Sample buffer cutting and edge sealing integrated device applied to planar design

By designing a sample buffer cutting and edge sealing integrated device for graphic design, a pneumatic cylinder driven transmission system and clamping plate are used in conjunction with the cutting components to solve the problem of edge sealing strip separation during the cutting process. This achieves stable cutting of the edge sealing strip and safe storage of the finished product, improving cutting quality and reducing economic losses.

CN119871630BActive Publication Date: 2026-03-20NANJING FORESTRY UNIV
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-12-17
Publication Date
2026-03-20

AI Technical Summary

Technical Problem

During the use of the edge banding machine, the edge banding strip on the sample board adheres to the sample board for a short time, which can easily cause the edge banding strip to separate during rotational cutting, resulting in economic losses.

Method used

Design a sample buffer cutting and edge sealing integrated device for planar design. It adopts a pneumatic cylinder driven upper and lower telescopic bracket and left and right movement components. Through the connected transmission components, a transmission system consisting of a motor-driven transmission shaft and gears is used to achieve vertically arranged circular groove cutting of the edge sealing strip. Combined with the coordinated work of the clamping plate and the cutting components, the edge sealing strip is prevented from separating from the sample plate.

Benefits of technology

It effectively prevents the edge banding strip from separating from the sample board during the cutting process, ensuring the quality of the finished product, reducing economic losses caused by cutting and processing, and cushioning the finished product from falling through the storage structure to reduce accidental losses.

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    Figure CN119871630B_ABST
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Abstract

The application discloses a sample buffering, cutting and edge sealing integrated equipment applied to plane design, relates to the cutting technical field and comprises an edge sealing machine. An edge sealing chamber is formed on one side of the edge sealing machine. A conveying equipment is arranged in the edge sealing chamber. A cutting structure and a storage structure are arranged at one end of the conveying equipment. The cutting structure comprises a pneumatic cylinder one. An up-down telescopic support assembly is arranged at one end of the pneumatic cylinder one. Left-right movement assemblies are arranged at the top of the up-down telescopic support assembly. A rotating blade cuts a sample plate. Since a plurality of vertical circular grooves are formed on the two sides of the sample plate, the area of the rotating force applied to the edge sealing strip by the rotating blade is small and discontinuous when the edge sealing strip is cut by the rotating blade, the separation of the edge sealing strip and the sample plate at the cutting position is avoided, and the quality of the finished product after the sample plate is cut is ensured.
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Description

TECHNICAL FIELD

[0001] The application relates to the cutting technical field, and particularly relates to a sample buffering, sample cutting and edge sealing integrated equipment applied to plane design. BACKGROUND

[0002] The edge sealing machine is a kind of woodworking machinery and belongs to the solid wood machinery category. The edge sealing machine is used for sealing edges.

[0003] After the plane design of the plate is completed, the plate needs to be processed, and the edge sealing equipment needs to be used during the processing, so as to increase the decorative property of the plate and reduce the cracking of the side plate. For example, the existing patent application No. 202320313589.5 relates to the technical field of the edge sealing machine and discloses an edge sealing equipment applied to plane design samples, which comprises an edge sealing equipment body, a supporting mechanism is arranged on one side of the edge sealing equipment body, and a storage mechanism is arranged on one side of the supporting mechanism.

[0004] However, during the use of the edge sealing machine, the sample plate after edge sealing needs to be cut, and the finished product is cut from the sample plate. Since the edge sealing strip on the sample plate is adhered to the sample plate for a short time, and the edge sealing strip is subjected to the force of being inclined away from the sample plate for a certain time when the edge sealing strip is cut by the rotary cutting, the edge sealing strip on the sample plate is easy to separate, thereby causing economic loss. SUMMARY

[0005] The application aims to provide a sample buffering, sample cutting and edge sealing integrated equipment applied to plane design, so as to solve the problems in the prior art.

