Heat preservation assembly and wet process machine table pipeline heat preservation device
By installing heat conduction plates and transition devices on the wet process machine pipelines, combined with sealing rings and locks, active circulation and insulation of warm water are achieved, solving the problem that passive insulation cannot effectively prevent the temperature from dropping, and achieving the stability of the liquid medicine temperature and insulation effect.
Patent Information
- Application Number
- CN202423262757.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-27
- Publication Date
- 2025-10-21
- Estimated Expiration
- 2034-12-27
AI Technical Summary
The existing wet process machine pipeline insulation method mainly relies on passive insulation, which cannot effectively prevent the temperature from continuing to drop, resulting in unstable liquid temperature.
Active thermal insulation components are used. By setting heat conduction plates and transition devices on the pipeline, combined with sealing rings and locks, active circulation and thermal insulation of warm water are achieved to ensure the stability of the liquid medicine temperature.
It realizes active heat preservation of pipelines, effectively maintains the temperature of liquid medicine, and improves temperature stability and heat preservation effect.
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Figure CN223460116U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to wet method machine platform pipeline heat preservation technical field, concretely is a kind of heat preservation assembly and wet method machine platform pipeline heat preservation device. BACKGROUND
[0002] Granulation is the material in the state such as powder, molten liquid, aqueous solution is processed into certain shape and size granular material operation.Wet granulation is one of the ways, especially wet granulator is widely used in pharmaceutical, food and other industries.
[0003] At present, the method of wet method machine pipeline heat preservation mostly adopts traditional passive mode, that is, a layer of heat insulation cotton is wrapped outside the pipeline, and the principle of this method is mainly through the heat insulation performance of heat insulation cotton, slows down the temperature drop rate of liquid medicine, so as to maintain the temperature of liquid medicine to a certain extent, however, this method has a significant limitation, that is, it cannot actively heat the pipeline, and only relies on the passive heat insulation effect of heat insulation material, and cannot effectively prevent the continuous temperature reduction.
[0004] Therefore, the utility model provides a kind of heat preservation assembly and wet method machine platform pipeline heat preservation device to solve the above problems. UTILITY MODEL CONTENT
[0005] The utility model aims at providing a kind of heat preservation assembly and wet method machine platform pipeline heat preservation device to solve the problems raised in the above background.
[0006] To achieve the above object, the utility model provides the following technical scheme: a kind of heat preservation assembly, the heat preservation assembly includes: first conveying pipe, first conveying pipe one end is provided with first interface, and the other end of first conveying pipe is provided with second interface, and transition pipe is arranged on first conveying pipe, and transition pipe end face is provided with transition ware, and transition ware is connected with adapter, and adapter is provided with at both ends of adapter pipe;
[0007] Transition ware, recess, guide hole and insertion slot are formed in the surface of transition ware, limit hole is formed in recess, hook groove is formed in the inside of limit hole, ear plate is fixed on the surface of transition pipe, limit plate is movably connected on ear plate, limit plate is "T" type, and first through hole is formed in the surface of limit plate;
[0008] Adapter, the surface of adapter is fixed with setting plate and guide rod, limit slot is formed in the surface of setting plate, and second through hole is formed in the inside of limit slot.
[0009] Preferably, the first conveying pipe is arranged in a spiral shape on the pipeline, and a heat conduction plate is arranged on the outer wall of the pipeline, the heat conduction plate is in a strip shape, a plurality of heat conduction plates are uniformly distributed on the surface of the pipeline, the outer wall of the heat conduction plate is in contact with and abuts against the outer wall of the first conveying pipe, flanges are arranged at the first interface and the second interface, and the first interface and the second interface can be connected with the mold temperature controller.
[0010] Preferably, the transition pipe is arranged close to the first interface, the mounting plate is inserted into the insertion slot and extends into the groove, the limiting hole is corresponding to the second through hole, the limiting groove is in a T-shaped cross section, the limiting plate is inserted into the limiting groove, and the first through hole is corresponding to the second through hole.
[0011] Preferably, the surface of the adapter is fixed with a sealing ring, the sealing ring is in contact with and abuts against the surface of the transition, the end surface of the guide rod is chamfered, the guide rod extends more outwardly than the mounting plate, and the outer wall of the guide rod is in contact with and slides on the inner wall of the guide hole.
[0012] Preferably, the first through hole, the second through hole and the limiting hole are provided with a locking piece, and the locking piece comprises a top disc, an insertion cylinder, a pull rod, a movable block, an elastic rod and a connecting rod.
[0013] Preferably, the bottom of the top disc is fixed with the insertion cylinder, the bottom wall of the top disc is in contact with and abuts against the surface of the limiting plate, the insertion cylinder is inserted into the first through hole and the second through hole, the elastic rod extends into the limiting hole, the insertion cylinder and the top disc are slidably connected with the pull rod, the pull rod is located at the center of the insertion cylinder and the top disc, one end of the pull rod is fixed with a pull ring through the top disc, and the other end of the pull rod is movably connected with two groups of connecting rods.
