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[해외논문] High-density polyethylene/ultrahigh-molecular-weight polyethylene blend. I. The processing, thermal, and mechanical properties 원문보기

Journal of applied polymer science, v.97 no.1, 2005년, pp.413 - 425  

Lim, K. L. K. (Polymer Engineering Division, School of Materials and Mineral Resources Engineering, Engineering Campus, Universiti Sains Malaysia, 14300 Nibong Tebal, S.P.S. Penang, Malaysia) ,  Ishak, Z. A. Mohd (Polymer Engineering Division, School of Materials and Mineral Resources Engineering, Engineering Campus, Universiti Sains Malaysia, 14300 Nibong Tebal, S.P.S. Penang, Malaysia) ,  Ishiaku, U. S. (Department of Advanced Fibro-Science, Kyoto Institute of Technology, Matsugasaki, Sakyo-ku, Kyoto 606-8585, Japan) ,  Fuad, A. M. Y. (Plastics and Ceramic Program, Sirim Bhd, 40911, Shah Alam, Selangor, Malaysia) ,  Yusof, A. H. (Department of Orthopedics, School of Medical Sciences, Universiti Sains Malaysia, 15990 Kubang Kerian, Kelantan, Malaysia) ,  Czigany, T. (Department of Polymer Engineering, Budapest University of Technology and Economics, H-1111, Budapest Muegyetem Rkp 3, Hungary) ,  Pukanszky, B. (Department of Plastics and Rubber Technology, Budapest University of Technology and Economics, H-1111, Budapest Muegyetem Rkp 3, Hungary) ,  Ogunniyi, D. S. (Department of Chemistry, University of Ilorin, Ilorin 240)

Abstract AI-Helper 아이콘AI-Helper

Various blend ratios of high-density polyethylene (HDPE) and ultrahigh-molecular-weight polyethylene (UHMWPE) were prepared with the objective of determining their suitability as biomaterials. Although the presence of HDPE in the blends enabled melt processing, the presence of UHMWPE helped to impro...

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참고문헌 (38)

  1. Baker, D., Hastings, R., Pruitt, L.. Compression and tension fatigue resistance of medical grade ultra high molecular weight polyethylene: the effect of morphology, sterilization, aging and temperature. Polymer, vol.41, no.2, 795-808.

  2. Bellare, A., Cohen, R.E.. Morphology of rod stock and compression-moulded sheets of ultra-high-molecular-weight polyethylene used in orthopaedic implants. Biomaterials, vol.17, no.24, 2325-2333.

  3. Chanda, A., Mukhopadhyay, A.K., Basu, D., Chatterjee, S.. Wear and Friction Behaviour of UHMWPE-Alumina Combination for Total Hip Replacement. Ceramics international, vol.23, no.5, 437-447.

  4. Cook, J.T.E., Klein, P.G., Ward, I.M., Brain, A.A., Farrar, D.F., Rose, J.. The morphology of nascent and moulded ultra-high molecular weight polyethylene. Insights from solid-state NMR, nitric acid etching, GPC and DSC. Polymer, vol.41, no.24, 8615-8623.

  5. Hyun Kang, Phil, Chang Nho, Young. The effect of γ-irradiation on ultra-high molecular weight polyethylene recrystallized under different cooling conditions. Radiation physics and chemistry, vol.60, no.1, 79-87.

  6. Boscoletto, A.Boscolo, Franco, R., Scapin, M., Tavan, M.. An investigation on rheological and impact behaviour of high density and ultra high molecular weight polyethylene mixtures. European polymer journal, vol.33, no.1, 97-105.

  7. Engineering Material Handbook Stein H. L. 167 1999 

  8. Wang, M, Bonfield, W. Chemically coupled hydroxyapatite–polyethylene composites: structure and properties. Biomaterials, vol.22, no.11, 1311-1320.

  9. Wang, M, Deb, S, Bonfield, W. Chemically coupled hydroxyapatite-polyethylene composites: processing and characterisation. Materials letters, vol.44, no.2, 119-124.

  10. Wang, M., Ladizesky, N. H., Tanner, K. E., Ward, I. M., Bonfield, W.. Hydrostatically extruded HAPEX™. Journal of materials science, vol.35, no.4, 1023-1030.

  11. Wang, M., Joseph, R., Bonfield, W.. Hydroxyapatite-polyethylene composites for bone substitution: effects of ceramic particle size and morphology. Biomaterials, vol.19, no.24, 2357-2366.

  12. Puig, C.. Enhanced crystallisation in branched polyethylenes when blended with linear polyethylene. Polymer, vol.42, no.15, 6579-6585.

