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Surface modification of polymers and carbon-based materials by ion implantation and oxidative conversion

机译:通过离子注入和氧化转化对聚合物和碳基材料进行表面改性

摘要

This invention provides an improved process for surface modification of polymers, graphites and carbon-based composite materials, and improved surface-modified materials produced by the process. The preferred surface modification process of the present invention comprises the steps of: high dose single or multiple implantation of the substrate with energetic ions, including ions of at least one metal or semi-metal element able to form a stable, non-volatile oxide; and oxidative full or partial conversion of an upper portion of the implanted layer to a continuous, resistant oxide-enriched surface layer. The process may also comprise the additional implantation of a hardening non-metal element to participate in the formation of a glass-like surface layer or to form a carbonized, hardened sub-layer. Surface modified materials of the present invention have substantially improved resistance to erosion by atomic oxygen and to thermal cycling, as well as improved resistance to UV/air, improved surface hardness and wear resistance, tailored optical properties and altered surface energy, making them potentially useful in aerospace as well as other industries.
机译:本发明提供了用于聚合物,石墨和碳基复合材料的表面改性的改进的方法,以及通过该方法生产的改进的表面改性的材料。本发明优选的表面改性方法包括以下步骤:用高能离子高剂量单次或多次注入衬底,所述高能离子包括能够形成稳定的非挥发性氧化物的至少一种金属或半金属元素的离子;以及将注入层的上部完全或部分氧化为连续的,耐氧化物富集的表面层。该方法还可以包括另外注入硬化的非金属元素,以参与形成玻璃状表面层或形成碳化的硬化子层。本发明的表面改性材料具有显着改善的对原子氧的侵蚀和热循环的抵抗力,以及对紫外线/空气的抵抗力,改善的表面硬度和耐磨性,定制的光学性质和改变的表面能,使其潜在地有用。在航空航天以及其他行业中。

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