A cooling device for an air-conditioning cooling system
By designing cooling equipment for air conditioning cooling systems, the combination technology of main cooling mechanism, auxiliary cooling mechanism and co-shock mechanism is adopted, the problems of low heat dissipation efficiency and impurities in the cooling system of traditional air conditioning external unit are solved, and efficient heat dissipation and cleaning effects are achieved, ensuring the cooling efficiency of air conditioning external unit.
Patent Information
- Application Number
- CN202510053343.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-14
- Publication Date
- 2025-05-30
- Estimated Expiration
- 2045-01-14
AI Technical Summary
In the cooling system of traditional air conditioning external unit, the heat dissipation efficiency of a single cooling fan is low, and a large amount of impurities are attached to the outer wall of the condensing heat dissipation fins, which affects the heat dissipation efficiency and cooling effect.
A cooling equipment for air conditioning cooling system is designed, and the main cooling mechanism and anti-blocking mechanism are used to realize the recycling of rainwater and the water spray cooling and heat dissipation; the auxiliary cooling mechanism drives the sliding vertical plate and the U-shaped vertical plate for circulating movement through the driving motor to clean up the impurities on the outer wall of the condensation heat dissipation fins; the vibration-coordinated mechanism drives the U-shaped vertical plate intermittent vibration through the electric telescopic rod and the sliding crossbar to further improve the impurity cleaning effect.
Through the recycling of rainwater and water spray cooling, the heat dissipation efficiency of the condensing heat dissipation fins is improved; the combined use of auxiliary cooling mechanism and co-shock mechanism significantly improves the cleaning efficiency of the outer wall of the condensing heat dissipation fins, thereby ensuring the refrigeration efficiency and refrigeration effect of the air conditioner external unit.
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Figure CN119468342B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of air conditioner cooling, and particularly to a cooling device for an air conditioner cooling system. Background Art
[0002] An air conditioner, i.e., an air conditioner, is composed of four parts: a refrigeration (heating) cycle system, an air circulation and ventilation system, an electrical control system, and a box body. Among them, the outdoor unit of the air conditioner is a machine installed outdoors, and a cooling system for cooperation is provided inside the outdoor unit of the air conditioner.
[0003] The cooling device used in the traditional outdoor unit cooling system of an air conditioner is a cooling fan. However, the single cooling fan has a low heat dissipation efficiency during operation, making it difficult to ensure the refrigeration efficiency and refrigeration effect of the outdoor unit of the air conditioner. Moreover, with the use of the outdoor unit of the air conditioner, a large amount of impurities will adhere to the outer wall of the condensation heat dissipation fins, which will affect the normal heat dissipation of the condensation heat dissipation fins, and further affect the refrigeration efficiency and refrigeration effect of the outdoor unit of the air conditioner.
[0004] In view of the above problems, the inventor proposes a cooling device for an air conditioner cooling system to solve the above problems. Summary of the Invention
[0005] In order to solve the problems of low heat dissipation efficiency in the operation of a single cooling fan used in the traditional outdoor unit cooling system of an air conditioner and the fact that a large amount of impurities will adhere to the outer wall of the condensation heat dissipation fins with the use of the outdoor unit of the air conditioner, which affects the normal heat dissipation of the condensation heat dissipation fins; the purpose of the present invention is to provide a cooling device for an air conditioner cooling system.
[0006] To solve the above technical problems, the present invention adopts the following technical solution: A cooling device for an air conditioner cooling system includes an outdoor unit body of the air conditioner. On one side of the inner cavity of the outdoor unit body, a condensation heat dissipation fin body for cooperation is fixedly installed. On the other side of the inner cavity of the outdoor unit body, an installation inner frame for cooperation is fixedly installed. A cooling fan body is fixedly inserted on the installation inner frame. On the outer side of one end of the outdoor unit body, a main cooling mechanism for cooperation with the condensation heat dissipation fin body is fixedly installed. A clogging prevention mechanism for cooperation is provided in the inner cavity of the main cooling mechanism. And a secondary cooling mechanism and a vibration damping mechanism for cooperation with the main cooling mechanism are provided at the upper end of the inner cavity of the outdoor unit body;
[0007] The cooperation of the main cooling mechanism and the clogging prevention mechanism realizes the recycling of rainwater, can spray water to cool and dissipate heat from the condensation heat dissipation fin body when the working temperature inside the outdoor unit body of the air conditioner is relatively high, and realizes the filtration of rainwater. The secondary cooling mechanism sweeps the impurities attached to the outer wall of the condensation heat dissipation fin body, and the cooperation with the flushing of the sprayed rainwater improves the cleaning efficiency of the impurities on the outer wall of the condensation heat dissipation fin body. The vibration damping mechanism intermittently generates vibrations to further enhance the cleaning efficiency of the impurities on the outer wall of the condensation heat dissipation fin body.
