Glass cloth gluing machine
By introducing a combination design of an impregnation tank, tension adjustment component, impregnation guide component, and glue application component into the glass cloth gluing machine, the problem of dripping caused by uneven glue application is solved, achieving uniform coating on the glass cloth surface and environmental cleanliness.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-10
- Publication Date
- 2026-03-20
AI Technical Summary
Existing open-type dipping and coating machines cannot effectively coat the surface of glass cloth, resulting in glue dripping and contaminating the working environment.
The device employs a combination design of an impregnation tank, a tension adjustment component, an impregnation guide component, an adhesive application component, and a discharge guide component. The drive unit drives the adhesive application roller to evenly apply adhesive to the surface of the glass cloth, and gravity causes excess adhesive to fall back into the impregnation tank.
It effectively improves the uniform application of adhesive on the surface of glass cloth, reduces adhesive dripping, and enhances the cleanliness of the working environment.
Smart Images

Figure CN224010247U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to glass cloth processing technical field especially relates to a glass cloth gluing machine. BACKGROUND
[0002] Glass cloth is an excellent industrial material with very wide application. In the field of heat insulation, fire prevention and flame retardation, glass cloth can absorb a large amount of heat and effectively prevent flame penetration when exposed to flame, providing reliable safety protection for many places. In the electronics industry, glass cloth is used to manufacture copper-clad plates, which are key materials to ensure the stability and electrical performance of circuit boards. In addition, in the manufacturing of composite materials, glass cloth as a reinforcing material greatly improves the strength and toughness of composite materials.
[0003] In order to make glass fiber cloth have more good performance, it is necessary to glue on the glass cloth. At present, most enterprises use open type impregnation gluing machine to glue on the glass cloth. However, the current open type impregnation gluing machine has the problem that the glue on the surface of the glass cloth cannot be effectively coated, and the glue is easy to drop and pollute the working environment, and the gluing effect of the glass cloth is not good.
[0004] In the utility model with application number: 202121639184.8, a glass cloth gluing machine is disclosed, which comprises a feeding device, a gluing device and a receiving device. Although it solves the problem of poor gluing effect of the current open type impregnation gluing machine, it still has the problem that the glue on the surface of the glass cloth cannot be effectively coated, and the glue is easy to drop and pollute the working environment. UTILITY MODEL CONTENTS
[0005] Therefore, in view of the above problems, the utility model provides a glass cloth gluing machine, which solves the problem that the current open type impregnation gluing machine cannot effectively coat the glue on the surface of the glass cloth when in use, and the glue is easy to drop and pollute the working environment.
[0006] The technical scheme of the utility model is as follows:
[0007] A glass cloth gluing machine comprises an impregnation tank, a tension adjusting assembly, an impregnation guide assembly, a glue coating assembly and a discharging guide assembly. The impregnation tank is arranged on a base structure, and two installation plates are arranged on the top of the impregnation tank. The tension adjusting assembly, the impregnation guide assembly, the glue coating assembly and the discharging guide assembly are rotatably arranged between the two installation plates on the top of the impregnation tank. The impregnation guide assembly is arranged in cooperation with the impregnation tank, and is used for completing the gluing of the glass cloth in the impregnation tank.
[0008] The glue spreading assembly comprises a first glue spreading structure and a second glue spreading structure, the first glue spreading structure is arranged on one side of the second glue spreading structure, and a passing opening for the glass cloth to pass through is formed between the first glue spreading structure and the second glue spreading structure;
[0009] The first glue spreading structure and the second glue spreading structure each comprise a glue spreading roller and a driving member, the glue spreading roller is arranged between the mounting plates on the two sides of the top of the impregnation tank, the two ends of the glue spreading roller respectively penetrate the mounting plates and are rotationally connected with the mounting plates, the driving member is arranged on the mounting plate on one side of the top of the impregnation tank and is located outside the mounting plate, the driving member is connected with the end of one end of the glue spreading roller, and is used to drive the glue spreading roller; when the glass cloth passes through the passing opening, the glue spreading roller in the first glue spreading structure can be in contact with the inner side of the glass cloth, and the glue spreading roller in the second glue spreading structure can be in contact with the outer side of the glass cloth, so as to spread the glue on the surface of the glass cloth.
