Energy-saving water cooling mechanism and recycling system of gas compressor unit
The water-cooling system, consisting of a U-shaped water-cooled box and water supply pipes, solves the problems of small heat dissipation contact area and short cooling time in traditional water cooling systems, achieving efficient cooling and recycling of cooling water to meet the high-intensity operation requirements of gas compressors.
Patent Information
- Application Number
- CN202511091108.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-05
- Publication Date
- 2025-12-05
- Estimated Expiration
- 2045-08-05
AI Technical Summary
Traditional water-cooling methods have a small contact area and short cooling time in gas compressors, which means that heat cannot be removed in time during high-intensity operation, which may cause equipment damage.
The water cooling system consists of a U-shaped water-cooled box and a U-shaped water supply pipe. Condensate is sprayed onto the inner wall of the U-shaped water-cooled box through a spray pipe, increasing the contact area and extending the cooling time. At the same time, quick installation and disassembly are achieved through movable connection components and pipe locking mechanisms.
It achieves efficient cooling, meeting the high-intensity working requirements of gas compressors, and the cooling water is recycled, improving the stability and ease of maintenance of the equipment.
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Figure CN120720197B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of gas compressor technology, specifically to an energy-saving water-cooling mechanism and recycling system for a gas compressor unit. Background Technology
[0002] A gas compressor is a device that increases gas pressure and delivers gas. It compresses gas in a compression chamber, generating a significant amount of heat during the compression process. This heat needs to be dissipated to ensure the normal operation of the gas compressor. Currently, the most common heat dissipation method is water cooling. Traditional water cooling involves transporting cooling water through pipes. During the circulation of cooling water, the contact area between the pipes and the compression chamber is small, and the cooling time for the compression chamber is also relatively short. This water cooling method means that when the gas compressor is operating at high intensity, it cannot remove as much heat as possible in time, resulting in poor cooling effect of the compression chamber and, in severe cases, damage to the gas compressor. Summary of the Invention
[0003] The purpose of this invention is to provide an energy-saving water-cooling mechanism and recycling system for a gas compressor unit to solve the problems mentioned in the background art.
[0004] To achieve the above objectives, the present invention provides the following technical solution:
[0005] An energy-saving water-cooling mechanism for a gas compressor unit includes a U-shaped water-cooling box and a U-shaped water supply pipe. The U-shaped water-cooling box is installed on the unit's support plate, and a gas storage tank and a compression box are fixedly installed on the unit's support plate.
[0006] The U-shaped water-cooled box is fitted onto the compression box to cool and reduce the temperature of the compression box. The U-shaped water supply pipe is installed at the upper port of the U-shaped water-cooled box, and a water spray pipe is fixedly installed at the lower end of the U-shaped water supply pipe to spray water into the U-shaped water-cooled box.
[0007] The U-shaped water-cooled box is equipped with a box locking assembly on both sides, which fixes the U-shaped water-cooled box to the unit support plate.
[0008] A movable connecting component is installed on the U-shaped water supply pipe. The movable connecting component drives the box locking component to move, thereby completing the fixed installation of the U-shaped water-cooled box.
[0009] The U-shaped water supply pipe is also symmetrically equipped with a pipe fitting locking mechanism, which locks the movable connection components and fixes the U-shaped water supply pipe to the U-shaped water cooling box.
[0010] Preferably, an external connecting pipe is fixedly installed at the lower end of the U-shaped water-cooled box, and a movable external connecting pipe is movably installed on the external connecting pipe.
[0011] Preferably, the housing locking assembly is a housing carrier bar, and a lower extension carrier bar is fixedly installed on the housing carrier bar to fix the U-shaped water-cooled box to the unit support plate.
[0012] Preferably, the carrier bar on one side of the U-shaped water-cooled box can also drive the movable external pipe to move.
[0013] Preferably, the movable connecting component is a double-ended connecting pipe, on which outer support strips are symmetrically fixed, and on which load-bearing mating rods are fixed, and on which mating pressure plates are fixed.
[0014] Preferably, the pipe locking mechanism includes a pipe locking plate and a movable support block, with the movable support block symmetrically and movably connected to both ends of the pipe locking plate.
[0015] Preferably, a locking post is fixedly installed on the locking post support plate, and the locking post cooperates with the matching pressure plate to fix the double-ended connecting pipe.
