Wood plywood processing laminating machine

By designing a wooden plywood processing and lamination machine including a transmission machine, a support base, a laminate compartment, an alignment component and a transmission system, the problems of low efficiency, misalignment, bubbles and other in the veneer stacking and pressing process in the prior art are solved, and the fast and accurate loading and alignment of veneers are achieved, and the production efficiency and product quality are improved.

CN120056222AInactive Publication Date: 2025-05-30HUIMIN COUNTY CHUANGRUN BOARD CO LTD
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Patent Information

Application Number
CN202510364957.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-26
Publication Date
2025-05-30
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The existing plywood laminates have problems such as low efficiency, misalignment, and bubbles during the veneer stacking and pressing process, which affects the quality of the laminate and limits the utilization rate of the equipment.

Method used

A wooden plywood processing laminate including a conveyor machine, a support base, a laminate compartment, an alignment assembly and a transmission system is designed. The transmission system realizes fast and accurate transmission of the board, and uses a high-precision alignment system to drive the alignment components for precise positioning and adjustment to ensure the precise alignment of the edges of each layer of the board.

Benefits of technology

It realizes fast and accurate loading and alignment of veneers, improves production efficiency and product quality, and significantly improves equipment utilization and production capacity.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of plywood processing, in particular to a wood plywood processing laminating machine which comprises a conveying machine table and a supporting base, the supporting base is erected on the side edge of the conveying machine table, and a supporting rack and a laminating compartment erected on the supporting rack are arranged on the supporting base; a laminating bearing plate and alignment assemblies arranged on the two sides of the laminating bearing plate are arranged in the laminating compartment, a line body frame and a conveying rail installed on the line body frame are arranged on the conveying machine table, and a conveying frame is erected on the conveying rail; the conveying frame is installed on the conveying rail in a sliding mode, and a single plate bearing assembly frame is arranged on the conveying frame. Alignment driving parts are arranged on the two sides in the laminating compartment, the alignment driving parts drive the corresponding alignment assemblies to position the plywood on the laminating bearing plate, and a downward pressing driving part for laminating the plywood is arranged at the top of the laminating compartment. It is guaranteed that finally-pressed plywood is smooth in appearance and uniform in quality, the whole process is efficient and stable, and the production efficiency and the product quality are remarkably improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of plywood processing, and specifically to a wood plywood processing laminating machine. Background Art

[0002] Plywood is a three-layer or multi-layer plate material made by slicing wood segments into veneers or planing wooden squares into thin woods, and then gluing them with adhesives. It usually uses an odd number of veneer layers, and the fiber directions of adjacent veneer layers are perpendicular to each other for gluing to improve wood utilization rate and save wood.

[0003] The existing technology includes a frame, a heating chamber, a hydraulic system and a pressing device. This kind of pressing efficiency is relatively low, and there are certain defects. The veneers need to be stacked one by one, which takes a long time and increases the overall processing time cost. The veneers stacked layer by layer are prone to problems such as dislocation and bubbles during the pressing process, affecting the quality of the laminated board, and thus more inspection and correction work is required. Since the veneer stacking and pressing processes take a certain amount of time, the equipment utilization rate of the laminating machine may be limited and its production capacity cannot be fully exerted. Summary of the Invention

[0004] The purpose of the present invention is to provide a wood plywood processing laminating machine to solve the problems raised in the above background art.

