Glass fiber cotton compression packaging device

By designing a glass fiber cotton compression packaging device driven by hydraulic cylinders and motors, the problem of cumbersome and low efficiency of manual bagging in the prior art is solved, and automated bagging and compression processing is realized, and overall work efficiency is improved.

CN222921920UActive Publication Date: 2025-05-30TAIAN YISHA GLASS FIBER CO LTD
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Patent Information

Application Number
CN202421970178.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-15
Publication Date
2025-05-30
Estimated Expiration
2034-08-15

AI Technical Summary

Technical Problem

In the production of existing glass fiber cotton, manual bagging is complicated, low efficiency, and lacks automatic compression packaging devices.

Method used

A glass fiber cotton compression packaging device is designed, and the glass fiber cotton is compressed by a hydraulic cylinder driving pressure plate, and the compressed glass fiber cotton is rotated by a first motor to above the first through groove to make it fall into the packaging bag. The personnel only need to seal it.

Benefits of technology

It saves the operating time of manual bagging, improves the bagging efficiency, and performs compression processing during bagging, shortens the overall compression time and improves work efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a glass fiber cotton compression packing device, it relates to glass fiber cotton production equipment technical field, it includes compression subassembly and workbenches, compression subassembly includes a plurality of support legs, feed bin, feed pipe, cover, hydraulic cylinder and press plate, feed pipe is inclined, and the lower end side is communicated with the side wall of cover, and the press plate is connected with the feed bin. The feeding pipe and the cover body are arranged on the plurality of supporting legs; the hydraulic cylinder drives the pressing plate to compress glass fiber cotton, the first motor drives the compressed glass fiber cotton to rotate to the position above the first through groove, so that the glass fiber cotton falls into a packaging bag in the box body through the first through groove, and a worker pulls out the box body to seal the packaging bag. According to the glass fiber cotton bagging device, the operation of filling the glass fiber cotton into packaging bags by personnel is omitted, the glass fiber cotton can be compressed in the bagging process, the overall compression time is saved, and the overall working efficiency is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of glass fiber cotton production equipment, in particular to a glass fiber cotton compression and packaging device. Background Technique

[0002] Glass fiber cotton is an excellent inorganic non-metallic material. It is manufactured by processes such as high-temperature melting, drawing, winding, weaving, and cotton flocculation using glass balls as raw materials. Glass fiber is usually used as a reinforcing material, electrical insulation material, heat insulation material, and circuit board substrate in various fields of the national economy.

[0003] When producing glass fiber cotton, it needs to be compressed first and then bagged and packaged. The current main method is to use a compression device to compress it into a shape, and then manually put the compressed glass fiber cotton into a packaging bag. The manual bagging method is cumbersome and the bagging and packaging efficiency is slow. Therefore, it is very necessary to develop a glass fiber cotton compression and packaging device. Content of the Utility Model

[0004] In view of the above deficiencies of the prior art, the utility model provides a glass fiber cotton compression and packaging device. The hydraulic cylinder drives the pressure plate to compress the glass fiber cotton. The first motor drives the compressed glass fiber cotton to rotate above the first through groove, so that the glass fiber cotton falls into the packaging bag in the box through the first through groove. The operator can take out the box and seal the packaging bag, saving the operation of manually putting the glass fiber cotton into the packaging bag. During the bagging process, the glass fiber cotton can also be compressed, saving the overall compression time and improving the overall work efficiency.

[0005] To achieve the above objectives, the utility model is implemented through the following technical solutions: a glass fiber cotton compression packaging device, including a compression component and a workbench, the compression component includes multiple supporting legs, a feed bin, a feed pipe, a cover body, a hydraulic cylinder and a pressing plate, the feed pipe is tilted and the lower end is connected to the side wall of the cover body, the feed pipe and the cover body are arranged on multiple supporting legs, the feed bin is arranged on the top of the high end side of the feed pipe, a material shifting component is arranged in the feed pipe, the hydraulic cylinder is arranged on the top of the cover body, the telescopic end of the hydraulic cylinder passes through the top wall of the cover body and the end is connected to the pressing plate, a first motor is arranged at the center of the bottom of the workbench, and the output of the first motor One end passes through the workbench and is connected to the first rotating shaft at the end, a transmission rod is connected to the top of the first rotating shaft, and a pair of enclosures are connected to the two ends of the transmission rod, and the enclosures can be rotated to the bottom of the cover body, and a first through slot is provided on the workbench, and a pair of connecting rods are provided at the bottom of the workbench and on both sides of the first through slot, each of the connecting rods extends a certain distance to the outside of the workbench and is provided with a second through slot, and a pair of slide rails are provided at the bottom of the pair of connecting rods, and a movable plate with an opening in the center position is slidably provided on the pair of slide rails, and a plurality of groups of clamping components are provided on the upper surface of the movable plate, and a box body is provided on the lower surface, and the top of the box body and the side away from the first motor are opened.