[0016] Preferably, a locking rod is fixedly installed on the movable block, and the locking rod cooperates with the U-shaped water-cooled box to fix the U-shaped water supply pipe on the U-shaped water-cooled box.
[0017] A recycling system includes a water pump and a condenser. The water pump is connected to the condenser, and a sealed connecting pipe is fixedly installed on the water pump. The sealed connecting pipe is connected to a U-shaped water-cooled box through a movable external connecting pipe.
[0018] Preferably, a water-cooling pipe is fixedly installed on the condenser, and the water-cooling pipe is connected to the lower end of the double-ended connecting pipe.
[0019] Compared with the prior art, the beneficial effects of the present invention are: the present invention has a reasonable structural design and strong functionality, and has the following advantages:
[0020] 1. A U-shaped water-cooled box is wrapped around the compressor box, and a U-shaped water supply pipe is installed on the U-shaped water-cooled box. The condensate can be continuously sprayed out through the U-shaped water supply pipe, so that it is sprayed onto the inner wall of the U-shaped water-cooled box. Since the U-shaped water-cooled box is wrapped around the compressor box, the contact area can be greatly increased when the condensate is sprayed onto the inner wall of the U-shaped water-cooled box. At the same time, the condensate slides down the inner wall of the U-shaped water-cooled box, which increases the cooling time of the condensate on the compressor box, thereby ensuring the water cooling effect, achieving efficient cooling, and meeting the high-efficiency working requirements of the gas compressor.
[0021] 2. When installing the U-shaped water-cooled box, it is fitted onto the compression box. Then, the U-shaped water supply pipe is positioned at its upper end. Pushing the double-ended connecting pipe will fix the U-shaped water supply pipe onto the U-shaped water-cooled box, completing the fixed connection between the two. At the same time, it can also connect the double-ended connecting pipe to the condenser. In addition, as the double-ended connecting pipe moves, it will also drive the box body carrier bar to move, thereby allowing the locking insert on the box body carrier bar to be inserted into the locking mating cavity, thus fixing the U-shaped water-cooled box. The box body carrier bar on one side will also drive the movable external pipe to move, allowing the movable external pipe to connect to the water pump. This enables the circulation of cooling water, making the installation and disassembly of the entire mechanism very convenient and quick. Attached Figure Description
[0022] Figure 1 This is a schematic diagram of the assembly of the unit's bearing plate.
[0023] Figure 2 This is a structural schematic diagram of the unit's bearing plate.
[0024] Figure 3 A first-person view of the assembly of the U-shaped water-cooled box and the U-shaped water supply pipe.
[0025] Figure 4 A second-view schematic diagram of the assembly of a U-shaped water-cooled box and a U-shaped water supply pipe.
[0026] Figure 5 An exploded view of the assembly of a U-shaped water-cooled box.
[0027] Figure 6 This is a schematic diagram showing the connection between the U-shaped water supply pipe and the condenser.
[0028] Figure 7 This is a schematic diagram of a U-shaped water delivery pipe.
[0029] Figure 8 A first-person view diagram of the assembly of a U-shaped water pipe.
[0030] Figure 9 A second-view diagram of the assembly of a U-shaped water pipe.
