Honeycomb plate hot laminating forming device

By setting a limiting device and a shielding plate in the honeycomb plate thermal lamination forming device, the problem of position offset and cleanliness of the hot press chamber during the transmission process is solved, and a more efficient hot pressing lamination and a cleaner working environment are achieved.

CN222946336UActive Publication Date: 2025-06-06FOSHAN UBAINO DECORATION MATERIALS CO LTD
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Patent Information

Application Number
CN202422139878.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-02
Publication Date
2025-06-06
Estimated Expiration
2034-09-02

AI Technical Summary

Technical Problem

During the transportation process, due to the friction and vibration between honeycomb cardboards, the cardboard position may be offset, affecting the hot pressing and bonding effect; at the same time, the hot pressing chamber lacks shielding when it is not in use, and dust or debris are prone to enter, affecting the cleanliness and the quality of the hot pressing.

Method used

A honeycomb plate thermal lamination forming device is designed, and the limit fixation of the material to be pressed is achieved by setting an L-shaped press rod, assembly plate and limit block to prevent position deviation. At the same time, a hot press casing shield is used to block the hot press casing when no hot pressing is required to prevent dust and impurities from entering.

Benefits of technology

It effectively prevents the positional deviation of the honeycomb cardboard during the transmission process, improves the efficiency and effect of hot pressing and bonding; at the same time, the cleanliness of the hot pressing chamber is maintained, ensuring the hot pressing quality of the subsequent honeycomb board.

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Abstract

The utility model discloses a honeycomb plate thermal lamination forming device which comprises a hot-pressing bin conveying table, the left side and the right side of the hot-pressing bin conveying table are fixedly connected with conveying tables respectively, the top of the hot-pressing bin conveying table is fixedly connected with a hot-pressing bin, and the two sides of the front side of the hot-pressing bin are fixedly connected with hot-pressing bin shielding plates respectively. Two assembling plates are fixedly connected to the top of the conveying table on the left side, by arranging an L-shaped pressing rod, the assembling plates and a limiting block, the device can limit and fix a material to be pressed, the material is prevented from shifting in the process of conveying the material to hot pressing, the pressing efficiency is improved, the positions of the L-shaped pressing rod and the limiting block can be controlled through a lead screw, and the assembling efficiency is improved. The paperboard conveying device is simple in structure and convenient to adjust according to the size of a material, the practicability of the device is improved, and the problem that in the conveying process, due to friction and vibration between paperboards, the positions of the paperboards are likely to deviate, and the hot-pressing attaching effect is affected is solved.
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Description

Technical Field

[0001] The utility model relates to the technical field of honeycomb panels, in particular to a honeycomb panel thermal bonding molding device. Background Art

[0002] Honeycomb panels are divided into buffer honeycomb panels and packaging honeycomb panels according to their functions. Due to its special structure, it can improve compressive strength, and paper honeycomb panels can reduce costs. The apertures of honeycomb panels are generally divided into 8mm, 16mm, and 32mm sizes, and paper honeycomb panels weigh 280 grams per square meter. Paper honeycomb panels can be used to make various types of pallets, pads, packaging boards, packaging boxes, etc. Paper honeycomb panels are a new type of green packaging material that has emerged in developed countries to save resources, protect the ecological environment, and have low costs. It has many advantages such as lightness, strength, stability, heat preservation, heat insulation, and shock resistance. In terms of volume, it can be as small as 0.4 cubic meters and as large as 6 cubic meters. The load capacity is 1 kilogram for the lightest and 2,500 kilograms for the heaviest;

[0003] According to the patent document: CN216708419U discloses a plastic honeycomb panel thermal bonding molding device, including: a first anti-sticking roller is arranged in parallel with a first frosted roller, and a first sheet forming space is provided between the first frosted roller; a first mold is arranged on the feeding side of the first sheet forming space; a honeycomb roller is arranged in parallel with the discharging side of the first sheet forming space, and a second sheet forming space is provided between the first frosted roller; a second mold is arranged on the feeding side of the second sheet forming space; a second anti-sticking roller is arranged in parallel with the second frosted roller, and a third sheet forming space is provided between the second frosted roller; a third mold is arranged on the feeding side of the third sheet forming space; a third anti-sticking roller is arranged on the discharging side of the third sheet forming space, and a fourth sheet forming space is provided between the second frosted roller. The effect is: each panel in the obtained plastic honeycomb panel has a strong bonding force with the honeycomb core panel, the panel surface is flat, and each support body on the honeycomb core panel will not appear on the panel, and the appearance is good.

