Laser-sealed aluminum strip device for aluminum honeycomb panels
Patent Information
- Application Number
- CN202522284451.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-29
- Publication Date
- 2026-09-18
- Estimated Expiration
- 2035-10-29
AI Technical Summary
[0003]传统的封边机是木材质的板材封边机,其中,板材胶锅封边压贴总成装置更是在封边机作业中起到了重要且必不可少的作用,然而,木材质的板材在封边时,是通过黏胶方式进行封边,封带久旧掉带等问题一直都是木工行业中一个顽疾;因此,目前市面上又掀起了铝蜂窝板
[0027] 1. This utility model uses laser welding to weld aluminum honeycomb panels and edge banding strips, effectively completing the edge banding of aluminum honeycomb panels. The edge banding efficiency is high and the effect is good. Compared with the traditional adhesive edge banding method, it can prevent the edge banding strip from cracking or peeling.
Smart Images

Figure CN224764530U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of edge sealing device technology, and more specifically to a laser aluminum strip edge sealing device for aluminum honeycomb panels. Background Technology
[0002] Edge banding machines are an indispensable type of machinery in the woodworking machinery industry. They complete traditional manual operations with highly automated machinery, reducing reliance on manual labor, lowering high costs, and increasing effective production capacity.
[0003] Traditional edge banding machines are for wood panels. The glue pot edge banding and pressing assembly plays an important and indispensable role in the operation of the edge banding machine. However, when edge banding wood panels, the edge banding is done by gluing. Problems such as the sealing tape falling off after a long time have always been a persistent problem in the woodworking industry. Therefore, aluminum honeycomb panels have recently become popular in the market.
[0004] Aluminum honeycomb panels also require edge sealing during the manufacturing process, but aluminum is not suitable for edge sealing using adhesives; therefore, this utility model proposes an edge sealing device suitable for edge sealing aluminum honeycomb panels. Utility Model Content
[0005] In view of this, the present invention provides a laser aluminum strip sealing device for aluminum honeycomb panels.
[0006] To achieve the above objectives, the present invention adopts the following technical solution:
[0007] A laser-sealed aluminum strip device for aluminum honeycomb panels includes:
[0008] frame;
[0009] A pressure roller mechanism includes a pressure roller and an adjusting component; the pressure roller presses the edge sealing strip against the aluminum honeycomb panel, and the edge sealing strip contacts the peripheral side of the pressure roller; the adjusting component adjusts the position of the pressure roller so that the pressure roller presses against the edge sealing strip.
[0010] A first laser welding mechanism and a second laser welding mechanism, wherein the first laser welding mechanism includes a first laser welding head and the second laser welding mechanism includes a second laser welding head, and the first laser welding head and the second laser welding head are arranged opposite to each other; the first laser welding head welds the first side of the edge sealing strip to the aluminum honeycomb panel, and the second laser welding head welds the second side of the edge sealing strip to the aluminum honeycomb panel.
[0011] A camera and a display screen are provided, with a camera respectively corresponding to the first laser welding head and the second laser welding head, and the display screen is connected to the camera and plays the camera's image;
[0012] The pressure roller is located between the first laser welding head and the second laser welding head; the pressure roller mechanism, the first laser welding mechanism and the second laser welding mechanism are assembled on the frame.
[0013] As a preferred embodiment of the present invention, the frame is provided with a first guide shaft, a first mounting seat is mounted on the first guide shaft, and the first mounting seat moves along the first guide shaft to adjust its position.
[0014] The first mounting base is provided with a second guide shaft, the second guide shaft is mounted with a second mounting base, and the second mounting base can be moved along the second guide shaft to adjust its position;
[0015] The first guide shaft and the second guide shaft are perpendicular to each other.
[0016] In a preferred embodiment of this utility model, the first mounting base is provided with a first adjusting screw; the first adjusting screw adjusts the position of the first mounting base on the first guide shaft; the second mounting base is provided with a second adjusting screw; the second adjusting screw adjusts the position of the second mounting base on the second guide shaft.
[0017] In a preferred embodiment of this utility model, the first laser welding mechanism is mounted on the second mounting base via a first bracket; the second laser welding mechanism is mounted on the second mounting base via a second bracket and an angle adjustment plate; the second laser welding mechanism adjusts the included angle α2 with the first plane via the angle adjustment plate.
[0018] In a preferred embodiment of this utility model, the angle between the first laser welding head and the first plane is α1, and the angle between the second laser welding head and the first plane is α2, where α1 ≠ α2.
