铅层与抹灰砖层防辐射墙效果比较

A. S. Wibowo, E. Cahyono, R. S. Iswari, Kholik Al Amin, M. Jannah
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引用次数: 0

摘要

本文分析了放射学研究计划普尔沃克托三级文凭计划3实验室辐射屏蔽墙的x射线照射率,以找出10厘米厚的铅(2毫米)涂层隔墙和28厘米厚的灰泥砖墙的辐射屏蔽效果的差异。测量使用辐射源,即移动单元x射线机与Fluke测量仪辐射测量仪器。通过调整辐射源与辐射屏蔽墙的距离,从100厘米、150厘米和200厘米,从代表辐射屏蔽墙的5个测量点测量x射线辐射暴露率。测量结果表明,测点C对Do和d产生的辐射暴露率最高,测点A对d产生的辐射暴露率最低,在100 ~ 150 cm的距离上穿过10 cm厚(2mm)的铅涂墙后,辐射暴露率大于1 μSv/Hr。用28厘米厚的灰泥砖覆盖的墙体的辐射屏蔽墙比用10厘米厚的铅(2毫米)覆盖的隔墙更有效。要注意辐射防护方面,使用移动单元x光机时要将x射线管放置在与x射线管方向一致的地方,辐射源距离涂铅隔断辐射墙至少2米。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
COMPARISON OF THE EFFECTIVENESS OF RADIATION SHIELD WALL BETWEEN LEAD-LAYERS AND PLASTERING BRICK-LAYERS
The rate of exposure to X-ray radiation on the radiation shielding wall at the Laboratory 3 of Radiology Study Program Purwokerto Diploma Three Program has been analyzed, to find out the difference in the effectiveness of the radiation shielding wall between a 10 cm thick Lead (2 mm) coated partition and a 28 cm thick stucco brick wall. Measurements were made using a radiation source, namely a mobile unit X-ray machine with a Fluke survey meter radiation measuring instrument. Measurement of the rate of exposure to X-ray radiation is carried out by adjusting the distance of the radiation source with the radiation shield wall from 100 cm, 150 cm and 200 cm and taken from 5 measurement points that represent the radiation shield wall. The measurement results show that measurement point C produces the highest radiation exposure rate and measurement point A produces the lowest radiation exposure rate for Do and D. There is a radiation exposure rate of more than 1 μSv/Hr after passing through a 10 cm thick Lead-coated partition wall (2 mm) at a distance of 100 cm to 150 cm. Radiation shielding walls of walls covered with stucco bricks with a thickness of 28 cm were more effective than partitions covered with lead (2 mm) with a thickness of 10 cm. It is necessary to pay attention to aspects of radiation protection, the use of a mobile unit X-ray machine in placing the X-ray tube in the direction of the X-ray tube and, the radiation source distance of at least 2 meters from the lead-coated partition radiation wall.
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