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Damaging of Ultrasonic Horn for Semisolid Feedstock Production

机译:超声波喇叭的损坏,用于半固体原料生产

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摘要

Ultrasound treatment is one of the known method to obtain the globular microstructure for semisolid processing of aluminum alloys. Notwithstanding the numerous advantages, the main industrial limit of this method is the low service life of the horn due to the combined hot corrosion and erosion phenomena. Various approaches are reported in literature to overcome this problem, but a real satisfactory option does not seem to be available yet. In this paper, the behavior of a HI 1 tool steel sonotrode coated with a thin layer of TiAlCN is investigated and compared with the performance of an uncoated steel one. The lifetime of the horn was evaluated in terms of effectiveness in semisolid feedstock material preparation. For this purpose, the microstructure of semisolid cast samples obtained after different working times was analyses by optical and scanning electron microscopy. Moreover, melt contaminations due to the probe dissolution were also evaluated. The applied coating exhibited a significant resistance to separate hot corrosion in liquid Al alloy and cavitation erosion phenomena in water. However, the combined effect of the two damaging mechanisms during ultrasound treatment of the molten alloy leaded to coating removal and to a horn consumption comparable to that of bare steel.
机译:超声处理是获得用于铝合金的半固态加工的球状显微组织的已知方法之一。尽管有许多优点,但是由于热腐蚀和腐蚀现象的结合,这种方法的主要工业局限性是喇叭的使用寿命很短。文献中报道了各种方法来克服该问题,但是似乎还没有真正令人满意的选择。在本文中,研究了涂覆有一层薄薄的TiAlCN的HI 1工具钢超声焊极的性能,并将其与未涂层的钢的性能进行了比较。根据半固体原料制备中的有效性评估了焊头的寿命。为此,通过光学和扫描电子显微镜分析在不同工作时间之后获得的半固态铸件的显微组织。此外,还评估了由于探针溶解而引起的熔体污染。所施加的涂层表现出显着的抵抗液态铝合金中的热腐蚀和水中空化腐蚀现象的能力。但是,在熔融合金的超声处理过程中,两种破坏机制的共同作用导致涂层去除和与裸钢相当的焊头消耗。

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