[0006] Preferably, the material shifting assembly includes a second motor, a second rotating shaft and a plurality of material shifting plates, the second motor is arranged on the outer wall of the feed pipe, the output end of the second motor passes through the side wall of the feed pipe and is connected to the second rotating shaft, and the plurality of material shifting plates are arranged on the second rotating shaft.

[0007] Preferably, the clamping assemblies are in four groups and are evenly arranged on the upper surface of the movable plate.

[0008] Preferably, each group of the clamping assembly includes a vertical plate, a clamping cylinder and a clamping block, the vertical plate is vertically arranged on the upper surface of the movable plate, the clamping cylinder is arranged on the vertical plate with the telescopic end of the clamping cylinder facing downward, and the clamping block is arranged on the telescopic end of the clamping cylinder.

[0009] The utility model provides a glass fiber cotton compression packaging device, which has the following beneficial effects:

[0010] 1. The utility model compresses the glass fiber wool by driving the pressing plate through the hydraulic cylinder, and the first motor drives the compressed glass fiber wool to rotate to the top of the first through slot, so that the glass fiber wool falls into the packaging bag in the box through the first through slot, and the personnel can just draw out the box to seal the packaging bag, which saves the operation of putting the glass fiber wool into the packaging bag. The glass fiber wool can also be compressed during the bagging process, which saves the overall compression time and improves the overall work efficiency;

[0011] 2. When the compression cylinder of the present utility model is started, the telescopic end of the compression cylinder drives the connected pressing block to move vertically downward, so that the pressing block presses on the opening of the packaging bag, keeping the bag opening of the packaging bag in an open state, to ensure that the compressed glass fiber cotton can fall into the packaging bag. When the compression cylinder moves with the moving plate, the air supply pipe of the compression cylinder can pass through the second through groove opened on the connecting rod to ensure the air supply to the compression cylinder. BRIEF DESCRIPTION OF THE DRAWINGS

[0012] Figure 1 is a schematic structural diagram of the present utility model;

[0013] Figure 2 is a top view of the moving plate and the pressing assembly of the present utility model;

[0014] Figure 3 For the present utility model Figure 1 is an enlarged view of part A in.

[0015] In the figure: 1, workbench; 1-1, first through groove; 2, first motor; 3, first rotating shaft; 4, transmission rod; 5, enclosing plate; 6, support leg; 7, feed bin; 8, feed pipe; 9, cover body; 10, hydraulic cylinder; 11, pressing plate; 12, second rotating shaft; 13, material pushing plate; 14, connecting rod; 14-1, second through groove; 15, slide rail; 16, moving plate; 17, box body; 18, vertical plate; 19, compression cylinder; 20, pressing block. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0016] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.