[0004] Generally, honeycomb panels are hot-pressed and bonded by high-frequency composite presses. Generally, workers first assemble the honeycomb paperboards on a conveyor table, and then start the conveyor table to convey them to the hot pressing chamber for hot pressing and bonding. However, the conveyor table for assembling the honeycomb paperboards is not equipped with a device to limit the assembled hot pressing paperboards. During the transmission process, the friction and vibration between the paperboards may cause the position of the paperboards to shift, thereby affecting the effect of hot pressing and bonding. In addition, when the honeycomb paperboards do not need to be hot-pressed, the hot pressing chamber keeps both ends open. When hot pressing is not required, there are no shielding objects to block the entrances and exits on both sides. Dust or debris may float into the hot pressing chamber for a long time, affecting the cleanliness of the hot pressing chamber, and may even affect the hot pressing quality of subsequent honeycomb panels. Utility Model Content

[0005] The purpose of the utility model is to provide a honeycomb board hot-bonding molding device to solve the problem that the conveying platform for assembling the honeycomb paperboard proposed in the above background technology is not provided with a device for limiting the assembled hot-pressed paperboard. During the conveying process, the friction and vibration between the paperboards may cause the position of the paperboard to shift, thereby affecting the effect of hot-pressing and bonding. In addition, when the honeycomb paperboard is not required to be hot-pressed, the hot-pressing chamber always keeps both ends open. When hot-pressing is not required, no shielding is used to block the entrance and exit on both sides. Dust or debris may float into the hot-pressing chamber for a long time, affecting the cleanliness of the hot-pressing chamber, and may even affect the hot-pressing quality of the subsequent honeycomb panels.

[0006] To achieve the above-mentioned purpose, the utility model provides the following technical solutions: a honeycomb panel thermal bonding molding device, comprising a hot pressing warehouse conveying platform, the left and right sides of the hot pressing warehouse conveying platform are respectively fixedly connected with conveying platforms, the top of the hot pressing warehouse conveying platform is fixedly connected with a hot pressing warehouse, the front sides of the hot pressing warehouse are respectively fixedly connected with hot pressing warehouse shielding plates, and the top of the left conveying platform is fixedly connected with two assembly plates;

[0007] The conveying platform on the left side includes two conveying platform side panels, and the left and right sides of the bottom of the two conveying platform side panels are respectively fixedly connected with support legs, and the opposite surfaces of the two conveying platform side panels are movably connected with tracks, and the opposite surfaces of the two conveying platform side panels are provided with sliding grooves, and the inner walls of the two sliding grooves are fixedly connected with sliding rods, and the inner walls of the two sliding grooves are slidably connected with fixed frames.

[0008] Preferably, the two fixing frames each include a slider, the inner walls of the two sliders are slidably connected to the outer wall of the slide rod, the outer walls of the two sliders are slidably connected to the inner wall of the slide groove, and the opposite surfaces of the two sliders extend to the outer wall of the slide groove and are fixedly connected to an L-shaped frame.

[0009] Preferably, the opposite sides of the two L-shaped frames are provided with fixed frame slide grooves, the tops of the two L-shaped frames are fixedly connected to motor placement blocks, the inner walls of the two motor placement blocks are fixedly connected to motors, the output ends of the two motors extend to the upper bottom of the L-shaped frame and are fixedly connected to screw rods, the opposite sides of the two L-shaped frames away from the fixed frame slide groove are fixedly connected to connecting plates, the bottoms of the two screw rods are movably connected to the top of the connecting plate, the outer walls of the two screw rods are threadedly connected to transmission rods, the opposite surfaces of the two transmission rods are slidably connected to the inner wall of the fixed frame slide groove, and the opposite surfaces of the two transmission rods are fixedly connected to L-shaped pressure rods.

