Silicone adhesive hard tube filling machine
By designing a silicone rubber hard tube filling machine with a turntable and multiple modules, the bottle is automatically loaded, filling and capped, solving the problem of inefficiency in the existing technology and significantly improving the filling efficiency.
Patent Information
- Application Number
- CN202421653835.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-12
- Publication Date
- 2025-05-13
- Estimated Expiration
- 2034-07-12
AI Technical Summary
The existing silicone glue filling machines are inefficient and require manual movement of bottles for loading, filling and capping.
A silicone rubber hard tube filling machine is designed, including a turntable, bottle-up module, filling module and capping module. The turntable drives the limit seat to rotate simultaneously to realize automatic feeding, filling and capping of the bottle.
The automated process from bottle loading, filling to capping is realized, and the filling efficiency is improved.
Smart Images

Figure CN222861141U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of silicone adhesive production, in particular to a silicone adhesive hard tube filling machine. Background Art
[0002] Silicone glue is a kind of ointment-like material. Once it comes into contact with moisture in the air, it will solidify into a tough rubber-like solid material. The Chinese utility model patent "A Silicone Glue Filling Machine" with application number 202122534829.8 discloses a pump body, a discharge port and a feed hopper. After placing the can at the discharge port, the silicone glue in the feed hopper is pressed into the bottle through the discharge port of the hard tube through the pump body to achieve filling. However, the loading of the can and the capping of the bottle after filling require manual movement of the bottle to the corresponding workstation before operation can be performed, which results in low filling efficiency. Utility Model Content
[0003] In order to overcome the defects of the prior art, the utility model provides a silicone rubber hard tube filling machine to solve the above problems.
[0004] The technical solution adopted by the utility model to solve the technical problem is: a silicone rubber hard tube filling machine, comprising a turntable and a bottle loading module, a filling module and a capping module arranged in sequence around the turntable; the turntable is provided with a plurality of limit seats for placing bottles;
[0005] The bottle loading module comprises a bottle conveying conveyor belt, the output end of which faces the turntable to convey the bottles into the limiting seats of the turntable;
[0006] The filling module comprises a discharge pipe and a pump body, the pump body is connected to the discharge pipe, and the output end of the discharge pipe faces the turntable to fill the silicone glue into the bottle;
[0007] The capping module comprises a bottle cap feeding mechanism and a capping rod, wherein the output end of the bottle cap feeding mechanism and the end of the capping rod are both facing the rotating disk so as to drive the bottle cap into the bottle.
[0008] Preferably, a bottle turning module is further provided between the output end of the bottle feeding conveyor belt and the turntable, the bottle turning module comprising a sliding track, a base and a bottle turning limiter, the input end of the sliding track faces the output end of the bottle feeding conveyor belt, the output end of the sliding track is provided with the base, the base is rotatably connected with the bottle turning limiter, the bottle turning limiter is located directly above the turntable, the bottle turning limiter is provided with a limiting groove matching the bottle, and the end of the limiting groove is an open structure, and the limiting groove faces the output end of the sliding track.
[0009] Optionally, the bottle loading module further includes partitions, which are evenly distributed on the bottle feeding conveyor belt, and all the partitions are parallel to each other to form a bottle limiting gap between two adjacent partitions.
[0010] Specifically, the filling module also includes a first pulling claw, which is located directly above the turntable and directly below the output end of the discharge pipe. After the limit seat is rotated into place, the output end of the discharge pipe, the clamping gap of the first pulling claw and the limit seat are located on the same vertical line.
[0011] Optionally, the bottle cap feeding mechanism comprises a cap loading platform, a bottle cap feeding track and a bottle cap pulling claw, the cap loading platform is provided with a cap loading hole, the capping rod is located above the cap loading platform and the end of the capping rod faces the cap loading hole;
[0012] The capping platform is also provided with a translation guide rail, and the bottle cap pulling claw is arranged on the translation guide rail so that the bottle cap pulling claw can translate between the bottle cap feeding track and the capping hole.
[0013] It is worth mentioning that the cover-loading module also includes a second pull claw, which is located directly above the turntable and directly below the cover-loading hole. After the limit seat is rotated into place, the cover-loading hole, the clamping gap of the second pull claw and the limit seat are located on the same vertical line.
