CN218502511U - Three-axis linkage gluing device with anti-blocking structure - Google Patents

Three-axis linkage gluing device with anti-blocking structure Download PDF

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Publication number
CN218502511U
CN218502511U CN202221510149.0U CN202221510149U CN218502511U CN 218502511 U CN218502511 U CN 218502511U CN 202221510149 U CN202221510149 U CN 202221510149U CN 218502511 U CN218502511 U CN 218502511U
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China
Prior art keywords
cylinder
slide rail
barrel
gluing
guide pipe
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CN202221510149.0U
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Chinese (zh)
Inventor
孙顺彪
王才志
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Jiangsu Pingshengyuan Electronic Technology Co ltd
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Jiangsu Pingshengyuan Electronic Technology Co ltd
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Abstract

The utility model relates to a triaxial linkage rubber coating device with prevent blockking up structure, include: a work table; arranging a gluing component at a position corresponding to the upper part of the workbench and a driving component for driving the gluing component to move; the gluing component comprises an outer cylinder and an inner cylinder which is assembled in the outer cylinder in a sliding manner, wherein a flow guide pipe corresponding to a feed inlet of the outer cylinder is arranged on the side wall of the inner cylinder; the lifting assembly is used for controlling the sliding of the inner barrel and comprises an air cylinder, a moving plate driven by the air cylinder is arranged at the top end of the inner barrel, and a telescopic plate is arranged between the inner barrel and the lifting plate. The utility model discloses a drive assembly drive rubber coating subassembly removes, drives the upper and lower displacement of inner tube and honeycomb duct through lifting unit, makes the dislocation of honeycomb duct and feed inlet of slip realization through the inner tube after the rubber coating is accomplished to seal the feed inlet and make the difficult too much air of contact of false body and take place the solidification.

