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Glass matrix/pyrochlore phase composites for nuclear wastes encapsulation

机译:用于核废料封装的玻璃基质/烧绿石相复合材料

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Novel composite materials have been developed as alternative forms to immobilise nuclear solid waste. These composites are made of a lead-containing glass matrix, into which particles of lanthanum zirconate pyrochlore are embedded in 10 and 30 vol% concentrations. The fabrication involves powder mixing, pressing and pressureless sintering. The processing conditions were investigated with the aim of achieving the highest possible density. The best composites obtained showed a good distribution of the lanthanum zirconate particles in the glass matrix, strong bonding of the particles to the matrix and relatively low porosity (< 10%). The best sintering temperature was 600&DEG;C for the 10 vol% composite and 650&DEG;C for 30 vol%. Sintering was carried out for an hour and a heating rate of 10&DEG;C . min(-1) was shown to be superior to a heating rate of 2&DEG;C . min(-1). At the relatively low sintering temperatures used, the pyrochlore crystalline structure of lanthanum zirconate, relevant for containment of radioactive nuclei, was stable. (C) 2003 Kluwer Academic Publishers. [References: 31]
机译:已经开发了新型复合材料作为固定核固体废物的替代形式。这些复合材料由含铅的玻璃基体制成,其中锆石酸镧镧系烧绿石颗粒以10%和30%(体积)的浓度嵌入其中。制造涉及粉末混合,压制和无压烧结。为了达到尽可能高的密度,对加工条件进行了研究。获得的最佳复合材料显示锆酸镧镧颗粒在玻璃基质中分布良好,颗粒与基质的牢固结合以及相对较低的孔隙率(<10%)。最佳烧结温度对于10%(体积)的复合材料是600°C,而对于30%(体积)的650°C。烧结进行一个小时,加热速率为10℃。证明min(-1)优于2°C的加热速率。 min(-1)。在所使用的相对较低的烧结温度下,与抑制放射性原子核有关的锆酸镧的烧绿石晶体结构是稳定的。 (C)2003 Kluwer学术出版社。 [参考:31]

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