[0019] In a preferred embodiment of this invention, the laser emission portions of the first laser welding head and the second laser welding head are arranged collinearly.
[0020] As a preferred embodiment of this utility model, the pressure roller mechanism further includes: a third bracket; the third bracket is mounted on the second mounting base; the pressure roller is mounted on the third bracket via a pressure shaft.
[0021] In a preferred embodiment of this utility model, the adjusting component is an adjusting screw; the adjusting component is perpendicular to the pressure belt shaft; the adjusting component adjusts the position of the pressure belt wheel in the Y direction, and the pressure belt shaft adjusts the position of the pressure belt wheel in the Z direction.
[0022] As a preferred embodiment of the present invention, the first laser welding mechanism includes: a first Z-axis slide, a first Y-axis slide, a first laser generator, a first laser controller, and a first laser welding head;
[0023] The first Y-axis slide is mounted on the first bracket, and the first Z-axis slide is mounted on the first Y-axis slide; the first laser generator, the first laser controller, and the first laser welding head are all mounted on the first Z-axis slide.
[0024] As a preferred embodiment of the present invention, the second laser welding mechanism includes: a second Z-axis slide, a second Y-axis slide, a second laser generator, a second laser controller, and a second laser welding head;
[0025] The second Y-axis slide is mounted on the angle adjustment plate, and the second Z-axis slide is mounted on the second Y-axis slide; the second laser generator, the second laser controller, and the second laser welding head are all mounted on the second Z-axis slide.
[0026] As can be seen from the above technical solution, compared with the prior art, the present invention has the following beneficial technical effects:
[0027] 1. This utility model uses laser welding to weld aluminum honeycomb panels and edge banding strips, effectively completing the edge banding of aluminum honeycomb panels. The edge banding efficiency is high and the effect is good. Compared with the traditional adhesive edge banding method, it can prevent the edge banding strip from cracking or peeling.
[0028] 2. This utility model addresses the problem of edge banding tape falling off due to age in edge banding machines. It utilizes laser edge banding with aluminum edge banding strips, reducing reliance on adhesives and saving material costs. It also reduces labor costs for cleaning and maintaining the glue pot in traditional edge banding machines, as well as the time cost of preheating the glue pot, effectively increasing production capacity. Other beneficial technical effects of this utility model are illustrated in the specific embodiments.
[0029] 3. This utility model is equipped with cameras corresponding to the first and second laser welding heads respectively. The images from the cameras are played on the display screen. When the aluminum honeycomb panel and the edge banding strip are laser welded, the upper and lower laser welding spots are played on the display screen, allowing observation of the welding effect. In addition, when laser welding aluminum honeycomb panels and edge banding strips of different specifications, when the user manually adjusts the positions of the first and second laser welding heads, the images captured by the cameras are played on the display screen, allowing the user to adjust the positions of the first and second laser welding heads more precisely, resulting in more accurate laser welding. Attached Figure Description
[0030] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on the provided drawings without creative effort.
[0031] Figure 1 This is a schematic diagram of the structure of this utility model;
[0032] Figure 2 This is a structural schematic diagram of the present invention from another angle;
[0033] Figure 3 This is a schematic diagram of the medium-pressure pulley mechanism of this utility model installed on the frame;
[0034] Figure 4 This is a schematic diagram of the structure of the first laser welding mechanism in this utility model;
[0035] Figure 5 This is a schematic diagram of the structure of the second laser welding mechanism in this utility model;
[0036] Figure 6 This is a frontal view of the present invention.
[0037] Figure 7 This is a partial schematic diagram of the present invention assembled on an edge banding machine.
[0038] Explanation of reference numerals in the attached figures
[0039] Aluminum honeycomb panel 01; edge banding strip 02; frame 100; first guide shaft 110; first mounting base 120; first adjusting screw 121; second guide shaft 130; second mounting base 140; second adjusting screw 141; buffer spring 142; pressure roller mechanism 200; pressure roller 210; adjusting component 220; third bracket 230; pressure shaft 240; first laser welding mechanism 300; first bracket 301; first laser welding head 310; first Z-axis slide 320; first Y-axis slide 330; first laser generator 340; first laser controller 350; second laser welding mechanism 400; second bracket 401; angle adjustment plate 402; arc groove 4021; second laser welding head 410; second Z-axis slide 420; second Y-axis slide 430; second laser generator 440; second laser controller 450; camera 600; display screen 700. Detailed Implementation
[0040] The present invention will now be described in further detail with reference to the accompanying drawings. These drawings are simplified schematic diagrams, illustrating only the basic structure of the invention, and therefore only show the components relevant to the invention.
