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Effects of flake-shape and content of nano-mullite on mechanical properties and fracture process of corundum composite ceramics

机译:纳米摩托岩鳞片形状与含量对刚玉复合陶瓷力学性能和断裂过程的影响

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摘要

Coal gangue is used to prepare flake nano-mullite with a molten salt method. In order to increase the utilization value, corundum composite ceramics were prepared from the nanomullite and alumina. The effect of particle size of the raw material size and the content of mullite on mechanical properties of the corundum composite ceramics was studied. It is found that the mullite with appropriate sizes can be filled in between the corundum grains, thus increasing the density of the samples. The mechanical properties were enhanced due to the variation in the crack propagation mode. The optimized sample exhibited flexural strength and fracture toughness of 263.7 MPa and 5.0 MPa·m1/2, respectively. Griffith fracture theory analysis results indicated that the critical crack size reached 173.9 μm and the fracture energy was 127.6 J/m2. Coal gangue has realized deep resource utilization, and the mechanical properties of composite ceramics are higher than alumina ceramics prepared under the same conditions. Flake nanomullite contributes to mechanical properties.
机译:煤矸石用于制备具有熔盐法的剥落纳米莫来石。为了增加利用率,从纳米硫酸盐和氧化铝制备鲤鱼复合陶瓷。研究了原料尺寸的粒度和莫来石含量对刚玉复合陶瓷的力学性能的影响。发现具有适当尺寸的莫来石可以在刚玉颗粒之间填充,从而增加样品的密度。由于裂缝传播模式的变化,因此提高了机械性能。优化的样品分别显示出弯曲强度和263.7MPa和5.0MPa·M1 / 2的断裂韧性。 Griffith裂缝理论分析结果表明,临界裂纹尺寸达到173.9μm,裂缝能量为127.6J / m 2。煤矸石实现了深度资源利用率,复合陶瓷的力学性能高于在相同条件下制备的氧化铝陶瓷。薄片纳米陨石有助于机械性能。

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