Micro-fabrication and surface modification of fluorinated polymers by means of synchrotron radiation
Radiation Modification of Polymeric Materials|更新时间:2023-03-30
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Micro-fabrication and surface modification of fluorinated polymers by means of synchrotron radiation
Micro-fabrication and surface modification of fluorinated polymers by means of synchrotron radiation
Journal of Radiation Research and Radiation Processing2005年23卷第2期 页码:105
作者机构:
1.Advanced Research Institute for Science and Engineering, Waseda University
2.Sumitomo Heavy Industries, Ltd.
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Micro-fabrication and surface modification of fluorinated polymers by means of synchrotron radiation[J]. Journal of Radiation Research and Radiation Processing, 2005,23(2):105.
Toshiyuki Hyuga, Masakazu Washio, Akihiro Oshima, et al. Micro-fabrication and surface modification of fluorinated polymers by means of synchrotron radiation[J]. 辐射研究与辐射工艺学报, 2005,23(2):105.
Micro-fabrication and surface modification of fluorinated polymers by means of synchrotron radiation[J]. Journal of Radiation Research and Radiation Processing, 2005,23(2):105.DOI:
Toshiyuki Hyuga, Masakazu Washio, Akihiro Oshima, et al. Micro-fabrication and surface modification of fluorinated polymers by means of synchrotron radiation[J]. 辐射研究与辐射工艺学报, 2005,23(2):105.DOI:
Micro-fabrication and surface modification of fluorinated polymers by means of synchrotron radiation
It is well-known that fluorinated polymers are very unique polymer materials because of their distinguished properties, such as high electrical resistivities, chemical and thermal stabilities, bio−compatibilities, etc. However, polytetrafluoroethylene (PTFE) is degraded by ionizing radiation with a low dose through main chain scission, and the mechanical properties are seriously deteriorated. In early 1990’s, it was found that irradiation for PTFE at elevating temperature enhances recombination of radicals induced by ionizing radiation. Thus, crosslinked PTFE had been obtained,[1,2],. The crosslinked PTFE shows remarkable improvements for the radiation durability and mechanical properties, etc.