Effects of differential speed ratio on the microstructure and texture of AZ31 magnesium alloy sheets processed by differential speed rolling
-
摘要: 采用不同異速比對AZ31鎂合金板材進行異步軋制,并將軋后樣品進行顯微組織和X射線衍射分析,研究異速比對鎂合金板材組織和織構轉變的影響.結果表明:異速比的變化對晶粒形貌影響較大但晶粒細化效果不明顯;當異速比為2.800時,板材內出現了長條晶粒;快速輥側{0002}基面織構強度高于慢速輥側,且板材兩側表面{0002}晶面的偏轉方向相反;異速比對基面織構的強度影響顯著,隨著異速比的增大,基面織構的強度先增加后下降.這種特殊的織構變化與異步軋制過程中沿厚度方向引入的剪切變形有關.Abstract: The effects of differential speed ratio on the microstrueture and the texture of AZ31 magnesium alloy sheets processed by differential speed rolling (DSR) were investigated by optical microscopy and X-ray diffraction analysis. The results show that differential speed ratio has a significant effect on the grain morphology but a little influence on the grain size. As the differential speed ratio increases to 2.800, lots of long-strip grains are found. The intensity of {0002} basal textures is much higher on the side of fast rolling than on the side of slow rolling and the distributions of {0002} orientations are different between the two surfaces of the sheet. Differential speed ratio has also a great influence on the strength of basal textures and when the differential speed ratio increases, the intensity of (0002) basal textures increases firstly and then reduces. This special texture change could be attributed to shear deformation introduced throughout the thickness during the differential speed rolling process.
-
Key words:
- magnesium alloys /
- differential speed rolling /
- microstructure /
- texture
-

計量
- 文章訪問數: 134
- HTML全文瀏覽量: 33
- PDF下載量: 6
- 被引次數: 0