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首页> 外文期刊>Journal of Materials Processing Technology >Surface treatment of Al{sub}18B{sub}4O{sub}33 whisker and development of Al{sub}18B{sub}4O{sub}33/ZK60 magnesium alloy matrix composite
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Surface treatment of Al{sub}18B{sub}4O{sub}33 whisker and development of Al{sub}18B{sub}4O{sub}33/ZK60 magnesium alloy matrix composite

机译:Al {sub} 18B {sub} 4O {sub} 33晶须的表面处理和Al {sub} 18B {sub} 4O {sub} 33 / ZK60镁合金基复合材料的开发

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In order to improve high temperature properties and good aging behavior of ZK60 (Mg-6%Zn-0.6%Zr) magnesium alloy moreover, Al{sub}18B{sub}4O{sub}33 whisker reinforced composites were developed. A{sub}B{sub}4O{sub}33 whisker reacts with ZK60 alloy thermodynamically. In order to suppress the interfacial reaction between Al{sub}18B{sub}4O{sub}33 and molten state ZK60 matrix, as-received whiskers were surface treated chemically. Whisker surface in preform was coated in vacuum by pure magnesium vapor, and then heat-treated at atmosphere. By the chemical reaction of whisker, MgAl{sub}2O{sub}4 layer with 10-20 nm in thickness was produced on the whisker and covered with whisker completely. Then, Al{sub}B{sub}4O{sub}33/ZK60 magnesium alloy matrix composite was fabricated by squeeze casting process. As the preform with surface treated whisker is stable for molten ZK60 alloy, the interfacial reaction did not occur during fabrication process and heat treatment after fabrication. The composites have good aging behavior because of no reaction in the interface. Although the precipitation tended to occur around interface preferentially during aging, but the obvious age hardening behavior were observed.
机译:为了改善ZK60(Mg-6%Zn-0.6%Zr)镁合金的高温性能和良好的时效性能,开发了Al {sub} 18B {sub} 4O {sub} 33晶须增强复合材料。 A {sub} B {sub} 4O {sub} 33晶须与ZK60合金发生热力学反应。为了抑制Al {sub} 18B {sub} 4O {sub} 33与熔融态ZK60基体之间的界面反应,对收到的晶须进行了化学处理。将预成型坯中的晶须表面在真空中用纯镁蒸气涂覆,然后在大气中进行热处理。通过晶须的化学反应,在晶须上产生了厚度为10-20 nm的MgAl {sub} 2O {sub} 4层,并用晶须完全覆盖。然后,通过挤压铸造工艺制备了Al {sub} B {sub} 4O {sub} 33 / ZK60镁合金基复合材料。由于经表面处理的晶须的预成型坯对于熔融ZK60合金是稳定的,因此在制造过程和制造后的热处理过程中不会发生界面反应。由于界面中没有反应,因此复合材料具有良好的老化性能。尽管在时效过程中析出倾向于优先发生在界面周围,但是观察到明显的时效硬化行为。

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