Description

Three-axis linkage gluing device with anti-blocking structure
Technical Field
The utility model relates to a rubber coating technical field, in particular to triaxial linkage rubber coating device with prevent blockking up structure.
Background
The adhesive tape is a common tool in daily life, and the adhesive tape needs to be uniformly coated with colloid in the production process.
At present, gluing equipment is provided in China to realize automatic gluing of products; the common gluing equipment comprises a slide rail arranged on a rack, wherein a movable gluing component is arranged on the slide rail and is driven by a driving component to move on the slide rail; the colloid is automatically sprayed on the product through a gluing head of the gluing component.
The colloid is easy to solidify after contacting with air; when the work is interrupted or the equipment stops, the colloid at the part in contact with the air is easy to solidify to cause the blockage of the gluing component, the cleaning of the gluing component is time-consuming and labor-consuming, and the work efficiency is seriously influenced; if the glue head is replaced directly, the cost is high, and serious waste is caused.
SUMMERY OF THE UTILITY MODEL
In order to solve the technical problem, the utility model provides a triaxial linkage rubber coating device with prevent blockking up structure can seal the colloid of feed inlet department after using the completion, prevents that it from contacting too much air and taking place the solidification and cause the jam.
In order to achieve the above purpose, the technical scheme of the utility model is as follows: a three-axis linkage gluing device with an anti-blocking structure comprises: a work table;
arranging a gluing component at a position corresponding to the upper part of the workbench and a driving component for driving the gluing component to move;
the gluing component comprises an outer barrel and an inner barrel assembled in the outer barrel in a sliding manner, and a flow guide pipe corresponding to a feed inlet of the outer barrel is arranged on the side wall of the inner barrel;
the lifting assembly is used for controlling the sliding of the inner barrel and comprises an air cylinder, a moving plate driven by the air cylinder is arranged at the top end of the inner barrel, and a telescopic plate is arranged between the inner barrel and the lifting plate.
Realize above-mentioned technical scheme, through the honeycomb duct with the colloid of feed inlet department introduce the inner tube and drip to the sticky tape that is located the workstation in, through the displacement of drive assembly control rubber coating subassembly, make the rubber coating subassembly take place the displacement on the sticky tape and paint the colloid on the sticky tape, thereby control the upper and lower displacement of honeycomb duct through elevating gear and realize whether the inner tube communicates with the urceolus.
As a preferred embodiment of the present invention, the driving assembly includes a first slide rail, a first slide block sliding on the first slide rail, a second slide rail disposed on the first slide block, a second slide block sliding on the second slide rail, a third slide rail disposed on the second slide block, and a third slide block sliding on the third slide rail.
According to the technical scheme, the displacement of the gluing assembly in the X-axis Y-axis direction and the Z-axis direction is controlled through the first sliding rail, the first sliding block, the second sliding rail, the second sliding block, the third sliding rail and the third sliding block.
As a preferred scheme of the utility model, the corresponding logical groove with the smart material mouth has been seted up to the lateral wall of inner tube, the honeycomb duct slides and sets up in leading to the inslot, the one end that the honeycomb duct is close to the feed inlet is provided with the scarf, the lateral wall of honeycomb duct is provided with the fixed block, be provided with the spring between fixed block and the inner tube.
According to the technical scheme, the inclined plane of the guide pipe is matched with the spring, so that the guide pipe can slide in the through groove when the inner cylinder moves up and down.
As an optimized scheme of the utility model, the lateral wall of inner tube is provided with the sealed piece corresponding with the honeycomb duct, the one end that sealed piece is close to logical groove is provided with the scarf, be provided with the spring between sealed piece and the inner tube.
According to the technical scheme, the sealing block inner cylinder slides between the inclined plane of the sealing block and the spring, and the feeding hole is sealed when the sealing block displaces to the feeding hole.
As a preferred scheme of the utility model, be provided with the stopper on the inside wall of urceolus, be provided with the locating piece corresponding with the stopper on the lateral wall of inner tube.
According to the technical scheme, the guide pipe is accurately butted with the feed inlet through the positioning block and the limiting block.
As an optimized proposal of the utility model, an inclined block is arranged in the flow guide pipe.
According to the technical scheme, the colloid in the flow guide pipe is easier to enter the inner cylinder from the flow guide pipe through the inclined block.
As a preferred scheme of the utility model, the feed inlet intercommunication has the charge-in pipeline who has the valve.
Realize above-mentioned technical scheme, whether the valve can control the feed inlet and feed.
As a preferred scheme of the utility model, one side of workstation still is provided with the solvent bucket that holds anti-curing solvent.
The technical scheme is realized, and the outer barrel and the inner barrel are moved into the solvent barrel after the use is finished, so that the colloid is further prevented from being solidified.
To sum up, the utility model discloses following beneficial effect has: realize the upper and lower displacement of inner tube through the push rod cylinder, realize the intercommunication of inner tube and urceolus, the colloid passes through the inner tube drippage to the sticky tape, realize the removal of rubber coating subassembly through drive assembly, realize the slip of inner tube through the push rod cylinder, whether control inner tube communicates with the urceolus, use and accomplish the back seal block and can seal the feed inlet, prevent colloid and gas contact in the feed inlet and solidification, can further prevent the colloid solidification through the solidification-preventing solvent with in the solvent bucket.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below, it is obvious that the drawings in the following description are only some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to these drawings without creative efforts.
