2017
DOI: 10.1016/j.jmapro.2017.10.021
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Brazing ZrB2-SiC ceramics to Ti6Al4V alloy with TiCu-based amorphous filler

Abstract: In this work, the Ti-6Al-4V alloy and ZrB 2 -SiC ultra-high temperature ceramic joint was brazed by TiCuZrNi amorphous filler at 910℃ with varied holding time. The element diffusion, microstructure and precipitation phase of the joints were analyzed in details. Reaction products in the joints were identified as β-Ti, (Ti,Zr) 2 (Cu,Ni), TiCu, Ti 2 Cu, TiC, Ti 5 Si 3 , TiB and TiB 2. The formation schemes of reaction products were investigated. The holding time has substantial impacts on interfacial microstructu… Show more

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Cited by 44 publications
(20 citation statements)
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References 29 publications
(23 reference statements)
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“…Such identification of Ti 2 (Cu,Ni) was also obtained by Qin and Feng in brazing CFC/TC4 using Cu and Mo interlayers . The EDS result of microzone W indicates that the light‐gray area in the filler layer corresponds to Ti(Cu,Ni), which is in agreement with the result obtained by Liu et al…”
Section: Resultssupporting
confidence: 89%
“…Such identification of Ti 2 (Cu,Ni) was also obtained by Qin and Feng in brazing CFC/TC4 using Cu and Mo interlayers . The EDS result of microzone W indicates that the light‐gray area in the filler layer corresponds to Ti(Cu,Ni), which is in agreement with the result obtained by Liu et al…”
Section: Resultssupporting
confidence: 89%
“…The thickness of the foil was about 30 µm. The solidus and liquidus temperature of the foil were 1103 K and 1143 K, respectively [27]. The amorphous structure of the brazing foil was examined by an X-ray diffraction (XRD, D8, Bruker, Germany) using Cu Kα radiation.…”
Section: Methodsmentioning
confidence: 99%
“…TiB whisker formation has an effective influence on the strengthening of the joints. Other authors [39] achieved better results on the brazing of Ti6Al4V to ZrB2-SiC ceramic using TiCu-based amorphous filler. The brazing temperature used was 910 °C , with a dwell time ranging from 10 to 50 min under 1.4 kPa of contact pressure.…”
Section: Brazing Of Titanium Alloys To Other Ceramicsmentioning
confidence: 95%
“…However, the joining of this ceramic to metallic parts is essential for Figure 14. Schematic of the formation of each reaction layer during the brazing process: (a-c) show the interaction between filler and base metal; (d) the filler begins to melt; (e) the molten brazing alloy wetted the surface of base metals; (f) the formation of Ti 5 Si 3 and TiC; (g) the formation of TiB and TiB 2 ; (h) the formation of Ti 2 Cu and TiCu; (i) the formation of (Ti,Zr) 2 (Cu,Ni) and β-Ti during the cooling process, reproduced from Reference [39] with permission of Elsevier, 2017.…”
Section: Brazing Of Titanium Alloys To Other Ceramicsmentioning
confidence: 99%