[0008] Preferably, the main cooling mechanism includes a liquid collecting frame body which is fixedly installed on the outer wall at one end of the air conditioner outdoor unit body. One side at the bottom end of the liquid collecting frame body is communicated with a liquid guiding pipe body, and an opening and closing valve is fixedly installed on the liquid guiding pipe body. The upper end of the inner cavity of the liquid collecting frame body is fixedly installed with a V-shaped inner plate, and an intercepting filter plate is fixedly inserted on the V-shaped inner plate. One side at the bottom end of the inner cavity of the liquid collecting frame body is fixedly installed with a liquid infusion pump body, and an inlet pipe body and an outlet pipe body which are used in cooperation are arranged at the bottom end of the liquid infusion pump body. The outlet pipe body is fixedly inserted on the liquid collecting frame body, and the top end of the outlet pipe body is fixedly connected with an atomizing nozzle. The atomizing nozzle is fixedly inserted at the upper end of the inner cavity of the air conditioner outdoor unit body, and the atomizing nozzle is located above the condensing and radiating fin body. The anti-blocking mechanism includes an installation vertical rod, an installation rotating rod and a first lead screw. The installation vertical rod is fixedly inserted into the inner cavity of the liquid collecting frame body and is symmetrically structured. A lifting floating plate is slidably sleeved on the two installation vertical rods, and a counterweight block is fixedly inserted in the middle of the lifting floating plate. A limiting collar is fixedly sleeved at the upper end of the installation vertical rod, and the lifting floating plate can contact with the limiting collar. One end of the lifting floating plate is fixedly installed with an L-shaped side rod, and a driving rack is fixedly installed at the top end of the L-shaped side rod. A sliding groove is formed through the upper end of the V-shaped inner plate, and the driving rack slidably penetrates through the sliding groove. The installation rotating rod is rotatably inserted at one side of the upper end of the liquid collecting frame body, and a driven gear and a first bevel gear which are used in cooperation are fixedly installed on the installation rotating rod. The driven gear meshes with the driving rack. The first lead screw is rotatably inserted at the other side of the upper end of the liquid collecting frame body, and a second bevel gear is fixedly installed at the end of the first lead screw. The second bevel gear meshes with the first bevel gear. A T-shaped installation plate is threadedly sleeved on the first lead screw, and the T-shaped installation plate is slidably attached to the inner wall of the liquid collecting frame body. A first cleaning brush is fixedly installed at the bottom end of the T-shaped installation plate, and the first cleaning brush is in movable contact with the top end of the intercepting filter plate.
[0009] Preferably, the auxiliary cooling mechanism includes a driving motor which is fixedly installed in the inner cavity of the air conditioner outdoor unit body. The end of the output end of the driving motor is fixedly connected with a second lead screw. The second lead screw is rotatably inserted on the air conditioner outdoor unit body, and a sliding vertical plate is threadedly sleeved on the second lead screw. The sliding vertical plate is slidably connected with the air conditioner outdoor unit body. A transverse guide rod is fixedly inserted at the upper end of the inner cavity of the air conditioner outdoor unit body, and the sliding vertical plate is slidably sleeved on the transverse guide rod. A transverse guide hole is formed through the upper end of the sliding vertical plate, and the transverse guide rod is slidably inserted into the transverse guide hole. The bottom end of the sliding vertical plate is integrally formed with a U-shaped vertical plate. The U-shaped vertical plate is slidably sleeved on the outside of the condensing and radiating fin body, and the atomizing nozzle is fixedly inserted at the upper end of the inner side of the U-shaped vertical plate. Symmetrically arranged second cleaning brushes are fixedly installed on the inner wall of the U-shaped vertical plate, and the second cleaning brushes can be in movable contact with the outer wall of the condensing and radiating fin body.
[0010] Preferably, the co-seismic mechanism includes an electric telescopic rod and a sliding cross bar. The electric telescopic rod is fixedly inserted at the top of the inner mounting frame, and the end of the output end of the electric telescopic rod is fixedly sleeved with a U-shaped cross plate. Symmetrically distributed vertical guide rods are fixedly inserted on the U-shaped cross plate, and the vertical guide rods are slidably inserted on the inner mounting frame. Symmetrically distributed vertical guide holes are penetrated and opened at the top of the inner mounting frame, and the vertical guide rods are slidably inserted into the vertical guide holes. An array of first right-angled trapezoidal blocks is integrally formed on the upper side of one side of the U-shaped cross plate, and an array of second right-angled trapezoidal blocks is integrally formed on the lower side of one side of the U-shaped cross plate. The right-angled parts of the second right-angled trapezoidal blocks and the first right-angled trapezoidal blocks are in opposite directions. A sliding through hole is penetrated in the middle of the sliding vertical plate, and the sliding cross bar is slidably inserted into the sliding through hole. An impact collar is fixedly sleeved at one end of the sliding cross bar, and the impact collar can contact the sliding vertical plate. A U-shaped mounting block is fixedly installed at the other end of the sliding cross bar, and a return spring is fixedly installed on one side of the U-shaped mounting block. The end of the return spring is fixedly connected to the sliding vertical plate. A mounting rotating shaft is rotatably inserted on the U-shaped mounting block, and a moving roller is rotatably sleeved in the middle of the mounting rotating shaft. The moving roller is rotatably inserted into the inner side of the U-shaped mounting block, and the moving roller can movably contact the first right-angled trapezoidal block, the second right-angled trapezoidal block and the U-shaped cross plate.
