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Effect of Direct Chill Casting Process Parameters on the Microstructure and Macrosegregation of Mg-Al-Zn Ingot

机译:直接冷却铸造工艺参数对MG-Al-Zn锭组织和宏观测定的影响

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It has been demonstrated that the microstructure and macrosegregation of ingot produced by direct chill casting would take remarkable effect on its deformation behavior. In the present study, the influence of casting speed and temperature on the microstructure and macrosegregation of AZ81 ingot prepared by a self-designed crystallizer (220 x 220 mm) was investigated. The results show that the volume fraction of beta-Mg17Al12 predicted by the Gulliver-Scheil model agrees well with image analysis results of the ingots prepared at different casting parameters. Moreover, the casting speed affects the macrosegregation greatly while it has slight influence on the distribution of beta-Mg17Al12 , and the casting temperature has slight influence on macrosegregation of ingot while it has strong influence on the distribution of beta-Mg17Al12 . The optimal casting speed and casting temperature for the AZ81 ingot are 80 mm/min and 953 K, respectively. The corresponding maximum values of ultimate tensile strength, yield strength and elongation are 265 MPa, 210 MPa and 3.5%, respectively.
机译:已经证明,通过直接冷却铸件产生的铸锭的微观结构和宏指令格对其变形行为产生了显着影响。在本研究中,研究了通过自行设计的结晶器制备的AZ81铸锭微观结构和高温聚合的影响(220×220mm)的影响。结果表明,Gulliver-Scheil模型预测的β-Mg17Al12的体积分数与在不同浇铸参数上制备的锭的图像分析结果吻合良好。此外,铸造速度大大影响了巨大的影响,而对β-Mg17Al12的分布略有影响,并且铸造温度对铸锭的宏观测定有略微影响,而它对β-Mg17A112的分布产生强烈影响。 AZ81铸锭的最佳铸造速度和铸造温度分别为80毫米/分钟,953 k。相应的最大拉伸强度,屈服强度和伸长率的最大值分别为265MPa,210MPa和3.5%。

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