Fig. 1 is a front view of the present invention.
Fig. 2 is a top view of the present invention.
Fig. 3 is a cross-sectional view of the outer cylinder and the inner cylinder of the present invention.
Fig. 4 is an enlarged schematic view of a in fig. 3.
The numbers and letters in the figures represent the respective part names:
1. a work table; 11. a solvent barrel; 12. a first slide rail; 13. a first slider; 14. a second slide rail; 15. a second slider; 16. a third slide rail; 17. a third slider; 18. a push rod cylinder; 19. a clamping member; 2. an outer cylinder; 21. a feed inlet; 22. a limiting block; 23. a retractable plate; 24. moving the plate; 3. an inner barrel; 31. a flow guide pipe; 32. a fixed block; 33. a sealing block; 34. positioning blocks; 35. an inclined block.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by a person skilled in the art without making creative efforts belong to the protection scope of the present invention.
Examples
As shown in fig. 1 to 4, a three-axis linkage gluing device with an anti-blocking structure comprises: the automatic gluing machine comprises a rack and a workbench 1, wherein the workbench 1 is a conveyor belt, a first slide rail 12 is arranged on the rack, a first slide block 13 is arranged on the first slide rail 12 in a sliding manner, a second slide rail 14 is arranged on the first slide block 13, a second slide block 15 is arranged on the second slide rail 14 in a sliding manner, a third slide rail 16 is arranged on the second slide block 15, a third slide block 17 is arranged on the third slide rail 16 in a sliding manner, the first slide rail 12, the second slide rail 14 and the third slide rail 16 are mutually vertical, a clamping piece 19 is arranged on the third slide block 17, a gluing component is clamped at the bottom end of the clamping piece 19, and the workbench 1 is arranged at a corresponding position below the gluing component;
the gluing component comprises an outer barrel 2 and an inner barrel 3 sliding in the outer barrel 2, a feed port 21 of the outer barrel 2 is communicated with a feed pipeline with a valve, a through groove corresponding to the feed port 21 is formed in the side wall of the inner barrel 3, a guide pipe 31 is arranged in the through groove in a sliding manner, one end, close to the feed port 21, of the guide pipe 31 is provided with a diagonal plane, the outer side wall of the guide pipe 31 is provided with a fixed block 32, a spring is arranged between the fixed block 32 and the inner barrel 3, and an inclined block 35 is arranged in the guide pipe 31;
the honeycomb duct 31 below corresponds the position and is provided with sealed piece 33, the one end that sealed piece 33 is close to urceolus 2 is provided with the scarf, be provided with the spring between sealed piece 33 and the inner tube 3, sealed piece 33 below corresponds the position and is provided with the locating piece 34 of being connected on with the inner tube 3, be provided with on the inside wall of urceolus 2 with locating piece 34 matched with stopper 22. When the limiting block 22 contacts with the positioning block 34, the guide pipe 31 corresponds to the feed port 21;
a moving plate 24 is arranged at the top end of the inner cylinder 3, a push rod cylinder 18 is arranged on the clamping piece 19, the movable end of the push rod cylinder 18 is connected with the moving plate 24, a telescopic plate 23 is arranged between the moving plate 24 and the top of the outer cylinder 2, and the telescopic plate 23 is annularly arranged at the top end of the outer cylinder 2;
and a solvent barrel 11 for containing an anti-solidification solvent is further arranged on one side of the workbench 1.
The working principle is as follows: when the device is used, the push rod cylinder 18 extends out to drive the inner cylinder 3 to slide downwards, the distance of the downward sliding of the inner cylinder 3 is controlled by the positioning block 34 and the limiting block 22, so that the position of the flow guide pipe 31 corresponds to that of the feed port 21, and the flow guide pipe 31 slides towards the feed port 21 under the action of the spring;
placing an adhesive tape to be coated with adhesive on a workbench 1, then opening a valve to enable the adhesive to enter an inner cylinder 3 through a guide pipe 31 and fall on the adhesive tape, and controlling the movement of a coating assembly in the X-axis direction, the Y-axis direction and the Z-axis direction through a first slide rail 12, a first slide block 13, a second slide rail 14, a second slide block 15, a third slide rail 16 and a third slide rail 16;
calculating the amount of colloid, closing a valve when the gluing is about to be finished, starting the push rod cylinder 18 to drive the inner cylinder 3 to move upwards, enabling the oblique section of the guide pipe 31 to slide and move upwards in the direction away from the feed port 21 under the action of the interaction force of the wall of the outer cylinder 2 at the feed port 21 in the upward movement process of the inner cylinder 3, enabling the guide pipe 31 to move upwards, enabling the sealing block 33 to move to the feed port 21 to seal the feed port 21, and enabling the colloid in the guide pipe 31 to continuously slide into the inner cylinder 3 along the inclined block 35 and to drip onto the adhesive tape to finish the final gluing work;
and finally, the outer cylinder 2 and the inner cylinder 3 are moved into the solvent barrel 11 through a control system, and the solidification of the residual colloid on the inner cylinder 3 can be prevented by the solidification-preventing solvent.
The previous description of the disclosed embodiments is provided to enable any person skilled in the art to make or use the present invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the generic principles defined herein may be applied to other embodiments without departing from the spirit or scope of the invention. Thus, the present invention is not intended to be limited to the embodiments shown herein but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.

