Glass wool veneering equipment
By designing a glass wool veneer equipment containing upper and lower surfaces and side coating components, the problem that existing equipment can only veneer the upper end face of the glass wool is solved, and effective veneering of the upper and lower surfaces and sides of the glass wool is achieved, improving the overall performance and service life of the glass wool.
Patent Information
- Application Number
- CN202510297650.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-13
- Publication Date
- 2025-05-27
AI Technical Summary
Existing glass wool veneer equipment can only be veneered on the upper end of the glass wool, and cannot effectively protect its sides, resulting in the side being prone to moisture.
A glass wool veneer equipment is designed, including a workbench, an operating rack, an upper end surface glue coating assembly and a side glue coating assembly. The upper and lower surface veneer of the glass wool is realized through a rotating device and an adsorption unit, and the side veneer is realized through an unwinding and winding device.
It realizes effective veneering on the upper and lower surfaces and sides of the glass wool, ensuring the improvement of the overall performance and service life of the glass wool.
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Figure CN120039023A_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of glass wool processing, and particularly relates to a glass wool laminating device. Background Art
[0002] Glass wool laminating is a process for enhancing the performance and appearance of glass wool. The following is a detailed introduction to glass wool laminating:
[0003] Preventing water vapor penetration: Glass wool itself has a certain water absorption, and the penetration of water vapor will affect its heat insulation, sound absorption and other properties, and may shorten its service life. By attaching a moisture-proof laminate, such as an aluminum foil or a polypropylene (PVC) laminate, to the surface of the glass wool, water vapor infiltration can be effectively prevented, the glass wool can be kept dry, and its performance can be ensured to be stable.
[0004] In the glass wool laminating mechanism of the Chinese patent with the publication number CN 222329253 U3, a first conveyor line and a second conveyor line are arranged at intervals along the first direction; a first pressing roller and a second pressing roller are arranged at intervals along the second direction, and both the first pressing roller and the second pressing roller are arranged between the first conveyor line and the second conveyor line; a distance adjusting device, the distance adjusting device includes a first bracket, a first slider and a driving component, the first bracket is arranged on the first conveyor line and the second conveyor line, the first bracket has two first chutes symmetrically arranged along the defined axis of symmetry, each of the first chutes has the first slider moving along its height direction, the second pressing roller is rotatably connected to the two first sliders, and the driving component is connected to the two first sliders;
[0005] However, the following problems exist in the use of the above device:
[0006] It can only laminate the upper end surface of the glass wool. However, in the use of some glass wool, its side surface is also prone to getting damp. In order to protect the side surface of the glass wool, it is necessary to laminate the side surface of the glass wool. Therefore, the present application proposes a glass wool laminating device that can perform laminating work on the upper end surface and the side surface of the glass wool. Summary of the Invention
[0007] The purpose of the present invention is to provide a glass wool laminating device to solve the problems raised in the above background art.
[0008] To achieve the above purpose, the present invention provides the following technical solution. A glass wool laminating device includes a workbench, an operation frame, an upper end surface gluing component, and a side surface gluing component. A glass wool adsorption unit and a rotating device are arranged in the operation frame. The rotating device can drive the glass wool adsorption unit to rotate. The glass wool adsorption unit is used to adsorb and release the glass wool body;
[0009] The upper surface gluing component is arranged on the workbench and is used for applying glue to the upper surface of the glass wool body;
[0010] On the upper side of the workbench, a side gluing component is arranged, and the side gluing component is used for applying glue to the outer surface of the glass wool body;
[0011] A unwinding device and a winding device are arranged on the workbench. The unwinding device is wound with side stickers. The side stickers include a base film and a side film, and the base film is spirally wound in the winding device.
[0012] Preferably, an upper sticker transfer unit and a feeding unit are arranged on the workbench. A first upper sticker adsorption unit, a sticker pressing head and a lifting device are arranged on the workbench. The first upper sticker adsorption unit is arranged on the sticker pressing head and is used for sucking and releasing the upper sticker body, and the lifting device is used for driving the sticker pressing head to move up and down.
[0013] Preferably, the upper sticker transfer unit includes a transfer plate, a transfer driving motor, a driving motor bracket and a telescopic rod. At least two second upper sticker adsorption units are arranged on the transfer plate, and two of the second upper sticker adsorption units are respectively located at both ends of the transfer plate.
