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Preparation of Li4TiO4-Li2TiO3 core-shell ceramic pebbles with thick shells and high strength through an improved granulation method

机译:通过改进的造粒方法制备Li4TiO4-Li2TiO3核 - 壳陶瓷卵石,厚度高强度

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The instability of Li4TiO4 to carbon dioxide (CO2) and moisture (H2O) was considered to be the main obstacle to its practical application as a tritium breeding material. Using Li2TiO3 ceramic coating as a physical barrier wrapped on the surface of Li4TiO4 pebbles was still considered to be the optimal solution. At present, increasing the thickness and strength of the Li2TiO3 coating to increase the service life of this core-shell pebble has become an urgent problem to be solved. In this study, we successfully wrapped a thick and uniform Li2TiO3 coating on the Li4TiO4 pebble by an optimized granulation method assisted only by polyvinylpyrrolidone (PVP). The Li4TiO4-Li2TiO3 core-shell pebbles have high shell thickness (similar to 370 mu m), relatively high wall thickness uniformity (78.86 3.07%) and good sphericity (90.72 +/- 1.88%) with a crush load of 47.73 +/- 1.49 N. It was demonstrated that PVP not only plays the role of bridge bonding between powders but also serves as a template to induce powder to be assembled layer by layer to form a uniform core-shell structure. (C) 2020 Elsevier B.V. All rights reserved.
机译:Li4TiO4对二氧化碳(CO2)和水分(H2O)的不稳定性被认为是其作为氚育种材料实际应用的主要障碍。使用Li2TiO3陶瓷涂层作为物理屏障包裹在Li4TiO4卵石表面仍然被认为是最佳解决方案。目前,增加Li2TiO3涂层的厚度和强度以提高这种核壳卵石的使用寿命已成为亟待解决的问题。在这项研究中,我们通过优化造粒方法,仅在聚乙烯吡咯烷酮(PVP)的辅助下,成功地在Li4TiO4卵石上包裹了一层厚而均匀的Li2TiO3涂层。Li4TiO4-Li2TiO3核壳卵石具有较高的壳厚(类似于370μm),相对较高的壁厚均匀性(78.86 3.07%)和良好的球形度(90.72+/-1.88%),压碎载荷为47.73+/-1.49 N。证明PVP不仅起到粉末之间桥接的作用,而且还起到模板作用,促使粉末逐层组装,形成均匀的核壳结构。(C) 2020爱思唯尔B.V.版权所有。

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