| Influence of sintering routes to the mechanical properties of magnesium alloy and its composites produced by PM technique; Influence of sintering routes to the mechanical properties of magnesium alloy and its composites produced by PM technique |
| W. Xie; Y. Liu; D. S. Li; J. Zhang; Z. W. Zhang; J. Bi
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| 2007
; 2007
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发表期刊 | Journal of Alloys and Compounds
; Journal of Alloys and Compounds
 |
ISSN | 0925-8388
; 0925-8388
|
卷号 | 431期号:1-2页码:162-166 |
摘要 | Two kinds of sintering routes liquid phase sintering (LS) and solid phase sintering (SS) were used to fabricate Mg-9Al and 15 vol.%oSiCP/Mg-9Al magnesium composite. Mechanical properties of composites and matrix alloys produced by different sintering routes were investigated. Results show that the tensile and yield strength of LS achieved 15%SiCp/Mg9Al-1 were 11.1% and 22.8% higher than those of the matrix respectively. Matrix alloy (Mg9Al-2) and composite (15%SiCp/Mg9A1-2) fabricated via SS process had lower strength values and higher ductility compared to the same material via LS process. The yield strength of 15%SiCp/Mg9Al-1 was found to be as high as 339 MPa which is 25.1% higher than that of 15%SiCp/Mg9Al-2, which was considered to be result from combination effects of refined matrix alloy and certain mount of fine gamma(Mg17Al12) phase which uniformly distribute in the matrix. (c) 2006 Elsevier B.V. All rights reserved.; Two kinds of sintering routes liquid phase sintering (LS) and solid phase sintering (SS) were used to fabricate Mg-9Al and 15 vol.%oSiCP/Mg-9Al magnesium composite. Mechanical properties of composites and matrix alloys produced by different sintering routes were investigated. Results show that the tensile and yield strength of LS achieved 15%SiCp/Mg9Al-1 were 11.1% and 22.8% higher than those of the matrix respectively. Matrix alloy (Mg9Al-2) and composite (15%SiCp/Mg9A1-2) fabricated via SS process had lower strength values and higher ductility compared to the same material via LS process. The yield strength of 15%SiCp/Mg9Al-1 was found to be as high as 339 MPa which is 25.1% higher than that of 15%SiCp/Mg9Al-2, which was considered to be result from combination effects of refined matrix alloy and certain mount of fine gamma(Mg17Al12) phase which uniformly distribute in the matrix. (c) 2006 Elsevier B.V. All rights reserved. |
部门归属 | chinese acad sci, inst met res, shenyang 110016, peoples r china. anshan iron & steel grp corp technol ctr, anshan 114003, liaoning, peoples r china.;xie, w (reprint author), chinese acad sci, inst met res, shenyang 110016, peoples r china;wxie@imr.ac.cn
; chinese acad sci, inst met res, shenyang 110016, peoples r china. anshan iron & steel grp corp technol ctr, anshan 114003, liaoning, peoples r china.;xie, w (reprint author), chinese acad sci, inst met res, shenyang 110016, peoples r china;wxie@imr.ac.cn
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关键词 | Magnesium Matrix Composites
Magnesium Matrix Composites
Sic Particle
Sic Particle
Pm Technique
Pm Technique
Sintering
Sintering
Interfacial Reaction
Interfacial Reaction
Matrix Composites
Matrix Composites
Casting Process
Casting Process
Microstructure
Microstructure
Mg
Mg
Behavior
Behavior
Extrusion
Extrusion
Strength
Strength
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URL | 查看原文
; 查看原文
|
WOS记录号 | WOS:000245498300031
; WOS:000245498300031
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引用统计 |
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文献类型 | 期刊论文
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条目标识符 | http://ir.imr.ac.cn/handle/321006/33940
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专题 | 中国科学院金属研究所
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推荐引用方式 GB/T 7714 |
W. Xie,Y. Liu,D. S. Li,et al. Influence of sintering routes to the mechanical properties of magnesium alloy and its composites produced by PM technique, Influence of sintering routes to the mechanical properties of magnesium alloy and its composites produced by PM technique[J]. Journal of Alloys and Compounds, Journal of Alloys and Compounds,2007, 2007,431, 431(1-2):162-166, 162-166.
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APA |
W. Xie,Y. Liu,D. S. Li,J. Zhang,Z. W. Zhang,&J. Bi.(2007).Influence of sintering routes to the mechanical properties of magnesium alloy and its composites produced by PM technique.Journal of Alloys and Compounds,431(1-2),162-166.
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MLA |
W. Xie,et al."Influence of sintering routes to the mechanical properties of magnesium alloy and its composites produced by PM technique".Journal of Alloys and Compounds 431.1-2(2007):162-166.
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