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Dynamic Recrystallization Behavior and Processing Map of the 6082 Aluminum Alloy

机译:6082铝合金的动态再结晶行为和加工图

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摘要

Multiple hot-compression tests were carried out on the 6082 aluminum (Al) alloy using a Gleeble-1500 thermal simulation testing machine. Data on flow stresses of the 6082 Al alloy at deformation temperatures of 623 to 773 K and strain rates from 0.01 to 5 s were attained. Utilizing electron backscatter diffraction (EBSD) and a transmission electron microscope (TEM), the dynamic recrystallization behaviors of the 6082 Al alloy during hot compression in isothermal conditions were explored. With the test data, a hot-working processing map for the 6082 Al alloy (based on dynamic material modeling (DMM)) was drawn. Using the work-hardening rate, the initial critical strain causing dynamic recrystallization was determined, and an equation for the critical strain was constructed. A dynamic model for the dynamic recrystallization of the 6082 Al alloy was established using analyses and test results from the EBSD. The results showed that the safe processing zone (with a high efficiency of power dissipation) mainly corresponded to a zone with deformation temperatures of 703 to 763 K and strain rates of 0.1 to 0.3 s . The alloy was mainly subjected to continuous dynamic recrystallization in the formation of the zone. According to the hot-working processing map and an analysis of the microstructures, it is advised that the following technological parameters be selected for the 6082 Al alloy during hot-forming: a range of temperatures between 713 and 753 K and strain rates between 0.1 and 0.2 s .
机译:使用Gleeble-1500热模拟测试机对6082铝(Al)合金进行了多次热压缩测试。获得了在变形温度为623至773 K且应变速率为0.01至5 s时6082铝合金的流变应力数据。利用电子背散射衍射(EBSD)和透射电子显微镜(TEM),研究了6082铝合金在等温条件下热压缩过程中的动态再结晶行为。利用测试数据,绘制了6082铝合金的热加工工艺图(基于动态材料建模(DMM))。使用加工硬化率,确定引起动态再结晶的初始临界应变,并建立了临界应变方程。利用EBSD的分析和测试结果,建立了6082 Al合金动态再结晶的动力学模型。结果表明,安全加工区(具有较高的功率耗散效率)主要对应于变形温度为703至763 K,应变速率为0.1至0.3 s的区域。在该区域的形成中,主要对该合金进行连续的动态再结晶。根据热加工过程图和微观结构分析,建议为6082铝合金在热成型过程中选择以下工艺参数:713至753 K的温度范围和0.1至0.5的应变率。 0.2秒

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