[0005] To achieve the above purpose, the present invention provides the following technical solution:

[0006] A wood plywood processing laminating machine includes a conveyor table and a support base. The support base is erected on the side edge of the conveyor table. A support platform frame is arranged on the support base, and a laminating box is erected on the support platform frame. A pressing bearing plate is arranged in the laminating box, and alignment components are arranged on both sides of the pressing bearing plate. A wire rack is arranged on the conveyor table, and a conveying track is installed on the wire rack. A conveying frame is erected on the conveying track; the conveying frame is slidably installed on the conveying track, and a veneer bearing group frame is arranged on the conveying frame; A turnover driving platform is erected on the wire rack, a turnover driving cylinder installed on the turnover driving platform, and a turnover telescopic rod arranged at the driving end of the turnover driving cylinder. The rod end of the turnover telescopic rod is connected to the conveying frame; the turnover driving cylinder drives the turnover telescopic rod to move to drive the conveying frame to be docked with the laminating box, and the veneer bearing group frame extends to the table top of the pressing bearing plate; Alignment driving parts are arranged on both sides inside the laminating box. The alignment driving parts drive the corresponding alignment components to position the plywood on the pressing bearing plate, and a downward pressing driving part for pressing the plywood is arranged at the top of the laminating box.

[0007] As a further solution of the present invention: the transmission frame includes a frame bearing platform and a lifting platform base plate installed on the frame bearing platform, the frame bearing platform is provided with a lifting support platform and a propulsion track provided on the lifting support platform, the lifting platform base plate is slidably installed on the propulsion track, the frame bearing platform is provided with a propulsion drive, the driving end of the propulsion drive is installed with a propulsion rod, and the base of the lifting platform base plate is installed on the propulsion rod.

[0008] As a further solution of the present invention: a lifting track is arranged on the lifting platform substrate, the single-board carrying assembly frame is slidably installed on the lifting track through a lifting slide, the single-board carrying assembly frame includes an assembly frame substrate and a plurality of adsorption machine arms arranged on the assembly frame substrate, the lifting slide is installed on the back of the assembly frame substrate, a secondary adjustment seat is arranged on the top of the lifting platform substrate, a lifter is arranged on the secondary adjustment seat, a assembly frame lifting cylinder is arranged on the frame substrate, and a driving rod of the secondary adjustment seat is installed on the assembly frame lifting cylinder.

[0009] As a further solution of the present invention: the adsorption machine arm includes an arm fixing bolt, an arm support plate arranged on the arm fixing bolt, and an adsorption support plate installed on the end of the arm support plate, and the two ends of the adsorption support plate are installed with adsorbents through the adsorption mounting bolts; the adsorption support plate is installed on the lower surface of the arm support plate body, and the upper surface of the adsorption support plate is provided with a guide bar, and a sliding slope is provided between the edge of the guide bar and the arm fixing bolt.

[0010] As a further solution of the present invention: the alignment component includes a first correction component and a second correction component, the alignment drive component includes a side edge drive component for driving the first correction component and a median drive component for driving the second correction component; the side edge drive component includes a first opposing opener and a first opening and closing track installed on the first opposing opener and the first correction component includes a first pusher installed at both ends of the first opening and closing track, the first pusher is provided with a first pushing rod and a resistance block installed on the first pushing rod, the edge of the resistance block is provided with a comparison plate, the comparison plate of the first pusher located above is set at the top, and the comparison plate of the first pusher located below is set at the bottom.

[0011] As a further solution of the present invention: the mid-position drive assembly includes a second opposing opener and a fine-tuning rack, the fine-tuning rack is fixedly mounted on the inner wall of the laminating compartment, the fine-tuning rack is provided with a fine-tuning slide rail, and the second opposing opener is slidably mounted on the fine-tuning rack via the fine-tuning slide rail.

[0012] As a further solution of the present invention: a second opening and closing track is arranged on the second opposing opener and closer, the second correction component includes second pushers arranged at both ends of the second opposing opener and closer track, the second pushers are each provided with a second push rod, and a smoothing substrate is installed at the rod end of the second push rod.

[0013] As a further solution of the present invention: a fixed seat is installed on the fine-tuning frame, and a fine-tuning cylinder is arranged on the fixed seat. A fine-tuning push rod is arranged at the driving end of the fine-tuning cylinder, and the rod end of the fine-tuning push rod is connected to the second opposite-opening and closing device.

