An apparatus for thermoforming and cutting aluminum foil fiberglass self-winding tubes

By designing the support and cutting components, the problems of unstable guidance and cumbersome clamping during the conveying process of the aluminum foil fiberglass self-winding tube thermoforming cutting device are solved. Automatic guidance and stable clamping are achieved, simplifying the operation process and adapting to the cutting needs of different pipe diameters.

CN224509790UActive Publication Date: 2026-07-17SUZHOU ZHIMING AUTOMATION TECH CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SUZHOU ZHIMING AUTOMATION TECH CO LTD
Filing Date
2025-05-19
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

The existing aluminum foil fiberglass self-winding tube thermoforming and cutting device lacks guidance during the conveying process, is prone to deviation, and has a cumbersome clamping operation that requires manual intervention.

Method used

The design incorporates support and cutting components, including a slide, positive and negative threaded rods, a moving block, a support wedge, an electric push rod, and a cutting blade. Through the cooperation of the motor and the electric push rod, it achieves automatic guidance and stable clamping of the pipe and can cut pipes of different diameters.

Benefits of technology

It achieves automatic guidance and stable clamping of pipes, simplifies the operation process, adapts to the cutting needs of different pipe diameters, and improves processing efficiency and convenience.

✦ Generated by Eureka AI based on patent content.

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Abstract

This utility model relates to the technical field of pipe processing equipment and discloses a device for thermoforming and cutting aluminum foil fiberglass self-winding tubes. The device includes a mounting box, a fixed frame fixedly connected to the top of the mounting box, and a support assembly inside the fixed frame. A first electric push rod is fixedly connected to the top of the fixed frame. This device for thermoforming and cutting aluminum foil fiberglass self-winding tubes includes a sliding groove, a mounting frame, a first motor, positive and negative threaded rods, a moving block, support inclined blocks, a first electric push rod, and a pressure plate. The two symmetrically arranged support inclined blocks provide excellent guidance for conveying the pipe. The distance between the two support inclined blocks can be adjusted by the operation of the first motor to accommodate pipes of different diameters. The operation of the first electric push rod causes the pressure plate to move downwards and press the pipe, preventing loosening during processing. The device is simple to operate, easy to use, and meets people's needs.
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Description

Technical Field

[0001] This utility model relates to the technical field of pipe processing equipment, specifically a device for thermoforming and cutting aluminum foil fiberglass self-winding tubes. Background Technology

[0002] Aluminum foil fiberglass tube is a composite material tube made of aluminum foil and glass fiber. Due to its good heat insulation, heat preservation and fire resistance properties, aluminum foil fiberglass self-winding tube is widely used in the fields of building and industrial pipeline insulation. In the production process of aluminum foil fiberglass self-winding tube, after the aluminum foil fiberglass self-winding tube is thermoformed, it needs to be cut.

[0003] The prior art patent document CN222370513U provides a cutting device for pipe production. The device uses a structure such as a threaded pressure rod, a clamping plate, a spring, and a horizontal plate installed on the top of the operating table. First, the threaded pressure rod is turned in the opposite direction. Then, the pipe is placed on the top of the operating table, and the threaded pressure rod is turned again to drive the clamping plate to clamp the pipe from both sides.

[0004] The existing technology described above can clamp the pipe and prevent it from loosening during processing. However, it lacks guide blocks to guide the pipe during transport, making it prone to deviation. Manual alignment and placement are required, and the clamping of the pipe is cumbersome and inconvenient, failing to meet people's needs. Therefore, we need a device for thermoforming and cutting aluminum foil fiberglass self-winding tubes. Utility Model Content

[0005] The purpose of this utility model is to provide a device for thermoforming and cutting aluminum foil fiberglass self-winding tubes, so as to solve the problems mentioned in the background art. To solve the above technical problems, this utility model provides the following technical solution: a device for thermoforming and cutting aluminum foil fiberglass self-winding tubes, comprising a mounting box, a fixing frame fixedly connected to the top of the mounting box, a support assembly disposed inside the fixing frame, a first electric push rod fixedly connected to the top of the fixing frame, a pressure plate fixedly connected to one end of the first electric push rod, and a cutting assembly disposed inside the fixing frame;