[0006] To achieve the above-mentioned purpose, the application provides the following technical scheme: a sample buffering, sample cutting and edge sealing integrated equipment applied to plane design, comprising an edge sealing machine, an edge sealing chamber is formed on one side of the edge sealing machine, a conveying equipment is inserted into the edge sealing chamber, a cutting structure and a storage structure are arranged at one end of the conveying equipment, the cutting structure comprises a pneumatic cylinder one, an up-down telescopic supporting assembly is arranged at one end of the pneumatic cylinder one, left-right motion assemblies are arranged at the top of the up-down telescopic supporting assembly, the left-right motion assemblies comprise a pneumatic cylinder three, a square box connected to one end of the pneumatic cylinder three, a plurality of needle tools rotating with the square box, a pneumatic cylinder four, a mounting rack eight arranged at one end of the pneumatic cylinder four, four circular rods fixedly connected to one side of the mounting rack eight, and a transmission box fixedly connected between the two circular rods on the same side, a clamping plate is arranged in the transmission box, and a cutting assembly is arranged on one side of the top of the up-down telescopic supporting assembly.

[0007] Preferably, the conveying device is fixedly installed with a mounting frame one at both ends, both of which are fixedly connected with the edge banding machine, and the edge banding machine is installed on one side with a man-machine interaction device.

[0008] Preferably, the upper and lower telescopic support assembly comprises a mounting frame four, two telescopic rods one are fixedly connected to one side of the mounting frame four away from the storage structure, one end of the pneumatic cylinder one is fixedly connected with the mounting frame four, an equipment mounting cavity is formed on one side of the edge banding machine, the pneumatic cylinder one and the telescopic rod one are inserted into the equipment mounting cavity and fixedly connected with the edge banding machine, and a pushing plate is fixedly connected to one side of the mounting frame four close to the storage structure.

[0009] Preferably, the mounting frame four is fixedly connected with a mounting frame five at both ends, and the mounting frame five is fixedly connected with a pneumatic cylinder two and two connecting frames four at the top.

[0010] Preferably, the left and right movement assembly comprises a mounting frame six fixedly sleeved with the pneumatic cylinder three, and the mounting frame six is fixedly connected with the pneumatic cylinder two on the same side; a connecting frame two is fixedly connected between one end of the pneumatic cylinder three and the square box; and a plurality of the needles are inserted into the square box and rotationally connected with the square box.

[0011] Preferably, one side of one of the chain wheels two and one of the chain wheels one is provided with a gear, the gear is fixedly sleeved on one side of the adjacent needle, one side of the gear is provided with a transmission shaft, the transmission shaft is fixedly connected with the adjacent needle, one end of the transmission shaft extends to the outside of the square box and is rotationally connected with the square box, one end of the transmission shaft is fixedly connected with a motor one, and the motor one is fixedly connected with two connecting frames three between the motor one and the square box.

[0012] Preferably, the left and right movement assembly comprises a mounting frame seven fixedly connected with the adjacent mounting frame six, and the mounting frame seven is provided with a mounting frame nine at the top.

[0013] Preferably, the cutting assembly comprises two connecting frames six and a mounting frame ten fixedly connected between the two connecting frames six, one end of the connecting frame six is fixedly connected with the adjacent mounting frame seven, the mounting frame ten is fixedly inserted with a pneumatic cylinder five and two telescopic rods two, the pneumatic cylinder five and the two telescopic rods two are fixedly connected with a connecting frame seven, one end of the connecting frame seven is rotationally connected with a blade, the other end of the connecting frame seven is fixedly connected with a motor two, and the output end of the motor two is fixedly connected with the blade.

