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Effect of Sc and Zr alloying on microstructure and precipitation evolution of as cast Al-B_4C metal matrix composites

机译:Sc和Zr合金化对铸造Al-B_4C金属基复合材料组织和析出行为的影响

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摘要

Additions of Sc and Zr were introduced into AI-15 vol.-%B_4C composites, and eight experimental composites with different Sc and Zr levels were prepared via a conventional cast process. Optical microscopy, SEM and TEM were applied for observing the as cast microstructures, including the interfaces between the Al matrix and the B_4C as well as the evolution of the precipitates. It was found that Sc involved the interfacial reactions with B_4C that partially consumed the Sc. On the other hand, no major Zr reaction products were found in the interfaces, and the major part of Zr remained in the matrix for precipitation strengthening. The Sc addition yielded considerable precipitation strengthening in the as cast and peak aged conditions. The combination of Sc and Zr significantly enhanced the precipitation strengthening. Nanoscale precipitates AI_3Sc and AI_3(Sc,Zr) were found in the as cast microstructure and contributed to the significant increase of matrix hardness.
机译:将Sc和Zr添加到AI-15 vol .-%B_4C复合材料中,并通过常规铸造工艺制备了八个具有不同Sc和Zr水平的实验复合材料。应用光学显微镜,SEM和TEM观察铸态组织,包括Al基体与B_4C之间的界面以及析出物的演变。发现Sc涉及与部分消耗Sc的B_4C的界面反应。另一方面,在界面上未发现主要的Zr反应产物,并且大部分Zr保留在基质中以增强析出。在铸造和峰值时效条件下,添加Sc会产生明显的沉淀强化。 Sc和Zr的组合显着增强了沉淀强化。在铸态组织中发现了纳米级的沉淀物AI_3Sc和AI_3(Sc,Zr),有助于基质硬度的显着提高。

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