[0010] Preferably, the driving member comprises a driving motor, a driving wheel and a driven wheel, the driving motor is fixedly arranged on one side of the mounting plate, the driving wheel is fixedly arranged on the output shaft of the driving motor, and the driven wheel is fixedly arranged on the end of one end of the glue spreading roller; the driving wheel and the driven wheel are connected through a transmission belt.
[0011] Preferably, the driving motor is fixedly connected with the mounting plate through the mounting table, the mounting table is arranged on one side of the mounting plate and is fixedly connected with the mounting plate through bolts, and the driving motor is arranged on the mounting table and is fixedly connected with the mounting table through bolts.
[0012] Preferably, the impregnation guiding assembly comprises a first guiding structure, a second guiding structure and a third guiding structure, the first guiding structure is arranged on one side of the tension adjusting assembly and is located below the tension adjusting assembly, the second guiding structure is arranged in the impregnation tank, and the third guiding structure is arranged on one side of the first glue spreading structure and is located below the first glue spreading structure; the third guiding structure is located on the same horizontal line as the first guiding structure.
[0013] Preferably, the first guiding structure, the second guiding structure and the third guiding structure each comprise a guiding roller and a pair of bearing seats, wherein the pair of bearing seats in the first guiding structure and the third guiding structure are respectively arranged on the mounting plates on the two sides of the top of the impregnation tank and are fixedly connected with the mounting plates through bolts, the two ends of the guiding roller in the first guiding structure and the third guiding structure are respectively rotationally connected with the mounting plates through the bearing seats, and the pair of bearing seats in the second guiding structure are respectively arranged on the inner side walls of the impregnation tank and are fixedly connected with the inner side walls of the impregnation tank through bolts; the two ends of the guiding roller in the second guiding structure are respectively rotationally connected with the impregnation tank through the bearing seats.
[0014] Preferably, the discharging guide assembly comprises a discharging guide rotating roller and a pair of fixed seats, the discharging guide rotating roller is arranged on one side of the glue applying assembly and below the glue applying assembly, the discharging guide rotating roller is arranged between the pair of fixed seats and rotatably connected with the pair of fixed seats at two ends, and the pair of fixed seats are arranged on the mounting plate and fixedly connected with the mounting plate through bolts.
[0015] Preferably, the tension adjusting assembly comprises a rotating shaft and a pair of height adjusting structures, the pair of height adjusting structures are arranged on the mounting plates on two sides of the top of the dipping tank respectively, and the rotating shaft is arranged between the pair of height adjusting structures and rotatably connected with the pair of height adjusting structures at two ends.
[0016] Preferably, the height adjusting structure comprises a driving part, a sliding part and a fixed connecting plate, the sliding part comprises a sliding rail and a sliding block, the sliding rail is arranged on the inner side surface of the mounting plate and fixedly connected with the mounting plate through bolts, the sliding block is sleeved on the sliding rail and slidably connected with the sliding rail, the driving part is arranged on the mounting plate and connected with the sliding block through the fixed connecting plate for driving the sliding block, one end of the fixed connecting plate is detachably connected with the driving part, the other end is detachably connected with the sliding block through bolts, and the two ends of the rotating shaft are rotatably connected with the fixed connecting plates in the pair of height adjusting structures.
[0017] Preferably, the driving part comprises a driving cylinder and a cylinder support, the cylinder support is arranged on the inner side surface of the mounting plate and fixedly connected with the mounting plate through bolts, and the driving cylinder is fixedly arranged on the cylinder support, and the output end of the driving cylinder is detachably connected with one side of the fixed connecting plate through a connecting piece.
[0018] Preferably, the connecting piece comprises a connecting block and a pair of clamping blocks, the pair of clamping blocks are fixedly arranged on two sides of the connecting block respectively, one end of one of the clamping blocks is fixedly connected with the output end of the driving cylinder, the fixed connecting plate is provided with a clamping groove matched with the other clamping block, the clamping block can be clamped in the clamping groove, the fixed connecting plate is provided with a connecting groove communicated with the clamping groove, and the connecting groove is matched with the connecting block.
