Felt feeding device for automobile glass production
By designing a felt feeding device for automotive glass production, the automated guidance and cutting of felt is achieved by using a servo motor and a rotating roller, the problem of inefficient felt cutting efficiency in the prior art is solved and the feeding efficiency of felt is improved.
Patent Information
- Application Number
- CN202422098035.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-28
- Publication Date
- 2025-06-20
- Estimated Expiration
- 2034-08-28
AI Technical Summary
Existing automotive glass production felts are inefficient in the cutting process, requiring manual pulling and positioning, resulting in poor cutting and feeding efficiency.
A felt feeding device for automobile glass production is designed, including an operating table, a rotating rod, a guide piece, a servo motor, a rotating roller, a pulling rod, a tensile spring and a cutting machine. The servo motor drives the rotating roller to drive the felt fabric to pull and cut, and realizes automatic feeding.
Through the automated felt guidance and cutting process, the cutting and feeding efficiency of felt is significantly improved, the demand for manual operation is reduced, and the production efficiency is improved.
Smart Images

Figure CN223002463U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of felt production and processing, and particularly relates to a felt feeding device for automobile glass production. Background Technique
[0002] Automobile glass felt is a felt-like material used for automobile glass, usually made of wool, polyester fiber or other synthetic fibers. It has the following characteristics and uses: sound insulation and heat insulation: Automobile glass felt can reduce the entry of external noise and heat into the vehicle, providing a quieter and more comfortable driving environment; scratch and wear resistance: The softness of the felt can prevent the glass surface from being scratched or worn; light shielding and privacy protection: Thicker felt can play a certain role in light shielding, increasing the privacy inside the vehicle; decorative effect: Some automobile glass felts have an attractive appearance, which can add a decorative effect to the interior of the automobile.
[0003] At present, when producing and processing automobile glass felt, the felt needs to be cut. However, the existing felt cutting effect is poor. It is necessary to manually pull the felt fabric, and then cut the felt fabric through a cutting machine. But in actual operation, it is also necessary to manually position the felt fabric, which leads to poor felt cutting efficiency, and thus poor felt feeding efficiency.
[0004] Therefore, a felt feeding device for automobile glass production is needed to solve the problem that the felt needs to be manually cut in the prior art. Content of the Utility Model
[0005] The purpose of the utility model is to provide a felt feeding device for automobile glass production to solve the problems put forward in the above background technique.
[0006] To achieve the above purpose, the utility model provides the following technical solution: A felt feeding device for automobile glass production, including an operating table. A rotating rod is rotatably installed at the top end of one side of the operating table. A number of guiding members are installed on the outer wall of the top end of one side of the operating table. A first servo motor is fixed at the bottom end of one side of the operating table. A rotating roller is fixed at the top end of the first servo motor. An installation plate is installed at the top end of one side of the operating table. A pulling rod is movably installed on one side of the installation plate. A tension spring is sleeved on the outer wall of the pulling rod. A limiting block is fixed at the top end of one side of the installation plate. A second servo motor is installed at the top end of the other side of the operating table. A driving pulley is fixed at the driving end of the second servo motor. An installation table is installed at the top end of the other side of the operating table.
[0007] It should be noted in the solution that a movable member is movably installed on the outer wall of the limiting block. An installation block is installed at the top end of the movable member. A guiding roller is installed at the bottom end of the other side of the installation block. The guiding roller corresponds to the rotating roller.
[0008] Further, it is worth noting that two corresponding first driving rollers and second driving rollers are rotatably installed on the inner wall of the installation table. One end of the first driving roller is fixed with a driven pulley, and a belt is tightly connected to the outer walls of the driving pulley and the driven pulley.
[0009] Furthermore, it should be noted that a discharge port is installed at the top of one side of the installation table.
[0010] As a preferred embodiment, a cutting machine is installed on one side of the operation table close to the first servo motor, and the driving end of the cutting machine is located at the center of the rotating roller and the guiding roller.
[0011] As a preferred embodiment, automotive felt fabric is provided on the outer wall of the rotating rod.
[0012] Compared with the prior art, a felt feeding device for automotive glass production provided by the present utility model has at least the following beneficial effects:
[0013] (1) Through the mutual cooperation of the first servo motor, the rotating roller, the pulling rod, and the guiding roller, the felt fabric can be guided and conveyed, and then the felt fabric can be easily cut by the cutting machine, so as to achieve the effect of rapid feeding.