[0041] In the description of this application, it should be understood that the terms "longitudinal," "radial," "length," "width," "thickness," "upper," "lower," "left," "right," "front," "rear," "vertical," "horizontal," "top," "bottom," "inner," and "outer," etc., indicating orientation or positional relationships based on the orientation or positional relationships shown in the accompanying drawings, are used only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this application. In the description of this application, unless otherwise stated, "a plurality of" means two or more.
[0042] In the description of this application, it should be noted that, unless otherwise expressly specified and limited, the terms "installation," "connection," and "linking" should be interpreted broadly. For example, they can refer to fixed connections, detachable connections, or integral connections; they can refer to mechanical connections or electrical connections; they can refer to direct connections or indirect connections through an intermediate medium; and they can refer to the internal communication between two components. Those skilled in the art can understand the specific meaning of the above terms in this application based on the specific circumstances.
[0043] For information on laser-sealed aluminum strip edge banding devices for aluminum honeycomb panels, please refer to [link / reference]. Figure 1-6 As shown, it includes: a frame 100, a pressure roller mechanism 200, a first laser welding mechanism 300 and a second laser welding mechanism 400, a camera 600 and a display screen 700. The pressure roller mechanism 200, the first laser welding mechanism 300 and the second laser welding mechanism 400 are assembled on the frame 100. The aluminum honeycomb panel laser aluminum strip edge sealing device is mainly used to weld and fix the aluminum honeycomb panel 01 and the edge sealing strip 02 to achieve edge sealing of the aluminum honeycomb panel 01.
[0044] Specifically, aluminum honeycomb panel 01 is made of aluminum, and edge banding strip 02 is also made of aluminum;
[0045] like Figure 1-3 As shown, the frame 100 mainly serves a supporting and load-bearing function, supporting the pressure roller mechanism 200, the first laser welding mechanism 300, and the second laser welding mechanism 400, facilitating the integration of the entire aluminum honeycomb panel laser aluminum strip edge banding device into automated equipment, such as a fully automatic panel edge banding machine; specifically, as... Figure 3 As shown, the frame 100 is a rectangular frame, and the entire frame 100 can be made of high-hardness metal material.
[0046] The pressing roller mechanism 200 includes a pressing roller 210 and an adjusting member 220. The pressing roller 210 extends beyond the frame 100 and presses the edge sealing strip 02 against the aluminum honeycomb panel 01. The adjusting member 220 adjusts the position of the pressing roller 210 so that it presses the edge sealing strip 02 firmly against the edge sealing strip 02. Figure 6 As shown, the aluminum honeycomb panel 01 is fixed, and the edge sealing strip 02 contacts the peripheral side of the pressure roller 210. The edge sealing strip 02 is squeezed between the pressure roller 210 and the aluminum honeycomb panel 01, pressing the edge sealing strip 02 and the aluminum honeycomb panel 01 together.
[0047] Continue as Figure 6 As shown, the axis of the pressure roller 210 is vertical, and the adjusting component 220 pushes the pressure roller 210 to move left and right to adapt to the pressing between the edge banding strip 02 and the aluminum honeycomb panel 01 of different specifications.
[0048] Specifically, the dimensions of aluminum honeycomb panel 01 are defined as follows: Figure 6 If the dimensions (specifically the thickness) of the edge banding strip 02 remain unchanged, then the pressure roller 210 should be moved slightly to the left by the adjusting component 220 to press the edge banding strip 02 and the aluminum honeycomb panel 01 together.
[0049] For example, or if the size of the aluminum honeycomb panel 01 is changed while the size of the edge banding strip 02 remains unchanged, the pressure roller 210 can be moved by the adjusting member 220 to press the edge banding strip 02 and the aluminum honeycomb panel 01 together.
[0050] like Figure 4-5 As shown, there is a first laser welding mechanism 300 and a second laser welding mechanism 400. The first laser welding mechanism 300 includes a first laser welding head 310, and the second laser welding mechanism 400 includes a second laser welding head 410. The first laser welding head 310 and the second laser welding head 410 are arranged opposite to each other. The first laser welding head 310 welds the first side of the edge sealing strip 02 to the aluminum honeycomb panel 01, and the second laser welding head 410 welds the second side of the edge sealing strip 02 to the aluminum honeycomb panel 01.
