Effect of differential speed rolling on static recrystailization and grain refinement of AZ31 magnesium alloy
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摘要: 研究了AZ31鎂合金薄板在異步軋制過程中,異速比、壓下率及退火工藝對其退火晶粒尺寸的影響.結果表明:適當提高軋制異速比和道次壓下率能夠顯著細化晶粒,但是異速比過高時,軋輥與軋件會產生相對滑動,細化晶粒效果降低,其中異速比為1.3時,細化晶粒效果最佳;剪切作用使鎂合金中孿晶數量及分布均勻程度提高,位錯纏結被"切碎",畸變能得以更均勻地分布于變形體內,是異步軋制具有良好晶粒細化效果的主要原因;此外,合理的異步軋制工藝還能縮短鎂合金板帶所需的中間退火和成品退火時間.Abstract: The effect of speed ratio, rolling reduction ratio and annealing on the recrystallization grain size of AZ31 magnesium alloy sheets was studied under the condition of differential speed roiling process. It is shown that the grains can be significantly refined by increasing the speed ratio and reduction ratio. But when the speed ratio is too high, sliding occurs between the rolls and sheets, lower-ing grain refinement. A speed ratio of 1.3 provides the best grain refinement. The major reason that differential speed rolling leads to a better grain refinement is that shearing deformation in differential speed rolling can increase the number and uniformity of twins and cut up dislocation cells or walls, the distortion energy more evenly distributes in the magnesium alloy. In addition, a reasonable differential speed rolling process also reduces the middle and final annealing time.
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Key words:
- magnesium alloys /
- rolling /
- recrystallization /
- annealing /
- grain refinement
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