CN211305447U - Inlay effective continuous molding device of heat conduction - Google Patents
Inlay effective continuous molding device of heat conduction Download PDFInfo
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- CN211305447U CN211305447U CN201922439903.0U CN201922439903U CN211305447U CN 211305447 U CN211305447 U CN 211305447U CN 201922439903 U CN201922439903 U CN 201922439903U CN 211305447 U CN211305447 U CN 211305447U
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Abstract
The utility model discloses an inlay effective continuous molding device of heat-conducting pipe, including frame, conveying mechanism and moulding-pressing mechanism all locate on the frame, conveying mechanism includes along frame fore-and-aft direction reciprocating motion's conveyer belt, the drive assembly that moulding-pressing mechanism includes moulding-die utensil and drive moulding-die utensil and reciprocated, moulding-die utensil includes first moulding-die utensil, second moulding-die utensil and third moulding-die utensil, drive assembly is three, and three drive assembly sets up along frame fore-and-aft direction interval, first moulding-die utensil, second moulding-die utensil and third moulding-die utensil are installed on three drive assembly along the frame fore-and-aft direction in proper order. The utility model discloses a three drive assembly, first compression mold, second compression mold, third compression mold and conveying mechanism's cooperation can realize once only accomplishing the process to inlaying the heat pipe to the work piece, need not to shut down during and change the mould, sparingly changes the mould time, effectively improves production efficiency and quality.
Description
Technical Field
The utility model relates to an inlay heat pipe equipment technical field, in particular to inlay continuous molding device for heat pipe.
Background
Generally, a heat pipe is embedded in the 5G communication box. These heat pipes are typically molded into the 5G communication box. In the traditional process, the heat conduction pipes can be embedded into the 5G communication box body only by molding three times, which means that when one set of molding is pressed, the other set of molding needs to be replaced, the molding is repeatedly replaced for two times, the standby time is long, and the working efficiency is low.
Disclosure of Invention
The to-be-solved technical problem of the utility model is, to the not enough among the above-mentioned prior art, provide an inlay continuous molding device for heat pipe, it can realize once only accomplishing the process of inlaying the heat pipe to the work piece, need not to shut down during and change the mould, saves the time of changing the mould, effectively improves production efficiency and quality.
In order to solve the technical problem, the technical scheme of the utility model is that:
the utility model provides an inlay effective continuous molding device of heat-conducting pipe, includes frame, conveying mechanism and moulding mechanism all locate on the frame, conveying mechanism includes along frame fore-and-aft direction reciprocating motion's conveyer belt, the drive assembly that moulding mechanism includes moulding die and drive moulding die and reciprocates, moulding die includes first moulding die, second moulding die and third moulding die, drive assembly is three, and three drive assembly sets up along frame fore-and-aft direction interval, first moulding die, second moulding die and third moulding die are installed on three drive assembly along the frame fore-and-aft direction in proper order.
As a preferred scheme, drive assembly includes mounting panel and pneumatic cylinder, pneumatic cylinder fixed mounting is on the frame, the flexible end fixed connection of mounting panel and pneumatic cylinder, first mould pressing mould fixed mounting is in the mounting panel below that is located the frame front end drive assembly, third mould pressing mould fixed mounting is in the mounting panel below that is located frame rearmost end drive assembly, second mould pressing mould fixed mounting is in the mounting panel below that is located frame middle part drive assembly.
As a preferred scheme, the driving assembly further comprises guide rods used for driving the mounting plate to move up and down stably, and the guide rods are arranged on the periphery of the hydraulic cylinder.
As a preferred scheme, the conveying mechanism further comprises a driving roller and a driven roller, the driving roller and the driven roller are oppositely arranged along the front and back directions of the machine base, and the conveying belt is wound between the driving roller and the driven roller.
As a preferable scheme, the conveying mechanism further comprises a driving motor for driving the driving roller to work, and the driving roller is fixedly connected with an output shaft of the driving motor.
Preferably, the continuous molding device for embedding the heat conducting pipe further comprises a fixing seat for fixing the workpiece, and the fixing seat is fixedly arranged on the conveyor belt.
As a preferable scheme, the continuous molding device for embedding the heat conducting tube further comprises two safety gratings, the two safety gratings are divided into an initial safety grating and an end point safety grating, the initial safety grating is arranged at the front ends of the three driving components, and the end point safety grating is arranged at the rear ends of the three driving components.
