冷点连接法接头界面形成机理及其接头性能

IF 0.3 4区 材料科学 Q4 METALLURGY & METALLURGICAL ENGINEERING
Takumi Aibara, Masayoshi Kamai, Yoshiaki Morisada, Kohsaku Ushioda, Hidetoshi Fujii
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引用次数: 0

摘要

成功开发了一种新型的固态连接方法——冷点连接(CSJ)。在这种连接概念中,连接界面附近的材料在高压下发生塑性变形,形成连接界面,导致连接界面处氧化膜破碎,形成强界面。在不同的工艺条件下对中碳钢薄板进行了cs连接。在CSJ过程中,连接温度可以随施加的压力而变化。显微组织观察和硬度分布表明,适当的加压使连接温度低于A1点,抑制了脆性马氏体组织的形成。通过施加适当的压力,成功地产生了良好的S45C点焊接头,在拉伸剪切和交叉拉伸试验中显示母材的堵塞失效。对界面形成机理的进一步研究表明,界面处的氧化膜是破碎和排出的。同时,在界面处发生动态再结晶,在界面处形成极细的新晶粒,细渗碳体分散,达到充分强度的良好结合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Formation Mechanism of Joint Interface in Cold Spot Joining Method and its Joint Properties
A novel solid-state joining method called Cold Spot Joining (CSJ) has been successfully developed. In this joining concept, the material near the joining interface is plastically deformed under high pressure to form a joining interface, resulting in the fragmentation of oxide films at the joining interface and the formation of strong interface. Medium carbon steel sheets were CS-joined under various process conditions. The joining temperature can be varied by the applied pressure during CSJ. Microstructural observations and hardness distribution indicated that the appropriate pressurization resulted in joining temperatures below the A1 point and suppressed the formation of the brittle martensitic structure. By providing appropriate applied pressure, sound S45C spot-welded joints were successfully produced, showing plug failure of the base metal in both tensile shear and cross-tension tests. Further investigation into the mechanism of interface formation reveals that the oxide film at the interface is fragmented and expelled. At the same time, dynamic recrystallization occurs at the interface and extremely fine new grains with dispersed fine cementite are formed at the interface to achieve the sound joining with sufficient strength.
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来源期刊
CiteScore
0.70
自引率
33.30%
发文量
74
审稿时长
6-12 weeks
期刊介绍: The journal ISIJ International first appeared in 1961 under the title Tetsu-to-Hagané Overseas. The title was changed in 1966 to Transactions of The Iron and Steel Institute of Japan and again in 1989 to the current ISIJ International. The journal provides an international medium for the publication of fundamental and technological aspects of the properties, structure, characterization and modeling, processing, fabrication, and environmental issues of iron and steel, along with related engineering materials. Classification I Fundamentals of High Temperature Processes II Ironmaking III Steelmaking IV Casting and Solidification V Instrumentation, Control, and System Engineering VI Chemical and Physical Analysis VII Forming Processing and Thermomechanical Treatment VIII Welding and Joining IX Surface Treatment and Corrosion X Transformations and Microstructures XI Mechanical Properties XII Physical Properties XIII New Materials and Processes XIV Social and Environmental Engineering.
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