[0014] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0015] The single board of the present invention realizes fast and accurate transmission from the initial stage to the lamination chamber through the bearing group frame and the transmission system. The pressing bearing plate is reasonably designed and has strong bearing capacity, and can stably stack multiple single boards. The alignment system adopts a high-precision power source and a transmission mechanism, and drives the telescopic alignment components to accurately position the four sides of the single board, effectively correcting the transmission misalignment and ensuring the accurate alignment of the edges of each layer of single board. When misalignment or unevenness is detected, the alignment components can finely and controllably apply pressure or thrust for adjustment, ensuring that the appearance of the finally pressed plywood is flat and the quality is uniform. The whole process is efficient and stable, significantly improving the production efficiency and product quality.

[0016] It should be understood that the above general description and the following detailed description are only exemplary and explanatory, and cannot limit this application. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] The accompanying drawings herein are incorporated into the specification and constitute a part of this specification, showing the embodiments consistent with this application, and are used together with the specification to explain the principles of this application. At the same time, these drawings and the text description are not intended to limit the scope of the concept of this application in any way, but to illustrate the concept of this application to those skilled in the art by referring to specific embodiments.

[0018] Figure 1 It is a schematic diagram of the overall structure of the wood plywood processing laminator provided by the embodiment of the present invention.

[0019] Figure 2 It is a schematic diagram of the structure of the transmission frame provided by the embodiment of the present invention.

[0020] Figure 3 It is a schematic diagram of the structure of the single board bearing group frame provided by the embodiment of the present invention.

[0021] Figure 4 It is a schematic diagram of the structure of the pressing bearing plate provided by the embodiment of the present invention.

[0022] Figure 5 It is a schematic diagram of the structure of the first correction component provided by the embodiment of the present invention.

[0023] Figure 6 It is a schematic diagram of the structure of the second correction component provided by the embodiment of the present invention.

[0024] In the figure: 11, transfer machine platform; 12, line body frame; 13, transfer track; 14, transfer frame; 15, single-board carrier group frame; 16, transfer machine platform; 17, line body frame; 18, transfer track; 19, transfer frame; 21, support base; 22, support platform frame; 23, lamination chamber; 24, alignment component; 25, alignment driving component; 26, downward pressing driving component; 27, pressing and bearing plate; 31, group frame base plate; 32, adsorption machine arm; 41, arm fixing bolt; 42, arm support plate; 43, adsorption support plate; 44, adsorption mounting bolt; 45, guiding strip; 46, sliding ramp; 51, side edge driving component; 52, middle position driving component; 53, first correction component; 54, second correction component; 61, first opposite-opening and closing device; 62, first opening and closing track; 63, first pusher; 64, first push rod; 65, abutting block; 66, comparison piece; 71, frame bearing platform; 72, lifting support platform; 73, propulsion track; 74, propulsion driver; 75, propulsion rod; 81, lifting platform base plate; 82, lifting track; 83, lifting sliding seat; 84, secondary adjustment seat; 85, lifter; 86, group frame lifting cylinder; 91, second opposite-opening and closing device; 92, second opening and closing track; 93, second pusher; 94, second push rod; 95, flattening base plate; 96, fine-tuning machine frame; 101, fixed seat; 102, fine-tuning cylinder; 103, fine-tuning push rod; 104, fine-tuning slide rail. Detailed implementation manners

[0025] The following will clearly and completely describe the technical solutions in the embodiments of the present invention with reference to the accompanying drawings in the embodiments of the present invention, and the examples are shown in the accompanying drawings. When the following description refers to the accompanying drawings, unless otherwise indicated, the same numbers in different drawings represent the same or similar elements.

[0026] Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0027] The following will describe in detail the specific implementation of the present invention in combination with specific embodiments.