[0014] Preferably, the bottom of the insertion cylinder is fixed with two groups of elastic rods, the two groups of elastic rods are symmetrically distributed about the pull rod, the end of each connecting rod is movably connected to the elastic rod adjacent thereto, and the end, away from the pull rod, of the elastic rod is outwardly bent and provided with a hook.
[0015] The wet process machine pipeline heat preservation device comprises the heat preservation assembly.
[0016] Compared with the prior art, the wet process machine pipeline heat preservation device has the advantages that:
[0017] The heat preservation assembly and the wet process machine pipeline heat preservation device can actively heat the pipeline, thereby effectively maintaining the temperature of the liquid medicine in the pipeline. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 FIG. 1 is a structural schematic view of a first conveying pipe of the heat preservation assembly;
[0019] Figure 2 FIG. 2 is a structural schematic view of a heat conduction plate of the heat preservation assembly;
[0020] Figure 3 This is a schematic diagram of the transfer tube structure of the utility model;
[0021] Figure 4 This is a schematic diagram of the structure of the transition device of the utility model;
[0022] Figure 5 This is a schematic diagram of the lock structure of the utility model;
[0023] Figure 6 This is a schematic diagram of the hook groove structure of the utility model.
[0024] In the figure: 1, pipeline; 2, first delivery pipe; 3, first interface; 4, second interface; 5, transition piece;
[0025] 6. Heat conducting plate; 7. Transition pipe; 8. Adapter; 9. Adapter tube; 11. Third interface; 12. Second delivery pipe; 13. Fourth interface; 14. Insertion tube; 15. Limiting plate; 16. First through hole; 17. Ear plate;
[0026] 18. Groove; 19. Limiting hole; 20. Guide hole; 21. Slot; 22. Second through hole; 23. Guide rod;
[0027] 24. Sealing ring; 26. Mounting plate; 27. Limiting groove; 28. Pull ring; 29. Top plate; 30. Elastic rod;
[0028] 31. Pull rod; 32. Movable block; 33. Connecting rod; 34. Hook groove; 35. Hook; 100. Locking piece. DETAILED DESCRIPTION
[0029] Example 1: Please refer to Figures 1-6 The utility model provides a technical solution: a heat preservation component, the heat preservation component comprising: a first delivery pipe 2, a first interface 3 is provided at one end of the first delivery pipe 2, a second interface 4 is provided at the other end of the first delivery pipe 2, a transition pipe 7 is provided on the first delivery pipe 2, a transition device 5 is provided at the end surface of the transition pipe 7, the transition device 5 is connected to the adapter 8, and the adapter is provided at both ends of the adapter pipe 9;
[0030] The surface of the transition piece 5 is provided with a groove 18, a guide hole 20 and a slot 21. The groove 18 is provided with a limit hole 19, and the limit hole 19 is provided with a hook groove 34. The surface of the transition pipe 7 is fixed with an ear plate 17, and the ear plate 17 is movably connected to the limit plate 15. The limit plate 15 is T-shaped and has a first through hole 16 on its surface.
[0031] The adapter 8 is fixed with the setting plate 26 and the guide rod 23 on the surface of the adapter 8, the surface of the setting plate 26 is provided with the limiting groove 27, the second through hole 22 is formed in the limiting groove 27, a kind of wet process machine pipeline 1 heat preservation device, including the heat preservation assembly, the flange is arranged at the first interface 3 and the second interface 4, the first interface 3 and the second interface 4 are connected with the mold temperature machine;
[0032] When using, the flange is arranged at the first interface 3 and the second interface 4, which facilitates the connection of the first interface 3 and the second interface 4 with the mold temperature machine, and the warm water is conveyed through the mold temperature machine, and then the pipeline 1 is actively heat-preserved, and the first interface 3, the second interface 4 and the transition pipe 7 are all blocked by the plunger;
[0033] The adapter pipe 9 is used to connect different conveying pipes on the two groups of pipelines 1. Figure 3 The second conveying pipe 12 is arranged on another pipeline 1, the third interface 11 and the fourth interface 13 are arranged on the second conveying pipe 12, and the adapter 8 is arranged on the transition pipe 7 of the second conveying pipe 12.
[0034] In the embodiment one, the first conveying pipe 2 is arranged on the pipeline 1 in a spiral shape, the heat-conducting plate 6 is arranged on the outer wall of the pipeline 1, the heat-conducting plate 6 is in a strip shape, and a plurality of heat-conducting plates 6 are evenly distributed on the surface of the pipeline 1, and the outer wall of the heat-conducting plate 6 is in contact with and abuts against the outer wall of the first conveying pipe 2.
