CN212250401U - Permanent magnet frequency conversion two-stage compression water-cooling compressor - Google Patents

Permanent magnet frequency conversion two-stage compression water-cooling compressor Download PDF

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Publication number
CN212250401U
CN212250401U CN202020832994.4U CN202020832994U CN212250401U CN 212250401 U CN212250401 U CN 212250401U CN 202020832994 U CN202020832994 U CN 202020832994U CN 212250401 U CN212250401 U CN 212250401U
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water
fixed
body shell
sliding
compressor
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王荥
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Zhejiang Delage Machinery Co ltd
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Zhejiang Delage Machinery Co ltd
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Abstract

The utility model discloses a permanent magnet frequency conversion two-stage compression water-cooling compressor, which comprises a machine body shell, a base and a compressor unit, wherein the base is fixed on the machine body shell, and a compressor unit is arranged in the machine body shell, an outlet is arranged on the surface of the machine body shell, the outlet of the machine body shell is rotationally connected with a first folding door group through a rotating shaft, the permanent magnet frequency conversion two-stage compression water-cooling compressor, the equipment in the shell of the machine body is convenient to maintain under the matching action of the translation mechanism and the first folding door group and the second folding door group, under the action of the water circulation mechanism, the heat dissipation effect of the compressor is realized, meanwhile, the water is recycled, under the matching action of the transmission mechanism and the rotating mechanism, the control of the water yield is realized, so that the optimal water yield can be selected according to different powers of the compressor, and the efficient heat dissipation of the compressor is realized.