[0006] The support assembly includes a slide groove, an installation frame is fixedly connected to the inner wall of the mounting box, and a first motor is installed on the outer wall of the installation frame. The output shaft of the first motor is fixedly connected to a positive and negative threaded rod through a coupling, and a moving block is threadedly connected to the outer wall of the positive and negative threaded rod. A support inclined block is fixedly connected to the top of the moving block.

[0007] The cutting assembly includes a second motor, and the output shaft of the second motor is fixedly connected to a lead screw via a coupling. The outer wall of the lead screw is threadedly connected to a first mounting base, and the inner wall of the first mounting base is fixedly connected to a cutting blade via bolts. One end of the cutting blade is fixedly connected to a second mounting base via bolts, and the inner wall of the second mounting base is slidably connected to a guide rod. The inner wall of the mounting box is fixedly connected to a second electric push rod, and one end of the second electric push rod is fixedly connected to a cutting pad.

[0008] Preferably, there are two moving blocks, and the two moving blocks are symmetrically arranged on the positive and negative threaded rods.

[0009] Preferably, the inner wall shape and size of the chute match the outer wall shape and size of the moving block, and the inner wall of the chute fits into the outer wall of the moving block.

[0010] Preferably, one end of the movable block passes through the slide groove and is connected to the support inclined block, and one end of the first electric push rod extends into the fixed frame and is connected to the pressure plate.

[0011] Preferably, the second motor forms a movable structure with the first mounting base via a lead screw, and one end of the lead screw is threaded through the first mounting base.

[0012] Preferably, one end of the guide rod passes through the second mounting base.

[0013] Preferably, one end of the second electric push rod extends out of the mounting box and connects to the cutting pad. A frame is provided on one side of the mounting box, and an unwinding mechanism is provided on the inner wall of the frame. A tensioning mechanism is provided on the inner wall of the frame, and an orientation mechanism is provided on the top of the frame. A heating mechanism is provided on one side of the orientation mechanism, and a heat setting mechanism is provided on one side of the heating mechanism. An aluminum foil applicator is provided on one side of the heat setting mechanism.

[0014] Compared with the prior art, the beneficial effects achieved by this utility model are:

[0015] First, this utility model is equipped with a sliding groove, a mounting frame, a first motor, a positive and negative threaded rod, a moving block, a supporting inclined block, a first electric push rod, and a pressure plate. The two symmetrically arranged supporting inclined blocks can play a good guiding role for conveying pipes. The distance between the two supporting inclined blocks can be adjusted by the operation of the first motor to accommodate pipes of different diameters. The operation of the first electric push rod causes the pressure plate to move down and press the pipe, preventing the pipe from loosening during processing. It is simple to operate, easy to use, and meets people's needs.

[0016] Secondly, this utility model is equipped with a second motor, a lead screw, a first mounting base, a cutting blade, a second mounting base, a guide rod, a second electric push rod, and a cutting pad. The second motor can move the cutting blade up and down to facilitate cutting pipes of different diameters. The second electric push rod can move the cutting pad up and down to facilitate supporting pipes of different diameters. Attached Figure Description

[0017] Figure 1 This is a schematic diagram of the main structure of this utility model;

[0018] Figure 2 This is a schematic diagram of the mounting box and fixing frame structure of this utility model;

[0019] Figure 3 This is a schematic diagram of the first motor and the positive and negative threaded rod of this utility model;

[0020] Figure 4 This is a schematic diagram of the second motor and lead screw structure of this utility model;

[0021] Figure 5 This is a schematic diagram of the frame and unwinding mechanism of this utility model.