[0011] Compared with the prior art, the beneficial effects of the present invention are as follows:
[0012] 1. Through the combined use of the main cooling mechanism and the anti-blocking mechanism, the rainwater falling in rainy weather can be filtered and collected, thereby realizing the recycling of rainwater. And when the working temperature inside the air conditioner outdoor unit body is relatively high, the rainwater stored in the liquid collecting frame can be introduced into the liquid outlet pipe body through the liquid inlet pipe body. Subsequently, the stored rainwater will be introduced into the atomizing nozzle and evenly sprayed to the outside of the condensing and heat dissipating fin body by the atomizing nozzle, so as to effectively cool and dissipate heat from the condensing and heat dissipating fin body, and thus ensure the refrigeration efficiency and refrigeration effect of the air conditioner outdoor unit body. In addition, with the accumulation and consumption of rainwater, the first cleaning brush can be driven to move, so as to clean the intercepting filter plate, and thus ensure the normal use of the intercepting filter plate;
[0013] 2. Through the setting and use of the auxiliary cooling mechanism, the second lead screw can be driven to rotate forward and backward alternately, so as to drive the sliding vertical plate to make a reciprocating motion, and then drive the U-shaped vertical plate to make a reciprocating motion, and then drive the two second cleaning brushes to make a reciprocating motion, so as to effectively clean the impurities attached to the outer wall of the condensing and heat dissipating fin body, so as to ensure the normal heat dissipation of the condensing and heat dissipating fin body, and thus further ensure the refrigeration efficiency and refrigeration effect of the air conditioner outdoor unit body. And the cleaning effect of the impurities on the outer wall of the condensing and heat dissipating fin body can be effectively improved by cooperating with the flushing of the sprayed rainwater;
[0014] 3. The setting and use of the co-vibration mechanism facilitate the position adjustment of the first right trapezoidal block and the second right trapezoidal block, thereby ensuring that the working mode of the relative movement between the moving roller and the second right trapezoidal block is the same as that between the moving roller and the first right trapezoidal block. Furthermore, it enables the impact collar to intermittently and rapidly impact the sliding vertical plate while the sliding vertical plate makes a reciprocating motion, so that the sliding vertical plate can generate vibrations intermittently while making a reciprocating motion. Moreover, it can drive the second cleaning brush to vibrate intermittently through the U-shaped vertical plate while the second cleaning brush makes a reciprocating motion, thus further improving the cleaning effect of the impurities on the outer wall of the condensation heat dissipation fin body. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] In order to more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the drawings in the following description are only some embodiments of the present invention. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts.
[0016] Figure 1 It is a schematic structural diagram of the present invention.
[0017] Figure 2 For the present invention Figure 1 The enlarged schematic diagram of the structure at A in it.
[0018] Figure 3 It is the connection schematic diagram of the main cooling mechanism in the present invention.
[0019] Figure 4 For the present invention Figure 3 The enlarged schematic diagram of the structure at B in it.
[0020] Figure 5 For the present invention Figure 3 The enlarged schematic diagram of the structure at C in it.
[0021] Figure 6 For the present invention Figure 3 The enlarged schematic diagram of the structure at D in it.
[0022] Figure 7 It is the installation schematic diagram of the auxiliary cooling mechanism in the present invention.
[0023] Figure 8 For the present invention Figure 7 The enlarged schematic diagram of the structure at E in it.
[0024] Figure 9 For the present invention Figure 7 The enlarged schematic diagram of the structure at F in it.
[0025] Figure 10Schematic diagram of the installation of the co-vibration mechanism in the present invention.
[0026] Figure 11 For the present invention Figure 10 Enlarged schematic diagram of the structure at G in the present invention.
[0027] Figure 12 For the present invention Figure 10 Enlarged schematic diagram of the structure at H in the present invention.
[0028] In the figure: 1. Air conditioner outdoor unit body; 11. Condensing and heat dissipation fin body; 12. Installation inner frame; 13. Heat dissipation fan body; 14. Vertical guide hole; 2. Main cooling mechanism; 21. Liquid collection frame body; 22. V-shaped inner plate; 23. Intercepting filter plate; 24. Liquid infusion pump body; 25. Liquid inlet pipe body; 26. Liquid outlet pipe body; 27. Atomizing nozzle; 28. Liquid guide pipe body; 29. Opening and closing valve; 210. Sliding groove; 3. Anti-blocking mechanism; 31. Installation vertical rod; 32. Installation rotating rod; 33. First lead screw; 34. Lifting floating plate; 35. Counterweight; 36. Limit collar; 37. L-shaped side rod; 38. Driving rack; 39. Driven gear; 310. First bevel gear; 311. Second bevel gear; 312. T-shaped mounting plate; 313. First cleaning brush; 4. Auxiliary cooling mechanism; 41. Driving motor; 42. Second lead screw; 43. Sliding vertical plate; 44. U-shaped vertical plate; 45. Second cleaning brush; 46. Horizontal guide rod; 47. Horizontal guide hole; 48. Sliding through hole; 5. Co-vibration mechanism; 51. Electric telescopic rod; 52. Sliding cross bar; 53. U-shaped cross plate; 54. First right trapezoidal block; 55. Second right trapezoidal block; 56. Impact collar; 57. U-shaped mounting block; 58. Return spring; 59. Installation rotating shaft; 510. Moving roller; 511. Vertical guide rod. Specific implementation manners
[0029] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without making creative efforts belong to the protection scope of the present invention.
