Combined all-aluminum water tank heat exchanger assembly
Through the combined design and convenient installation and disassembly mechanism of the instrument body, the cumbersome installation of all-aluminum water tank heat exchanger is solved, and rapid and stable installation and disassembly are achieved, which improves work efficiency.
Patent Information
- Application Number
- CN202511045799.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-29
- Publication Date
- 2025-08-26
- Estimated Expiration
- 2045-07-29
AI Technical Summary
The installation and maintenance process of existing all-aluminum water tank heat exchangers is cumbersome, the screw fixing method is inconvenient, and the screws are difficult to screw after long-term use, which affects working efficiency.
The combined design adopts a convenient installation and disassembly mechanism to realize multi-point and multi-layer fixed connection between the heat exchanger body and the installation mounting plate. It uses components such as the drive mounting plate, movable mounting column and interlocking plate to achieve rapid installation and disassembly, simplifying the operation process.
It realizes the rapid and stable installation and disassembly of the heat exchanger, simplifies the operation steps, improves work efficiency, and reduces the difficulty of manual operation.
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Figure CN120538366A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of heat exchangers, and in particular to a combined all-aluminum water tank heat exchanger assembly. Background Art
[0002] The heat exchanger on the all-aluminum water tank is generally connected to the water tank through a pipe to achieve heat exchange. In the heat circulation system, the heat exchanger used in the existing all-aluminum water tank needs to be fixedly installed at the working point during operation, and then connected to the water tank. When installing the heat exchanger, it is usually fixed by multiple screws. Although the traditional method of screw fixation can ensure the firmness and stability of the heat exchanger installation, its operation is not so convenient. When inspecting and maintaining the heat exchanger, each screw needs to be operated separately to achieve the installation and removal of the heat exchanger, which is more troublesome. In addition, the screws will be difficult to screw due to the influence of the external environment after long-term use, which will cause greater work obstacles to the staff. Summary of the Invention
[0003] The object of the present invention is to provide a combined all-aluminum water tank heat exchanger assembly to solve the problems raised in the above background technology.
[0004] To achieve the above object, the present invention provides the following technical solutions: A combined all-aluminum water tank heat exchanger assembly comprises a heat exchanger body and a mounting plate, wherein the upper and lower sides of the heat exchanger body are symmetrically fixed with matching bearing plates, the two ends of the matching bearing plate are symmetrically fixed with supporting connecting rods, and a mounting block is also fixedly provided on the matching bearing plate, and a mounting socket is provided on the mounting block, and a first matching sleeve is symmetrically fixedly provided at both ends of the heat exchanger body, and a first connecting socket is symmetrically provided at the upper and lower ends of the first matching sleeve, a supporting built-in rod is fixedly provided inside the first matching sleeve, and a plug-in channel is provided on the first matching sleeve, and a supporting convex plate is symmetrically fixedly provided at the upper and lower ends of the mounting plate, and a matching carrier plate is fixedly provided on the supporting convex plate, and the matching A connecting channel is provided on the carrier plate, and connecting limit holes are symmetrically provided on the mating carrier plate. Matching connecting plates are symmetrically fixedly provided at both ends of the mounting mounting plate, interlocking sockets are symmetrically provided on the matching connecting plates, and a second matching sleeve is symmetrically fixedly provided on the mounting mounting plate between the matching connecting plates. A supporting base plate is fixedly provided at the lower end of the second matching sleeve, and a matching support rod is fixedly provided on the supporting base plate. Second connecting sockets are symmetrically provided at the upper and lower ends of the second matching sleeve, and a matching channel is provided on the second matching sleeve, and a through channel is provided on the side of the matching channel. A convenient installation and disassembly mechanism for the device body is provided on the heat exchanger body and the mounting mounting plate, and the heat exchanger body is installed on the mounting mounting plate through the convenient installation and disassembly mechanism for the device body.
