CN217270723U - Compressor capable of continuously draining water and producing gas - Google Patents
Compressor capable of continuously draining water and producing gas Download PDFInfo
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- CN217270723U CN217270723U CN202220307299.5U CN202220307299U CN217270723U CN 217270723 U CN217270723 U CN 217270723U CN 202220307299 U CN202220307299 U CN 202220307299U CN 217270723 U CN217270723 U CN 217270723U
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Abstract
The utility model relates to a compressor technical field, especially a compressor that can drainage gas production in succession, including the compressor, still include auxiliary box, division board, gas production subassembly, filtering component and drainage subassembly, the compressor is the interval setting with the auxiliary box, the division board level sets up in the auxiliary box, and the division board divide into two cavitys with the inside of auxiliary box, the gas production subassembly all is located the auxiliary box with drainage subassembly, the gas production subassembly sets up at the top of division board, and the gas production subassembly runs through the auxiliary box and is connected with the compressor, drainage subassembly is located the below of division board, drainage subassembly sets up on the interior diapire of auxiliary box, and drainage subassembly's one end runs through the auxiliary box and is connected with the compressor, and drainage subassembly's the other end runs through the auxiliary box and downwardly extending. The utility model has the advantages that: the filtering component can filter the gas absorbed by the gas production component, the service life of the compressor is prolonged, and the water discharging component can continuously discharge the water in the compressor.
Description
Technical Field
The utility model relates to a compressor technical field, especially a compressor that can continuous drainage gas production.
Background
The compressor is a driven fluid machine that raises low-pressure gas to high-pressure gas, and is the heart of a refrigeration system. The refrigerating cycle is powered by sucking low-temperature and low-pressure refrigerant gas from the air suction pipe, driving the piston to compress the refrigerant gas through the operation of the motor, and discharging high-temperature and high-pressure refrigerant gas to the exhaust pipe.
When the compressor operates, need follow the external suction gas, can contain a large amount of harm molecules in the external gas, the compressor can produce the damage to the internals of compressor when inhaling the gas that contains harm molecules for a long time, influences the life of compressor to need constantly to outside drainage at the operation in-process, avoid containing the moisture in the compressed gas.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to overcome the shortcoming among the prior art, provide a compressor that can continuous drainage gas production.
The purpose of the utility model is realized through the following technical scheme: a compressor capable of continuously draining water and producing gas comprises a compressor, an auxiliary box, a partition plate, a gas production assembly, a filtering assembly and a drainage assembly, the compressor and the auxiliary box are arranged at intervals, the partition plate is horizontally arranged in the auxiliary box, the partition plate divides the interior of the auxiliary box into two cavities, the gas production assembly and the water drainage assembly are both positioned in the auxiliary box, the gas production assembly is arranged at the top of the partition plate, the gas production component penetrates through the auxiliary box and is connected with the compressor, the water drainage component is positioned below the partition plate and is arranged on the inner bottom wall of the auxiliary box, one end of the drainage component penetrates through the auxiliary tank and is connected with the compressor, the other end of the drainage component penetrates through the auxiliary tank and extends downwards, the filter assembly is arranged at the top of the auxiliary box, and the bottom of the filter assembly penetrates through the auxiliary box and extends towards the inside of the auxiliary box.
