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Effects of Ultrasonic Introduced by L-Shaped Ceramic Sonotrodes on Microstructure and Macro-Segregation of 15t AA2219 Aluminum Alloy Ingot

机译:L形陶瓷超声波导入超声波对15t AA2219铝合金铸锭组织和宏观偏析的影响

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摘要

The effects of ultrasonic introduced by L-shaped sonotrodes made of high-temperature-resistant ceramic on the microstructure and macro-segregation of solidifying 15t AA2219 aluminum alloy ingots have been examined in the present study. The macroscopic morphology of the corrosion of the sonotrode has been observed. Grain refinement has been observed, the shape and size of the precipitated phase of the ingot were counted, and the degree of segregation along the transverse direction at 500 mm from the head of the ingot has been evaluated. The results reveal that the L-shaped ceramic ultrasonic introduction device can effectively avoid the erosion of high-temperature melt on the sonotrode and the heat radiation of the high-temperature heat flow to the transducer. Furthermore, the scanning electron microscope (SEM) and chemical composition detection results also indicate that the inter-dendritic micro-segregation of the equiaxed grains can be reduced, and the macro-segregation of the chemical composition of the ingot can be suppressed, and more homogeneous microstructures can be obtained when ultrasonic has been applied during solidification.
机译:在本研究中,研究了由耐高温陶瓷制成的L形超声波焊条引入的超声波对15t AA2219铝合金锭凝固组织和宏观偏析的影响。已经观察到超声波发生器腐蚀的宏观形态。已经观察到晶粒细化,计算锭的沉淀相的形状和尺寸,并且评估了在距锭头500mm处的横向方向上的偏析度。结果表明,L形陶瓷超声引入装置可有效避免高温熔体在超声焊极上的侵蚀和高温热流向换能器的散热。此外,扫描电子显微镜(SEM)和化学成分检测结果还表明,可以减少等轴晶粒的枝晶间微观偏析,并且可以抑制铸锭的化学成分的宏观偏析,并且更多。当在固化过程中施加超声波时,可以获得均匀的微观结构。

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