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Microstructural development of diffusion-brazed austenitic stainless steel to magnesium alloy using a nickel interlayer

机译:使用镍夹层的扩散钎焊奥氏体不锈钢到镁合金的显微组织发展

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摘要

The differences in physical and metallurgical properties of stainless steels and magnesium alloys make them difficult to join using conventional fusion welding processes. Therefore, the diffusion brazing of 316L steel to magnesium alloy (AZ31) was performed using a double stage bonding process. To join these dissimilar alloys, the solid-state diffusion bonding of 316L steel to a Ni interlayer was carried out at 900 °C followed by diffusion brazing to AZ31 at 510 °C. Metallographic and compositional analyses show that a metallurgical bond was achieved with a shear strength of 54 MPa. However, during the diffusion brazing stage B2 intermetallic compounds form within the joint and these intermetallics are pushed ahead of the solid/liquid interface during isothermal solidification of the joint. These intermetallics had a detrimental effect on joint strengths when the joint was held at the diffusion brazing temperature for longer than 20 min.
机译:不锈钢和镁合金在物理和冶金性能上的差异使它们难以使用常规的熔焊工艺进行连接。因此,使用双阶段结合工艺将316L钢扩散焊接到镁合金(AZ31)上。为了连接这些异种合金,在900°C下进行了316L钢与Ni中间层的固态扩散结合,然后在510°C下扩散钎焊到AZ31。金相和成分分析表明,在54 MPa的剪切强度下实现了冶金结合。但是,在扩散钎焊阶段B2中,在接头内形成金属间化合物,并且在接头等温固化过程中将这些金属间化合物推到固/液界面之前。当将接头在扩散钎焊温度下保持20分钟以上时,这些金属间化合物会对接头强度产生不利影响。

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