Preferably, the filtering component comprises a filtering screen, a filtering seat, a detaching part, a filtering motor, a two-way screw, a guide rod, two hinged plates, two hinged seats and two sliding seats, the filtering screen is inserted in the detaching part, the filtering seat is positioned above the auxiliary box, the bottom of the filtering seat penetrates through the auxiliary box and extends inwards, the detaching part is arranged at the bottom of the filtering seat, the bottom of the detaching part is lapped on the partition plate, the two hinged seats are respectively arranged on two side walls of the filtering seat, the two sliding seats are respectively positioned on two sides of the filtering seat, each sliding seat is arranged at the top of the auxiliary box in a sliding manner, the two hinged plates are symmetrically positioned at two sides of the auxiliary box, two ends of each hinged plate are respectively hinged with one hinged seat and one sliding seat, L-shaped plates are respectively arranged on two side walls of each sliding seat, and the inner side wall of each L-shaped plate is attached to the side wall of the auxiliary box, every all be equipped with the sliding block on the outer wall of L template, all be equipped with two risers that are the interval setting on the both sides wall of auxiliary box, two-way screw rod and guide bar level respectively are located the both sides of auxiliary box, and the both ends of two-way screw rod and guide bar rotate with two risers respectively and be connected, filter the motor and set up on the lateral wall of a riser, and filter the output of motor and run through the riser and be connected with two-way screw rod, every the sliding block of sliding seat one side is all established on two-way screw rod, and sliding block and two-way screw rod looks spiro union, every the sliding block of sliding seat opposite side is all established on the guide bar, every the opening has all been seted up at the top of articulated slab.
Preferably, the disassembling part comprises a fixed frame, a disassembling plate, a moving block, a pull handle and two moving plates, sliding grooves are formed in the side wall of the filtering seat, the two sides of each sliding groove are respectively provided with a moving groove communicated with the sliding groove, the fixed frame is arranged at the bottom of the filtering seat, the disassembling plate is positioned below the filtering seat, the filter screen is inserted into the fixed frame and positioned between the disassembling plate and the fixed frame, the bottoms of the disassembling plate and the fixed frame are respectively lapped at the top of the separating plate, the moving block is arranged at the top of the disassembling plate and is slidably arranged in the sliding grooves, the two moving plates are respectively slidably arranged in the two moving grooves and are respectively connected with the two side walls of the moving block, two springs which are arranged at intervals are arranged on the side wall of each moving plate, and each spring is connected with the filtering seat, the pull handle is arranged on the outer wall of the moving block and is located in the sliding groove.
Preferably, the gas production subassembly is including the fan of breathing in, the fan of blowing and gas production pipe, the round mouth has been seted up on a lateral wall of auxiliary box, the fan of breathing in sets up on a lateral wall of auxiliary box, and the fan of breathing in is located the round mouth, the fan of blowing sets up the top at the division board, the filter screen is located between the fan of blowing and the fan of breathing in, the gas production pipe is located between auxiliary box and the compressor, another lateral wall that the auxiliary box was run through to gas production pipe's one end and extends to the side of the fan of blowing, the other end of gas production pipe is linked together with the inside of compressor.
Preferably, the drainage component comprises a water pump, a water suction pipe, an L-shaped pipe, a baffle, a drainage pipe and an electromagnetic valve, the baffle is vertically positioned in the auxiliary box, the baffle is respectively connected with the inner bottom wall of the auxiliary box and the bottom of the partition plate, the water pump and the drainage pipe are respectively positioned on two sides of the baffle, the water pump is arranged on the inner bottom wall of the auxiliary box, one end of the water suction pipe is communicated with the input end of the water pump, the other end of the water suction pipe penetrates through the auxiliary box and is communicated with the inside of the compressor, one end of the L-shaped pipe is communicated with the output end of the water pump, the other end of the L-shaped pipe penetrates through the baffle and extends outwards, the drainage pipe is vertically positioned in the auxiliary box, the bottom of the drainage pipe penetrates through the auxiliary box and extends downwards, the electromagnetic valve is sleeved on the drainage pipe, and the electromagnetic valve is positioned at the bottom of the auxiliary box.
Preferably, be equipped with two inclined bases that are the interval setting on the interior diapire of auxiliary tank, and two inclined bases are the both sides of symmetry position drain pipe.
The utility model has the advantages of it is following:
one of the two aspects of the invention relates to a compressor, which comprises a compressor, an air suction fan, a filter screen, a water pump, a baffle plate, a water pump and a waste water separation device, wherein the compressor is used for driving the air suction fan to suck the outside air when the air needs to be injected into the compressor, and moving the outside air to an auxiliary box, and then driving the air blowing fan to contact the air in the auxiliary box with the filter screen, intercepting harmful molecules in the air through the filter screen, purifying the air, preventing the harmful molecules from entering the compressor, so that the service life of the compressor is prolonged.
