首页|压缩变形量对SIMA法制备Mg?10%Al?1%Zn?1%Si合金显微组织演变的影响

压缩变形量对SIMA法制备Mg?10%Al?1%Zn?1%Si合金显微组织演变的影响

扫码查看
采用应变诱发熔化激活法(SIMA)制备具有非枝晶显微组织的Mg–10%Al–1%Zn–1%Si合金,并且研究压缩变形量对Mg–10%Al–1%Zn–1%Si合金半固态显微组织演变的影响.研究结果表明:随着压缩变形量从0提高到40%,α-Mg晶粒的平均尺寸减小并且其球化趋势变得更为明显.此外,在SIMA法制备的Mg–10%Al–1%Zn–1%Si合金中的共晶Mg2Si相从初始鱼骨状完全转变成为近球状;随着压缩变形量的增大,共晶Mg2Si相的整体形貌和平均尺寸没有发生明显变化.并且,研究SIMA法制备的Mg–10%Al–1%Zn–1%Si合金中共晶Mg2Si相的形貌转变机制.
Effect of compression ratio on microstructure evolution of Mg−10%Al−1%Zn−1%Si alloy prepared by SIMA process
A new Mg−10%Al−1%Zn−1%Si alloy with non-dendritic microstructure was prepared by strain induced melt activation (SIMA) process. The effect of compression ratio on the evolution of semisolid microstructure of the experimental alloy was investigated. The results indicate that the average size of α-Mg grains decreases and spheroidizing tendency becomes more obvious with the compression ratios increasing from 0 to 40%. In addition, the eutectic Mg2Si phase in the Mg−10%Al−1%Zn−1%Si alloy transforms completely from the initial fishbone shape to globular shape by SIMA process. With the increasing of compression ratio, the morphology and average size of Mg2Si phases do not change obviously. The morphology modification mechanism of Mg2Si phase in Mg−10%Al−1%Zn− 1%Si alloy by SIMA process was also studied.

Mg−Al−Zn−Si alloycompression ratiomicrostructure evolutioneutectic Mg2Si phasestrain induced melt activation (SIMA) process

曹丽杰、马国睿、王春霞、陈正件、张嘉恒

展开 >

上海工程技术大学 机械与汽车工程学院,上海 201600

珠海中科先进技术研究院有限公司 医疗器械研发中心,珠海 519000

桂林理工大学 材料科学与工程学院,桂林 541004

珠海中科先进技术研究院有限公司 生物材料研发中心,珠海 519000

哈尔滨工业大学(深圳) 材料科学与工程学院,深圳 518055

展开 >

Mg–Al–Zn–Si合金 压缩变形量 显微组织演变 共晶Mg2Si相 应变诱发熔化激活法(SIMA)

Nos.4180723550674038

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(9)
  • 2
  • 4