[0010] Preferably, the two assembly plates include an assembly plate body, the bottoms of the two assembly plate bodies are respectively fixedly connected to the two sides of the top of the crawler track, the left sides of the two assembly plate bodies are fixedly connected with a dual-axis motor placement bin, the front and rear sides of the top of the two assembly plate bodies are respectively provided with assembly plate slide grooves, the inner walls of the two dual-axis motor placement bins are fixedly connected with the dual-axis motor, the front and rear output ends of the two dual-axis motors are respectively fixedly connected with conical teeth, the two groups of conical teeth are meshed with the second conical teeth on the side away from the dual-axis motor, the inner walls of the two groups of the second conical teeth are fixedly connected with assembly plate screws, the right ends of the two groups of assembly plate screws extend to the inner wall of the assembly plate slide groove opened by the assembly plate body and are movably connected to the right side of the inner wall of the assembly plate slide groove.

[0011] Preferably, the outer walls of the two groups of assembly plate screw rods are threadedly connected to the limited position frame transmission blocks, the tops of the two groups of limit frame transmission blocks extend to the outer wall of the assembly plate slide groove and the opposite surfaces are fixedly connected to the limited position block slide plate, the left sides of the two front side limit frame transmission blocks are fixedly connected to the limited position frame motor placement block, the left sides of the two rear side limit frame transmission blocks are fixedly connected to the screw rod connecting blocks, the inner walls of the two limit frame motor placement blocks are fixedly connected to the limited position frame motors, the output ends of the two limit frame motors are fixedly connected to the limited position block screw rods, the rear ends of the two limit block screw rods are movably connected to the front side of the screw rod connecting block, the front and rear sides of the outer walls of the two limit block screw rods are threadedly connected to the limited position block transmission blocks, and the two limit block slide plates are provided with limit block slide grooves running through both sides, and the right sides of the two groups of limit block transmission blocks extend to the right side of the limit block slide plate through the limit block slide groove and are fixedly connected to the limit block.

[0012] Preferably, the two hot press chamber baffles each include a hot press chamber baffle body, the opposite surfaces of the two hot press chamber baffle bodies are respectively fixedly connected to the front and rear sides of the hot press chamber, the top left and right sides of the two hot press chamber baffle bodies are fixedly connected with a baffle transmission bin, and the inner walls of the two hot press chamber baffle bodies are fixedly connected with a baffle dual-axis motor.

[0013] Preferably, the left and right output ends of the two baffle plate dual-axis motors are respectively fixedly connected with baffle plate conical teeth, and the two groups of baffle plate conical teeth are engaged with the second conical teeth of the baffle plate on the side away from the baffle plate dual-axis motor, and the inner walls of the two groups of the second conical teeth of the baffle plate are fixedly connected with baffle plate screws, the tops of the two groups of baffle plate screws extend to the inner wall of the baffle plate transmission bin and are movably connected to the top of the inner wall of the baffle plate transmission bin, the outer walls of the two groups of baffle plate screws are threadedly connected with two baffle plate transmission blocks, the opposite surfaces of the two groups of baffle plate transmission blocks extend to the outer wall of the baffle plate transmission bin and are fixedly connected with the baffles, and the opposite surfaces of the two baffles are respectively slidably connected to the left and right sides of the hot pressing bin.

[0014] Compared with the prior art, the beneficial effects of the utility model are:

[0015] 1. By providing an L-shaped pressure rod, an assembly plate, and a limit block, the device can limit and fix the material to be pressed, prevent the material from shifting during the process of being conveyed to the hot pressing, and improve the pressing efficiency. The position of the L-shaped pressure rod and the limit block can be controlled by a screw rod, which is convenient for adjustment according to the size of the material, thereby improving the practicality of the device and solving the problem that the position of the cardboard may shift due to friction and vibration between the cardboards during the conveying process, thereby affecting the effect of hot pressing.

