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Mullite whisker network reinforced ceramic with high strength and lightweight

机译:莫来石晶须网络加强了陶瓷,具有高强度和轻质

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High strength lightweight mullite whisker network reinforced ceramic materials was successfully prepared by firing a bauxite - kaolin - coal fly ash mixture with additions of varying mixtures of feldspar talcum - BaCO3 - pyrolusite. The mullite whisker network exhibits a unique architecture in which thin mullite crystals layers with anisotropic properties and well controlled crystal size were interweaved with one another. The effects of pyrolusite content on morphologies and properties of resultant ceramic materials were investigated. The phase compositions and microstructures of several samples were investigated by X-ray powder diffraction (XRD) and scanning electron microscopy (SEM). The flexural strength and acid solubility of ceramic materials as functions of sintering temperature were systematically investigated by measuring the flexural strength and acid solubility at different sintering temperature, respectively. The resulting mullite whisker network structure ceramic materials showed optimum performance at sintering temperature around 1390 degrees C when the content of pyrolusite equals to 6 wt%, such as high strength (190.10 MPa), low density (1.48 g cm(-3)) and low acid solubility (2.55 wt%). The approach opens new opportunities for the sintered ceramic as a proppant material since the ceramic system displays low acid solubility and good flexural strength. (C) 2017 Elsevier B.V. All rights reserved.
机译:通过加入铝土矿 - 高岭土 - 煤粉粉煤灰混合物成功制备了高强度轻质莫来石晶须网络增强陶瓷材料。添加了不同的长石滑石 - Baco3 - Pyrolusite的不同混合物。莫来石晶须网络呈现出具有各向异性特性和良好控制的晶体尺寸的薄莫来石晶体层彼此相互互相互相互相。研究了吡咯岩含量对所得陶瓷材料形态和性质的影响。通过X射线粉末衍射(XRD)和扫描电子显微镜(SEM)研究了几种样品的相组合物和微观结构。通过测量不同烧结温度的抗弯强和酸溶解度,系统地研究了陶瓷材料作为烧结温度的函数的弯曲强度和酸溶解度。得到的莫尔石晶须网络结构陶瓷材料在烧结温度下显示出约1390℃的最佳性能,当吡咯岩含量等于6wt%,例如高强度(190.10mPa),低密度(1.48g cm(-3))和低酸溶解度(2.55wt%)。该方法为烧结陶瓷作为支撑剂材料开辟了新的机会,因为陶瓷系统显示出低酸溶解度和良好的弯曲强度。 (c)2017年Elsevier B.V.保留所有权利。

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