Description

Permanent magnet frequency conversion two-stage compression water-cooling compressor
Technical Field
The utility model relates to a water-cooled compressor technical field specifically is a permanent magnetism frequency conversion second grade compression water-cooled compressor.
Background
The water-cooled compressor is a compressor in which a cylinder is cooled by water. The cylinder (including cylinder body, cylinder cover and cylinder seat) is equipped with a water jacket for cooling water circulation. When the compressor runs, the cooling water flowing in the water jacket continuously takes away part of hot piers of compressed gas in the cylinder, thereby reducing the exhaust temperature and power consumption of the compressor, cooling the cylinder, keeping the cylinder wall at a certain temperature and ensuring the normal running of the compressor. The water cooling effect is better than the air cooling effect, but the structures of the air cylinder and the like are more complex. According to the heat exchange rule display of the cooling water of the cylinder, the heat exchange quantity of the cylinder cannot be increased by increasing the cooling water quantity. The optimal value moves to the direction of small flow along with the increase of the rotating speed, and the excessive cooling water quantity can cause the reduction of heat exchange quantity and the increase of power consumption. When the compressor works at a relatively high speed, the heat exchange amount of cooling water is relatively large at a small flow rate, but after the flow rate exceeds the optimal flow rate, the heat exchange amount is obviously reduced. The specific power is steadily increased along with the increase of the flow of the cooling water.
In reality, a shell of a water-cooled compressor is usually fixed by screws and is inconvenient to maintain, and a common water-cooled compressor is difficult to discharge water according to the optimal water flow required by heat dissipation of a compressor body, so that the power of the compressor body is reduced.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a convenient maintenance, and the permanent magnetism frequency conversion second grade compression water-cooling compressor of the best flow of steerable water yield regulation to solve the problem that proposes among the above-mentioned background art.
In order to achieve the above object, the utility model provides a following technical scheme: the utility model provides a permanent magnetism frequency conversion second grade compression water-cooling compressor, includes engine body shell, base and compressor unit, engine body shell is fixed with the base, and the inside compressor unit that is equipped with of engine body shell, the export has been seted up on the engine body shell surface, and the engine body shell exit rotates through the pivot and is connected with first folding door group, the first folding door group of engine body shell exit symmetry rotates and is connected with the folding door group of second, the engine body shell exit is equipped with the translation mechanism of being convenient for open closed export, and translation mechanism and first folding door group and the second folding door group are the transmission and are connected, be equipped with the hydrologic cycle mechanism of the recycling water of being convenient for in the engine body shell, and the hydrologic cycle mechanism output is equipped with the drive mechanism of being convenient for control outlet end water yield on the surface, the drive mechanism.
Preferably, the translation mechanism comprises a sliding plate, a first sliding block, a second sliding block, a driven sprocket, a driving motor, a first fixed block, a second fixed block and a chain, the sliding plate is fixed on the surface of the machine body shell, the first folding door group and the second folding door group are respectively and fixedly connected with the first sliding block and the second sliding block, the first sliding block and the second sliding block are both in sliding connection with the sliding plate, the top of the sliding plate is provided with the driving motor, the output end of the driving motor is fixedly connected with the driving sprocket, the machine body shell is provided with the driven sprocket corresponding to the driving sprocket, the driving sprocket and the driven sprocket are in transmission connection through the chain, the driving sprocket and one side of the driven sprocket far away from the driving motor are both in rotation connection with the machine body shell through a rotating shaft, the top of the first sliding block is fixedly provided with the first fixed block, and the, and a second fixed block is fixed at the top of the second sliding block and is fixedly connected with the lower end of the chain.
Preferably, hydrologic cycle mechanism is including absorbing water base, first water pump, inlet tube, water tank, water pipe, second water pump and outlet pipe, the base that absorbs water is fixed in the compressor unit bottom, absorb water base bottom one side and lead to the input of the first water pump of water pipe fixedly connected with, and the output of first water pump leads to pipe fixedly connected with water tank, and water tank and engine body shell inner wall fixed connection, engine body shell is fixed with the inlet tube is passed to water tank one side, and the input of water tank opposite side lead to pipe fixedly connected with second water pump, the output bottom fixedly connected with outlet pipe of second water pump.
