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    题名 作者 年代 出处 被引量
1复合铸造制备稻壳灰增强AA6061铝合金及表征(英文)显示文摘稻壳灰(RHA)是一种有潜力的廉价铝基复合材料的增强颗粒。采用复合铸造方法制备不同稻壳灰含量(0,2%,4%,8%,质量分数)增强的AA6061铝合金复合材料。采用X射线衍射和扫描电镜对所制备复合材料进行表征。X射线衍射谱表明AA6061/RHA铝基复合材料中除RHA颗粒外未形成其他金属间化合物。扫描电镜图片表明RHA颗粒均匀分布在铝基体中。RHA基本分布在晶粒内部。此外,RHA颗粒与铝基体结合良好并形成清晰的界面。RHA颗粒的添加能提高铝基复合材料的显微硬度和抗拉强度。铝基复合材料的拉伸行为与其微观组织密切相关。J.ALLWYN KINGSLY GLADSTON N.MOHAMED SHERIFF I.DINAHARAN J.DAVID RAJA SELVAM 2015Transactions of Nonferrous Metals Society of China2015,25,3:2
2Effects of friction stir processing on the microstructure and superplasticity of in situ nano-ZrB_2/2024Al composite显示文摘In this study, in situ nano-ZrB_2/2024 Al composites fabricated from 2024Al–K_2ZrF_6–KBF_4 system were processed by friction stir processing(FSP) to achieve superplasticity of the composites. And the effects of particle contents(1 wt%, 3 wt%, 5 wt%), matrix grain size(micron or submicron), strain rates(5×10^(-3)s^(-1), 1×10^(-2)s^(-1), 2×10^(-2)s^(-1) and deformation temperatures(400 K, 480 K, 600 K, 700 K, 750 K) on the superplasticity of the composites were investigated. After the friction stir processing, the coarse grains of the cast composites with matrix grain size of about 80–100 μm and nano-Zr B2 reinforcement size of 30–100 nm were crushed into small grains about 1 μm in size, and the uniformity of the nano-Zr B_2 reinforcements was also improved. And under the same superplastic tensile testing condition at the temperature of 750 K and strain rate of 5×10^(-3)s^(-1), the FSP nano 3 wt%Zr B_2/2024 Al composite exhibited an superplastic elongation of 292.5%, while the elongation of the corresponding cast composite was only less than 100%. Meanwhile, the m values of the FSP composites were always higher than the cast composites, especially the FSP composites with 3 wt% particles has the m value of 0.5321 i.e., the FSP composites should had better superplastic properties than cast ones. Furthermore, the FSP composites had higher apparent deformation activation energy(Q) than that of the lattice diffusion of pure aluminium, indicating that the deformation mechanisms of the FSP composites should be grain boundary sliding mechanisms.Yutao Zhao Xizhou Kai Gang Chen Weili Lin Chunmei Wang 2016Progress in Natural Science:Materials International2016,26,1:2
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