[0014] Preferably, the transfer driving motor can drive the transfer plate to rotate. The transfer driving motor is installed on the driving motor bracket, and the telescopic rod is used for driving the driving motor bracket to move up and down.
[0015] Preferably, the driving motor bracket includes a guide plate and an annular frame. The annular frame is arranged on the transfer plate, and the annular frame is rotatably connected with the guide plate. The guide plate is installed on the driving motor bracket.
[0016] Preferably, the upper sticker transfer unit has at least two states including a transfer state and an avoidance state. When the upper sticker transfer unit is in the transfer state, at least one of the second upper sticker adsorption units is aligned with the sticker pressing head.
[0017] Preferably, the feeding unit includes a guide tank, an installation groove, a material distributing member and a power motor. The installation groove is arranged in the guide tank, the material distributing member is arranged at the position where the installation groove is located, the material distributing member includes a plurality of material distributing teeth, and the power motor is used for driving the material distributing member to rotate.
[0018] Preferably, a plurality of guiding components and pressing components are arranged on the workbench. The guiding component includes two guiding wheels and a support frame. The two guiding wheels are respectively located on both sides of the side sticker, and the guiding wheels are inserted into the support frame.
[0019] Preferably, the pressing component includes a pressing wheel, an installation frame, a guiding groove and a push-pull plate. The pressing wheel is arranged in the installation frame, and a guiding groove is arranged in the installation frame. The pressing wheel is slidably connected with the guiding groove.
[0020] Preferably, the pressing wheel abuts against the push-pull plate, and a spring is provided between the push-pull plate and the mounting frame, one end of the spring is connected to the push-pull plate, and the other end of the spring is connected to the mounting frame.
[0021] Compared with the prior art, the present invention has the following beneficial effects:
[0022] 1. The upper veneer bodies of the present invention are stacked layer by layer and placed inside the guide tank. The power motor can drive the dividing piece to rotate. The dividing teeth on the dividing piece separate the stacked upper veneer bodies during the rotation and push one of the upper veneer bodies downward. After the upper veneer body moves away from the dividing teeth, it moves along the inner wall of the guide tank and falls into one of the second upper veneer adsorption units on the transfer plate. After being sucked by the second upper veneer adsorption unit, it is relatively fixed to the transfer plate. The second upper veneer adsorption unit aligned with the veneer pressure head has an upper veneer body adsorbed on it. In conjunction with the telescopic rod and the first upper veneer adsorption unit, the above-mentioned upper veneer body can be transferred to the first upper veneer adsorption unit, thereby completing the automatic loading of the upper veneer body.
[0023] 2. The unwinding device of the present invention can release the side sticker wrapped inside it, and the winding device can reel in the separated base film. In this way, the unwinding device and the winding device cooperate with each other to enable the side sticker to move from the unwinding device to the winding device. During the movement, it will pass through the glass wool body that has been glued by the side gluing assembly. The side film in the side sticker will be adhered to the outer surface of the glass wool body under the action of glue, thereby completing the side veneer work of the glass wool body. BRIEF DESCRIPTION OF THE DRAWINGS
[0024] Figure 1 This is one of the structural schematic diagrams of the glass wool veneer equipment in the present invention.
[0025] Figure 2 This is the second structural schematic diagram of the glass wool veneer equipment in the present invention.
[0026] Figure 3 This is the third structural schematic diagram of the glass wool veneer equipment in the present invention.
[0027] Figure 4 It is a structural schematic diagram of the feeding unit in the present invention.
[0028] Figure 5 It is a schematic structural diagram of the upper veneer transfer unit in the present invention.
[0029] Figure 6 It is a structural schematic diagram of the guide assembly in the present invention.
[0030] Figure 7 It is a schematic diagram of the structure of the pressing component in the present invention.
[0031] In the figure: 1. workbench; 2. operating frame; 3. glass wool body; 4. first upper veneer adsorption unit; 5. upper veneer body; 6. second upper veneer adsorption unit; 7. upper veneer transfer unit; 701. transfer plate; 702. transfer drive motor; 703. drive motor bracket; 704. telescopic rod; 8. feeding unit; 801. guide tank; 802. mounting groove; 803. material dividing piece; 9. glass wool adsorption unit; 10. side sticker; 1001. base film; 1002. side film; 11. unwinding device; 12. winding device; 13. guide assembly; 1301. guide wheel; 1302. support frame; 14. pressing assembly; 1401. pressing wheel; 1402. mounting frame; 1403. guide groove; 15. veneer pressure head; 16. lifting device; 17. upper end surface gluing assembly; 18. side gluing assembly. DETAILED DESCRIPTION
[0032] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0033] Reference Figures 1-7 A glass wool veneer device comprises a workbench 1, an operating frame 2, an upper end surface glue coating component 17, and a side surface glue coating component 18. A glass wool adsorption unit 9 and a rotating device are arranged in the operating frame 2. The rotating device can drive the glass wool adsorption unit 9 to rotate. The glass wool adsorption unit 9 is used to adsorb and release the glass wool body 3 that needs to be processed.
