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Studies on radiation shielding properties of newly developed high-density concrete for advanced radiotherapy facilities

机译:新开发的高密度混凝土在先进放射治疗设施中的辐射屏蔽性能研究

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摘要

The linear attenuation coefficients and tenth-value layers are determined experimentally for the newly developed Cement-based high-density Concrete and Fly-Ash-based Geopolymer high-density Concrete using Red-Mud-based synthetic aggregate made up from industrial waste. Linear attenuation coefficients were determined in narrow and broad beam conditions for five megavoltage X-ray photon beam energies, i.e. 6, 10, 15 MV, and 6 and 10 MV-FFF generated by Varian TrueBeam medical linear accelerator. These materials are found to be more effective in radiation shielding when compared with ordinary concrete and hematite ore-based high-density concrete making it a useful construction material for radiotherapy accelerator vaults. Similar values of linear attenuation coefficients are observed for all the above-mentioned X-ray beam energies when cement is replaced with fly-ash in ordinary concrete, hematite-based high-density concrete and red-mud-based high-density concrete, making it a good eco-friendly alternative of cement and useful for the construction of radiotherapy vaults.
机译:以工业废料为原料,利用赤泥基合成骨料,通过实验确定了新开发的水泥基高密度混凝土和粉煤灰基地聚物高密度混凝土的线性衰减系数和十分值层。在窄光束和宽光束条件下,确定了五兆压 X 射线光子束能量的线性衰减系数,即瓦里安 TrueBeam 医用直线加速器产生的 6、10、15 MV 以及 6 和 10 MV-FFF。与普通混凝土和赤铁矿基高密度混凝土相比,这些材料在辐射屏蔽方面更有效,使其成为放射治疗加速器拱顶的有用建筑材料。在普通混凝土、赤铁矿基高密度混凝土和赤泥基高密度混凝土中,当水泥代替粉煤灰时,上述所有X射线束能量的线性衰减系数值都相似,使其成为水泥的良好环保替代品,可用于放射治疗穹顶的建造。

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