Combined type radiating pipe curling device
The modular heat pipe rolling device automatically completes the rolling of the sheet metal, solving the problems of large production line footprint, high cost and low efficiency caused by multiple processes in the existing technology, and realizing efficient and low-cost heat pipe processing.
Patent Information
- Application Number
- CN202520016335.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-06
- Publication Date
- 2025-12-23
- Estimated Expiration
- 2035-01-06
AI Technical Summary
The existing heat pipe processing requires multiple steps, resulting in a large production line footprint, high labor costs, long production time, and low curling efficiency.
A combined heat dissipation pipe curling device is adopted, including a base and a curling assembly. Through a curling mechanism composed of a drive shaft, driven blocks and connecting rods, the plate is automatically curled into a hollow flat closed structure, simplifying the process and reducing the need for transportation.
This technology enables efficient rough machining of heat dissipation pipes, reduces production and operating costs, improves bending efficiency, and meets the production needs of enterprises.
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Figure CN223698962U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to heat dissipation pipe processing technical field especially relates to a combined heat dissipation pipe curling device. BACKGROUND
[0002] The heat dissipation pipe is an important component of the heat dissipation device, and a flat heat dissipation pipe structure is provided in the prior art, which is internally provided with reciprocating bending heat dissipation fins.
[0003] When the heat dissipation pipe structure is processed, the plate is usually curled and bent to form a hollow flat closed structure, and the plate joint is welded to ensure the sealing. In the prior art, the plate is curled and bent to form a heat dissipation pipe structure, which usually needs to be carried out in multiple processes, so as to complete the processing, resulting in a large floor area of the production line, and the transfer between multiple processes increases the labor cost and production time, which is still inconvenient to use.
[0004] In summary, the prior art has obvious inconvenience and defects in actual use, so it is necessary to improve. UTILITY MODEL CONTENTS
[0005] In view of the above defects, the utility model aims at providing a combined heat dissipation pipe curling device, which can automatically curl the plate, complete the rough machining of the heat dissipation pipe, and ensure good heat dissipation pipe processing efficiency, and reduce the operating cost.
[0006] In order to achieve the above purpose, the utility model provides a combined heat dissipation pipe curling device, which comprises: a base, the top surface of which is provided with a groove; a curling assembly, which comprises a driving shaft and a driving block, the driving shaft is rotatably arranged above the base, two driving blocks are threadedly connected on the driving shaft, the side of the driving block away from each other is elastically connected with a top driven block, the lower side of the driving shaft is provided with a mounting seat, the top driven block and the mounting seat are rotatably provided with a first connecting rod, the mounting seat is rotatably provided with a bottom driven shaft, the driving block is slidably provided with an expansion plate matched with the bottom driven shaft, the bottom driven shaft is provided with two bottom driven blocks, the bottom end of the bottom driven block is connected with a pressing plate, the upper side of the driving shaft is rotatably provided with a top driven shaft threadedly connected with the driving block, the base on both sides of the groove is rotatably provided with a side driven shaft, the side driven shaft is threadedly connected with two side driven blocks on one side, the side driven shaft is provided with a side pressing plate on one side, and the side driven block and the side pressing plate are rotatably provided with a third connecting rod.
[0007] According to the combined heat dissipation pipe curling device of the utility model, the bottom surface middle part of mounting seat is equipped with electromagnet, the mounting seat of electromagnet both sides is equipped with sliding plate, the mounting seat of sliding plate far away electromagnet side is equipped with support plate rotationally, the second connecting rod is rotationally equipped between support plate and sliding plate.
[0008] According to the combined heat dissipation pipe curling device of the utility model, the top surface both ends of base are equipped with support plate, the both ends of driving shaft, top driven shaft and side driven shaft are rotationally connected support plate, and one of support plate is equipped with driving element, and driving element is connected driving shaft.
[0009] According to the combined heat dissipation pipe curling device of the utility model, the bottom driven shaft is equipped with the first spiral groove matched with bottom driven block and the second spiral groove matched with telescopic plate, and the both ends of second spiral groove are connected with the straight groove matched with telescopic plate.
