Intercooler
The design of the quick-connect device and installation device solves the problem of complicated intercooler pipe connection and installation, achieving a fast, stable and sealed connection, improving the operating efficiency and maintenance convenience of the equipment, and reducing production costs.
Patent Information
- Application Number
- CN202423268722.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-30
- Publication Date
- 2025-11-04
- Estimated Expiration
- 2034-12-30
AI Technical Summary
The existing intercooler piping connection and installation process is cumbersome, time-consuming, labor-intensive, and prone to errors, affecting the operating efficiency and reliability of the equipment, and making it difficult to achieve rapid maintenance, replacement and upgrade.
The system employs quick-clamping devices and installation equipment, including quick-clamping pipes, mating sleeves, plug-in pipes, and sealing mechanisms, to achieve rapid docking and stable connection between the intercooler and the pipeline. Support plates and support rods ensure the stable installation of the intercooler within the equipment.
It simplifies the connection operation between the intercooler and the pipeline, improves the accuracy and efficiency of the connection, ensures the sealing performance, enables rapid maintenance and upgrading of the intercooler, enhances the ease of operation and the production efficiency of the equipment, and reduces costs.
Smart Images

Figure CN223511011U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of intercooler technology, and more specifically, to an intercooler. Background Technology
[0002] In current engineering and industrial applications, the intercooler is a critical component used to reduce the heat of engines or other equipment to ensure their proper operation. However, existing intercooler technology has some problems that affect the operating efficiency and reliability of the equipment.
[0003] First, existing intercoolers need to be connected to various pipelines to ensure the normal operation of the equipment. However, the connection and release operations of pipelines in the existing technology are usually quite cumbersome. This requires operators to have certain skills and experience, and the operation process takes a long time and is prone to errors. This cumbersome operation not only reduces the operating efficiency of the equipment, but may also have an adverse effect on the normal operation of the equipment.
[0004] Secondly, the existing intercooler is usually installed inside the equipment by means of bolts and nuts. Although this structure is relatively simple, the operation process is quite cumbersome. Since there are many bolts and nuts, the operator needs to tighten and loosen them one by one. This is not only time-consuming and laborious, but also prone to operational errors. This cumbersome operation process makes it difficult to quickly disassemble and assemble the intercooler, thus making it impossible to achieve quick maintenance, replacement and upgrade of the intercooler. Utility Model Content
[0005] In view of the problems existing in the prior art, this utility model provides an intercooler to solve the technical problems mentioned in the background art.
[0006] To achieve the above objectives, this utility model provides the following technical solution: an intercooler, comprising an intercooler, the top of which is connected to a quick-clamping device, the quick-clamping device comprising a connector, a mating sleeve, a mating plate, a mating rod, a fixing block, a first push spring, a quick-clamping tube, a return block, a clearance groove, a quick-clamping sleeve, a sealing mechanism, a mating frame, a mating groove, and a tension spring; the connector is detachably inserted into the quick-clamping tube; the mating sleeve is movably disposed on the outside of the mating plate; the mating plate is fixedly connected to the outside of the quick-clamping tube; the mating rod is connected to both sides of the mating frame; the fixing block is connected to one side of the mating sleeve; the two ends of the first push spring are respectively connected to the fixing block and the return block; the quick-clamping tube is connected to the intercooler. At the top, the return block is disposed on both sides of the mating sleeve, the clearance groove is opened on the mating sleeve, the quick-clamp sleeve is movably fitted on the outside of the quick-clamp tube, one end of the mating bracket is inserted into the mating groove, the mating groove is opened on the outside of the insertion tube, the tension spring is movably disposed on the inside of the mating bracket, and an installation device is installed on the intercooler. The installation device includes an insertion rod, a fourth spring, a clamping plate, a clamping groove, a clamping rod, an installation sleeve, and a clamping sleeve. The insertion rod and the clamping rod are movably installed in the clamping sleeve. One end of the fourth spring is connected to the clamping plate. The clamping plate is movably disposed on the bottom side wall of the insertion rod. The clamping groove is opened at the top of the clamping rod, and the installation sleeve is detachably fitted on the outside of the clamping sleeve.
[0007] The present invention is further provided that the quick-release sleeve is provided with pull straps on both sides, and the two ends of the pull straps are respectively fixedly connected to the two quick-release sleeves.
