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Graphite-to-304SS Braze Joining by Active Metal-Brazing Technique: Improvement of Mechanical Properties

机译:通过活性金属钎焊技术将石墨与304SS钎焊连接:改善机械性能

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In the present investigation, an attempt has been made to improve the mechanical strength of graphite-stainless steel-brazed joint. Due to high capillary action, the liquid filler alloy usually tends to percolate into the pores of graphite causing severe stress in the graphite near the joint interface resulting in poor joint strength of 10-15 MPa. In the present investigation, a thin coating of SiC was applied on graphite before the joining process to avoid the penetration of liquid filler alloy into the pores of the graphite. Active filler alloy Ag-Cu-Ti was used to braze the substrates. The brazing was carried out at 850, 900, 950, and 1000℃. The characterization of the interfaces of the brazed joints was carried out using scanning electron microscopy attached with energy dispersive spectroscopy and x-ray diffraction analysis. From the correlation between the microstructural and mechanical properties, shear strength of approximately 35 MPa for graphite-304SS-brazed joint produced at 900℃ was demonstrated. After the shear tests, the fracture surfaces were analyzed by SEM-EDS.
机译:在本研究中,已经尝试改善石墨-不锈钢钎焊接头的机械强度。由于高的毛细管作用,液体填充合金通常趋于渗入石墨的孔中,从而在接头界面附近的石墨中产生严重的应力,从而导致10-15 MPa的不良接头强度。在本研究中,在连接过程之前,在石墨上涂了一层SiC薄涂层,以避免液体填充合金渗入石墨的孔中。活性填充合金Ag-Cu-Ti用于钎焊基材。钎焊在850、900、950和1000℃下进行。使用附有能量色散光谱法和X射线衍射分析的扫描电子显微镜对钎焊接头的界面进行表征。从微观结构和力学性能之间的相关性,证明了在900℃下生产的石墨304SS钎焊接头的剪切强度约为35 MPa。剪切试验后,通过SEM-EDS分析断裂表面。

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