Secondly, when the filter screen needs to be replaced after being used for a long time, the filter motor drives the bidirectional screw rod to rotate, so as to drive the two sliding blocks sleeved on the bidirectional screw rod to move relatively, thereby enabling the two sliding seats to move relatively, through the arrangement that the two ends of the hinged plate are respectively hinged with the sliding seat and the hinged seat, when the two sliding seats move relatively, the two hinged plates can lift the filter seat along with the movement of the sliding seats, when the filter seat rises to enable the fixing frame and the detaching plate to move outside the auxiliary box, a worker passes through an opening on one hinged plate to grab the pull handle, then pulling the pull handle, driving the movable block and the disassembly plate to move, so that the two movable plates move in the two moving grooves, compressing the spring, expanding the space between the disassembly plate and the fixed frame, exposing the filter screen, and replacing the filter screen, which is very convenient.
Drawings
Fig. 1 is a schematic perspective view of the present invention;
FIG. 2 is a schematic sectional view of the three-dimensional structure of the auxiliary box of the present invention;
FIG. 3 is a schematic perspective view of the filter assembly of the present invention;
fig. 4 is an exploded perspective view of the detachable member of the present invention.
In the figure: 1-compressor, 2-auxiliary box, 21-vertical plate, 22-inclined seat, 3-partition plate, 4-gas production component, 41-gas suction fan, 42-gas blowing fan, 43-gas production pipe, 5-filter component, 51-filter screen, 52-filter seat, 53-disassembly component, 531-fixing frame, 532-disassembly plate, 533-moving block, 534-pull handle, 535-moving plate, 536-spring, 54-filter motor, 55-bidirectional screw, 56-guide rod, 57-hinge plate, 58-hinge seat, 59-sliding seat, 510-L-shaped plate, 511-sliding block, 6-water discharge component, 61-water pump, 62-water suction pipe, 63-L-shaped pipe, 64-baffle, 65-water discharge pipe, And 66-a solenoid valve.
Detailed Description
The invention will be further described with reference to the accompanying drawings, but the scope of the invention is not limited to the following description.
As shown in fig. 1 to 4, a compressor capable of continuously discharging water and producing gas comprises a compressor 1, an auxiliary tank 2, a partition plate 3, a gas production assembly 4, a filter assembly 5 and a water discharge assembly 6, wherein the compressor 1 and the auxiliary tank 2 are arranged at an interval, the partition plate 3 is horizontally arranged in the auxiliary tank 2, the partition plate 3 divides the interior of the auxiliary tank 2 into two cavities, the gas production assembly 4 and the water discharge assembly 6 are both arranged in the auxiliary tank 2, the gas production assembly 4 is arranged at the top of the partition plate 3, the gas production assembly 4 penetrates through the auxiliary tank 2 and is connected with the compressor 1, the water discharge assembly 6 is arranged below the partition plate 3, the water discharge assembly 6 is arranged on the inner bottom wall of the auxiliary tank 2, one end of the water discharge assembly 6 penetrates through the auxiliary tank 2 and is connected with the compressor 1, the other end of the water discharge assembly 6 penetrates through the auxiliary tank 2 and extends downwards, the filter assembly 5 is disposed at the top of the auxiliary tank 2, and the bottom of the filter assembly 5 penetrates the auxiliary tank 2 and extends toward the inside thereof.