[0019] Compared with the prior art, the utility model has the advantages that:
[0020] In use, the glass cloth passes through the tension adjusting assembly and the glue dipping guide assembly in sequence, and enters the glue dipping tank under the action of the glue dipping guide assembly to complete glue dipping, and the glass cloth after glue dipping enters the glue spreading assembly composed of the first glue spreading structure and the second glue spreading structure, when the glass cloth passes through the passing port, the glue spreading roller in the first glue spreading structure contacts the inner side of the glass cloth, the glue spreading roller in the second glue spreading structure contacts the outer side of the glass cloth, and the glue spreading roller is driven to rotate by the driving member, so that the uneven glue on the surface of the glass cloth is spread, and the glue is uniformly distributed on the surface of the glass cloth. In this process, the excess glue on the surface of the glass cloth is uniformly spread by the glue spreading assembly, and the excess glue on the surface of the glass cloth falls into the glue dipping tank under the action of gravity during spreading, so that the residual amount of the glue on the surface of the glass cloth is reduced, thereby effectively reducing the possibility of glue dripping and greatly improving the working environment. The problem that the current open-type glue dipping gluing machine cannot effectively spread the glue on the surface of the glass cloth and the glue is easy to drip and pollute the working environment during use is solved. BRIEF DESCRIPTION OF DRAWINGS
[0021] Figure 1 is a structure diagram of a glass cloth gluing machine according to an embodiment of the present application Figure 1 ;
[0022] Figure 2 is a structure diagram of a glass cloth gluing machine according to an embodiment of the present application Figure 2 ;
[0023] Figure 3 is a structure diagram of a glass cloth gluing machine according to an embodiment of the present application Figure 3 ;
[0024] Figure 4 is a partial enlarged structure diagram of position A in Figure 3 according to an embodiment of the present application;
[0025] Figure 5 is a partial enlarged structure diagram of position A in Figure 4 according to an embodiment of the present application;
[0026] Figure 6 is a sectional structure diagram of a glass cloth gluing machine according to an embodiment of the present application;
[0027] BRIEF DESCRIPTION OF DRAWINGS
[0028] 10-Glue dipping tank, 100-Mounting plate, 101-Glue inlet, 102-Glue outlet, 103-Inclined surface, 20-Tension adjustment assembly, 200-Rotating shaft, 201-Height adjustment structure, 202-Drive unit, 203-Sliding unit, 204-Fixed connecting plate, 205-Slide rail, 206-Slider, 207-Drive cylinder, 208-Cylinder bracket, 209-Connector, 210-Connecting block, 211-Snap-fit block, 212-Snap-fit groove, 213-Connecting groove, 30-Glue dipping guide assembly, 300 - First guide structure, 301 - Second guide structure, 302 - Third guide structure, 303 - Guide roller, 304 - Bearing housing, 40 - Glue application assembly, 400 - First glue application structure, 401 - Second glue application structure, 402 - Through port, 403 - Glue application roller, 404 - Drive component, 405 - Drive motor, 406 - Drive wheel, 407 - Driven wheel, 408 - Transmission belt, 409 - Mounting platform, 50 - Discharge guide assembly, 500 - Discharge guide rotating roller, 501 - Fixed base. Detailed Implementation
[0029] The embodiments of this utility model will now be described in detail with reference to the accompanying drawings.
[0030] Example:
[0031] like Figures 1 to 2 As shown, in order to solve the above problems, this embodiment discloses a glass cloth gluing machine, including a glue-impregnation tank 10, a tension adjustment component 20, a glue-impregnation guide component 30, a glue application component 40, and a discharge guide component 50. The glue-impregnation tank 10 is set on a base structure, and mounting plates 100 are provided on both sides of the top of the glue-impregnation tank 10. The tension adjustment component 20, the glue-impregnation guide component 30, the glue application component 40, and the discharge guide component 50 are rotatably set between the mounting plates 100 on both sides of the top of the glue-impregnation tank 10. The glue-impregnation guide component 30 is configured to cooperate with the glue-impregnation tank 10 to enable the glass cloth to be glued in the glue-impregnation tank 10.
