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TiZn及TiZn成分对使用预镀锌工件通过超声辅助钎焊形成的Ti-6Al-4V合金接头微观结构和力学性能的影响。

Effects of TiZn and TiZn components on the microstructure and mechanical performance of Ti-6Al-4 V alloy joints formed via ultrasonic assisted brazing using pre-galvanized workpieces.

作者信息

Li Yinan, Cui Zhuang, Zhang Hongchang, Peng Zilong, Yan Jiuchun, Lv Binjiang, Cui Ning

机构信息

School of Mechanical & Automotive Engineering, Qingdao University of Technology, Qingdao 266000, China.

State Key Laboratory of Welding and Joining, Harbin Institute of Technology, Harbin 150001, China.

出版信息

Ultrasonics. 2022 Sep;125:106782. doi: 10.1016/j.ultras.2022.106782. Epub 2022 Jun 4.

Abstract

While the use of a Zn interlayer has been demonstrated to reduce the temperature required for joining easily oxidized metal alloys in atmospheric environments, the effects of reactions between the titanium alloy workpieces and the Zn interlayer on the mechanical performance of the finished joints are poorly understood. The present work addresses this issue by evaluating the chemical compositions at the interfaces of pre-galvanized Ti-6Al-4 V alloys joined at 420 °C in an atmospheric environment by ultrasonic-assisted brazing, and relating the observed compositions to the mechanical performances of the joints. The Ti-6Al-4 V alloy workpieces are first wetted by pure Zn using an ultrasonic assisted hot dip galvanizing (U-HDG). The obtained ultrasonic excitations are demonstrated to destroy the oxide film on the surfaces of the Ti-6Al-4 V workpieces and promote reactions between Ti and Zn at the interfaces. The plating of Zn on the workpiece surfaces is demonstrated to be realized by the formation of intermetallic compounds (IMCs) comprising a uniform TiZn layer in contact with the Ti-6Al-4 V surface, followed by a mixed TiZn + TiZn layer and a η-Zn layer at the outer surface. Application of the ultrasonic-assisted brazing process is demonstrated to maintain uniform TiZn layers next to the Ti-6Al-4 V surfaces, while the concentration of the TiZn phase near the midpoint of the joints increases with increasing ultrasonic treatment time (UST) from 5 s to 20 s, and the corresponding concentration of the η-Zn phase decreases. The results of mechanical testing demonstrate that the shear strength of the joint obtained with a TiZn layer thickness of 8-12 μm and a UST of 10 s is 210 MPa, which is 3.55 times greater than that obtained for joints processed without pre-galvanization.

摘要

虽然已证明使用锌中间层可降低在大气环境中连接易氧化金属合金所需的温度,但钛合金工件与锌中间层之间的反应对最终接头机械性能的影响却鲜为人知。本研究通过评估在大气环境中于420°C通过超声辅助钎焊连接的预镀锌Ti-6Al-4V合金界面处的化学成分,并将观察到的成分与接头的机械性能相关联,来解决这一问题。首先使用超声辅助热浸镀锌(U-HDG)用纯锌润湿Ti-6Al-4V合金工件。已证明获得的超声激励会破坏Ti-6Al-4V工件表面的氧化膜,并促进界面处Ti与Zn之间的反应。已证明通过形成金属间化合物(IMC)在工件表面镀Zn,该金属间化合物包括与Ti-6Al-4V表面接触的均匀TiZn层,随后是混合的TiZn + TiZn层和外表面的η-Zn层。已证明应用超声辅助钎焊工艺可在Ti-6Al-4V表面附近保持均匀的TiZn层,而接头中点附近TiZn相的浓度随着超声处理时间(UST)从5 s增加到20 s而增加,相应的η-Zn相浓度降低。力学测试结果表明,TiZn层厚度为8-12μm且UST为10 s时获得的接头剪切强度为210 MPa,这比未进行预镀锌处理的接头高出3.55倍。

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