[0051] like Figure 6 As shown, the pressure roller 210 is located between the first laser welding head 310 and the second laser welding head 410; the first laser welding head 310 of the first laser welding mechanism 300 welds the first side of the edge sealing strip 02 to the aluminum honeycomb panel 01, and the second laser welding head 410 welds the second side of the edge sealing strip 02 to the aluminum honeycomb panel 01. Welding the first side of the edge sealing strip 02 to the aluminum honeycomb panel 01 and the second side of the edge sealing strip 02 to the aluminum honeycomb panel 01 at the same time can effectively improve processing efficiency.
[0052] Furthermore, the edge banding strip 02 and the aluminum honeycomb panel 01 are fixed by laser welding, ensuring a stable connection and preventing cracking or peeling of the edge banding. Laser welding edge banding is pollution-free, waste-free, and meets environmental protection requirements. Laser welding edge banding technology achieves high precision, high efficiency, and high durability, overcoming the dependence on glue in traditional technologies to save material costs, reduce labor costs for cleaning and maintaining the glue pot, and reduce the time cost of preheating the glue pot, effectively increasing production capacity.
[0053] Furthermore, cameras 600 are respectively provided corresponding to the first laser welding head 310 and the second laser welding head 410. The cameras 600 can be mounted on the frame 100. After adjusting the positions of the first laser welding mechanism 300 and the second laser welding mechanism 400, the position of the camera 600 also needs to be adjusted so that it can correspond to the first laser welding head 310 and the second laser welding head 410 to capture images of the laser welding area.
[0054] Preferably, the two cameras 600 can also be integrated into the first laser welding mechanism 300 and the second laser welding mechanism 400 respectively. When the first laser welding mechanism 300 and the second laser welding mechanism 400 are adjusted, the position of the camera 600 is adjusted accordingly, and there is no need to adjust the position of the camera 600 separately afterward.
[0055] The camera 600 primarily captures images of the welding location and displays them on a screen. Furthermore, the camera 600 can be equipped with a high-magnification lens, magnifying the image of the welding location for display. Users can clearly observe the welding effect to prevent incorrect welding placement.
[0056] Furthermore, such as Figure 7 As shown, there can be two displays 700, one for each camera 600, to more intuitively observe the images of the welding positions of the first laser welding mechanism 300 and the second laser welding mechanism 400.
[0057] Of course, it is also possible to set up a display screen 700 to display images of the welding positions of the first laser welding mechanism 300 and the second laser welding mechanism 400 in sections.
[0058] The display screen 700 can be mounted on the frame 100; or, when the aluminum honeycomb panel laser aluminum strip edge banding device is installed on the edge banding machine, the display screen 700 can also be mounted on the frame of the edge banding machine or on other positions of the edge banding machine, so as to facilitate the observation of the image on the display screen and the adjustment of the positions of the first laser welding mechanism 300 and the second laser welding mechanism 400.
[0059] Furthermore, such as Figure 3As shown, the frame 100 is provided with a first guide shaft 110, and a first mounting base 120 is mounted on the first guide shaft 110. The first mounting base 120 can move along the first guide shaft 110 to adjust its position.
[0060] The first mounting base 120 is provided with a second guide shaft 130, and a second mounting base 140 is mounted on the second guide shaft 130. The second mounting base 140 moves along the second guide shaft 130 to adjust its position.
[0061] The first guide shaft 110 and the second guide shaft 130 are perpendicular to each other;
[0062] To enhance installation stability, the first guide shaft 110 is provided with two shafts, extending in the Z direction. Figure 6 In the vertical direction; the second guide shaft 130 is provided with two shafts, extending in the Y direction, as shown below. Figure 6 As shown, by adjusting the position of the first mounting base 120 on the first guide shaft 110, the positions of the pressure roller mechanism 200, the first laser welding mechanism 300, and the second laser welding mechanism 400 in the Z direction are adjusted as a whole; and by adjusting the position of the second mounting base 140 on the second guide shaft 130, the positions of the pressure roller mechanism 200, the first laser welding mechanism 300, and the second laser welding mechanism 400 in the Z direction are adjusted as a whole.
[0063] The adjustment here is a coarse adjustment of the overall position of the pressure roller mechanism 200, the first laser welding mechanism 300, and the second laser welding mechanism 400, to adapt to welding aluminum honeycomb panels 01 of different specifications. The following will further explain how to adjust the position of the pressure roller mechanism 200, the first laser welding mechanism 300, and the second laser welding mechanism 400 independently to achieve correct and high-precision welding.