[0008] The present invention is further configured such that a slider is provided on the inner side of the quick-release sleeve, a groove is provided on the outer side of the quick-release tube, the slider is slidably disposed in the groove, a second push spring is provided in the groove, and the other end of the second push spring is connected to the slider.
[0009] The present invention is further configured such that the sealing mechanism includes a rubber ring, a rubber plate and an insertion groove, the rubber ring is detachably installed inside the quick-release tube, the rubber plate is connected to the outside of the insertion tube, the insertion groove is opened inside the quick-release tube, and the rubber plate is adapted to the insertion groove.
[0010] The present invention is further configured such that: a transverse groove is provided on the side wall of the snap-fit rod; a snap-fit block is movably provided in the transverse groove; inclined plates are fixed on both sides of the snap-fit block; a longitudinal groove is provided on the side wall of the snap-fit sleeve; an inclined groove is provided on the side wall of the longitudinal groove; the inclined plate is slidably installed in the inclined groove; and a snap-fit groove is provided in the mounting sleeve.
[0011] The present invention is further configured such that a support plate is provided at the top of the plug rod, a support block is provided on one side of the support plate, a first spring is provided on one side of the support block, a connecting block is provided at the other end of the first spring, a return sleeve is provided on one side of the snap sleeve, the connecting block is connected to one side of the return sleeve, a support rod is provided on one side of the return sleeve, a second spring is sleeved on the outside of the support rod, and a through hole is provided on the support plate, the diameter of the through hole being slightly larger than the diameter of the support rod.
[0012] The present invention is further configured such that a third spring is provided on the outer side of the plug rod, and the third spring is movably installed in the snap-fit sleeve.
[0013] The present invention is further provided that the top of the snap-fit sleeve is provided with a handle, and the handle is fixedly installed on both sides of the snap-fit sleeve.
[0014] Compared with the prior art, the present invention provides an intercooler with the following advantages:
[0015] 1. The beneficial effects of the quick-clamp device are mainly reflected in its ability to quickly and stably connect the intercooler and pipeline through the cooperation of components such as the quick-clamp pipe, mating sleeve, and return block. This design makes the connection operation between the intercooler and the pipeline simple and quick, reduces the need for manual operation, and improves operational efficiency and accuracy. The structural design of the quick-clamp device makes the installation and disassembly of the intercooler more convenient, thereby realizing the rapid maintenance, replacement, and upgrading of the intercooler. In addition, the quick-clamp device also ensures the sealing of the pipeline connection through the design of the sealing mechanism, avoiding leakage problems.
[0016] 2. The beneficial effects of the installation device are mainly reflected in its ability to quickly install the intercooler in the corresponding equipment through the cooperation of components such as plug-in rods, snap-fit rods, and mounting sleeves. This design makes the installation of the intercooler simple and quick, reduces the need for manual operation, and improves operational efficiency and accuracy. The structural design of the installation device makes the installation and disassembly of the intercooler more convenient, thereby enabling rapid maintenance, replacement, and upgrading of the intercooler. In addition, the design of components such as support plates and support rods ensures the stable installation of the intercooler in the equipment, avoiding displacement or detachment caused by vibration or other reasons. Through these technological improvements, the ease of operation, maintenance efficiency, and applicability of the intercooler have been significantly improved, thereby increasing production efficiency and product quality and reducing production costs. Attached Figure Description
[0017] Figure 1 This is a schematic diagram of the overall structure of an intercooler according to the present invention;
[0018] Figure 2 This is a schematic diagram of the installation device in this utility model;
[0019] Figure 3 This is a cross-sectional structural diagram of the mounting device in this utility model;
[0020] Figure 4 for Figure 3 A magnified schematic diagram of the local structure at point A;
[0021] Figure 5 This is a schematic diagram of the structure of the fast card device part of this utility model;
[0022] Figure 6 This is a cross-sectional structural diagram of the fast card device part of this utility model.