[0016] 2. By providing a hot pressing chamber shielding plate and a hot pressing chamber, when the device is not working, the hot pressing chamber shielding plate can shield the hot pressing chamber to prevent dust and impurities from entering the hot pressing chamber, thereby ensuring the cleanliness of the hot pressing chamber and improving the hot pressing effect. At the same time, the hot pressing chamber shielding plate can control its position through a screw rod, which is convenient for opening and closing when the device is working, improving the convenience of the device, and solving the problem that when the honeycomb paperboard does not need to be hot pressed, the hot pressing chamber always keeps both ends open, and when hot pressing is not required, there is no shielding to block the entrance and exit on both sides, and dust or debris may float into the hot pressing chamber for a long time, affecting the cleanliness of the hot pressing chamber, and may even affect the hot pressing quality of the subsequent honeycomb board. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 It is a schematic diagram of the main three-dimensional structure of the utility model;

[0018] Figure 2 It is a schematic diagram of the three-dimensional structure of the transmission platform of the utility model;

[0019] Figure 3 It is a three-dimensional structural schematic diagram of the fixing frame of the utility model;

[0020] Figure 4 It is a three-dimensional cross-sectional structural schematic diagram of the assembly plate of the utility model;

[0021] Figure 5 It is a schematic diagram of the three-dimensional structure of the hot pressing chamber shielding plate of the utility model.

[0022] In the figure: 1, hot press chamber conveyor; 2, hot press chamber; 3, hot press chamber baffle; 31, hot press chamber baffle body; 32, baffle double-axis motor; 33, baffle conical gear; 34, baffle second conical gear; 35, baffle transmission chamber; 36, baffle screw; 37, baffle transmission block; 38, baffle; 4, conveyor; 41, conveyor side plate; 42, crawler; 43, support leg; 44, slide; 45, fixed frame; 451, slider; 452, L-shaped frame; 453, fixed frame slide; 454, motor placement block; 455, motor; 456, Screw rod; 457, transmission rod; 458, L-shaped pressure rod; 459, connecting plate; 46, sliding rod; 5, assembly plate; 51, assembly plate body; 52, dual-axis motor placement bin; 53, dual-axis motor; 54, conical teeth; 55, second conical teeth; 56, assembly plate slide; 57, assembly plate screw; 58, limit frame transmission block; 59, limit frame motor placement block; 510, limit frame motor; 511, limit block screw; 512, screw rod connecting block; 513, limit block slide; 514, limit block slide; 515, limit block; 516, limit block transmission block. DETAILED DESCRIPTION

[0023] The following will be combined with the drawings in the embodiments of the utility model to clearly and completely describe the technical solutions in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all of the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model.

[0024] See also Figure 1-5 The utility model provides a technical solution: a honeycomb panel thermal bonding molding device, including a hot pressing chamber conveying platform 1, the left and right sides of the hot pressing chamber conveying platform 1 are respectively fixedly connected with conveying platforms 4, the top of the hot pressing chamber conveying platform 1 is fixedly connected with a hot pressing chamber 2, the front sides of the hot pressing chamber 2 are respectively fixedly connected with hot pressing chamber shielding plates 3, and the top of the left conveying platform 4 is fixedly connected with two assembling plates 5.

