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Grain Refinement by Second Phase Particles under Applied Stress in ZK60 Mg Alloy with Y through Phase Field Simulation

机译:ZK60 Mg合金中Y施加应力下第二相粒子细化的相场模拟。

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摘要

Based on the principle of grain refinement caused by the second-phase particles, a phase field model was built to describe the recrystallization process in the ZK60 alloy system with Y added under applied stress between temperatures 573 and 673 K for 140 min duration. The simulation of grain growth with second phase particles and applied stress during annealing process on industrial scale on the condition of real time-space was achieved. Quantitative analysis was carried out and some useful laws were revealed in ZK60 alloy system. The second phase particles had a promoting effect on the grain refinement, however the effect weakened significantly when the content exceeded 1.5%. Our simulation results reveal the existence of a critical range of second phase particle size of 0.3–0.4 μm, within which a microstructure of fine grains can be obtained. Applied stress increased the grain coarsening rate significantly when the stress was more than 135 MPa. The critical size of the second phase particles was 0.4–0.75 μm when the applied stress was 135 MPa. Finally, a microstructure with a grain size of 11.8–13.8 μm on average could be obtained when the second phase particles had a content of 1.5% and a size of 0.4–0.75 μm with an applied stress less than 135 Mpa after 30 min annealing at 573 K.
机译:根据第二相粒子引起的晶粒细化原理,建立了相场模型来描述ZK60合金系统在140℃的温度下在573至673 K的施加应力下添加Y时的再结晶过程。在实时空间条件下,进行了工业规模退火过程中第二相颗粒的晶粒长大和外加应力的模拟。进行了定量分析,并在ZK60合金体系中揭示了一些有用的规律。第二相颗粒对晶粒细化具有促进作用,但是当含量超过1.5%时,该作用显着减弱。我们的模拟结果表明,存在第二相粒径0.3-0.4μm的临界范围,可以在其中获得细晶粒的微观结构。当应力大于135 MPa时,施加的应力会显着提高晶粒粗化率。当施加应力为135 MPa时,第二相颗粒的临界尺寸为0.4-0.75μm。最后,当第二相粒子的含量为1.5%,尺寸为0.4-0.75μm,且在30℃退火30分钟后施加的应力小于135 Mpa时,可以获得平均晶粒尺寸为11.8-13.8μm的组织。 573千

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