CN219768872U - Cooling equipment for processing composite air pipe - Google Patents
Cooling equipment for processing composite air pipe Download PDFInfo
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- CN219768872U CN219768872U CN202223237856.XU CN202223237856U CN219768872U CN 219768872 U CN219768872 U CN 219768872U CN 202223237856 U CN202223237856 U CN 202223237856U CN 219768872 U CN219768872 U CN 219768872U
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Abstract
The utility model relates to the technical field of composite air pipes and discloses cooling equipment for processing a composite air pipe, which comprises a supporting frame, wherein a supporting plate is arranged at the top end of the supporting frame, a fixing frame is arranged at the top end of the supporting plate, a conveying mechanism is arranged at the top end of the supporting plate, a control panel is arranged at the top of the left side of the supporting frame, a controller is arranged at the left side of the inner bottom wall of the supporting frame, the controller is electrically connected with the control panel, and a flow guide frame is arranged in the middle of the inner top wall of the fixing frame. According to the utility model, the filtered air is led into the cooling rack through the air guide pipe, cold water is input into the serpentine pipe through the water pump, the temperature of the air can be quickly reduced through heat exchange between the serpentine pipe and the air, the cooled air is led into the air guide rack, and the cold air is uniformly sprayed on the surface of the composite air pipe through the air jet head, so that the composite air pipe can be quickly cooled, and the cooling efficiency is improved.
Description
Technical Field
The utility model relates to the technical field of composite air pipes, in particular to cooling equipment for processing a composite air pipe.
Background
The composite air duct is made of rubber-plastic composite heat-insulating material, and can be used for completely replacing traditional air duct, air valve, air inlet, static pressure box and heat-insulating material in air-conditioner air-out system.
The composite air pipe is processed after production, the surface of the composite air pipe is required to be cooled due to overhigh temperature, the existing cooling equipment generally uses an air cooling mode to cool the composite air pipe, but when air is introduced into a fan, dust in the air is blown to the surface of the composite air pipe, so that the dust is easy to adhere to the surface of the composite air pipe and inconvenient to remove, the quality of the composite air pipe is affected, and the cooling equipment for processing the composite air pipe is provided for solving the problems.
Disclosure of Invention
The utility model aims to solve the defects existing in the prior art, such as: the existing cooling equipment generally uses an air cooling mode to cool the air, but when air is introduced into a fan, dust in the air is blown to the surface of a composite air pipe, so that the dust is easily attached to the surface of the composite air pipe and inconvenient to remove, and the quality of the composite air pipe is affected.
In order to achieve the above purpose, the present utility model adopts the following technical scheme:
the utility model provides a cooling device for processing of compound tuber pipe, includes the support frame, the backup pad is installed on the top of support frame, the mount is installed on the top of backup pad, conveying mechanism is installed on the top of backup pad, control panel is installed at the left top of support frame, the controller is installed in the left side of diapire in the support frame, the controller is connected with the control panel electricity, the mid-mounting of roof has the water conservancy diversion frame in the mount, water conservancy diversion frame suit is at conveying mechanism's top, the inboard intercommunication of water conservancy diversion frame has evenly distributed's jet head, the mid-mounting on mount top has cooling mechanism, cooling mechanism's bottom is linked together with the inside of water conservancy diversion frame, cooling mechanism's top is installed the water pump, the water pump is connected with the controller electricity, dust removal mechanism is installed on the right side of diapire in the support frame, the inlet port has been seted up at the top on the support frame right side, the negative pressure fan is installed on the right side of diapire in the support frame, the input intercommunication of negative pressure fan has the negative pressure pipe, the right side of negative pressure pipe is linked together with dust removal mechanism, the output of negative pressure pipe is linked together with the air pipe, the air duct is kept away from cooling mechanism.
Preferably, the conveying mechanism comprises a conveying frame arranged at the top end of the supporting plate, driving roller wheels are arranged on two sides of an inner cavity of the conveying frame, a driving motor is arranged on the left side of the back surface of the conveying frame, the driving motor is electrically connected with the controller, movable gears are arranged on the front surfaces of the driving roller wheels in a penetrating mode through the conveying frame, and gear belts are sleeved on the outer sides of the two movable gears together.
Preferably, the top of the inner cavity of the conveying frame is transversely and movably provided with supporting rollers which are arranged at equal intervals, and the supporting rollers are positioned between the two driving rollers.
