620 ℃ whereas sintering temperatures higher than 620 ℃ leads to partial melting of the alloy. It is possible to sinter the Al-5Mg-1Zr alloy at 450, 500 and 550 ℃. The increase of sintering temperature improves its densification and increases its hardness. The Al-5Mg-IZr alloy displays better densification and hardness compared to Al-10Mg-5Zr alloys. 展开更多
关键词 aluminum alloys mechanical alloying spark plasma sintering powder metallurgy
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机械合金化制备新型Al基纳米复合材料的研究进展
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作者 n.al-aqeeli G.Mendoza-Suarez +2 位作者 C.Suryanarayana R.A.L.Drew 倪培相 《世界有色金属》 2008年第7期56-59,共4页
利用铝基二元(Al-Mg)和三元(Al-Mg-Zr)粉末混合物通过机械合金化方法制备新型Al-Mg-Zr纳米复合材料。通过XRD和TEM/EDS分析了球磨和热处理后的粉末中相的演变。对于二元Al-Mg合金来说,Al(Mg)固溶体是主要的合金相,而非晶相几乎不可能形... 利用铝基二元(Al-Mg)和三元(Al-Mg-Zr)粉末混合物通过机械合金化方法制备新型Al-Mg-Zr纳米复合材料。通过XRD和TEM/EDS分析了球磨和热处理后的粉末中相的演变。对于二元Al-Mg合金来说,Al(Mg)固溶体是主要的合金相,而非晶相几乎不可能形成。向Al-10Mg混合粉末中加入5at.%的Zr,除了生成Al(Zr,Mg)固溶体以外,还生成了一些自由的Mg。这些Mg在退火处理之后扩散到了Al3Zr金属间化合物中。最终得到的产物为由固溶体和金属间化合物组成的纳米复合材料,当Zr含量增加时,最终产物的结构稳定性和硬度将有相当大的提高。含35at.%Zr的氧化物相的存在可能是提高这种合金硬度的原因。 展开更多
关键词 机械合金化方法 纳米复合材料 AL 制备 金属间化合物 粉末混合物 结构稳定性 固溶体
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