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- W2014408024 abstract "Partial-transient liquid-phase brazing of Al2O3–stainless steel (SS) 304 using a Ni–Cr foil as a refractory layer in brazing filler metals was investigated in a vacuum environment, and the microstructures in the joints were studied in detail. The cross-sectioned microstructures at joint interfaces show multilayered structures. Six characteristic zones can be distinguished in the joint, named as base alumina zone, titanium reaction zone, roughly homogenized filler materials zone, discontinuous precipitation zone, metallic brazing zone, and base metal zone. The main corresponding phases of these six zones are Al2O3(I), TiO+CuTiO4(II), Ni(Cu)–Cr–Ti(III), Ni(Cu)–Cr+Ti+Fe–Ti(IV), SS304 (V, VI), respectively. Experimental results demonstrated that the formation of TiO and CuTiO4can improve greatly the wettability of Al2O3, and, thus, the good joint was obtained at the interface of Al2O3and filler metal. Part of the Ti atoms can diffuse into the interface between SS304 and filler materials and form intermetallics, which precipitate as hard and brittle precipitation during the cooling stage." @default.
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- W2014408024 date "2003-01-04" @default.
- W2014408024 modified "2023-10-07" @default.
- W2014408024 title "PTLP Joining of Al<sub>2</sub>O<sub>3</sub>‐Stainless Steel 304 Using Ni‐Cr Foil—The Microstructure Morphologies of Joint Interfaces" @default.
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- W2014408024 doi "https://doi.org/10.1081/amp-120018904" @default.
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