[0025] See also Figure 2-4The left conveyor platform 4 includes two conveyor platform side plates 41, and the left and right sides of the bottom of the two conveyor platform side plates 41 are respectively fixedly connected with support legs 43, and the opposite surfaces of the two conveyor platform side plates 41 are movably connected with crawlers 42. The opposite surfaces of the two conveyor platform side plates 41 are provided with slide grooves 44, and the inner walls of the two slide grooves 44 are fixedly connected with slide rods 46. The inner walls of the two slide grooves 44 are slidably connected with fixed frames 45, and the two fixed frames 45 include sliders 451. The inner walls of the two sliders 451 are slidably connected to the outer walls of the slide rods 46, and the outer walls of the two sliders 451 are slidably connected to the inner walls of the slide grooves 44. The opposite surfaces of the two sliders 451 extend to the outer walls of the slide grooves 44 and are fixedly connected with L-shaped frames 452. The opposite surfaces of the two L-shaped frames 452 A fixed frame slot 453 is provided, the tops of the two L-shaped frames 452 are fixedly connected with motor placement blocks 454, the inner walls of the two motor placement blocks 454 are fixedly connected with motors 455, the output ends of the two motors 455 extend to the upper bottom of the L-shaped frame 452 and are fixedly connected with screw rods 456, the opposite sides of the two L-shaped frames 452 away from the side of the fixed frame slot 453 are fixedly connected with connecting plates 459, the bottoms of the two screw rods 456 are movably connected to the top of the connecting plate 459, the outer walls of the two screw rods 456 are threadedly connected with transmission rods 457, the opposite surfaces of the two transmission rods 457 are slidably connected to the inner wall of the fixed frame slot 453, the opposite surfaces of the two transmission rods 457 are fixedly connected with L-shaped pressure rods 458, and the two Each assembly plate 5 includes an assembly plate body 51, the bottoms of the two assembly plate bodies 51 are respectively fixedly connected to the top two sides of the crawler 42, the left sides of the two assembly plate bodies 51 are fixedly connected with a dual-axis motor placement bin 52, the front and rear sides of the tops of the two assembly plate bodies 51 are respectively provided with assembly plate slide grooves 56, the inner walls of the two dual-axis motor placement bins 52 are fixedly connected with dual-axis motors 53, the front and rear output ends of the two dual-axis motors 53 are respectively fixedly connected with conical teeth 54, the two sets of conical teeth 54 are meshed with second conical teeth 55 on one side away from the dual-axis motor 53, the inner walls of the two sets of second conical teeth 55 are fixedly connected with assembly plate screws 57, and the right ends of the two sets of assembly plate screws 57 extend to the assembly plate slide grooves 56 opened in the assembly plate body 51 6 inner wall and are movably connected to the right side of the inner wall of the assembly plate slide 56, the outer walls of the two groups of assembly plate screw rods 57 are threadedly connected to the limit frame transmission block 58, the tops of the two groups of limit frame transmission blocks 58 extend to the outer wall of the assembly plate slide 56 and the opposite surfaces are fixedly connected to the limit block slide plate 513, the left sides of the two front limit frame transmission blocks 58 are fixedly connected to the limit frame motor placement block 59, the left sides of the two rear limit frame transmission blocks 58 are fixedly connected with the screw rod connection block 512, the inner walls of the two limit frame motor placement blocks 59 are fixedly connected to the limit frame motor 510, the output ends of the two limit frame motors 510 are fixedly connected to the limit block screw rod 511, and the rear ends of the two limit block screw rods 511 are movably connected to the front side of the screw rod connection block 512.The front and rear sides of the outer walls of the two limit block screw rods 511 are both threadedly connected to the limit block transmission blocks 516, and the two limit block slide plates 513 are each provided with limit block slots 514 running through both sides. The right sides of the two sets of limit block transmission blocks 516 extend to the right side of the limit block slide plate 513 through the limit block slots 514 and are fixedly connected to the limit block 515;

[0026] When it is necessary to hot press the assembled honeycomb panel, it is first placed on the top of the assembly panel body 51, and then the limit frame motor 510 is started. The limit frame motor 510 drives the limit block screw rod 511 to rotate. Since the limit block screw rod 511 is threadedly connected to the limit block transmission block 516, the limit block transmission block 516 will move forward and backward along it under the rotation of the limit block screw rod 511, thereby driving the limit block 515 to move forward and backward, and the honeycomb panel placed on the top of the assembly panel body 51 is limited and fixed. At the same time, the dual-axis motor 53 is started. The dual-axis motor 53 drives the conical gear 54 to rotate, and the conical gear 54 is engaged with the second conical gear 55. Therefore, the second conical gear 55 will drive the assembly panel screw rod 57 to rotate. Since the assembly panel screw rod 57 is threadedly connected to the limit frame transmission block 58, the limit frame transmission block 58 will move up and down along it under the rotation of the assembly panel screw rod 57, thereby driving the limit block slide plate. 513 and the limit block 515 move up and down to further adjust the position of the honeycomb panel. When the position of the honeycomb panel is adjusted, the motor 455 is started, and the motor 455 drives the screw rod 456 to rotate. Since the screw rod 456 is threadedly connected to the transmission rod 457, the transmission rod 457 will move left and right along the screw rod 456 under the rotation of the screw rod 456, thereby driving the L-shaped pressure rod 458 to move downward and press to the top of the double-axis motor placement bin 52, and then the crawler 42 is used to start the transmission of the assembly panel body 51 and the honeycomb panel fixed on the top to the inner wall of the hot pressing bin 2. When it is transmitted to the connection with the hot pressing bin conveying platform 1, the motor 455 is reversed to release the limit on the assembly panel body 51, and the limit frame motor 510 is reversed to release the limit on the honeycomb panel. The double-axis motor 53 continues to start so that the limit block slide plate 513 pushes the honeycomb panel into the top of the hot pressing bin conveying platform 1 and is transmitted from the hot pressing bin conveying platform 1 to the inner wall of the hot pressing bin 2 for alignment and hot pressing.