[0022] The components include: 1. Mounting box; 2. Fixing frame; 3. Support assembly; 301. Slide groove; 302. Mounting frame; 303. First motor; 304. Positive and negative threaded rod; 305. Moving block; 306. Supporting inclined block; 4. First electric push rod; 5. Pressure plate; 6. Cutting assembly; 601. Second motor; 602. Lead screw; 603. First mounting base; 604. Cutting blade; 605. Second mounting base; 606. Guide rod; 607. Second electric push rod; 608. Cutting pad; 7. Frame; 8. Unwinding mechanism; 9. Tensioning mechanism; 10. Orientation mechanism; 11. Heating mechanism; 12. Heat setting mechanism; 13. Aluminum foil application mechanism. Detailed Implementation

[0023] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0024] like Figure 1-5As shown, an apparatus for thermoforming and cutting aluminum foil fiberglass self-winding tubes includes a mounting box 1. A fixing frame 2 is fixedly connected to the top of the mounting box 1, and a support assembly 3 is provided inside the fixing frame 2. A first electric push rod 4 is fixedly connected to the top of the fixing frame 2, and a pressure plate 5 is fixedly connected to one end of the first electric push rod 4. A cutting assembly 6 is provided inside the fixing frame 2. The support assembly 3 includes a slide groove 301. A mounting frame 302 is fixedly connected to the inner wall of the mounting box 1, and a first motor 303 is mounted on the outer wall of the mounting frame 302. The output shaft of the first motor 303 is fixedly connected to a threaded rod 304 via a coupling, and a moving block 305 is threadedly connected to the outer wall of the threaded rod 304. A support inclined block 306 is fixedly connected to the top of the moving block 305. The cutting assembly 6 includes a second motor 601, and a lead screw 602 is fixedly connected to the output shaft of the second motor 601 via a coupling. The outer wall of the mounting box 1 is threaded with a first mounting base 603, and the inner wall of the first mounting base 603 is fixedly connected with a cutting blade 604 by bolts. One end of the cutting blade 604 is fixedly connected with a second mounting base 605 by bolts, and the inner wall of the second mounting base 605 is slidably connected with a guide rod 606. The inner wall of the mounting box 1 is fixedly connected with a second electric push rod 607, and one end of the second electric push rod 607 is fixedly connected with a cutting pad 608. A frame 7 is provided on one side of the mounting box 1, and an unwinding mechanism 8 is provided on the inner wall of the frame 7. A tensioning mechanism 9 is provided on the inner wall of the frame 7, and an orientation mechanism 10 is provided on the top of the frame 7. A heating mechanism 11 is provided on one side of the orientation mechanism 10, and a heat setting mechanism 12 is provided on one side of the heating mechanism 11. An aluminum foil applicator 13 is provided on one side of the heat setting mechanism 12.

[0025] Through the above technical solution, the two symmetrically arranged support inclined blocks 306 can play a good guiding role for the conveying pipe. The distance between the two support inclined blocks 306 can be adjusted by the operation of the first motor 303 to accommodate pipes of different diameters. The operation of the first electric push rod 4 causes the pressure plate 5 to move down and press the pipe to prevent the pipe from loosening during processing. The operation is simple and easy to use, meeting people's needs. The operation of the second motor 601 can realize the up and down movement of the cutting blade 604, which is convenient for cutting pipes of different diameters. The operation of the second electric push rod 607 can realize the up and down movement of the cutting pad 608, which is convenient for supporting pipes of different diameters.

[0026] Specifically, there are two moving blocks 305, and the two moving blocks 305 are symmetrically arranged on the positive and negative threaded rods 304.

[0027] Through the above technical solution, a bearing is provided at one end of the positive and negative threaded rod 304, and threaded grooves matching the positive and negative threaded rod 304 are opened on both moving blocks 305; when the first motor 303 works, it drives the positive and negative threaded rod 304 to rotate, which can make the two moving blocks 305 move towards each other or away from each other; a sliding rod is fixed on the outer wall of the mounting bracket 302, and one end of the sliding rod passes through the two moving blocks 305. When the moving blocks 305 move, the moving blocks 305 move more stably on the sliding rod; a controller is provided inside the mounting box 1.