[0014] (2) Through the mutual cooperation of the tension spring, the limiting block, the mounting block, and the pulling rod, the distance between the rotating roller and the guiding roller can be adjusted, and then the felt fabric of different specifications can be guided and conveyed. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 is the first perspective three-dimensional view of the present utility model;
[0016] Figure 2 is a partial structural view of the present utility model;
[0017] Figure 3 is the second perspective three-dimensional view of the present utility model;
[0018] Figure 4 is the third perspective three-dimensional view of the present utility model.
[0019] In the figure: 1, operation table; 2, rotating rod; 3, guiding member; 4, first servo motor; 5, rotating roller; 6, mounting plate; 7, pulling rod; 8, tension spring; 9, limiting block; 10, mounting block; 11, movable member; 12, guiding roller; 13, cutting machine; 14, second servo motor; 15, driving pulley; 16, installation table; 17, driven pulley; 18, belt; 19, first driving roller; 20, second driving roller; 21, discharge port. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0020] The following further describes the present utility model in conjunction with embodiments.
[0021] Please refer to Figures 1-4 , the present utility model provides a felt feeding device for automobile glass production, including an operating table 1. A rotating rod 2 is rotatably installed at the top end of one side of the operating table 1. A plurality of guiding members 3 are installed on the outer wall of the top end of one side of the operating table 1. A first servo motor 4 is fixed at the bottom end of one side of the operating table 1. A rotating roller 5 is fixed at the top end of the first servo motor 4. An installation plate 6 is installed on the top end of one side of the operating table 1. A pulling rod 7 is movably installed on one side of the installation plate 6. A tension spring 8 is sleeved on the outer wall of the pulling rod 7. A limiting block 9 is fixed at the top end of one side of the installation plate 6. A second servo motor 14 is installed at the top end of the other side of the operating table 1. A driving pulley 15 is fixed at the driving end of the second servo motor 14. An installation table 16 is installed at the top end of the other side of the operating table 1.
[0022] By winding the automobile felt fabric around the outer wall of the rotating rod 2, and at the same time pulling the other end of the automobile felt fabric to between the rotating roller 5 and the guiding roller 12, and then starting the first servo motor 4 to drive the rotating roller 5 to rotate, thereby driving the felt fabric to be pulled, and then the felt fabric can be cut by the cutting machine 13.
[0023] Further as Figure 2 shown, specifically, a movable member 11 is movably installed on the outer wall of the limiting block 9. An installation block 10 is installed at the top end of the movable member 11. A guiding roller 12 is installed at the bottom end of the other side of the installation block 10. The guiding roller 12 corresponds to the rotating roller 5.
[0024] When the felt fabric moves to the center between the rotating roller 5 and the guiding roller 12, the installation block 10 and the movable member 11 can be driven to be stressed. One end of the tension spring 8 is fixed to the movable member 11, thereby driving the pulling rod 7 to move, and then driving the guiding roller 12 to move, so as to adjust the size according to the width of the felt fabric.
[0025] Further as Figure 3 shown, specifically, two corresponding first driving rollers 19 and second driving rollers 20 are rotatably installed inside the installation table 16. A driven pulley 17 is fixed at one end of the first driving roller 19. A belt 18 is tightly connected to the outer walls of the driving pulley 15 and the driven pulley 17.
[0026] By starting the second servo motor 14, it is mainly possible to drive the driving pulley 15 to rotate, thereby enabling the driving pulley 15 to rotate, and further enabling the driven pulley 17 to rotate through the belt 18. Furthermore, it is possible to drive the first transmission roller 19 to move. When the first transmission roller 19 moves, it can further convey the felt fabric.
[0027] This solution has the following working process: First, guide the felt fabric on the outer wall of the rotating rod 2 through multiple rotating rods 2 in sequence. At the same time, pass the other end of the felt fabric through the center of the rotating roller 5 and the guiding roller 12. Then, start the first servo motor 4 to drive the rotating roller 5 to rotate, thereby enabling the felt fabric to move. At the same time, in order to improve the tightness between the rotating roller 5 and the guiding roller 12, the guiding roller 12 can be driven to perform a limiting movement through the action of the tension spring 8, and then the gap between the rotating roller 5 and the guiding roller 12 can be adjusted, so as to convey felt fabrics of different specifications. At the same time, start the cutting machine 13 to cut the conveyed felt fabric, thereby improving the practicality of cutting and feeding the felt fabric.
