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Effect of partial melting on superplasticity of AlNp/6061Al composite

Effect of partial melting on superplasticity of AlNp/6061Al composite
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摘要 AlN particulate reinforced 6061 aluminum alloy composite was fabricated by powder metallurgy method and hot rolled after extrusion. Tensile strength and elongation at elevated temperature were measured by tensile test at initial strain rates between 10 -2 s -1 and 10 0 s -1 . The AlNp/6061Al composite exhibits an m value of 0.42 and a maximum elongation of 450% at 863?K. Differential scanning calorimeter was used to ascertain the possibility of any partial melting in the vicinity of optimum superplastic temperature. Partial melting resulting from solute segregation at interfaces has much influence on superplasticity of the composite. It is postulated that AlNp/matrix interface sliding occurs along with grain boundary in superplastic deformation. AlN particulate reinforced 6061 aluminum alloy composite was fabricated by powder metallurgy method and hot rolled after extrusion. Tensile strength and elongation at elevated temperature were measured by tensile test at initial strain rates between 10 -2 s -1 and 10 0 s -1 . The AlNp/6061Al composite exhibits an m value of 0.42 and a maximum elongation of 450% at 863?K. Differential scanning calorimeter was used to ascertain the possibility of any partial melting in the vicinity of optimum superplastic temperature. Partial melting resulting from solute segregation at interfaces has much influence on superplasticity of the composite. It is postulated that AlNp/matrix interface sliding occurs along with grain boundary in superplastic deformation.
出处 《中国有色金属学报》 EI CAS CSCD 北大核心 2001年第z1期143-146,共4页 The Chinese Journal of Nonferrous Metals
基金 Project ( 5 97810 0 0 4)supportedbytheNationalNaturalScienceFoundationofChin
关键词 SUPERPLASTICITY aluminum matrix composite AlN particulate superplasticity aluminum matrix composite AlN particulate
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参考文献12

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