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Radiation shielding of ultra-high-performance concrete with silica sand, amang and lead glass

机译:硅砂,阿曼和铅玻璃对超高性能混凝土的辐射防护

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Barite in Malaysia is limited; therefore, a locally available alternative source must be identified to meet the requirements of high-density concrete for radiation shielding. We selected steel fibre-reinforced ultra-high-performance concrete (UHPC) samples with different inert materials, namely, silica sand, amang and lead glass, as the study object and tested them experimentally for their mechanical properties and radiation absorption capabilities. The UHPC samples showed compressive strength values exceeding 155 MPa at 28 days. Meanwhile, UHPC with lead glass underwent decreased of compression strength in a long period, and UHPC with amang caused an issue related to radiological safety despite that it was effective as a gamma-ray shield. Thus, the use of UHPC with silica sand is practical for constructing nuclear facilities because of the abundance and cost-effectiveness of the involved materials. (C) 2018 Elsevier Ltd. All rights reserved.
机译:马来西亚的重晶石有限;因此,必须确定当地可用的替代源,以满足辐射防护用高密度混凝土的要求。我们选择了具有不同惰性材料的钢纤维增强超高性能混凝土(UHPC)样品,即硅砂,阿曼和铅玻璃作为研究对象,并对它们的力学性能和辐射吸收能力进行了实验测试。 UHPC样品在28天时显示出超过155 MPa的抗压强度值。同时,带有铅玻璃的UHPC长期以来经历了抗压强度的降低,并且带有amang的UHPC尽管作为伽马射线防护罩是有效的,但仍引起了与放射安全有关的问题。因此,由于所涉及材料的丰富性和成本效益,将UHPC与硅砂一起用于建造核设施是切实可行的。 (C)2018 Elsevier Ltd.保留所有权利。

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