Preferably, the cooling mechanism comprises a cooling frame arranged at the top end of the fixing frame, a coiled pipe is arranged in the cooling frame, the output end of the water pump penetrates through the cooling frame to be communicated with the coiled pipe, a flow guide pipe is arranged in the middle of the bottom end of the cooling frame, and the bottom end of the flow guide pipe is communicated with the inside of the flow guide frame.
Preferably, the dust removing mechanism comprises a dust removing frame arranged on the right side of the inner bottom wall of the supporting frame, a filter plate is arranged in the middle of the inner cavity of the dust removing frame, an air inlet is formed in the top of the right side of the dust removing frame, the air inlet is communicated with the air inlet, and the right side of the negative pressure pipe is communicated with the inside of the dust removing frame.
Preferably, self-locking casters are arranged at four corners of the bottom end of the supporting frame.
Compared with the prior art, the utility model has the beneficial effects that:
(1) According to the utility model, the driving motor is controlled to rotate through the control panel, so that the driving motor drives the driving roller to rotate, the composite air pipe placed on the conveying frame can be conveyed, meanwhile, the composite air pipe can be supported through the supporting roller, the composite air pipe can roll on the supporting roller, the friction between the composite air pipe and the conveying frame is reduced, and the driving motor can drive the two driving roller wheels to convey the composite air pipe simultaneously through the action of the movable gear and the gear belt.
(2) According to the utility model, through the communication between the negative pressure fan and the interior of the dust removal frame, external air can be introduced into the dust removal frame through the air inlet and the air inlet, dust in the air can be filtered through the filter plate, when the composite air pipe is cooled, the quality problem caused by the adhesion of the dust on the surface of the dust is avoided, the filtered air is introduced into the cooling frame through the air guide pipe through the negative pressure fan, cold water is input into the interior of the coiled pipe through the water pump, the temperature of the air can be quickly reduced through heat exchange between the coiled pipe and the air, the cooled air is introduced into the interior of the flow guide frame, and cold air is uniformly sprayed on the surface of the composite air pipe through the air jet head, so that the composite air pipe can be quickly cooled, and the cooling efficiency is improved.
Drawings
FIG. 1 is a schematic view of the overall internal structure of the present utility model;
FIG. 2 is a schematic diagram of a first embodiment of the present utility model;
FIG. 3 is a schematic structural diagram of a second embodiment of the present utility model;
fig. 4 is a schematic structural diagram of a third embodiment of the present utility model.
In the figure: 1. a support frame; 2. a support plate; 3. a negative pressure fan; 4. a negative pressure pipe; 5. a dust removing mechanism; 51. a dust removal frame; 52. a filter plate; 53. an air inlet; 6. an air inlet hole; 7. a conveying mechanism; 71. a carriage; 72. a drive roller wheel; 73. a driving motor; 74. a supporting roller; 75. a movable gear; 76. a gear belt; 8. a cooling mechanism; 81. a cooling rack; 82. a serpentine tube; 83. a flow guiding pipe; 9. a water pump; 10. a flow guiding frame; 11. an air duct; 12. a fixing frame; 13. a jet head; 14. a control panel; 15. a controller; 16. self-locking castor.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments.
In the description of the present utility model, it should be understood that the terms "upper," "lower," "front," "rear," "left," "right," "top," "bottom," "inner," "outer," and the like indicate or are based on the orientation or positional relationship shown in the drawings, merely to facilitate description of the present utility model and to simplify the description, and do not indicate or imply that the devices or elements referred to must have a specific orientation, be configured and operated in a specific orientation, and thus should not be construed as limiting the present utility model.
Referring to fig. 1-4, a cooling device for processing a composite air duct comprises a supporting frame 1, a supporting plate 2 is installed at the top end of the supporting frame 1, a fixing frame 12 is installed at the top end of the supporting plate 2, a conveying mechanism 7 is installed at the top end of the supporting plate 2, a control panel 14 is installed at the top of the left side of the supporting frame 1, a controller 15 is installed at the left side of the inner bottom wall of the supporting frame 1, the controller 15 is electrically connected with the control panel 14, a diversion frame 10 is installed at the middle part of the inner top wall of the fixing frame 12, the diversion frame 10 is sleeved at the top of the conveying mechanism 7, evenly distributed air jet heads 13 are communicated with the inner side of the diversion frame 10, a cooling mechanism 8 is installed at the middle part of the top end of the fixing frame 12, the bottom end of the cooling mechanism 8 is communicated with the inner part of the diversion frame 10, a water pump 9 is installed at the top end of the cooling mechanism 8, the water pump 9 is electrically connected with the controller 15, the water pump 9 can extract outside water input to the inside of coiled pipe 82, dust removal mechanism 5 is installed on the right side of diapire in the support frame 1, inlet port 6 has been seted up at the top on support frame 1 right side, inlet port 6 is linked together with dust removal mechanism 5, negative pressure fan 3 is installed on the right side of diapire in the support frame 1, negative pressure fan 3's input intercommunication has negative pressure pipe 4, negative pressure pipe 4's right side is linked together with dust removal mechanism 5, negative pressure fan 3's output intercommunication has air duct 11, air duct 11 keeps away from negative pressure fan 3's one end and cooling body 8 are linked together, evenly spout the surface at the compound tuber pipe with cold wind through jet-head 13, can carry out rapid cooling to the compound tuber pipe, the refrigerated efficiency has been promoted, self-locking truckle 16 is all installed in the four corners of support frame 1 bottom, conveniently remove whole device through self-locking truckle 16.