[0027] See also Figure 5 and Figure 1The two hot press chamber baffle plates 3 each include a hot press chamber baffle plate body 31, the opposite surfaces of the two hot press chamber baffle plate bodies 31 are respectively fixedly connected to the front and rear sides of the hot press chamber 2, the top left and right sides of the two hot press chamber baffle plate bodies 31 are fixedly connected with baffle plate transmission bins 35, the inner walls of the two hot press chamber baffle plate bodies 31 are fixedly connected with baffle plate dual-axis motors 32, the left and right side output ends of the two baffle plate dual-axis motors 32 are respectively fixedly connected with baffle plate conical teeth 33, and the two sets of baffle plate conical teeth 33 are meshed away from the side of the baffle plate dual-axis motor 32 The second conical teeth 34 of the baffle plates are closed, and the inner walls of the two groups of the second conical teeth 34 of the baffle plates are fixedly connected with baffle plate screw rods 36. The tops of the two groups of baffle plate screw rods 36 extend to the inner wall of the baffle plate transmission bin 35 and are movably connected to the top of the inner wall of the baffle plate transmission bin 35. The outer walls of the two groups of baffle plate screw rods 36 are threadedly connected with two baffle plate transmission blocks 37. The opposite surfaces of the two groups of baffle plate transmission blocks 37 extend to the outer wall of the baffle plate transmission bin 35 and are fixedly connected with baffles 38. The opposite surfaces of the two baffle plates 38 are slidably connected to the left and right sides of the hot pressing bin 2 respectively.

[0028] When hot pressing is not needed, the baffle plate dual-axis motor 32 is started, and the baffle plate dual-axis motor 32 drives the baffle plate conical teeth 33 to rotate, and the baffle plate conical teeth 33 are engaged with the baffle plate second conical teeth 34, so the baffle plate second conical teeth 34 will drive the baffle plate screw rod 36 to rotate. Since the baffle plate screw rod 36 is threadedly connected to the baffle plate transmission block 37, the baffle plate transmission block 37 will move up and down along the baffle plate screw rod 36 under the rotation of the baffle plate screw rod 36, thereby driving the baffle plate 38 to move up and down, so that the two baffle plates 38 move relative to each other to block the left and right inner walls of the hot pressing chamber 2, thereby blocking the hot pressing chamber 2, reducing heat dissipation, and saving energy.

[0029] Working principle: When using the device, when it is necessary to hot-press the assembled honeycomb panel, first place it on the top of the assembly panel body 51, and then start the limit frame motor 510. The limit frame motor 510 drives the limit block screw rod 511 to rotate. Since the limit block screw rod 511 is threadedly connected to the limit block transmission block 516, the limit block transmission block 516 will move forward and backward along it under the rotation of the limit block screw rod 511, thereby driving the limit block 515 to move forward and backward, and the honeycomb panel placed on the top of the assembly panel body 51 is limited and fixed. At the same time, start the dual-axis motor 53, the dual-axis motor 53 drives the conical gear 54 to rotate, and the conical gear 54 is engaged with the second conical gear 55, so the second conical gear 55 will drive the assembly panel screw rod 57 to rotate, and since the assembly panel screw rod 57 is threadedly connected to the limit frame transmission block 58, the limit frame transmission block 58 will move up and down along it under the rotation of the assembly panel screw rod 57, thereby driving The movable limit block slide plate 513 and the limit block 515 move up and down to further adjust the position of the honeycomb panel. When the position of the honeycomb panel is adjusted, the motor 455 is started, and the motor 455 drives the screw rod 456 to rotate. Since the screw rod 456 is threadedly connected to the transmission rod 457, the transmission rod 457 will move left and right along the screw rod 456 under the rotation of the screw rod 456, thereby driving the L-shaped pressure rod 458 to move downward and press to the top of the double-axis motor placement bin 52, and then start to convey the assembly panel body 51 and the honeycomb panel fixed on the top to the inner wall of the hot pressing bin 2 through the crawler 42. When conveyed to the connection with the hot pressing bin conveying platform 1, the motor 455 is reversed to release the limit on the assembly panel body 51, and the limit frame motor 510 is reversed to release the limit on the honeycomb panel. The double-axis motor 53 continues to start so that the limit block slide plate 513 pushes the honeycomb panel into the top of the hot pressing bin conveying platform 1 and is conveyed by the hot pressing bin conveying platform 1 to the inner wall of the hot pressing bin 2 for alignment and hot pressing;

