Full-automatic plate edge sealing equipment

The modularly designed fully automatic plate edge banding equipment solves the problems of large-scale edge banding machines occupying large areas, complex structures and high costs. It realizes flexible plate edge banding processing, adapts to the production needs of multiple batches and special-shaped plates, and reduces equipment costs and floor space.

CN120773175APending Publication Date: 2025-10-14FOSHAN HAOYANG WOODWORK MACHINERY MFR

Patent Information

Application Number
CN202511276036.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-09-08
Publication Date
2025-10-14

AI Technical Summary

Technical Problem

Existing large-scale edge banding machines occupy a large area, have complex structures, and are expensive, making them difficult to adapt to the customized production needs of small batches and special-shaped panels.

Method used

A modular, fully automatic plate edge banding equipment was designed with a modular structure, including functional units such as pre-milling, gluing, pressing wheels, end trimming, finishing and polishing. The conveyor belt assembly and the pressing assembly are used to realize the automated processing of the plates. Combined with the drive system such as pneumatic guide rails and cylinders, the flexible processing of the plates can be achieved.

Benefits of technology

It reduces the equipment footprint, reduces manufacturing and maintenance costs, and improves the flexibility and adaptability of the equipment, making it capable of meeting the customized production needs of multiple batches, small specifications, and special-shaped plates.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses full-automatic plate edge sealing equipment which comprises a rack, a through groove is formed in the rear side of the rack, a conveying belt assembly is arranged in the through groove, a material pressing assembly is arranged above the through groove, a guide plate groove is formed in the right side of the conveying belt assembly, a pre-milling assembly is arranged on the rear side of the rack, and the pre-milling assembly is arranged on the rear side of the rack. A pre-milling assembly is arranged on the rear side of the rack, a gluing assembly is arranged on the right side of the pre-milling assembly and arranged on the rear side of the rack, a pressing wheel assembly is arranged on the right side of the gluing assembly and arranged on the rear side of the rack, a flush assembly is arranged on the right side of the pressing wheel assembly and arranged on the rear side of the rack, and a fine trimming mechanism is arranged on the right side of the flush assembly and arranged on the rear side of the rack. Compared with the prior art, the edge banding machine has the advantages that the occupied area of the edge banding machine is smaller than that of a traditional edge banding machine, the flexibility is extremely high, meanwhile, the structure of the edge banding machine is simpler than that of traditional edge banding equipment, and the manufacturing cost and the maintenance cost are reduced.
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Description

Technical Field

[0001] The present invention relates to the technical field of fully automatic plate edge banding, and in particular to fully automatic plate edge banding equipment. Background Art

[0002] In the manufacturing of panel furniture, custom cabinets, office partitions, and other industries, edge banding is a crucial process. The core purpose of edge banding is to seal the exposed cross-section of the panel, thereby improving product aesthetics, preventing moisture intrusion, enhancing edge durability, and reducing the release of harmful substances such as formaldehyde.

[0003] Currently, the mainstream automated edge banding technology on the market relies primarily on large-scale edge banding machines. These machines typically employ an assembly line design, integrating multiple functional units such as feeding, pre-milling, gluing, pressing, front and rear cutting, upper and lower trimming, upper and lower scraping, and polishing. While this type of equipment achieves a high degree of automation and production efficiency, its inherent technical architecture leads to significant limitations: Large Floor Space: To achieve fully automated, continuous operation, traditional edge banding machines must arrange their numerous functional modules in a linear fashion, following the process flow. This results in an incredibly long machine, often reaching seven to eight meters, or even over ten meters, requiring a significant amount of factory space for installation and layout. For small and medium-sized manufacturers or space-constrained workshops, the purchase and installation costs are high, and flexibility is extremely limited.

[0004] Complex structure and high cost: Each functional unit requires an independent drive system, control system, and support structure, making the entire machine structure extremely complex and resulting in high manufacturing and maintenance costs. The large mechanical structure also leads to high material and energy consumption.