[0031] In the diagram: 1. Unit support plate; 11. Gas storage tank; 12. Compression box; 13. Locking support block; 14. Locking mating cavity; 2. U-shaped water-cooled box; 21. End ring plate; 22. Lower insertion channel; 23. Mounting block; 24. Insertion lock channel; 25. Inner insertion slide; 251. Inner bearing slide rod; 26. Reinforcing support column; 261. Reinforcing cavity; 27. External connecting pipe; 271. Mating pipe cavity; 3. Movable external connecting pipe; 31. Pipe end protrusion ring; 32. Drive slot; 33. Connecting ring plate; 4. Box body support bar; 41. Drive insertion cavity; 42. External plate; 43. Support column; 44. Movable insertion hole; 45. First mating spring; 46. Lower extension support bar; 47. Reinforcing support column; 48. Locking insertion bar; 49. Drive insertion plate; 5. U-shaped water supply pipe; 51. Water spray. 52. Outer ring bearing plate; 53. Mounting positioning hole; 54. Moving channel; 55. First bearing hole; 56. Second bearing hole; 57. Restriction channel; 58. Outer protrusion; 581. Bearing channel; 59. Bearing pipe; 591. First contact ring; 6. Double-ended connecting pipe; 61. Bearing pipe ring; 62. Sealing ring; 63. Outer bearing strip; 64. Bearing mating rod; 65. Mating pressure plate; 66. Locking pipe channel; 67. Support protrusion; 68. Drive insertion rod; 7. Locking pipe bearing plate; 71. Locking pipe column; 72. Linkage mating rod; 73. Movable carrier block; 74. Locking carrier rod; 75. Second mating spring; 8. Water pump; 81. Sealing connecting pipe; 82. Sealing bearing ring; 83. Sealing ring channel; 9. Condenser; 91. Water cooling pipe; 92. Second contact ring. Detailed Implementation
[0032] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0033] This invention provides a technical solution:
[0034] like Figure 1 and Figure 9As shown, an energy-saving water-cooling mechanism for a gas compressor unit includes a U-shaped water-cooling box 2 and a U-shaped water supply pipe 5. The U-shaped water-cooling box 2 is mounted on a unit support plate 1. A gas storage tank 11 and a compression chamber 12 are fixedly mounted on the unit support plate 1 by bolts and connected to each other by a pipe. The U-shaped water-cooling box 2 is fitted onto the compression chamber 12 to cool it down. The U-shaped water supply pipe 5 is installed at the upper end of the U-shaped water-cooling box 2, and a water spray pipe 51 is welded and fixed to the lower end of the U-shaped water supply pipe 5. Water is sprayed through the water spray pipe 51 to... Water is sprayed into the U-shaped water-cooled box 2. Box locking components are installed on both sides of the U-shaped water-cooled box 2. The U-shaped water-cooled box 2 is fixed to the unit support plate 1 by the box locking components. The U-shaped water supply pipe 5 is equipped with a movable connecting component. The movable connecting component drives the box locking component to move, completing the fixed installation of the U-shaped water-cooled box 2. The U-shaped water supply pipe 5 is also symmetrically equipped with a pipe fitting locking mechanism. The pipe fitting locking mechanism locks the movable connecting component and fixes the U-shaped water supply pipe 5 to the U-shaped water-cooled box 2.
[0035] like Figure 2 As shown, locking bearing blocks 13 are symmetrically welded and fixed on the unit support plates 1 on both sides of the compression box 12, and locking mating cavities 14 are opened on the locking bearing blocks 13.
[0036] like Figure 3 , Figure 4 and Figure 5 As shown, an external connecting pipe 27 is fixedly installed at the lower end of the U-shaped water-cooled box 2, and a movable external connecting pipe 3 is movably installed on the external connecting pipe 27. An end ring plate 21 is integrally formed at the upper end of the U-shaped water-cooled box 2. The end ring plate 21 has symmetrically opened insertion channels 22 on both sides, and a mounting block 23 is welded and fixed on the end ring plate 21. The mounting block 23 has an insertion locking channel 24. In addition, an inner insertion slide 25 is symmetrically opened at one end of the end ring plate 21. 5. The inner bearing slide rod 251 is welded in the middle. The two sides of the U-shaped water-cooled box 2 are integrally formed with reinforcing support columns 26. The reinforcing support columns 26 are provided with reinforcing cavities 261. The outer connecting pipe 27 is provided with a matching pipe cavity 271. The movable outer connecting pipe 3 is inserted into the matching pipe cavity 271. The movable outer connecting pipe 3 is integrally formed with a pipe end protrusion ring 31. The upper end of the pipe end protrusion ring 31 is provided with a drive slot 32. The pipe end protrusion ring 31 is integrally formed with a connecting ring plate 33.
[0037] The housing locking assembly is a housing carrier bar 4, on which a lower extension carrier bar 46 is fixedly installed. The lower extension carrier bar 46 fixes the U-shaped water-cooled box 2 to the unit support plate 1. The housing carrier bar 4 on one side of the U-shaped water-cooled box 2 can also drive the movable external pipe 3 to move. The housing carrier bar 4 is provided with a drive insertion cavity 41, and one end of the housing carrier bar 4 is integrally formed with an external connecting plate 42. The external connecting plate 42 is integrally formed with a support post 43. The support post 43 is partially inserted into the inner insertion slide 25, and the support post 43 is provided with a movable insertion hole 44. An inner bearing slide rod 251 is inserted into the movable insertion hole 44, and a first mating spring is sleeved on the inner bearing slide rod 251. Spring 45, the two ends of the first mating spring 45 are welded and fixed to the inner wall of the inner slide 25 and the receiving column 43 respectively. A reinforcing column 47 is integrally formed on the lower extension strip 46. The reinforcing column 47 is inserted into the reinforcing cavity 261 on the reinforcing support column 26. A locking insert 48 is integrally formed at the lower end of the lower extension strip 46. When the locking insert 48 is used to fix the U-shaped water-cooled box 2, it is inserted into the locking mating cavity 14. In addition, a driving insert 49 is integrally formed on the lower extension strip 46 on one side of the U-shaped water-cooled box 2. The driving insert 49 is inserted into the driving slot 32 and the driving insert 49 is in contact with the inner wall of the driving slot 32.