[0014] The beneficial effects of the utility model are as follows: in the silicone rubber hard tube filling machine, when the turntable rotates, it can drive all the limit seats to rotate synchronously, so as to enter the working range of the bottle loading module, the filling module or the capping module; the bottle can enter the limit seat after being conveyed by the bottle conveyor belt and follow the turntable to rotate into the working range of the filling module; the silicone rubber is pressurized by the pump body and input into the bottle located at the limit seat through the discharge pipe, and then the bottle filled with silicone rubber follows the turntable to rotate into the working range of the capping module; the bottle cap is conveyed to the output end of the bottle cap feeding mechanism, and then the capping rod is pressed downward to load the bottle cap into the bottle filled with silicone rubber, thereby completing the process. Automation is realized from bottle feeding, filling to capping, thereby improving the filling efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 This is a schematic structural diagram of a silicone rubber hard tube filling machine in one embodiment of the utility model;
[0016] Figure 2 This is a schematic structural diagram of a bottle loading module and a bottle turning module in one embodiment of the utility model;
[0017] Figure 3 This is a structural schematic diagram of a bottle turning module in one embodiment of the utility model;
[0018] Figure 4 It is a structural schematic diagram of a filling module in one embodiment of the utility model;
[0019] Figure 5 This is a structural schematic diagram of a cover module in one embodiment of the utility model;
[0020] Figure 6 This is a structural schematic diagram of a cover module in another embodiment of the utility model;
[0021] In the figure: 1 turntable; 11 limiting seat; 2 bottle loading module; 21 bottle feeding conveyor belt; 22 partition; 3 filling module; 31 discharge pipe; 32 pump body; 33 first pulling claw; 4 capping module; 41 bottle cap loading mechanism; 411 capping platform; 412 translation guide rail; 413 capping hole; 414 bottle cap loading track; 415 bottle cap pulling claw; 42 capping rod; 43 second pulling claw; 5 bottle turning module; 51 sliding track; 52 base; 521 arc-shaped avoidance groove; 53 bottle turning limiting piece; 531 limiting groove; 54 rotating cylinder. DETAILED DESCRIPTION
[0022] The specific implementation methods of the present invention are further described below in conjunction with the accompanying drawings. It should be noted that the description of these implementation methods is used to help understand the present invention, but does not constitute a limitation of the present invention. In addition, the technical features involved in each implementation method of the present invention described below can be combined with each other as long as they do not conflict with each other.
[0023] like Figure 1-6 As shown, a silicone rubber hard tube filling machine comprises a turntable 1 and a bottle loading module 2, a filling module 3 and a capping module 4 which are sequentially arranged around the turntable 1; the turntable 1 is provided with a plurality of limiting seats 11 for placing bottles;
[0024] The bottle loading module 2 comprises a bottle conveying conveyor belt 21, the output end of which faces the turntable 1 to convey the bottles to the limiting seat 11 of the turntable 1;
[0025] The filling module 3 includes a discharge pipe 31 and a pump body 32, the pump body 32 is connected to the discharge pipe 31, and the output end of the discharge pipe 31 faces the turntable 1 to fill the silicone glue into the bottle;
[0026] The capping module 4 comprises a bottle cap feeding mechanism 41 and a capping rod 42 . The output end of the bottle cap feeding mechanism 41 and the end of the capping rod 42 are both facing the turntable 1 so as to drive the bottle caps into the bottles.
[0027] In the silicone tube filling machine, when the turntable 1 rotates, it can drive all the limit seats 11 to rotate synchronously, so as to enter the working range of the bottle loading module 2, the filling module 3 or the capping module 4; the bottle can enter the limit seat 11 after being conveyed by the bottle conveyor belt 21 and rotate with the turntable 1 to the working range of the filling module 3; the silicone is pressurized by the pump body 32 and input into the bottle located at the limit seat 11 through the discharge pipe 31, and then the bottle filled with silicone follows the turntable 1 to rotate to the working range of the capping module 4; the bottle cap is conveyed to the output end of the bottle cap feeding mechanism 41, and then the capping rod 42 is pressed downward to load the bottle cap into the bottle filled with silicone, thereby completing the process. Automation is achieved from bottle feeding, filling to capping, thereby improving the filling efficiency.