[0005] Preferably, the convenient installation and disassembly mechanism of the device body includes a driving loading plate, a movable installation column, a movable inner supporting block and a movable interlocking plate, the driving loading plate is symmetrically provided with installation grooves, the installation grooves are provided with support sockets, and push-down matching rods are symmetrically fixed at both ends of the driving loading plate.
[0006] Preferably, the driving supporting plate between the push-down mating rods is symmetrically fixed with load-bearing connecting columns, the load-bearing connecting columns are provided with mating plug holes, the mating plug holes are plugged with mating support rods, and the mating support rods are sleeved with a first connecting spring.
[0007] Preferably, locking cards are installed at both ends of the driving loading plate, a locking slot is provided on the lower side of the locking card, and a supporting plug rod is fixedly provided on the upper end of the locking card, the supporting plug rod is inserted into the supporting socket, and a second connecting spring is sleeved on the supporting plug rod.
[0008] Preferably, a movable mounting column is installed in the first mating sleeve, and the movable mounting column is inserted into the first connecting socket on the lower side of the first mating sleeve. A third connecting spring is sleeved on the movable mounting column, and a first supporting plate is fixedly provided on the upper end of the movable mounting column, and a connecting strip is fixedly provided on the first supporting plate.
[0009] Preferably, a second supporting plate is fixedly provided on the upper end of the connecting strip, a matching plug is fixedly provided on the upper end of the second supporting plate, the matching plug is inserted into the first connecting socket on the upper side of the first matching sleeve, and a first connecting hinge is hinged on the connecting strip, and a movable inner supporting block is hinged on the lower end of the first connecting hinge.
[0010] Preferably, supporting movable holes are symmetrically provided on both sides of the movable inner bearing block, supporting built-in rods are inserted into the supporting movable holes, a locking plug-in block is fixedly provided on the movable inner bearing block, the locking plug-in block is inserted in the plug-in channel, and a load-bearing matching column is fixedly provided on the locking plug-in block, and a load-bearing matching plate is fixedly provided on the load-bearing matching column.
[0011] Preferably, locking protrusions are symmetrically fixed on the bearing mating plate, and connecting bearing strips are symmetrically fixed at the upper and lower ends of the bearing mating plate. A connecting mounting hole is provided on the connecting bearing strip, and a supporting connecting rod is inserted into the connecting mounting hole. A fourth connecting spring is sleeved on the supporting connecting rod.
[0012] Preferably, a locking carrier strip is fixedly provided on the connecting carrier strip at the upper end of the carrier matching plate, a locking block is fixedly provided on the lower end of the locking carrier strip, and a second connecting hinge is hinged on the connecting carrier strip, and a movable interlocking plate is hinged on the other end of the second connecting hinge.
[0013] Preferably, an installation matching rod is fixedly provided on the movable interlocking plate, and the installation matching rod is inserted into the installation socket, and limiting plug-in rods are symmetrically fixed at both ends of the movable interlocking plate, and the limiting plug-in rods play a fixing role on the heat exchanger body and are inserted into the connection limiting hole.
[0014] Compared with the prior art, the present invention has the following beneficial effects: 1. Fix the mounting plate on the working point, then position the heat exchanger body on the mounting plate through the cooperation of the first matching sleeve and the second matching sleeve, and then push the driving mounting plate downward to push the movable mounting column downward under the action of the push-down matching rod. The push-down matching rod is inserted into the first connecting socket, and at the same time, the movable mounting column is inserted into the second connecting socket to realize the first layer of fixed connection between the mounting plate and the heat exchanger body.
[0015] 2. As the movable mounting column moves downward, the movable inner bearing block will be driven to move under the action of the first connecting hinge. As the movable inner bearing block moves, it will drive the locking plug-in block to be inserted into the matching channel, and at the same time, the locking protrusion on the bearing matching plate will be inserted into the interlocking socket, realizing the second layer of fixed connection between the mounting plate and the heat exchanger body.