[0014] Preferably, the mounting frame seven is provided with a connecting frame five at the top, both of the connecting frame four top ends penetrate the mounting frame seven and are fixedly connected with the mounting frame nine and the connecting frame five respectively, the round rod penetrates the same side connecting frame five, a plurality of hydraulic telescopic rods are fixedly connected inside the transmission box, one end of the hydraulic telescopic rod is fixedly connected with the clamping plate, a hydraulic sensor is installed on one of the hydraulic telescopic rods, and the hydraulic sensor is fixedly installed in the transmission box.

[0015] Preferably, the storage structure comprises a sliding rail, two mounting frames two slidingly connected outside the sliding rail, a hydraulic cylinder fixedly connected on one side of the top of the sliding rail, a connecting frame one fixedly connected between the two mounting frames two, the hydraulic cylinder is fixedly connected with one of the mounting frames two, a supporting plate slidingly connected inside the mounting frame two, a transmission block fixedly connected on one side of the supporting plate, a rope fixedly connected on the top of the transmission block, an arc hollow pipe sleeved outside the rope, a mounting frame three fixedly connected between the arc hollow pipe and the mounting frame two, a torsional spring box fixedly connected on one side of the mounting frame two, a torsional spring installed inside the torsional spring box, one end of the torsional spring fixedly connected with the bottom end of the rope, and a protection box fixedly connected on one side of the mounting frame two.

[0016] Compared with the prior art, the application has the following beneficial effects:

[0017] 1、The rotating blade cuts the sample plate in use, since a plurality of vertical circular grooves are formed on the two sides of the sample plate, the area of the rotating force applied by the rotating blade to the sealing strip is small and discontinuous, the separation of the sealing strip and the sample plate at the cutting position is avoided, and the quality of the finished product after cutting the sample plate is ensured.

[0018] 2、In the application, the relative positions between the four clamping plates and the sample plate and between the square box and the sample plate are unchanged, the four clamping plates clamp and fix the two sides of the sample plate, and the cutting assembly is arranged between the front two clamping plates and the rear two clamping plates, even if the sealing strip on the sample plate is raised due to the cutting force during the subsequent cutting process of the cutting assembly, the raised length can be controlled, the economic loss caused by cutting processing is reduced, the square box is driven to move towards the sample plate by the working hydraulic cylinder three through the connecting frame two, the effect that the rotating plurality of needles open the circular grooves on the sealing strip adhered to the outside of the sample plate is achieved, the movement direction of the needle is perpendicular to the side wall of the sealing strip adhered to the sample plate, and the movement force applied to the sealing strip by the small needle when forming the circular groove on the sealing strip is small, and the preset work of cutting the sealing strip is completed.

[0019] 3, The blade of the application cuts a part of the finished product from the sample plate, at this time the finished product has mostly moved to the top of the support plate, with the movement of multiple clamping plates, the finished product is free to fall after being released from contact with the sample plate and the finished product, under the action of product gravity, the support plate moves downward by a distance, the torsional spring stretches by a certain length, providing space for the storage of the next finished product, the cutting structure is provided with a storage structure on one side, the storage structure cooperates with the cutting structure to buffer the finished product after cutting, avoiding the deformation and layering of the corners of the finished product after cutting, reducing accidental loss. BRIEF DESCRIPTION OF DRAWINGS

[0020] Figure 1 is a structural diagram of the application;

[0021] Figure 2 is a structural diagram of the storage structure of the application;

[0022] Figure 3 is a partial structural diagram of the mounting rack two of the application;

[0023] Figure 4 is an enlarged view of the structure at A of Figure 3 ;

[0024] Figure 5 is a structural diagram of the cutting structure of the application;

[0025] Figure 6 is an enlarged view of the structure at B of Figure 5 ;

[0026] Figure 7 is a structural diagram of the mounting rack one of the application;

[0027] Figure 8 is a structural diagram of the mounting rack four of the application;

[0028] Figure 9 is a structural diagram of the mounting rack eight of the application;

[0029] Figure 10 is a structural diagram of the connecting rack six of the application;

[0030] Figure 11 is a partial structural diagram of the square box of the application;

[0031] Figure 12 is a partial structural diagram of the needle of the application;

[0032] Figure 13 is an enlarged view of the structure at C of Figure 12 ;

[0033] Figure 14 is a structural diagram of the transmission shaft of the application;

[0034] Figure 15 Figure is a schematic diagram of a partial structure of the transmission case of the present application.

