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Modeling of the. static recrystallization for 7055 aluminum alloy by cellular automaton

机译:建模。 通过蜂窝自动机7055铝合金静态重结晶

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In order to simulate the flow behavior and microstructure evolution during the. pass interval period of the. multi-pass deformation process, models of static recovery (SR) and static recrystallization (SRX) by the cellular automaton (CA) method for the 7055 aluminum alloy were established. Double-pass hot compression tests were conducted to acquire flow stress and microstructure variation during the pass interval period. With the basis of the material constants obtained from the compression tests, models of the SR, incubation period, nucleation rate and grain growth were fitted by least square method. A. model of the grain topology and a statistical computation of the CA results were also introduced. The effects of the pass interval time, temperature, strain, strain rate and initial grain size on the. microstructure variation for the SRX of the 7055 aluminum alloy were studied. The results show that a long pass interval time, large strain, high temperature and large strain rate are beneficial for. finer grains during the pass interval period. The stable size of the static recrystallized grain is not concerned with the initial grain size, but mainly depends on the strain rate and temperature. The SRX plays a vital role in grain refinement, while the SR has no effect on the. variation of microstructure morphology. Using flow stress and microstructure comparisons of the. simulated and experimental. CA results, the established CA models can accurately predict the flow stress and microstructure evolution during the pass interval period, and. provide guidance for the. selection of optimized parameters for the multi-pass deformation process.
机译:为了模拟流动行为和微观结构演化。通过间隔时间。建立了多通变形过程,静态恢复模型(SR)和静态再结晶(SRX)的蜂窝自动机组(CA)方法,用于7055铝合金的方法。进行双通热压缩试验以在通过间隔期间获得流量应力和微观结构变化。在从压缩试验中获得的材料常数的基础,通过最小二乘法将Sr,孵育期,成核速率和晶粒生长的模型装配。 A.还介绍了谷物拓扑的模型和CA结果的统计计算。通过间隔时间,温度,应变,应变率和初始晶粒尺寸的影响。研究了7055铝合金SRX的微观结构变化。结果表明,长期间隔时间,大应变,高温和大应变率有益。在通过间隔期间更精细的谷物。静态再结晶晶粒的稳定尺寸不涉及初始粒度,但主要取决于应变速率和温度。 SRX在谷物细化中起着至关重要的作用,而SR对此没有影响。微观结构形态的变异。使用流量应力和微观结构比较。模拟和实验。 CA结果,建立的CA型号可以准确地预测通过间隔周期的流量应力和微观结构演变。为此提供指导。多通变形过程的优化参数选择。

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