[0032] The adhesive application assembly 40 includes a first adhesive application structure 400 and a second adhesive application structure 401. The first adhesive application structure 400 is disposed on one side of the second adhesive application structure 401, and there is a passage 402 between the first adhesive application structure 400 and the second adhesive application structure 401 for the glass cloth to pass through.
[0033] The first glue applying structure 400 and the second glue applying structure 401 each include a glue applying roller 403 and a driving member 404. The glue applying roller 403 is arranged between the mounting plates 100 on both sides of the top of the glue tank 10, penetrates through the mounting plates 100 at both ends, and is rotationally connected with the mounting plates 100. The driving member 404 is arranged on the mounting plate 100 on one side of the top of the glue tank 10 and is located outside the mounting plate 100. The driving member 404 is connected with the end of one end of the glue applying roller 403 and is used to drive the glue applying roller 403. When the glass cloth passes through the passing port 402, the glue applying roller 403 in the first glue applying structure 400 can contact the inner side of the glass cloth, and the glue applying roller 403 in the second glue applying structure 401 can contact the outer side of the glass cloth, so as to apply glue to the surface of the glass cloth.
[0034] In use, the glass cloth passes through the tension adjusting assembly 20 and the glue dipping guiding assembly 30 in sequence, enters the glue tank 10 under the action of the glue dipping guiding assembly 30, and completes glue dipping. The glass cloth after glue dipping enters the glue applying assembly 40 composed of the first glue applying structure 400 and the second glue applying structure 401. When the glass cloth passes through the passing port 402, the glue applying roller 403 in the first glue applying structure 400 contacts the inner side of the glass cloth, and the glue applying roller 403 in the second glue applying structure 401 contacts the outer side of the glass cloth. The glue applying roller 403 is driven to rotate by the driving member 404, so as to apply the uneven glue on the surface of the glass cloth and make the glue uniformly distributed on the surface of the glass cloth. In this process, the excess glue on the surface of the glass cloth is uniformly applied by the glue applying assembly 40. The excess glue on the surface of the glass cloth falls into the glue tank 10 under the action of gravity during the application, so as to reduce the residual amount of the glue on the surface of the glass cloth, effectively reduce the possibility of glue dripping, and greatly improve the working environment. The problem that the current open-type glue dipping gluing machine cannot effectively apply glue to the surface of the glass cloth and the glue easily drips to pollute the working environment during use is solved.
[0035] It should be noted that the base structure includes but is not limited to a flat ground or a mounting platform.
[0036] As shown in Figure 2 In order to facilitate the glass cloth to stably pass through the glue applying assembly 40, the embodiment is modified on the basis of the above embodiment. The difference from the above embodiment is that the driving member 404 includes a driving motor 405, a driving wheel 406, and a driven wheel 407. The driving motor 405 is fixedly arranged on one side of the mounting plate 100. The driving wheel 406 is fixedly arranged on the output shaft of the driving motor 405. The driven wheel 407 is fixedly arranged on the end of one end of the glue applying roller 403. The driving wheel 406 and the driven wheel 407 are connected in transmission through a transmission belt 408.
[0037] In use, the driving motor 405 is stably fixed on one side of the mounting plate 100 through the mounting table 409, the mounting table 409 is connected with the mounting plate 100 and the driving motor 405 through bolts, and the firmness of the connection is ensured. When the driving motor 405 operates, the output shaft drives the driving wheel 406 to rotate synchronously. The transmission between the driving wheel 406 and the driven wheel 407 is realized through the transmission belt 408, the driven wheel 407 is fixed at the end of one end of the glue spreading roller 403, and then the power of the driving motor 405 is transmitted to the glue spreading roller 403, so as to drive the glue spreading roller 403 to rotate and realize the glue spreading operation on the surface of the glass cloth. Through the cooperation of the driving wheel 406, the driven wheel 407 and the transmission belt 408, the power can be stably transmitted to the glue spreading roller 403, and the rotation speed and stability of the glue spreading roller 403 are ensured.
