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Effect of microstructures on superplasticity of Al-11%Si alloy
引用本文:江静华,马爱斌,N. SAITO,A. WATAZU,林萍华,Y. NISHIDA. Effect of microstructures on superplasticity of Al-11%Si alloy[J]. 中国有色金属学会会刊, 2007, 17(3): 509-513
作者姓名:江静华  马爱斌  N. SAITO  A. WATAZU  林萍华  Y. NISHIDA
作者单位:Department of Materials Science and Engineering Hohai University,National Institute of Advanced Industrial Science and Technology 2266-98 Anagahora Shimoshidami Moriyama-ku Nago ya 463-8560 Japan,National Institute of Advanced Industrial Science and Technology 2266-98 Anagahora Shimoshidami Moriyama-ku Nago ya 463-8560 Japan,National Institute of Advanced Industrial Science and Technology 2266-98 Anagahora Shimoshidami Moriyama-ku Nago ya 463-8560 Japan,Department of Materials Science and Engineering Hohai University,National Institute of Advanced Industrial Science and Technology 2266-98 Anagahora Shimoshidami Moriyama-ku Nago ya 463-8560 Japan,Nanjing 210098 China,Nanjing 210098 China
摘    要:Three kinds of Al-11%Si (mass fraction) alloy samples with different processes were produced to investigate the effect of microstructures on its superplasticity. Among them, the as-ECAP sample pressed 16 passes has ultrafine grains (300 nm) and the finest secondary particles. The ECAP-T6 sample, with ECAP 16 passes followed by T6 treatment, has fine secondary particles (3 μm) but the largest grains (8 μm). Contrarily, the T6-ECAP sample, with T6 treatment followed by ECAP 16 passes, has ultrafine grains and the large secondary particles (7 μm). The tensile testing results show that the as-ECAP sample exhibits superplasticity at high strain rate of 5.75×10-1 s-1 due to its fine secondary particles and ultrafine grains. The ECAP-T6 sample, however, does not exhibit superplasticity at the same high strain rate of 5.75×10-1 s-1 because it has relatively large secondary particles and large grains. Remarkably, the T6-ECAP sample does not have superplasticity even at the lower strain rate of 1.15×10-1 s-1, attributing to its comparatively large secondary particles. When most secondary particles are larger than 7 μm, the high strain rate superplasticity could not be obtained even if this sample has ultrafine grains.


Effect of microstructures on superplasticity of Al-11%Si alloy
JIANG Jing-hua,MA Ai-bin,N. SAITO,A. WATAZU,LIN Ping-hua,Y. NISHIDA. Effect of microstructures on superplasticity of Al-11%Si alloy[J]. Transactions of Nonferrous Metals Society of China, 2007, 17(3): 509-513
Authors:JIANG Jing-hua  MA Ai-bin  N. SAITO  A. WATAZU  LIN Ping-hua  Y. NISHIDA
Abstract:
Keywords:Al-Si alloy  microstructure  secondary particle size  superplasticity  grain size  metals and alloys
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