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Solidification and interfacial structure of in situ Al-4.5Cu/TiB2 composite; Solidification and interfacial structure of in situ Al-4.5Cu/TiB2 composite
Z. Y. Chen; Y. Y. Chen; Q. Shu; G. Y. An; D. Li; D. S. Xu; Y. Y. Liu
2000 ; 2000
Source PublicationJournal of Materials Science ; Journal of Materials Science
ISSN0022-2461 ; 0022-2461
Volume35Issue:22Pages:5605-5608
AbstractIn situ particle reinforced Al-4.5Cu/TiB2 composite was fabricated with TiO2, H3BO3, Na3AlF6 powders and Al-4.5Cu alloy by reaction in melt. The composite can be directly casted into moulds to make composite parts. TiB2 particles distribute uniformly in the matrix. The average size of TiB2 particles is 0.93 mum. At the atomic scale, TiB2 is hexagonal, and exhibits hexagon or quadrilateral shape. The orientation relationships exist in the interfaces between TiB2 particle and alpha -Al, and between the reinforced small Al2Cu phase and alpha -Al in the composite. They are [0-332](T)iB // [110](<)alpha>-Al, (01-11)(T)iB // (002)(<)alpha>-Al and [-1-32](<)alpha>-Al // [123](A)lCu, (211)(<)alpha>-Al // (111)(A)lCu. TiB2 particle is nucleation site for alpha -Al matrix growth in the composite. The interface between TiB2 particles and the matrix is clean and well bonded. No reaction product has been found through HREM observation. This is beneficial to the strength of the composite. The as-cast Al-4.5Cu/TiB2 composite exhibits mechanical excellent properties: the tensile strength is 416.7 MPa, the yield strength is 316.9 MPa, and the elongation is 3.3 pct.; In situ particle reinforced Al-4.5Cu/TiB2 composite was fabricated with TiO2, H3BO3, Na3AlF6 powders and Al-4.5Cu alloy by reaction in melt. The composite can be directly casted into moulds to make composite parts. TiB2 particles distribute uniformly in the matrix. The average size of TiB2 particles is 0.93 mum. At the atomic scale, TiB2 is hexagonal, and exhibits hexagon or quadrilateral shape. The orientation relationships exist in the interfaces between TiB2 particle and alpha -Al, and between the reinforced small Al2Cu phase and alpha -Al in the composite. They are [0-332](T)iB // [110](<)alpha>-Al, (01-11)(T)iB // (002)(<)alpha>-Al and [-1-32](<)alpha>-Al // [123](A)lCu, (211)(<)alpha>-Al // (111)(A)lCu. TiB2 particle is nucleation site for alpha -Al matrix growth in the composite. The interface between TiB2 particles and the matrix is clean and well bonded. No reaction product has been found through HREM observation. This is beneficial to the strength of the composite. The as-cast Al-4.5Cu/TiB2 composite exhibits mechanical excellent properties: the tensile strength is 416.7 MPa, the yield strength is 316.9 MPa, and the elongation is 3.3 pct.
description.departmentchinese acad sci, inst met res, titanium alloy lab, shenyang 110015, peoples r china. harbin inst technol, mat sci & technol coll, harbin 150001, peoples r china.;chen, zy (reprint author), chinese acad sci, inst met res, titanium alloy lab, shenyang 110015, peoples r china ; chinese acad sci, inst met res, titanium alloy lab, shenyang 110015, peoples r china. harbin inst technol, mat sci & technol coll, harbin 150001, peoples r china.;chen, zy (reprint author), chinese acad sci, inst met res, titanium alloy lab, shenyang 110015, peoples r china
KeywordAluminum Aluminum
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WOS IDWOS:000165090300012 ; WOS:000165090300012
Citation statistics
Cited Times:16[WOS]   [WOS Record]     [Related Records in WOS]
Document Type期刊论文
Identifierhttp://ir.imr.ac.cn/handle/321006/37007
Collection中国科学院金属研究所
Recommended Citation
GB/T 7714
Z. Y. Chen,Y. Y. Chen,Q. Shu,et al. Solidification and interfacial structure of in situ Al-4.5Cu/TiB2 composite, Solidification and interfacial structure of in situ Al-4.5Cu/TiB2 composite[J]. Journal of Materials Science, Journal of Materials Science,2000, 2000,35, 35(22):5605-5608, 5605-5608.
APA Z. Y. Chen.,Y. Y. Chen.,Q. Shu.,G. Y. An.,D. Li.,...&Y. Y. Liu.(2000).Solidification and interfacial structure of in situ Al-4.5Cu/TiB2 composite.Journal of Materials Science,35(22),5605-5608.
MLA Z. Y. Chen,et al."Solidification and interfacial structure of in situ Al-4.5Cu/TiB2 composite".Journal of Materials Science 35.22(2000):5605-5608.
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