Preferably, drive mechanism includes electric putter, translation spout, sliding strip, rotation groove, first spacing groove, second spacing groove and translation passageway, electric putter one side fixedly connected with translation spout, the translation spout is fixed on the water pipe surface, translation spout fixedly connected with rotation groove is passed to electric putter's output, translation spout bilateral symmetry has the sliding strip, and rotates the groove and pass through sliding strip and translation spout sliding connection, the translation passageway has been seted up on the surface to the rotation groove, and translation passageway bilateral symmetry is equipped with first spacing groove and second spacing groove.
Preferably, slewing mechanism includes first commentaries on classics board, second commentaries on classics board, first fixed cover, spliced pole, first protruding post, the protruding post of second, the fixed cover of second, first roof and second roof, first commentaries on classics board one side is fixed with first fixed cover, first commentaries on classics board is located the inside symmetry of water pipe and has the second commentaries on classics board, and the second commentaries on classics board is close to one side of first commentaries on classics board and is fixed with the fixed cover of second, the fixed cover of second and the crisscross slip grafting of first fixed cover have the spliced pole, the fixed cover top of second and the spliced pole top are fixed with second roof and first roof respectively, and first roof bottom and second roof top are fixed with first protruding post and the protruding post of second respectively, spliced pole and drive mechanism's rotation groove sliding contact, and first protruding post and the protruding post of second are respectively in first spacing groove and second spacing groove sliding connection.
Preferably, the top surface of the water absorption base is equidistantly provided with water absorption holes.
Compared with the prior art, the beneficial effects of the utility model are that:
the utility model discloses a driving motor drives the drive sprocket rotation when the device uses, because drive sprocket and driven sprocket are chain meshing transmission and are connected, make first fixed block and second fixed block do reverse movement, under the effect of first sliding block and second sliding block and sliding plate, realize the folding of first folding door group and second folding door group and open and shut, pour into water into the water tank from the water inlet, then dispel the heat to the compressor body under the effect of actuating mechanism and slewing mechanism, electric putter promotes the rotating groove and slides in translation spout, when the spliced pole moves along with the translation passageway of rotating groove, because the limiting displacement of first protruding post and second protruding post, realize that first rotor plate and second rotor plate rotate under the effect of electric putter, thereby realize the control to the discharge, this kind of permanent magnetism frequency conversion second grade compression water-cooled compressor, at the cooperation effect of translation mechanism and first folding door group and second folding door group, the device is convenient to maintain the inside of the machine shell, realizes the recycling of water while realizing the heat dissipation effect on the compressor under the action of the water circulation mechanism, realizes the control on the water yield under the matching effect of the transmission mechanism and the rotating mechanism, and can select the optimal water yield aiming at different powers of the compressor, thereby realizing the efficient heat dissipation of the compressor.
Drawings
FIG. 1 is a schematic view of the overall structure of the present invention;
FIG. 2 is a schematic view of the internal structure of the present invention;
FIG. 3 is a schematic structural view of the translation mechanism of the present invention;
FIG. 4 is a schematic view of the structure of the transmission mechanism of the present invention;
FIG. 5 is a schematic view of the connection between the transmission mechanism and the rotation mechanism of the present invention;
fig. 6 is a schematic view of the structure of the rotating mechanism of the present invention.
In the figure: 1. a body housing; 2. a base; 3. a translation mechanism; 31. a sliding plate; 32. a first slider; 33. a second slider; 34. a driven sprocket; 35. a drive sprocket; 36. a drive motor; 37. a first fixed block; 38. a second fixed block; 39. a chain; 4. a first folding door group; 5. a second folding door group; 6. a compressor unit; 7. a water circulation mechanism; 71. a water absorption base; 72. a first water pump; 73. a water inlet pipe; 74. a water tank; 75. a water pipe; 76. a second water pump; 77. a water outlet pipe; 8. a transmission mechanism; 81. an electric push rod; 82. a translation chute; 83. a slide bar; 84. a rotating groove; 85. a first limit groove; 86. a second limit groove; 87. a translation channel; 9. a rotating mechanism; 91. a first rotating plate; 92. a second rotating plate; 93. a first fixing sleeve; 94. connecting columns; 95. a first raised column; 96. a second raised column; 97. a second fixing sleeve; 98. a first top plate; 99. a second top panel.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1, a permanent magnet frequency conversion two-stage compression water-cooling compressor in the figure includes a machine body shell 1, a base 2 and a compressor unit 6, the machine body shell 1 is fixed with the base 2, the compressor unit 6 is arranged inside the machine body shell 1, and the compressor unit 6 is the prior art and has the same structure and working principle as the existing permanent magnet frequency conversion two-stage compressor.