[0010] According to the combined heat dissipation pipe curling device of the utility model, the belt is equipped between top driven shaft and two side driven shafts, and the guide shaft matched with belt is connected on support plate.
[0011] According to the combined heat dissipation pipe curling device of the utility model, the guide groove matched with bottom driven block is equipped on mounting seat.
[0012] The combined heat dissipation pipe curling device of the utility model has the following beneficial effects:
[0013] 1, by setting up curling assembly, plate material can be curled into hollow flat closed structure body automatically, and the rough machining of heat dissipation pipe is completed, and additional transfer process is not needed, the curling efficiency of heat dissipation pipe is improved, and the production demand of enterprise can be met.
[0014] 2, the utility model only needs a driving element to operate, can reduce operating cost, meets the requirement of reducing cost and increasing benefit.
[0015] Summarized above, the beneficial effects of the utility model are that plate material can be curled automatically, the rough machining of heat dissipation pipe is completed, good heat dissipation pipe processing efficiency is guaranteed, and operating cost is reduced. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 It is the structure schematic diagram of the utility model;
[0017] Figure 2 It is Figure 1 A part structure enlarged schematic diagram of;
[0018] Figure 3 It is the front view of the utility model;
[0019] Figure 4is Figure 3 a B part structure amplification schematic view;
[0020] In the figure: 1 - base, 11 - support plate, 12 - groove, 2 - curling assembly, 21 - driving shaft, 211 - driving part, 22 - driving block, 221 - telescopic plate, 23 - mounting seat, 231 - first connecting rod, 232 - guide groove, 233 - bottom driven shaft, 24 - bottom driven block, 241 - top pressing plate, 25 - support plate, 251 - sliding plate, 252 - second connecting rod, 26 - electromagnet, 27 - top driven shaft, 28 - side driven shaft, 281 - side driven block, 282 - third connecting rod, 29 - side pressing plate. DETAILED DESCRIPTION
[0021] In order to make the purpose, technical scheme and advantages of the utility model more clearly, the following will be further described in detail. It should be understood that the specific embodiments described herein are only used to explain the utility model, and are not used to limit the utility model.
[0022] Referring to Figures 1-4 , the utility model provides a combined heat dissipation pipe curling device, including base 1 and curling assembly 2, base 1 is arranged on the ground (or other support plane), and curling assembly 2 is arranged above base 1.
[0023] Referring to Figures 1-4 , curling assembly 2 includes driving shaft 21 and driving block 22, driving shaft 21 is rotatably arranged above base 1, vertical support plate 11 is arranged at both ends of the top surface of base 1, both ends of driving shaft 21 are rotatably connected with two support plates 11, one end of driving shaft 21 is connected with the output shaft of driving part 211, driving part 211 is arranged on one of support plates 11, and driving part 211 can drive driving shaft 21 to reciprocate. Two driving blocks 22 are arranged on driving shaft 211, two first threads with opposite directions are arranged on the surface of driving shaft 211, and the driving block 22 is matched with the first thread one by one (that is, the threaded hole matched with the first thread is arranged on the driving block 22), when driving shaft 211 rotates, two driving blocks 22 can be driven to move close to or away from each other. The side, away from each other, of driving block 22 is provided with top driven block 222, spring is arranged between adjacent driving block 22 and top driven block 222, mounting seat 23 is arranged below driving shaft 211, and a plurality of first connecting rods 231 are rotatably arranged between mounting seat 23 and top driven block 222 (that is, one end of first connecting rod 231 is rotatably connected with mounting seat 23, and the other end of first connecting rod 231 is rotatably connected with top driven block 222).