[0028] Specifically, the inner wall shape and size of the slide 301 match the outer wall shape and size of the moving block 305, and the inner wall of the slide 301 fits against the outer wall of the moving block 305.

[0029] Through the above technical solution, the inner wall of the mounting box 1 is provided with two sliding grooves 301. When the moving block 305 moves, the moving block 305 moves more stably in the sliding groove 301.

[0030] Specifically, one end of the movable block 305 passes through the slide groove 301 and is connected to the support inclined block 306, and one end of the first electric push rod 4 extends into the fixed frame 2 and is connected to the pressure plate 5.

[0031] Through the above technical solution, the outer wall of the support inclined block 306 is fixed with a rubber pad, and the bottom of the pressure plate 5 is also provided with a rubber pad to prevent damage to the pipe when pressing it; when the two support inclined blocks 306 are in contact with each other, the groove in the middle is V-shaped.

[0032] Specifically, the second motor 601 forms a moving structure with the first mounting base 603 via a lead screw 602, and one end of the lead screw 602 is threaded through the first mounting base 603.

[0033] Through the above technical solution, a second motor 601 is installed on the top of the fixing frame 2; a bearing is provided at one end of the lead screw 602, and the bearing is fixed on the mounting box 1. When the lead screw 602 rotates, the lead screw 602 rotates more stably in the bearing.

[0034] Specifically, one end of the guide rod 606 passes through the second mounting base 605.

[0035] Through the above technical solution, the second mounting base 605 is provided with a groove that matches the guide rod 606. One end of the guide rod 606 is fixed in the fixing frame 2. When the second mounting base 605 moves, the second mounting base 605 moves more stably on the guide rod 606 by relying on the groove.

[0036] Specifically, one end of the second electric push rod 607 extends out of the mounting box 1 and connects with the cutting pad 608.

[0037] Through the above technical solution, the bottom of the cutting pad 608 is provided with two limiting rods, one end of which passes through the mounting box 1. When the second electric push rod 607 works, it drives the cutting pad 608 to move, and the cutting pad 608 drives the two limiting rods to move more stably. The outer wall of the mounting box 1 is hinged with a box door, and the outer walls of the inlet and outlet of the fixing frame 2 are both hinged with equipment doors.

[0038] In use, first connect the device to an external power supply. Open the equipment door at the inlet / outlet of the fixed frame 2. Adjust the distance between the two support inclined blocks 306 according to the diameter of the aluminum foil fiberglass self-winding tube. The first motor 303 drives the positive and negative threaded rods 304 to rotate, causing the two moving blocks 305 to move towards each other. The moving blocks 305 drive the support inclined blocks 306 to move, adjusting the distance between the two support inclined blocks 306 to a suitable level. Adjust the height of the cutting pad 608 according to the diameter of the aluminum foil fiberglass self-winding tube. The second electric push rod 607 pushes the cutting pad 608 upwards, supporting the aluminum foil fiberglass self-winding tube. The unwinding mechanism 8 operates, and the tensioning mechanism 9 tensions the roll material. The roll material enters the heating mechanism 11 through the orientation mechanism 10. The heating mechanism 11 softens the material, which then enters the heat-setting mechanism 12 to self-wind into a tube. The aluminum foil application mechanism 13... Aluminum foil is applied to the thermoformed self-winding tube. When cutting the thermoformed aluminum foil fiberglass self-winding tube, the tube is conveyed and moves between two support inclined blocks 306. The two support inclined blocks 306 support and guide the tube, making the movement of the tube more stable. After the tube moves into place, the first electric push rod 4 works to push the pressure plate 5 down. The pressure plate 5 moves down to press the tube and prevent the tube from loosening during processing. The second motor 601 works to drive the lead screw 602 to rotate, thereby causing the first mounting seat 603 to move down. The movement of the first mounting seat 603 drives the cutting blade 604 to move. The cutting blade 604 drives the second mounting seat 605 to move on the guide rod 606. The downward movement of the cutting blade 604 cuts the tube. This completes the entire work. The contents not described in detail in this specification are existing technologies known to those skilled in the art.

