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大型金属铸造过程中超声变幅杆的空蚀:实验与模拟

The cavitation erosion of ultrasonic sonotrode during large-scale metallic casting: Experiment and simulation.

作者信息

Tian Yang, Liu Zhilin, Li Xiaoqian, Zhang Lihua, Li Ruiqing, Jiang Ripeng, Dong Fang

机构信息

State Key Laboratory of High Performance Complex Manufacturing, College of Mechanical and Electrical Engineering, Central South University, Changsha 410083, PR China.

State Key Laboratory of High Performance Complex Manufacturing, College of Mechanical and Electrical Engineering, Central South University, Changsha 410083, PR China; IMDEA Materials Institute, C/Eric Kandel 2, 28906 Getafe, Madrid, Spain.

出版信息

Ultrason Sonochem. 2018 May;43:29-37. doi: 10.1016/j.ultsonch.2017.12.053. Epub 2018 Jan 2.

Abstract

Ultrasonic sonotrodes play an essential role in transmitting power ultrasound into the large-scale metallic casting. However, cavitation erosion considerably impairs the in-service performance of ultrasonic sonotrodes, leading to marginal microstructural refinement. In this work, the cavitation erosion behaviour of ultrasonic sonotrodes in large-scale castings was explored using the industry-level experiments of Al alloy cylindrical ingots (i.e. 630 mm in diameter and 6000 mm in length). When introducing power ultrasound, severe cavitation erosion was found to reproducibly occur at some specific positions on ultrasonic sonotrodes. However, there is no cavitation erosion present on the ultrasonic sonotrodes that were not driven by electric generator. Vibratory examination showed cavitation erosion depended on the vibration state of ultrasonic sonotrodes. Moreover, a finite element (FE) model was developed to simulate the evolution and distribution of acoustic pressure in 3-D solidification volume. FE simulation results confirmed that significant dynamic interaction between sonotrodes and melts only happened at some specific positions corresponding to severe cavitation erosion. This work will allow for developing more advanced ultrasonic sonotrodes with better cavitation erosion-resistance, in particular for large-scale castings, from the perspectives of ultrasonic physics and mechanical design.

摘要

超声变幅杆在将功率超声传输到大型金属铸件中起着至关重要的作用。然而,空化侵蚀会严重损害超声变幅杆的服役性能,导致微观组织细化效果不佳。在这项工作中,通过铝合金圆柱锭(即直径630毫米、长度6000毫米)的工业级实验,探索了大型铸件中超声变幅杆的空化侵蚀行为。引入功率超声时,发现超声变幅杆上的某些特定位置会反复出现严重的空化侵蚀。然而,未由发电机驱动的超声变幅杆上不存在空化侵蚀。振动检测表明,空化侵蚀取决于超声变幅杆的振动状态。此外,还建立了一个有限元(FE)模型来模拟三维凝固体积中声压的演变和分布。有限元模拟结果证实,变幅杆与熔体之间显著的动态相互作用仅发生在与严重空化侵蚀相对应的某些特定位置。这项工作将有助于从超声物理和机械设计的角度开发出更先进、具有更好抗空化侵蚀性能的超声变幅杆,特别是用于大型铸件。

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