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Ag-based filler metal wetting behavior and brazed joint performance on SLMed Ti/TiB2 substrate.

Authors :
Wang, Liuyong
Wu, Qi
Song, Ziming
Li, Yue
Li, Xuewen
Tu, Bing
Li, Yulong
Source :
Soldering & Surface Mount Technology; 2024, Vol. 36 Issue 4, p209-218, 10p
Publication Year :
2024

Abstract

Purpose: This study aims to investigate the wetting behavior of AgCuTi and AgCu filler metals on selective laser melting (SLMed) Ti/TiB<subscript>2</subscript>, and to analyze the microstructure and fracture characteristics of SLMed Ti/TiB<subscript>2</subscript>/AgCuTi or AgCu alloy/SLMed Ti/TiB<subscript>2</subscript> brazed joints. The wetting behavior of AgCuTi and AgCu filler metals on the selective laser melted (SLMed) Ti/TiB<subscript>2</subscript> has been studied. The analysis of microstructures and fracture characteristics in vacuum-brazed SLMed Ti/TiB<subscript>2</subscript> substrate, using AgCuTi and AgCu filler metals, has been conducted to elucidate the influence of brazing temperature and alloy composition on the shear strength of the brazed joints. Design/methodology/approach: Brazing SLMed-Ti/TiB<subscript>2</subscript> in a vacuum using AgCuTi and AgCu filler metals, this study aims to explore the optimal parameters for brazed joints at various brazing temperatures (800°C−950°C). Findings: The findings suggest that elevated brazing temperatures lead to a more extensive diffusion region in the joint as a result of the partial melting of the filler metal. The joint composition changes from distinct Ti<subscript>2</subscript>Cu layer/TiCu layer/filler metal to a-Ti (ss) + ß-Ti (ss)/TiCu. As the brazing temperature increases, the fracture mode shifts from brittle cleavage to ductile fracture, mainly attributed to a decrease in the CuTi within the brazed joint. This change in fracture behavior indicates an improvement in the ductility and toughness of the joint. Originality/value: The originality of this study lies in the comprehensive analysis of the microstructure and shear strength of vacuum brazing SLMed Ti/TiB<subscript>2</subscript> using AgCuTi and AgCu filler metals. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
09540911
Volume :
36
Issue :
4
Database :
Complementary Index
Journal :
Soldering & Surface Mount Technology
Publication Type :
Academic Journal
Accession number :
178620775
Full Text :
https://doi.org/10.1108/SSMT-12-2023-0079