[0038] like Figure 3 , Figure 7 , Figure 8 and Figure 9 As shown, an outer ring bearing plate 52 is integrally formed on the U-shaped water supply pipe 5. The outer ring bearing plate 52 has an installation positioning hole 53. When the U-shaped water supply pipe 5 is installed on the U-shaped water cooling box 2, the mounting block 23 is inserted into the installation positioning hole 53. The outer ring bearing plate 52 has two symmetrical moving channels 54 on both sides. One end of the moving channel 54 has a first bearing hole 55 and the other end has a second bearing hole 56. The second bearing hole 56 is connected to the adjacent installation positioning hole 53. In addition, a limiting channel 57 is also formed between the two moving channels 54 on each side of the U-shaped water supply pipe 5. The outer ring bearing plate 52 also has symmetrically formed outer protrusions 58. The outer protrusions 58 have a bearing channel 581. A receiving pipe 59 is welded and fixed on the U-shaped water supply pipe 5. The receiving pipe 59 has a first contact ring 591 integrally formed on it.
[0039] The movable connecting component is a double-ended connecting pipe 6. Symmetrically fixed outer support strips 63 are mounted on the double-ended connecting pipe 6. A bearing-supporting mating rod 64 is fixedly mounted on the outer support strip 63. A mating pressure plate 65 is fixedly mounted on the bearing-supporting mating rod 64. Bearing pipe rings 61 are integrally formed at both the upper and lower ends of the double-ended connecting pipe 6. A sealing ring 62 is attached to the bearing pipe ring 61. A receiving pipe 59 is inserted into the upper end of the double-ended connecting pipe 6. The bearing-supporting mating rod 64 is inserted into the bearing channel 581, which supports the double-ended connecting pipe 6. A locking pipe channel 66 is opened on the mating pressure plate 65, and a supporting protrusion 67 is welded and fixed to the mating pressure plate 65. A driving insertion rod 68 is integrally formed at the lower end of the supporting protrusion 67.
[0040] The pipe locking mechanism includes a locking pipe support plate 7 and a movable carrier block 73. The two ends of the locking pipe support plate 7 are symmetrically and movably connected to the movable carrier block 73. A locking pipe post 71 is fixedly installed on the locking pipe support plate 7. The locking pipe post 71 cooperates with the mating pressure plate 65 to fix the double-ended connecting pipe 6. The two ends of the locking pipe support plate 7 are symmetrically hinged to the linkage mating rod 72. The upper end of the linkage mating rod 72 is hinged to the movable carrier block 73. The movable carrier block 73 is inserted into the moving channel 54. The locking pipe post 71 is inserted into the limiting channel 57. When the locking pipe post 71 fixes the double-ended connecting pipe 6, it is inserted into the locking pipe channel 66 on the mating pressure plate 65.
[0041] A locking rod 74 is fixedly installed on the movable carrier block 73. The locking rod 74 cooperates with the U-shaped water-cooled box 2 to fix the U-shaped water supply pipe 5 on the U-shaped water-cooled box 2. One end of the locking rod 74 is inserted into the first bearing hole 55, and a second cooperating spring 75 is sleeved on the locking rod 74. The two ends of the second cooperating spring 75 are respectively fixed on the inner wall of the first bearing hole 55 in the moving channel 54 and on the movable carrier block 73. In addition, when the locking pipe column 71 is not inserted into the locking pipe channel 66, the upper end of the locking pipe column 71 is in contact with the lower end face of the cooperating pressure plate 65, and the second cooperating spring 75 is in a compressed state at this time. When the locking rod 74 fixes the U-shaped water supply pipe 5, its other end passes through the second bearing hole 56 and is inserted into the insertion locking channel 24 on the mounting carrier block 23.