[0028] According to the above working process, it can be seen that by passing one end of the felt fabric through the centers of the first transmission roller 19 and the second transmission roller 20, and then starting the second servo motor 14, it is possible to drive the driving pulley 15 to rotate, and thus drive the driven pulley 17 to rotate through the belt 18. When the driven pulley 17 rotates, it can drive the first transmission roller 19 to rotate, thereby realizing the conveyance of the felt fabric. At the same time, the felt fabric can be discharged through the discharge port 21.
[0029] Furthermore, as Figure 1 、 Figure 2 and Figure 4 shown, it is specifically noted that a discharge port 21 is installed at the top of one side of the mounting table 16.
[0030] Furthermore, as Figure 1 、 Figure 2 、 Figure 3 and Figure 4 shown, it is specifically noted that a cutting machine 13 is installed on one side of the operating table 1 close to the first servo motor 4, and the driving end of the cutting machine 13 is located at the center of the rotating roller 5 and the guiding roller 12.
[0031] The cutting machine 13 can mainly realize automatic cutting of the felt fabric, thereby improving the feeding effect of the felt fabric.
[0032] Furthermore, as Figure 1 、 Figure 2As shown, it is worth specifically noting that the outer wall of the rotating rod 2 is provided with automotive felt fabric.
[0033] In summary: By winding the automotive felt fabric around the outer wall of the rotating rod 2, and at the same time pulling the other end of the automotive felt fabric to between the rotating roller 5 and the guiding roller 12, then starting the first servo motor 4 to drive the rotating roller 5 to rotate, thereby driving the felt fabric to be pulled, and then the felt fabric can be cut by the cutting machine 13.
[0034] The first servo motor 4, the cutting machine 13 and the second servo motor 14 can be purchased on the market. The first servo motor 4, the cutting machine 13 and the second servo motor 14 are equipped with power supplies, which are mature technologies in this field and have been fully disclosed, so they will not be repeated in the specification.
Claims
1. A felt feeding device for automobile glass production, comprising an operating table (1), characterized in that: A rotating rod (2) is rotatably mounted on the top of one side of the operating platform (1); a plurality of guide members (3) are mounted on the outer wall of one side of the top of the operating platform (1); a first servo motor (4) is fixed on one side of the bottom of the operating platform (1); a rotating roller (5) is fixed on the top of the first servo motor (4); a mounting plate (6) is mounted on one side of the top of the operating platform (1); a pulling rod (7) is movably mounted on one side of the mounting plate (6); a tension spring (8) is sleeved on the outer wall of the pulling rod (7); a limiting block (9) is fixed on one side of the top of the mounting plate (6); a second servo motor (14) is mounted on the top of the other side of the operating platform (1); a driving pulley (15) is fixed on the driving end of the second servo motor (14); and a mounting platform (16) is mounted on the top of the other side of the operating platform (1).
2. A felt feeding device for automobile glass production according to claim 1, characterized in that: A movable part (11) is movably mounted on the outer wall of the limit block (9); a mounting block (10) is mounted on the top of the movable part (11); a guide roller (12) is mounted on the bottom of the other side of the mounting block (10); and the guide roller (12) corresponds to the rotating roller (5).
3. A felt feeding device for automobile glass production according to claim 1, characterized in that: Two corresponding first transmission rollers (19) and a second transmission roller (20) are rotatably mounted on the inner wall of the mounting platform (16); a driven pulley (17) is fixed to one end of the first transmission roller (19); and a belt (18) is tightly connected between the outer walls of the driving pulley (15) and the driven pulley (17).
4. A felt feeding device for automobile glass production according to claim 1, characterized in that: A material discharge port (21) is installed at the top end of one side of the installation platform (16).
5. A felt feeding device for automobile glass production according to claim 1, characterized in that: A cutting machine (13) is installed on one side of the operating table (1) close to the first servo motor (4), and the driving end of the cutting machine (13) is located at the center of the rotating roller (5) and the guide roller (12).
6. A felt feeding device for automobile glass production according to claim 1, characterized in that: The outer wall of the rotating rod (2) is provided with automobile felt fabric.