[0023] In the diagram: 1. Intercooler; 2. Connecting pipe; 3. Mating sleeve; 4. Mating plate; 5. Mating rod; 6. Fixing block; 7. First push spring; 8. Quick-release pipe; 9. Return block; 10. Clearance groove; 11. Quick-release sleeve; 12. Mating bracket; 13. Mating groove; 14. Tension spring; 15. Connecting rod; 16. Fourth spring; 17. Clamping plate; 18. Clamping groove; 19. Clamping rod; 20. Mounting sleeve; 21. Clamping sleeve; 22. Pull strap; 23. 24. Slider; 25. Slide groove; 26. Second push spring; 27. Rubber ring; 28. Rubber plate; 29. Insertion groove; 30. Transverse groove; 31. Snap-fit block; 32. Inclined plate; 33. Longitudinal groove; 34. Inclined groove; 35. Snap-fit groove; 36. Support plate; 37. Support block; 38. First spring; 39. Connecting block; 40. Return sleeve; 41. Support rod; 42. Second spring; 43. Through hole; 44. Third spring; 45. Handle. Detailed Implementation
[0024] It should be noted that, unless otherwise specified, the embodiments and features described in this application can be combined with each other. The present invention will now be described in detail with reference to the accompanying drawings and embodiments.
[0025] It should be noted that, unless otherwise specified, all technical and scientific terms used in this application have the same meaning as commonly understood by one of ordinary skill in the art to which this application pertains.
[0026] In this utility model, unless otherwise stated, the orientations used, such as "up" and "down", usually refer to the direction shown in the accompanying drawings, or to the vertical, perpendicular, or gravitational direction; similarly, for ease of understanding and description, "left" and "right" usually refer to the left and right shown in the accompanying drawings; "inner" and "outer" refer to the inner and outer contours of each component itself, but the above directional terms are not used to limit this utility model.
[0027] Please see Figure 1-6An intercooler includes an intercooler 1 with a quick-locking device connected to its top. The quick-locking device includes a connector 2, a mating sleeve 3, a mating plate 4, a mating rod 5, a fixing block 6, a first push spring 7, a quick-locking tube 8, a return block 9, a clearance groove 10, a quick-locking sleeve 11, a sealing mechanism, a mating frame 12, a mating groove 13, and a tension spring 14. The connector 2 is detachably inserted into the quick-locking tube 8. The mating sleeve 3 is movably disposed on the outside of the mating plate 4, which is fixedly connected to the outside of the quick-locking tube 8. The mating rod 5 is connected to both sides of the mating frame 12. The fixing block 6 is connected to one side of the mating sleeve 3. The two ends of the first push spring 7 are respectively connected to the fixing block 6 and the return block 9. The quick-locking tube 8 is connected to the top of the intercooler 1, and the return blocks 9 are disposed on both sides of the mating sleeve 3. The positioning groove 10 is opened on the mating sleeve 3. The quick-clamp sleeve 11 is movably fitted on the outside of the quick-clamp tube 8. One end of the mating bracket 12 is inserted into the mating groove 13, which is opened on the outside of the insertion tube 2. The tension spring 14 is movably set on the inside of the mating bracket 12. An installation device is installed on the intercooler 1. The installation device includes an insertion rod 15, a fourth spring 16, a clamping plate 17, a clamping groove 18, a clamping rod 19, an installation sleeve 20, and a clamping sleeve 21. The insertion rod 15 and the clamping rod 19 are movably installed in the clamping sleeve 21. One end of the fourth spring 16 is connected to the clamping plate 17. The clamping plate 17 is movably set on the bottom side wall of the insertion rod 15. The clamping groove 18 is opened on the top of the clamping rod 19. The installation sleeve 20 is detachably fitted on the outside of the clamping sleeve 21.
[0028] The quick-release sleeve 11 has pull straps 22 on both sides, and the two ends of the pull straps 22 are fixedly connected to the two quick-release sleeves 11 respectively.
[0029] The quick-release sleeve 11 has a slider 23 on its inner side and a groove 24 on its outer side. The slider 23 is slidably disposed in the groove 24. A second push spring 25 is provided in the groove 24, and the other end of the second push spring 25 is connected to the slider 23.
[0030] The sealing mechanism includes a rubber ring 26, a rubber plate 27, and an insertion groove 28. The rubber ring 26 is detachably installed inside the quick-release tube 8. The rubber plate 27 is connected to the outside of the insertion tube 2. The insertion groove 28 is opened inside the quick-release tube 8, and the rubber plate 27 is adapted to the insertion groove 28.