Claims (8)

1. The utility model provides a triaxial linkage rubber coating device with prevent blockking up structure which characterized in that includes: a work table;
arranging a gluing component at a position corresponding to the upper part of the workbench and a driving component for driving the gluing component to move;
the gluing component comprises an outer barrel and an inner barrel assembled in the outer barrel in a sliding manner, and a flow guide pipe corresponding to a feed inlet of the outer barrel is arranged on the side wall of the inner barrel;
the lifting assembly is used for controlling the sliding of the inner barrel and comprises an air cylinder, a moving plate driven by the air cylinder is arranged at the top end of the inner barrel, and a telescopic plate is arranged between the inner barrel and the lifting plate.
2. The three-axis linkage gluing device with the anti-clogging structure according to claim 1, wherein the driving assembly comprises a first slide rail, a first slider sliding on the first slide rail, a second slide rail disposed on the first slider, a second slider sliding on the second slide rail, a third slide rail disposed on the second slider, and a third slider sliding on the third slide rail.
3. The three-axis linkage gluing device with the anti-clogging structure according to claim 1, wherein a through groove corresponding to the fine material opening is formed in the side wall of the inner cylinder, the flow guide pipe is slidably arranged in the through groove, a chamfer surface is arranged at one end of the flow guide pipe close to the feeding opening, a fixed block is arranged on the outer side wall of the flow guide pipe, and a spring is arranged between the fixed block and the inner cylinder.
4. The three-shaft linkage gluing device with the anti-blocking structure according to claim 1, wherein a sealing block corresponding to the flow guide pipe is arranged on the outer side wall of the inner cylinder, an inclined plane is arranged at one end, close to the through groove, of the sealing block, and a spring is arranged between the sealing block and the inner cylinder.
5. The three-axis linkage gluing device with the anti-clogging structure according to claim 1, wherein a limiting block is arranged on the inner side wall of the outer cylinder, and a positioning block corresponding to the limiting block is arranged on the outer side wall of the inner cylinder.
6. The three-axis linkage gluing device with the anti-clogging structure according to claim 1, wherein an inclined block is arranged in the flow guide tube.
7. The three-axis linkage gluing device with the anti-clogging structure according to claim 1, wherein the feeding port is communicated with a feeding pipeline with a valve.
8. The three-axis linkage gluing device with the anti-blocking structure according to claim 1, wherein a solvent barrel for containing an anti-curing solvent is further arranged on one side of the workbench.
CN202221510149.0U 2022-06-16 2022-06-16 Three-axis linkage gluing device with anti-blocking structure Active CN218502511U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202221510149.0U CN218502511U (en) 2022-06-16 2022-06-16 Three-axis linkage gluing device with anti-blocking structure

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202221510149.0U CN218502511U (en) 2022-06-16 2022-06-16 Three-axis linkage gluing device with anti-blocking structure

Publications (1)

Publication Number Publication Date
CN218502511U true CN218502511U (en) 2023-02-21

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202221510149.0U Active CN218502511U (en) 2022-06-16 2022-06-16 Three-axis linkage gluing device with anti-blocking structure

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CN (1) CN218502511U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN116717186A (en) * 2023-08-09 2023-09-08 陕西星通石油工程技术有限公司 PDC drill bit with stratum information acquisition

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN116717186A (en) * 2023-08-09 2023-09-08 陕西星通石油工程技术有限公司 PDC drill bit with stratum information acquisition
CN116717186B (en) * 2023-08-09 2023-10-20 陕西星通石油工程技术有限公司 PDC drill bit with stratum information acquisition

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