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Recent developments in the application of electron accelerators for polymer processing

机译:电子促进剂在聚合物加工中的应用新进展

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摘要

There are now over 1700 high current, electron beam (EB) accelerators being used world-wide in industrial applications, most of which involve polymer processing. In contrast to the use of heat, which transfers only about 5-10% of input energy into energy useful for materials modification, radiation processing is very energy efficient, with 60% or more of the input energy to an accelerator being available for affecting materials. Historic markets, such as the crosslinking of wire and cable jacketing, of heat shrinkable tubings and films, of partial crosslinking of tire components and of low-energy EB to cure or dry inks and coatings remain strong. Accelerator manufacturers have made equipment more affordable by down-sizing units while maintaining high beam currents. Very powerful accelerators with 700 kW output have made X-ray conversion a practical alternative to the historic use of radioisotopes, mainly cobalt-60, for applications as medical device sterilization. New EB end-uses are emerging, such as the development of nano-composites and nano-gels and the use of EB processing to facilitate biofuel production. These present opportunities for future research and development.
机译:现在,全世界在工业应用中使用了超过1700种大电流电子束(EB)加速器,其中大多数涉及聚合物加工。与仅将约5-10%的输入能量转换成可用于材料改性的能量的热利用相反,辐射处理的能源效率很高,加速剂的60%或更多的输入能量可用于影响材料。历史悠久的市场,例如电线和电缆护套的交联,热缩管和薄膜的交联,轮胎组件的部分交联以及用于固化或干燥油墨和涂料的低能EB仍然很强劲。加速器制造商通过减小设备尺寸并同时保持高束流,使设备更便宜。功率高达700 kW的功能强大的加速器使X射线转换成为放射性同位素(主要是钴60)作为医疗器械灭菌的历史性使用的实用替代品。新兴的EB最终用途正在出现,例如纳米复合材料和纳米凝胶的开发以及使用EB加工促进生物燃料生产的用途。这些为将来的研发提供了机会。

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