[0028] In one embodiment, please refer to Figure 1, a wood plywood processing laminator is provided, including a conveyor platform 11 and a support base 21. The support base 21 is erected on the side edge of the conveyor platform 11. A support bench 22 is arranged on the support base 21, and a lamination chamber 23 is erected on the support bench 22. A pressing and bearing plate 27 and alignment components 24 arranged on both sides of the pressing and bearing plate 27 are arranged in the lamination chamber 23. A wire rack 12 and a conveying track 13 installed on the wire rack 12 are arranged on the conveyor platform 11, and a conveying frame 14 is erected on the conveying track 13; the conveying frame 14 is slidably installed on the conveying track 13, and a single-board bearing group rack 15 is arranged on the conveying frame 14; a turnover driving platform 16, a turnover driving cylinder 17 installed on the turnover driving platform 16, and a turnover telescopic rod 18 arranged at the driving end of the turnover driving cylinder 17 are erected on the wire rack 12, and the rod end of the turnover telescopic rod 18 is connected to the conveying frame 14;

[0029] The turnover driving cylinder 17 drives the turnover telescopic rod 18 to move, so as to drive the conveying frame 14 to be docked with the lamination chamber 23, and the single-board bearing group rack 15 extends to the table top of the pressing and bearing plate 27; Alignment driving parts 25 are arranged on both sides inside the lamination chamber 23. The alignment driving parts 25 drive the corresponding alignment components 24 to position the plywood on the pressing and bearing plate 27, and a downward pressing driving part 26 for pressing the plywood is arranged on the top of the lamination chamber 23.

[0030] In this embodiment, the conveyor platform 11 is the basic moving platform of the entire equipment. The wire rack 12 is fixedly installed above the conveyor platform 11 and is welded by high-strength steel to support the conveying track 13. The conveying track 13 is designed as a precision rolling guide rail structure to ensure the smooth sliding of the conveying frame 14 in the horizontal direction. The conveying frame 14 is made of lightweight but high-strength aluminum alloy material, and its bottom is designed with a roller assembly matching the conveying track 13 for smooth movement. The single-board bearing group rack 15 is installed on the conveying frame 14 and uses adsorption or other related methods to grab or load the single board. The turnover driving cylinder 17 is a high-performance pneumatic or electric cylinder, and the telescopic movement of the turnover telescopic rod 18 is realized through precise control, so as to drive the conveying frame 14 to be accurately docked with the lamination chamber 23, completing the whole-process automated operation of the single board from loading to pressing. The support base 21 is made of heavy steel and is firmly installed on one side of the conveyor platform 11 to ensure the stability of the lamination operation. The lamination chamber 23 adopts a closed structure and is equipped with a heating and temperature control system inside to control the temperature and humidity conditions during the pressing process. The downward pressing driving part 26 is located at the top of the lamination chamber 23 and adopts a hydraulic or pneumatic driving system to provide a strong downward pressure to ensure that the plywood reaches the required pressure and temperature conditions during the pressing process and realizes tight bonding.

[0031] The single board is first placed and adsorbed on the single board bearing group frame 15. Driven by the turnover drive cylinder 17, the turnover telescopic rod 18 drives the transmission frame 14 and the single board bearing group frame 15 thereon to slide smoothly along the transmission track 13. This process realizes the rapid and accurate transmission of the single board from the initial position to the lamination box 23. When the transmission frame 14 moves to the predetermined position of the lamination box 23, the single board bearing group frame 15 stacks the single board on the tabletop of the pressing bearing plate 27. The pressing bearing plate 27 is designed with sufficient area and load-bearing capacity to accommodate multiple layers of single boards and perform the pressing operation. Once the single board is placed on the pressing bearing plate 27, the alignment drive member 25 starts to work. The alignment drive member 25 uses a high-precision motor or cylinder as the power source and drives the alignment assembly 24 to move through a precise transmission mechanism. The alignment assembly 24 is designed in the form of a retractable clamping arm or a push plate, etc. They approach the single board from both sides or all around the pressing bearing plate 27 to position and align the four sides of the single board. This process corrects the misalignment that may occur during the transmission of the single board and ensures the precise alignment of the edges of each layer of the single board. During the alignment process, if misalignment or unevenness is detected between the single boards, the alignment assembly 24 will apply appropriate pressure or thrust for adjustment. This adjustment is delicate and controllable to ensure that the finally pressed plywood has a flat and uniform appearance and quality.

