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Numerical simulation of process and grain size for large-sized aluminum alloy 7050 forging

机译:大型铝合金7050锻造工艺和晶粒尺寸的数值模拟

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Elimination of metallurgical defects, such as voids, microcracks, loose structure and microstructural segregation in the core of forging ingots, is crucial to ensure a good quality of the finished product in the process of lager-sized forging manufacture. A numerical approach for process optimisation and microstructural evolution of lager-sized forging of aluminium alloy 7050 was proposed in this study, which combined a commercial FEM code Deform 3D with empirical models. To obtain the parameters of empirical constitutive equation and dynamical recrystallization models for aluminium alloy 7050, the isothermal compressive test of 7050 sample was performed on Gleeble-1500 thermo-simulation machine in the temperature range of 250–450°C and strain rate of 0.01–10 s−1, and the metallograph analysis of the samples was carried out by a Leica DMIRM image analyzer. The simulation results showed that the forging processes proposed in this study are effective in eliminating the casting structures and optimising the forging structures; the effective strain rises significantly, while the average grain sizes reduces sharply with the increase of simulation steps; recrystallization behavior occurs when effective strain exceeds the critical value for studied temperature; recrystallized volume fractions in most parts of the final forging piece have reached 100% and the average grain size reduced to 10μm from initial value of 90μm. Also, temperature and effective strain are two important factors affecting the grain size.
机译:消除冶金缺陷,如空隙,微裂纹,结构和微观结构隔离在锻造锭的核心中,这是至关重要的,以确保在储存锻造制造过程中的良好质量的成品。本研究提出了一种对铝合金7050的贮藏锻造的过程优化和微观结构演化的数值方法,其与经验模型组合了商业有限元代码。为了获得铝合金7050的经验构成方程和动态再结晶模型的参数,在250&#x2013的温度范围内进行7050样品的等温压缩试验.450° c和菌株速率为0.01– 10 s − 1 ,并通过Leica Dmirm图像分析仪进行样品的金相分析。仿真结果表明,该研究提出的锻造过程在消除铸造结构和优化锻造结构方面是有效的;有效应变显着升高,而平均晶粒尺寸随着模拟步骤的增加而急剧减少;当有效应变超过研究温度的临界值时,会发生重结晶行为;在最终锻造件的大多数部分中重结晶体积分数达到100%,平均晶粒尺寸减少到10μ m,从初始值为90μ m。此外,温度和有效的应变是影响晶粒尺寸的两个重要因素。

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