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Radiation Hardening of Constructional Cement-Magnetite-Serpentinite Composite under Gamma Irradiation at Increased Dose

机译:γ射线增加剂量下建筑水泥-磁铁矿-蛇纹石复合材料的辐射硬化

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AbstractIt is shown that a constructional radiation-shielding composite material with high resistance to radiation-thermal loads can be obtained. The material was produced using a Portland cement mix, boron-containing chrysotile, magnetite filler, plasticizing additives, and metal fraction by the vibro-packing method. The content of chemically bound water was at least 1.5 wt %. Exposure to high doses of gamma radiation led to formation of monocalcium ferrite CaFe2O4with high physical and X-ray density in the cement–magnetite–serpentinite composite. Its formation resulted in radiation hardening and increased the mechanical strength of the composite up to the dose of 10 MGy. When a protective composite was exposed to γ radiation with the absorbed dose of 20 MGy, the mechanical strength of the composite was reduced by only 4–5% compared to that of the unirradiated sample.
机译:摘要 研究表明,可以得到一种对辐射热负荷具有较高抵抗力的建筑辐射屏蔽复合材料。该材料是使用波特兰水泥混合物,含硼温石棉,磁铁矿填料,增塑添加剂和金属级分通过振动填充法生产的。化学结合的水的含量为至少1.5重量%。暴露于高剂量的伽马射线会导致在水泥-磁铁矿-蛇纹石复合物中形成具有高物理和X射线密度的单钙铁氧体CaFe 2 O 4 。其形成导致辐射硬化,并提高了复合材料的机械强度,直至10 MGy的剂量。当保护性复合材料受到20 MGy吸收剂量的γ射线照射时,复合材料的机械强度与未辐照样品相比仅降低了4–5%。

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