[0035] Figure label: 1, edge sealing machine; 2, edge sealing chamber; 3, mounting frame one; 4, conveying device; 5, storage structure; 51, sliding rail; 52, mounting frame two; 53, hydraulic cylinder; 54, connecting frame one; 55, support plate; 56, transmission block; 57, rope; 58, arc hollow pipeline; 59, mounting frame three; 510, torsional spring; 511, torsional spring box; 512, protection box; 6, cutting structure; 61, pushing plate; 62, mounting frame four; 63, air cylinder one; 64, telescopic rod one; 65, mounting frame five; 66, air cylinder two; 67, mounting frame six; 68, air cylinder three; 69, connecting frame two; 610, square box; 611, needle tool; 612, chain wheel one; 613, chain one; 614, chain wheel two; 615, chain two; 616, baffle; 617, gear; 618, transmission shaft; 619, motor one; 620, connecting frame three; 621, connecting frame four; 622, mounting frame seven; 623, connecting frame five; 624, mounting frame eight; 625, air cylinder four; 626, mounting frame nine; 627, round rod; 628, transmission case; 629, clamping plate; 630, hydraulic telescopic rod; 631, hydraulic sensor; 632, connecting frame six; 633, mounting frame ten; 634, telescopic rod two; 635, air cylinder five; 636, connecting frame seven; 637, motor two; 638, blade; 7, human-computer interaction device. DETAILED DESCRIPTION

[0036] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative work fall within the protection scope of the present application.

[0037] Embodiment: as Figures 1-15As shown, the present application provides a sample buffer cutting and edge sealing integrated equipment applied to graphic design, which comprises an edge sealing machine 1, an edge sealing chamber 2 is formed on one side of the edge sealing machine 1, a conveying device 4 is inserted into the edge sealing chamber 2, a cutting structure 6 and a storage structure 5 are arranged at one end of the conveying device 4, the cutting structure 6 comprises a pneumatic cylinder one 63, an up-down telescopic support assembly is arranged at one end of the pneumatic cylinder one 63, left-right movement assemblies are arranged at the top of the up-down telescopic support assembly, the left-right movement assemblies comprise a pneumatic cylinder three 68, a square box 610 connected to one end of the pneumatic cylinder three 68, a plurality of needle tools 611 rotating with the square box 610, a pneumatic cylinder four 625, a mounting bracket eight 624 arranged at one end of the pneumatic cylinder four 625, four circular rods 627 fixedly connected to one side of the mounting bracket eight 624, and a transmission box 628 fixedly connected between the two circular rods 627 on the same side, a clamping plate 629 is arranged in the transmission box 628, and a cutting assembly is arranged on one side of the top of the up-down telescopic support assembly.

[0038] Specifically, mounting brackets one 3 are fixedly installed at both ends of the outer side of the conveying device 4, the two mounting brackets one 3 are fixedly connected with the edge sealing machine 1, the conveying device 4 installed through the two mounting brackets one 3 is used for conveying sample plate pieces, a man-machine interaction device 7 is installed on one side of the edge sealing machine 1, the man-machine interaction device 7 controls the edge sealing machine 1, the conveying device 4, the storage structure 5 and the cutting structure 6 to perform an integrated processing procedure of sample plate piece edge sealing, cutting, buffer storage and placement according to the internal preset program.

