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Mg-Zn系合金G.P.区和时效强化的研究进展 被引量:7
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作者 陈敬区 刘江文 《材料导报(纳米与新材料专辑)》 EI CAS 2008年第3期342-345,共4页
评述了国内外Mg-Zn系合金的研究进展。总结了Mg-Zn系合金中时效析出行为和各析出强化相的特征,通过分析铝合金G.P.区的形成规律,探讨了Mg-Zn系合金G.P.区的存在可能性。指出Mg-Zn系合金G.P.区的研究对Mg-Zn合金析出相变理论和发展高强... 评述了国内外Mg-Zn系合金的研究进展。总结了Mg-Zn系合金中时效析出行为和各析出强化相的特征,通过分析铝合金G.P.区的形成规律,探讨了Mg-Zn系合金G.P.区的存在可能性。指出Mg-Zn系合金G.P.区的研究对Mg-Zn合金析出相变理论和发展高强度镁合金具有重要意义。 展开更多
关键词 mg—zn系合金 G.P.区 时效 析出强化
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Sc对Al-Zn-Mg-Cu系铸造铝合金组织与性能的影响 被引量:10
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作者 刘华娜 杨光昱 +2 位作者 齐元昊 刘少军 介万奇 《铸造》 CAS CSCD 北大核心 2013年第1期4-9,共6页
研究了添加x%Sc(x=0.15,0.30,0.45)对Al-6.0Zn-2.8Mg-1.9Cu试验铝合金金属型铸造组织和室温及200~300℃高温力学性能的影响。研究表明,Sc可以有效改变合金基体α(Al)相的尺寸和形态,并对合金共晶组织有明显的变质作用,同时可以有效去... 研究了添加x%Sc(x=0.15,0.30,0.45)对Al-6.0Zn-2.8Mg-1.9Cu试验铝合金金属型铸造组织和室温及200~300℃高温力学性能的影响。研究表明,Sc可以有效改变合金基体α(Al)相的尺寸和形态,并对合金共晶组织有明显的变质作用,同时可以有效去除合金组织中的Al7Cu2Fe含铁相,从而提高试验合金的室温抗拉强度。当Sc添加量为0.45%时,合金的室温抗拉强度最高可达510 MPa。但Sc对合金的室温塑性影响不大。当Sc添加量为0.30%时,合金的高温瞬时抗拉强度明显提高。 展开更多
关键词 Al—znmg—Cu铸造铝合金 SC 显微组织 力学性能
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Mg-Zn系耐热铸造镁合金的最新研究进展 被引量:1
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作者 刘洋 谢骏 郭雪锋 《南方金属》 CAS 2010年第6期1-7,共7页
综述Mg-Zn系耐热铸造镁合金的最新研究进展,并分析了高温蠕变机理及其设计思路,重点介绍了Cu、Zr、Al及稀土元素RE和碱土元素(Ca、Sr)在Mg-Zn系耐热镁合金中的作用行为,讨论了合金元素使用中存在的问题和今后的发展方向.