[0039] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A device for hot forming and cutting of an aluminum foil glass fiber self- winding pipe, comprising a mounting box (1), characterized in that: The top of the installation box (1) is fixedly connected with a fixing frame (2), and the inside of the fixing frame (2) is provided with a supporting assembly (3); the top of the fixing frame (2) is fixedly connected with a first electric push rod (4), and one end of the first electric push rod (4) is fixedly connected with a pressing plate (5); and the inside of the fixing frame (2) is provided with a cutting assembly (6). The supporting assembly (3) comprises a sliding groove (301), the inner wall of the installation box (1) is fixedly connected with a mounting frame (302), and the outer wall of the mounting frame (302) is provided with a first motor (303); the output shaft of the first motor (303) is fixedly connected with a forward and reverse threaded rod (304) through a shaft coupling, and the outer wall of the forward and reverse threaded rod (304) is threadedly connected with a moving block (305); and the top of the moving block (305) is fixedly connected with a supporting inclined block (306). The cutting assembly (6) comprises a second motor (601), and the output shaft of the second motor (601) is fixedly connected with a lead screw (602) through a shaft coupling; the outer wall of the lead screw (602) is threadedly connected with a first mounting seat (603), and the inner wall of the first mounting seat (603) is fixedly connected with a cutting blade (604) through bolts; one end of the cutting blade (604) is fixedly connected with a second mounting seat (605) through bolts, and the inner wall of the second mounting seat (605) is slidably connected with a guide rod (606); the inner wall of the installation box (1) is fixedly connected with a second electric push rod (607), and one end of the second electric push rod (607) is fixedly connected with a cutting pad seat (608).

2. A device for hot forming and cutting of a self-winding pipe of aluminum foil glass fiber according to claim 1, characterized in that: The number of the moving blocks (305) is two, and the two moving blocks (305) are symmetrically arranged on the forward and reverse threaded rod (304).

3. A device for hot forming and cutting of a self-winding pipe of aluminum foil glass fiber according to claim 1, characterized in that: The shape and size of the inner wall of the sliding groove (301) and the shape and size of the outer wall of the moving block (305) are matched with each other, and the inner wall of the sliding groove (301) is fitted with the outer wall of the moving block (305).

4. A device for thermoforming and cutting of an aluminum foil glass fiber self- winding pipe according to claim 1, characterized in that: One end of the moving block (305) penetrates through the sliding groove (301) and is connected with the supporting inclined block (306); and one end of the first electric push rod (4) extends into the fixing frame (2) and is connected with the pressing plate (5).

5. A device for thermoforming and cutting of an aluminum foil glass fiber self- winding pipe according to claim 1, characterized in that: The second motor (601) and the first mounting seat (603) constitute a moving structure through the lead screw (602), and one end of the lead screw (602) is threadedly connected through the first mounting seat (603).

6. A device for thermoforming and cutting of an aluminum foil glass fiber self- winding pipe according to claim 1, characterized in that: One end of the guide rod (606) penetrates through the second mounting seat (605).

7. A device for thermoforming and cutting of an aluminum foil glass fiber self- winding pipe according to claim 1, characterized in that: One end of the second electric push rod (607) extends out of the installation box (1) and is connected with the cutting pad seat (608); one side of the installation box (1) is provided with a rack (7), the inner wall of the rack (7) is provided with a unwinding mechanism (8), the inner wall of the rack (7) is provided with a tensioning mechanism (9), the top of the rack (7) is provided with a directional mechanism (10), one side of the directional mechanism (10) is provided with a hot soup mechanism (11), one side of the hot soup mechanism (11) is provided with a hot setting mechanism (12), one side of the hot setting mechanism (12) is provided with an aluminum foil application mechanism (13).