[0038] In the embodiment, the driving motor 405 is fixedly connected with the mounting plate 100 through the mounting table 409, the mounting table 409 is arranged on one side of the mounting plate 100 and fixedly connected with the mounting plate 100 through bolts, and the driving motor 405 is arranged on the mounting table 409 and fixedly connected with the mounting table 409 through bolts. The bolt connection between the driving motor 405 and the mounting table 409 facilitates the installation and maintenance of the driving motor 405, and reduces the equipment maintenance cost and time.
[0039] As shown in Figures 2 to 3 In order to facilitate the gluing of the glass cloth, the embodiment is changed on the basis of the above embodiment, and the difference from the above embodiment is that the impregnation guiding assembly 30 comprises a first guiding structure 300, a second guiding structure 301 and a third guiding structure 302. The first guiding structure 300 is arranged on one side of the tension adjusting assembly 20 and below the tension adjusting assembly 20, the second guiding structure 301 is arranged in the impregnation tank 10, the third guiding structure 302 is arranged on one side of the first glue spreading structure 400 and below the first glue spreading structure 400, and the third guiding structure 302 is located on the same horizontal line as the first guiding structure 300.
[0040] The first guide structure 300, the second guide structure 301 and the third guide structure 302 each include a guide roller 303 and a pair of bearing seats 304, wherein the pair of bearing seats 304 in the first guide structure 300 and the third guide structure 302 are respectively arranged on the mounting plate 100 on both sides of the top of the impregnation tank 10 and are fixedly connected with the mounting plate 100 by bolts, the two ends of the guide roller 303 in the first guide structure 300 and the third guide structure 302 are respectively rotatably connected with the mounting plate 100 by the bearing seats 304, and the pair of bearing seats 304 in the second guide structure 301 are respectively arranged on the inner side wall of the impregnation tank 10 and are fixedly connected with the inner side wall of the impregnation tank 10 by bolts, and the two ends of the guide roller 303 in the second guide structure 301 are respectively rotatably connected with the impregnation tank 10 by the bearing seats 304.
[0041] In use, the glass cloth passes through the first guide structure 300, the second guide structure 301 and the third guide structure 302 in sequence, and is guided by the guide roller 303 to ensure that the glass cloth can smoothly enter the impregnation tank 10 for impregnation and then smoothly enter the glue coating assembly 40.
[0042] As shown in Figure 2 In order to facilitate the discharge of the glass cloth into the next drying process, the embodiment is modified on the basis of the above embodiment, and the difference from the above embodiment is that the discharge guide assembly 50 includes a discharge guide rotating roller 500 and a pair of fixed seats 501, the discharge guide rotating roller 500 is arranged on one side of the glue coating assembly 40 and below the glue coating assembly 40, the discharge guide rotating roller 500 is arranged between the pair of fixed seats 501 and rotatably connected with the pair of fixed seats 501 at both ends, and the pair of fixed seats 501 are arranged on the mounting plate 100 and fixedly connected with the mounting plate 100 by bolts.
[0043] The arrangement of the discharge guide assembly 50 ensures that the glass cloth after gluing can be smoothly discharged, avoids problems such as wrinkles and winding of the glass cloth during the discharging process, and ensures the integrity of the product.
[0044] As shown in Figures 3 to 5 In order to facilitate the adjustment of the tension of the glass cloth during the gluing process and ensure the gluing effect, the embodiment is modified on the basis of the above embodiment, and the difference from the above embodiment is that the tension adjusting assembly 20 includes a rotating shaft 200 and a pair of height adjusting structures 201, the pair of height adjusting structures 201 are respectively arranged on the mounting plate 100 on both sides of the top of the impregnation tank 10, and the rotating shaft 200 is arranged between the pair of height adjusting structures 201 and rotatably connected with the pair of height adjusting structures 201 at both ends.