Specifically, the filtering assembly 5 includes a filtering net 51, a filtering seat 52, a detaching member 53, a filtering motor 54, a two-way screw 55, a guide bar 56, two hinged plates 57, two hinged seats 58 and two sliding seats 59, the filtering net 51 is inserted into the detaching member 53, the filtering seat 52 is located above the auxiliary box 2, the bottom of the filtering seat 52 penetrates through the auxiliary box 2 and extends inwards, the detaching member 53 is arranged at the bottom of the filtering seat 52, the bottom of the detaching member 53 is lapped on the partition plate 3, the two hinged seats 58 are respectively arranged on two side walls of the filtering seat 52, the two sliding seats 59 are respectively located on two sides of the filtering seat 52, each sliding seat 59 is arranged at the top of the auxiliary box 2 in a sliding manner, the two hinged plates 57 are symmetrically located on two sides of the auxiliary box 2, and two ends of each hinged plate 57 are respectively hinged to one hinged seat 58 and one sliding seat 59, each all be equipped with L template 510 on the both sides wall of sliding seat 59, and the inside wall of every L template 510 all laminates with the lateral wall of auxiliary box 2 mutually, every all be equipped with sliding block 511 on the outer wall of L template 510, all be equipped with two risers 21 that are the interval setting on the both sides wall of auxiliary box 2, two-way screw rod 55 and guide bar 56 level respectively are located the both sides of auxiliary box 2, and the both ends of two-way screw rod 55 and guide bar 56 rotate with two risers 21 respectively and be connected, filter motor 54 sets up on the lateral wall of a riser 21, and filter motor 54's output runs through the riser 21 and is connected with two-way screw rod 55, and the sliding block 511 of every sliding seat 59 one side all overlaps on two-way screw rod 55, and sliding block 511 and two-way screw rod 55 looks spiro union, and each sliding block 511 of sliding seat 59 opposite side all overlaps on guide bar 56, and every opening has all been seted up at the top of articulated slab 57, when air needs to be injected into the compressor 1, the air collecting assembly 4 sucks external air, the external air firstly passes through the auxiliary box 2 and then is injected into the compressor 1, when the external air passes through the auxiliary box 2, the external air can be contacted with the filter screen 51 in the auxiliary box 2, harmful molecules in the air are intercepted through the filter screen 51, the air is purified, the harmful molecules are prevented from entering the compressor 1, when the filter screen 51 is used for a long time and needs to be replaced, the filter motor 54 drives the bidirectional screw 55 to rotate, the two sliding blocks 511 sleeved on the bidirectional screw 55 are driven to move relatively, the two sliding seats 59 are enabled to move relatively, the two ends of the hinged plate 57 are respectively hinged with the sliding seat 59 and the hinged seat 58, so that when the two sliding seats 59 move relatively, the two hinged plates 57 lift the filter seat 52 along with the movement of the sliding seat 59, the filter net 51 can be removed from the attachment/detachment member 53 and replaced by operating the attachment/detachment member 53 by removing the attachment/detachment member 53 with the filter net 51 from the auxiliary tank 2.
Specifically, the detaching element 53 includes a fixed frame 531, a detaching plate 532, a moving block 533, a pull handle 534 and two moving plates 535, a sliding groove is formed on a side wall of the filter base 52, moving grooves communicated with the sliding groove are formed on both sides of the sliding groove, the fixed frame 531 is disposed at the bottom of the filter base 52, the detaching plate 532 is located below the filter base 52, the filter screen 51 is inserted into the fixed frame 531, the filter screen 51 is located between the detaching plate 532 and the fixed frame 531, the bottoms of the detaching plate 532 and the fixed frame 531 are lapped on the top of the partition plate 3, the moving block 533 is disposed at the top of the detaching plate 532, the moving block 533 is slidably disposed in the sliding groove, the two moving plates 535 are slidably disposed in the two moving grooves respectively, the two moving plates 535 are connected to both side walls of the moving block 533 respectively, two springs 536 are disposed on a side wall of each moving plate 535 at intervals, and each spring 536 is connected with the filter base 52, the pull handle 534 is arranged on the outer wall of the moving block 533, and the pull handle 534 is located in the sliding groove, when the filter base 52 ascends, so that the fixing frame 531 and the detaching plate 532 move to the outside of the auxiliary box 2, a worker grasps the pull handle 534 through an opening on one hinged plate 57, and then pulls the pull handle 534 to drive the moving block 533 and the detaching plate 532 to move, so that the two moving plates 535 move in the two moving grooves, the springs 536 are compressed, the space between the detaching plate 532 and the fixing frame 531 is enlarged, the filter screen 51 is exposed, and the filter screen 51 can be replaced.