[0030] When hot pressing is not needed, the baffle plate dual-axis motor 32 is started, and the baffle plate dual-axis motor 32 drives the baffle plate conical teeth 33 to rotate, and the baffle plate conical teeth 33 are engaged with the baffle plate second conical teeth 34, so the baffle plate second conical teeth 34 will drive the baffle plate screw rod 36 to rotate. Since the baffle plate screw rod 36 is threadedly connected to the baffle plate transmission block 37, the baffle plate transmission block 37 will move up and down along the baffle plate screw rod 36 under the rotation of the baffle plate screw rod 36, thereby driving the baffle plate 38 to move up and down, so that the two baffle plates 38 move relative to each other to block the left and right inner walls of the hot pressing chamber 2, thereby blocking the hot pressing chamber 2, reducing heat dissipation, and saving energy.

[0031] The above is the working process of the entire device, and the contents not described in detail in this specification belong to the existing technology known to professional and technical personnel in this field.

[0032] Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A honeycomb panel thermal bonding molding device, comprising a hot pressing chamber conveying platform (1), characterized in that: The left and right sides of the hot pressing warehouse conveying platform (1) are respectively fixedly connected with conveying platforms (4), the top of the hot pressing warehouse conveying platform (1) is fixedly connected with the hot pressing warehouse (2), the front sides of the hot pressing warehouse (2) are respectively fixedly connected with hot pressing warehouse shielding plates (3), and the top of the conveying platform (4) on the left side is fixedly connected with two assembly plates (5); The conveying platform (4) on the left side includes two conveying platform side panels (41), and the left and right sides of the bottom of the two conveying platform side panels (41) are respectively fixedly connected with support legs (43), and the opposite surfaces of the two conveying platform side panels (41) are movably connected with tracks (42), and the opposite surfaces of the two conveying platform side panels (41) are both provided with sliding grooves (44), and the inner walls of the two sliding grooves (44) are both fixedly connected with sliding rods (46), and the inner walls of the two sliding grooves (44) are both slidably connected with fixed frames (45).

2. A honeycomb panel thermal bonding molding device according to claim 1, characterized in that: The two fixing frames (45) each include a slider (451), the inner walls of the two sliders (451) are slidably connected to the outer wall of the slide rod (46), the outer walls of the two sliders (451) are slidably connected to the inner wall of the slide groove (44), and the opposite surfaces of the two sliders (451) extend to the outer wall of the slide groove (44) and are fixedly connected to an L-shaped frame (452).

3. A honeycomb panel thermal bonding molding device according to claim 2, characterized in that: The opposite sides of the two L-shaped frames (452) are provided with fixed frame slide grooves (453), the tops of the two L-shaped frames (452) are fixedly connected with motor placement blocks (454), the inner walls of the two motor placement blocks (454) are fixedly connected with motors (455), the output ends of the two motors (455) extend to the upper bottom of the L-shaped frame (452) and are fixedly connected with screw rods (456), and the opposite sides of the two L-shaped frames (452) are far away. A connecting plate (459) is fixedly connected to one side away from the fixed frame slide groove (453), the bottoms of the two screw rods (456) are movably connected to the top of the connecting plate (459), the outer walls of the two screw rods (456) are threadedly connected to a transmission rod (457), the opposite surfaces of the two transmission rods (457) are slidably connected to the inner wall of the fixed frame slide groove (453), and the opposite surfaces of the two transmission rods (457) are fixedly connected to an L-shaped pressure rod (458).