Referring to fig. 1 and 2, an outlet is formed in the surface of the housing 1, the outlet of the housing 1 is rotatably connected to a first folding door group 4 through a rotating shaft, the outlet of the housing 1 is symmetrically connected to a second folding door group 5 through the first folding door group 4, a translation mechanism 3 for opening and closing the outlet is arranged at the outlet of the housing 1, the translation mechanism 3 is in transmission connection with the first folding door group 4 and the second folding door group 5, a water circulation mechanism 7 for circulating water is arranged in the housing 1, a transmission mechanism 8 for controlling the water output of the water output end is arranged on the surface of the output end of the water circulation mechanism 7, a rotating mechanism 9 for controlling the water output is in transmission connection with the bottom of the transmission mechanism 8, and the equipment for maintaining the interior of the housing 1 is realized through the cooperation of the translation mechanism 3 with the first folding door group 4 and the second folding door group 5, under the action of the water circulation mechanism 7, the effect of heat dissipation of the compressor is achieved, meanwhile, the water recycling is achieved, and under the matching effect of the transmission mechanism 8 and the rotating mechanism 9, the control over the water yield is achieved, so that the optimal water yield can be selected according to different power of the compressor, and efficient heat dissipation of the compressor is achieved.
Referring to fig. 3, the translation mechanism 3 includes a sliding plate 31, a first sliding block 32, a second sliding block 33, a driven sprocket 34, a driving sprocket 35, a driving motor 36, a first fixing block 37, a second fixing block 38 and a chain 39, the sliding plate 31 is fixed on the surface of the machine body housing 1, the first folding door set 4 and the second folding door set 5 are respectively and fixedly connected with the first sliding block 32 and the second sliding block 33, the first sliding block 32 and the second sliding block 33 are both connected with the sliding plate 31 in a sliding manner, the top of the sliding plate 31 is provided with the driving motor 36, the output end of the driving motor 36 is fixedly connected with the driving sprocket 35, the machine body housing 1 is provided with the driven sprocket 34 corresponding to the driving sprocket 35, the driving sprocket 35 and the driven sprocket 34 are connected by the chain 39 in a transmission manner, the sides of the driving sprocket 35 and the driven sprocket 34 far away from the driving motor 36 are both rotatably connected with the, first sliding block 32 top is fixed with first fixed block 37, and first fixed block 37 and 39 upper end fixed connections of chain, second sliding block 33 top is fixed with second fixed block 38, and second fixed block 38 and 39 lower extremes fixed connection of chain, and driving motor 36 drives drive sprocket 35 and rotates, because drive sprocket 35 is chain 39 meshing transmission with driven sprocket 34 and is connected, makes first fixed block 37 and second fixed block 38 do the reverse migration, under the effect of first sliding block 32 and second sliding block 33 and sliding plate 31, realize the folding shutting function of first folding door group 4 and second folding door group 5, the later stage staff of being convenient for maintains the clearance to engine body shell 1 inside.
Referring to fig. 2, the water circulation mechanism 7 includes a water absorption base 71, a first water pump 72, a water inlet pipe 73, a water tank 74, a water pipe 75, a second water pump 76 and a water outlet pipe 77, the water absorption base 71 is fixed at the bottom of the compressor unit 6, one side of the bottom of the water absorption base 71 is fixedly connected with an input end of the first water pump 72 through the water pipe 75, an output end of the first water pump 72 is fixedly connected with the water tank 74 through the water pipe 75, the water tank 74 is fixedly connected with the inner wall of the machine body housing 1, one side of the water tank 74 penetrates through the machine body housing 1 and is fixed with the water inlet pipe 73, the other side of the water tank 74 is fixedly connected with an input end of the second water pump 76 through the water pipe 75, the bottom of the output end of the second water pump 76 is fixedly connected with the water outlet pipe 77, water is injected into the water tank 74 from the, the water is recycled by the first water pump 72 returning to the water tank 74.