[0030] Embodiment: As Figures 1 - 12As shown in the figure, the present invention provides a cooling device for an air conditioner cooling system, including an air conditioner outdoor unit body 1. On one side of the inner cavity of the air conditioner outdoor unit body 1, a cooperating condensation and heat dissipation fin body 11 is fixedly installed. On the other side of the inner cavity of the air conditioner outdoor unit body 1, a cooperating installation inner frame 12 is fixedly installed. A heat dissipation fan body 13 is fixedly inserted on the installation inner frame 12. In the inner cavity of the air conditioner outdoor unit body 1, there are cooperating components such as a compressor, etc. This is the prior art and will not be elaborated here. On the outer side of one end of the air conditioner outdoor unit body 1, a main cooling mechanism 2 cooperating with the condensation and heat dissipation fin body 11 is fixedly installed. In the inner cavity of the main cooling mechanism 2, a cooperating anti-blocking mechanism 3 is provided. And at the upper end of the inner cavity of the air conditioner outdoor unit body 1, there is an auxiliary cooling mechanism 4 and a vibration coordination mechanism 5 cooperating with the main cooling mechanism 2. The cooperation of the main cooling mechanism 2 and the anti-blocking mechanism 3 realizes the recycling of rainwater, and can effectively cool and dissipate heat from the condensation and heat dissipation fin body 11 when the working temperature inside the air conditioner outdoor unit body 1 is relatively high. In addition, it ensures the normal progress of rainwater filtration operation. The setting and use of the auxiliary cooling mechanism 4 can effectively clean the impurities attached to the outer wall of the condensation and heat dissipation fin body 11, and the cooperation with the flushing of sprayed rainwater can effectively improve the cleaning effect of the impurities on the outer wall of the condensation and heat dissipation fin body 11. The setting and use of the vibration coordination mechanism 5 can further improve the cleaning effect of the impurities on the outer wall of the condensation and heat dissipation fin body 11.
[0031] The main cooling mechanism 2 includes a liquid collecting frame 21, which is fixedly installed on the outer wall of one end of the air conditioner outdoor unit body 1. One side of the bottom end of the liquid collecting frame 21 is communicated with a liquid guiding pipe body 28, and a switching valve 29 is fixedly installed on the liquid guiding pipe body 28. The cooperation of the liquid guiding pipe body 28 and the switching valve 29 facilitates the export of the rainwater collected in the liquid collecting frame 21. An inner V-shaped plate 22 is fixedly installed at the upper end of the inner cavity of the liquid collecting frame 21, and an intercepting filter plate 23 is fixedly inserted on the inner V-shaped plate 22. A liquid infusion pump body 24 is fixedly installed at one side of the bottom end of the inner cavity of the liquid collecting frame 21, and a liquid inlet pipe body 25 and a liquid outlet pipe body 26 for cooperation are arranged at the bottom end of the liquid infusion pump body 24. The liquid outlet pipe body 26 is fixedly inserted on the liquid collecting frame 21, and the top end of the liquid outlet pipe body 26 is fixedly connected with an atomizing nozzle 27. The atomizing nozzle 27 is fixedly inserted at the upper end of the inner cavity of the air conditioner outdoor unit body 1 and is located above the condensing and heat dissipating fin body 11. The anti-blocking mechanism 3 includes a mounting vertical rod 31, a mounting rotating rod 32 and a first lead screw 33. The mounting vertical rod 31 is fixedly inserted into the inner cavity of the liquid collecting frame 21 and is symmetrically structured. A lifting floating plate 34 is slidably sleeved on the two mounting vertical rods 31, and a counterweight block 35 is fixedly inserted in the middle of the lifting floating plate 34. A limiting collar 36 is fixedly sleeved at the upper end of the mounting vertical rod 31, and the lifting floating plate 34 can contact with the limiting collar 36. An L-shaped side rod 37 is fixedly installed at one end of the lifting floating plate 34, and a driving rack 38 is fixedly installed at the top end of the L-shaped side rod 37. A sliding groove 210 is formed through the upper end of the inner V-shaped plate 22, and the driving rack 38 slidably penetrates through the sliding groove 210. The arrangement of the sliding groove 210 ensures the stable movement of the driving rack 38. The mounting rotating rod 32 is rotatably inserted at one side of the upper end of the liquid collecting frame 21, and a driven gear 39 and a first bevel gear 310 for cooperation are fixedly installed on the mounting rotating rod 32. The driven gear 39 meshes with the driving rack 38. The first lead screw 33 is rotatably inserted at the other side of the upper end of the liquid collecting frame 21, and a second bevel gear 311 is fixedly installed at the end of the first lead screw 33. The second bevel gear 311 meshes with the first bevel gear 310. A T-shaped mounting plate 312 is threadedly sleeved on the first lead screw 33, and the T-shaped mounting plate 312 is slidably attached to the inner wall of the liquid collecting frame 21. A first cleaning brush 313 is fixedly installed at the bottom end of the T-shaped mounting plate 312, and the first cleaning brush 313 is in movable contact with the top end of the intercepting filter plate 23.
