Horizontal continuous casting device and method for horizontal continuous casting of easily oxidized copper alloy using the device
A technology of horizontal continuous casting and copper oxidation, which is applied in the field of horizontal continuous casting equipment and easily oxidized copper alloy horizontal continuous casting. The effect of qualified rate and convenient operation
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Embodiment 1
[0025] The horizontal continuous casting device of embodiment 1 is as figure 1 As shown, the furnace body 7 and the crucible 1 located in the furnace body 7 are included, the top of the furnace body 7 is provided with a furnace cover 16, and the bottom of the furnace body 7 inner cavity is provided with a crucible seat 8, and the crucible 7 is located on the crucible seat 8; The bottom of the side of the crucible 1 is provided with a melt outlet, and the end of the pipeline of the melt outlet passes through the furnace body 7 and is connected with a crystallizer. Set 3; the pipe of the solution outlet is plugged with a screw propulsion rod 9, the front end of the screw propulsion rod 9 extends into the crystallizer and fits with the inside of the crystallizer, and the rear end corresponds from the other side in the opposite direction The position passes through the furnace body 7 and cooperates with the drive motor 14 for transmission. When working, the screw propulsion rod 9...
Embodiment 2
[0032] The horizontal continuous casting device of embodiment 2, such as figure 2 As shown, the difference from Embodiment 1 is that the transmission is a chain transmission, that is, the rear end of the screw propulsion rod 9 passes through the crucible 1 and is provided with a driven sprocket 11, which is connected with the The driving sprocket 11 on the driving shaft of the driving motor 14 is connected through the transmission chain 12; a sealing sleeve 10 is provided between the screw propulsion rod 9 and the hole wall passing through the crucible. In the horizontal continuous casting device of this embodiment, the transmission motor is kept away from the high temperature position of the furnace body through chain transmission, so as to ensure the stability of the transmission and prolong the service life of the transmission motor.
[0033] The method for horizontal continuous casting of easily oxidizable copper alloy of the present embodiment uses the above-mentioned ho...
Embodiment 3
[0038] The horizontal continuous casting device of embodiment 3 is different from embodiment 1 in that: the outlet of the melt is located at the bottom of the crucible, the pipe of the outlet of the melt is an L-shaped elbow, and the screw propulsion rod is arranged at the bottom of the L-shaped bend. In the horizontal section of the tube, the front end of the screw propulsion rod extends into the crystallizer, and the rear end goes out of the bent tube in the opposite direction and is used for transmission cooperation with the drive motor. In the horizontal continuous casting device of this embodiment, the screw propulsion rod is located below the crucible without passing through the crucible wall, which reduces the difficulty of crucible processing and dynamic sealing, saves cost, and is convenient for installation and maintenance.
[0039] The method for horizontal continuous casting of easily oxidizable copper alloy of the present embodiment uses the above-mentioned horizon...
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