Titanium-steel resistance brazed compound metal slice and preparation device and method thereof
A resistance brazing and preparation device technology, applied in the direction of non-electric welding equipment, metal processing equipment, chemical instruments and methods, etc., can solve the problems of poor welding effect, high welding cost, and low welding efficiency, so as to ensure welding performance and improve Improvement of welding efficiency and quality
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Embodiment 1
[0035] First, select vanadium-molybdenum mixed powder and chromium-molybdenum mixed powder with molybdenum powder accounting for 10% by mass for compacting the composite metal sheet, and control the density of the vanadium-molybdenum alloy layer to 0.05g / cm 2 , the density of the chromium-molybdenum alloy layer is controlled to 0.04g / cm 2 .
[0036]Next, the pressed composite metal plate was placed between a titanium alloy plate and a stainless steel plate with dimensions of 80 mm in length, 20 mm in width, and 1.5 mm in thickness for resistance brazing to obtain a welded joint after welding. Among them, the main parameters of resistance brazing are welding current of 3.5KA, welding pressure of 0.5MPa, and welding time of 2S.
Embodiment 2
[0038] Adopt the same method as Example 1 to carry out the preparation of the composite metal sheet and the resistance brazing connection of the titanium alloy plate and the stainless steel plate, and obtain the corresponding welded joint, the only difference is: the density of the vanadium-molybdenum alloy layer is adjusted to 0.04g / cm 2 , the density of the chromium-molybdenum alloy layer is controlled to 0.04g / cm 2 .
Embodiment 3
[0040] Adopt the same method as Example 1 to carry out the preparation of the composite metal sheet and the resistance brazing connection of the titanium alloy plate and the stainless steel plate, and obtain the corresponding welded joint, the only difference is: the density of the vanadium-molybdenum alloy layer is adjusted to 0.06g / cm 2 , the density of the chromium-molybdenum alloy layer is controlled to 0.04g / cm 2 .
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