[0016] 3. In addition, when the movable inner bearing block moves, the second connecting hinge rod will drive the movable interlocking plate to move. As the movable interlocking plate moves, the limit plug-in rod will be inserted into the connection limit hole, realizing the third layer of fixed connection between the installation mounting plate and the heat exchanger body, fully ensuring the firmness of the installation of the heat exchanger body, and the operation is simple and convenient, which is convenient for the later installation and removal of the heat exchanger body. Moreover, the driving mounting plate can be automatically locked while moving downward without additional operation. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 A first-person perspective diagram of the assembly of the heat exchanger body and the mounting plate.
[0018] Figure 2 A schematic diagram showing the assembly of the heat exchanger body and the mounting plate from a second perspective.
[0019] Figure 3 The figure is the assembly diagram of the heat exchanger body.
[0020] Figure 4 for Figure 3 Enlarged schematic diagram of point A in the middle.
[0021] Figure 5 for Figure 3 Enlarged schematic diagram of point B in the middle.
[0022] Figure 6 Schematic diagram of the structure of the heat exchanger body.
[0023] Figure 7 This is the assembly diagram for installing the carrier plate.
[0024] Figure 8 Schematic diagram of the structure of the drive loading plate.
[0025] Figure 9 This is a first-person structural diagram of the movable inner bearing block.
[0026] Figure 10 This is a schematic structural diagram of the movable inner bearing block from a second perspective.
[0027] In the figure: 1. Heat exchanger body; 11. Matching bearing plate; 12. Support connecting rod; 13. Mounting block; 14. Mounting socket; 15. First matching sleeve; 16. First connecting socket; 17. Support built-in rod; 18. Insertion channel; 2. Installing supporting plate; 21. Supporting convex plate; 22. Matching bearing plate; 23. Connecting channel; 24. Connection limit hole; 25. Matching connecting plate; 26. Interlocking socket; 27. Second matching sleeve; 271. Support bottom plate; 272. Matching supporting rod; 28. Second connecting socket; 29. Matching channel; 291. Passing channel; 3. Driving supporting plate; 31. Mounting groove; 32. Support socket; 33. Push-down matching rod; 34. Bearing connecting column; 35. Matching socket ;36. First connecting spring;37. Locking card plate;38. Locking card slot;39. Support plug-in rod;391. Second connecting spring;4. Movable mounting column;41. Third connecting spring;42. First bearing plate;43. Connecting plate strip;44. Second bearing plate;45. Matching plug-in block;46. First connecting hinge;5. Movable inner bearing block;51. Support movable hole;52. Locking plug-in block;53. Bearing matching column;54. Bearing matching plate;55. Locking protrusion;56. Connecting bearing strip;561. Connecting mounting hole;562. Fourth connecting spring;57. Locking bearing strip;58. Locking card block;59. Second connecting hinge;6. Movable interlocking plate;61. Mounting matching rod;62. Limiting plug-in rod. DETAILED DESCRIPTION
[0028] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0029] See also Figures 1 to 10 , the present invention provides a technical solution: A combined all-aluminum water tank heat exchanger assembly includes a heat exchanger body 1 and an installation and mounting plate 2. The upper and lower sides of the heat exchanger body 1 are symmetrically fixed with matching bearing plates 11, and the two ends of the matching bearing plate 11 are symmetrically fixed with supporting connecting rods 12, and a mounting block 13 is also fixedly provided on the matching bearing plate 11, and a mounting socket 14 is provided on the mounting block 13. The two ends of the heat exchanger body 1 are symmetrically fixed with a first matching sleeve 15, and the upper and lower ends of the first matching sleeve 15 are symmetrically provided with a first connecting socket 16. The interior of the first matching sleeve 15 is fixedly provided with a supporting built-in rod 17, and the first matching sleeve 15 is provided with a plug-in channel 18. The upper and lower ends of the installation and mounting plate 2 are symmetrically fixed with supporting protrusions 21, and a matching carrier plate 22 is fixedly provided on the supporting protrusion 21. The matching carrier plate 22 is provided with a connecting channel 23, and the matching carrier plate 22 is symmetrically provided with a connecting limit hole 24. The two ends of the loading plate 2 are symmetrically fixed with matching connecting plates 25, and interlocking holes 26 are symmetrically