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首页> 外文期刊>Journal of Materials Science >Transient liquid phase bonding of steel using an Fe–B interlayer: microstructural analysis
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Transient liquid phase bonding of steel using an Fe–B interlayer: microstructural analysis

机译:使用Fe–B夹层的钢的瞬态液相键合:微观结构分析

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摘要

Transient liquid phase bonding processes have been performed to join two carbon steel tubes using Fe96.2B3.8 wt% amorphous ribbons as interlayer. Welding experiments were performed at the temperature T ≈ 1,250 °C for different durations and under pressures of 0.8, 2, 3, and 4 MPa. From metallographic inspection, it is concluded that the bonding process ends in 7.0 min if a pressure of 4 MPa is applied, whereas the process results incomplete if less pressure is applied. The metallurgical aspects of these joints are analyzed. Plastic deformation at the joint is observed. Micrographs show that if pressure increases, the amount of pro-eutectoid ferrite decreases, therefore, an increase in the hardenability of the steel occurs. This fact could be due to the effect of the compression plastic deformation that prevails at the joint zone.
机译:以Fe 96.2 B 3.8 wt%非晶带为中间层,进行了瞬态液相结合工艺以连接两个碳钢管。焊接实验是在T≈1,250°C的温度下进行不同的持续时间,并在0.8、2、3和4 MPa的压力下进行的。从金相检查得出的结论是,如果施加4 MPa的压力,粘结过程将在7.0分钟内结束,而如果施加较小的压力,则粘结过程将不完全。分析了这些接头的冶金方面。在接头处观察到塑性变形。显微照片显示,如果压力增加,原共析铁素体的数量减少,因此,钢的淬透性增加。这个事实可能是由于在接头区域普遍存在的压缩塑性变形的影响。

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