[0032] By adopting the above technical solution, during use, in rainy weather, rainwater can fall onto the upper end of the liquid collection frame body 21. Subsequently, the intercepting filter plate 23 can intercept impurities in the rainwater, and the filtered rainwater will fall into the lower end of the inner cavity of the liquid collection frame body 21 for storage. And as the rainwater gradually accumulates, when the rainwater contacts the bottom end of the lifting floating plate 34, it will push the upper end thereof, so that the driving rack 38 can be driven to move upward through the L-shaped side rod 37. Furthermore, the driven gear 39 can be driven to rotate, and further the first bevel gear 310 can be driven to rotate through the installation rotating rod 32, so that the second bevel gear 311 can be driven to rotate. Furthermore, the first lead screw 33 can be driven to rotate, and further the T-shaped installation plate 312 can be driven to move obliquely downward along the axis of the first lead screw 33, so that the first cleaning brush 313 can be driven to move obliquely downward along the axis of the first lead screw 33, and thus a primary cleaning treatment can be carried out on the intercepting filter plate 23. And when the lifting floating plate 34 moves to the highest position, the first cleaning brush 313 stops moving. And during subsequent use, when the internal working temperature of the air conditioner outdoor unit body 1 is relatively high, the liquid infusion pump body 24 will be started, so that the rainwater stored in the liquid collection frame body 21 can be introduced into the liquid outlet pipe body 26 through the liquid inlet pipe body 25. Subsequently, the stored rainwater will be introduced into the atomizing nozzle 27 and evenly sprayed to the outside of the condensation and heat dissipation fin body 11 by the atomizing nozzle 27, so that the condensation and heat dissipation fin body 11 can be effectively cooled and dissipated, and thus the refrigeration efficiency and refrigeration effect of the air conditioner outdoor unit body 1 are guaranteed. In addition, as the rainwater is used, the lifting floating plate 34 will move downward under the action of the counterweight 35, so that the first lead screw 33 can be driven to reverse and the first cleaning brush 313 can be driven to reset, and thus the intercepting filter plate 23 can be cleaned again.
[0033] The auxiliary cooling mechanism 4 includes a driving motor 41. The driving motor 41 is fixedly installed in the inner cavity of the air conditioner outdoor unit body 1, and the end of the output end of the driving motor 41 is fixedly connected with a second lead screw 42. The second lead screw 42 is rotatably inserted on the air conditioner outdoor unit body 1, and a sliding vertical plate 43 is threadedly sleeved on the second lead screw 42. The sliding vertical plate 43 is slidably connected with the air conditioner outdoor unit body 1. The upper end of the inner cavity of the air conditioner outdoor unit body 1 is fixedly inserted with a transverse guide rod 46, and the sliding vertical plate 43 is slidably sleeved on the transverse guide rod 46. A transverse guide hole 47 is opened through the upper end of the sliding vertical plate 43, and the transverse guide rod 46 is slidably inserted into the transverse guide hole 47. The cooperation of the transverse guide rod 46 and the transverse guide hole 47 plays a role in limiting and guiding the movement adjustment of the sliding vertical plate 43. And a U-shaped vertical plate 44 is integrally formed at the bottom end of the sliding vertical plate 43. The U-shaped vertical plate 44 is slidably sleeved on the outside of the condensation and heat dissipation fin body 11, and the atomizing nozzle 27 is fixedly inserted into the upper end of the inner side of the U-shaped vertical plate 44. Symmetrically arranged second cleaning brushes 45 are fixedly installed on the inner wall of the U-shaped vertical plate 44, and the second cleaning brushes 45 can be in movable contact with the outer wall of the condensation and heat dissipation fin body 11.
[0034] By adopting the above technical solution, during use, the driving motor 41 will start, thereby driving the second lead screw 42 to rotate forward and backward alternately, further driving the sliding vertical plate 43 to move in a reciprocating motion, further driving the U-shaped vertical plate 44 to move in a reciprocating motion, thereby driving the two second cleaning brushes 45 to move in a reciprocating motion, and then effectively cleaning the impurities attached to the outer wall of the condensing heat dissipation fin body 11, thus ensuring the normal heat dissipation of the condensing heat dissipation fin body 11, and further ensuring the refrigeration efficiency and refrigeration effect of the outdoor unit body 1 of the air conditioner. Moreover, the cooperation with the flushing of the sprayed rainwater can effectively improve the cleaning effect of the impurities on the outer wall of the condensing heat dissipation fin body 11.
[0035] The resonance mechanism 5 includes an electric telescopic rod 51 and a sliding cross bar 52. The electric telescopic rod 51 is fixedly inserted at the top of the installation inner frame 12, and the end of the output end of the electric telescopic rod 51 is fixedly sleeved with a U-shaped cross plate 53. Symmetrically distributed vertical guide rods 511 are fixedly inserted on the U-shaped cross plate 53, and the vertical guide rods 511 are slidably inserted on the installation inner frame 12. Symmetrically distributed vertical guide holes 14 are penetrated and opened at the top of the installation inner frame 12, and the vertical guide rods 511 are slidably inserted into the vertical guide holes 14. The cooperation of the vertical guide rods 511 and the vertical guide holes 14 plays a role in limiting and guiding the movement adjustment of the U-shaped cross plate 53. On one side and the upper end of the U-shaped cross plate 53, a first right-angled trapezoidal block 54 is integrally formed in an array, and on one side and the lower end of the U-shaped cross plate 53, a second right-angled trapezoidal block 55 is integrally formed in an array. The right-angled parts of the second right-angled trapezoidal block 55 and the first right-angled trapezoidal block 54 are in opposite directions. A sliding through hole 48 is penetrated in the middle of the sliding vertical plate 43, and the sliding cross bar 52 is slidably inserted into the sliding through hole 48. An impact collar 56 is fixedly sleeved at one end of the sliding cross bar 52, and the impact collar 56 can contact the sliding vertical plate 43. A U-shaped mounting block 57 is fixedly installed at the other end of the sliding cross bar 52, and a return spring 58 is fixedly installed on one side of the U-shaped mounting block 57. The end of the return spring 58 is fixedly connected to the sliding vertical plate 43. A mounting rotating shaft 59 is rotatably inserted on the U-shaped mounting block 57, and a moving roller 510 is rotatably sleeved in the middle of the mounting rotating shaft 59. The arrangement of the mounting rotating shaft 59 provides a guarantee for the stable rotation of the moving roller 510. The moving roller 510 is rotatably inserted into the inner side of the U-shaped mounting block 57, and the moving roller 510 can be in movable contact with the first right-angled trapezoidal block 54, the second right-angled trapezoidal block 55, and the U-shaped cross plate 53.