opened on the matching connecting plates 25, and second matching sleeves 27 are symmetrically fixed on the mounting loading plates 2 between the matching connecting plates 25. The lower end of the second matching sleeve 27 is fixedly provided with a supporting base plate 271, and a matching support rod 272 is fixedly provided on the supporting base plate 271. Second connecting holes 28 are symmetrically opened at the upper and lower ends of the second matching sleeve 27, and a matching channel 29 is opened on the second matching sleeve 27, and a through channel 291 is opened on the side of the matching channel 29. The heat exchanger body 1 and the mounting loading plate 2 are provided with a convenient body installation and disassembly mechanism. The heat exchanger body 1 is installed on the mounting loading plate 2 through the convenient body installation and disassembly mechanism. When the heat exchanger body 1 is installed on the mounting loading plate 2, the first matching sleeve 15 is inserted into the second matching sleeve 27. At this time, the first connecting hole 16 and the second connecting hole 28 are aligned up and down.
[0030] The convenient installation and disassembly mechanism of the device body includes a driving loading plate 3, a movable installation column 4, a movable inner bearing block 5 and a movable interlocking plate 6. The driving loading plate 3 is symmetrically provided with installation grooves 31, and a support socket 32 is provided in the installation groove 31. The two ends of the driving loading plate 3 are symmetrically fixed with push-down matching rods 33, and the push-down matching rods 33 are aligned with the second connecting socket 28.
[0031] A load-bearing connecting column 34 is symmetrically fixed on the driving loading plate 3 between the push-down matching rods 33, and a matching plug hole 35 is opened on the load-bearing connecting column 34. A matching support rod 272 is inserted into the matching plug hole 35, and a first connecting spring 36 is sleeved on the matching support rod 272, and the upper and lower ends of the first connecting spring 36 are respectively fixed on the load-bearing connecting column 34 and the support base plate 271.
[0032] The driving loading plate 3 is respectively installed with locking cards 37 at both ends, a locking slot 38 is provided on the lower side of the locking card 37, and a supporting plug rod 39 is fixedly provided on the upper end of the locking card 37, the supporting plug rod 39 is inserted into the supporting socket 32, and a second connecting spring 391 is sleeved on the supporting plug rod 39. In addition, the two ends of the second connecting spring 391 are respectively fixed on the locking card 37 and the inner wall of the mounting groove 31.
[0033] A movable mounting column 4 is installed in the first mating sleeve 15, and the movable mounting column 4 is inserted into the first connecting hole 16 on the lower side of the first mating sleeve 15. A third connecting spring 41 is sleeved on the movable mounting column 4, and a first bearing plate 42 is fixedly provided on the upper end of the movable mounting column 4, and a connecting strip 43 is fixedly provided on the first bearing plate 42. The two ends of the third connecting spring 41 are respectively fixed on the inner bottom surface of the first mating sleeve 15 and the first bearing plate 42.
[0034] A second supporting plate 44 is fixedly provided on the upper end of the connecting strip 43, and a matching plug-in block 45 is fixedly provided on the upper end of the second supporting plate 44. The matching plug-in block 45 is inserted into the first connecting socket 16 on the upper side of the first matching sleeve 15, and a first connecting hinge 46 is hinged on the connecting strip 43, and a movable inner bearing block 5 is hinged on the lower end of the first connecting hinge 46.
[0035] Support movable holes 51 are symmetrically provided on both sides of the movable inner bearing block 5, and a support built-in rod 17 is inserted into the support movable hole 51. A locking plug-in block 52 is fixedly provided on the movable inner bearing block 5, and the locking plug-in block 52 is inserted in the plug-in channel 18. A load-bearing matching column 53 is fixedly provided on the locking plug-in block 52, and a load-bearing matching plate 54 is fixedly provided on the load-bearing matching column 53. When the locking plug-in block 52 plays a fixing role on the heat exchanger body 1, it is inserted in the matching channel 29. When the heat exchanger body 1 is installed, the load-bearing matching column 53 is inserted in the matching channel 29 by passing through the channel 291.