Embodiment one:
as shown in fig. 2, the conveying mechanism 7 comprises a conveying frame 71 installed at the top end of the supporting plate 2, driving roller wheels 72 are installed at two sides of an inner cavity of the conveying frame 71, a driving motor 73 is installed at the left side of the back surface of the conveying frame 71, the driving motor 73 is electrically connected with the controller 15, movable gears 75 are installed on the front surfaces of the driving roller wheels 72 in a penetrating mode through the conveying frame 71, gear belts 76 are sleeved on the outer sides of the two movable gears 75 jointly, supporting roller wheels 74 which are arranged at equal distances are transversely and movably installed at the top of the inner cavity of the conveying frame 71, the supporting roller wheels 74 are located between the two driving roller wheels 72, the driving motor 73 is controlled to rotate through the control panel 14, the driving motor 73 drives the driving roller wheels 72 to rotate, a composite air pipe placed on the conveying frame 71 can be conveyed through the supporting roller wheels 74, friction between the composite air pipe and the conveying frame 71 is reduced through the movable gears 75 and the action of the gear belts 76.
Embodiment two:
as shown in fig. 3, the cooling mechanism 8 includes a cooling rack 81 mounted at the top end of the fixing rack 12, a serpentine pipe 82 is mounted in the cooling rack 81, an output end of a water pump 9 penetrates through the cooling rack 81 to be communicated with the serpentine pipe 82, a flow guide pipe 83 is mounted in the middle of the bottom end of the cooling rack 81, the bottom end of the flow guide pipe 83 is communicated with the inside of the flow guide rack 10, filtered air is introduced into the inside of the cooling rack 81 through an air guide pipe 11 by a negative pressure fan 3, cold water is input into the inside of the serpentine pipe 82 through the water pump 9, heat exchange is performed between the serpentine pipe 82 and the air, the temperature of the air can be reduced rapidly, the cooled air is introduced into the inside of the flow guide rack 10, and the surface of the composite air pipe can be cooled rapidly.
Embodiment III:
as shown in fig. 4, the dust removing mechanism 5 comprises a dust removing frame 51 installed on the right side of the inner bottom wall of the supporting frame 1, a filter plate 52 is installed in the middle of the inner cavity of the dust removing frame 51, an air inlet 53 is formed in the top of the right side of the dust removing frame 51, the air inlet 53 is communicated with an air inlet 6, the right side of the negative pressure pipe 4 is communicated with the inside of the dust removing frame 51, external air can be introduced into the dust removing frame 51 through the air inlet 6 and the air inlet 53 through the communication between the negative pressure fan 3 and the inside of the dust removing frame 51, dust in the air can be filtered through the filter plate 52, and quality problems caused by dust attached to the surface of the air can be avoided when the composite air pipe is cooled.
In the utility model, when a user uses the device, a composite air pipe is placed on a driving roller wheel 72, a control panel 14 controls a driving motor 73 to rotate, the driving motor 73 drives the driving roller wheel 72 to rotate, the composite air pipe is conveyed, a negative pressure fan 3 and a water pump 9 are started, the negative pressure fan 3 is communicated with the inside of a dust removal frame 51, external air can be introduced into the dust removal frame 51 through an air inlet hole 6 and an air inlet 53, dust in the air can be filtered through a filter plate 52, the filtered air is introduced into a cooling frame 81 through an air guide pipe 11 by the negative pressure fan 3, cold water is input into a serpentine 82 through the water pump 9, heat exchange is carried out between the serpentine 82 and the air, the temperature of the air can be quickly reduced, the cooled air is introduced into the inside of the flow guide frame 10, and the cold air is uniformly sprayed on the surface of the composite air pipe through a jet head 13.