Referring to fig. 4, the transmission mechanism 8 includes an electric push rod 81, a translational sliding chute 82, a sliding bar 83, a rotating groove 84, a first limiting groove 85, a second limiting groove 86, and a translational channel 87, one side of the electric push rod 81 is fixedly connected with the translational sliding chute 82, the translational sliding chute 82 is fixed on the surface of the water pipe 75, an output end of the electric push rod 81 passes through the translational sliding chute 82 and is fixedly connected with the rotating groove 84, the sliding bar 83 is symmetrically arranged on two sides of the translational sliding chute 82, the rotating groove 84 is slidably connected with the translational sliding chute 82 through the sliding bar 83, the translational channel 87 is arranged on the surface of the rotating groove 84, the first limiting groove 85 and the second limiting groove 86 are symmetrically arranged on two sides of the translational channel 87, the electric push rod 81 pushes the rotating groove 84 to slide in the translational sliding chute 82, and by matching with the rotating mechanism 9, the control of the water flow is realized, the optimal water yield, and the working efficiency of the compressor body is not affected.
Referring to fig. 5 and 6, the rotating mechanism 9 includes a first rotating plate 91, a second rotating plate 92, a first fixing sleeve 93, a connecting column 94, a first protruding column 95, a second protruding column 96, a second fixing sleeve 97, a first top plate 98 and a second top plate 99, the first fixing sleeve 93 is fixed on one side of the first rotating plate 91, the second rotating plate 92 is symmetrically arranged inside the water pipe 75 on the first rotating plate 91, the second fixing sleeve 97 is fixed on one side of the second rotating plate 92 close to the first rotating plate 91, the connecting column 94 is inserted in the second fixing sleeve 97 and the first fixing sleeve 93 in a staggered and sliding manner, the second top plate 99 and the first top plate 98 are respectively fixed on the top of the second fixing sleeve 97 and the top of the connecting column 94, the first protruding column 95 and the second protruding column 96 are respectively fixed on the bottom of the first top plate 98 and the top of the second top plate 99, the connecting column 94 is in sliding contact with the rotating groove 84 of the transmission mechanism 8, and first protruding post 95 and second protruding post 96 are respectively in first spacing groove 85 and second spacing groove 86 sliding connection, second commentaries on classics board 92 passes through the crisscross slip grafting of second fixed cover 97 and first commentaries on classics board 91 on the surface of spliced pole 94, and spliced pole 94 top and rotation groove 84 sliding contact, when spliced pole 94 moves along with the translation passageway 87 of rotation groove 84, because the limiting displacement of first protruding post 95 and second protruding post 96, realize that first commentaries on classics board 91 rotates under electric putter 81 with second commentaries on classics board 92 to the realization is to the control of discharge.
Referring to fig. 2, the top surface of the water absorption base 71 is provided with water absorption holes at equal intervals, so that the water after being cooled is conveniently recovered and treated, and the water is fully utilized.
In the scheme, when the device is used, the driving motor 36 drives the driving sprocket 35 to rotate, the driving sprocket 35 and the driven sprocket 34 are in meshed transmission connection through the chain 39, so that the first fixed block 37 and the second fixed block 38 move reversely, the first folding door group 4 and the second folding door group 5 are folded and opened under the action of the first sliding block 32, the second sliding block 33 and the sliding plate 31, water is filled into the water tank 74 from a water inlet, then the compressor body is cooled under the action of the driving mechanism and the rotating mechanism 9, the electric push rod 81 pushes the rotating groove 84 to slide in the translation sliding groove 82, when the connecting column 94 moves along with the translation channel 87 of the rotating groove 84, the first rotating plate 91 and the second rotating plate 92 rotate under the action of the electric push rod 81 due to the limiting effect of the first protruding column 95 and the second protruding column 96, and accordingly the control of water flow is realized, this kind of permanent magnetism frequency conversion second grade compression water-cooled compressor, at the mating reaction of translation mechanism 3 with first folding door group 4 and second folding door group 5, realized being convenient for maintain the inside equipment of engine body shell 1, under the effect of hydrologic cycle mechanism 7, when having realized carrying out radiating effect to the compressor, realize the cyclic utilization of water, under the mating reaction of drive mechanism 8 and slewing mechanism 9, realized the control to the water yield, make it can be directed against the different power of compressor, select the best water yield, thereby realize the heat dissipation to the compressor efficient.
It is noted that, herein, relational terms such as first and second, and the like may be used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Also, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (6)