[0036] Locking protrusions 55 are symmetrically fixed on the bearing matching plate 54, and connecting bearing strips 56 are symmetrically fixed at the upper and lower ends of the bearing matching plate 54. A connecting mounting hole 561 is provided on the connecting bearing strip 56, and a supporting connecting rod 12 is inserted into the connecting mounting hole 561. A fourth connecting spring 562 is sleeved on the supporting connecting rod 12. In addition, the two ends of the fourth connecting spring 562 are respectively fixed on the matching bearing plate 11 and the connecting bearing strip 56.
[0037] A locking carrier strip 57 is fixedly provided on the connecting carrier strip 56 at the upper end of the carrier matching plate 54, and a locking block 58 is fixedly provided on the lower end of the locking carrier strip 57. A second connecting hinge 59 is hinged on the connecting carrier strip 56, and a movable interlocking plate 6 is hinged on the other end of the second connecting hinge 59. When the heat exchanger body 1 is positioned on the mounting matching plate 2 through the cooperation of the first matching sleeve 15 and the second matching sleeve 27, the locking block 58 contacts the locking card plate 37.
[0038] An installation matching rod 61 is fixedly provided on the movable interlocking plate 6, and the installation matching rod 61 is inserted into the installation socket 14, and the two ends of the movable interlocking plate 6 are symmetrically fixed with limiting plug-in rods 62. The limiting plug-in rods 62 play a fixing role on the heat exchanger body 1 and are inserted into the connection limiting hole 24.
[0039] When installing the heat exchanger body 1, first fix the mounting plate 2 on the working point, then plug the first matching sleeve 15 into the second matching sleeve 27 to realize the positioning of the heat exchanger body 1, and then push the driving mounting plate 3 downward. As the driving mounting plate 3 moves downward, the push-down matching rod 33 will pass through the second connecting socket 28 and be plugged into the first connecting socket 16. In this process, the push-down matching rod 33 will contact the matching plug block 45, so that under the action of the push-down matching rod 33, the matching plug block 45 will be pushed downward. As the matching plug block 45 moves downward, the movable mounting column 4 will also be driven to move downward, thereby plugging the movable mounting column 4 into the second connecting socket 28 on the lower side of the second matching sleeve 27. The first layer of fixation of the heat exchanger body 1 is achieved under the action of 33 and the movable mounting column 4. As the movable mounting column 4 moves, the movable inner bearing block 5 is pushed to move under the action of the first connecting hinge 46. As the movable inner bearing block 5 moves, the locking plug-in block 52 on the movable inner bearing block 5 is inserted into the matching channel 29, and as the movable inner bearing block 5 moves, it will also drive the bearing matching plate 54 to move, so that the locking protrusion 55 on the bearing matching plate 54 is inserted into the interlocking hole 26 on the matching connecting plate 25. Under the action of the locking protrusion 55 and the locking plug-in block 52, the second layer of fixation of the heat exchanger body 1 is achieved. In addition, as the bearing matching plate 54 moves, the connecting bearing bar 56 also moves with it, so that in the second connecting Under the action of the connecting hinge rod 59, the movable interlocking plate 6 will be driven to move in the direction of the matching bearing plate 11. As the movable interlocking plate 6 moves, the limiting plug-in rod 62 on the movable interlocking plate 6 will be inserted into the connecting limiting hole 24, thereby realizing the third layer fixation of the heat exchanger body 1. In this way, under the multi-point and multi-layer fixing action, the firmness and stability of the installation of the heat exchanger body 1 can be fully guaranteed. In addition, when the driving supporting plate 3 moves downward, as the supporting matching plate 54 moves, the locking card plate 37 will be pushed to move under the action of the locking block 58, thereby making the second connecting spring 391 in a compressed state, until the driving supporting plate 3 moves downward, so that the locking slot 38 is aligned with the locking block 