[0024] Referring to Figures 1-4The bottom driven shaft 233 is rotatably connected with the end plates at both ends, and the end plates are fixedly connected with the mounting seat 23. The bottom driven shaft 233 is provided with two bottom driven blocks 24. The bottom driven shaft 233 is provided with two first helical grooves in opposite directions. The two bottom driven blocks 24 are matched with the two first helical grooves respectively. The bottom driven blocks 24 pass through the mounting seat 23. The mounting seat 23 is provided with a guide groove 232 matched with the bottom driven blocks 24. The bottom ends of the bottom driven blocks 24 are connected with the top pressing plates 241. The top surface of the base 1 is provided with a groove 12 matched with the top pressing plates 241. The bottom surface of the driving block 22 is slidably provided with an expansion plate 221. The bottom driven shaft 233 is provided with two second helical grooves in opposite directions. The expansion plate 221 is matched with the second helical grooves one by one. The two ends of the second helical grooves are provided with straight grooves matched with the expansion plate 211.
[0025] Referring to Figures 1-4 The top driven shaft 27 is rotatably connected with the two support plates 11 at both ends. The top driven shaft 27 passes through the two driving blocks 22. The top driven shaft 27 is provided with two second threads in opposite directions. The driving blocks 22 are matched with the second threads one by one. The top surfaces of the bases 1 on both sides of the groove 12 are rotatably provided with side driven shafts 28. The two ends of the side driven shafts 28 are rotatably connected with the support plates 11. The two side driven shafts 28 and the top driven shaft 27 are provided with a belt. The side driven shafts 28 are provided with two side driven blocks 281. The side driven blocks 281 are slidably connected with the top surfaces of the bases 1. The side driven shafts 278 are provided with two third threads in opposite directions. The side driven blocks 281 are matched with the third threads one by one. The side driven shafts 28 are provided with side pressing plates 29 on one side close to the groove 12. The side pressing plates 29 and the side driven blocks 281 are rotatably provided with third connecting rods 282 (one end of the third connecting rod 282 is rotatably connected with the side pressing plate 29, and the other end of the third connecting rod 282 is rotatably connected with the side driven block 281).
[0026] Referring to Figures 1-4 Preferably, the bottom surface of the mounting seat 23 is provided with an electromagnet 26. The bottom surfaces of the mounting seats 23 on both sides of the electromagnet 26 are slidably provided with sliding plates 251 (the sliding plates 251 are made of magnetic material). The sliding plates 251 are rotatably connected with second connecting rods 252. The bottom surface of the mounting seat 23 away from the electromagnet 26 is rotatably provided with a support plate 25. One end of the second connecting rod 252 away from the sliding plate 251 is rotatably connected with the support plate 25. The support plate 25 can provide support for the top pressing plate 241.
[0027] Referring to Figures 1-4 Preferably, the top surface of the base 1 is provided with a plurality of guide shafts matched with the belt. The two ends of the guide shafts are respectively connected with the two support plates 11. The guide shafts can avoid the interference between the belt and other structures.
[0028] Referring to Figures 1-4Preferably, the belt transmission in the application can be replaced by a chain transmission, wherein the addition of the transmission gears and the cooperation of the transmission gears and the chain are routine technical operations for those skilled in the art, and thus will not be described in detail.
[0029] Referring to Figures 1-4 Preferably, the driving member 211 is a rotary motor capable of providing sufficient power.
[0030] In the implementation process of the utility model, the user places the plate on the base 1, starts the driving member 211, the driving member 211 drives the main shaft 21 to rotate in the positive direction, the two main blocks 22 drive the top driven blocks 22 to approach each other, under the action of the first connecting rod 231, the mounting seat 23 descends until the top pressing plate 241 presses part of the plate into the groove 12, at this time, the two ends of the plate are raised upward, then the electromagnet 26 applies an attractive force to the sliding plate 251, the two sliding plates 251 approach each other, driving the two supporting plates 25 to rotate and be retracted (when the supporting plate 25 cooperates with the top pressing plate 241, the deformation of the top pressing plate 241 when pressing the plate can be avoided), at this time, the two top driven blocks 222 move to the limit position, the two main blocks 22 continue to move away from each other, the spring is compressed, during the movement of the main block 22, the main block 22 first cooperates with the second screw thread, driving the top driven shaft 27 to rotate, the two side pressing plates 29 approach the plate, and the plate is bent, at this time, the plate forms a hollow flat body, then the main block 22 continues to move away from each other, the main block 22 is disengaged from the second screw thread, the telescopic plate 221 enters the second spiral groove from the straight groove, driving the bottom driven shaft 233 to rotate, so that the two bottom driven blocks 24 move away from each other, the top pressing plate 241 moves away from each other and is disengaged from the heat dissipation pipe, and then the heat dissipation pipe is removed, and then the driving member 211 is reversed, so that the device is reset.
