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Colloidal processing of fully stabilized zirconia laminates comprising graphene oxide-enriched layers

机译:包含氧化石墨烯富集层的完全稳定的氧化锆层压板的胶体加工

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摘要

Multilayer materials have demonstrated to provide an efficient mechanism for toughening by deflection of a propagating crack by weak interlayers. Therefore, the aim of this work is to study the colloidal processing of 8 mol% yttria stabilized zirconia (8YSZ) based laminates by intercalating thin layers of graphene enriched with 8YSZ, and to evaluate the advantages of such multilayered structure in the propagation of cracks induced by indentation. Green tapes of 8YSZ and graphene-oxide with YSZ were obtained by aqueous tape casting and sintered in one-step by spark plasma sintering at 1400 degrees C. Microindentation results showed that the indentation cracks propagate within the horizontal direction within the ceramic layer, but in the cross-sectional direction the presence of the GO-rich layers stops the cracks without deflection or bifurcation. The hardness and elastic modulus values were higher than 17.6 GPa and 230 GPa, respectively, and similar for all layers. (C) 2016 Elsevier Ltd. All rights reserved.
机译:事实证明,多层材料可提供一种有效的机制,可通过弱夹层偏转传播的裂纹来增韧。因此,这项工作的目的是通过插入富含8YSZ的石墨烯薄层,研究8摩尔%氧化钇稳定的氧化锆(8YSZ)基层压材料的胶体加工,并评估这种多层结构在诱导裂纹扩展方面的优势。通过缩进。通过水流延流延法获得8YSZ和YSZ氧化石墨烯的生坯带,并在1400摄氏度下通过火花等离子体烧结一步烧结。微压痕结果表明,压痕裂纹在陶瓷层内沿水平方向传播,但在在横截面方向上,富GO层的存在阻止了裂纹而没有挠曲或分叉。硬度和弹性模量值分别高于17.6 GPa和230 GPa,并且所有层都相似。 (C)2016 Elsevier Ltd.保留所有权利。

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