采用新型的Cu-Mn-Ni-Ag中温铜基钎料高频感应钎焊2Cr13不锈钢,并对钎料的工艺特性、钎焊接头的显微组织以及测试温度对钎焊接头力学性能的影响进行研究。结果表明:Cu-Mn-Ni-Ag钎料的熔点约为880℃,由富Ag相、Cu-Mn-Ni固溶体以及少量的Ni-Mn-Si化合物组成;钎料与2Cr13不锈钢产生良好的冶金结合,且钎焊接头组织致密;界面反应区的组织为Fe-Mn-Ni-Cr-Cu固溶体,钎缝区组织由富Ag相、Cu-Mn-Ni固溶体和少量的Ni-Mn-Si化合物组成;钎焊接头断裂于钎缝中间的富Ag相和CuMnNi固溶体上,为以剪切韧窝为主的韧性断裂,室温剪切强度最大可达369 MPa,在400℃、500℃和600℃下接头的剪切强度分别为251 MPa、208 MPa和84 MPa。
The characteristic of Cu-Mn-Ni-Ag filler alloy and the microstructure and mechanical properties of the 2Cr13 stainless steel joint brazed by high frequency induction brazing using Cu-Mn-Ni-Ag filler alloywerestudied. The results show that the melting point of the Cu-Mn-Ni-Ag filler alloy is 880℃and it is composed of Ag-rich phase, Cu-Mn-Ni solid solution and a little Ni-Mn-Si compound; a layer of Fe-Mn-Ni-Cr-Cu solid solution forms at the interface between the filler alloy and base metal, and the brazing seam zone is composed of Ag-rich phase, Cu-Mn-Ni solid solution and a little Ni-Mn-Si compound. The brazing jointsfailsin the inside Cu-Mn-Ni solid solution and Ag-rich phase, and the fracture mode of the joints is mainly ductile dimple fracture, the best shear strength of the brazing joint at room temperature is 369 MPa, the high temperature shear strength of the brazing joints at 400℃, 500℃and 600℃are 251 MPa, 208 MPa and 84 MPa,respectively.
参考文献
[1] | 孙磊;秦优琼.合金元素Cu对不锈钢钎焊接头组织及性能影响的研究[J].热加工工艺,2014(23):68-71. |
[2] | Wenchun Jiang;Jianming Gong;Shandong Tu;Hu Chen.Modelling of temperature field and residual stress of vacuum brazing for stainless steel plate-fin structure[J].Journal of Materials Processing Technology,20092(2):1105-1110. |
[3] | 周辰琳;高磊;张莹莹;齐洪洋.316L不锈钢钎焊工艺试验[J].热加工工艺,2012(19):196,198. |
[4] | XINJIAN YUAN;MYUNG BOK KIM;CHUNG YUN KANG.Microstructural Evolution and Bonding Behavior during Transient Liquid-Phase Bonding of a Duplex Stainless Steel using two Different Ni-B-Based Filler Materials[J].Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science,20115(5):1310-1324. |
[5] | N.R. PHILIPS;C.G. LEVI;A.G. EVANS.Mechanisms of Microstructure Evolution in an Austenitic Stainless Steel Bond Generated Using a Quaternary Braze Alloy[J].Metallurgical and materials transactions. A, physical metallurgy and materials science,20081(1):142-149. |
[6] | 刘文胜;刘书华;马运柱;蔡青山;刘昊阳;余强;伍镭.基于镍基微晶钎料的钨/钢真空焊接接头的组织及性能[J].中国有色金属学报,2014(12):3051-3058. |
[7] | 经敬楠;于治水;苌文龙;秦优琼.BNi7镍基钎料真空钎焊316L不锈钢接头钎缝的显微组织和显微硬度[J].机械工程材料,2013(1):10-13. |
[8] | 柴静;严彪.Cu-Mn-Ni基钎焊料性能研究[J].金属功能材料,2013(6):15-17. |
[9] | 王鼎钟.一种新型Cu-Mn-Ni-Zn钎料的研制[J].材料开发与应用,2000(04):5-9. |
[10] | 马向阳;俞伟元;路文江;王有良;邓有忠.高强度低熔点铜基钎料的研制[J].热加工工艺,2012(11):133-135. |
[11] | 杨光;李宁;颜家振;苑博.CuMnNiSi钎料钎焊不锈钢接头组织性能研究[J].热加工工艺,2011(9):165-167. |
- 下载量()
- 访问量()
- 您的评分:
-
10%
-
20%
-
30%
-
40%
-
50%