As a preferred scheme, the continuous die pressing device for the embedded heat conducting pipe further comprises a controller, the two safety gratings are in communication connection with the controller, and the three hydraulic cylinders and the driving motor are electrically connected with the controller.
The utility model has the advantages that: the process of embedding the heat conducting pipe on the workpiece can be completed at one time through the cooperation of the three driving assemblies, the first molding die, the second molding die, the third molding die and the conveying mechanism, the die does not need to be replaced by stopping the machine in the process, the time for replacing the die is saved, and the production efficiency and the quality are effectively improved.
Drawings
Fig. 1 is a schematic view of an assembly structure according to an embodiment of the present invention.
In the figure: 1-machine base, 2-conveyor belt, 3-first mould pressing die, 4-second mould pressing die, 5-third mould pressing die, 6-hydraulic cylinder, 7-mounting plate, 8-guide bar, 9-fixing seat, 10-initial safety grating, 11-final safety grating, 12-controller and 13-workpiece.
Detailed Description
The structure and operation of the present invention will be described in detail with reference to the accompanying drawings.
As shown in fig. 1, a inlay effective continuous molding device of heat conduction, including frame 1, conveying mechanism and moulding mechanism all locate on frame 1, conveying mechanism includes along frame 1 fore-and-aft direction reciprocating motion's conveyer belt 2, moulding mechanism includes the drive assembly that moulding die and drive moulding die reciprocated, moulding die includes first moulding die 3, second moulding die 4 and third moulding die 5, drive assembly is three, and three drive assembly sets up along frame 1 fore-and-aft direction interval, first moulding die 3, second moulding die 4 and third moulding die 5 install in proper order on three drive assembly along frame 1 fore-and-aft direction.
As a preferred scheme, drive assembly includes mounting panel 7 and pneumatic cylinder 6, 6 fixed mounting of pneumatic cylinder is on frame 1, mounting panel 7 and 6 flexible end fixed connection of pneumatic cylinder, 3 fixed mounting of first mould pressing mould are in the mounting panel 7 below that is located the most front end drive assembly of frame 1, 5 fixed mounting of third mould pressing mould are in the mounting panel 7 below that is located frame 1 rearmost end drive assembly, 4 fixed mounting of second mould pressing mould are in the mounting panel 7 below that is located frame 1 middle part drive assembly.
As a preferable scheme, the driving assembly further comprises a guide rod 8 for driving the mounting plate 7 to move up and down stably, and the guide rod 8 is arranged around the hydraulic cylinder 6.
As a preferred scheme, the conveying mechanism further comprises a driving roller and a driven roller, the driving roller and the driven roller are oppositely arranged along the front and back directions of the machine base 1, and the conveying belt 2 is wound between the driving roller and the driven roller.
As a preferable scheme, the conveying mechanism further comprises a driving motor for driving the driving roller to work, and the driving roller is fixedly connected with an output shaft of the driving motor.
Preferably, the continuous molding device for embedding the heat conducting pipe further comprises a fixing seat 9 for fixing the workpiece 13, and the fixing seat 9 is fixedly arranged on the conveyor belt 2.
As a preferable scheme, the continuous molding device for embedding the heat conducting tube further comprises two safety gratings, the two safety gratings are divided into an initial safety grating 10 and an end point safety grating 11, the initial safety grating 10 is installed at the front ends of the three driving components, and the end point safety grating 11 is installed at the rear ends of the three driving components.
As a preferred scheme, the continuous die pressing device for the heat conducting pipe embedded further comprises a controller 12, the two safety gratings are in communication connection with the controller 12, and the three hydraulic cylinders 6 and the driving motor are electrically connected with the controller 12, so that the continuous die pressing device can automatically complete three times of die pressing, the automation degree is higher, and the working efficiency is further improved.