[0039] When the sample plate pieces conveyed by the conveying device 4 are partially away from the inside of the edge sealing chamber 2 by a length after being completed by the edge sealing machine 1, the man-machine interaction device 7 controls the two left-right movement assemblies in the cutting structure 6 to work, the pneumatic cylinder four 625 in the left-right movement assemblies works, the mounting bracket eight 624 is fixedly connected at one end of the pneumatic cylinder four 625, the four circular rods 627 are distributed on the same side two by two on one side of the mounting bracket eight 624, the transmission box 628 is fixedly connected between the two circular rods 627 on the same side, at this time, the pneumatic cylinder four 625 drives the two transmission boxes 628 to move through the mounting bracket eight 624 and the four circular rods 627, the clamping plate 629 is arranged in the transmission box 628, the two left-right movement assemblies are symmetrically distributed on both sides of the top of the conveying device 4, and the four clamping plates 629 in the two left-right movement assemblies after work clamp the two sides of the sample plate pieces.

[0040] Simultaneously, the human-machine interface device 7 controls pneumatic cylinder 1 63 and pneumatic cylinder 4 625 to work synchronously. One end of pneumatic cylinder 1 63 is fixedly connected to mounting bracket 4 62 in the upper and lower telescopic support assembly. Mounting bracket 5 65 is fixedly connected to both ends of mounting bracket 4 62. Pneumatic cylinder 2 66 and two connecting brackets 4 621 are fixedly connected to the top of each of the two mounting brackets 5 65. Mounting bracket 9 626 is installed on the top of mounting bracket 7 622 and is fixedly sleeved on the outside of pneumatic cylinder 4 625 on the same side. The tops of the two connecting brackets 4 621 penetrate mounting bracket 7 622 and are fixedly connected to mounting bracket 9 626 and connecting bracket 5 623 respectively. Pneumatic cylinder 4 625 moves synchronously with mounting bracket 4 62 through the cooperation of mounting bracket 9 626, connecting bracket 4 621, and mounting bracket 5 65. The operation of pneumatic cylinder 1 63 causes… Mounting bracket 4 62 moves forward, two pneumatic cylinders 4 625 move forward, four clamping plates 629 move forward, two mounting brackets 5 65 move forward, two pneumatic cylinders 2 66 move forward, and two square boxes 610 move forward. Pneumatic cylinder 1 63 operates to make the forward movement speed of mounting bracket 4 62 the same as the forward movement speed of the sample plate conveyed by conveying device 4. In this state, the relative positions of the four clamping plates 629 and the sample plate remain unchanged, as do the relative positions of the square boxes 610 and the sample plate. The four clamping plates 629 clamp and fix the sample plate on both sides. The cutting assembly is positioned between the two front clamping plates 629 and the two rear clamping plates 629. During the subsequent cutting process of the sample plate, even if the cutting force causes the edge banding on the sample plate to curl up, the curling length can be controlled, reducing economic losses caused by cutting.

[0041] And as Figure 9 , Figure 11 , Figure 12 , Figure 13 and Figure 14 As shown, a mounting frame 67 is fixedly connected to the top of a pneumatic cylinder 66 fixedly connected to the top of a mounting frame 65. A pneumatic cylinder 68 is fixedly inserted inside the mounting frame 67. A connecting frame 69 is fixedly connected between one end of the pneumatic cylinder 68 and the square box 610. Multiple needles 611 are inserted into the square box 610 and rotatably connected to the square box 610. A portion of the needles 611 are fixedly fitted with sprockets 612 on their outer sides. Multiple sprockets 612 are located inside a chain 613 and mesh with the chain 613. Multiple sprockets 612 and chain 613 constitute a first sprocket assembly to drive a portion of the needles 611. Another portion of the needles 611 are fixedly fitted with sprockets 614 on their outer sides. Multiple sprockets 614 are located inside a chain 615 and mesh with the chain 615. Multiple sprockets 614 and chain 615 cooperate to form a second sprocket assembly to drive the remaining needles 611.

