Brazing of titanium-vapor-coated silicon nitride

M. Santella
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引用次数: 19

Abstract

A technique for brazing Si{sub 3}N{sub 4} with metallic alloys was evaluated. The process involved vapor coating the ceramic with a 1.0-{mu}-thick layer of titanium before the brazing operation. The coating improved wetting of the Si{sub 3}N{sub 4} surfaces to the extent that strong bonding between the solidified braze filler metal and the ceramic occurred. Braze joints of Si{sub 3}N{sub 4} were made with Ag-Cu, Au-Ni, and Au-Ni-Pd alloys at temperatures of 790{degree}, 970{degree}, and 1,130{degree}C. Silicon nitride specimens were also brazed with a Ag-Cu alloy to the molybdenum alloy TZM, titanium, and A286 steel at 790{degree}C. Residual stresses resulting from mismatch of thermal expansion coefficients between the Si{sub 3}N{sub 4} and the metals caused all of the ceramic-to-metal joints to spontaneously crack in the Si{sub 3}N{sub 4} upon cooling from the brazing temperature.
钛气相涂层氮化硅的钎焊
研究了金属合金钎焊Si{sub 3}N{sub 4}的工艺。该工艺涉及在钎焊操作之前,在陶瓷上蒸汽涂层1.0-{mu}厚的钛层。该涂层改善了Si{sub 3}N{sub 4}表面的润湿性,使凝固的钎料金属与陶瓷之间发生了牢固的结合。用Ag-Cu、Au-Ni和Au-Ni- pd合金在790°C、970°C和1130°C的温度下钎焊Si{sub 3}N{sub 4}。氮化硅试样也用Ag-Cu合金钎焊到钼合金TZM、钛和A286钢上,温度为790℃。由于Si{sub 3}N{sub 4}与金属之间的热膨胀系数不匹配而产生的残余应力导致Si{sub 3}N{sub 4}在钎焊温度冷却后,所有的陶瓷-金属接头都自发开裂。
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