[0045] The height adjusting structure 201 comprises a driving part 202, a sliding part 203 and a fixed connecting plate 204, the sliding part 203 comprises a sliding rail 205 and a sliding block 206, the sliding rail 205 is arranged on the inner side of the mounting plate 100 and is fixedly connected with the mounting plate 100 through bolts, the sliding block 206 is sleeved on the sliding rail 205 and is slidably connected with the sliding rail 205, the driving part 202 is arranged on the mounting plate 100 and is connected with the sliding block 206 through the fixed connecting plate 204, and the driving part 202 is used for driving the sliding block 206, one end of the fixed connecting plate 204 is detachably connected with the driving part 202, the other end of the fixed connecting plate 204 is detachably connected with the sliding block 206 through bolts, and the two ends of the rotating shaft 200 are rotatably connected with the fixed connecting plates 204 in a pair of height adjusting structures 201.
[0046] The driving part 202 comprises a driving cylinder 207 and a cylinder support 208, the cylinder support 208 is arranged on the inner side of the mounting plate 100 and is fixedly connected with the mounting plate 100 through bolts, and the driving cylinder 207 is fixedly arranged on the cylinder support 208, and the output end of the driving cylinder 207 is detachably connected with one side of the fixed connecting plate 204 through a connecting piece 209.
[0047] The connecting piece 209 comprises a connecting block 210 and a pair of clamping blocks 211, the clamping blocks 211 are fixedly arranged on the two sides of the connecting block 210 respectively, one end of one of the clamping blocks 211 is fixedly connected with the output end of the driving cylinder 207, the fixed connecting plate 204 is provided with a clamping groove 212 matched with the other clamping block 211, the clamping block 211 can be clamped in the clamping groove 212, the fixed connecting plate 204 is provided with a connecting groove 213 communicated with the clamping groove 212, and the connecting groove 213 is matched with the connecting block 210, and the connecting block 210 can be clamped in the connecting groove 213.
[0048] When it is necessary to adjust the tension of the glass cloth, the driving cylinder 207 works, the output end of the driving cylinder 207 is telescoped, the fixed connecting plate 204 is driven to move through the connecting piece 209, then the sliding block 206 slides on the sliding rail 205, the height of the rotating shaft 200 is adjusted, and the tension of the glass cloth is changed. The cooperation of the driving cylinder 207, the sliding rail 205 and the sliding block 206 makes the tension adjusting process accurate and efficient, and can quickly adapt to the needs of different production conditions. The detachable connection between the components facilitates the maintenance and maintenance of the equipment and reduces the equipment failure rate.
[0049] As shown in the drawings, Figure 6 In order to facilitate the glass cloth gluing, in the above embodiment, the glass cloth dipping tank 10 can adopt an open type glass cloth dipping tank 10 in the prior art, that is, the glass cloth dipping tank 10 is provided with an accommodating cavity penetrating through the top of the glass cloth dipping tank 10.
[0050] As a further preferred, the impregnation tank 10 is provided with at least one glue inlet 101 on one side of the tension adjusting assembly 20, the glue inlet 101 is located at the upper end of the impregnation tank 10 and communicates with the containing cavity, the impregnation tank 10 is provided with at least one glue outlet 102 on one side of the discharging guide assembly 50, the glue outlet 102 is located at the lower end of the impregnation tank 10 and communicates with the containing cavity, and the bottom of the containing cavity is provided with an inclined surface 103, the lowest part of the inclined surface 103 is matched with the glue outlet 102.
[0051] The glue can enter the containing cavity from the glue inlet 101 and flow out from the glue outlet 102, and the glue inlet 101, the glue outlet 102 and the inclined surface 103 can facilitate the flow of the glue in the impregnation tank 10, so as to better glue the glass cloth. The glue inlet 101 can be connected with a glue conveying device, and the glue outlet 102 can be connected with a glue recycling device.