[0017] As Figures 1 - 3As shown in the figure, a glass fiber cotton compression packaging device includes a compression component and a workbench 1. The compression component includes multiple support legs 6, a feed bin 7, a feed pipe 8, a cover 9, a hydraulic cylinder 10, and a pressing plate 11. The feed pipe 8 is inclined and its low-end side is connected to the side wall of the cover 9. The feed pipe 8 and the cover 9 are arranged on multiple support legs 6. The feed bin 7 is arranged at the top of the high-end side of the feed pipe 8. A material pushing component is arranged in the feed pipe 8. The hydraulic cylinder 10 is arranged on the top of the cover 9. The telescopic end of the hydraulic cylinder 10 penetrates through the top wall of the cover 9 and its end is connected to the pressing plate 11. A first motor 2 is arranged at the center position of the bottom of the workbench 1. The output end of the first motor 2 penetrates through the workbench 1 and its end is connected to a first rotating shaft 3. A transmission rod 4 is connected to the top of the first rotating shaft 3. A pair of enclosing plates 5 are connected to both ends of the transmission rod 4. The enclosing plates 5 can rotate to the lower part of the cover 9. A first through groove 1-1 is formed in the workbench 1. A pair of connecting rods 14 are arranged at the bottom of the workbench 1 and on both sides of the first through groove 1-1. Each connecting rod 14 extends outward from the workbench 1 for a certain distance and a second through groove 14-1 is formed therein. A pair of sliding rails 15 are arranged at the bottom of the pair of connecting rods 14. A moving plate 16 with an opening at the center position is slidably arranged on the pair of sliding rails 15. Multiple groups of pressing components are arranged on the upper surface of the moving plate 16, and a box body 17 is arranged on the lower surface of the moving plate 16. The top and the side away from the first motor 2 of the box body 17 are open; the material pushing component includes a second motor, a second rotating shaft 12, and multiple material pushing plates 13. The second motor is arranged on the outer wall of the feed pipe 8. The output end of the second motor penetrates through the side wall of the feed pipe 8 and is connected to the second rotating shaft 12. Multiple material pushing plates 13 are arranged on the second rotating shaft 12; the pressing components are four groups and are evenly arranged on the upper surface of the moving plate 16; each group of pressing components includes a vertical plate 18, a pressing cylinder 19, and a pressing block 20. The vertical plate 18 is vertically arranged on the upper surface of the moving plate 16. The pressing cylinder 19 is arranged on the vertical plate 18 and the telescopic end of the pressing cylinder 19 faces downward. The pressing block 20 is arranged on the telescopic end of the pressing cylinder 19.

[0018] The detailed connection means are well-known techniques in the art. The following mainly introduces the working principle and process, which are as follows:

[0019] In the present utility model, the first motor 2, the second motor, the hydraulic cylinder 10, and the pressing cylinder 19 are all connected to an external electronic control system through wires. The above devices and connection methods are all prior arts and will not be elaborated here.

[0020] According to the instruction manual appendix Figures 1 - 3It can be seen that when the present utility model is in use, the box body 17 is pulled out to the outside of the workbench 1, so that the box body 17 drives the moving plate 16 connected to the top to move in a pair of slide rails 15. After the box body 17 moves to the outside of the workbench 1, the bag opening of the packaging bag is opened and installed in the box body 17, and the bag opening of the packaging bag is pressed and fixed by a plurality of pressing components arranged on the upper surface of the moving plate 16. After the installation of the packaging bag is completed, the box body 17 is moved back to the lower part of the first through groove 1-1; the glass fiber cotton is conveyed into the feeding bin 7 by a conveying device (such as a conveyor belt), and the glass fiber cotton in the feeding bin 7 enters the cover body 9 and the surrounding plate 5 located below the cover body 9 through the inclined feeding pipe 8. The shape of the surrounding plate 5 matches the side plate of the cover body 9, and the feeding component in the feeding pipe 8 can control the feeding amount. The hydraulic cylinder 10 at the top of the cover body 9 is started, and the telescopic end of the hydraulic cylinder 10 drives the connected pressing plate 11 to move vertically downward to compress the glass fiber cotton in the cover body 9 and the surrounding plate 5. After compressing for a sufficient time, the hydraulic cylinder 10 drives the pressing plate 11 to move vertically upward back to the initial position, so that the thickness of the compressed glass fiber cotton does not exceed the height of the surrounding plate 5. The first motor 2 arranged at the bottom of the workbench 1 is started, the output end of the first motor 2 drives the connected first rotating shaft 3 to rotate, the first rotating shaft 3 drives the connected transmission rod 4 to rotate, and the transmission rod 4 drives a pair of surrounding plates 5 connected to both ends to rotate, so that the surrounding plates 5 on both sides rotate 180 degrees to exchange positions. The surrounding plate 5 originally on the right rotates to the lower part of the cover body 9 for further compression treatment, and the surrounding plate 5 originally on the left, which contains the compressed glass fiber cotton, rotates to the upper part of the first through groove 1-1, so that the compressed glass fiber cotton falls into the packaging bag in the box body 17 through the first through groove 11. At this time, the operator pulls out the box body 17, and the plurality of pressing components release the fixation of the bag opening of the packaging bag. The operator takes out the packaging bag from the opening side of the side wall of the box body 17, seals the bag opening of the packaging bag, and then replaces the new packaging bag for cyclic operation; the present utility model compresses the glass fiber cotton by driving the pressing plate 11 with the hydraulic cylinder 10, and the first motor 2 drives the compressed glass fiber cotton to rotate to the upper part of the first through groove 1-1, so that the glass fiber cotton falls into the packaging bag in the box body 17 through the first through groove 1-1. The operator pulls out the box body 17 to seal the packaging bag, which saves the operation of the operator loading the glass fiber cotton into the packaging bag, and the glass fiber cotton can also be compressed during the bagging process, saving the overall compression time and improving the overall work efficiency.

