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香港科技大学高平教授
2009-07-29  来源:中国聚合物网

    36.Gao P., Lu X.H. and Chai C.K., (1996). “Rheology of Low Nematic Transition Temperature Thermotropic Liquid Crystalline Copolyester HBA/HQ/SA”, Polymer Engineering and Science 36 (22): 2771-2780.
    37.Gao P., Cheung M.K. and Leung T.Y., (1996). “Effects of Compaction Pressure on Cohesive Strength and Chain Mobility of Low-Temperature Compacted Nascent UHMWPE”, Polymer 37 (15): 3265-3272.
    38.Hyde T.M., Gladden L.F., Mackley, M.R. and Gao P., (1995). “Quantitative Nuclear-Magnetic-Resonance Imaging of Liquids in Swelling Polymers”, Journal of Polymer Science Part A-Polymer Chemistry 33 (11):1795-1806.
    39.P. Gao and M.R. Mackley (1994), “A general model for diffusion and swelling of polymers and its applications to ultra high molecular weight polyethylene”. Proceedings of the Royal Society, Series A (Mathematical and Physical Sciences), London, vol. 444 (1921): 267-285.
    40.Gao P. and Mackley M.R. (1994). “The Melt Structure and Rheology of Molten Ultra High Molecular Weight Polyethylene”. Polymer, 35: 5210-5215.
    41.Gao P. and Mackley M.R. (1992). “Surface Treatment of Ultra-high Molecular Weight Polyethylene to Enhance Adhesion and Conductivity Properties”. Polymer, 33: 4075-4080.
    42.Gao P. and Mackley M.R. (1991). “Effect of Presolvent Loading on the Ultimate Drawability of Ultra High Molecular Weight Polyethylene”. Polymer, 32: 3136-3139
    43.Gao P., Mackley M.R. and Nicholson T.M. (1990). “Development of Anisotropy in Swell Drawn Polyethylene”. Polymer, 31: 237-242.
主要著作章节

    Chan Chi-Kwong and Gao Ping (2002).  Viscosity Reduction Mechanism in High Molecular Mass Polyethylene Melt Containing a Small Quantity of Thermotropic Liquid Crystalline Polymers. Pp296-301.  In Advances in Liquid Crysalline Polymers and Supramolecules, Qifeng Zhou eds

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