[0031] In this embodiment, when the intercooler 1 and the pipeline need to be connected, the mating sleeve 3 is first rotated in the corresponding direction. The mating sleeve 3 will rotate along the mating plate 4, and then the mating sleeve 3 will drive the return block 9 to rotate. Then, the return block 9 will cooperate with the fixing block 6 to squeeze the first push spring 7. At the same time, the mating sleeve 3 will drive the relief groove 10 to rotate. When the position of the relief groove 10 corresponds to the position of the mating frame 12, the rotation of the mating sleeve 3 will stop. Then, the pull straps 22 provided on both sides will be pulled outwards simultaneously. The two quick-release sleeves 11 move inwards simultaneously, causing the slider 23 to slide along the groove 24. The slider 23 then presses against the second push spring 25 within the groove 24. Simultaneously, due to the chamfered design on one side of the quick-release sleeve 11, it gradually pushes open the mating rod 5. The mating rod 5 then moves the mating frame 12 outwards, causing the inner tension spring 14 to stretch. When the pull strap 22 can no longer be pulled, one end of the mating frame 12 will engage with the quick-release sleeve. The inner wall of tube 8 is flush with the inner wall. Then, the end of the insertion tube 2 with the rubber plate 27 is inserted into the quick-lock tube 8, so that one end of the insertion tube 2 abuts against the rubber ring 26. Then, the pull strap 22 is released, and the second push spring 25 will drive the slider 23 and the quick-lock sleeve 11 to reset. Then, the mating rod 5 loses the limit of the quick-lock sleeve 11. Then, the tension spring 14 drives the mating rod 5 and the mating bracket 12 to reset. At the same time, the mating bracket 12 will be inserted into the mating groove 13. Due to the unique chamfer structure design in the mating groove 13, when the mating bracket 12 is fully inserted... After entering the mating groove 13, the insertion pipe 2 will press the rubber ring 26 tightly, thereby ensuring the sealing of the pipe connection. At the same time, the multiple rubber plates 27 set on the outside of the insertion pipe 2 will be fully engaged in the corresponding insertion groove 28, thereby further enhancing the sealing of the pipe connection. Then, the first push spring 7 will push the return block 9 and the mating sleeve 3 to reset. Then, the mating sleeve 3 will drive the relief groove 10 to reset, so that the mating sleeve 3 will lock the outside of the mating bracket 12 at the corresponding position, thereby ensuring the stable connection of the pipe.
[0032] Please see Figure 1-4 As a further embodiment of the installation device: a transverse groove 29 is provided on the side wall of the snap-fit rod 19, a snap-fit block 30 is movably provided in the transverse groove 29, inclined plates 31 are fixed on both sides of the snap-fit block 30, a longitudinal groove 32 is provided on the side wall of the snap-fit sleeve 21, an inclined groove 33 is provided on the side wall of the longitudinal groove 32, the inclined plate 31 is slidably installed in the inclined groove 33, and a snap-fit groove 34 is provided in the installation sleeve 20.
[0033] The top of the plug rod 15 is provided with a support plate 35, a support block 36 is provided on one side of the support plate 35, a first spring 37 is provided on one side of the support block 36, and a connecting block 38 is provided at the other end of the first spring 37. A return sleeve 39 is provided on one side of the snap sleeve 21, and the connecting block 38 is connected to one side of the return sleeve 39. A support rod 40 is provided on one side of the return sleeve 39, and a second spring 41 is sleeved on the outside of the support rod 40. A through hole 42 is provided on the support plate 35, and the diameter of the through hole 42 is slightly larger than the diameter of the support rod 40.
[0034] A third spring 43 is provided on the outside of the plug rod 15, and the third spring 43 can be movably installed in the snap sleeve 21.
[0035] The top of the snap-fit sleeve 21 is provided with a handle 44, which is fixedly installed on both sides of the snap-fit sleeve 21.