关键词 mg—zn耐热镁合金 高温性能 蠕变机制 合金元素
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Intermetallics and phase relations of Mg-Zn-Ce alloys at 400 ℃ 被引量:3
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作者 黄明丽 李洪晓 +3 位作者 丁桦 包立 马晓斌 郝士明 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2012年第3期539-545,共7页
The crystal structures,compositions and phase relations of the intermetallics of Mg-Zn-Ce system in the Mg-rich corner at 400 ℃ were identified through equilibrium alloy method.For Mg-Zn-Ce system,there is a linear t... The crystal structures,compositions and phase relations of the intermetallics of Mg-Zn-Ce system in the Mg-rich corner at 400 ℃ were identified through equilibrium alloy method.For Mg-Zn-Ce system,there is a linear ternary compound(T phase),whose chemical formula is(Mg1-xZnx)11Ce.The range of Zn content in T phase is from 9.6% to 43.6%(molar fraction).The crystal structure of T phase is C-centered orthorhombic lattice with lattice parameters of a=0.96-1.029 nm,b=1.115-1.204 nm,c=0.940-1.015 nm.And the lattice parameters of T phase are decreasing a little with increasing Zn content.According to the results of composition and crystal structure,the maximal solubility of Zn in Mg12Ce is about 7.8%(molar fraction),and the chemical formula of the solid solution can be identified as(Mg1-xZnx)12Ce.The isothermal section of Mg-Zn-Ce system in Mg-rich corner at 400 ℃ was constructed. 展开更多
关键词 mg-zn-Ce system INTERMETALLICS crystal structure isothermal section
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Isothermal section of Mg-rich corner in Mg-Zn-Al ternary system at 335 °C 被引量:1
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作者 任玉平 孙世能 +4 位作者 王利卿 郭运 李洪晓 李松 秦高梧 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2014年第11期3405-3412,共8页
The phase equilibria and compositions at the Mg-rich corner of the Mg?Zn?Al ternary system at 335 °C were systemically investigated through the equilibrated alloy method by using X-ray diffraction (XRD) and scann... The phase equilibria and compositions at the Mg-rich corner of the Mg?Zn?Al ternary system at 335 °C were systemically investigated through the equilibrated alloy method by using X-ray diffraction (XRD) and scanning electron microscopy (SEM) assisted with energy dispersive spectroscopy of X-ray (EDS). It is experimentally testified that theα-Mg solid solution is not in equilibrium with the Mg32(Al, Zn)49 (τ) ternary intermetallic compound orq quasicrystalline phase, but only in equilibrium with one ternary intermetallic compound Al5Mg11Zn4 (φ). The whole composition range of theφ phase was also obtained at 335 °C, i.e., 52.5%?56.4% Mg, 13.6%?24.0% Al, 19.6%?33.9% Zn (mole fraction). The solubility of Al in the MgZn phase is remarkably more than that in the Mg7Zn3 phase, and the maximum is about 8.6% Al. Aluminum and zinc are simultaneously soluble in theα-Mg solid solution. 展开更多
关键词 mg-zn-Al ternary system isothermal section τ intermetallic compound SOLUBILITY
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Microstructure and mechanical properties of high strength Al-Zn-Mg-Cu alloys used for oil drill pipes 被引量:7
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作者 冯春 寿文彬 +2 位作者 刘会群 易丹青 冯耀荣 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2015年第11期3515-3522,共8页
Three Al?Zn?Mg?Cu alloys used for oil drill pipes (Alloy A: Al?6.9Zn?2.3Mg?1.7Cu?0.3Mn?0.17Cr; Alloy B: Al?8.0Zn?2.3Mg?2.6Cu?0.2Zr, Alloy C: Al?8.0Zn?2.3Mg?1.8Cu?0.18Zr) were studied by hardness tests, tensile tests a... Three Al?Zn?Mg?Cu alloys used for oil drill pipes (Alloy A: Al?6.9Zn?2.3Mg?1.7Cu?0.3Mn?0.17Cr; Alloy B: Al?8.0Zn?2.3Mg?2.6Cu?0.2Zr, Alloy C: Al?8.0Zn?2.3Mg?1.8Cu?0.18Zr) were studied by hardness tests, tensile tests and transmission electron microscopy (TEM). The results show that the ultimate tensile strength, yield strength and elongation for Alloys A, B and C are 736 MPa, 695.5 MPa and 7%; 711 MPa, 674 MPa and 12.5%; 740.5 MPa, 707.5 MPa and 13%, respectively after solid solution treatment ((450 °C, 2 h)+(470 °C, 1 h)) followed by aging at 120 °C for 12 h. The dominant strengthening phases in Alloy A are GPII zone andη′ phase, the main precipitate in Alloy B isη′ phase, and the main precipitates in Alloy C are GPI zone, GPII zone andη′ phase, which are the reason for better comprehensive properties of Alloy C. The increase of zinc content leads to the improvement of the strength. The increase of copper content improves the elongation but slightly decreases the strength. Large second-phase particles formed by the increase in the manganese content induce a decrease in the elongation of alloys. 展开更多