[0021] There is a possible implementation. When the output end of the second motor rotates, it drives the connected second rotating shaft 12 to rotate, and the second rotating shaft 12 drives a plurality of feeding plates 13 connected thereto to rotate, and the feeding plates 13 convey the glass fiber cotton in the feeding pipe 8.

[0022] One possible implementation is that there are four sets of pressing components, which are evenly arranged on the upper surface of the moving plate 16. The four sets of pressing components press and fix four positions at the opening of the packaging bag, so that the packaging bag remains in an open state.

[0023] One possible implementation is that when the pressing cylinder 19 is started, the telescopic end of the pressing cylinder 19 drives the connected pressing block 20 to move vertically downward, so that the pressing block 20 presses on the opening of the packaging bag, keeping the bag opening of the packaging bag open, to ensure that the compressed fiberglass cotton can fall into the packaging bag. When the pressing cylinder 19 moves with the moving plate 16, the air supply pipe of the pressing cylinder 19 can pass through the second through groove 14-1 opened on the connecting rod 14 to ensure the air supply to the pressing cylinder 19.

[0024] 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 principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A glass fiber wool compression packaging device, comprising a compression component and a workbench (1), characterized in that: The compression assembly comprises a plurality of supporting legs (6), a feed bin (7), a feed pipe (8), a cover body (9), a hydraulic cylinder (10) and a pressing plate (11); the feed pipe (8) is arranged obliquely and its lower end is connected to the side wall of the cover body (9); the feed pipe (8) and the cover body (9) are arranged on the plurality of supporting legs (6); the feed bin (7) is arranged at the top of the high end side of the feed pipe (8); a material shifting assembly is arranged in the feed pipe (8); the hydraulic cylinder (10) is arranged at the top of the cover body (9); the telescopic end of the hydraulic cylinder (10) passes through the top wall of the cover body (9) and the end is connected to the pressing plate (11); a first motor (2) is arranged at the center position of the bottom of the workbench (1); the output end of the first motor (2) passes through the workbench (1) and the end is connected to the first rotating shaft (3); the first rotating shaft (3) A transmission rod (4) is connected to the top, and a pair of enclosures (5) are connected to both ends of the transmission rod (4), and the enclosures (5) can be rotated to the bottom of the cover body (9). A first through slot (1-1) is provided on the workbench (1), and a pair of connecting rods (14) are provided at the bottom of the workbench (1) and on both sides of the first through slot (1-1), each of the connecting rods (14) extends a certain distance to the outside of the workbench (1) and is provided with a second through slot (14-1), a pair of slide rails (15) are provided at the bottom of the pair of connecting rods (14), and a movable plate (16) with an opening at a central position is slidably provided on the pair of slide rails (15), a plurality of groups of clamping components are provided on the upper surface of the movable plate (16), and a box body (17) is provided on the lower surface, and the top and the side away from the first motor (2) of the box body (17) are open.

2. A glass fiber wool compression packaging device according to claim 1, characterized in that: The material shifting assembly comprises a second motor, a second rotating shaft (12) and a plurality of material shifting plates (13); the second motor is arranged on the outer wall of the feed pipe (8); the output end of the second motor passes through the side wall of the feed pipe (8) and is connected to the second rotating shaft (12); and the plurality of material shifting plates (13) are arranged on the second rotating shaft (12).

3. The glass fiber wool compression packaging device according to claim 1, characterized in that: The clamping components are in four groups and are evenly arranged on the upper surface of the moving plate (16).

4. A glass fiber wool compression packaging device according to claim 3, characterized in that: Each group of the clamping components comprises a vertical plate (18), a clamping cylinder (19) and a clamping block (20); the vertical plate (18) is vertically arranged on the upper surface of the movable plate (16); the clamping cylinder (19) is arranged on the vertical plate (18) with the telescopic end of the clamping cylinder (19) facing downward; and the clamping block (20) is arranged on the telescopic end of the clamping cylinder (19).