[0042] like Figure 1 and Figure 6As shown, a recycling system includes a water pump 8 and a condenser 9. The water pump 8 and the condenser 9 are connected by a water pipe, and a sealing connecting pipe 81 is fixedly installed on the water pump 8. The sealing connecting pipe 81 is connected to a U-shaped water-cooled box 2 through a movable external connecting pipe 3. The water pump 8 and the condenser 9 are respectively fixedly installed on the unit support plate 1 by bolts. A sealing bearing ring 82 is integrally formed on the sealing connecting pipe 81, and a sealing ring channel 83 is opened on the sealing bearing ring 82. The sealing connecting pipe 81 is connected to the U-shaped water-cooled box 2 through the movable external connecting pipe 3. The connecting ring plate 33 on the movable external connecting pipe 3 is inserted into the sealing ring channel 83 on the sealing bearing ring 82 to achieve a sealed connection between the movable external connecting pipe 3 and the sealing connecting pipe 81.
[0043] A water-cooling pipe 91 is fixedly installed on the condenser 9. The water-cooling pipe 91 is connected to the lower end of the double-ended connecting pipe 6. A second contact ring 92 is integrally formed on the water-cooling pipe 91. When the lower end of the double-ended connecting pipe 6 is connected to the water-cooling pipe 91, the water-cooling pipe 91 is inserted into the double-ended connecting pipe 6. At this time, the second contact ring 92 on the water-cooling pipe 91 is in contact with the sealing ring 62 at the lower end of the double-ended connecting pipe 6. At the same time, the sealing ring 62 at the upper end of the double-ended connecting pipe 6 is in contact with the first contact ring 591 on the receiving pipe 59. Both sealing rings 62 are in a compressed state to ensure the sealing of the connection.
[0044] When performing water cooling of the compression chamber 12, the U-shaped water cooling box 2 is fitted onto the compression chamber 12, making it in contact with the compression chamber 12. Then, the U-shaped water supply pipe 5 is positioned at the upper port of the U-shaped water cooling box 2. That is, when positioning the U-shaped water supply pipe 5, the mounting positioning hole 53 is fitted onto the mounting block 23 to complete the positioning of the U-shaped water supply pipe 5. The U-shaped water supply pipe 5 seals the upper port of the U-shaped water cooling box 2 to prevent the cooling water from being contaminated. In addition, when the U-shaped water supply pipe 5 is positioned on the U-shaped water cooling box 2, the drive rod 68 is inserted into the drive cavity 41, and the inner wall of the drive cavity 41 is in contact with the drive rod 68. Then, the U-shaped water cooling box 2 and the U-shaped water supply pipe 5 can be fixed by pushing the double-ended connecting pipe 6 towards the U-shaped water supply pipe 5. As the double-ended connecting pipe 6 moves, the sealing ring 62 at the upper end of the double-ended connecting pipe 6 contacts the first contact ring 591, and the sealing ring 62 at the lower end of the double-ended connecting pipe 6 contacts the second contact ring 92. This completes the connection between the condenser 9 and the double-ended connecting pipe 6. As the double-ended connecting pipe 6 moves, the locking pipe channel 66 on the mating pressure plate 65 aligns with the locking pipe post 71 on the locking pipe support plate 7. This removes the restriction on the locking pipe post 71, allowing the movable carrier block 73 to move under the action of the second mating spring 75. Consequently, under the action of the linkage rod 72, the locking pipe support plate 7 moves upward, causing the locking pipe post 71 to insert into the locking pipe channel 66. Thus, the locking pipe post 71 and the locking pipe channel 66 work together to complete the connection. The double-ended connecting pipe 6 is fixed, and as the movable carrier block 73 moves, one end of the locking carrier rod 74 passes through the second socket 56 and is inserted into the insertion locking channel 24 on the mounting carrier block 23, thereby fixing the U-shaped water supply pipe 5 and enabling it to be stably installed on the U-shaped water-cooled box 2. In addition, during the movement of the pressure plate 65, the cooperation of the driving insertion rod 68 and the driving insertion cavity 41 will drive the box body carrier bar 4 to move away from the U-shaped water-cooled box 2. As the box body carrier bar 4 moves, the locking insertion bar 48 on the lower extension carrier bar 46 will be inserted into the locking mating cavity 14 on the locking carrier block 13, fixing the U-shaped water-cooled box 2 on the unit support plate 1. The U-shaped water-cooled box 2 is provided with the lower extension carrier bar 46 that drives the insertion plate 49. 