58, so that the locking card plate 37 loses its locking position. The locking block 58 is inserted into the locking slot 38 to fix the driving plate 3, so that the heat exchanger body 1 is in a stable locked state. The operation is simple, convenient and fast, which greatly improves the efficiency of the staff in installation and removal and facilitates the operation of the staff. When the heat exchanger body 1 needs to be disassembled, the two locking plates 37 are pulled at the same time to separate the locking slot 38 on the locking plate 37 from the locking block 58 on the locking carrier strip 57. In this way, the driving plate 3 can be moved upward and reset under the action of the first connecting spring 36. As the driving plate 3 moves upward, the movable mounting post 4 moves upward and reset under the action of the third connecting spring 41.The first connecting hinge 46 can then drive the movable inner bearing block 5 to move in the opposite direction and reset. As the movable inner bearing block 5 is reset, the second connecting hinge 59 can drive the movable interlocking plate 6 to reset, thereby allowing the limiting plug-in rod 62 on the movable interlocking plate 6 to exit the connection limiting hole 24. At this time, the heat exchanger body 1 is in a completely unlocked state, and the heat exchanger body 1 can be quickly disassembled without the use of tools.
[0040] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.
Claims
1. A combined all-aluminum water tank heat exchanger assembly, comprising a heat exchanger body (1) and a mounting plate (2), characterized in that: The heat exchanger body (1) is symmetrically fixed with matching bearing plates (11) on the upper and lower sides, and supporting connecting rods (12) are symmetrically fixedly provided at both ends of the matching bearing plate (11), and a mounting block (13) is also fixedly provided on the matching bearing plate (11), and a mounting socket (14) is provided on the mounting block (13). The heat exchanger body (1) is symmetrically fixed with a first matching sleeve (15) on both ends, and a first connecting socket (16) is symmetrically provided at the upper and lower ends of the first matching sleeve (15). A supporting built-in rod (17) is fixedly provided inside the first matching sleeve (15), and a plug-in channel (18) is provided on the first matching sleeve (15). The mounting supporting plate (2) is symmetrically fixed with supporting convex plates (21) on the upper and lower ends, and a matching carrier plate (22) is fixedly provided on the supporting convex plate (21), and a connecting channel (23) is provided on the matching carrier plate (22). 22) are symmetrically provided with connection limit holes (24), matching connecting plates (25) are symmetrically fixedly provided at both ends of the mounting and loading plate (2), interlocking sockets (26) are symmetrically provided on the matching connecting plates (25), and a second matching sleeve (27) is symmetrically fixedly provided on the mounting and loading plate (2) between the matching connecting plates (25), a support base plate (271) is fixedly provided at the lower end of the second matching sleeve (27), a matching support rod (272) is fixedly provided on the supporting base plate (271), second connection sockets (28) are symmetrically provided at the upper and lower ends of the second matching sleeve (27), and a matching channel (29) is provided on the second matching sleeve (27), a through channel (291) is provided on the side of the matching channel (29), a convenient installation and disassembly mechanism for the heat exchanger body (1) and the mounting and loading plate (2), and the heat exchanger body (1) is installed on the mounting and loading plate (2) through the convenient installation and disassembly mechanism for the heat exchanger body (1).
2. The combined all-aluminum water tank heat exchanger assembly according to claim 1, characterized in that: The convenient installation and disassembly mechanism of the device body comprises a driving loading plate (3), a movable installation column (4), a movable inner bearing block (5) and a movable interlocking plate (6); the driving loading plate (3) is symmetrically provided with installation grooves (31); the installation grooves (31) are provided with support sockets (32); and push-down matching rods (33) are symmetrically fixedly provided at both ends of the driving loading plate (3).