[0035] When using, the first pipeline 1 is arranged in a spiral shape, thereby increasing the acting area of the conveying pipe and the pipeline 1, and the heat-conducting plate 6 improves the temperature transmission effect of the first conveying pipe 2 and the pipeline 1, thereby improving the heat preservation effect.
[0036] In the embodiment two, the transition pipe 7 is arranged close to the first interface 3, the setting plate 26 is inserted into the slot 21 and extends into the groove 18, the limiting hole 19 and the second through hole 22 are corresponding, the limiting groove 27 is in a "T" shape in cross section, the limiting plate 15 is inserted into the limiting groove 27, and the first through hole 16 and the second through hole 22 are corresponding.
[0037] The sealing ring 24 is fixed on the inner side of the surface of the adapter 8, the sealing ring 24 is in contact with and abuts against the surface of the transition pipe 5, the end surface of the guide rod 23 is chamfered, the guide rod 23 extends more outward than the setting plate 26, and the outer wall of the guide rod 23 is in contact with and slides on the inner wall of the guide hole 20.
[0038] In use, first, the guide rod 23 is inserted into the guide hole 20, thereby providing guidance for the connection of the adapter 5 and the adapter 8, so that the subsequent installation plate 26 can be smoothly inserted into the slot 21, after the installation plate 26 enters the groove 18, the sealing ring 24 provided and the surface of the adapter 5 are in contact and abut, thereby improving the sealing of the connection, at this time, the limiting hole 19 and the second through hole 22 correspond, at this time, by pulling the limiting plate 15, the limiting plate 15 is inserted into the limiting groove 27, thereby realizing the initial connection of the adapter 5 and the adapter 8, at this time, the limiting hole 19, the first through hole 16 and the second through hole 22 correspond, facilitating subsequent installation of the lock 100.
[0039] The first through hole 16, the second through hole 22 and the limiting hole 19 are provided with the lock 100, the lock 100 includes a top disc 29, an insertion cylinder 14, a pull rod 31, a movable block 32, an elastic rod 30 and a connecting rod 33, the bottom of the top disc 29 is fixedly provided with the insertion cylinder 14, the bottom wall of the top disc 29 is in contact and abuts against the surface of the limiting plate 15, the insertion cylinder 14 is inserted into the first through hole 16 and the second through hole 22, the elastic rod 30 extends into the limiting hole 19, the insertion cylinder 14 and the top disc 29 are slidably connected with the pull rod 31, the pull rod 31 is located at the center of the insertion cylinder 14 and the top disc 29, one end of the pull rod 31 is fixedly provided with a pull ring 28, the other end of the pull rod 31 is movably connected with two groups of connecting rods 33, the bottom of the insertion cylinder 14 is fixedly provided with two groups of elastic rods 30, the two groups of elastic rods 30 are symmetrically distributed about the pull rod 31, the end of each connecting rod 33 is movably connected to the elastic rod 30 adjacent thereto, the end of the elastic rod 30 away from the pull rod 31 is outwardly bent to be provided with a hook 35, the hook 35 is inserted into the hook groove 34.
[0040] In use, after the limiting hole 19, the first through hole 16 and the second through hole 22 correspond, the lock 100 needs to be installed, the specific operation is as follows: by manually pulling the pull ring 28, the pull rod 31 is driven to move, so that the movable block 32 moves towards the insertion cylinder 14, under the action of the connecting rod 33, the two groups of elastic rods 30 are driven to move close to each other, so that the two groups of hooks 35 move close to each other, the lock 100 is kept in this state, the insertion cylinder 14 is inserted into the first through hole 16 and the second through hole 22, and the elastic rod 30 extends into the limiting hole 19, when the top disc 29 and the limiting plate 15 are in contact, the pulling force on the pull ring 28 is cancelled, under the rebounding action of the elastic rod 30, the two groups of elastic rods 30 move away from each other, and at the same time, the two groups of hooks 35 move away from each other, and at the same time, the two groups of hooks 35 are inserted into the hook groove 34, thereby achieving the limiting effect.
[0041] In actual use, there are two kinds of use methods:
[0042] First: when only a set of pipe 1 is insulated, the transition pipe 7 is blocked by the plunger, and the first interface 3 and the second interface 4 are connected to the mold temperature machine, respectively, the mold temperature machine circulates the warm water in the first conveying pipe 2, and the active insulation of the pipe 1 is realized;
[0043] Second: when two sets of pipe 1 need to be insulated, the first interface 3 on the first conveying pipe 2 is blocked, the third interface 11 on the second conveying pipe 12 is blocked, the two first conveying pipes 2 and the second conveying pipe 12 are connected by the adapter pipe 9, the second interface 4 and the fourth interface 13 are connected to the mold temperature machine, the warm water output by the mold temperature machine enters the first conveying pipe 2 through the second interface 4, is conveyed to the second conveying pipe 12 through the adapter pipe 9, and finally flows back to the mold temperature machine through the fourth interface 13, thereby realizing the insulation of different sections of the liquid pipe 1;
[0044] In summary, the device can actively insulate the pipe 1, and effectively maintain the temperature of the liquid in the pipe 1.