[0036] By adopting the above technical solution, during use, the sliding vertical plate 43 will drive the sliding cross bar 52 to make a reciprocating motion synchronously. When the sliding cross bar 52 moves towards the side close to the driving motor 41, the moving roller 510 will successively contact a plurality of first right trapezoidal blocks 54. At this time, the moving roller 510 will successively roll from the U-shaped cross plate 53 to the inclined plane and the plane of the first right trapezoidal block 54, so as to drive the U-shaped mounting block 57 to move towards the side close to the sliding vertical plate 43. Furthermore, it can drive the impact collar 56 to move away from the side of the sliding vertical plate 43 and compress the return spring 58 through the sliding cross bar 52. Subsequently, the moving roller 510 will successively separate from the corresponding first right trapezoidal blocks 54 and be driven by the return spring 58 to quickly reset, so as to drive the impact collar 56 to quickly reset and impact the sliding vertical plate 43. When the sliding cross bar 52 moves towards the side away from the driving motor 41, the electric telescopic rod 51 will start, so as to drive the U-shaped cross plate 53 to move upward. Furthermore, it can drive the first right trapezoidal block 54 and the second right trapezoidal block 55 to move upward. When the second right trapezoidal block 55 moves up to the height of the initial first right trapezoidal block 54, the electric telescopic rod 51 is turned off. Then, the moving roller 510 and the second right trapezoidal block 55 will work according to the movement mode of the moving roller 510 and the first right trapezoidal block 54, so as to enable the impact collar 56 to intermittently and quickly impact the sliding vertical plate 43 while the sliding vertical plate 43 makes a reciprocating motion. Furthermore, it can enable the sliding vertical plate 43 to intermittently generate vibrations while making a reciprocating motion. Further, it can drive the second cleaning brush 45 to intermittently vibrate through the U-shaped vertical plate 44 while the second cleaning brush 45 makes a reciprocating motion, so as to further improve the cleaning effect of the impurities on the outer wall of the condensation heat dissipation fin body 11.
[0037] Working principle: When in use, during rainy and cloudy weather, rainwater can fall onto the upper end of the liquid collection frame body 21. Subsequently, the intercepting filter plate 23 can intercept the impurities in the rainwater, and the filtered rainwater will fall into the lower end of the inner cavity of the liquid collection frame body 21 for storage. And as the rainwater gradually accumulates, when the rainwater contacts the bottom end of the lifting floating plate 34, it will push the upper end of the lifting floating plate 34, so that the driving rack 38 can be driven to move upward through the L-shaped side rod 37. Furthermore, the driven gear 39 can be driven to rotate, and further the first bevel gear 310 can be driven to rotate through the installation rotating rod 32, so that the second bevel gear 311 can be driven to rotate. Furthermore, the first lead screw 33 can be driven to rotate, and further the T-shaped installation plate 312 can be driven to move obliquely downward along the axis of the first lead screw 33, so that the first cleaning brush 313 can be driven to move obliquely downward along the axis of the first lead screw 33, and thus the intercepting filter plate 23 can be cleaned once. And when the lifting floating plate 34 moves to the highest position, the first cleaning brush 313 stops moving. And during subsequent use, when the internal working temperature of the air conditioner outdoor unit body 1 is relatively high, the liquid delivery pump body 24 will be started, so that the rainwater stored in the liquid collection frame body 21 can be introduced into the liquid outlet pipe body 26 through the liquid inlet pipe body 25. Subsequently, the stored rainwater will be introduced into the atomizing nozzle 27 and evenly sprayed to the outside of the condensation and heat dissipation fin body 11 by the atomizing nozzle 27, so that the condensation and heat dissipation fin body 11 can be effectively cooled and dissipated, and thus the refrigeration efficiency and refrigeration effect of the air conditioner outdoor unit body 1 are guaranteed. In addition, as the rainwater is used, the lifting floating plate 34 will move downward under the action of the counterweight block 35, so that the first lead screw 33 can be driven to reverse and the first cleaning brush 313 can be driven to reset, and thus the intercepting filter plate 23 can be cleaned again;
[0038] At the same time, the driving motor 41 will be started, so that the second lead screw 42 can be driven to rotate in a positive and negative alternating manner, and further the sliding vertical plate 43 can be driven to perform a reciprocating motion, and further the U-shaped vertical plate 44 can be driven to perform a reciprocating motion, so that the two second cleaning brushes 45 can be driven to perform a reciprocating motion, and thus the impurities attached to the outer wall of the condensation and heat dissipation fin body 11 can be effectively cleaned, so that the normal heat dissipation of the condensation and heat dissipation fin body 11 can be guaranteed, and thus the refrigeration efficiency and refrigeration effect of the air conditioner outdoor unit body 1 are further guaranteed. And the cleaning effect of the impurities on the outer wall of the condensation and heat dissipation fin body 11 can be effectively improved by cooperating with the flushing of the sprayed rainwater;