[0064] As a preferred embodiment of this utility model, such as Figure 1 As shown, the first mounting base 120 is provided with a first adjusting screw 121; the first adjusting screw 121 adjusts the position of the first mounting base 120 on the first guide shaft 110; the second mounting base 140 is provided with a second adjusting screw 141; the second adjusting screw 141 adjusts the position of the second mounting base 140 on the second guide shaft 130.
[0065] A buffer spring 142 is provided on the second adjusting screw 141.
[0066] In use, the position of the first mounting base 120 on the first guide shaft 110 is adjusted by rotating the first adjusting screw 121, and the position of the second mounting base 140 on the second guide shaft 130 is adjusted by rotating the second adjusting screw 141.
[0067] Specifically, such as Figure 6As shown, when the first adjusting screw 121 rotates in the forward direction, the first mounting base 120 moves upward, and when the first adjusting screw 121 rotates in the reverse direction, the first mounting base 120 moves downward; and when the second adjusting screw 141 rotates in the forward direction, the second mounting base 140 moves to the left, and when the second adjusting screw 141 rotates in the reverse direction, the second mounting base 140 moves to the right, so as to adjust the positions of the pressure roller mechanism 200, the first laser welding mechanism 300 and the second laser welding mechanism 400 in the Z and Y directions as a whole.
[0068] The first adjusting screw 121 and the second adjusting screw 141 can be adjusted manually. Optionally, the first adjusting screw 121 and the second adjusting screw 141 can also be connected to a motor for electric adjustment.
[0069] Alternatively, in other embodiments, the first adjusting screw 121 and the second adjusting screw 141 can be replaced with cylinders for electric adjustment.
[0070] In one embodiment, the first laser welding mechanism 300 is mounted on the second mounting base 140 via the first bracket 301; the second laser welding mechanism 400 is mounted on the second mounting base 140 via the second bracket 401 and the angle adjustment plate 402; the second laser welding mechanism 400 adjusts the angle α2 with the first plane via the angle adjustment plate 402.
[0071] Specifically, the angle between the first laser welding head 310 and the first plane is α1, and the angle between the second laser welding head 410 and the first plane is α2, where α1 ≠ α2.
[0072] like Figure 1 , Figure 5 and Figure 6 As shown, the second bracket 401 has no structural limitations, as long as it can be installed on the second mounting base 140. The angle adjustment plate 402 is provided with an arc-shaped groove 4021. The angle adjustment plate 402 is installed on the second bracket 401 through a first pin (not shown in the figure). The angle adjustment plate 402 rotates around the first pin, and the arc-shaped groove 4021 is distributed around the first pin. The second bracket 401 is provided with a limit pin (not shown in the figure). The limit pin is engaged in the arc-shaped groove 4021. When the angle adjustment plate 402 rotates, the limit pin moves along the arc-shaped groove 4021.
[0073] Furthermore, a limit nut or similar device can be provided on the limit pin. After the angle adjustment plate 402 rotates, it is locked to the limit pin by the limit nut, thereby positioning the limit pin in the arc groove 4021. Alternatively, other positioning structures can be provided on the limit pin to ensure that the limit pin is positioned in the arc groove 4021 after the angle adjustment plate 402 rotates.
[0074] Furthermore, the angle adjustment plate 402 can be adjusted manually. As mentioned above, before adjustment, first loosen the limit nut, then manually push the angle adjustment plate 402 to rotate, and then install the limit nut after rotation.
[0075] Optionally, the angle adjustment plate 402 can be adjusted electrically. In this case, the aforementioned limiting nut is removed, the first pin is fixed to the angle adjustment plate 402, and the first pin is connected to the motor. The first pin is rotated by the motor, thereby realizing the rotation of the angle adjustment plate 402.
[0076] Furthermore, such as Figure 1 and Figure 6 As shown, the first laser welding mechanism 300 and the second laser welding mechanism 400 are vertically distributed and arranged opposite each other, with the first laser welding mechanism 300 located at a high position and the second laser welding mechanism 400 located at a low position.
[0077] Optionally, the first laser welding mechanism 300 and the second laser welding mechanism 400 can also be arranged laterally and relative to each other.
[0078] Furthermore, the first laser welding head 310 of the first laser welding mechanism 300 is vertically downward, and the aforementioned first plane refers to... Figure 6 The first laser welding head 310 is in a vertical plane, and the angle α1 between the first laser welding head 310 and the vertical plane is 0°; the angle α1 between the second laser welding head 410 and the vertical plane is any value between 1° and 45°, preferably any one of 5°, 10°, 15°, 20°, 25°, 30°, 35°, 40°, and 45°.