[0036] More specifically, when the intercooler 1 needs to be installed in the corresponding equipment, firstly, the third spring 43 is installed in the corresponding position inside the snap-fit sleeve 21, then the return sleeve 39 is fitted onto the outside of the plug rod 15, then the snap-fit block 30 is placed in the transverse groove 29 opened on the side wall of the snap-fit rod 19, and then the corresponding ends of the plug rod 15 and the snap-fit rod 19 are respectively inserted into the snap-fit sleeve 21. When the snap-fit block 30 in the transverse groove 29 moves to the corresponding position, the snap-fit block 30 is pulled outward, so that the snap-fit block 30 enters the longitudinal groove 32, and the inclined plates 31 set on both sides of the snap-fit block 30 slide into the inclined groove 33. Then, the snap-fit rod 19 and the plug rod 15 are then inserted into the corresponding position. Inserting inwards, the insertion rod 15 cooperates with the snap-fit sleeve 21 to compress the third spring 43. Simultaneously, the snap-fit plate 17 on the outer side of the insertion rod 15 is compressed by the side wall of the snap-fit groove 18. The snap-fit plate 17 then compresses the fourth spring 16 on one side. When the insertion rod 15 and snap-fit rod 19 can no longer be inserted, the snap-fit plate 17 fully enters the snap-fit groove 18. Then, the fourth spring 16 drives the snap-fit plate 17 to reset, thus connecting the insertion rod 15 and snap-fit rod 19 in the snap-fit sleeve 21. Then, the connecting block 38 on one side of the return sleeve 39 and the support block 36 on one side of the support plate 35 are connected by the first spring 37, and then rotated. The return sleeve 39 moves the connecting block 38, which then cooperates with the support block 36 to compress the first spring 37. When the support rod 40 aligns with the through hole 42, the locking sleeve 21 is pulled by the handle 44, and the support plate 35 is pressed. The support rod 40 passes through the through hole 42. At the same time, the support plate 35 cooperates with the return sleeve 39 to compress the second spring 41 sleeved on the outside of the support rod 40. Then, the locking sleeve 21 moves the longitudinal groove 32 and the inclined groove 33. Due to the special structural design of the inclined groove 33 and the inclined plate 31, when the inclined groove 33 moves, the locking block 30 will slide relative to the longitudinal groove 32 and be gradually retracted. In the transverse groove 29, when the second spring 41 is compressed to its limit, the outer side of the snap-fit block 30 is flush with the outer side of the snap-fit sleeve 21. Then, the snap-fit sleeve 21 and the snap-fit rod 19 pass through the mounting slots opened on the intercooler 1 and the corresponding equipment and are inserted into the mounting sleeve 20. Then, the handle 44 is released, and the third spring 43 pushes the snap-fit sleeve 21 to reset, so that the snap-fit block 30 slides out of the transverse groove 29 and engages in the snap-fit groove 34. Then, the second spring 41 pushes the return sleeve 39 to reset, and then the first spring 37 pushes the return sleeve 39 to rotate and reset, so that the support rod 40 provides stable support to the support plate 35, thereby achieving fast and stable installation.
[0037] In summary, during the use or operation of the overall equipment: when it is necessary to connect the intercooler 1 and the pipeline, first rotate the mating sleeve 3 in the corresponding direction. The mating sleeve 3 will rotate along the mating plate 4. Then, the mating sleeve 3 will drive the return block 9 to rotate. The return block 9 will then cooperate with the fixed block 6 to press the first push spring 7. At the same time, the mating sleeve 3 will drive the relief groove 10 to rotate. When the position of the relief groove 10 corresponds to the position of the mating frame 12, stop rotating the mating sleeve 3. Then, pull the pull straps 2 set on both sides outwards simultaneously. 2. The pull strap 22 pulls the two quick-release sleeves 11 to move inwards simultaneously. The quick-release sleeves 11 drive the slider 23 to slide along the slide groove 24, and the slider 23 compresses the second push spring 25 set in the slide groove 24. At the same time, due to the chamfered structure design on one side of the quick-release sleeve 11, the quick-release sleeve 11 will gradually push open the mating rod 5. Then the mating rod 5 will drive the mating frame 12 to move outwards. At the same time, the mating frame 12 will drive the tension spring 14 set in the inner side to stretch. When the pull strap 22 can no longer be pulled, one end of the mating frame 12... The connector will be flush with the inner wall of the quick-release tube 8. Then, the end of the connector 2 with the rubber plate 27 is inserted into the quick-release tube 8, so that one end of the connector 2 abuts against the rubber ring 26. Then, the pull strap 22 is released, and the second push spring 25 will drive the slider 23 and the quick-release sleeve 11 to reset. Then, the mating rod 5 loses the limit of the quick-release sleeve 11. Then, the tension spring 14 drives the mating rod 5 and the mating bracket 12 to reset. At the same time, the mating bracket 12 will be inserted into the mating groove 13. Due to the unique chamfer structure design in the mating groove 13, when the mating bracket 12 is fully inserted... After being inserted into the mating groove 13, the insertion pipe 2 will press the rubber ring 26 tightly, thereby ensuring the sealing of the pipe connection. At the same time, the multiple rubber plates 27 set on the outside of the insertion pipe 2 will be fully engaged in the corresponding insertion groove 28, thereby further enhancing the sealing of the pipe connection. Then, the first push spring 7 will push the return block 9 and the mating sleeve 3 to reset. Then, the mating sleeve 3 will drive the relief groove 10 to reset, so that the mating sleeve 3 will lock the outside of the mating bracket 12 at the corresponding position, thereby ensuring the stable connection of the pipe.