[0034] The upper end surface glue coating component 17 is set on the workbench 1, and the upper end surface glue coating component 17 is used to apply glue to the upper surface of the glass wool body 3. It should be noted that when the glass wool adsorption unit 9 absorbs the glass wool body 3, the upper end surface glue coating component 17 is started, and the first glue coating head therein moves toward the area where the glass wool body 3 is located, and finally the first glue coating head reaches the upper end of the glass wool body 3. The movement of the first glue coating head above the glass wool body 3 cooperates with the rotating device to apply glue to the upper surface of the glass wool body 3, and then the upper veneer body 5 is attached to the upper surface of the glass wool body 3.
[0035] In order to achieve the purpose of laminating the upper veneer body 5 on the upper surface of the glass wool body 3, a first upper veneer adsorption unit 4, a veneer press head 15, and a lifting device 16 are provided on the workbench 1. The first upper veneer adsorption unit 4 is arranged on the veneer press head 15. The first upper veneer adsorption unit 4 is used to suck and release the upper veneer body 5. The lifting device 16 is used to drive the veneer press head 15 to move up and down.
[0036] After the glue application assembly 17 applies glue to the upper surface of the glass wool body 3 at the upper end face, the lifting device 16 is started. The lifting device 16 drives the veneer pressing head 15 and the first upper veneer adsorption unit 4 to move downward until the upper veneer body 5 adsorbed by the first upper veneer adsorption unit 4 is pressed on the upper surface of the glass wool body 3, completing the process of veneering the upper surface of the glass wool body 3.
[0037] In order to automatically feed the upper veneer body 5 to the first upper veneer adsorption unit 4, an upper veneer transfer unit 7 and a feeding unit 8 are provided on the workbench 1.
[0038] Specifically, the upper veneer transfer unit 7 includes a transfer plate 701, a transfer drive motor 702, a drive motor bracket 703, and a telescopic rod 704. At least two second upper veneer adsorption units 6 are provided on the transfer plate 701. Two of the second upper veneer adsorption units 6 are respectively located at both ends of the transfer plate 701. The transfer drive motor 702 can drive the transfer plate 701 to rotate. The transfer drive motor 702 is installed on the drive motor bracket 703. Specifically, the drive motor bracket 703 includes a guide plate and an annular frame. The annular frame is provided on the transfer plate 701. The annular frame is rotatably connected to the guide plate. The guide plate is installed on the drive motor bracket 703. The guide plate and the annular frame provide support and guidance for the rotation of the transfer plate 701. The telescopic rod 704 is used to drive the drive motor bracket 703 to move up and down.
[0039] The upper veneer transfer unit 7 has at least two states including a transfer state and an avoidance state. When the upper veneer transfer unit 7 is in the transfer state, at least one of the second upper veneer adsorption units 6 is aligned with the veneer pressing head 15. The second upper veneer adsorption unit 6 aligned with the veneer pressing head 15 adsorbs an upper veneer body 5 thereon. Cooperating with the telescopic rod 704 and the first upper veneer adsorption unit 4, the above upper veneer body 5 can be transferred to the first upper veneer adsorption unit 4.
[0040] More specifically, the feeding unit 8 includes a guide tank 801, an installation groove 802, a material dividing member 803, and a power motor. The installation groove 802 is provided in the guide tank 801. The material dividing member 803 is provided at the position where the installation groove 802 is located. The material dividing member 803 includes a plurality of material dividing teeth. The power motor is used to drive the material dividing member 803 to rotate.