Specifically, the gas production assembly 4 comprises a suction fan 41, a blowing fan 42 and a gas production pipe 43, a round mouth is arranged on one side wall of the auxiliary box 2, the air suction fan 41 is arranged on one side wall of the auxiliary box 2, the air suction fan 41 is positioned in the round opening, the air blowing fan 42 is arranged at the top of the partition plate 3, the filter screen 51 is positioned between the air blowing fan 42 and the air suction fan 41, the gas production pipe 43 is positioned between the auxiliary tank 2 and the compressor 1, one end of the gas production pipe 43 penetrates through the other side wall of the auxiliary tank 2 and extends to the side of the blowing fan 42, the other end of the gas production pipe 43 is communicated with the inside of the compressor 1, when air needs to be injected into the compressor 1, the suction fan 41 is driven to suck the external air, and moves the external air into the auxiliary tank 2 and then drives the blowing fan 42 to inject the filtered air in the auxiliary tank 2 into the compressor 1 through the gas production pipe 43.
Specifically, the drainage assembly 6 includes a water pump 61, a water suction pipe 62, an L-shaped pipe 63, a baffle 64, a drainage pipe 65 and an electromagnetic valve 66, the baffle 64 is vertically located in the auxiliary tank 2, the baffle 64 is respectively connected with the inner bottom wall of the auxiliary tank 2 and the bottom of the partition plate 3, the water pump 61 and the drainage pipe 65 are respectively located at two sides of the baffle 64, the water pump 61 is arranged on the inner bottom wall of the auxiliary tank 2, one end of the water suction pipe 62 is communicated with the input end of the water pump 61, the other end of the water suction pipe 62 penetrates through the auxiliary tank 2 and is communicated with the inside of the compressor 1, one end of the L-shaped pipe 63 is communicated with the output end of the water pump 61, the other end of the L-shaped pipe 63 penetrates through the baffle 64 and extends outward, the drainage pipe 65 is vertically located in the auxiliary tank 2, the bottom of the drainage pipe 65 penetrates through the auxiliary tank 2 and extends downward, the electromagnetic valve 66 is sleeved on the drainage pipe 65, and solenoid valve 66 is located the bottom of auxiliary tank 2, when compressor 1 needs the drainage, drives water pump 61, and the moisture in with compressor 1 passes through suction pipe 62 and L type pipe 63 in proper order and discharges to auxiliary tank 2 in to through baffle 64 with water pump 61 and waste water separation, when the waste water in the auxiliary tank 2 of will discharging, open solenoid valve 66, make the waste water in the auxiliary tank 2 can discharge outside auxiliary tank 2 through drain pipe 65.
Specifically, be equipped with two sloping bases 22 that are the interval setting on the inner diapire of auxiliary tank 2, and two sloping bases 22 are the both sides of symmetric position drain pipe 65, and the setting of two sloping bases 22 can carry out the water conservancy diversion to the waste water in auxiliary tank 2, avoids waste water to remain in auxiliary tank 2.
Specifically, the model of the electromagnetic valve 66 is 2W 040-10.
The working process of the utility model is as follows: when air needs to be injected into the compressor 1, the suction fan 41 is driven to suck the outside air and move the outside air into the auxiliary box 2, and then the blowing fan 42 is driven to make the air in the auxiliary box 2 contact with the filter screen 51 and intercept harmful molecules in the air through the filter screen 51 to purify the air, when the filter screen 51 is used for a long time and needs to be replaced, the filter motor 54 drives the bidirectional screw 55 to rotate and drive the two sliding blocks 511 sleeved on the bidirectional screw 55 to move relatively, so that the two sliding seats 59 move relatively, through the arrangement that the two ends of the hinged plate 57 are respectively hinged with the sliding seat 59 and the hinged seat 58, when the two sliding seats 59 move relatively, the two hinged plates 57 lift the filter seat 52 along with the movement of the sliding seat 59, and when the filter seat 52 rises, the fixing frame 531 and the detaching plate 532 move outside the auxiliary box 2, the staff passes through the opening on one hinged plate 57 and grasps the pull handle 534, then pulls the pull handle 534, drive the movable block 533 and the detaching plate 532 and move, make two moving plates 535 move in two moving grooves, the compression spring 536, enlarge the interval between the detaching plate 532 and the fixed frame 531, expose the filter screen 51, can change the filter screen 51, when the compressor 1 needs to drain, drive the water pump 61, discharge the moisture in the compressor 1 into the auxiliary tank 2 through the suction pipe 62 and the L type pipe 63 in proper order, and separate the water pump 61 and waste water through the baffle 64, when the waste water in the auxiliary tank 2 is to be discharged, open the electromagnetic valve 66, make the waste water in the auxiliary tank 2 can be discharged out of the auxiliary tank 2 through the drain pipe 65.