[0039] During this period, the sliding vertical plate 43 will drive the sliding cross bar 52 to move in a cyclic reciprocating motion synchronously. When the sliding cross bar 52 moves towards the side close to the driving motor 41, the moving roller 510 will successively contact a plurality of first right trapezoidal blocks 54. At this time, the moving roller 510 will successively roll from the U-shaped cross plate 53 to the inclined surface and the plane of the first right trapezoidal block 54, so as to drive the U-shaped mounting block 57 to move towards the side close to the sliding vertical plate 43. Furthermore, it can drive the impact collar 56 to move away from the sliding vertical plate 43 and compress the return spring 58 through the sliding cross bar 52. Subsequently, the moving roller 510 will successively separate from the corresponding first right trapezoidal block 54 and be driven by the return spring 58 to quickly reset, so as to drive the impact collar 56 to quickly reset and impact the sliding vertical plate 43. When the sliding cross bar 52 moves towards the side away from the driving motor 41, the electric telescopic rod 51 will be activated, so as to drive the U-shaped cross plate 53 to move upward. Furthermore, it can drive the first right trapezoidal block 54 and the second right trapezoidal block 55 to move upward. When the second right trapezoidal block 55 moves up to the height of the initial first right trapezoidal block 54, the electric telescopic rod 51 will be turned off. Then, the moving roller 510 and the second right trapezoidal block 55 will work according to the motion mode of the moving roller 510 and the first right trapezoidal block 54. Thus, while the sliding vertical plate 43 moves in a cyclic reciprocating motion, the impact collar 56 can intermittently and quickly impact the sliding vertical plate 43. Furthermore, it can make the sliding vertical plate 43 generate vibrations intermittently while moving in a cyclic reciprocating motion. Further, while the second cleaning brush 45 moves in a cyclic reciprocating motion, it can drive the U-shaped vertical plate 44 to vibrate intermittently through the U-shaped vertical plate 44, so as to further improve the cleaning effect of the impurities on the outer wall of the condensation heat dissipation fin body 11.
[0040] Obviously, those skilled in the art can make various modifications and variations to the present invention without departing from the spirit and scope of the present invention. Thus, if these modifications and variations of the present invention fall within the scope of the claims of the present invention and their equivalent technologies, the present invention also intends to include these modifications and variations.
Claims
1. A cooling device for an air conditioning cooling system, comprising an air conditioning outdoor unit body (1), a condensing heat dissipation fin body (11) for use with the air conditioning outdoor unit body (1) being fixedly mounted on one side of an inner cavity of the air conditioning outdoor unit body (1), and a mounting inner frame (12) for use with the air conditioning outdoor unit body (1) being fixedly mounted on the other side of the inner cavity of the air conditioning outdoor unit body (1), a heat dissipation fan body (13) being fixedly plugged on the mounting inner frame (12), and a main cooling mechanism (2) for use with the condensing heat dissipation fin body (11) being fixedly mounted on the outer side of one end of the air conditioning outdoor unit body (1), characterized in that: An anti-blocking mechanism (3) for use with the main cooling mechanism (2) is provided in the inner cavity of the main cooling mechanism (2), and an auxiliary cooling mechanism (4) and a vibration-coordinating mechanism (5) for use with the main cooling mechanism (2) are provided at the upper end of the inner cavity of the air conditioner outer unit body (1); The coordinated use of the main cooling mechanism (2) and the anti-blocking mechanism (3) realizes the recycling of rainwater, and can spray water to cool down and dissipate heat on the condensing heat dissipation fin body (11) when the internal operating temperature of the air conditioner outdoor unit body (1) is high, and rainwater filtering is realized; the auxiliary cooling mechanism (4) cleans impurities attached to the outer wall of the condensing heat dissipation fin body (11), and the cleaning efficiency of impurities on the outer wall of the condensing heat dissipation fin body (11) is improved by spraying rainwater for flushing; the vibration coordination mechanism (5) intermittently generates vibration to further enhance the cleaning efficiency of impurities on the outer wall of the condensing heat dissipation fin body (11); The main cooling mechanism (2) comprises a liquid collecting frame (21), the liquid collecting frame (21) being fixedly mounted on an outer wall of one end of an air conditioner outer unit body (1), and a V-shaped inner plate (22) being fixedly mounted on the upper end of the inner cavity of the liquid collecting frame (21), and an intercepting filter plate (23) being fixedly plugged onto the V-shaped inner plate (22); An infusion pump body (24) is fixedly mounted on one side of the bottom end of the inner cavity of the liquid collecting frame (21), and a liquid inlet pipe body (25) and a liquid outlet pipe body (26) for use together are provided at the bottom end of the infusion pump body (24), the liquid outlet pipe body (26) is fixedly inserted on the liquid collecting frame (21), and the top end of the liquid outlet pipe body (26) is fixedly connected to an atomizing nozzle (27), the atomizing nozzle (27) is fixedly inserted at the upper end of the inner cavity of the air conditioner outdoor unit body (1), and the atomizing nozzle (27) is located at the upper end of the condensing heat dissipation fin body (11); The anti-blocking mechanism (3) comprises a mounting vertical rod (31), a mounting rotating rod (32) and a first screw rod (33); the mounting vertical rod (31) is fixedly inserted in the inner cavity of the liquid collecting frame (21), and the mounting vertical rod (31) is symmetrical in structure; a lifting floating plate (34) is slidably sleeved on the two mounting vertical rods (31), and a counterweight block (35) is fixedly inserted in the middle of the lifting floating