[0032] Through the above process, the wood plywood processing laminator of the present invention realizes the rapid and accurate loading and alignment of the single board, laying a solid foundation for the subsequent pressing operation. This process not only improves the production efficiency but also significantly enhances the quality and market competitiveness of the final product.

[0033] In one embodiment, please refer to Figures 1 to 3 , on the basis of the design of the above embodiment, for the specific implementation structure of the transmission frame 14 and the single board bearing group frame 15, this embodiment is designed as follows:

[0034] In a wood plywood processing laminator, the transfer frame 14 serves as a key component connecting the transfer system and the pressing system. The frame bearing platform 71 is the basic support structure of the entire transfer frame 14, made of high-strength materials to ensure the stability and load-bearing capacity of the overall structure. The lifting support platform 72 is fixedly installed on the frame bearing platform 71, and its top is designed with a precise guide rail structure for supporting and guiding the vertical movement of the lifting platform base plate 81. The propulsion track 73 is horizontally arranged on the lifting support platform 72 to provide precise guidance for the horizontal sliding of the lifting platform base plate 81. The propulsion driver 74 is installed at an appropriate position on the frame bearing platform 71, and its driving end is connected to the propulsion rod 75. Through the precise control of the propulsion driver 74, the propulsion rod 75 can drive the lifting platform base plate 81 to slide smoothly along the propulsion track 73, realizing the precise positioning of the veneer bearing group frame 15 in the horizontal direction. The lifting platform base plate 81 is slidably installed on the propulsion track 73, and at the same time, its top is designed with a lifting track 82. The design of the lifting track 82 ensures the smooth lifting and lowering of the veneer bearing group frame 15 in the vertical direction, avoiding shaking and misalignment. Driven by the propulsion driver 74 and the propulsion rod 75, the lifting platform base plate 81 can achieve docking and separation with the transfer track 13, facilitating the loading and unloading of the veneer bearing group frame 15.

[0035] The veneer bearing group frame 15 includes a group frame base plate 31 and several adsorption arms 32. The adsorption arms 32 firmly adsorb the veneer to be pressed through methods such as vacuum or magnetism, ensuring that it will not fall off or shift during the transfer and pressing processes. The lifting slide block 83 is installed on the back of the group frame base plate 31, enabling it to slide vertically along the lifting track 82. This design allows for precise height adjustment of the veneer before pressing, ensuring the uniformity and tightness of the pressing.

[0036] The secondary adjustment seat 84 is installed on the top of the lifting platform base plate 81, and a lifter 85 is provided thereon. The driving rod of the lifter 85 is connected to the group frame lifting cylinder 86, and through the precise control of the lifter 85, further fine adjustment of the group frame base plate 31 and the veneer thereon is achieved. Through the above design, precise positioning of the veneer in the horizontal direction and smooth lifting and lowering in the vertical direction are realized.

[0037] The guide bar 45 is arranged on the upper surface of the adsorption support plate 43, and a sliding slope 46 is provided between its rib and the arm fixing bolt 41. In this way, after the adsorber is closed, the guide bar 45 and the sliding slope 46 form a guiding mechanism. As the overall veneer bearing group frame 15 exits the inner area of the lamination chamber 23, the veneer slides along this guiding mechanism and stacks on the pressing bearing plate 27.