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. A compressor capable of continuously draining water and producing gas comprises a compressor (1), and is characterized in that: the gas production and drainage device is characterized by further comprising an auxiliary box (2), a partition plate (3), a gas production assembly (4), a filtering assembly (5) and a drainage assembly (6), wherein the compressor (1) and the auxiliary box (2) are arranged at intervals, the partition plate (3) is horizontally arranged in the auxiliary box (2), the partition plate (3) divides the interior of the auxiliary box (2) into two cavities, the gas production assembly (4) and the drainage assembly (6) are both positioned in the auxiliary box (2), the gas production assembly (4) is arranged at the top of the partition plate (3), the gas production assembly (4) penetrates through the auxiliary box (2) and is connected with the compressor (1), the drainage assembly (6) is positioned below the partition plate (3), the drainage assembly (6) is arranged on the inner bottom wall of the auxiliary box (2), one end of the drainage assembly (6) penetrates through the auxiliary box (2) and is connected with the compressor (1), the other end of the drainage component (6) penetrates through the auxiliary box (2) and extends downwards, the filtering component (5) is arranged at the top of the auxiliary box (2), and the bottom of the filtering component (5) penetrates through the auxiliary box (2) and extends towards the inside of the auxiliary box.
2. The compressor capable of continuously draining water and producing gas as claimed in claim 1, wherein: the filter assembly (5) comprises a filter screen (51), a filter seat (52), a dismounting part (53), a filter motor (54), a two-way screw (55), a guide rod (56), two hinge plates (57), two hinge seats (58) and two sliding seats (59), the filter screen (51) is inserted in the dismounting part (53), the filter seat (52) is positioned above the auxiliary box (2), the bottom of the filter seat (52) penetrates through the auxiliary box (2) and extends inwards, the dismounting part (53) is arranged at the bottom of the filter seat (52), the bottom of the dismounting part (53) is lapped on the partition plate (3), the two hinge seats (58) are respectively arranged on two side walls of the filter seat (52), the two sliding seats (59) are respectively positioned on two sides of the filter seat (52), and each sliding seat (59) is arranged at the top of the auxiliary box (2) in a sliding manner, two the articulated slab (57) is the both sides that the symmetry is located auxiliary box (2), and the both ends of every articulated slab (57) are articulated mutually with an articulated seat (58) and a sliding seat (59) respectively, every all be equipped with L template (510) on the both sides wall of sliding seat (59), and the inside wall of every L template (510) all laminates with the lateral wall of auxiliary box (2), every all be equipped with sliding block (511) on the outer wall of L template (510), all be equipped with two riser (21) that are the interval setting on the both sides wall of auxiliary box (2), two-way screw rod (55) and guide bar (56) are the both sides that the level is located auxiliary box (2) respectively, and the both ends of two-way screw rod (55) and guide bar (56) are connected with two riser (21) rotation respectively, filter motor (54) sets up on the lateral wall of a riser (21), and the output that filters motor (54) runs through riser (21) and is connected with two-way screw rod (55), every sliding block (511) of sliding seat (59) one side all overlap and establish on two-way screw rod (55), and sliding block (511) and two-way screw rod (55) looks spiro union, every sliding block (511) of sliding seat (59) opposite side all overlap and establish on guide bar (56), every the opening has all been seted up at the top of articulated slab (57).