[0005] Limited flexibility: Once installed, large linear equipment has a relatively fixed production process and layout. When faced with customized production demands for multiple batches of small, irregularly shaped panels, equipment adjustments are cumbersome, and switching production modes is time-consuming, making it difficult to adapt to the flexible and intelligent manufacturing trends of modern manufacturing. Summary of the Invention

[0006] The purpose of the present invention is to provide a fully automatic plate edge banding device that can solve at least one of the above technical problems. The technical solution of the present invention is as follows: The application discloses a full-automatic plate edge sealing equipment, which comprises a rack, a through slot is formed in the rear side of the rack, a conveying belt assembly is arranged in the through slot, a pressing assembly is arranged above the through slot, a guide plate slot is arranged at the right side of the conveying belt assembly, a pre-milling assembly is arranged at the rear side of the rack, a glue applying assembly is arranged at the right side of the pre-milling assembly and at the rear side of the rack, a pressing wheel assembly is arranged at the right side of the glue applying assembly and at the rear side of the rack, a head aligning assembly is arranged at the right side of the pressing wheel assembly and at the rear side of the rack, a finishing mechanism is arranged at the right side of the head aligning assembly and at the rear side of the rack, an edge scraping assembly is arranged at the right side of the finishing mechanism and at the rear side of the rack, and a polishing assembly is arranged at the right side of the edge scraping assembly and at the rear side of the rack.

[0007] Further, the pre-milling assembly comprises a pre-milling fixed seat fixed at the rear side of the rack, first pneumatic guide rails are symmetrically arranged at the rear side of the pre-milling fixed seat, a moving plate is fixed at the moving end of each first pneumatic guide rail, second pneumatic guide rails are symmetrically fixed at one side of each moving plate, a mounting seat is movably inserted on each two second pneumatic guide rails, a first air cylinder is fixed at the rear side of each moving plate, the output end of each first air cylinder is fixedly connected with the adjacent mounting seat, a pre-milling motor is fixed on each mounting seat, a pre-milling head is fixed at the output end of each pre-milling motor, a first counter is arranged at the rear side of each moving plate and connected with the adjacent mounting seat, a second counter is arranged above the pre-milling fixed seat and connected with each moving plate, and a dust collection shield is arranged above the pre-milling fixed seat and covers each pre-milling head.

[0008] Further, the glue applying assembly comprises a glue pot fixed at the rear side of the rack, a motor seat is fixed below the glue pot, a speed reduction motor is fixed on the motor seat, a connecting shaft is fixed at the output end of the speed reduction motor, a glue applying roller is arranged above the connecting shaft and in the glue pot, and a heating seat is arranged at the front side of the glue pot.

[0009] Further, the pressing wheel assembly comprises a pressing wheel fixed frame fixed at the rear side of the rack, a second air cylinder is fixed on the pressing wheel fixed frame in an inclined manner, an edge sealing tape cutter is fixed at the output end of the second air cylinder, a cutter seat is fixed at the rear side of the pressing wheel fixed frame, an adjustable baffle is arranged on the edge sealing tape cutter, a third air cylinder is fixed at the left side of the pressing wheel fixed frame, a side pushing wheel is fixed at the output end of the third air cylinder, a clamping belt clamping conveying rod is arranged at the front side of the side pushing wheel and on the pressing wheel fixed frame, a waist-shaped slot is symmetrically arranged on the rack, fourth air cylinders are symmetrically fixed at the rear side of the rack, pneumatic slide rails are fixed at the output end of each fourth air cylinder, driven wheels are arranged above each pneumatic slide rail and pass through the waist-shaped slot, and a driving motor is fixed below the pressing wheel fixed frame and connected with the clamping belt clamping conveying rod.

[0010] Further, the head assembly comprises a head mounting base fixed on the rear side of the frame, a linear guide rail is obliquely arranged on the front side of the head mounting base, a plurality of sliding seats are obliquely and correspondingly movably inserted into the linear guide rail, a head motor is transversely and oppositely fixed on each sliding seat, a head cutter is fixed on the output end of each head motor, a guide plate is fixed on each sliding seat, a guide wheel is movably sleeved on each guide plate, and a plurality of mini air cylinders are oppositely fixed on the rear side of the linear guide rail, and the output end of each mini air cylinder is fixedly connected to the adjacent sliding seat.