[0038] In one embodiment, please refer to Figure 3 , based on the design of the above embodiment, for the specific implementation structure of the adsorption arm 32, this embodiment is designed as follows:

[0039] In the transfer frame 14 of the wood plywood processing laminator, the adsorption arm 32 is a key component to ensure the stable transfer and precise positioning of the veneer. The arm fixing bolt 41, as the fixing and connecting component of the adsorption arm 32, usually adopts high-strength bolts or similar fasteners. It ensures that the arm support plate 42 can be firmly installed on the assembly base plate 31 of the transfer frame 14, while providing sufficient stability and load-bearing capacity. The arm support plate 42 is the main structure of the adsorption arm 32, which connects the arm fixing bolt 41 and the adsorption support plate 43. The design of the arm support plate 42 takes into account the balance between strength and rigidity to ensure that it will not deform or break when adsorbing and transferring the veneer. The adsorption support plate 43 is installed on the lower surface of the plate body of the arm support plate 42 and is the part where the adsorption arm 32 directly contacts the veneer. Adsorbers (such as vacuum suction cups or magnetic adsorbers) are installed at both ends of the adsorption support plate 43 through adsorption mounting bolts 44 for firmly adsorbing the veneer to be laminated.

[0040] The guiding strip 45 is arranged on the upper surface of the adsorption support plate 43, and a sliding slope 46 is arranged between its rib and the arm fixing bolt 41. In this way, after the adsorber is closed, the guiding strip 45 and the sliding slope 46 form a guiding mechanism. As the overall veneer carrying assembly 15 exits the inner area of the lamination chamber 23, the veneer slides along this guiding mechanism and stacks on the lamination bearing plate 27.

[0041] In one embodiment, please refer to Figure 1 、 Figure 4 、 Figure 5 and Figure 6 , based on the design of the above embodiment, for the specific implementation structure of the alignment component 24, this embodiment is designed as follows:

[0042] The first correction component 53 is driven by the side edge driving component 51. The side edge driving component 51 includes a first opposing opener 61, which can control two relatively moving components to approach or move away from each other. A first opening and closing track 62 is installed on the first opposing opener 61 to provide a stable sliding path for the pusher of the first correction component 53. First pushers 63 are installed at both ends of the track, and each pusher is provided with a first push rod 64, and the rod end is connected to a contact block 65. A comparison piece 66 is installed on the edge of the contact block 65, and these comparison pieces can be made of elastic materials to provide appropriate buffering and friction when contacting the plywood, ensuring that the plywood can move smoothly and precisely into place. The middle position driving component 52 includes a second opposing opener 91 and a fine-tuning frame 96. The fine-tuning frame 96 is fixedly installed on the inner wall of the lamination chamber 23. A fine-tuning slide rail 104 is arranged on the fine-tuning frame 96, and the second opposing opener 91 is slidably installed on the fine-tuning frame 96 through the fine-tuning slide rail 104.

[0043] The second calibration component 54 is driven by the middle-position drive component 52. The middle-position drive component 52 includes a second opposing opener 91, which is slidably mounted through a fine-tuning slide rail 104 on a fine-tuning frame 96, allowing the position of the opener to be finely adjusted to adapt to plywood of different sizes. A second opening and closing track 92 is provided on the second opposing opener 91, providing a sliding path for the pusher of the second calibration component 54. Second pushers 93 are installed at both ends of the track, and each pusher is provided with a second push rod 94, and the rod end is connected to a flattening substrate 95. The flattening substrate 95 is used to flatten the surface of the plywood during the pushing process to ensure that it is in a completely flat state before lamination.

[0044] The side-edge drive component 51 and the first calibration component 53: This combination is mainly used for precisely calibrating the front and rear sides of the veneer stacked in the lamination compartment 23. The core of the side-edge drive component 51 is the first opposing opener 61, which can drive the components on the first opening and closing track 62 to move towards or away from each other. The first pushers 63 installed at both ends of the track move up and down along the first opening and closing track 62. This design enables the calibration process to flexibly adapt to veneer stacks of different heights. The first push rod 64 on the first pusher 63 is connected to a contact block 65. When the pusher is activated, the push rod 64 will push the contact block 65 towards the stacked veneer. The contact block 65 is designed to be in direct contact with the veneer, so a wear-resistant and elastic material is used to ensure that the veneer is not damaged when contacting. The edge comparison pieces 66 play a key role. They are respectively located on the upper and lower sides of the contact block 65, used to measure the heights of the upper and lower sides of the stacked veneer, and apply appropriate downward pressure when necessary to ensure the neatness and flatness of the veneer stack.