关键词 Al-zn-mg-Cu alloy aging time PRECIPITATE microstructure mechanical properties
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Intermetallic phase formation and evolution during homogenization and solution in Al-Zn-Mg-Cu alloys 被引量:10
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作者 LI ChunMei CHEN ZhiQian +2 位作者 ZENG SuMin CHENG NanPu CHEN TianXiao 《Science China(Technological Sciences)》 SCIE EI CAS 2013年第11期2827-2838,共12页
The effects of major alloy element contents of Zn, Mg, Cu in Al-Zn-Mg-Cu alloys on the formation and evolution of intermetallic phases during casting, homogenization and solution treatment have been investigated throu... The effects of major alloy element contents of Zn, Mg, Cu in Al-Zn-Mg-Cu alloys on the formation and evolution of intermetallic phases during casting, homogenization and solution treatment have been investigated through using X-ray diffraction, scanning electron microscopy and differential scanning calorimetry. Experimental results showed that a relatively higher Zn content with lower Mg and Cu contents was beneficial to the formation of MgZn2 phase instead of the A12CuMg phase, which resulted in the unicity of the intermetallics in the A1 matrix, and that the MgZn2 phase was easier for diffusion and dissolution during homogenization and solution than the Al2CuMg phase. Additionally, the results of the first-principles calculations gave support for explaining the experimental phenomena. A larger absolute value of formation enthalpy and a smaller value of binding energy of the MgZn2 phase, as compared with the Al2CuMg phase, give it priority to precipitate during casting and make it easier to re-dissolve during homogenization and solution treatment. What's more, higher elastic constants with severe anisotropy of Young's modulus make undissolved blocks of AI^CuMg phase act as crack initiation, which degrade the perfor- mance of the materials. 展开更多
关键词 intermetallic phases HOMOGENIZATION SOLUTION FIRST-PRINCIPLES Al alloys
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Heat treatment of 7xxx series aluminium alloys—Some recent developments 被引量:84
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作者 Paul A.ROMETSCH Yong ZHANG Steven KNIGHT 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2014年第7期2003-2017,共15页
The 7xxx series alloys are heat treatable wrought aluminium alloys based on the Al-Zn-Mg(-Cu) system. They are widely used in high-performance structural aerospace and transportation applications. Apart from composi... The 7xxx series alloys are heat treatable wrought aluminium alloys based on the Al-Zn-Mg(-Cu) system. They are widely used in high-performance structural aerospace and transportation applications. Apart from compositional, casting and thermo-mechanical processing effects, the balance of properties is also significantly influenced by the way in which the materials are heat-treated. This paper describes the effects of homogenisation, solution treatment, quenching and ageing treatments on the evolution of the microstructure and properties of some important medium to high-strength 7xxx alloys. With a focus on recent work at Monash University, where the whole processing route from homogenisation to final ageing has been studied for thick plate products, it is reported how microstructural features such as dispersoids, coarse constituent particles, fine-scale precipitates, grain structure and grain boundary characteristics can be controlled by heat treatment to achieve improved microstructure-property combinations. In particular, the paper presents methods for dissolving unwanted coarse constituent particles by controlled high- temperature treatments, quench sensitivity evaluations based on a systematic study of continuous cooling precipitation behaviour, and ageing investigations of one-, two- and three-step ageing treatments using experimental and modelling approaches, in each case, the effects on both the microstructure and the resulting properties are discussed. 展开更多
关键词 7xxx aluminium alloys AL-zn-mg-CU HOMOGENISATION solution treatment quenching retrogression and re-ageing strength corrosion
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