3. The combined all-aluminum water tank heat exchanger assembly according to claim 2, characterized in that: A bearing connection column (34) is symmetrically fixedly provided on the driving loading plate (3) between the push-down matching rods (33), and a matching plug hole (35) is provided on the bearing connection column (34). A matching support rod (272) is inserted into the matching plug hole (35), and a first connecting spring (36) is sleeved on the matching support rod (272).
4. The combined all-aluminum water tank heat exchanger assembly according to claim 3 is characterized in that: The two ends of the driving loading plate (3) are respectively provided with locking clamping plates (37), the lower side of the locking clamping plate (37) is provided with a locking clamping groove (38), and the upper end of the locking clamping plate (37) is fixedly provided with a supporting plug rod (39), the supporting plug rod (39) is plugged into the supporting plug hole (32), and a second connecting spring (391) is sleeved on the supporting plug rod (39).
5. The combined all-aluminum water tank heat exchanger assembly according to claim 4, characterized in that: A movable mounting column (4) is installed in the first matching sleeve (15), and the movable mounting column (4) is inserted into the first connecting socket (16) on the lower side of the first matching sleeve (15). A third connecting spring (41) is sleeved on the movable mounting column (4), and a first bearing plate (42) is fixedly provided at the upper end of the movable mounting column (4), and a connecting strip (43) is fixedly provided on the first bearing plate (42).
6. The combined all-aluminum water tank heat exchanger assembly according to claim 5, characterized in that: A second supporting plate (44) is fixedly provided on the upper end of the connecting strip (43), a matching plug-in block (45) is fixedly provided on the upper end of the second supporting plate (44), the matching plug-in block (45) is plugged into the first connecting socket (16) on the upper side of the first matching sleeve (15), and a first connecting hinge (46) is hinged on the connecting strip (43), and a movable inner bearing block (5) is hinged on the lower end of the first connecting hinge (46).
7. The combined all-aluminum water tank heat exchanger assembly according to claim 6, characterized in that: The movable inner bearing block (5) is symmetrically provided with supporting movable holes (51) on both sides, and a supporting built-in rod (17) is inserted into the supporting movable hole (51). A locking plug-in block (52) is fixedly provided on the movable inner bearing block (5), and the locking plug-in block (52) is inserted into the plug-in channel (18). A bearing matching column (53) is fixedly provided on the locking plug-in block (52), and a bearing matching plate (54) is fixedly provided on the bearing matching column (53).
8. The combined all-aluminum water tank heat exchanger assembly according to claim 7, characterized in that: Locking protrusions (55) are symmetrically fixedly provided on the bearing matching plate (54), and connecting bearing bars (56) are symmetrically fixedly provided at the upper and lower ends of the bearing matching plate (54), and a connecting mounting hole (561) is provided on the connecting bearing bar (56), a supporting connecting rod (12) is inserted into the connecting mounting hole (561), and a fourth connecting spring (562) is sleeved on the supporting connecting rod (12).
9. The combined all-aluminum water tank heat exchanger assembly according to claim 8, characterized in that: A locking carrier strip (57) is fixedly provided on the connecting carrier strip (56) at the upper end of the carrier matching plate (54), a locking block (58) is fixedly provided on the lower end of the locking carrier strip (57), and a second connecting hinge rod (59) is hinged on the connecting carrier strip (56), and the other end of the second connecting hinge rod (59) is hinged to a movable interlocking plate (6).
10. The combined all-aluminum water tank heat exchanger assembly according to claim 9, characterized in that: The movable interlocking plate (6) is fixedly provided with an installation matching rod (61), and the installation matching rod (61) is inserted into the installation socket (14). The two ends of the movable interlocking plate (6) are symmetrically fixed with limit plug-in rods (62), and the limit plug-in rods (62) are inserted into the connection limit holes (24) when they play a fixing role on the heat exchanger body (1).
Citation Information
Patent Citations
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Automatic Assembling Apparatus for Heat Exchanger
KR1020090021497A