[0038] When the intercooler 1 needs to be installed in the corresponding equipment, first install the third spring 43 in the corresponding position inside the snap-fit sleeve 21, then put the return sleeve 39 on the outside of the plug rod 15, then place the snap-fit block 30 in the transverse groove 29 opened on the side wall of the snap-fit rod 19, and then insert the corresponding ends of the plug rod 15 and the snap-fit rod 19 into the snap-fit sleeve 21 respectively. When the snap-fit block 30 in the transverse groove 29 moves to the corresponding position, pull the snap-fit block 30 outward so that the snap-fit block 30 enters the longitudinal groove 32, and the inclined plates 31 set on both sides of the snap-fit block 30 slide into the inclined groove 33. Then continue to insert the snap-fit rod 19 and the plug rod 15 inward. The insertion rod 15 and the snap-fit sleeve 21 work together to press the third spring 43. Simultaneously, the snap-fit plate 17 on the outer side of the insertion rod 15 is pressed against the side wall of the slot 18. The snap-fit plate 17 then presses against the fourth spring 16 on one side. When the insertion rod 15 and the snap-fit rod 19 can no longer be inserted, the snap-fit plate 17 fully enters the slot 18. The fourth spring 16 then drives the snap-fit plate 17 to reset, thus connecting the insertion rod 15 and the snap-fit rod 19 in the snap-fit sleeve 21. Then, the connecting block 38 on one side of the return sleeve 39 and the support block 36 on one side of the support plate 35 are connected by the first spring 37. Finally, the return sleeve is rotated... 39. The return sleeve 39 will drive the connecting block 38 to move. Then, the connecting block 38 will cooperate with the support block 36 to squeeze the first spring 37. When the support rod 40 is aligned with the through hole 42, the locking sleeve 21 will be pulled by the handle 44 and the support plate 35 will be pressed. The support rod 40 will pass through the through hole 42. At the same time, the support plate 35 will cooperate with the return sleeve 39 to squeeze the second spring 41 sleeved on the outside of the support rod 40. Then, the locking sleeve 21 will drive the longitudinal groove 32 and the inclined groove 33 to move. Due to the special structural design of the inclined groove 33 and the inclined plate 31, when the inclined groove 33 moves, the locking block 30 will slide relative to the longitudinal groove 32 and be gradually pulled into the transverse groove 33. In the slot 29, when the second spring 41 is compressed to its limit, the outer side of the snap-fit block 30 is flush with the outer side of the snap-fit sleeve 21. Then, the snap-fit sleeve 21 and the snap-fit rod 19 pass through the mounting slots opened on the intercooler 1 and the corresponding equipment and are inserted into the mounting sleeve 20. Then, the handle 44 is released, and the third spring 43 pushes the snap-fit sleeve 21 to reset, so that the snap-fit block 30 slides out of the transverse slot 29 and engages in the snap-fit slot 34. Then, the second spring 41 pushes the return sleeve 39 to reset, and then the first spring 37 pushes the return sleeve 39 to rotate and reset, so that the support rod 40 provides stable support to the support plate 35, thereby achieving fast and stable installation.
