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L形超声棒引入的超声弯曲振动对双辊铸轧1060铝合金带材组织与性能的影响

Effects of Ultrasonic Bending Vibration Introduced by an L-Shaped Ultrasonic Rod on the Microstructure and Properties of a 1060 Aluminum Alloy Strip Formed by Twin-Roll Casting.

作者信息

Shi Chen, Fan Gaofeng, Mao Xuqiang, Mao Daheng

机构信息

College of Mechanical and Electrical Engineering, Central South University, Changsha 410083, China.

State Key Laboratory of High Performance Complex Manufacturing, Central South University, Changsha 410083, China.

出版信息

Materials (Basel). 2020 Apr 25;13(9):2013. doi: 10.3390/ma13092013.

Abstract

In order to achieve the industrial application of ultrasonic energy in the continuous casting and rolling production of aluminum alloy, a new type of L-shaped ultrasonic rod was used to introduce an ultrasonic bending vibration into the aluminum melt in the launder during the horizontal twin-roll continuous casting and rolling process of a 1060 aluminum alloy. The effects of the ultrasonic bending vibration on the microstructure and properties of the 1060 aluminum alloy cast rolling strip and its subsequent cold rolling strip were studied experimentally, and the effect of the ultrasonic-assisted refining with different amounts of Al-Ti-B refiner was explored. The results show that under the same addition amount of Al-Ti-B refiner, the ultrasonic bending vibration can refine the grains of the cast rolling strip, make the distribution of precipitates more uniform, reduce the slag inclusion defects, and improve the mechanical properties to a certain extent. The microstructure and properties of the ultrasonic cast rolling strip with 0.18 wt% Al-Ti-B refiner or 0.12 wt% Al-Ti-B refiner are better than those of the conventional cast rolling strip, but the microstructure and properties of the ultrasonic cast rolling strip with 0.09 wt% Al-Ti-B refiner are slightly worse than those of the conventional cast rolling strip. Moreover, after cold rolling, the effect of the ultrasonic bending vibration on the improvement of the microstructure and properties of the aluminum alloy strip is inherited. A comprehensive analysis shows that the use of ultrasonic energy in this paper cannot completely replace the effect of the Al-Ti-B refiner, but it can reduce the addition amount of the Al-Ti-B refiner by 1/3.

摘要

为实现超声能量在铝合金连铸连轧生产中的工业应用,在1060铝合金水平双辊连铸连轧过程中,采用新型L形超声棒将超声弯曲振动引入流槽内的铝熔体中。实验研究了超声弯曲振动对1060铝合金铸轧带材及其后续冷轧带材组织和性能的影响,并探讨了不同添加量Al-Ti-B细化剂的超声辅助细化效果。结果表明,在Al-Ti-B细化剂添加量相同的情况下,超声弯曲振动可细化铸轧带材晶粒,使析出相分布更均匀,减少夹渣缺陷,并在一定程度上提高力学性能。添加0.18 wt%Al-Ti-B细化剂或0.12 wt%Al-Ti-B细化剂的超声铸轧带材的组织和性能优于传统铸轧带材,但添加0.09 wt%Al-Ti-B细化剂的超声铸轧带材的组织和性能略逊于传统铸轧带材。此外,冷轧后,超声弯曲振动对铝合金带材组织和性能改善的效果得以继承。综合分析表明,本文中超声能量的使用不能完全替代Al-Ti-B细化剂的作用,但可使Al-Ti-B细化剂的添加量减少1/3。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0c7f/7254404/1708a16fdb7f/materials-13-02013-g001.jpg

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