6. During movement, the movable outer pipe 3 will move synchronously under the action of the insert plate 49. As the movable outer pipe 3 moves, the connecting ring plate 33 on the movable outer pipe 3 will be inserted into the sealing ring channel 83 on the sealing bearing ring 82, thus simultaneously achieving a sealed connection between the U-shaped water-cooled box 2 and the water pump 8. This is very convenient and allows for quick assembly of the entire mechanism. In the actual water-cooling process, the water pump 8 drives the cooling water to circulate. After being cooled by the condenser 9, the water is sprayed out from the spray pipe 51 on the U-shaped water supply pipe 5, which sprays it into the U-shaped water-cooled box 2. Since the U-shaped water-cooled box 2 is in contact with the compression box 12, the contact area increases after the cooling water is sprayed onto the inner wall of the U-shaped water-cooled box 2, thereby increasing the cooling area.Meanwhile, the cooling water slides down the inner wall of the U-shaped water-cooled box 2, extending its cooling time and thus better removing the heat generated by the compressor box 12. This ensures a sufficient cooling effect, meeting the cooling requirements of the gas compressor under high-intensity operation. The sliding cooling water is then recirculated back into the condenser 9 by the water pump 8. When disassembling the U-shaped water-cooled box 2 and the U-shaped water supply pipe 5 is required, simply push the locking column 71 to disengage it from the locking channel 66 and then pull the double-ended connecting pipe 6 to unlock both, achieving rapid disassembly.
[0045] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A kind of gas compressor unit energy-saving water cooling mechanism, including U-shaped water cooling tank, U-shaped water pipe, it is characterized in that: The U-shaped water-cooled box is installed on the unit's support plate, and a gas storage tank and a compression box are fixedly installed on the unit's support plate. The U-shaped water-cooled box is fitted onto the compression box to cool and reduce the temperature of the compression box. The U-shaped water supply pipe is installed at the upper port of the U-shaped water-cooled box, and a water spray pipe is fixedly installed at the lower end of the U-shaped water supply pipe to spray water into the U-shaped water-cooled box. The U-shaped water-cooled box is equipped with a box locking assembly on both sides, which fixes the U-shaped water-cooled box to the unit support plate. A movable connecting component is installed on the U-shaped water supply pipe. The movable connecting component drives the box locking component to move, thereby completing the fixed installation of the U-shaped water-cooled box. The U-shaped water supply pipe is also symmetrically equipped with a pipe fitting locking mechanism, which locks the movable connection component and fixes the U-shaped water supply pipe to the U-shaped water cooling box. An external connecting pipe is fixedly installed at the lower end of the U-shaped water-cooled box, and a movable external connecting pipe is movably installed on the external connecting pipe; The housing locking assembly is a housing carrier bar, and a lower extension carrier bar is fixedly installed on the housing carrier bar. The U-shaped water-cooled box is fixed to the unit support plate by the lower extension carrier bar. The carrier bar on one side of the U-shaped water-cooled box can also drive the movable external pipe to move; The movable connecting component is a double-ended connecting pipe. External support strips are symmetrically fixed on the double-ended connecting pipe. Bearing mating rods are fixed on the external support strips. Mating pressure plates are fixed on the bearing mating rods. The pipe fitting locking mechanism includes a pipe locking plate and a movable block, with the movable block symmetrically and movably connected to both ends of the pipe locking plate. A locking post is fixedly installed on the locking post support plate, and the locking post cooperates with the matching pressure plate to fix the double-ended connecting pipe; A locking rod is fixedly installed on the movable carrier block. The locking rod cooperates with the U-shaped water-cooled box to fix the U-shaped water supply pipe to the U-shaped water-cooled box.
2. A recycling system, characterized by: The recycling system is applicable to the energy-saving water-cooling mechanism described in claim 1, including a water pump and a condenser. The water pump is connected to the condenser, and a sealed connecting pipe is fixedly installed on the water pump. The sealed connecting pipe is connected to the U-shaped water-cooling box through a movable external connecting pipe.
3. A recycling system according to claim 2, wherein: A water-cooling pipe is fixedly installed on the condenser, and the water-cooling pipe is connected to the lower end of the double-ended connecting pipe.
Citation Information
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