[0052] The working principle of the utility model is as follows:
[0053] In use, the glass cloth passes through the tension adjusting assembly 20 and the impregnation guide assembly 30 in sequence and enters the impregnation tank 10 under the action of the impregnation guide assembly 30 to complete gluing, the glass cloth after gluing enters the glue spreading assembly 40 composed of the first glue spreading structure 400 and the second glue spreading structure 401, when the glass cloth passes through the through port 402, the glue spreading roller 403 in the first glue spreading structure 400 contacts the inner side of the glass cloth, the glue spreading roller 403 in the second glue spreading structure 401 contacts the outer side of the glass cloth, and the glue spreading roller 403 is driven to rotate by the driving member 404, so that the uneven glue on the surface of the glass cloth is spread, and the glue is uniformly distributed on the surface of the glass cloth. In this process, the excess glue on the surface of the glass cloth is uniformly spread by the glue spreading assembly 40, and the excess glue on the surface of the glass cloth will fall into the impregnation tank 10 under the action of gravity during spreading, thereby reducing the residual amount of the glue on the surface of the glass cloth, effectively reducing the possibility of glue dripping and greatly improving the working environment.
[0054] The above-described embodiments only express the specific implementation of the utility model, the description is more specific and detailed, but it cannot be understood as the limitation of the utility model patent scope. It should be pointed out that for ordinary skilled persons in the art, without departing from the concept of the utility model, a number of modifications and improvements can be made, which belong to the protection scope of the utility model.
Claims
1. A glass cloth gluing machine, characterized in that, The device includes a dipping tank (10), a tension adjusting assembly (20), a dipping guide assembly (30), an adhesive application assembly (40), and a discharge guide assembly (50). The dipping tank (10) is mounted on a base structure. Mounting plates (100) are provided on both sides of the top of the dipping tank (10). The tension adjusting assembly (20), the dipping guide assembly (30), the adhesive application assembly (40), and the discharge guide assembly (50) are rotatably mounted between the mounting plates (100) on both sides of the top of the dipping tank (10). The dipping guide assembly (30) is configured to cooperate with the dipping tank (10). The adhesive application assembly (40) includes a first adhesive application structure (400) and a second adhesive application structure (401). The first adhesive application structure (400) is disposed on one side of the second adhesive application structure (401), and there is a passage (402) between the first adhesive application structure (400) and the second adhesive application structure (401) for the glass cloth to pass through. Both the first glue application structure (400) and the second glue application structure (401) include a glue application roller (403) and a drive member (404). The glue application roller (403) is disposed between the mounting plates (100) on both sides of the top of the glue dipping tank (10). Both ends of the glue application roller (403) pass through the mounting plates (100) and are rotatably connected to the mounting plates (100). The drive member (404) is disposed on the mounting plate (100) on one side of the top of the glue dipping tank (10) and is located outside the mounting plate (100). The drive member (404) is connected to one end of the glue application roller (403) and is used to drive the glue application roller (403).
2. The glass cloth gluing machine according to claim 1, characterized in that, The driving component (404) includes a drive motor (405), a drive wheel (406), and a driven wheel (407). The drive motor (405) is fixedly mounted on one side of the mounting plate (100), the drive wheel (406) is fixedly mounted on the output shaft of the drive motor (405), and the driven wheel (407) is fixedly mounted on one end of the glue application roller (403). The drive wheel (406) and the driven wheel (407) are connected and driven by a transmission belt (408).
3. The glass cloth gluing machine according to claim 2, characterized in that, The drive motor (405) is fixedly connected to the mounting plate (100) via the mounting platform (409). The mounting platform (409) is located on one side of the mounting plate (100) and is fixedly connected to the mounting plate (100) by bolts. The drive motor (405) is located on the mounting platform (409) and is fixedly connected to the mounting platform (409) by bolts.
4. A glass cloth gluing machine according to claim 3, characterized in that, The glue-impregnation guide assembly (30) includes a first guide structure (300), a second guide structure (301), and a third guide structure (302). The first guide structure (300) is disposed on one side of the tension adjustment assembly (20) and below the tension adjustment assembly (20). The second guide structure (301) is disposed inside the glue-impregnation tank (10). The third guide structure (302) is disposed on one side of the first glue application structure (400) and below the first glue application structure (400). The third guide structure (302) and the first guide structure (300) are located on the same horizontal line.
