Aluminum alloy profile wood grain transfer sleeve bag system
By designing a wood grain transfer bagging system for aluminum alloy profiles, and utilizing components such as a carrier, bag opening fixing device, and automatic winding device, automated bagging of aluminum alloy profiles has been achieved, solving the problem of low efficiency in manual bagging and improving bagging efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-13
- Publication Date
- 2026-08-04
AI Technical Summary
The existing technology for aluminum alloy profile tubular plastic bags has low working efficiency, mainly relying on manual labor, resulting in low efficiency.
A wood grain transfer bagging system for aluminum alloy profiles was designed, including a carrier, a bag opening fixing device, an air jet pipe, and an automatic winding device. Automatic bagging is achieved through mechanized operation. The bag opening is fixed by the carrier, push-pull electromagnetic and magnetic blocks, and the bagging efficiency is improved by the synergistic effect of the air jet pipe and the automatic winding device.
The automated bagging of aluminum alloy profiles has been achieved, which has significantly improved the efficiency of bagging, simplified the operation process, and increased production efficiency.
Smart Images

Figure CN118721974B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of aluminum alloy profile production technology, and in particular to a bagging device in the wood grain transfer process of aluminum alloy profiles. Background Technology
[0002] The steps for applying wood grain transfer to the surface of aluminum alloy profiles are as follows:
[0003] 1) Wrap the aluminum alloy profile to be transferred with wood grain heat transfer paper, and fix the edges of the transfer paper with high-temperature resistant adhesive tape to prevent the wood grain heat transfer paper from coming loose.
[0004] 2) Place a high-temperature resistant and well-sealed tubular plastic bag over the aluminum alloy profile that has been wrapped with wood grain heat transfer paper.
[0005] 3) Vacuum the tubular plastic bag from both ends until it adheres fully and effectively to the substrate. The purpose of using the tubular plastic bag is to force the wood grain heat transfer paper to adhere fully and effectively to the substrate through negative pressure, making the tubular plastic bag, which is tightly attached to the aluminum alloy profile, adhere to the substrate as well.
[0006] 4) Place the wrapped aluminum alloy profile into an oven for baking, so that the pattern on the wood grain heat transfer paper is transferred to the aluminum alloy profile.
[0007] In the existing technology, the work of putting tubular plastic bags on aluminum alloy profiles that have been wrapped with wood grain heat transfer paper is done manually. Due to the large length of the aluminum alloy profiles, the bagging efficiency is low. Summary of the Invention
[0008] In view of this, the purpose of this invention is to provide a wood grain transfer bagging system for aluminum alloy profiles, so as to solve the technical problem of improving the working efficiency of tubular plastic bags for aluminum alloy profiles.
[0009] The aluminum alloy profile wood grain transfer bagging system of the present invention includes a long platform and a carrier vehicle arranged on the long platform for supporting the aluminum alloy profile.
[0010] The towing vehicle includes a frame, which includes a left side plate, a right side plate, and a rear end plate. The left side plate and the right side plate are arranged in parallel, and a space for placing aluminum alloy profiles is formed between the left side plate and the right side plate. The rear end of the left side plate and the rear end of the right side plate are connected by the rear end plate.
[0011] The carrier also includes a dual-axis motor located at the rear end of the frame with its shaft extending from the left and right sides, and drive wheels connected to the shafts of the dual-axis motor.
[0012] The carrier also includes several driven wheels arranged along the length of the left and right side plates;
[0013] The carrier also includes several push-pull electromagnets for supporting aluminum alloy profiles, which are arranged along the length of the left and right side plates. When the power is on, the iron core rod of the push-pull electromagnet extends horizontally into the frame. When the power is off, the iron core rod of the push-pull electromagnet retracts from the frame.
[0014] The aluminum alloy profile wood grain transfer bagging system also includes a bag opening fixing device located in the middle of the long platform. The bag opening fixing device consists of a top plate, a left plate, and a right plate fixed to the long platform. ∏ Frame and ∏ A bag presser fits on the outer side of the frame; the lower front half of the left and right plates forms a slit between them and the long platform for the tubular plastic bag to pass through.
[0015] Furthermore, the frame also includes a concave connecting plate at the upper front end of the left side plate and the right side plate.
[0016] Furthermore, the bag press consists of a magnetic block and a handle connected to the magnetic block.