[0042] One of the sprocket two 614 and one of the sprocket one 612 side are provided with gear 617, gear 617 fixedly provided on the outside of the adjacent needle 611, one of the gear 617 side of the transmission shaft 618 is fixedly connected with the adjacent needle 611, the transmission shaft 618 extends to the outside of the square box 610 and is rotatably connected with the square box 610, a motor one 619 is fixedly connected at one end of the transmission shaft 618, two connecting frames three 620 are fixedly connected between the motor one 619 and the square box 610, the relative position between the motor one 619 and the square box 610 is unchanged, the motor one 619 is controlled to work, the motor one 619 drives the needle 611 fixedly arranged inside one of the gear 617 to rotate through the transmission shaft 618, since the two gears 617 are engaged with each other, the sprocket one 612 fixedly arranged outside the needle 611 fixedly arranged inside one of the gear 617 is part of the first sprocket assembly, the sprocket one 612 fixedly arranged outside the needle 611 fixedly arranged inside the other gear 617 is part of the second sprocket assembly, under the action of the first sprocket assembly and the second sprocket assembly, the plurality of needles 611 rotates;

[0043] Since the square box 610 moves synchronously with the mounting frame seven 622 through the connecting frame two 69, the mounting frame seven 622 and the mounting frame four 62 move forward synchronously, the square box 610 moves away from the side of the mounting frame one 3, then the working air cylinder three 68 pushes the square box 610 to move towards the sample plate through the connecting frame two 69, so that the plurality of needles 611 rotating on the outside of the sample plate forms a circular groove on the edge strip adhered to the sample plate, the movement direction of the needle 611 is perpendicular to the side wall of the edge strip adhered to the sample plate, when the needle 611 forms a circular groove on the edge strip, the edge strip receives a smaller movement force, and the preset work of cutting the edge strip is completed.

[0044] Then, the air cylinder three 68 is controlled to work and contract, and the square box 610 and the plurality of needles 611 move away from the sample plate.

[0045] Then, the air cylinder two 66 is controlled to contract, the air cylinder two 66 drives the mounting frame six 67 fixedly connected at one end and the mounting frame seven 622 fixedly connected with the mounting frame six 67 to move downward, the mounting frame six 67 moves downward to drive the square box 610 to move downward through the air cylinder three 68 and the connecting frame two 69; the mounting frame seven 622 moves downward, the two connecting frames four 621 supporting the air cylinder four 625 and the connecting frame five 623 pass through the inside of the mounting frame seven 622, the positions of the air cylinder four 625, the round rod 627, the transmission box 628 and the clamping plate 629 are unchanged, one end of the two connecting frames six 632 in the cutting assembly is fixedly connected with the mounting frame seven 622, the air cylinder five 635 and the two telescopic rods two 634 are fixedly inserted on the mounting frame ten 633, and the mounting frame seven 622 drives the connecting frame six 632, the mounting frame ten 633, the air cylinder five 635 and the two telescopic rods two 634 to move downward;

[0046] And the connecting frame seven 636 is fixedly connected between the pneumatic cylinder five 635 and the two telescopic rods two 634, one end of the connecting frame seven 636 is rotatably connected with the blade 638, and the output end of the motor two 637 fixedly connected to the other end of the connecting frame seven 636 is fixedly connected with the blade 638. Finally, the blade 638 moves down to the side of the sample plate piece, and at this time the blade 638 is located on one side of the plurality of circular grooves formed on the edge sealing strip by the needle 611.

[0047] Then control the pneumatic cylinder five 635 to work, the pneumatic cylinder five 635 drives the connecting frame seven 636, the motor two 637 and the blade 638 to move, the working motor two 637 drives the blade 638 to rotate, and under the cooperation of the pneumatic cylinder five 635 and the motor two 637, the rotating blade 638 cuts the sample plate piece. Since the two sides of the sample plate piece are adhered to the edge sealing strip, a plurality of vertical circular grooves are formed on the edge sealing strip, and when the blade 638 rotates to cut the edge sealing strip, the edge sealing strip is subjected to the rotating force of the rotating blade 638, the area of the rotating force is small and discontinuous, avoiding the separation of the edge sealing strip and the sample plate piece at the cutting position, and ensuring the quality of the finished product after cutting the sample plate piece.

