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使用镍基钎料合金对CoCrFeMnNi等原子高熵合金进行红外钎焊

Infrared Brazing of CoCrFeMnNi Equiatomic High Entropy Alloy Using Nickel-Based Braze Alloys.

作者信息

Lin Chieh, Shiue Ren-Kae, Wu Shyi-Kaan, Huang Huai-Li

机构信息

Department of Materials Science and Engineering, National Taiwan University, Taipei 106, Taiwan.

Department of Mechanical Engineering, National Taiwan University, Taipei 106, Taiwan.

出版信息

Entropy (Basel). 2019 Mar 15;21(3):283. doi: 10.3390/e21030283.

Abstract

Infrared vacuum brazing of CoCrFeMnNi high entropy alloy (HEA) using BNi-2 and MBF601 fillers has been investigated. Both brazes show poor wettability at temperatures only 20 °C above their liquidus temperatures. However, the wettability of BNi-2 and MBF601 fillers on CoCrFeMnNi HEA is greatly improved with increasing the test temperatures, 50 °C above their liquidus temperatures. The BNi-2 brazed joints are dominated by Ni-rich matrix with huge CrB and a few tiny boride precipitates. Average shear strengths of joints increase with increasing brazing temperature and/or time, and fracture location changes from blocky CrB in the brazed zone to grain boundary boride in the substrate. The MBF601 brazed joints are composed of CoCrFeMnNi-based matrix, particles of B/Co/Cr/Fe/Mn/Ni/P compounds, and some phosphides form along the grain boundaries of the substrate. The specimen brazed with MBF601 filler foil at 1050 °C for 600 s has the highest average shear strength of 321 MPa, while that brazed at 1080 °C for 600 s has a lower average shear strength of 271 MPa due to the presence of solidification shrinkage voids.

摘要

研究了使用BNi-2和MBF601钎料对CoCrFeMnNi高熵合金(HEA)进行红外真空钎焊的情况。两种钎料在仅比其液相线温度高20°C的温度下润湿性都很差。然而,随着测试温度升高至比其液相线温度高50°C,BNi-2和MBF601钎料在CoCrFeMnNi高熵合金上的润湿性得到显著改善。BNi-2钎焊接头以富Ni基体为主,伴有大量CrB和少量微小硼化物析出物。接头的平均剪切强度随钎焊温度和/或时间的增加而提高,断裂位置从钎焊区的块状CrB转变为基体中的晶界硼化物。MBF601钎焊接头由CoCrFeMnNi基基体、B/Co/Cr/Fe/Mn/Ni/P化合物颗粒组成,并且一些磷化物沿基体晶界形成。用MBF601钎料箔在1050°C下钎焊600 s的试样平均剪切强度最高,为321 MPa,而在1080°C下钎焊600 s的试样由于存在凝固收缩孔隙,平均剪切强度较低,为271 MPa。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7291/7514763/383fc4fdeb08/entropy-21-00283-g001.jpg

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