[0045] Although the embodiments of the utility model have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements and variations can be made to the embodiments without departing from the principles and spirits of the utility model, and the scope of the utility model is defined by the appended claims and their equivalents.
Claims
1. An insulation assembly, characterized by: The heat preservation assembly comprises a first conveying pipe (2), a first interface (3) is arranged at one end of the first conveying pipe (2), a second interface (4) is arranged at the other end of the first conveying pipe (2), a transition pipe (7) is arranged on the first conveying pipe (2), a transition device (5) is arranged at the end face of the transition pipe (7), the transition device (5) is connected with an adapter (8), and the adapter is arranged at both ends of a transition pipe (9); The transition device (5) is provided with a groove (18), a guide hole (20) and a slot (21) on the surface, a limiting hole (19) is arranged at the groove (18), a hook groove (34) is arranged in the limiting hole (19), an ear plate (17) is fixed on the surface of the transition pipe (7), a limiting plate (15) is movably connected to the ear plate (17), the limiting plate (15) is in a T shape, and a first through hole (16) is arranged on the surface of the limiting plate (15); The adapter (8) is fixed with a mounting plate (26) and a guide rod (23) on the surface, the mounting plate (26) is provided with a limiting groove (27) on the surface, and a second through hole (22) is arranged in the limiting groove (27).
2. A thermal retention assembly according to claim 1, wherein: The first conveying pipe (2) is arranged in a spiral shape on the pipeline (1), the outer wall of the pipeline (1) is provided with a heat conduction plate (6), the heat conduction plate (6) is in a strip shape, a plurality of heat conduction plates (6) are arranged, the plurality of heat conduction plates (6) are uniformly distributed on the surface of the pipeline (1), the outer wall of the heat conduction plate (6) is in contact with and abuts against the outer wall of the first conveying pipe (2), flanges are arranged at the first interface (3) and the second interface (4), and the first interface (3) and the second interface (4) can be connected with a mold temperature controller.
3. A thermal retention assembly according to claim 1, wherein: The transition pipe (7) is arranged close to the first interface (3), the mounting plate (26) is inserted into the slot (21) and extends into the groove (18), the limiting hole (19) and the second through hole (22) are corresponding, the limiting groove (27) is in a T shape in cross section, the limiting plate (15) is inserted into the limiting groove (27), and the first through hole (16) and the second through hole (22) are corresponding.
4. A thermal retention assembly according to claim 1, wherein: The surface of the adapter (8) is fixed with a sealing ring (24), the sealing ring (24) is in contact with and abuts against the surface of the transition device (5), the end face of the guide rod (23) is chamfered, the guide rod (23) extends more outwardly than the mounting plate (26), and the outer wall of the guide rod (23) is in contact with and slides on the inner wall of the guide hole (20).
5. A thermal retention assembly according to claim 1, wherein: Locking pieces (100) are arranged in the first through hole (16), the second through hole (22) and the limiting hole (19), and the locking pieces (100) comprise a top disc (29), an insertion cylinder (14), a pull rod (31), a movable block (32), an elastic rod (30) and a connecting rod (33).
6. A thermal retention assembly according to claim 5, wherein: The bottom of the top disc (29) is fixed with an insertion cylinder (14), the bottom wall of the top disc (29) is in surface contact with the limiting plate (15) and abuts tightly, the insertion cylinder (14) is inserted into the first through hole (16) and the second through hole (22), the elastic rod (30) extends into the limiting hole (19), the insertion cylinder (14) and the top disc (29) are slidably connected with a pull rod (31), the pull rod (31) is located at the center of the insertion cylinder (14) and the top disc (29), one end of the pull rod (31) is fixed with a pull ring (28) penetrating through the top disc (29), the other end of the pull rod (31) is movably connected with two groups of connecting rods (33).
7. A thermal retention assembly according to claim 5, wherein: The bottom of the insertion cylinder (14) is fixed with two groups of elastic rods (30), the two groups of elastic rods (30) are symmetrically distributed about the pull rod (31), the terminal end of each connecting rod (33) is movably connected to the elastic rod (30) adjacent thereto, the end of the elastic rod (30) away from the pull rod (31) is outwardly bent and provided with a clamping hook (35), and the clamping hook (35) is inserted into the hook groove (34).
8. A wet bench pipe insulation device, characterized by: The heat preservation assembly according to any one of claims 1-7. The heat preservation assembly according to any one of claims 1-7.