A low-temperature joining method of tzm and wre dissimilar alloys
A connection method and alloy technology, applied in welding equipment, metal processing equipment, welding/welding/cutting articles, etc., can solve the problems of low tensile strength of weld seam, high required temperature, deformation of workpiece, etc., and achieve improvement in high temperature Performance and service life, low equipment vacuum requirements, and the effect of reducing connection temperature
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Embodiment 1
[0041] The low-temperature diffusion welding of the TZM / WRe dissimilar alloy of the present embodiment is carried out as follows:
[0042] step 1,
[0043] The surfaces to be welded of TZM alloy and WRe alloy were pre-grinded with #400, #800, #1000, #1500, #2000 metallographic sandpaper in sequence, then polished and ultrasonically cleaned in alcohol.
[0044] Step 2,
[0045] Weigh 0.0158 g of Ti powder with a particle size of 46 μm with an electronic balance (accuracy of 0.1 mg), so as to ensure that the thickness of the titanium active intermediate layer in the later connector is 60-80 μm.
[0046] Step 3,
[0047] Put the treated TZM alloy, Ti powder and WRe alloy into the graphite female mold sequentially from top to bottom, and then press it tightly with the upper and lower pressure heads, and at the same time make the active middle layer of Ti powder be located in the middle of the height of the graphite female mold .
[0048] Step 4,
[0049] Place the graphite mo...
Embodiment 2
[0057] The low-temperature diffusion welding of the TZM / WRe dissimilar alloy of the present embodiment is carried out as follows:
[0058] step 1,
[0059] The surfaces to be welded of TZM alloy and WRe alloy were pre-grinded with #400, #800, #1000, #1500, #2000 metallographic sandpaper in sequence, then polished and ultrasonically cleaned in alcohol.
[0060] Step 2,
[0061] Weigh 0.0158 g of Ti powder with a particle size of 46 μm with an electronic balance (accuracy: 0.1 mg), so as to ensure that the thickness of the Ti active intermediate layer in the later connector is 60-80 μm.
[0062] Step 3,
[0063] Put the treated TZM alloy, Ti powder and WRe alloy into the graphite female mold sequentially from top to bottom, and then press it tightly with the upper and lower pressure heads, and at the same time make the active middle layer of Ti powder be located in the middle of the height of the graphite female mold .
[0064] Step 4,
[0065] Place the graphite mold with ...
Embodiment 3
[0073] The low-temperature diffusion welding of the TZM / WRe dissimilar alloy of the present embodiment is carried out as follows:
[0074] step 1,
[0075] The surfaces to be welded of TZM alloy and WRe alloy were pre-grinded with #400, #800, #1000, #1500, #2000 metallographic sandpaper in sequence, then polished and ultrasonically cleaned in alcohol.
[0076] Step 2,
[0077] Weigh 0.0158 g of Ti powder with a particle size of 46 μm with an electronic balance (accuracy: 0.1 mg), so as to ensure that the thickness of the Ti active intermediate layer in the later connector is 60-80 μm.
[0078] Step 3,
[0079] Put the treated TZM alloy, Ti powder and WRe alloy into the graphite female mold sequentially from top to bottom, and then press it tightly with the upper and lower pressure heads, and at the same time make the active middle layer of Ti powder be located in the middle of the height of the graphite female mold .
[0080] Step 4,
[0081] Place the graphite mold with ...
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