首页> 外文期刊>Journal of instrumentation: an IOP and SISSA journal >Radiation damage and recovery properties of common plastics PEN (Polyethylene Naphthalate) and PET (Polyethylene Terephthalate) using a ~(137)Cs gamma ray source up to 1.4 Mrad and 14 Mrad
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Radiation damage and recovery properties of common plastics PEN (Polyethylene Naphthalate) and PET (Polyethylene Terephthalate) using a ~(137)Cs gamma ray source up to 1.4 Mrad and 14 Mrad

机译:使用〜(137)Csγ射线源(最高1.4 Mrad和14 Mrad)的普通塑料PEN(聚萘二甲酸乙二醇酯)和PET(聚对苯二甲酸乙二酯)的辐射损伤和恢复特性

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摘要

Polyethylene naphthalate (PEN) and polyethylene teraphthalate (PET) are cheap and common polyester plastics used throughout the world in the manufacturing of bottled drinks, containers for foodstuffs, and fibers used in clothing. These plastics are also known organic scintillators with very good scintillation properties. As particle physics experiments increase in energy and particle flux density, so does radiation exposure to detector materials. It is therefore important that scintillators be tested for radiation tolerance at these generally unheard of doses. We tested samples of PEN and PET using laser stimulated emission on separate tiles exposed to 1 Mrad and 10 Mrad gamma rays with a ~(137)Cs source. PEN exposed to 1.4 Mrad and 14 Mrad emit 71.4% and 46.7% of the light of an undamaged tile, respectively, and maximally recover to 85.9% and 79.5% after 5 and 9 days, respectively. PET exposed to 1.4 Mrad and 14 Mrad emit 35.0% and 12.2% light, respectively, and maximally recover to 93.5% and 80.0% after 22 and 60 days, respectively.
机译:聚萘二甲酸乙二酯(PEN)和聚对苯二甲酸乙二酯(PET)是便宜的普通聚酯塑料,在世界范围内用于制造瓶装饮料,食品容器和服装纤维。这些塑料也被称为有机闪烁体,具有非常好的闪烁性能。随着粒子物理实验的能量和粒子通量密度增加,暴露于检测器材料的辐射也随之增加。因此,重要的是测试闪烁体在这些通常闻所未闻的剂量下的辐射耐受性。我们在暴露于1 Mrad和10 Mradγ射线且具有〜(137)Cs源的单独瓷砖上使用激光激发发射测试了PEN和PET样品。暴露于1.4 Mrad和14 Mrad的PEN分别发射未损坏的瓷砖的71.4%和46.7%的光,分别在5天和9天后分别恢复到85.9%和79.5%。暴露于1.4 Mrad和14 Mrad的PET分别发出35.0%和12.2%的光,分别在22天和60天后最大恢复到93.5%和80.0%。

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