[0045] The middle-position drive component 52 and the second calibration component 54: This combination focuses on calibrating the left and right sides of the stacked veneer. The core of the middle-position drive component 52 is the second opposing opener 91, which is slidably mounted through a fine-tuning slide rail 104 on a fine-tuning frame 96. This design allows for precise position adjustment according to the width of the veneer. The second opening and closing track 92 on the second opposing opener 91 provides a stable sliding path for the second calibration component 54. The second pushers 93 installed at both ends of the track are connected to a flattening substrate 95 through second push rods 94. When the pusher is activated, the push rod 94 will drive the flattening substrate 95 towards the stacked veneer, thereby calibrating the left and right sides of the veneer. The flattening substrate 95 is designed to have extensive contact with the veneer, so a flat and flexible material is used.

[0046] In this embodiment, through the synergistic effect of the side-edge drive assembly 51 and the first calibration assembly 53, and the middle-position drive assembly 52 and the second calibration assembly 54, high-precision calibration of the stacked veneers on the front and back sides and the left and right sides is achieved, ensuring the neatness and flatness of the veneers before lamination. Together, they constitute an efficient and precise veneer calibration system, providing strong technical support for the processing and production of wood-based plywood.

[0047] For those skilled in the art, it is obvious that the present invention is not limited to the details of the above-described exemplary embodiments, and without departing from the spirit or basic characteristics of the present invention, the present invention can be implemented in other specific forms. Therefore, in any regard, the embodiments should be regarded as exemplary and non-limiting. The scope of the present invention is defined by the appended claims rather than the above description. Therefore, all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be included in the present invention.

[0048] In addition, it should be understood that although this specification is described according to embodiments, not every embodiment only contains an independent technical solution. This narrative manner of the specification is only for clarity. Those skilled in the art should regard the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.

Claims

1. A wood plywood processing laminating machine, comprising a conveyor platform (11) and a supporting base (21), wherein the supporting base (21) is mounted on the side edge of the conveyor platform (11), the conveyor platform (11) is provided with a wire frame (12) and a conveying track (13) mounted on the wire frame (12), and a conveying frame (14) is mounted on the conveying track (13); the conveying frame (14) is slidably mounted on the conveying track (13), and a single board bearing assembly frame (15) is arranged on the conveying frame (14), characterized in that: The support base (21) is provided with a support frame (22) and a laminating chamber (23) mounted on the support frame (22); the laminating chamber (23) is provided with a pressing support plate (27) and alignment components (24) arranged on both sides of the pressing support plate (27); The wire frame (12) is provided with a turnover drive platform (16), a turnover drive cylinder (17) mounted on the turnover drive platform (16), and a turnover telescopic rod (18) arranged at the driving end of the turnover drive cylinder (17), and the rod end of the turnover telescopic rod (18) is connected to the transmission frame (14); The circumferential drive cylinder (17) drives the circumferential telescopic rod (18) to move, so as to drive the transmission frame (14) to be connected with the laminating chamber (23), and the single board bearing assembly frame (15) extends to the table surface of the pressing bearing plate (27); Alignment driving members (25) are provided on both sides of the laminating chamber (23), and the alignment driving members (25) drive corresponding alignment components (24) to position and press the plywood on the supporting plate (27). A pressing driving member (26) for pressing the plywood is provided on the top of the laminating chamber (23).

