首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Fabrication and morphology control of high strength lightweight mullite whisker network
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Fabrication and morphology control of high strength lightweight mullite whisker network

机译:高强度轻质莫来石晶须网络的制造与形态控制

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AbstractThis work presents a simple approach to produce controlled mullite whisker network structure. Mullite whisker networks were facilely prepared by direct sintering of coal fly ash, bauxite and kaolin in BaCO3-potash feldspar-pyrolusite-talcum catalytic system at 1350?°C. Controlled mullite whiskers were obtained with about 200?nm in diameter and 3?μm in length by controlling the rate of Al2O3diffusion through feldspar addition in catalytic system. Morphology evolution process and growth characteristics of mullite whisker networks were further investigated using scanning electronic microscope (SEM) and their possible fabrication mechanism were also investigated. The optimum mullite whisker network structural material exhibits some attractive properties such as high strength (199.89?MPa), low density (1.51?g?cm?3) and low acid solubility (2.63?wt%). These results demonstrate an effective method to prepare large-scale mullite whisker network with potential applications in producing ceramic proppants.Graphical abstractDisplay OmittedHighlights?Mullite whisker networks were facilely prepared by direct sintering of coal fly ash.?Morphology evolution process and growth characteristics of mullite whisker networks were significantly affected by additive.?High strength low density ceramic proppants with mullite whisker network structure were sintered at1350?°C.?This mullite-based proppant has great potential for wide use in oil and gas production.]]>
机译:<![CDATA [ 抽象 这项工作提出一种简单的方法,以产生受控的莫来石晶须的网络结构。莫来石晶须网络是由轻便粉煤灰,矾土和高岭土的直接烧结制备的BaCO 3 ?-potash长石软锰矿-滑石粉催化体系在1350℃下。与获得控制莫来石晶须约200直径nm和3通过控制Al的速率在长度微米<?CE:INF LOC = “POST”> 2 0 3 通过长石此外在催化系统扩散。形态演变过程和莫来石晶须的网络使用扫描电子显微镜(SEM)和它们可能的制造机制进一步研究的生长特性进行了研究。最佳莫来石晶须的网络结构材料表现出一些有吸引力的性能,例如高强度(199.89兆帕?),低密度(1.51克厘米?3?)和低酸溶解度(2.63?重量%)。这些结果证明一种有效的方法来生产陶瓷支撑剂制备大规模莫来石晶须的网络与潜在应用 图形抽象 显示中省略 亮点 莫来石晶须的网络是轻便的粉煤灰直接烧结技术制备 形态演变过程和莫来石晶须的网络的生长特性显著通过添加剂的影响 高强度低密度陶瓷支撑剂与莫来石晶须的网络结构是烧结at1350?°C。 <?CE:对ID = “p0025” 视图=”所有“>这种基于莫来石,支撑剂在石油和天然气生产广泛应用的巨大潜力 ]]>

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