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首页> 外文期刊>Welding in the World: Journal of the International Institute of Welding: Journal of the International Institute of Welding >Joining of C-f/SiC composite with AuNi(Cu)-Cr brazing fillers and interfacial reactions
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Joining of C-f/SiC composite with AuNi(Cu)-Cr brazing fillers and interfacial reactions

机译:C-f / SiC复合材料与AuNi(Cu)-Cr钎料的连接和界面反应

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Carbon fiber reinforced SiC (C-f/SiC) ceramic matrix composites (CMC), which exhibit excellent properties at high temperatures, have been considered as a desirable high-temperature structural material in aeronautical turbines and advanced rocket propulsion thrust chambers. In many applications, the joining of C-f/SiC to itself or to metals is necessary to fabricate complex structural components and the joints must retain their properties at high temperatures. In the present paper, six AuNi(Cu)-Cr brazing fillers were designed for joining of C-f/SiC composite. The filler alloys were fabricated into foils with a thickness of 0.1 mm by a rapidly solidifying technique. The alloys' wettability on the C-f/SiC composite was studied with the sessile drop method. The result showed that the wettability of AuNi(Cu)-Cr brazing alloys was improved with the increase of the Cr content. The microstructures of the C-f/SiC joints were examined with SEM, EDS and EPMA. It was found that element Cr participated in the interfacial reactions, and a thin Cr3C2 reaction layer was formed between the composite and the brazing fillers. The element Ni significantly diffused into the C-f/SiC matrix and reacted with SiC, and then Ni2Si compound was formed. The C-f/SiC joints brazed with Au-Ni20-Cr10 (wt, %) and Au70-Ni10-Cu10-Cr10 (wt, %) exhibit average three-point bend strengths of 154.5 and 171.6 MPa at room temperature, respectively. However, there is a remarkable difference for the two kinds of joints in bend strength at 600 degrees C, that is, the former is 75.2 MPa while the later decreased to 28.6 MPa. Element Cu in AuNi-Cr system alloys can increase room temperature strength of C-f/SiC joints, but it is harmful to the strength at elevated temperature. When the test temperature reached 700 degrees C, the bend strength of the two kinds of joints was further decreased to 17.7 and 9.8 MPa, respectively.
机译:碳纤维增强的SiC(C-f / SiC)陶瓷基复合材料(CMC)在高温下表现出优异的性能,已被认为是航空涡轮机和先进的火箭推进推力室中理想的高温结构材料。在许多应用中,C-f / SiC自身或金属的连接对于制造复杂的结构部件是必不可少的,并且连接必须在高温下保持其性能。本文设计了六种AuNi(Cu)-Cr钎料用于C-f / SiC复合材料的连接。通过快速凝固技术将填充合金制成厚度为0.1mm的箔。采用无滴法研究了合金在C-f / SiC复合材料上的润湿性。结果表明,随着Cr含量的增加,AuNi(Cu)-Cr钎焊合金的润湿性提高。用SEM,EDS和EPMA检查了C-f / SiC接头的显微组织。发现Cr元素参与界面反应,并且在复合材料和钎料之间形成了薄的Cr 3 C 2反应层。 Ni元素大量扩散到C-f / SiC基体中并与SiC反应,形成Ni2Si化合物。钎焊有Au-Ni20-Cr10(wt,%)和Au70-Ni10-Cu10-Cr10(wt,%)的C-f / SiC接头在室温下的平均三点弯曲强度分别为154.5和171.6 MPa。但是,这两种接头在600摄氏度时的弯曲强度存在显着差异,即前者为75.2 MPa,而后者降至28.6 MPa。 AuNi-Cr系合金中的元素Cu可以提高C-f / SiC接头的室温强度,但对高温下的强度有害。当试验温度达到700℃时,两种接头的弯曲强度分别进一步降低到17.7和9.8MPa。

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