[0011] Further, the head assembly comprises a head mounting base fixed on the rear side of the frame, a linear guide rail is obliquely arranged on the front side of the head mounting base, a plurality of sliding seats are obliquely and correspondingly movably inserted into the linear guide rail, a head motor is transversely and oppositely fixed on each sliding seat, a head cutter is fixed on the output end of each head motor, a guide plate is fixed on each sliding seat, a guide wheel is movably sleeved on each guide plate, and a plurality of mini air cylinders are oppositely fixed on the rear side of the linear guide rail, and the output end of each mini air cylinder is fixedly connected to the adjacent sliding seat.

[0012] Further, the polishing assembly comprises polishing supports symmetrically fixed on the rear side of the frame, a polishing motor is fixed on each polishing support, and a polishing wheel is fixed on the output end of each polishing motor.

[0013] Preferably, a belt feeding disc is fixed on the left side of the frame, a telescopic rolling frame is arranged on the front side of the frame, and a cover door is movably hinged on the upper side of the frame.

[0014] In summary, the present application has the following advantages over the prior art: The application provides a full-automatic plate edge sealing equipment, when in use, a user places a plate on a guide plate groove, and pushes the plate to a conveying belt assembly and a pressing assembly, so that the plate is conveyed in parallel, the conveying belt assembly conveys the plate to a pre-milling assembly, and the plate is pressed to the conveying belt assembly in cooperation with the pressing assembly, when the plate is conveyed to the pre-milling assembly, the pre-milling assembly performs pre-milling treatment on the side of the plate, then the plate is conveyed to a glue applying assembly, so that the side of the plate is subjected to glue applying treatment, when the plate passes through a pressing wheel assembly, the pressing wheel assembly conveys and adheres an edge sealing strip to the side of the plate and cuts the edge sealing strip, then the plate is conveyed to a head trimming assembly, the head trimming assembly cuts the two sides of the adhered edge sealing strip, so that the edge sealing strip is flush with the side of the plate, then the upper and lower sides of the side of the plate are subjected to round corner finishing treatment through a finishing mechanism, and the round corner arc is more full in cooperation with an edge scraping assembly, finally, the side of the plate after the edge sealing is formed is subjected to polishing treatment through a polishing assembly, and the remaining side of the plate repeats the above steps to be formed, compared with the prior art, the equipment has smaller size than a traditional edge sealing machine, has high flexibility, and has simple structure, reduced manufacturing cost and maintenance cost. BRIEF DESCRIPTION OF DRAWINGS

[0015] Figure 1 It is one of the stereoscopic intentions of the application.

[0016] Figure 2 It is the second stereoscopic intention of the application.

[0017] Figure 3 It is an exploded schematic view of the pre-milling assembly of the application.

[0018] Figure 4 It is an exploded schematic view of the glue applying assembly of the application.

[0019] Figure 5 It is an exploded schematic view of the pressing wheel assembly of the application.

[0020] Figure 6 It is a separate schematic view of the head trimming assembly of the application.

[0021] Figure 7 It is an exploded schematic view of the edge scraping assembly of the application.

[0022] Figure 8 It is a separate schematic view of the polishing assembly of the application.

[0023] Explanation of reference signs: 1, rack; 2, through slot; 3, conveying belt assembly; 4, pressing assembly; 5, guide plate slot; 6, pre-milling assembly; 7, gluing assembly; 8, pressure wheel assembly; 9, head trimming assembly; 10, finishing mechanism; 11, edge scraping assembly; 12, polishing assembly; 61, pre-milling fixing seat; 62, first pneumatic guide rail; 63, moving plate; 64, second pneumatic guide rail; 65, mounting seat; 66, first air cylinder; 67, pre-milling motor; 68, pre-milling head; 69, first indicator; 610, second indicator; 611, dust collection shield; 71, glue pot; 72, motor base; 73, speed reducer motor; 74, connecting shaft; 75, gluing roller; 76, heating seat; 81, pressure wheel fixing frame; 82, second air cylinder; 83, edge sealing belt cutter; 84, cutter seat; 85, adjustable baffle; 86, third air cylinder; 87, push wheel; 88, clamping belt clamping conveying rod; 89, waist-shaped groove; 810, fourth air cylinder; 811, pneumatic slide rail; 812, driven wheel; 813, driving motor; 91, head trimming mounting seat; 92, linear guide rail; 93, sliding seat; 94, head trimming motor; 95, head trimming cutter; 96, guide plate; 97, guide wheel; 98, mini air cylinder; 111, edge scraping mounting seat; 112, first edge scraping slide rail; 113, edge scraping sliding seat; 114, sliding sleeve; 115, second edge scraping slide rail; 116, edge scraping guide plate; 117, adjustable edge scraping cutter; 118, third indicator; 119, adjusting seat; 1110, vertical guide wheel; 1111, first spring; 1112, second spring; 121, polishing assembly; 122, polishing motor; 123, polishing wheel; 13, conveying disc; 14, telescopic roller frame; 15, shield door. DETAILED DESCRIPTION

