首页|纳米TiB2颗粒和Al3Zr粒子对Al-Zn-Mg-Cu基材料显微组织和力学性能的影响

纳米TiB2颗粒和Al3Zr粒子对Al-Zn-Mg-Cu基材料显微组织和力学性能的影响

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采用多尺度显微组织表征技术研究TiB2和Al3Zr对热挤压Al-Zn-Mg-Cu基材料的显微组织、时效响应和力学性能的影响.结果表明,添加适量TiB2颗粒在凝固过程中能有效细化晶粒,挤压过程中能促进动态再结晶,固溶过程中能有效抑制晶粒长大.同时,与无Zr合金相比,Zr元素的添加在凝固过程在对晶粒细化无明显影响,但可以有效抑制再结晶和晶粒长大.TiB2颗粒能加快材料的时效动力学并且提高峰时效硬度;Zr元素也能提高材料的峰时效硬度,但对时效动力学无明显影响.最后,分析不同材料的淬火敏感性、弹性模量和拉伸性能,并研究此类材料显微组织与力学性能之间的关系及其强化机理.
Effects of nano-sized TiB2 particles and Al3Zr dispersoids on microstructure and mechanical properties of Al-Zn-Mg-Cu based materials
The effects of TiB2 and Zr on the microstructure, aging response and mechanical properties of hot-extruded Al-Zn-Mg-Cu based materials were investigated and compared by multi-scale microstructure characterization techniques. The results showed that proper addition of TiB2 particles could refine grain size during solidification, promote dynamic recrystallization during extrusion, and inhibit grain growth during solution treatment. Meanwhile, Zr addition had minor influence on the grain refinement during solidification, but could effectively suppress recrystallization and grain growth compared with the Zr-free alloy. Furthermore, the TiB2 addition could simultaneously enhance the aging kinetics and peak-aged hardness of the materials. Comparatively, Zr addition could also improve the peak-aged hardness with minor effect on the aging kinetics of the materials. Finally, the quench sensitivity, elastic modulus and tensile properties of the materials were compared and studied. Specifically, the relationship between the microstructure and mechanical properties, and the strengthening mechanisms were discussed in detail.

TiB2Al3Zrmicrostructureaging kineticsmechanical properties

肖宏宇、李宇罡、耿继伟、李红萍、汪明亮、陈东、李铸国、王浩伟

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上海交通大学 金属基复合材料国家重点实验室,上海 200240

上海交通大学 材料科学与工程学院,上海 200240

安徽省铝基复合材料工程研究中心,淮北 235000

上海飞机设计研究院,上海 201203

上海交通大学 上海市激光制造与材料改性重点实验室,上海 200240

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TiB2 Al3Zr 显微组织 时效动力学 力学性能

2019TQ01932019M6614972018YFB1106302518210012017WAMC002

2021

中国有色金属学报(英文版)
中国有色金属学会

中国有色金属学报(英文版)

CSTPCDCSCDSCI
影响因子:1.183
ISSN:1003-6326
年,卷(期):2021.31(8)
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