[0039] Of all the solutions mentioned above, those involving the connection between two components can be selected according to the actual situation, such as welding, bolt and nut connection, bolt or screw connection, or other known connection methods, which will not be elaborated here. For all the fixed connections mentioned above, welding is preferred. Although embodiments of this utility model have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of this utility model. The scope of this utility model is defined by the appended claims and their equivalents.
Claims
1. An intercooler, comprising an intercooler (1), characterized in that: The top of the intercooler (1) is connected to a quick-clamping device, which includes a plug pipe (2), a mating sleeve (3), a mating plate (4), a mating rod (5), a fixing block (6), a first push spring (7), a quick-clamping tube (8), a return block (9), a clearance groove (10), a quick-clamping sleeve (11), a sealing mechanism, a mating frame (12), a mating groove (13), and a tension spring (14). The mating sleeve (3) is located on the outside of the mating plate (4), the mating rod (5) is connected to both sides of the mating frame (12), the two ends of the first push spring (7) are connected to the fixing block (6) and the return block (9) respectively, the clearance groove (10) is opened on the mating sleeve (3), and the mating frame (12) One end is inserted into the mating groove (13), and the tension spring (14) is set inside the mating frame (12). The intercooler (1) is equipped with an installation device, which includes a plug rod (15), a fourth spring (16), a clamping plate (17), a clamping groove (18), a clamping rod (19), an installation sleeve (20), and a clamping sleeve (21). The plug rod (15) and the clamping rod (19) are installed inside the clamping sleeve (21). The fourth spring (16) is connected to the clamping plate (17). The clamping plate (17) is set on the bottom side wall of the plug rod (15). The clamping groove (18) is opened at the top of the clamping rod (19). The installation sleeve (20) is fitted on the outside of the clamping sleeve (21).
2. The intercooler according to claim 1, characterized in that: The quick-release sleeve (11) has pull straps (22) on both sides, and the two ends of the pull straps (22) are fixedly connected to the two quick-release sleeves (11) respectively.
3. An intercooler according to claim 2, characterized in that: The quick-release sleeve (11) has a slider (23) on its inner side, and the quick-release tube (8) has a groove (24) on its outer side. The slider (23) is slidably disposed in the groove (24). The groove (24) has a second push spring (25) in it, and the other end of the second push spring (25) is connected to the slider (23).
4. An intercooler according to claim 3, characterized in that: The sealing mechanism includes a rubber ring (26), a rubber plate (27), and an insertion groove (28). The rubber ring (26) is detachably installed inside the quick-release tube (8). The rubber plate (27) is connected to the outside of the insertion tube (2). The insertion groove (28) is opened inside the quick-release tube (8), and the rubber plate (27) is adapted to the insertion groove (28).
5. An intercooler according to any one of claims 1-4, characterized in that: The snap-fit rod (19) has a transverse groove (29) on its side wall. A snap-fit block (30) is movably provided in the transverse groove (29). An inclined plate (31) is fixed on both sides of the snap-fit block (30). A longitudinal groove (32) is provided on the side wall of the snap-fit sleeve (21). An inclined groove (33) is provided on the side wall of the longitudinal groove (32). The inclined plate (31) is slidably installed in the inclined groove (33). A snap-fit groove (34) is provided in the mounting sleeve (20).
6. An intercooler according to claim 5, characterized in that: The top of the plug rod (15) is provided with a support plate (35), a support block (36) is provided on one side of the support plate (35), a first spring (37) is provided on one side of the support block (36), a connecting block (38) is provided on the other end of the first spring (37), a return sleeve (39) is provided on one side of the snap sleeve (21), the connecting block (38) is connected to one side of the return sleeve (39), a support rod (40) is provided on one side of the return sleeve (39), a second spring (41) is sleeved on the outside of the support rod (40), and a through hole (42) is opened on the support plate (35), the diameter of the through hole (42) is slightly larger than the diameter of the support rod (40).
7. An intercooler according to claim 6, characterized in that: The plug rod (15) is provided with a third spring (43) on the outside, and the third spring (43) is movably installed in the snap sleeve (21).
8. An intercooler according to claim 7, characterized in that: The top of the snap-fit sleeve (21) is provided with a handle (44), and the handle (44) is fixedly installed on both sides of the snap-fit sleeve (21).