[0017] Furthermore, the aluminum alloy profile wood grain transfer bagging system also includes air jet pipes arranged along the length of the left and right side panels, with the air jet nozzles of the air jet pipes located at the front end of the frame.
[0018] Furthermore, the aluminum alloy profile wood grain transfer bagging system also includes an automatic winding device located at the rear of the long platform. The automatic winding device includes a bracket, a hollow shaft mounted on the bracket, a winding baffle mounted on the hollow shaft, a motor driving the hollow shaft to rotate, and rotary air connectors and rotary electrical connectors respectively located at both ends of the hollow shaft. The hollow shaft is also provided with an air pipe inlet and a wire inlet. The air pipe passes through the air pipe inlet into the hollow shaft and is connected to the rotary air connector. The wire supplying power to the dual-axis motor passes through the wire inlet into the hollow shaft and is connected to the rotary electrical connector.
[0019] The beneficial effects of this invention are:
[0020] The present invention relates to a wood grain transfer bagging system for aluminum alloy profiles, which can automatically pack long strips of aluminum alloy profiles into tubular plastic bags, resulting in high bagging efficiency. Attached Figure Description
[0021] Figure 1 This is a three-dimensional structural diagram of the aluminum alloy profile wood grain transfer bag system in the embodiment.
[0022] Figure 2 This is a three-dimensional structural diagram of the front of the carrier and the bag opening fixing device.
[0023] Figure 3 This is a three-dimensional structural diagram of the rear of the trailer and the automatic winding device. Detailed Implementation
[0024] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0025] As shown in the figure, the aluminum alloy profile wood grain transfer bagging system of this embodiment includes a long platform 1, and a carrier vehicle arranged on the long platform for supporting the aluminum alloy profile.
[0026] The carrier includes a frame, which includes a left side plate 2, a right side plate 3, and a rear end plate 4. The left side plate and the right side plate are arranged in parallel, and a space 5 for placing aluminum alloy profiles is formed between the left side plate and the right side plate. The rear end of the left side plate and the rear end of the right side plate are connected by the rear end plate.
[0027] The carrier also includes a dual-axis motor 6 located at the rear end of the frame with its axle extending from the left and right sides, and drive wheels 7 connected to the axle of the dual-axis motor.
[0028] The carrier also includes several driven wheels 8 arranged along the length of the left and right side plates.
[0029] The carrier also includes several push-pull electromagnets 9 arranged along the length of the left and right side panels for supporting aluminum alloy profiles. When energized, the iron core rod of the push-pull electromagnet extends horizontally into the frame. When de-energized, the iron core rod of the push-pull electromagnet retracts from the frame.
[0030] The aluminum alloy profile wood grain transfer bagging system also includes a bag opening fixing device located in the middle of the long platform. The bag opening fixing device consists of a top plate 101, a left plate 102, and a right plate 103 fixed to the long platform. ∏ Frame 10 and ∏ A bag presser 11 fits onto the outer side of the frame; a slit 12 is formed between the lower front half of the left and right plates and the long platform for the tubular plastic bag to pass through. In this embodiment, the bag presser 11 consists of a magnet 111 and a handle 112 connected to the magnet. The magnet is used to fix the opening of the tubular plastic bag, making operation simple and convenient.
[0031] During the bagging operation, the aluminum alloy profile is first placed into the frame and held in place by the push-pull electromagnetic 9. Then, the tubular plastic bag 13 is pulled out from the unwinder 14 by a section, and the front end of the tubular plastic bag 13 is fitted onto the frame. ∏The aluminum alloy profile is placed on the frame 10, and the opening of the tubular plastic bag is pressed down by the bag presser 11. Then, the dual-axis motor 6 is controlled to move the trolley forward to feed the aluminum alloy profile into the tubular plastic bag 13. When it is fed into the required position, the push-pull electromagnetic 9 is de-energized, and the iron core rod of the push-pull electromagnetic 9 retracts, thereby unloading the aluminum alloy profile into the tubular plastic bag 13. Then, the dual-axis motor 6 is controlled to withdraw the trolley from the tubular plastic bag 13. Then, one end of the tubular plastic bag 13 is removed from the bag opening fixing device, and the other end of the tubular plastic bag 13 is cut off. This completes the bagging operation of the aluminum alloy profile. Compared with manual bagging, this aluminum alloy profile wood grain transfer bagging system can improve the bagging efficiency.