[0028] like Figure 1 As shown, in this solution, two bottle loading modules 2, two filling modules 3 and two capping modules 4 are arranged along the circumference of the turntable 1, so as to further improve the filling efficiency.
[0029] It is worth noting that if Figure 1-3 As shown, a bottle turning module 5 is further provided between the output end of the bottle feeding conveyor belt 21 and the turntable 1, and the bottle turning module 5 includes a sliding track 51, a base 52 and a bottle turning limiter 53. The input end of the sliding track 51 faces the output end of the bottle feeding conveyor belt 21, and the output end of the sliding track 51 is provided with the base 52, and the base 52 is rotatably connected with the bottle turning limiter 53, and the bottle turning limiter 53 is located directly above the turntable 1, and the bottle turning limiter 53 is provided with a limit groove 531 matching the bottle, and the end of the limit groove 531 is an open structure, and the limit groove 531 faces the output end of the sliding track 51.
[0030] The bottles are conveyed horizontally after being laid down on the bottle conveyor belt 21, so before being input into the limiting seat 11, it is necessary to turn the bottles over to make them stand upright. After the horizontally placed bottles enter the sliding track 51, the bottles will roll toward the bottle turning limiter 53. At this time, the limiting groove 531 of the bottle turning limiter 53 is horizontal and parallel to the bottle so that the bottle can enter the limiting groove 531. After the bottle enters the limiting groove 531, the bottle turning limiter 53 is rotated 90 degrees relative to the base 52 so that the normal opening of the limiting groove 531 is vertically downward, and the bottle can fall downward into the limiting seat 11 on the turntable 1, and the bottle is now set upright.
[0031] like Figure 3As shown, in this embodiment, the bottle turning module 5 further includes a rotating cylinder 54, and the output shaft of the rotating cylinder 54 is connected to the bottle turning limiter 53 to drive the bottle turning limiter 53 to rotate. The base 52 is provided with an arc-shaped avoidance groove 521 so that the bottle turning limiter 53 will not collide with the wall surface of the base 52 when rotating.
[0032] Optional, such as Figure 2 As shown, the bottle loading module 2 further includes partitions 22, which are evenly distributed on the bottle feeding conveyor belt 21, and all the partitions 22 are parallel to each other, so as to form a bottle limiting gap between two adjacent partitions 22. After the partitions 22 are provided, each bottle limiting gap can only accommodate one bottle, so that each bottle can be separated during the bottle conveying process, thereby realizing separate feeding.
[0033] Preferably, Figure 4 As shown, the filling module 3 further includes a first claw 33, which is located directly above the turntable 1 and directly below the output end of the discharge pipe 31. After the stop seat 11 rotates to the right position, the output end of the discharge pipe 31, the clamping gap of the first claw 33 and the stop seat 11 are located in the same vertical line. After the turntable 1 drives the bottle located at the stop seat 11 to rotate into the working range of the filling module 3, the first claw 33 is used to clamp the bottle so that the bottle does not shake, so that the upper end of the bottle opens toward the output end of the discharge pipe 31, so that the silicone glue output from the discharge pipe 31 can be received.
[0034] Specifically, Figure 5 and 6 As shown, the bottle cap feeding mechanism 41 includes a cap loading platform 411, a bottle cap loading track 414 and a bottle cap pulling claw 415. The cap loading platform 411 is provided with a cap loading hole 413. The capping rod 42 is located above the cap loading platform 411 and the end of the capping rod 42 faces the cap loading hole 413.
[0035] The capping platform 411 is further provided with a translation guide rail 412 , and the bottle cap pulling claw 415 is arranged on the translation guide rail 412 so that the bottle cap pulling claw 415 can translate between the bottle cap feeding track 414 and the capping hole 413 .
