Thermal effects in radiation processing

Z.P. Zagórski
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引用次数: 6

Abstract

The balance of ionizing radiation energy incident on an object being processed is discussed in terms of energy losses, influencing the amount really absorbed. To obtain the amount of heat produced, the absorbed energy is corrected for the change in internal energy of the system and for the heat effect of secondary reactions developing after the initiation. The temperature of a processed object results from the heat evolved and from the specific heat of the material comprising the object. The cp of most materials is usually much lower than that of aqueous systems and therefore temperatures after irradiation are higher. The role of low specific heat in radiation processing at cryogenic conditions is stressed. Adiabatic conditions of accelerator irradiation are contrasted with the steady state thermal conditions prevailing in large gamma sources. Among specific questions discussed in the last part of the paper are: intermediate and final temperature of composite materials, measurement of real thermal effects in situ, neutralization of undesired warming experienced during radiation processing, processing at temperatures other than ambient and administration of very high doses of radiation.

辐射加工中的热效应
从影响实际吸收量的能量损失的角度讨论了入射到被加工物体上的电离辐射能的平衡。为了得到产生的热量,吸收的能量要根据系统内能的变化和引发后发生的二次反应的热效应进行校正。加工过的物体的温度是由产生的热量和构成该物体的材料的比热产生的。大多数材料的cp通常比水系统的cp低得多,因此辐照后的温度较高。强调了低温条件下低比热在辐射加工中的作用。将加速器辐照的绝热条件与大伽马源中普遍存在的稳态热条件进行了对比。本文最后一部分讨论的具体问题包括:复合材料的中间和最终温度、现场实际热效应的测量、辐射加工过程中不期望的升温的中和、非环境温度下的加工和高剂量辐射的管理。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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