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Mechanical and Thermal Neutron Attenuation Properties of Concrete Reinforced with Low-Dose Gamma Irradiated PETE Fibers and Sodium Borate

机译:用低剂量γ辐照纤维和硼酸钠加固混凝土的机械和热中子衰减性能

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This research investigated the mechanical and thermal neutron attenuation properties of concrete reinforced with low-dose gamma irradiated polyethylene terephthalate (PETE) fibers. Low dose (20 – 60 kGy) gamma irradiated PETE fibers of 1.3 and 25 denier size were uniformly mixed with concrete at 0.1%, 0.2%, and 0.3% volume fraction. The results showed that the fiber reinforced concrete (FRC) having 25 denier fibers provided higher compressive strength, flexural strength, and toughness than FRC with 1.3 denier fibers. Moreover, addition of PETE fibers in the concrete enhanced thermal neutron attenuation; however, both fibers exhibited no significant difference in thermal neutron attenuation ability. In addition, this study investigated the effects of adding sodium borate, a boron-containing compound, in concrete mixed with PETE at various proportions. It was found that when sodium borate powder was added, the compressive strength of the concrete decreased, whereas the thermal neutron attenuation ability significantly increased with respect to sodium borate content.
机译:本研究研究了用低剂量γ照射聚对苯二甲酸乙二醇酯(PETE)纤维增强混凝土的机械和热中子衰减性能。低剂量(20-60kGy)γ辐照纤维为1.3和25旦尼尔尺寸,均匀地与混凝土均匀混合,0.1%,0.2%和0.3%体积分数。结果表明,纤维增强混凝土(FRC)具有25个旦尼尔纤维的抗压强度,抗压强度和韧性高于FRC,具有1.3旦尼尔纤维。此外,在混凝土增强的热中子衰减中添加了Pete纤维;然而,两根纤维都没有显着差异,热中子衰减能力差异。此外,本研究研究了加入硼酸钠,含硼化合物,在与各种比例混合的混凝土中加入硼化合物的作用。结果发现,当加入硼酸钠粉末时,混凝土的抗压强度降低,而热中子衰减能力相对于硼酸钠含量显着增加。

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