The foregoing is only a preferred embodiment of the present utility model, but the scope of the present utility model is not limited thereto, and any person skilled in the art, who is within the scope of the present utility model, should make equivalent substitutions or modifications according to the technical scheme of the present utility model and the inventive concept thereof, and should be covered by the scope of the present utility model.
It is noted that relational terms such as first and second, and the like are 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. Moreover, 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.
Claims (6)
1. The utility model provides a cooling device for processing of compound tuber pipe, includes support frame (1), its characterized in that, backup pad (2) are installed on the top of support frame (1), mount (12) are installed on the top of backup pad (2), conveying mechanism (7) are installed on the top of backup pad (2), control panel (14) are installed at the top of support frame (1) left side, controller (15) are installed on the left side of diapire in support frame (1), controller (15) are connected with control panel (14) electricity, mid-mounting of roof in mount (12) has water conservancy diversion frame (10), water conservancy diversion frame (10) suit is at the top of conveying mechanism (7), the inboard intercommunication of water conservancy diversion frame (10) has evenly distributed's jet head (13), the mid-mounting at mount (12) top has cooling mechanism (8), the bottom of cooling mechanism (8) is linked together with the inside of water conservancy diversion frame (10), water pump (9) are installed on the top of cooling mechanism (8), water pump (9) are connected with controller (15) electricity, air inlet port (5) are installed on the side of support frame (6) in the support frame (1), dust removal mechanism (6) are opened on the top (6), negative pressure fan (3) are installed on the right side of diapire in support frame (1), the input intercommunication of negative pressure fan (3) has negative pressure pipe (4), the right side of negative pressure pipe (4) is linked together with dust removal mechanism (5), the output intercommunication of negative pressure fan (3) has air duct (11), the one end that negative pressure fan (3) was kept away from to air duct (11) is linked together with cooling body (8).
2. The cooling device for processing the composite air duct according to claim 1, wherein the conveying mechanism (7) comprises a conveying frame (71) arranged at the top end of the supporting plate (2), driving roller wheels (72) are arranged on two sides of an inner cavity of the conveying frame (71), a driving motor (73) is arranged on the left side of the back surface of the conveying frame (71), the driving motor (73) is electrically connected with the controller (15), movable gears (75) are arranged on the front surfaces of the driving roller wheels (72) penetrating through the conveying frame (71), and gear belts (76) are sleeved on the outer sides of the two movable gears (75) together.
3. A cooling device for processing a composite air duct according to claim 2, wherein supporting rollers (74) are movably arranged at the top of the inner cavity of the conveying frame (71) at equal intervals, and the supporting rollers (74) are positioned between two driving roller wheels (72).
4. The cooling device for machining the composite air pipe according to claim 1, wherein the cooling mechanism (8) comprises a cooling frame (81) arranged at the top end of the fixing frame (12), a serpentine pipe (82) is arranged in the cooling frame (81), the output end of the water pump (9) penetrates through the cooling frame (81) to be communicated with the serpentine pipe (82), a flow guide pipe (83) is arranged in the middle of the bottom end of the cooling frame (81), and the bottom end of the flow guide pipe (83) is communicated with the inside of the flow guide frame (10).
5. The cooling device for processing the composite air pipe according to claim 1, wherein the dust removing mechanism (5) comprises a dust removing frame (51) arranged on the right side of the inner bottom wall of the supporting frame (1), a filter plate (52) is arranged in the middle of the inner cavity of the dust removing frame (51), an air inlet (53) is formed in the top of the right side of the dust removing frame (51), the air inlet (53) is communicated with the air inlet hole (6), and the right side of the negative pressure pipe (4) is communicated with the inside of the dust removing frame (51).
6. The cooling device for processing the composite air pipe according to claim 1, wherein self-locking casters (16) are arranged at four corners of the bottom end of the supporting frame (1).
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202223237856.XU CN219768872U (en) | 2022-12-01 | 2022-12-01 | Cooling equipment for processing composite air pipe |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202223237856.XU CN219768872U (en) | 2022-12-01 | 2022-12-01 | Cooling equipment for processing composite air pipe |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN219768872U true CN219768872U (en) | 2023-09-29 |
Family
ID=88136771
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN202223237856.XU Active CN219768872U (en) | 2022-12-01 | 2022-12-01 | Cooling equipment for processing composite air pipe |
Country Status (1)
| Country | Link |
|---|---|
| CN (1) | CN219768872U (en) |
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2022
- 2022-12-01 CN CN202223237856.XU patent/CN219768872U/en active Active
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