首页> 外文会议>International Nuclear Atlantic Conference >DEVELOPMENT OF SEALED RADIOACTIVE SOURCES IMMOBILIZED IN EPOXY RESIN FOR VERIFICATION OF DETECTORS USED IN NUCLEAR MEDICINE
【24h】

DEVELOPMENT OF SEALED RADIOACTIVE SOURCES IMMOBILIZED IN EPOXY RESIN FOR VERIFICATION OF DETECTORS USED IN NUCLEAR MEDICINE

机译:在环氧树脂中固定的密封放射源的研制,以验证核医学中使用的探测器

获取原文

摘要

The radioactive sealed sources are used in verification ionization chamber detectors, which measure the activity of radioisotopes used in several areas, such as in nuclear medicine. The measurement of the activity of radioisotopes must be made with accuracy, because it is administered to a patient. To ensure the proper functioning of the ionization chamber detectors, standardized tests are set by the International Atomic Energy Agency (IAEA) and the National Nuclear Energy Commission using sealed radioactive sources of Barium-133, Cesium-137 and Cobalt-57. The tests assess the accuracy, precision, reproducibility and linearity of response of the equipment. The focus of this work was the study and the development of these radioactive sources with standard Barium-133, Cesium-137 and Cobalt-57, using a polymer, in case commercial epoxy resin of diglycidyl ether of bisphenol A (DGEBA) and a curing agent based on modified polyamine diethylenetriamine (DETA), to immobilize the radioactive material. The polymeric matrix has the main function of fix and immobilize the radioactive contents not allowing them to leak within the technical limits required by the standards of radiological protection in the category of characteristics of a sealed source and additionally have the ability to retain the emanation of any gases that may be formed during the manufacture process and the useful life of this artifact. The manufacturing process of a sealed source standard consists of the potting, into bottle standardized geometry, in fixed volume of a quantity of a polymeric matrix within which is added and dispersed homogeneously to need and exact amount in activity of the radioactive materials standards. Accordingly, a study was conducted for the choice of epoxy resin, analyzing its characteristics and properties. Studies and tests were performed, examining the maximum solubility of the resin in water (acidic solution, simulating the conditions of radioactive solution), loss of mechanical and thermal properties, as well as the radioactive dose control for complete curing (cobalt irradiators). For this work was produced a source of barium-133, tests were conducted to determination the degree of homogeneity in the dispersion of the radioactive material in the matrix and immersion tests of sealed source produced to verify the leakage (ISO 9978) of the developed system, occurring obtaining a satisfactory result.
机译:放射性密封源用于验证电离室探测器,其测量若干区域中使用的放射性同位素的活性,例如核医学。必须以精度制备放射性同位素活性的测量,因为它被施用于患者。为了确保电离室探测器的正常运行,使用国际原子能机构(原子能机构)和国家核能委员会使用密封的放射性来源,铯-137和钴-57来设定标准化测试。测试评估设备响应的准确性,精度,再现性和线性。这项工作的重点是使用聚合物的标准钡-133,铯-137和钴-57研究和开发这些放射源,其中二苯酚A(DGEBA)的二缩水甘油醚的商业环氧树脂和固化基于改性多胺二亚乙基三胺(DETA)的剂,以固定放射性物质。聚合物基质具有固定和固定放射性含量的主要功能,无允许它们在密封源的特征类别中放射性保护标准的技术限制内泄漏,并且另外有能力保留任何散发物可以在制造过程中形成的气体和该伪影的使用寿命。密封源标准的制造过程包括灌封,进入瓶标准化几何形状,其在固定体积的一定量的聚合物基质中加入并分散在放射性物质标准的活性中的均匀性和精确的量。因此,对选择环氧树脂进行了一种研究,分析其特征和性质。进行研究和试验,检查树脂在水中的最大溶解度(酸性溶液,模拟放射性溶液条件),机械和热性能的丧失,以及完全固化的放射性剂量控制(钴辐照器)。对于这项工作产生了钡-133的来源,进行了测试,以确定放射性物质分散在产生的密封源的浸没测试中的分散​​程度,以验证发达系统的泄漏(ISO 9978) ,发生令人满意的结果。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号