[0048] After the sample plate piece is cut, the pneumatic cylinder five 635 is retracted, and the blade 638 is retracted and reset.

[0049] Subsequently, the pneumatic cylinder four 625 is controlled to retract, and the clamping plate 629 is separated from the sample plate piece.

[0050] Finally, the pneumatic cylinder one 63 is quickly retracted, and the pneumatic cylinder two 66 is quickly extended, so that the cutting structure 6 quickly returns to the initial state, and the next processing position is processed as described above.

[0051] And as shown in Figure 1 、 Figure 2 、 Figure 3 and Figure 4 , the two mounting frames two 52 are slidably connected to the outer side of the slide rail 51, the transmission block 56 is fixedly connected to one side of the support plate 55 slidably connected inside the mounting frame two 52, the rope 57 is fixedly connected to the top of the transmission block 56, the arc hollow pipe 58 sleeved outside the rope 57 is fixedly connected between the mounting frame two 52, the rope 57 applies an up-down motion force to the transmission block 56 under the support of the arc hollow pipe 58, the torsional spring box 511 is fixedly connected to one side of the mounting frame two 52, one end of the torsional spring 510 installed inside the torsional spring box 511 is fixedly connected to the bottom end of the rope 57, and the support plate 55 is kept at the top of the inner cavity of the mounting frame two 52 under the action of the torsional spring 510;

[0052] After the blade 638 cuts a part of the finished product from the sample plate, the finished product has mostly moved to the top of the support plate 55, and as the plurality of clamping plates 629 move out of contact with the sample plate and the finished product, the finished product is free to fall under the force of gravity. The support plate 55 moves downward by a distance, and the torsion spring 510 extends by a certain length to provide space for the next finished product.

[0053] The hydraulic cylinder 53 is fixedly connected to the top of the slide rail 51, and the connecting frame one 54 is fixedly connected between the two mounting frames two 52. The hydraulic cylinder 53 is fixedly connected to one of the mounting frames two 52. After a certain number of finished products are stacked in one of the mounting frames two 52, the hydraulic cylinder 53 is controlled to control the position of the two mounting frames two 52, so that the other mounting frame two 52 moves to one side of the cutting structure 6. The receiving structure 5 is arranged on one side of the cutting structure 6, and the receiving structure 5 cooperates with the cutting structure 6 to receive and buffer the finished product after cutting, so as to avoid the deformation and layering of the finished product after cutting, and reduce accidental loss.

[0054] In addition, as shown in Figure 2 , the mounting frame two 52 is fixedly connected with a protection box 512, and the torsion spring box 511, the arc hollow pipe 58 and other structures are arranged in the protection box 512. The protection box 512 plays a protection role for the torsion spring 510, avoiding the situation that the torsion spring 510 cannot contract and rebound due to external adhesion of impurities.

[0055] In addition, as shown in Figure 5 , Figure 6 and Figure 8 , the mounting frame four 62 is fixedly connected with two telescopic rods one 64 away from the receiving structure 5 on one side. The edge sealing machine 1 is provided with a device mounting cavity on one side, and the pneumatic cylinder one 63 and the telescopic rod one 64 are inserted into the device mounting cavity and fixedly connected with the edge sealing machine 1. The telescopic rod one 64 shares the force received by the pneumatic cylinder one 63, and protects the pneumatic cylinder one 63. The pushing plate 61 is fixedly connected to the mounting frame four 62 close to the receiving structure 5. The pushing plate 61 plays a role in pushing and aligning the stacked finished products in the receiving structure 5.