[0031] The utility model provides a combined heat dissipation pipe curling device, and the beneficial effects are as follows:
[0032] 1. By setting up the curling assembly, the plate can be automatically curled into a hollow flat closed structure, the rough machining of the heat dissipation pipe is completed, additional transfer procedures are not needed, the curling efficiency of the heat dissipation pipe is improved, and the production demand of enterprises can be met.
[0033] 2. The utility model only needs one driving member to operate, can reduce operating cost, and meets the requirement of reducing cost and increasing benefit.
[0034] In summary, the utility model has the beneficial effects that the curling of the plate is automatically completed, the rough machining of the heat dissipation pipe is completed, the processing efficiency of the heat dissipation pipe is ensured, and the operating cost is reduced.
[0035] Of course, the utility model also can have multiple embodiments, in not departing from the utility model spirit and its essence, the skilled person of the art can make corresponding change and deformation according to the utility model, but these corresponding change and deformation all should belong to the protection range of the utility model attached claim.
Claims
1. A combined heat pipe coiling apparatus, characterized by comprising: Include: The base is provided with a groove on the top surface; The curling assembly includes a driving shaft and a driving block, the driving shaft is rotatably arranged above the base, two driving blocks are threadedly connected on the driving shaft, the side of the driving block away from each other is elastically connected with a top driven block, the lower side of the driving shaft is provided with a mounting seat, the top driven block and the mounting seat are rotatably connected with a first connecting rod, the mounting seat is rotatably provided with a bottom driven shaft, the driving block is slidably provided with a telescopic plate matched with the bottom driven shaft, the bottom driven shaft is provided with two bottom driven blocks, the bottom end of the bottom driven block is connected with a pressing plate, the upper side of the driving shaft is rotatably provided with a top driven shaft threadedly connected with the driving block, the base on both sides of the groove is rotatably provided with a side driven shaft, the side driven shaft is threadedly connected with two side driven blocks, the side of the side driven shaft is provided with a side pressing plate, the side driven block and the side pressing plate are rotatably provided with a third connecting rod.
2. The combined heat pipe coiling apparatus of claim 1, wherein The bottom surface of the mounting seat is provided with an electromagnet in the middle, the mounting seat on both sides of the electromagnet is slidably provided with a sliding plate, the mounting seat on the side of the sliding plate away from the electromagnet is rotatably provided with a support plate, the support plate and the sliding plate are rotatably provided with a second connecting rod.
3. The combined heat pipe coiling apparatus of claim 1, wherein The top surface of the base is provided with a support plate at both ends, the driving shaft, the top driven shaft and the side driven shaft are rotatably connected with the support plate, one of the support plates is provided with a driving element, and the driving element is connected with the driving shaft.
4. The combined heat pipe coiling apparatus of claim 1, wherein The bottom driven shaft is provided with a first spiral groove matched with the bottom driven block and a second spiral groove matched with the telescopic plate, and the two ends of the second spiral groove are connected with a straight groove matched with the telescopic plate.
5. The combined heat pipe coiling apparatus of claim 3, wherein The top driven shaft and the two side driven shafts are provided with a belt, and the support plate is connected with a guide shaft matched with the belt.
6. The combined heat pipe coiling apparatus of claim 1, wherein The mounting seat is provided with a guide groove matched with the bottom driven block.