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Semisolid-rolling and annealing process of woven carbon fibers reinforced Al-matrix composites 被引量:5
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作者 Junjia Zhang Shichao Liu +3 位作者 Yiping Lu Li Jiang Yubo Zhang Tingju Li 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2017年第7期623-629,共7页
Semisolid-rolling method was successfully developed to prepare the Ni-coated woven carbon fibers reinforced Al-matrix composite. Due to the appropriate matrix flowability and rolling pressure, the Al-matrix could infi... Semisolid-rolling method was successfully developed to prepare the Ni-coated woven carbon fibers reinforced Al-matrix composite. Due to the appropriate matrix flowability and rolling pressure, the Al-matrix could infiltrate into the woven fibers sufficiently and attach to the reinforcements closely forming a smooth interface. The rolling speed of 4 rad/min offered a subtle equilibrium between the heat transfer and the material deformation. The covering matrix should be controlled at semisolid state to provide a better infiltration behavior and a protective effect on the carbon fibers. With the addition of fibers, an improvement for more than 25% was obtained in the bending strength of the materials. Furthermore, the woven carbon fibers could strengthen the composite in multiple directions, rather than only along the fiber longitudinal directions. The annealing process promoted the Ni coating to react with and to diffuse into the matrix, resulted in an obvious increase of the bending strength. 展开更多
关键词 Metal-matrix composites Woven carbon fiber semisolid-rolling process Annealing Mechanical property
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Microstructure and properties of A2017 alloy strips processed by a novel process by combining semisolid rolling,deep rolling,and heat treatment 被引量:2
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作者 Ren-guo Guan Xiang Wang +3 位作者 Zhan-yong Zhao Wei-wei Wang Fu-rong Cao Chun-ming Liu 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2013年第8期770-778,共9页
A novel short process for producing A2017 alloy strips with notable features of near net shape, saving energy, low cost, and high product performance was developed by combining semisolid rolling, deep rolling, and hea... A novel short process for producing A2017 alloy strips with notable features of near net shape, saving energy, low cost, and high product performance was developed by combining semisolid rolling, deep rolling, and heat treatment. The microstructure and properties of the A2017 alloy strips were investigated by metallographic microscopy, scanning electron microscopy, transmission electron microscopy, X-ray diffraction, tensile testing, and hardness measurement. The cross-sectional microstructure of the A2017 alloy strips is mainly composed of near-spherical primary grains. Many eutectic phases CuA12 formed along primary grain boundaries during semisolid rolling are crushed and broken into small particles. After solution treatment at 495℃ for 2 h the eutectic phases at grain boundaries have almost dissolved into the matrix. When the solution treatment time exceeds 2 h, grain coarsening happens. More and more grain interior phases precipitate with the aging time prolonging to 8 h. The precipitated particles are very small and distribute homogenously, and the tensile strength reaches its peak value. When the aging time is prolonged to 12 h, there is no obvious variation in the amount of precipitated phases, but the size and spacing of precipitated phases increase. The tensile strength of the A2017 alloy strips produced by the present method can reach 362.78 MPa, which is higher than that of the strips in the national standard of China. 展开更多
关键词 aluminum alloys semisolid rolling heat treatment microstructure mechanical properties
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液芯铸轧制实验及生产研究进展 被引量:1
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作者 苗信诚 李胜利 《鞍山钢铁学院学报》 1998年第6期13-16,共4页
集中论述了近年来液芯铸轧制技术在国内外的实验研究和工业化生产中的探索。分析了目前工业化应用中应解决的问题和实验室应开展的进一步研究。
关键词 铸轧 液芯轧制 半凝固技术 半固态轧制
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