[0024] The application will be further described in connection with the accompanying drawings and specific embodiments: As Figures 1 to 8 shown in a full-automatic plate edge sealing equipment, comprising: a rack 1, a through slot 2 is opened in the rear side of the rack 1, a conveying belt assembly 3 is arranged in the through slot 2, a pressing assembly 4 is arranged above the through slot 2, a guide plate slot 5 is arranged at the right side of the conveying belt assembly 3, a pre-milling assembly 6 is arranged at the rear side of the rack 1, a gluing assembly 7 is arranged at the right side of the pre-milling assembly 6 and at the rear side of the rack 1, a pressure wheel assembly 8 is arranged at the right side of the gluing assembly 7 and at the rear side of the rack 1, a head trimming assembly 9 is arranged at the right side of the pressure wheel assembly 8 and at the rear side of the rack 1, a finishing mechanism 10 is arranged at the right side of the head trimming assembly 9 and at the rear side of the rack 1, an edge scraping assembly 11 is arranged at the right side of the finishing mechanism 10 and at the rear side of the rack 1, and a polishing assembly 12 is arranged at the right side of the edge scraping assembly 11 and at the rear side of the rack 1.

[0025] The automatic plate edge sealing equipment has the advantages that when in use, a user places a plate on the guide plate groove 5, and pushes the plate to the conveying belt assembly 3 and the pressing assembly 4, so that the plate is conveyed in parallel, at this time, the conveying belt assembly 3 conveys the plate to the pre-milling assembly 6, and the pressing assembly 4 is matched with the conveying belt assembly 3 to press and fix the plate, when the plate is conveyed to the pre-milling assembly 6, the pre-milling assembly 6 performs pre-milling treatment on the side of the plate, then the plate continues to be conveyed to the glue applying assembly 7, so that the side of the plate is subjected to glue applying treatment, simultaneously, when the plate passes through the pressing wheel assembly 8, the pressing wheel assembly 8 conveys and adheres the edge sealing strip to the side of the plate and cuts off the edge sealing strip, then the plate continues to be conveyed to the head trimming assembly 9, the head trimming assembly 9 cuts off the two sides of the adhered edge sealing strip, so that the edge sealing strip is flush with the side of the plate, then the upper and lower sides of the side of the plate are subjected to roundness finishing treatment through the finishing mechanism 10, and the roundness is made more full through the edge scraping assembly 11, finally, the side of the plate after the edge sealing is formed is subjected to polishing treatment through the polishing assembly 12, and the remaining sides of the plate repeat the above steps to be formed, compared with the prior art, the equipment has smaller size than a traditional edge sealing machine, has high flexibility, and has simple structure, reduced manufacturing cost and maintenance cost.

[0026] As shown in Figure 3 In some embodiments of the application, the pre-milling assembly 6 includes a pre-milling fixed seat 61 fixed on the rear side of the rack 1, a first pneumatic guide rail 62 is symmetrically arranged on the rear side of the pre-milling fixed seat 61, a moving plate 63 is fixed on the moving end of each first pneumatic guide rail 62, a second pneumatic guide rail 64 is symmetrically fixed on one side of each moving plate 63, a mounting seat 65 is movably inserted on each two second pneumatic guide rails 64, a first air cylinder 66 is fixed on the rear side of each moving plate 63, the output end of each first air cylinder 66 is fixedly connected with the adjacent mounting seat 65, a pre-milling motor 67 is fixed on each mounting seat 65, a pre-milling head 68 is fixed on the output end of each pre-milling motor 67, a first indicator 69 capable of being connected with the adjacent mounting seat 65 is arranged on the rear side of each moving plate 63, a second indicator 610 capable of being connected with each moving plate 63 is arranged above the pre-milling fixed seat 61, and a dust collection shield 611 is arranged above the pre-milling fixed seat 61 and covers each pre-milling head 68.