3. The compressor capable of continuously draining water and producing gas as claimed in claim 2, wherein: the disassembling part (53) comprises a fixing frame (531), a disassembling plate (532), a moving block (533), a pull handle (534) and two moving plates (535), a sliding groove is formed in the side wall of the filtering seat (52), moving grooves communicated with the sliding groove are formed in the two sides of the sliding groove, the fixing frame (531) is arranged at the bottom of the filtering seat (52), the disassembling plate (532) is positioned below the filtering seat (52), the filter screen (51) is inserted in the fixing frame (531), the filter screen (51) is positioned between the disassembling plate (532) and the fixing frame (531), the bottoms of the disassembling plate (532) and the fixing frame (531) are lapped at the top of the separating plate (3), the moving block (533) is arranged at the top of the disassembling plate (532), the moving block (533) is arranged in the sliding groove in a sliding manner, the two moving plates (535) are respectively arranged in the two moving grooves in a sliding manner, the two moving plates (535) are respectively connected with two side walls of the moving block (533), two springs (536) which are arranged at intervals are arranged on the side walls of each moving plate (535), each spring (536) is connected with the filter base (52), the pull handle (534) is arranged on the outer wall of the moving block (533), and the pull handle (534) is located in the sliding groove.
4. A compressor capable of continuous water drainage and gas production according to claim 3, wherein: adopt gas subassembly (4) including suction fan (41), blowing fan (42) and gas production pipe (43), the round mouth has been seted up on a lateral wall of auxiliary box (2), suction fan (41) set up on a lateral wall of auxiliary box (2), and suction fan (41) are located the round mouth, blowing fan (42) set up the top at division board (3), filter screen (51) are located between blowing fan (42) and suction fan (41), gas production pipe (43) are located between auxiliary box (2) and compressor (1), another lateral wall that auxiliary box (2) was run through to one end of gas production pipe (43) and extend to the side of blowing fan (42), the other end of gas production pipe (43) is linked together with the inside of compressor (1).
5. The compressor capable of continuously draining water and producing gas according to claim 1, wherein: the drainage assembly (6) comprises a water pump (61), a water suction pipe (62), an L-shaped pipe (63), a baffle plate (64), a drainage pipe (65) and an electromagnetic valve (66), wherein the baffle plate (64) is vertically positioned in the auxiliary box (2), the baffle plate (64) is respectively connected with the inner bottom wall of the auxiliary box (2) and the bottom of the partition plate (3), the water pump (61) and the drainage pipe (65) are respectively positioned at two sides of the baffle plate (64), the water pump (61) is arranged on the inner bottom wall of the auxiliary box (2), one end of the water suction pipe (62) is communicated with the input end of the water pump (61), the other end of the water suction pipe (62) penetrates through the auxiliary box (2) and is communicated with the inside of the compressor (1), one end of the L-shaped pipe (63) is communicated with the output end of the water pump (61), and the other end of the L-shaped pipe (63) penetrates through the baffle plate (64) and extends outwards, drain pipe (65) are vertical to be located auxiliary tank (2), and the bottom of drain pipe (65) runs through auxiliary tank (2) and downwardly extending, solenoid valve (66) cover is established on drain pipe (65), and solenoid valve (66) are located the bottom of auxiliary tank (2).
6. The compressor capable of continuously draining water and producing gas according to claim 5, wherein: be equipped with two sloping bases (22) that are the interval setting on the interior diapire of auxiliary tank (2), and two sloping bases (22) are the both sides of symmetry position drain pipe (65).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202220307299.5U CN217270723U (en) | 2022-02-15 | 2022-02-15 | Compressor capable of continuously draining water and producing gas |
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CN202220307299.5U CN217270723U (en) | 2022-02-15 | 2022-02-15 | Compressor capable of continuously draining water and producing gas |
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CN217270723U true CN217270723U (en) | 2022-08-23 |
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CN202220307299.5U Active CN217270723U (en) | 2022-02-15 | 2022-02-15 | Compressor capable of continuously draining water and producing gas |
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