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Properties of zirconia-toughened-alumina prepared via powder processing and colloidal processing routes

机译:粉末加工和胶体加工路线制备的氧化锆增韧氧化铝的性能

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Alumina-zirconia composites were prepared by two routes: powder processing, and colloidal processing. Unstabilised zirconia powder was added to alumina in 5 wt%, 10 wt% and 20 wt% quantities. For the colloidal method, zirconium(IV) propoxide solution was added to alumina powder, also in 5 wt%, 10 wt% and 20 wt% quantities. Additions of glacial acetic acid were needed to form stable suspensions. Suspension stability was verified by pH measurements and sedimentation testing. For the powder processed samples Vickers hardness decreased indefinitely with increasing ZrO2 additions, but for colloidal samples the hardness at first decreased but then increased again above >10 wt% ZrO2. Elastic modulus (E) values decreased with ZrO2 additions. However, samples containing 20 wt% zirconia prepared via a colloidal method exhibited a much higher modulus than the powder processed equivalent. This was due to the homogeneous dispersion of zirconia yielding a sample which was less prone to microcracking. (C) 2008 Elsevier Inc. All rights reserved.
机译:氧化铝-氧化锆复合材料通过两种途径制备:粉末加工和胶体加工。将未稳定的氧化锆粉末以5重量%,10重量%和20重量%的量添加到氧化铝中。对于胶体方法,也以5重量%,10重量%和20重量%的量将丙氧化锆(IV)溶液添加到氧化铝粉末中。需要添加冰醋酸以形成稳定的悬浮液。悬浮液的稳定性通过pH测量和沉降测试得到验证。对于粉末处理的样品,维氏硬度会随着ZrO2添加量的增加而无限降低,但对于胶体样品,硬度首先会降低,但随后在> 10 wt%ZrO2时再次升高。弹性模量(E)值随添加ZrO2而降低。然而,通过胶体方法制备的包含20 wt%氧化锆的样品显示出比粉末加工的等效物高得多的模量。这是由于氧化锆的均匀分散所产生的样品不易发生微裂纹。 (C)2008 Elsevier Inc.保留所有权利。

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