plate (34); The upper end of the mounting vertical rod (31) is fixedly sleeved with a limiting collar (36), and the lifting floating plate (34) can contact the limiting collar (36); one end of the lifting floating plate (34) is fixedly mounted with an L-shaped side rod (37), and the top end of the L-shaped side rod (37) is fixedly mounted with a driving rack (38); the upper end of the V-shaped inner plate (22) is penetrated by a sliding groove (210), and the driving rack (38) slides through the sliding groove (210); the mounting rotating rod (32) is rotated The first screw rod (33) is rotatably inserted at one side of the upper end of the liquid collecting frame (21), and a driven gear (39) and a first bevel gear (310) for use therewith are fixedly installed on the mounting rotating rod (32), the driven gear (39) meshing with the driving rack (38), the first screw rod (33) is rotatably inserted at the other side of the upper end of the liquid collecting frame (21), and a second bevel gear (311) is fixedly installed at the end of the first screw rod (33), and the second bevel gear (311) meshes with the first bevel gear (310); A T-shaped mounting plate (312) is threadedly sleeved on the first screw rod (33), and the T-shaped mounting plate (312) is slidably fitted with the inner wall of the liquid collecting frame (21); a first cleaning brush (313) is fixedly mounted on the bottom end of the T-shaped mounting plate (312), and the first cleaning brush (313) is in movably contact with the top end of the intercepting filter plate (23); The auxiliary cooling mechanism (4) comprises a driving motor (41), the driving motor (41) is fixedly mounted in the inner cavity of the air conditioner outdoor unit body (1), and the end of the output end of the driving motor (41) is fixedly connected to a second screw rod (42), the second screw rod (42) is rotatably inserted on the air conditioner outdoor unit body (1), and a sliding vertical plate (43) is threadedly sleeved on the second screw rod (42), the sliding vertical plate (43) is slidably connected to the air conditioner outdoor unit body (1), and a U-shaped vertical plate (44) is integrally formed at the bottom end of the sliding vertical plate (43), the U-shaped vertical plate (44) is slidably sleeved on the outer side of the condensing heat dissipation fin body (11), and the atomizing nozzle (27) is fixedly inserted at the inner upper end of the U-shaped vertical plate (44), and a symmetrically arranged second cleaning brush (45) is fixedly mounted on the inner wall of the U-shaped vertical plate (44), and the second cleaning brush (45) can movably contact the outer wall of the condensing heat dissipation fin body (11); The co-seismic mechanism (5) comprises an electric telescopic rod (51) and a sliding cross rod (52); the electric telescopic rod (51) is fixedly inserted at the top end of the mounting inner frame (12); and the end of the output end of the electric telescopic rod (51) is fixedly sleeved with a U-shaped cross plate (53); an upper end of one side of the U-shaped cross plate (53) is integrally formed with a first right-angled trapezoidal block (54) distributed in an array; and a lower end of one side of the U-shaped cross plate (53) is integrally formed with a second right-angled trapezoidal block (55) distributed in an array; the second right-angled trapezoidal block (55) is in the opposite direction to the right angle portion of the first right-angled trapezoidal block (54); A sliding through hole (48) is formed through the middle of the sliding vertical plate (43), and a sliding cross bar (52) is slidably inserted into the sliding through hole (48). An impact ring (56) is fixedly sleeved on one end of the sliding cross bar (52), and the impact ring (56) can contact the sliding vertical plate (43). A U-shaped mounting block (57) is fixedly mounted on the other end of the sliding cross bar (52), and a return spring (58) is fixedly mounted on one side of the U-shaped mounting block (57). The end of the return spring (58) is fixedly connected to the sliding vertical plate (43); a mounting shaft (59) is rotatably inserted on the U-shaped mounting block (57); and a moving roller (510) is rotatably sleeved on the middle part of the mounting shaft (59); the moving roller (510) is rotatably inserted on the inner side of the U-shaped mounting block (57); and the moving roller (510) is capable of movably contacting the first right-angle trapezoidal block (54), the second right-angle trapezoidal block (55) and the U-shaped horizontal plate (53); The U-shaped horizontal plate (53) is fixedly plugged with symmetrically distributed vertical guide rods (511), and the vertical guide rods (511) are slidably plugged on the mounting inner frame (12); The top end of the mounting inner frame (12) is penetrated by symmetrically distributed vertical guide holes (14), and the vertical guide rods (511) are slidably inserted into the vertical guide holes (14).
2. A cooling device for an air conditioning cooling system according to claim 1, characterized in that: A liquid guide tube (28) is provided in communication with one side of the bottom end of the liquid collecting frame (21), and an opening and closing valve (29) is fixedly mounted on the liquid guide tube (28).
3. A cooling device for an air conditioning cooling system according to claim 1, characterized in that: A transverse guide rod (46) is fixedly inserted into the upper end of the inner cavity of the air conditioner outer unit body (1), and the sliding vertical plate (43) is slidably sleeved on the transverse guide rod (46).
4. A cooling device for an air conditioning cooling system according to claim 3, characterized in that: A transverse guide hole (47) is formed through the upper end of the sliding vertical plate (43), and a transverse guide rod (46) is slidably inserted into the transverse guide hole (47).
Citation Information
Patent Citations
Energy-saving air conditioner outdoor unit fin cleaning device
CN108954561A
Heat pump heat exchanger and heat pump using same
CN115289898A