[0027] The full-automatic plate edge sealing equipment of the above structure, when in use, the plate is conveyed to the pre-milling head 68 through the conveying belt assembly 3, at this time the pre-milling head 68 is driven to rotate by the pre-milling motor 67, so that the pre-milling head 68 performs pre-milling treatment on the side of the plate, and in the operation process, the equipment system can adjust the pre-milling head 68 according to production needs, and in the adjustment, each first cylinder 66 can drive the adjacent mounting seat 65 to move, and the mounting seat 65 moves along the second pneumatic guide rail 64, so that the feed distance of the pre-milling head 68 is adjusted, and in the initial operation, the user can rotate the first number indicator 69, so that the first number indicator 69 drives the mounting seat 65 to move along the second pneumatic guide rail 64 screw to a fixed position, so that the pre-milling head 68 is always at the required feed distance, and when a part of the pre-milling head 68 is processed for a long time, the user twists the second number indicator 610, and the second number indicator 610 drives the moving plate 63 to move, at this time the moving plate 63 moves along the first pneumatic guide rail 62, and when the moving plate 63 moves, the longitudinal position of the pre-milling head 68 is driven to move, so that the processing position of the pre-milling head 68 on the plate is changed.

[0028] As Figure 4 shown, in some embodiments of the present application, the glue applying assembly 7 includes a glue pot 71 fixed on the rear side of the rack 1, a motor seat 72 is fixed below the glue pot 71, a speed reducer motor 73 is fixed on the motor seat 72, a connecting shaft 74 is fixed on the output end of the speed reducer motor 73, a glue applying roller 75 is provided above the connecting shaft 74 and in the glue pot 71, and a heating seat 76 is installed on the front side of the glue pot 71.

[0029] The full-automatic plate edge sealing equipment of the above structure, when in use, the glue pot 71 heats the glue and accurately delivers the glue to the glue applying roller 75, at this time the glue applying roller 75 and the side of the plate are attached, and the connecting shaft 74 is driven to rotate by the speed reducer motor 73 at the same time, so that the connecting shaft 74 drives the glue applying roller 75 to rotate, so that the glue is evenly covered on the side of the plate, and the side of the plate can continuously heat the surface of the glue applying roller 75 to prevent the glue on it from solidifying.

[0030] As Figure 5As shown, in some embodiments of the present invention, the pressure roller assembly 8 includes a pressure roller fixing frame 81 fixed to the rear side of the frame 1, a second cylinder 82 is obliquely fixed on the pressure roller fixing frame 81, an edge band cutter 83 is fixed at the output end of the second cylinder 82, a knife seat 84 is fixed on the rear side of the pressure roller fixing frame 81, an adjustable baffle 85 is provided on the edge band cutter 83, a third cylinder 86 is fixed on the left side of the pressure roller fixing frame 81, and a side push wheel is fixed at the output end of the third cylinder 86. 87. An entrainment conveying rod 88 is provided on the pressure wheel fixing frame 81 in front of the side push wheel 87, waist-shaped grooves 89 are symmetrically provided on the frame 1, and fourth cylinders 810 are symmetrically fixed on the rear side of the frame 1. A pneumatic slide rail 811 is fixed at the output end of each of the fourth cylinders 810, and a driven wheel 812 is provided above each of the pneumatic slide rails 811 and through the waist-shaped groove 89. A driving motor 813 that can be connected and fixed to the entrainment conveying rod 88 is fixed below the pressure wheel fixing frame 81.

[0031] The above structure is a fully automatic plate edge banding equipment. During operation, the edge banding tape is output from between the entrainment conveying rod 88 and the side push wheel 87. When it is bonded to the side of the plate, the side push wheel 87 moves toward the entrainment conveying rod 88 through the third cylinder 86 and clamps the edge banding tape. At the same time, the entrainment conveying rod 88 is driven to rotate by the driving motor 813, so that the entrainment conveying rod rolls and transports the edge banding tape. When it is transported to the appropriate length of the plate, the second cylinder 82 drives the edge banding cutter 83 to move toward the knife holder 84. At this time, the edge banding cutter 83 cooperates with the knife holder 84 to cut the edge banding tape. The synchronized edge banding tape moves toward each driven wheel 812 through the adjustable baffle 85. At this time, each driven wheel 812 rolls and squeezes the edge banding tape toward the side of the plate through the fourth cylinder 810 and the pneumatic slide rail 811, so that the plate squeezes the edge banding tape and sticks it to the side of the plate when passing.

