A magnetic levitation chlorine gas turbine compressor
A turbo-compressor and magnetic levitation technology, applied in the field of compressors, can solve problems such as the inability of the turbo-compressor to form an effective vacuum, chlorine leakage from the compressor, and equipment corrosion, and achieve long-term wear-free operation, short start-stop time, and prevent The effect of corrosion
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Embodiment 1
[0024]The magnetic levitation chlorine gas turbine compressor of the present invention comprises a compression part 1, a main shaft 2 and a magneto 3, one end of the main shaft 2 is connected in series in the compression part 1, and the other end is connected in series in the magneto 3, and the magneto When the motor 3 rotates at high speed, the first-stage impeller 4 and the second-stage impeller 5 in the compression part 1 rotate synchronously, and the centrifugal force generated by the high-speed rotation of the impeller does work on the chlorine flow, so that it obtains kinetic energy and static pressure energy, and expands through the volute 6. pressure to increase the pressure of the chlorine gas flow to realize delivery; the compression part 1 is provided with a volute 6, a primary impeller 4, a secondary impeller 5, a primary wheel cover sealer 7, a secondary wheel cover sealer 8, a stage Intermediate shaft sleeve 9, interstage sealer 10, balance drum 11, balance drum s...
Embodiment 2
[0031] The magnetic levitation chlorine gas turbine compressor of the present invention comprises a compression part 1, a main shaft 2 and a magneto 3, one end of the main shaft 2 is connected in series in the compression part 1, and the other end is connected in series in the magneto 3, and the magneto When the motor 3 rotates at high speed, the first-stage impeller 4 and the second-stage impeller 5 in the compression part 1 rotate synchronously, and the centrifugal force generated by the high-speed rotation of the impeller does work on the chlorine flow, so that it obtains kinetic energy and static pressure energy, and expands through the volute 6. pressure to increase the pressure of the chlorine gas flow to realize delivery; the compression part 1 is provided with a volute 6, a primary impeller 4, a secondary impeller 5, a primary wheel cover sealer 7, a secondary wheel cover sealer 8, a stage Intermediate shaft sleeve 9, interstage sealer 10, balance drum 11, balance drum ...
Embodiment 3
[0038] The magnetic levitation chlorine gas turbine compressor of the present invention comprises a compression part 1, a main shaft 2 and a magneto 3, one end of the main shaft 2 is connected in series in the compression part 1, and the other end is connected in series in the magneto 3, and the magneto When the motor 3 rotates at high speed, the first-stage impeller 4 and the second-stage impeller 5 in the compression part 1 rotate synchronously, and the centrifugal force generated by the high-speed rotation of the impeller does work on the chlorine flow, so that it obtains kinetic energy and static pressure energy, and expands through the volute 6. pressure to increase the pressure of the chlorine gas flow to realize delivery; the compression part 1 is provided with a volute 6, a primary impeller 4, a secondary impeller 5, a primary wheel cover sealer 7, a secondary wheel cover sealer 8, a stage Intermediate shaft sleeve 9, interstage sealer 10, balance drum 11, balance drum ...
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