1. The utility model provides a permanent magnetism frequency conversion second grade compression water-cooling compressor, includes engine body shell (1), base (2) and compressor unit (6), engine body shell (1) is fixed with base (2), and engine body shell (1) inside is equipped with compressor unit (6), its characterized in that: the export has been seted up on engine body shell (1) surface, and engine body shell (1) exit rotates through the pivot and is connected with first folding door group (4), engine body shell (1) exit symmetry first folding door group (4) rotate and are connected with second folding door group (5), engine body shell (1) exit is equipped with translation mechanism (3) of being convenient for open closed export, and translation mechanism (3) are the transmission with first folding door group (4) and second folding door group (5) and are connected, be equipped with water circulation mechanism (7) of being convenient for the recycling water in engine body shell (1), and be equipped with drive mechanism (8) of being convenient for control water outlet end water yield on water circulation mechanism (7) output surface, drive mechanism (8) bottom transmission is connected with slewing mechanism (9) of being convenient for control water yield.
2. The permanent magnet variable frequency two-stage compression water-cooled compressor of claim 1, characterized in that: the translation mechanism (3) comprises a sliding plate (31), a first sliding block (32), a second sliding block (33), a driven chain wheel (34), a driving chain wheel (35), a driving motor (36), a first fixed block (37), a second fixed block (38) and a chain (39), the sliding plate (31) is fixed on the surface of the machine body shell (1), the first folding door group (4) and the second folding door group (5) are respectively and fixedly connected with the first sliding block (32) and the second sliding block (33), the first sliding block (32) and the second sliding block (33) are both in sliding connection with the sliding plate (31), the top of the sliding plate (31) is provided with the driving motor (36), the output end of the driving motor (36) is fixedly connected with the driving chain wheel (35), the position of the machine body shell (1) corresponding to the driving chain wheel (35) is provided with the driven chain wheel (34), and drive sprocket (35) and driven sprocket (34) are connected through chain (39) transmission, drive sprocket (35) and driven sprocket (34) are kept away from one side of driving motor (36) and are all rotated through pivot and engine body shell (1) and be connected, first sliding block (32) top is fixed with first fixed block (37), and first fixed block (37) and chain (39) upper end fixed connection, second sliding block (33) top is fixed with second fixed block (38), and second fixed block (38) and chain (39) lower extreme fixed connection.
3. The permanent magnet variable frequency two-stage compression water-cooled compressor of claim 2, characterized in that: the water circulation mechanism (7) comprises a water absorption base (71), a first water pump (72), a water inlet pipe (73), a water tank (74), a water pipe (75), a second water pump (76) and a water outlet pipe (77), the water absorption base (71) is fixed at the bottom of the compressor unit (6), one side of the bottom of the water absorption base (71) is fixedly connected with the input end of a first water pump (72) through a water pipe (75), and the output end of the first water pump (72) is fixedly connected with a water tank (74) through a water pipe (75), the water tank (74) is fixedly connected with the inner wall of the machine body shell (1), one side of the water tank (74) penetrates through the machine body shell (1) to be fixed with a water inlet pipe (73), and the other side of the water tank (74) is fixedly connected with the input end of a second water pump (76) through a water pipe (75), the bottom of the output end of the second water pump (76) is fixedly connected with a water outlet pipe (77).
4. The permanent magnet variable frequency two-stage compression water-cooled compressor of claim 1, characterized in that: drive mechanism (8) include electric putter (81), translation spout (82), sliding strip (83), rotate groove (84), first spacing groove (85), second spacing groove (86) and translation passageway (87), electric putter (81) one side fixedly connected with translation spout (82), translation spout (82) are fixed on water pipe (75) surface, translation spout (82) fixedly connected with rotation groove (84) are passed to the output of electric putter (81), translation spout (82) bilateral symmetry has sliding strip (83), and rotates groove (84) through sliding strip (83) and translation spout (82) sliding connection, translation passageway (87) have been seted up on the surface to rotation groove (84), and translation passageway (87) bilateral symmetry is equipped with first spacing groove (85) and second spacing groove (86).
5. The permanent magnet variable frequency two-stage compression water-cooled compressor of claim 1, characterized in that: the rotating mechanism (9) comprises a first rotating plate (91), a second rotating plate (92), a first fixing sleeve (93), a connecting column (94), a first protruding column (95), a second protruding column (96), a second fixing sleeve (97), a first top plate (98) and a second top plate (99), wherein the first fixing sleeve (93) is fixed on one side of the first rotating plate (91), the second rotating plate (92) is symmetrically arranged inside the water pipe (75) on the first rotating plate (91), the second fixing sleeve (97) is fixed on one side, close to the first rotating plate (91), of the second rotating plate (92), the connecting column (94) is inserted in the second fixing sleeve (97) and the first fixing sleeve (93) in a staggered and sliding mode, the top of the second fixing sleeve (97) and the top of the connecting column (94) are respectively fixed with the second top plate (99) and the first top plate (98) and the top of the second top plate (99) are respectively fixed with the first protruding column (95) and the second protruding column (96), the connecting column (94) is in sliding contact with the rotating groove (84) of the transmission mechanism (8), and the first protruding column (95) and the second protruding column (96) are in sliding connection with the first limiting groove (85) and the second limiting groove (86) respectively.
6. The permanent magnet variable frequency two-stage compression water-cooled compressor of claim 3, characterized in that: the top surface of the water absorption base (71) is provided with water absorption holes at equal intervals.
CN202020832994.4U 2020-05-19 2020-05-19 Permanent magnet frequency conversion two-stage compression water-cooling compressor Active CN212250401U (en)

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Application Number Priority Date Filing Date Title
CN202020832994.4U CN212250401U (en) 2020-05-19 2020-05-19 Permanent magnet frequency conversion two-stage compression water-cooling compressor

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020832994.4U CN212250401U (en) 2020-05-19 2020-05-19 Permanent magnet frequency conversion two-stage compression water-cooling compressor

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Publication Number Publication Date
CN212250401U true CN212250401U (en) 2020-12-29

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CN202020832994.4U Active CN212250401U (en) 2020-05-19 2020-05-19 Permanent magnet frequency conversion two-stage compression water-cooling compressor

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Denomination of utility model: A permanent magnet variable frequency two-stage compression water-cooled compressor

Effective date of registration: 20230725

Granted publication date: 20201229

Pledgee: Zhejiang Tailong Commercial Bank Co.,Ltd. Jiaxing Haining sub branch

Pledgor: ZHEJIANG DELAGE MACHINERY CO.,LTD.

Registration number: Y2023990000378