[0032] like Figure 6 As shown, in some embodiments of the present invention, the trimming assembly 9 includes a trimming mounting base 91 fixed to the rear side of the frame 1, a linear guide rail 92 is obliquely provided on the front side of the trimming mounting base 91, and a plurality of slides 93 are obliquely and correspondingly movably plugged into the linear guide rail 92, a trimming motor 94 is horizontally and relatively fixed on each of the slides 93, a trimming tool 95 is fixed at the output end of each of the trimming motors 94, a guide plate 96 is fixed on each of the slides 93, and a guide wheel 97 is movably sleeved on each of the guide plates 96, and a plurality of mini cylinders 98 are relatively fixed on the rear side of the linear guide rail 92, and the output end of each of the mini cylinders 98 is connected and fixed to the adjacent slide 93.

[0033] When the automatic plate edge sealing equipment is in operation, the detection device detects the passing of the plate with the sealing edge, one of the mini-cylinder 98 drives one of the slide 93 to move along the linear guide rail 92, and then the head motor 94 on the slide 93 moves until the head cutter 95 on the head motor 94 moves to the left side of the plate. At this time, the head cutter 95 is driven by the rotation of the head motor 94, so that the head cutter 95 cuts off the sealing edge on the left side of the plate to make the left side of the sealing edge and the left side of the plate flat. Similarly, the other mini-cylinder 98 drives the other slide 93 to move, so that the head motor 94 on the slide 93 moves, and the head cutter 95 on the head motor 94 cuts off the sealing edge on the right side of the plate to make the right side of the sealing edge and the right side of the plate flat.

[0034] As shown in Figure 2 and 3 In some embodiments of the present application, the edge scraping assembly 11 includes an edge scraping mounting seat 111 obliquely and oppositely fixed on the rear side of the rack 1, a first edge scraping slide rail 112 transversely fixed on each edge scraping mounting seat 111, an edge scraping slide seat 113 movably inserted on each first edge scraping slide rail 112, a slide sleeve 114 fixed on one side of each edge scraping slide seat 113, a second edge scraping slide rail 115 movably inserted on each slide sleeve 114, an edge scraping guide plate 116 fixed on each second edge scraping slide rail 115, an adjustable edge scraping cutter 117 fixed on each edge scraping guide plate 116, a third indicator 118 fixed on both sides of each edge scraping guide plate 116, each two third indicators 118 oppositely arranged at a right angle, an adjusting seat 119 fixed on the output end of each third indicator 118, a vertical guide wheel 1110 fixedly sleeved on each adjusting seat 119, a first spring 1111 arranged between the first edge scraping slide rail 112 and the edge scraping slide seat 113, and a second spring 1112 arranged between the slide sleeve 114 and the second edge scraping slide rail 115.

[0035] When the full-automatic plate edge sealing equipment with the above structure is in operation, when the plate passes, the vertical guide wheel 1110 fixed on each adjusting seat 119 guides the plate, and limits the distance between the plate and the adjustable edge scraping knife 117. The plate and the edge sealing tape contact the adjustable edge scraping knife 117 fixed on the edge scraping guide plate 116. Because the adjustable edge scraping knife 117 is arranged above and below the plate, the upper and lower sides of the plate and the edge sealing tape are rounded by the adjustable edge scraping knife 117. When the plate with different thicknesses passes, the adjustable edge scraping knife 117 contacts the plate and moves upward. At this time, the edge scraping guide plate 116 moves upward along the sliding sleeve 114 through the second edge scraping sliding rail 115, and provides the plate with an upward release amount. The first spring 1111 arranged between the first edge scraping sliding rail 112 and the edge scraping sliding seat 113 can provide the elastic force for the upward and downward movement of the adjustable edge scraping knife 117. When the plate feeding distance is too deep, the adjustable edge scraping knife 117 contacts the plate, so that the plate applies a force to the adjustable edge scraping knife 117 to move backward. At this time, the edge scraping sliding seat 113 moves backward along the first edge scraping sliding rail 112, so that the adjustable edge scraping knife 117 provides the plate with a backward release amount. In normal production, the user can adjust the fixed feeding depth of the adjustable edge scraping knife 117 through some third indicators 118, and the fixed distance of the vertical guide wheel 1110 relative to the plate can be adjusted through the other third indicators 118.

