首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Plastic scintillators stable for operating in wide ranges of humidity and temperature variations
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Plastic scintillators stable for operating in wide ranges of humidity and temperature variations

机译:塑料闪烁体可在各种湿度和温度变化范围内稳定运行

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摘要

To provide efficient and reproducible response to nuclear radiation, scintillating plastics should be prepared as materials of high optical transparency and homogeneity that should remain intact during the lifetime of their operation. A problem with traditionally used polyvinyltoluene (PVT) or polystyrene (PS) plastic scintillators arises from their exposure to repeated large temperature swings that cause surface and volume defects, resulting in decreased sensitivity of the detection properties. The problem can be avoided by composition modifications that enable preparation of plastics with properties that are resistant to the continuous variations in environmental conditions. This paper describes improvements in physical properties that can be achieved by the addition of crosslinkers (such as divinylbenzene, DVB) and oxygen-containing compounds or copolymers (e.g. polymethylamethacrylate, PMMA) to the traditional PVT or PS polymer matrices. Results of characterization show that the new materials can be prepared with the scintillation performance equal to that of commercial plastic scintillators, such as EJ-200.
机译:为了对核辐射提供有效且可重复的响应,应将闪烁塑料制成具有高光学透明性和均质性的材料,并应在其使用寿命内保持完整。传统上使用的聚乙烯甲苯(PVT)或聚苯乙烯(PS)塑料闪烁体的问题是由于它们暴露于反复的大幅度温度波动中而导致表面和体积缺陷,从而导致检测性能的灵敏度降低。该问题可以通过改变组成来避免,该改变使得能够制备具有抵抗环境条件的连续变化的性能的塑料。本文介绍了物理性能的改进,可以通过在传统的PVT或PS聚合物基体中添加交联剂(例如二乙烯基苯,DVB)和含氧化合物或共聚物(例如聚甲基丙烯酸甲酯,PMMA)来实现。表征结果表明,可以制备具有与商业塑料闪烁器(如EJ-200)相同的闪烁性能的新材料。

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