[0079] Furthermore, the laser emission portions of the first laser welding head 310 and the second laser welding head 410 are arranged collinearly, that is, the laser emitted by the first laser welding head 310 and the laser emitted by the second laser welding head 410 are on the same straight line, which is used to ensure that the two welds of the aluminum honeycomb panel 01 are completely aligned; and to ensure the quality of the aluminum honeycomb panel after edge sealing.
[0080] Meanwhile, although the laser emitted by the first laser welding head 310 and the laser emitted by the second laser welding head 410 are on the same straight line, the first laser welding head 310 and the second laser welding head 410 are not directly opposite each other, to prevent damage caused by the first laser welding head 310 and the second laser welding head 410 shooting at each other from above.
[0081] Understandably, such as Figure 4 and Figure 5As shown, the structures of the first laser welding mechanism 300 and the second laser welding mechanism 400 can be the same or different, as long as they can achieve the laser welding function and ensure that the first laser welding head 310 and the second laser welding head 410 are arranged facing each other and the laser emission parts of the first laser welding head 310 and the second laser welding head 410 are arranged collinearly.
[0082] During edge sealing, the first laser welding mechanism 300 and the second laser welding mechanism 400 can simultaneously weld the two gaps at the joint between the aluminum honeycomb panel 01 and the edge sealing strip 02. This effectively avoids the problem of the aluminum honeycomb panel 01 being flipped over and the two gaps being welded one by one, thus preventing the aluminum honeycomb panel 01 and the edge sealing strip 02 from being not firmly connected, which would cause the second weld to be misaligned. This effectively improves welding efficiency and weld quality.
[0083] Furthermore, such as Figure 4 As shown, the first laser welding mechanism 300 includes: a first Z-axis slide 320, a first Y-axis slide 330, a first laser generator 340, a first laser controller 350, and a first laser welding head 310;
[0084] The first Y-axis slide 330 is mounted on the first bracket 301, and the first Z-axis slide 320 is mounted on the first Y-axis slide 330; the first laser generator 340, the first laser controller 350, and the first laser welding head 310 are all mounted on the first Z-axis slide 320.
[0085] The first laser welding head 310 is connected to the first laser generator 340 and is used to guide the laser generated by the first laser generator 340 to be projected to a preset position. The first laser generator 340 is connected to the first laser controller 350 and is used to control the time, intensity and other parameters of the laser generated by the first laser generator 340, as well as to control the on / off state of the first laser generator 340.
[0086] like Figure 6 As shown, the first Z-axis slide 320 is used to adjust the height of the first laser welding head 310 to accommodate aluminum honeycomb panels 01 of different specifications; and the first Y-axis slide 330 is used to adjust the left and right positions of the first laser welding head 310 to accommodate aluminum honeycomb panels 01 and edge sealing strips 02 of different specifications; for example, the first Z-axis slide 320 and the first Y-axis slide 330 are adjusted manually to adjust the position of the first laser welding head 310, specifically by using a screw adjustment method;
[0087] For example, the first Z-axis slide 320 and the first Y-axis slide 330 adjust the position of the first laser welding head 310 electrically. Specifically, the first Z-axis slide 320 and the first Y-axis slide 330 can be configured to adjust their positions by a motor or by a cylinder; furthermore, as Figure 5 As shown, the second laser welding mechanism 400 includes: a second Z-axis slide 420, a second Y-axis slide 430, a second laser generator 440, a second laser controller 450, and a second laser welding head 410;
[0088] The second Y-axis slide 430 is mounted on the angle adjustment plate 402, and the second Z-axis slide 420 is mounted on the second Y-axis slide 430; the second laser generator 440, the second laser controller 450, and the second laser welding head 410 are all mounted on the second Z-axis slide 420.
[0089] The second laser welding head 410 is connected to the second laser generator 440 and is used to guide the laser generated by the second laser generator 440 to be projected to a preset position. The second laser generator 440 is connected to the second laser controller 450 and is used to control the time, intensity and other parameters of the laser generated by the second laser generator 440, as well as to control the on / off state of the second laser generator 440.