2. The wood plywood processing laminator according to claim 1, characterized in that: The transmission frame (14) includes a frame bearing platform (71) and a lifting platform base plate (81) installed on the frame bearing platform (71); a lifting support platform (72) and a propulsion track (73) arranged on the lifting support platform (72) are arranged on the frame bearing platform (71); the lifting platform base plate (81) is slidably installed on the propulsion track (73); a propulsion driver (74) is arranged on the frame bearing platform (71); a propulsion rod (75) is installed on the driving end of the propulsion driver (74); and the base of the lifting platform base plate (81) is installed on the propulsion rod (75).

3. The wood plywood processing laminating machine according to claim 2, characterized in that: A lifting track (82) is arranged on the lifting platform substrate (81); the single-board carrying assembly frame (15) is slidably installed on the lifting track (82) via a lifting slide (83); the single-board carrying assembly frame (15) comprises an assembly frame substrate (31) and a plurality of adsorption machine arms (32) arranged on the assembly frame substrate (31); the lifting slide (83) is installed on the back side of the assembly frame substrate (31); a secondary adjustment seat (84) is arranged on the top of the lifting platform substrate (81); a lifter (85) is arranged on the secondary adjustment seat (84); a assembly frame lifting cylinder (86) is arranged on the frame of the assembly frame substrate (31); and a driving rod of the secondary adjustment seat (84) is installed on the assembly frame lifting cylinder (86).

4. The wood plywood processing laminating machine according to claim 3, characterized in that: The adsorption machine arm (32) comprises an arm fixing bolt (41), an arm support plate (42) arranged on the arm fixing bolt (41), and an adsorption support plate (43) installed on the plate end of the arm support plate (42), and adsorbers are installed at both ends of the adsorption support plate (43) via adsorption installation bolts (44); The adsorption support plate (43) is mounted on the lower surface of the arm support plate (42), the upper surface of the adsorption support plate (43) is provided with a guide bar (45), and a sliding slope (46) is provided between the edge of the guide bar (45) and the arm fixing bolt (41).

5. The wood plywood processing laminating machine according to claim 1, characterized in that: The alignment assembly (24) comprises a first correction assembly (53) and a second correction assembly (54); the alignment drive member (25) comprises a side edge drive assembly (51) for driving the first correction assembly (53) and a middle position drive assembly (52) for driving the second correction assembly (54); The side edge driving assembly (51) comprises a first opposing opener (61) and a first opening and closing track (62) mounted on the first opposing opener (61); the first correction assembly (53) comprises a first pusher (63) mounted on both ends of the track of the first opening and closing track (62); the first pusher (63) is provided with a first push rod (64) and a resistance block (65) mounted on the first push rod (64); a comparison piece (66) is provided on the edge of the resistance block (65); the comparison piece (66) of the first pusher (63) located at the top is arranged at the top, and the comparison piece (66) of the first pusher (63) located at the bottom is arranged at the bottom.

6. The wood plywood processing laminating machine according to claim 5, characterized in that: The mid-position drive assembly (52) comprises a second opposing opener and closer (91) and a fine-tuning frame (96); the fine-tuning frame (96) is fixedly mounted on the inner wall of the laminating chamber (23); a fine-tuning slide rail (104) is provided on the fine-tuning frame (96); and the second opposing opener and closer (91) is slidably mounted on the fine-tuning frame (96) via the fine-tuning slide rail (104).

7. The wood plywood processing laminating machine according to claim 6, characterized in that: The second opposing opener (91) is provided with a second opening and closing track (92), the second correction assembly (54) comprises second pushers (93) arranged at both ends of the track of the second opposing opener (91), the second pushers (93) are each provided with a second push rod (94), and a smoothing base plate (95) is mounted on the rod end of the second push rod (94).

8. The wood plywood processing laminating machine according to claim 7, characterized in that: A fixing seat (101) and a fixing cylinder (102) arranged on the fixing seat (101) are mounted on the fixing seat (96); a driving end of the fixing cylinder (102) is provided with a fixing push rod (103); and a rod end of the fixing push rod (103) is connected to the second opposing opener (91).