  13. Tanem, B.S, Stori, Aage. Thermal analysis of single-site polymers in binary blends of low-molecular-weight linear polyethylene and high-molecular-weight branched polyethylene. Thermochimica acta, vol.345, no.1, 73-80.

  14. Jacobs, O, Mentz, N, Poeppel, A, Schulte, K. Sliding wear performance of HD-PE reinforced by continuous UHMWPE fibres. Wear: An international journal on the science and technology of friction, lubrication and wear, vol.244, no.1, 20-28.

  15. Mosleh, M., Suh, N.P., Arinez, J.. Manufacture and properties of a polyethylene homocomposite. Composites. Part A, Applied science and manufacturing, vol.29, no.5, 611-617.

  16. Cohen, Yachin, Rein, DmitryM, Vaykhansky, LevE, Porter, RogerS. Tailoring the interface in polyethylene fiber/matrix composites: surface-entangled interfacial layer. Composites. Part A, Applied science and manufacturing, vol.30, no.1, 19-25.

  17. 10.1002/(SICI)1097-4628(20000321)75:12<1503::AID-APP9>3.0.CO;2-X 

  18. Macromolecular Physics Wunderlich B. 88 1976 

  19. Mathew, Ivy, George, K. E., Francis, D. J.. Studies on the Rheological Behavior of Thermoplastic Elastomers Derived from NBR and PVC Using a Brabender Plasticorder. International journal of polymeric materials, vol.21, no.3, 189-197.

  20. 10.1002/(SICI)1097-4628(19990705)73:1<75::AID-APP9>3.0.CO;2-D 

  21. Plast Rubber Comp Process Appl Mousa A. 331 26 1997 

  22. Gahleitner, Markus. Melt rheology of polyolefins. Progress in polymer science, vol.26, no.6, 895-944.

  23. Ratnam, Chantara Thevy, Zaman, Khairul. Stabilization of poly(vinyl chloride)/epoxidized natural rubber (PVC/ENR) blends. Polymer degradation and stability, vol.65, no.1, 99-105.

  24. Burch, H.E., Scott, C.E.. Effect of viscosity ratio on structure evolution in miscible polymer blends. Polymer, vol.42, no.17, 7313-7325.

  25. Kurtz, Steven M., Muratoglu, Orhun K., Evans, Mark, Edidin, Avram A.. Advances in the processing, sterilization, and crosslinking of ultra-high molecular weight polyethylene for total joint arthroplasty. Biomaterials, vol.20, no.18, 1659-1688.

  26. Differential Scanning Calorimetry of Polymers Bershtein V. A. 146 1990 

  27. Tanem, B.S., Stori, A.. Blends of single-site linear and branched polyethylene. II. Morphology characterisation. Polymer, vol.42, no.15, 6609-6618.

  28. Arnal, M., Sanchez, J., Muller, A.. Miscibility of linear and branched polyethylene blends by thermal fractionation: use of the successive self-nucleation and annealing (SSA) technique. Polymer, vol.42, no.16, 6877-6890.

  29. Plast Rubber Process Appl Datta N. K. 237 2 1982 

  30. v. Lacroix, F, Loos, J, Schulte, K. Morphological investigations of polyethylene fibre reinforced polyethylene. Polymer, vol.40, no.4, 843-847.

  31. Mohanty, Subhra, Nando, Golok B.. Mechanical and dynamic mechanical properties of miscible blends of epoxidized natural rubber and poly(ethylene-co-acrylic acid). Polymer, vol.37, no.24, 5387-5394.

  32. Al-Hussein, M, Davies, G.R, Ward, I.M. Preparation of ultra-high modulus materials from metallocene based linear polyethylenes. Polymer, vol.42, no.8, 3679-3686.

  33. Handbook of Polyethylene Peacock A. J. 69 2000 10.1201/9781482295467 

  34. Polym Degrad Stab Aiba M. 61 1 1998 

  35. Boontongkong, Y, Cohen, R.E, Spector, M, Bellare, A. Orientation of plane strain-compressed ultra-high-molecular-weight polyethylene. Polymer, vol.39, no.25, 6391-6400.

  36. Cohen, Yachin, Rein, Dmitry M., Vaykhansky, Lev. A novel composite based on ultra-high-molecular-weight polyethylene. Composites science and technology, vol.57, no.8, 1149-1154.

  37. Polymer Science Jenkin A. D. 630 1972 

  38. Plastics Microstructure Mills N. J. 170 1986 

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