During operation, work piece 13 is placed on fixing base 9, conveyer belt 2 transports work piece 13 and stops being located the most front end of frame 1 below pneumatic cylinder 6, pneumatic cylinder 6 drives first mould pressing 3 and pushes down, accomplish first mould pressing, then conveyer belt 2 continues to transport work piece 13 and arrives and be located the middle pneumatic cylinder 6 below of frame 1, pneumatic cylinder 6 drives second mould pressing 4 and pushes down, accomplish second mould pressing, conveyer belt 2 continues to transport work piece 13 and arrives and is located the terminal pneumatic cylinder 6 below of frame 1, pneumatic cylinder 6 drives third mould pressing 5 and pushes down, accomplish third mould pressing, drive motor drive conveyer belt 2 fast reset at last, the staff takes off and accomplishes the work piece 13 of inlaying the heat pipe.
The utility model has the advantages that: the process of embedding the heat conducting pipe on the workpiece can be completed at one time through the cooperation of the three driving components, the first molding die 3, the second molding die 4, the third molding die 5 and the conveying mechanism, the die does not need to be replaced by stopping the machine in the process, the time for replacing the die is saved, and the production efficiency and the quality are effectively improved.
The above, only the utility model discloses preferred embodiment, all be according to the utility model discloses a technical scheme does any slight modification, the equivalent change and the modification to above embodiment, all belong to the utility model discloses technical scheme's within range.
Claims (8)
1. The utility model provides an inlay continuous molding device for heat-conducting pipe which characterized in that: including frame, conveying mechanism and moulding mechanism all locate on the frame, conveying mechanism includes along frame fore-and-aft direction reciprocating motion's conveyer belt, the moulding mechanism includes the drive assembly that moulding die and drive moulding die reciprocated, moulding die includes first moulding die, second moulding die and third moulding die, drive assembly is three, and three drive assembly sets up along frame fore-and-aft direction interval, first moulding die, second moulding die and third moulding die install in proper order on three drive assembly along the frame fore-and-aft direction.
2. The continuous molding apparatus for a heat-conducting pipe insert according to claim 1, wherein: the drive assembly includes mounting panel and pneumatic cylinder, pneumatic cylinder fixed mounting is on the frame, the flexible end fixed connection of mounting panel and pneumatic cylinder, first mold pressing fixed mounting is in the mounting panel below that is located the frame front end drive assembly, third mold pressing fixed mounting is in the mounting panel below that is located frame rearmost end drive assembly, second mold pressing fixed mounting is in the mounting panel below that is located frame middle part drive assembly.
3. The continuous molding apparatus for a heat pipe insert according to claim 2, wherein: the driving assembly further comprises a guide rod used for driving the mounting plate to move up and down stably, and the guide rod is arranged around the hydraulic cylinder.
4. The continuous molding apparatus for a heat pipe insert according to claim 3, wherein: conveying mechanism still includes driving roll and driven roller, driving roll and driven roller set up along the frame fore-and-aft direction relatively, the conveyer belt is around locating between driving roll and the driven roller.
5. The continuous molding apparatus for a heat pipe insert according to claim 4, wherein: the conveying mechanism further comprises a driving motor for driving the driving roller to work, and the driving roller is fixedly connected with an output shaft of the driving motor.
6. The continuous molding apparatus for a heat pipe insert according to claim 5, wherein: the workpiece fixing device further comprises a fixing seat used for fixing the workpiece, and the fixing seat is fixedly arranged on the conveying belt.
7. The continuous molding apparatus for a heat pipe insert according to claim 6, wherein: the three-dimensional optical grating driving device is characterized by further comprising two safety gratings which are divided into an initial safety grating and a final safety grating, wherein the initial safety grating is arranged at the front ends of the three driving components, and the final safety grating is arranged at the rear ends of the three driving components.
8. The continuous molding apparatus for a heat pipe insert according to claim 7, wherein: the three hydraulic cylinders and the driving motor are electrically connected with the controller.
Priority Applications (1)
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CN201922439903.0U CN211305447U (en) | 2019-12-30 | 2019-12-30 | Inlay effective continuous molding device of heat conduction |
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CN201922439903.0U CN211305447U (en) | 2019-12-30 | 2019-12-30 | Inlay effective continuous molding device of heat conduction |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN114193126A (en) * | 2021-12-02 | 2022-03-18 | 中国兵器装备集团自动化研究所有限公司 | Automatic continuous press fitting device |
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2019
- 2019-12-30 CN CN201922439903.0U patent/CN211305447U/en active Active
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN114193126A (en) * | 2021-12-02 | 2022-03-18 | 中国兵器装备集团自动化研究所有限公司 | Automatic continuous press fitting device |
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