[0036] After the bottle cap is output from the bottle cap feeding track 414, the bottle cap pulling claw 415 is opened, the bottle cap enters the bottle cap pulling claw 415, the bottle cap pulling claw 415 is closed, and then it can move along the length direction of the translation guide rail 412, and drive the bottle cap to move to just above the capping hole 413. At this time, just below the capping hole 413 is the limiting seat 11, and the bottle is placed in the limiting seat 11. Above the bottle cap is the capping rod 42, which is driven by the cylinder to move downward rapidly, so that the bottle cap in the bottle cap pulling claw 415 can pass through the capping hole 413 and be driven into the bottle.
[0037] It is worth noting that the capping module 4 further includes a second claw 43, which is located directly above the turntable 1 and directly below the capping hole 413. After the stopper 11 is rotated into place, the capping hole 413, the clamping gap of the second claw 43 and the stopper 11 are located on the same vertical line. After the turntable 1 drives the bottle located on the stopper 11 to rotate into the working range of the capping module 4, the second claw 43 is used to clamp the bottle so that the bottle does not shake, so that the upper end opening of the bottle faces the capping hole 413, so that the bottle cap can be accurately driven into the bottle mouth.
[0038] The embodiments of the present invention are described in detail above with reference to the accompanying drawings, but the present invention is not limited to the described embodiments. For those skilled in the art, various changes, modifications, substitutions and variations of these embodiments are made without departing from the principles and spirit of the present invention, and still fall within the scope of protection of the present invention.
Claims
1. A silicone rubber hard tube filling machine, characterized in that: It includes a turntable and a bottle loading module, a filling module and a capping module which are sequentially arranged around the turntable; the turntable is provided with a plurality of limit seats for placing bottles; The bottle loading module comprises a bottle conveying conveyor belt, the output end of which faces the turntable to convey the bottles into the limiting seats of the turntable; The filling module comprises a discharge pipe and a pump body, the pump body is connected to the discharge pipe, and the output end of the discharge pipe faces the turntable to fill the silicone glue into the bottle; The capping module comprises a bottle cap feeding mechanism and a capping rod, wherein the output end of the bottle cap feeding mechanism and the end of the capping rod are both facing the rotating disk so as to drive the bottle cap into the bottle.
2. The silicone rubber hard tube filling machine according to claim 1, characterized in that: A bottle turning module is also provided between the output end of the bottle feeding conveyor belt and the turntable, and the bottle turning module includes a sliding track, a base and a bottle turning limiter. The input end of the sliding track faces the output end of the bottle feeding conveyor belt, and the output end of the sliding track is provided with the base, and the base is rotatably connected with the bottle turning limiter, and the bottle turning limiter is located directly above the turntable. The bottle turning limiter is provided with a limiting groove matching the bottle, and the end of the limiting groove is an open structure, and the limiting groove faces the output end of the sliding track.
3. The silicone rubber hard tube filling machine according to claim 1, characterized in that: The bottle loading module further comprises partitions, which are evenly distributed on the bottle feeding conveyor belt, and all the partitions are parallel to each other to form a bottle limiting gap between two adjacent partitions.
4. The silicone rubber hard tube filling machine according to claim 1, characterized in that: The filling module also includes a first pulling claw, which is located directly above the turntable and directly below the output end of the discharge pipe. After the limit seat is rotated into place, the output end of the discharge pipe, the clamping gap of the first pulling claw and the limit seat are located on the same vertical line.
5. The silicone rubber hard tube filling machine according to claim 1, characterized in that: The bottle cap feeding mechanism comprises a cap loading platform, a bottle cap loading track and a bottle cap pulling claw, the cap loading platform is provided with a cap loading hole, the capping rod is located above the cap loading platform and the end of the capping rod faces the cap loading hole; The capping platform is also provided with a translation guide rail, and the bottle cap pulling claw is arranged on the translation guide rail so that the bottle cap pulling claw can translate between the bottle cap feeding track and the capping hole.
6. The silicone rubber hard tube filling machine according to claim 5, characterized in that: The cover installation module also includes a second pull claw, which is located directly above the turntable and directly below the cover installation hole. After the limit seat is rotated into place, the cover installation hole, the clamping gap of the second pull claw and the limit seat are located on the same vertical line.
Citation Information
Patent Citations
Silicone adhesive filling machine
CN216401865U