5. A glass cloth gluing machine according to claim 4, characterized in that, The first guide structure (300), the second guide structure (301), and the third guide structure (302) each include a guide roller (303) and a pair of bearing seats (304). The pair of bearing seats (304) in the first guide structure (300) and the third guide structure (302) are respectively mounted on the mounting plates (100) on both sides of the top of the impregnation tank (10) and are fixedly connected to the mounting plates (100) by bolts. The two ends of the guide roller (303) in the first guide structure (300) and the third guide structure (302) are rotatably connected to the mounting plates (100) by the bearing seats (304). The pair of bearing seats (304) in the second guide structure (301) are respectively mounted on the inner side wall of the impregnation tank (10) and are fixedly connected to the inner side wall of the impregnation tank (10) by bolts. The two ends of the guide roller (303) in the second guide structure (301) are rotatably connected to the impregnation tank (10) by the bearing seats (304).
6. A glass cloth gluing machine according to claim 5, characterized in that, The discharge guide assembly (50) includes a discharge guide rotating roller (500) and a pair of fixed seats (501). The discharge guide rotating roller (500) is disposed on one side of the glue application assembly (40) and located below the glue application assembly (40). The discharge guide rotating roller (500) is disposed between the pair of fixed seats (501) and its two ends are rotatably connected to the pair of fixed seats (501) respectively. The pair of fixed seats (501) are disposed on the mounting plate (100) and are fixedly connected to the mounting plate (100) by bolts.
7. A glass cloth gluing machine according to claim 6, characterized in that, The tension adjustment assembly (20) includes a rotating shaft (200) and a pair of height adjustment structures (201). The pair of height adjustment structures (201) are respectively mounted on the mounting plates (100) on both sides of the top of the impregnation tank (10). The rotating shaft (200) is located between the pair of height adjustment structures (201) and its two ends are rotatably connected to the pair of height adjustment structures (201).
8. A glass cloth gluing machine according to claim 7, characterized in that, The height adjustment structure (201) includes a drive unit (202), a sliding unit (203), and a fixed connecting plate (204). The sliding unit (203) includes a slide rail (205) and a slider (206). The slide rail (205) is disposed on the inner side of the mounting plate (100) and is fixedly connected to the mounting plate (100) by bolts. The slider (206) is sleeved on the slide rail (205) and is slidably connected to the slide rail (205). The drive unit (202) is disposed on the mounting plate (100) and is connected to the slider (206) through the fixed connecting plate (204) for driving the slider (206). One end of the fixed connecting plate (204) is detachably connected to the drive unit (202), and the other end is detachably connected to the slider (206) by bolts. The two ends of the rotating shaft (200) are rotatably connected to the fixed connecting plates (204) in a pair of height adjustment structures (201).
9. A glass cloth gluing machine according to claim 8, characterized in that, The drive unit (202) includes a drive cylinder (207) and a cylinder bracket (208). The cylinder bracket (208) is disposed on the inner side of the mounting plate (100) and is fixedly connected to the mounting plate (100) by bolts. The drive cylinder (207) is fixedly disposed on the cylinder bracket (208). The output end of the drive cylinder (207) can be detachably connected to one side of the fixed connecting plate (204) through a connector (209).
10. A glass cloth gluing machine according to claim 9, characterized in that, The connector (209) includes a connecting block (210) and a pair of snap-fit blocks (211). The pair of snap-fit blocks (211) are fixedly disposed on both sides of the connecting block (210), and one end of one of the snap-fit blocks (211) is fixedly connected to the output end of the drive cylinder (207). The fixed connecting plate (204) is provided with a snap-fit groove (212) that cooperates with the other snap-fit block (211). The snap-fit block (211) can be snapped into the snap-fit groove (212). The fixed connecting plate (204) is provided with a connecting groove (213) that communicates with the snap-fit groove (212). The connecting groove (213) cooperates with the connecting block (210), and the connecting block (210) can be snapped into the connecting groove (213).
Citation Information
Patent Citations
Glass cloth gluing machine
CN215695334U