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Thermomechanical Analysis of Fiber-Bentonite-Based Mixtures as Buffer Material in an Engineered Nuclear Barrier

机译:基于纤维 - 膨润土的混合物作为工程核屏障中的缓冲材料的热机械分析

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摘要

Buffer/backfill material is an important part of engineered barriers in deep geological repositories of high-level radioactive waste (HLRW). A good buffer material not only possesses good heat conductivity, expansion, and sealing characteristics, but also exhibits enough strength. Its thermomechanical performance can significantly influence the safety and stability of a HLRW repository. Polypropylene fibers were mixed with bentonite-based mixtures (bentonite-sand-graphite) to form a buffer material with high strength, good heat dissipation capacity, and strong isolation capacities. The effects of fiber content, fiber length, and sand particle size on the shear strength, swelling pressure, and thermal conductivity of fiber-bentonite-based (BSGF) mixtures were analyzed under given graphite and sand contents. Detailed analyses of the shear, expansion, and heat transfer mechanisms of BSGF mixtures were performed to understand the behavior. The results indicated that the strength of BSGF material improved significantly with the addition of fiber content, whereas swelling potential and thermal conductivity were reduced. With an increase in sand particle size, cohesion and maximum swelling pressure decreased, whereas internal friction angle and thermal conductivity increased. The optimum fiber content, fiber length, and sand particle size were determined based on the thermomechanical performance of BSGF mixtures. These findings help in the field application of buffer materials with different fiber contents, fiber lengths, and sand particle sizes.
机译:缓冲器/回填材料是高级放射性废物(HLRW)深层地质储存库中工程障碍的重要组成部分。良好的缓冲材料不仅具有良好的导热性,膨胀和密封特性,而且还具有足够的强度。其热机械性能可以显着影响HLRW储存库的安全性和稳定性。将聚丙烯纤维与基于膨润土的混合物(膨润土 - 砂石墨)混合,形成具有高强度,散热能力和强的隔离能力的缓冲材料。在给定石墨和砂内容下,分析了纤维含量,纤维长度和砂粒径对纤维 - 膨润土(BSGF)混合物的剪切强度,溶胀压力和导热率的影响。进行BSGF混合物的剪切,膨胀和传热机制的详细分析,以了解行为。结果表明,随着纤维含量的添加,BSGF材料的强度显着改善,而溶胀电位和导热率降低。随着砂粒尺寸的增加,内聚力和最大溶胀压力降低,而内部摩擦角和导热率增加。基于BSGF混合物的热机械性能来确定最佳纤维含量,纤维长度和砂粒度。这些发现有助于具有不同纤维内容物,纤维长度和砂粒径的缓冲材料的现场应用。

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