[0032] As an improvement to the above embodiment, the frame also includes a concave connecting plate 15 connected to the upper front end of the left side plate and the right side plate. The structural stability of the frame can be improved by setting the concave connecting plate 15.
[0033] As an improvement to the above embodiment, the aluminum alloy profile wood grain transfer bagging system further includes an air jet pipe 16 arranged along the length of the left and right side panels, with the air jet nozzle located at the front end of the frame. During the loading process, air is blown into the tubular plastic bag 13 through the air jet pipe 16, causing the tubular plastic bag 13 to expand, which facilitates the smooth loading of the vehicle into the tubular plastic bag 13.
[0034] As an improvement to the above embodiment, the aluminum alloy profile wood grain transfer bagging system further includes an automatic rewinder located at the rear of the long platform. The automatic rewinder includes a bracket 17, a hollow shaft 18 mounted on the bracket, a rewinding baffle 19 mounted on the hollow shaft, a motor 20 driving the hollow shaft, and rotary air connectors 21 and rotary electrical connectors 22 respectively located at both ends of the hollow shaft. The hollow shaft also has an air pipe inlet 23 and a wire inlet 24. The air pipe passes through the air pipe inlet into the hollow shaft and connects to the rotary air connector. The wire 25 supplying power to the dual-shaft motor passes through the wire inlet into the hollow shaft and connects to the rotary electrical connector. During the bagging process, when the carrier moves forward, the air pipe 16 and the wire 25 are pulled out from the automatic rewinder. When the carrier moves backward, the automatic rewinder rewinds the air pipe 16 and the wire 25 back, thus avoiding problems such as the air pipe 16 and the wire 25 becoming tangled or being damaged by the carrier.
[0035] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention and are not intended to limit it. Although the present invention has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications or equivalent substitutions can be made to the technical solutions of the present invention without departing from the spirit and scope of the technical solutions of the present invention, and all such modifications or substitutions should be covered within the scope of the claims of the present invention.
Claims
1. An aluminum alloy extrusion wood grain transfer sleeve bag system comprising a long platform, characterized in that: It also includes a carrier vehicle arranged on a long platform for carrying aluminum alloy profiles; The towing vehicle includes a frame, which includes a left side plate, a right side plate, and a rear end plate. The left side plate and the right side plate are arranged in parallel, and a space for placing aluminum alloy profiles is formed between the left side plate and the right side plate. The rear end of the left side plate and the rear end of the right side plate are connected by the rear end plate. The carrier also includes a dual-axis motor located at the rear end of the frame with its shaft extending from the left and right sides, and drive wheels connected to the shafts of the dual-axis motor. The carrier also includes several driven wheels arranged along the length of the left and right side plates; The carrier also includes several push-pull electromagnetics arranged along the length of the left and right side plates for supporting aluminum alloy profiles. When the power is on, the iron core rod of the push-pull electromagnetic extends horizontally into the frame. When the power is off, the iron core rod of the push-pull electromagnetic retracts from the frame. The aluminum alloy profile wood grain transfer bagging system also includes a bag opening fixing device set in the middle of the long platform. The bag opening fixing device includes a Π-shaped frame consisting of a top plate, a left plate, and a right plate fixed on the long platform and a bag presser that cooperates with the outer side of the Π-shaped frame. The lower front half of the left plate and the right plate forms a slit between them and the long platform for the tubular plastic bag to pass through. The frame also includes a concave connecting plate at the upper front end of the left side plate and the right side plate; The bag press consists of a magnetic block and a handle connected to the magnetic block; The aluminum alloy profile wood grain transfer bagging system also includes air jet pipes arranged along the length of the left and right side panels, with the air jet nozzles of the air jet pipes located at the front end of the frame. The aluminum alloy profile wood grain transfer bagging system also includes an automatic winding device located at the rear of the long platform. The automatic winding device includes a bracket, a hollow shaft mounted on the bracket, a winding baffle mounted on the hollow shaft, a motor driving the hollow shaft to rotate, and rotary air connectors and rotary electrical connectors respectively located at both ends of the hollow shaft. The hollow shaft is also provided with an air pipe inlet and a wire inlet. The air pipe passes through the air pipe inlet into the hollow shaft and is connected to the rotary air connector. The wire supplying power to the dual-axis motor passes through the wire inlet into the hollow shaft and is connected to the rotary electrical connector.