[0036] As shown in Figure 8 In some embodiments of the present application, the polishing assembly 12 includes polishing supports 121 fixed symmetrically on the rear side of the rack 1. The polishing motor 122 is fixed on each polishing support 121. The polishing wheel 123 is fixed on the output end of each polishing motor 122.

[0037] When the full-automatic plate edge sealing equipment with the above structure is in operation, when the plate passes, the polishing motor 122 drives the polishing wheel 123 to rotate, so that the polishing wheel 123 polishes the rounded corners of the formed plate, and enhances the appearance integrity of the finished product.

[0038] As shown in Figure 1 and 2 In some embodiments of the present application, the belt feeding disc 13 is fixed on the left side of the rack 1. The telescopic roller frame 14 is arranged on the front side of the rack 1. The shield door 15 is movably hinged above the rack 1. In production, the user places the edge sealing tape roll on the belt feeding disc 13 for standby. The telescopic roller frame 14 can adapt to plates with different lengths in production. The shield door 15 can be opened for equipment maintenance according to the use requirements of the user, and can be closed for dust prevention.

[0039] The above shows and describes the basic principles and main features of the present application and the advantages of the present application, and those skilled in the art should understand that the present application is not limited to the above embodiments, and the above embodiments and descriptions in the specification are only to illustrate the principles of the present application, and various changes and improvements can be made without departing from the spirit and scope of the present application, and these changes and improvements all fall within the scope of the claimed present application. The scope of protection of the present application is defined by the appended claims and their equivalents.

Claims

1. A fully automatic plate edge banding equipment, characterized in that: include: A frame (1) is provided with a through slot (2) at the rear side of the frame (1), a conveyor belt assembly (3) is provided in the through slot (2), a material pressing assembly (4) is provided above the through slot (2), a guide plate slot (5) is provided on the right side of the conveyor belt assembly (3), a pre-milling assembly (6) is provided on the rear side of the frame (1), a gluing assembly (7) is provided on the right side of the pre-milling assembly (6) and arranged on the rear side of the frame (1), a pressing wheel assembly (8) is provided on the right side of the gluing assembly (7) and arranged on the rear side of the frame (1), a trimming assembly (9) is provided on the right side of the trimming assembly (9) and arranged on the rear side of the frame (1), a finishing mechanism (10) is provided on the right side of the finishing mechanism (10) and arranged on the rear side of the frame (1), and a polishing assembly (12) is provided on the right side of the scraping assembly (11) and arranged on the rear side of the frame (1).

2. The fully automatic plate edge banding equipment according to claim 1, characterized in that The pre-milling assembly (6) includes a pre-milling fixed seat (61) fixed to the rear side of the frame (1), a first pneumatic guide rail (62) is symmetrically provided on the rear side of the pre-milling fixed seat (61), a movable plate (63) is fixed on the movable end of each of the first pneumatic guide rails (62), a second pneumatic guide rail (64) is symmetrically fixed on one side of each of the movable plates (63), a mounting seat (65) is movably connected to each of the two second pneumatic guide rails (64), a first cylinder (66) is fixed on the rear side of each of the movable plates (63), and the output end and The adjacent mounting seats (65) are fixedly connected, a pre-milling motor (67) is fixed on each of the mounting seats (65), a pre-milling head (68) is fixed at the output end of each of the pre-milling motors (67), a first indicator (69) capable of connecting to the adjacent mounting seat (65) is provided on the rear side of each of the movable plates (63), a second indicator (610) capable of connecting to each of the movable plates (63) is provided above the pre-milling fixed seat (61), and a dust collection shield (611) is provided above the pre-milling fixed seat (61) and covers each of the pre-milling heads (68).

3. The fully automatic plate edge banding equipment according to claim 1, characterized in that The glue coating assembly (7) includes a glue pot (71) fixed to the rear side of the frame (1), a motor base (72) fixed below the glue pot (71), a reduction motor (73) fixed on the motor base (72), a connecting shaft (74) fixed to the output end of the reduction motor (73), a glue coating roller (75) provided above the connecting shaft (74) and arranged in the glue pot (71), and a heating base (76) installed on the front side of the glue pot (71).

