首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Influence of welding parameters on the IMCs and the mechanical properties of Ti/Al butt joints welded by MIG/TIG double-sided arc welding-brazing
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Influence of welding parameters on the IMCs and the mechanical properties of Ti/Al butt joints welded by MIG/TIG double-sided arc welding-brazing

机译:MIG / TIG双面弧焊焊接焊接参数对IMCs的影响及Ti / Al对接接头的力学性能

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Sound welding-brazing butt joints of TiAl6V4 and 5A06 with excellent front and back appearance were obtained by MIG/TIG double-sided arc (DSA) welding-brazing. The relationships between the main welding parameters such as welding speed, TIG welding current and TIG position, the microstructure of the intermetallic compounds (IMCs) and the mechanical properties of Ti/Al butt joints were investigated. Experimental results revealed that the morphology, composition and thickness of Ti-Al IMCs depended on the welding heat input and the heat distribution. With increasing welding heat input and heat concentration, the thickness of the IMCs layers increased, the morphology changed from lamellar to serrated, and the phase composition changed from TiAl3 to TiAl (adjacent to Ti6Al4V) and TiAl3 (adjacent to the weld). Moreover, the relationship between the structure of the Ti-Al IMCs layers and the tensile strength of the joints without reinforcement was discussed further. Some joints achieved a high bonding strength of 240.3 MPa because of serrated IMCs layer with a thickness of 2-6 mu m at the brazing joint. The welding-brazing was performed at the welding speed of 15 mm/s, TIG welding current of 80-90 A and TIG position of 0 mm. The lower tensile strength of the other joints was due to either the reduction of the bonding area by the formation of the lamellar IMCs, or the insufficient integrity of the joints caused by the inherent brittleness of the excessively thick IMCs. (C) 2018 Published by Elsevier B.V.
机译:通过MIG / TIG双面弧(DSA)焊接钎焊获得了TiAl6v4和5a06的响应式钎焊接接头,具有优异的前后外观。研究了诸如焊接速度,TIG焊接电流和TIG位置的主焊接参数之间的关系,研究了金属间化合物(IMC)的微观结构和Ti / Al对接接头的机械性能。实验结果表明,Ti-A1 IMC的形态,组成和厚度依赖于焊接热输入和热分布。随着焊接热输入和热浓度的增加,IMCS层的厚度增加,形态从层状变为锯齿,并且相组合物从TiAl3变为Tial(邻近Ti6Al4V)和TiAl3(邻近焊接)。此外,进一步讨论了Ti-Al IMCS层的结构与无需增强件的关节的拉伸强度之间的关系。由于钎焊接接头处的厚度为2-6μm的锯齿状IMCS层,一些接头达到了240.3MPa的高键合强度。焊接钎焊在15mm / s的焊接速度下进行,TIG焊接电流为80-90a和0mm的TIG位置。其他关节的较低拉伸强度是由于通过形成层状IMC的形成来减少粘合面积,或由过厚的IMC的固有脆性引起的关节的不充分的完整性。 (c)2018由elestvier b.v出版。

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