[0090] like Figure 6 As shown, the second Z-axis slide 420 is used to adjust the height of the second laser welding head 410 to accommodate aluminum honeycomb panels 01 of different specifications; and the second Y-axis slide 430 is used to adjust the left and right positions of the second laser welding head 410 to accommodate aluminum honeycomb panels 01 and edge sealing strips 02 of different specifications; exemplaryly, the second Z-axis slide 420 and the second Y-axis slide 430 are adjusted manually to adjust the position of the second laser welding head 410, specifically by using a screw adjustment method;
[0091] For example, the second Z-axis slide 420 and the second Y-axis slide 430 adjust the position of the second laser welding head 410 electrically. Specifically, the second Z-axis slide 420 and the second Y-axis slide 430 can be set to adjust the position by a motor or by a cylinder. In use, the position of the first laser welding head 310 is adjusted by the first Z-axis slide 320 and the first Y-axis slide 330, and the position of the second laser welding head 410 is adjusted by the second Z-axis slide 420 and the second Y-axis slide 430, so that the laser emission parts of the first laser welding head 310 and the second laser welding head 410 are collinear.
[0092] Furthermore, when the positions of the first laser welding mechanism 300 and the second laser welding mechanism 400 are adjusted manually, the image of the welding position is magnified and projected onto the display screen. By observing the magnified image on the display screen, the user can more clearly observe the current welding position and determine whether the current welding position is accurate. If it is not accurate, the user can continue to manually drive the first laser welding mechanism 300 and the second laser welding mechanism 400 to fine-tune the position until it is adjusted to the accurate position.
[0093] Alternatively, after the first laser welding mechanism 300 and the second laser welding mechanism 400 are adjusted electrically, they can continue to be fine-tuned manually. By observing the magnified image on the display screen, the user can more clearly observe the current welding position and determine whether the current welding position is accurate. If it is not accurate, the user can continue to manually drive the first laser welding mechanism 300 and the second laser welding mechanism 400 to fine-tune the position until it is adjusted to the accurate position.
[0094] In one embodiment, the pressure roller mechanism 200 further includes: a third bracket 230; the third bracket 230 is mounted on the second mounting base 140; the pressure roller 210 is mounted on the third bracket 230 via a pressure shaft 240;
[0095] Furthermore, the adjusting member 220 is an adjusting screw; the adjusting member 220 is perpendicular to the pressure belt shaft 240; the adjusting member 220 adjusts the position of the pressure belt wheel 210 in the Y direction, and the pressure belt shaft 240 adjusts the position of the pressure belt wheel 210 in the Z direction.
[0096] like Figure 6 As shown, when the adjusting member 220 rotates in the forward direction, it drives the third bracket 230 to move to the left; when the adjusting member 220 rotates in the reverse direction, it drives the third bracket 230 to move to the right, so as to adjust the position of the pressure roller 210.
[0097] The pressure shaft 240 is a screw, and the height of the pressure roller 210 is adjusted by rotating the pressure shaft 240 so that the pressure roller 210 presses the edge sealing strip 02 of different specifications.
[0098] In this embodiment, the rotation of the pressure belt shaft 240 is controlled manually. Alternatively, it may be controlled electrically by connecting the pressure belt shaft 240 to a motor.
[0099] In this embodiment, the positions of the first mounting base 120, the second mounting base 140, the first laser welding mechanism 300, and the second laser welding mechanism 400 are adjusted. If the adjustment is controlled electrically, a sensor is correspondingly provided on the aluminum honeycomb panel laser aluminum strip edge sealing device to detect the adjusted position and achieve full automation.
[0100] The aluminum honeycomb panel sealing device of this utility model can be installed on an automatic edge banding machine. During the laser welding process through the first laser welding mechanism 300 and the second laser welding mechanism 400, the aluminum honeycomb panel 01 is driven to move by the transmission mechanism of the automatic edge banding machine to achieve straight welding or intermittent spot welding, and finally achieves welding and sealing of the aluminum honeycomb panel 01 and the edge banding strip 02.
[0101] The above description of the disclosed embodiments enables those skilled in the art to make or use the present invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of the present invention. Therefore, the present invention is not to be limited to the embodiments shown herein, but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.
[0102] Furthermore, the technical solutions of the various embodiments of this utility model can be combined with each other, but only if they are based on the ability of those skilled in the art to implement them. When the combination of technical solutions is contradictory or cannot be implemented, it should be considered that such combination of technical solutions does not exist and is not within the scope of protection claimed by this utility model.
