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Immersing Treatment of Steel Plate Surface in Steel-Aluminum Solid to Liquid Bonding 被引量:2

Immersing Treatment of Steel Plate Surface in Steel-Aluminum Solid to Liquid Bonding
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摘要 The interfacial status of the steel-aluminum solid to liquid bonding plates (their steel plate surfaces were or were not immersed in flux aqueous solution) were measured by using SEM (Scanning Electron Microscope) and X-ray diffraction . The results showed that the layer of flux (the minimum thickness was 15 μm on the steel plate surface) could protect the steel plate surface from oxidizing effectively at high temperature in solid to liquid bonding. The melt temperatUre of the flux should be lower than 580 ℃ so that it could be melted and removed completely. No. 1 flux (patent product made by the author) made up of halogeindes could also force liquid aluminum to infiltrate into steel plate surface and thus the interfacial shear strength of the bonding plate was rather large. The interfacial status of the steel-aluminum solid to liquid bonding plates (their steel plate surfaces were or were not immersed in flux aqueous solution) were measured by using SEM (Scanning Electron Microscope) and X-ray diffraction . The results showed that the layer of flux (the minimum thickness was 15 μm on the steel plate surface) could protect the steel plate surface from oxidizing effectively at high temperature in solid to liquid bonding. The melt temperatUre of the flux should be lower than 580 ℃ so that it could be melted and removed completely. No. 1 flux (patent product made by the author) made up of halogeindes could also force liquid aluminum to infiltrate into steel plate surface and thus the interfacial shear strength of the bonding plate was rather large.
出处 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 1999年第1期57-60,共4页 矿物冶金与材料学报(英文版)
关键词 steel-aluminum SOLID to LIQUID BONDING PLATE steel PLATE surface immerse flux MELT temperature INTERFACIAL shear shrength steel-aluminum solid to liquid bonding plate steel plate surface immerse, flux, melt temperature interfacial shear shrength
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