[0041] The upper veneer body is stacked in five layers inside the guiding tank 801. The power motor can drive the material distributing member 803 to rotate. During the rotation, the material distributing teeth on the material distributing member 803 separate the stacked upper veneer bodies 5 and push one of the upper veneer bodies 5 downward. After the upper veneer body 5 moves away from the material distributing teeth, it moves along the inner wall of the guiding tank 801 and falls onto one of the second upper veneer adsorption units 6 on the transfer plate 701. After being held by the second upper veneer adsorption unit 6, it is relatively fixed to the transfer plate 701.
[0042] However, some of the glass wool bodies 3 need to be veneered on the side. Therefore, a side gluing assembly 18 is provided on the upper side of the workbench 1. The side gluing assembly 18 is used to apply glue on the outer surface of the glass wool body 3.
[0043] After the side gluing assembly 18 is started, it can drive the second glue applicator head to move towards the side close to the glass wool body 3. Finally, the second glue applicator head reaches the side of the glass wool body 3. Cooperating with the rotating device that can drive the glass wool adsorption unit 9 to rotate, the glue can be applied on the side of the glass wool body 3.
[0044] In order to veneer the side of the glass wool body 3, a unwind device 11 and a rewind device 12 are provided on the workbench 1. The unwind device 11 is wound with a side sticker 10. The side sticker 10 includes a base film 1001 and a side film 1002. The base film 1001 is spirally wound inside the rewind device 12.
[0045] The unwind device 11 can unwind the side sticker 10 wound therein, and the rewind device 12 can wind up the separated base film 1001. In this way, the unwind device 11 and the rewind device 12 cooperate with each other, enabling the side sticker 10 to move from the unwind device 11 to the rewind device 12. During the movement, it will pass by the glass wool body 3 coated with glue by the side gluing assembly 18. The side film 1002 in the side sticker 10 will be pasted on the outer surface of the glass wool body 3 under the action of the glue, completing the work of veneering the side of the glass wool body 3.
[0046] In order to provide guidance for the movement of the side sticker 10 and enable the side sticker 10 to fit onto the outer surface of the glass wool body 3, a plurality of guiding assemblies 13 and pressing assemblies 14 are provided on the workbench 1. The guiding assembly 13 includes two guiding wheels 1301 and a support frame 1302. The two guiding wheels 1301 are respectively located on both sides of the side sticker 10, and the guiding wheels 1301 are inserted into the support frame 1302.
[0047] More specifically, the pressing assembly 14 includes a pressing wheel 1401, a mounting bracket 1402, a guiding groove 1403, and a push-pull plate. The pressing wheel 1401 is arranged inside the mounting bracket 1402, and the guiding groove 1403 is arranged inside the mounting bracket 1402. The pressing wheel 1401 is slidably connected to the guiding groove 1403. The pressing wheel 1401 abuts against the push-pull plate. A spring is arranged between the push-pull plate and the mounting bracket 1402. One end of the spring is connected to the push-pull plate, and the other end of the spring is connected to the mounting bracket 1402. The spring is used to apply a force to move the push-pull plate towards the side of the pressing wheel 1401. Under the action of the above force, the pressing wheel 1401 presses against one side of the glass wool body 3, so that the side film 1002 adheres to the outer surface of the glass wool body 3.
[0048] Working principle:
[0049] The upper facing body 5 is stacked layer by layer inside the guiding tank 801. The power motor can drive the material distributing member 803 to rotate. The material distributing teeth on the material distributing member 803 separate the stacked upper facing bodies 5 during rotation and push one of the upper facing bodies 5 downward. After the upper facing body 5 moves away from the material distributing teeth, it moves along the inner wall of the guiding tank 801 and falls onto one of the second upper facing adsorption units 6 on the transfer plate 701. After being adsorbed by the second upper facing adsorption unit 6, it is relatively fixed to the transfer plate 701. The second upper facing adsorption unit 6 aligned with the facing pressing head 15 adsorbs an upper facing body 5. Cooperating with the telescopic rod 704 and the first upper facing adsorption unit 4, the above upper facing body 5 can be transferred to the first upper facing adsorption unit 4, completing the automatic feeding work of the upper facing body 5.
[0050] The unwinding device 11 can unwind the side sticker 10 wound therein, and the winding device 12 can wind up the separated base film 1001. In this way, the unwinding device 11 and the winding device 12 cooperate with each other, enabling the side sticker 10 to move from the unwinding device 11 to the winding device 12. During the movement, it passes through the glass wool body 3 coated with glue by the side gluing assembly 18. The side film 1002 in the side sticker 10 will adhere to the outer surface of the glass wool body 3 under the action of the glue, completing the side facing work of the glass wool body 3.
