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The Effect of High-Energy Ball Milling on Sintering and the Mechanical Properties of Al_2O_3

机译:高能球磨对Al_2O_3烧结及力学性能的影响

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摘要

The effect of high-energy ball milling on the sintering, microstructure and mechanical properties of AI_2O_3 were investigated. The temperature at the beginning of consolidation decreased with high-energy ball milling because the driving force for sintering and the contact points of the powders for atomic diffusion increased. The mechanical properties (hardness and fracture toughness) and the relative density of Al_2O_3 sintered from high-energy ball milled powder were higher than those of Al_2O_3, sintered from unmilled powder. Nanocrystalline materials have received much attention as advanced engineering materials with improved physical and mechanical properties. As nanomaterials possess high strength, high hardness, excellent ductility and toughness, undoubtedly, more attention has been paid to the application of nanomaterials. A highly dense nanostructured Al_2O_3 was produced using high-energy ball milled powder with simultaneous application of 80 MPa pressure and a pulsed output current of 2800 A within 2 min.
机译:研究了高能球磨对Al_2O_3的烧结,组织和力学性能的影响。高能球磨使固结开始时的温度下降,这是因为烧结的驱动力和用于原子扩散的粉末的接触点增加了。高能球磨粉烧结的Al_2O_3的力学性能(硬度和断裂韧性)和相对密度均高于未磨粉烧结的Al_2O_3。纳米晶材料作为具有改善的物理和机械性能的高级工程材料受到了广泛的关注。由于纳米材料具有高强度,高硬度,优异的延展性和韧性,因此毫无疑问,人们对纳米材料的应用给予了更多的关注。使用高能球磨粉末,在2分钟内同时施加80 MPa的压力和2800 A的脉冲输出电流,可以生产出高密度的纳米结构Al_2O_3。

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