4. A honeycomb panel thermal bonding molding device according to claim 1, characterized in that: The two assembly plates (5) each include an assembly plate body (51), the bottoms of the two assembly plate bodies (51) are respectively fixedly connected to the top two sides of the crawler (42), the left sides of the two assembly plate bodies (51) are respectively fixedly connected to a dual-axis motor placement bin (52), the front and rear sides of the tops of the two assembly plate bodies (51) are respectively provided with assembly plate slide grooves (56), the inner walls of the two dual-axis motor placement bins (52) are respectively fixedly connected to a dual-axis motor (53), and the two dual-axis motors (53) are fixedly connected to the inner walls of the two dual-axis motor placement bins (52). The front and rear output ends of the dual-axis motor (53) are respectively fixedly connected with conical teeth (54), and the two groups of conical teeth (54) are meshed with second conical teeth (55) on the side away from the dual-axis motor (53). The inner walls of the two groups of the second conical teeth (55) are fixedly connected with assembly plate screws (57), and the right ends of the two groups of assembly plate screws (57) extend to the inner wall of the assembly plate slide groove (56) opened by the assembly plate body (51) and are movably connected to the right side of the inner wall of the assembly plate slide groove (56).

5. A honeycomb panel thermal bonding molding device according to claim 4, characterized in that: The outer walls of the two groups of assembly plate screw rods (57) are threadedly connected to the limit frame transmission blocks (58); the tops of the two groups of limit frame transmission blocks (58) extend to the outer walls of the assembly plate slide groove (56) and the opposite surfaces are fixedly connected to the limit block slide plate (513); the left sides of the two front limit frame transmission blocks (58) are fixedly connected to the limit frame motor placement blocks (59); the left sides of the two rear limit frame transmission blocks (58) are fixedly connected to the screw rod connection blocks (512); the inner walls of the two limit frame motor placement blocks (59) are fixedly connected to the limit frame motor (510); the two limit frames are fixedly connected to the limit frame motor (511); The output ends of the positioning frame motors (510) are fixedly connected to the limit block screw rods (511), the rear ends of the two limit block screw rods (511) are movably connected to the front side of the screw rod connecting block (512), the front and rear sides of the outer walls of the two limit block screw rods (511) are threadedly connected to the limit block transmission blocks (516), the two limit block slide plates (513) are provided with limit block sliding grooves (514) running through the two sides, and the right sides of the two groups of limit block transmission blocks (516) extend to the right side of the limit block slide plate (513) through the limit block sliding grooves (514) and are fixedly connected to the limit block (515).

6. A honeycomb panel thermal bonding molding device according to claim 1, characterized in that: The two hot press chamber baffle plates (3) each include a hot press chamber baffle plate body (31), the opposite surfaces of the two hot press chamber baffle plate bodies (31) are respectively fixedly connected to the front and rear sides of the hot press chamber (2), the top left and right sides of the two hot press chamber baffle plate bodies (31) are fixedly connected to a baffle plate transmission bin (35), and the inner walls of the two hot press chamber baffle plate bodies (31) are fixedly connected to a baffle plate dual-axis motor (32).

7. A honeycomb panel thermal bonding molding device according to claim 6, characterized in that: The left and right output ends of the two baffle plate dual-axis motors (32) are respectively fixedly connected with baffle plate conical teeth (33), and the two groups of baffle plate conical teeth (33) are meshed with the baffle plate second conical teeth (34) on the side away from the baffle plate dual-axis motor (32). The inner walls of the two groups of baffle plate second conical teeth (34) are fixedly connected with baffle plate screw rods (36), and the tops of the two groups of baffle plate screw rods (36) extend to the inner wall of the baffle plate transmission bin (35) and are movably connected to the top of the inner wall of the baffle plate transmission bin (35). The outer walls of the two groups of baffle plate screw rods (36) are threadedly connected with two baffle plate transmission blocks (37), and the opposite surfaces of the two groups of baffle plate transmission blocks (37) extend to the outer wall of the baffle plate transmission bin (35) and are fixedly connected with baffle plates (38). The opposite surfaces of the two baffle plates (38) are respectively slidably connected to the left and right sides of the hot pressing bin (2).

Citation Information

Patent Citations

  • Plastic cellular board hot laminating forming device

    CN216708419U