[0051] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirits of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A glass wool veneer equipment, characterized in that: The invention comprises a workbench (1), an operating frame (2), an upper end surface glue coating component (17), and a side surface glue coating component (18); a glass wool adsorption unit (9) and a rotating device are arranged in the operating frame (2); the rotating device can drive the glass wool adsorption unit (9) to rotate; the glass wool adsorption unit (9) is used to adsorb and release the glass wool body (3); The upper end surface glue coating component (17) is arranged on the workbench (1), and the upper end surface glue coating component (17) is used to apply glue to the upper surface of the glass wool body (3); A side glue coating component (18) is arranged on the upper side of the workbench (1), and the side glue coating component (18) is used to apply glue on the outer surface of the glass wool body (3); The workbench (1) is provided with an unwinding device (11) and a rewinding device (12); a side sticker (10) is wound inside the unwinding device (11); the side sticker (10) comprises a base film (1001) and a side film (1002); the base film (1001) is spirally wound inside the rewinding device (12).
2. A glass wool veneer equipment according to claim 1, characterized in that: The workbench (1) is provided with an upper veneer transfer unit (7) and a loading unit (8); the workbench (1) is provided with a first upper veneer suction unit (4), a veneer pressing head (15), and a lifting device (16); the first upper veneer suction unit (4) is arranged on the veneer pressing head (15); the first upper veneer suction unit (4) is used to suck and release the upper veneer body (5); and the lifting device (16) is used to drive the veneer pressing head (15) to move up and down.
3. A glass wool veneer equipment according to claim 2, characterized in that: The upper surface transfer unit (7) comprises a transfer plate (701), a transfer drive motor (702), a drive motor bracket (703), and a telescopic rod (704). At least two second upper surface adsorption units (6) are arranged on the transfer plate (701), wherein the two second upper surface adsorption units (6) are respectively located at two ends of the transfer plate (701).
4. The glass wool veneer equipment according to claim 3, characterized in that: The transfer drive motor (702) can drive the transfer plate (701) to rotate. The transfer drive motor (702) is installed on the drive motor bracket (703). The telescopic rod (704) is used to drive the drive motor bracket (703) to move up and down.
5. The glass wool veneer equipment according to claim 4, characterized in that: The driving motor bracket (703) comprises a guide plate and an annular frame, wherein the annular frame is arranged on the transfer plate (701), the annular frame is rotatably connected to the guide plate, and the guide plate is mounted on the driving motor bracket (703).
6. The glass wool veneer equipment according to claim 5, characterized in that: The upper surface veneer transfer unit (7) has at least two states including a transfer state and an avoidance state. When the upper surface veneer transfer unit (7) is in the transfer state, at least one of the second upper surface veneer adsorption units (6) is aligned with the veneer pressing head (15).
7. The glass wool veneer equipment according to claim 2, characterized in that: The feeding unit (8) comprises a guide tank (801), a mounting groove (802), a material dividing piece (803), and a power motor. The mounting groove (802) is arranged in the guide tank (801), the material dividing piece (803) is arranged at the position where the mounting groove (802) is located, the material dividing piece (803) comprises a plurality of material dividing teeth, and the power motor is used to drive the material dividing piece (803) to rotate.
8. The glass wool veneer equipment according to claim 1, characterized in that: The workbench (1) is provided with a plurality of guide assemblies (13) and a pressing assembly (14); the guide assembly (13) comprises two guide wheels (1301) and a support frame (1302); the two guide wheels (1301) are respectively located on both sides of the side sticker (10), and the guide wheels (1301) are inserted into the support frame (1302).
9. The glass wool veneer equipment according to claim 8, characterized in that: The pressing assembly (14) comprises a pressing wheel (1401), a mounting frame (1402), a guide groove (1403), and a push-pull plate. The pressing wheel (1401) is arranged in the mounting frame (1402), and the mounting frame (1402) is provided with a guide groove (1403). The pressing wheel (1401) is slidably connected to the guide groove (1403).
10. The glass wool veneer equipment according to claim 9, characterized in that: The pressing wheel (1401) is pressed against the push-pull plate, and a spring is arranged between the push-pull plate and the mounting frame (1402), one end of the spring is connected to the push-pull plate, and the other end of the spring is connected to the mounting frame (1402).
Citation Information
Patent Citations
Glass wool veneering mechanism
CN222329253U