Claims
1. A laser-sealed aluminum strip device for aluminum honeycomb panels, characterized in that: include: Rack (100); The pressure roller mechanism (200) includes a pressure roller (210) and an adjusting member (220); the pressure roller (210) presses the edge sealing strip (02) against the aluminum honeycomb panel (01), and the edge sealing strip (02) contacts the peripheral side surface of the pressure roller (210); the adjusting member (220) adjusts the position of the pressure roller (210) so that the pressure roller (210) presses against the edge sealing strip (02); A first laser welding mechanism (300) and a second laser welding mechanism (400), wherein the first laser welding mechanism (300) includes a first laser welding head (310) and the second laser welding mechanism (400) includes a second laser welding head (410), and the first laser welding head (310) and the second laser welding head (410) are arranged opposite to each other; the first laser welding head (310) welds the first side of the edge sealing strip (02) to the aluminum honeycomb panel (01), and the second laser welding head (410) welds the second side of the edge sealing strip (02) to the aluminum honeycomb panel (01); A camera (600) and a display screen are provided, with a camera (600) respectively corresponding to the first laser welding head (310) and the second laser welding head (410), and the display screen is connected to the camera (600) and plays the image of the camera (600); The pressure roller (210) is located between the first laser welding head (310) and the second laser welding head (410); The pressure roller mechanism (200), the first laser welding mechanism (300), and the second laser welding mechanism (400) are assembled on the frame (100).
2. The laser aluminum strip edge sealing device for aluminum honeycomb panels according to claim 1, characterized in that: The frame (100) is provided with a first guide shaft (110), and a first mounting seat (120) is mounted on the first guide shaft (110). The first mounting seat (120) can move along the first guide shaft (110) to adjust its position. The first mounting base (120) is provided with a second guide shaft (130), the second guide shaft (130) is mounted with a second mounting base (140), and the second mounting base (140) moves along the second guide shaft (130) to adjust its position; The first guide shaft (110) and the second guide shaft (130) are perpendicular to each other.
3. The laser aluminum strip edge sealing device for aluminum honeycomb panels according to claim 2, characterized in that: The first mounting base (120) is provided with a first adjusting screw (121); the first adjusting screw (121) adjusts the position of the first mounting base (120) on the first guide shaft (110); The second mounting base (140) is provided with a second adjusting screw (141); the second adjusting screw (141) adjusts the position of the second mounting base (140) on the second guide shaft (130).
4. The laser aluminum strip edge sealing device for aluminum honeycomb panels according to claim 2, characterized in that: The first laser welding mechanism (300) is mounted on the second mounting base (140) via the first bracket (301); the second laser welding mechanism (400) is mounted on the second mounting base (140) via the second bracket (401) and the angle adjustment plate (402); the second laser welding mechanism (400) adjusts the angle α2 with the first plane via the angle adjustment plate (402).
5. The laser aluminum strip edge sealing device for aluminum honeycomb panels according to claim 4, characterized in that: The angle between the first laser welding head (310) and the first plane is α1, and the angle between the second laser welding head (410) and the first plane is α2, where α1 ≠ α2.
6. The laser aluminum strip edge sealing device for aluminum honeycomb panels according to claim 1, characterized in that: The laser emission portions of the first laser welding head (310) and the second laser welding head (410) are arranged collinearly.
7. The laser aluminum strip edge sealing device for aluminum honeycomb panels according to claim 2, characterized in that: The pressure roller mechanism (200) further includes: a third bracket (230); the third bracket (230) is mounted on the second mounting base (140); the pressure roller (210) is mounted on the third bracket (230) via a pressure shaft (240).
8. The laser aluminum strip edge sealing device for aluminum honeycomb panels according to claim 7, characterized in that: The adjusting component (220) is an adjusting screw; the adjusting component (220) is perpendicular to the pressure belt shaft (240); the adjusting component (220) adjusts the position of the pressure belt wheel (210) in the Y direction, and the pressure belt shaft (240) adjusts the position of the pressure belt wheel (210) in the Z direction.
9. The laser aluminum strip edge sealing device for aluminum honeycomb panels according to claim 1, characterized in that: The first laser welding mechanism (300) includes: a first Z-axis slide (320), a first Y-axis slide (330), a first laser generator (340), a first laser controller (350), and a first laser welding head (310); The first Y-axis slide (330) is mounted on the first bracket (301), and the first Z-axis slide (320) is mounted on the first Y-axis slide (330); the first laser generator (340), the first laser controller (350) and the first laser welding head (310) are all mounted on the first Z-axis slide (320).
10. The laser aluminum strip edge sealing device for aluminum honeycomb panels according to claim 4, characterized in that: The second laser welding mechanism (400) includes: a second Z-axis slide (420), a second Y-axis slide (430), a second laser generator (440), a second laser controller (450), and a second laser welding head (410); The second Y-axis slide (430) is mounted on the angle adjustment plate (402), and the second Z-axis slide (420) is mounted on the second Y-axis slide (430); the second laser generator (440), the second laser controller (450), and the second laser welding head (410) are all mounted on the second Z-axis slide (420).