4. The fully automatic plate edge banding equipment according to claim 1, characterized in that The pressure wheel assembly (8) includes a pressure wheel fixing frame (81) fixed to the rear side of the frame (1), a second cylinder (82) is obliquely fixed on the pressure wheel fixing frame (81), an edge band cutter (83) is fixed at the output end of the second cylinder (82), a knife seat (84) is fixed at the rear side of the pressure wheel fixing frame (81), an adjustable baffle (85) is provided on the edge band cutter (83), a third cylinder (86) is fixed on the left side of the pressure wheel fixing frame (81), a side push wheel (87) is fixed at the output end of the third cylinder (86), and a side push wheel (87) is fixed on the side push wheel (87). The front side of the push wheel (87) is provided with an entrainment conveying rod (88) on the pressure wheel fixing frame (81), and a waist-shaped groove (89) is symmetrically provided on the frame (1). A fourth air cylinder (810) is symmetrically fixed on the rear side of the frame (1), and a pneumatic slide rail (811) is fixed at the output end of each of the fourth air cylinders (810). A driven wheel (812) is provided above each of the pneumatic slide rails (811) and passes through the waist-shaped groove (89). A driving motor (813) that can be connected and fixed to the entrainment conveying rod (88) is fixed below the pressure wheel fixing frame (81).

5. The fully automatic plate edge banding equipment according to claim 1, characterized in that The trimming assembly (9) includes a trimming mounting seat (91) fixed to the rear side of the frame (1), a linear guide rail (92) is obliquely provided on the front side of the trimming mounting seat (91), a plurality of slides (93) are obliquely and correspondingly plugged into the linear guide rail (92), a trimming motor (94) is horizontally and relatively fixed on each of the slides (93), a trimming tool (95) is fixed at the output end of each of the trimming motors (94), a guide plate (96) is fixed on each of the slides (93), a guide wheel (97) is movably sleeved on each of the guide plates (96), a plurality of mini cylinders (98) are relatively fixed on the rear side of the linear guide rail (92), and the output end of each of the mini cylinders (98) is connected and fixed to the adjacent slide (93).

6. The fully automatic plate edge banding equipment according to claim 1, characterized in that The scraping assembly (11) includes a scraping mounting seat (111) which is obliquely and relatively fixed to the rear side of the frame (1), a first scraping slide rail (112) is transversely fixed on each scraping mounting seat (111), a scraping slide seat (113) is movably inserted on each first scraping slide rail (112), a sliding sleeve (114) is fixed on one side of each scraping slide seat (113), a second scraping slide rail (115) is movably inserted on each sliding sleeve (114), a scraping guide plate (116) is fixed on each second scraping slide rail (115), and a scraping guide plate (116) is fixed on each scraping guide plate (116). An adjustable scraper (117) is fixed on it, and a third indicator (118) is fixed on both sides of each scraper guide plate (116). Every two third indicators (118) are arranged at right angles to each other. An adjustment seat (119) is fixed at the output end of each third indicator (118), and a vertical guide wheel (1110) is fixed on each adjustment seat (119). A first spring (1111) is provided between the first scraper slide rail (112) and the scraper slide seat (113), and a second spring (1112) is provided between the slide sleeve (114) and the second scraper slide rail (115).

7. The fully automatic plate edge banding equipment according to claim 1, characterized in that The polishing assembly (12) comprises polishing brackets (121) symmetrically fixed to the rear side of the frame (1), a polishing motor (122) being fixed on each of the polishing brackets (121), and a polishing wheel (123) being fixed at the output end of each of the polishing motors (122).

8. The fully automatic plate edge banding equipment according to claim 1, characterized in that A belt feeding disc (13) is fixedly provided on the left side of the frame (1), a retractable roller frame (14) is provided on the front side of the frame (1), and a shield door (15) is movably hinged above the frame (1).

Citation Information

Patent Citations

  • Fully-automatic gluing and edge sealing production line for plates

    CN112171820A

  • Compact and stable automatic plate edge bonding machine

    CN118322305A

Cited By

  • Soft forming edge sealing equipment for plates

    CN121157174A