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Effects of Rapid Heating on Solutionizing Characteristics of Al-Si-Mg Alloys Using a Fluidized Bed

机译:快速加热对流化床al-si-mg合金固溶特性的影响

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摘要

Effects of rapid heat transfer using a fluidized bed on the heat-treating response of Al-Si-Mg alloys (both unmodified and Sr modified) were investigated. The heating rate in the fluidized bed is greater than in conventional air convective furnaces. Particle size analyses of eutectic Si showed that the high heating rate during fluidized bed solution heat treatment causes faster fragmentation and spherodization of Si particles compared to conventional air convective furnaces. The mechanism of Si fragmentation through fluidized bed processing is through both brittle fracture and neck formation and its propagation. In contrast to this, the mechanism of Si fragmentation using a conventional air convective furnace is through neck formation and propagation. The Sr-modified D357 alloy showed a faster spherodizing rate than the unmodified alloy. Thermal analyses showed an exothermic reaction during solution heat treatment using a fluidized bed due to recrystallization, and coarsening of eutectic Al grains. Whereas the alloy solutionized using a conventional air convective furnace showed two exothermic reactions, one due to annihilation of point defects and the other due to recrystallization, and coarsening of the eutectic grains in the aluminum matrix. The recrystallization temperature of the alloy solutionized in the fluidized bed is lower than those in the conventional air convective furnace. Both tensile strength and elongation of fluidized bed solutionized alloys are greater than those solutionized using the air convective furnace. The optimum heat-treatment time for T4 temper using a fluidized bed for unmodified and Sr-modified alloy was reduced to 60 and 30 minutes, respectively.
机译:研究了使用流化床快速传热对Al-Si-Mg合金(未改性和Sr改性)的热处理响应的影响。流化床中的加热速率大于常规空气对流炉中的加热速率。共晶硅的粒度分析表明,与传统的空气对流炉相比,流化床溶液热处理过程中的高加热速率可导致硅颗粒更快地破碎和球形化。通过流化床处理使硅破碎的机理是通过脆性断裂和颈的形成及其传播。与此相反,使用常规空气对流炉的硅碎裂机理是通过颈的形成和扩散。 Sr改性D357合金的球化速度比未改性合金快。热分析表明,在固溶热处理过程中,由于重结晶和共晶Al晶粒的粗化,在使用流化床进行固溶热处理时放热反应。而使用常规空气对流炉固溶的合金表现出两个放热反应,一个是由于点缺陷的an没,另一个是由于重结晶,铝基体中的共晶晶粒变粗大。固溶在流化床中的合金的重结晶温度低于常规空气对流炉中的重结晶温度。流化床固溶合金的抗拉强度和伸长率均大于使用空气对流炉固溶的合金。对于未改性和Sr改性合金,使用流化床进行T4回火的最佳热处理时间分别降至60分钟和30分钟。

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