[0056] In addition, as shown in Figure 11 , Figure 12 and Figure 13 , the two sides of the square box 610 are fixedly connected with baffles 616, and the chain one 613 and the chain two 615 are arranged between the two baffles 616. The two baffles 616 limit the shape of the chain one 613 and the chain two 615, so as to ensure limited transmission of the chain one 613 and the chain two 615.

[0057] In addition, as shown in Figure 9 and Figure 15As shown, the top of the mounting frame seven 622 is fixedly connected with the connecting frame five 623, the round rod 627 penetrates through the connecting frame five 623 on the same side, the connecting frame five 623 supports and limits the round rod 627, the transmission box 628 moves horizontally, a plurality of hydraulic telescopic rods 630 are fixedly connected in the transmission box 628, one end of the hydraulic telescopic rod 630 is fixedly connected with the clamping plate 629, the hydraulic telescopic rod 630 can stretch and retract, the internal hydraulic pressure of the hydraulic telescopic rod 630 increases when the hydraulic telescopic rod 630 retracts, a hydraulic sensor 631 is installed on one of the hydraulic telescopic rods 630, the hydraulic sensor 631 is fixedly installed in the transmission box 628, when the clamping plate 629 clamps the sample plate piece, the hydraulic telescopic rod 630 retracts, the hydraulic sensor 631 detects the internal hydraulic pressure value of one of the hydraulic telescopic rods 630, and the man-machine interaction device 7 controls the work of the pneumatic cylinder four 625 through the pressure value fed back by the hydraulic sensor 631, so that the pressure applied to the sample plate piece by the clamping plate 629 is accurately controlled, and the situation that the clamping plate 629 causes the blade plate piece to deform is avoided.

[0058] It will be obvious to a person skilled in the art that the application is not limited to the details of the above-described exemplary embodiments, but that the application can be implemented in other concrete forms without departing from the spirit or essential characteristics of the application. The embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the application being indicated by the appended claims rather than by the above description, and it is intended to encompass all changes and modifications that fall within the meaning and scope of equivalents of the claims. Any reference signs in the claims should not be construed as limiting the claims concerned.

Claims

1. A sample buffering, cutting, and edge sealing integrated device for planar design, comprising an edge sealing machine (1), wherein an edge sealing chamber (2) is formed on one side of the edge sealing machine (1), and a conveying device (4) is inserted inside the edge sealing chamber (2), characterized in that: The conveying device (4) is provided with a cutting structure (6) and a storage structure (5) at one end. The cutting structure (6) includes a pneumatic cylinder (63). The pneumatic cylinder (63) is provided with an upper and lower telescopic support assembly at one end. The upper and lower telescopic support assembly is provided with left and right movement assemblies on both sides of the top. The left and right movement assemblies include a pneumatic cylinder (68), a square box (610) connected to one end of the pneumatic cylinder (68), a plurality of needles (611) rotatably inserted on the square box (610), a pneumatic cylinder (625), an installation frame (624) provided at one end of the pneumatic cylinder (625), four round rods (627) fixedly connected to one side of the installation frame (624), and a transmission box (628) fixedly connected between two round rods (627) on the same side. The transmission box (628) is provided with a clamping plate (629) inside. The upper and lower telescopic support assembly is provided with a cutting assembly on one side of the top. The telescopic support assembly includes a mounting frame four (62), on the side of the mounting frame four (62) away from the storage structure (5) two telescopic rods one (64) are fixedly connected, one end of the pneumatic cylinder one (63) is fixedly connected to the mounting frame four (62), the edge banding machine (1) has an equipment installation cavity on one side, the pneumatic cylinder one (63) and the telescopic rod one (64) are both inserted into the equipment installation cavity and fixedly connected to the edge banding machine (1), and a pusher plate (61) is fixedly connected on the side of the mounting frame four (62) close to the storage structure (5). Mounting bracket four (62) is fixedly connected to mounting bracket five (65) at both ends, and pneumatic cylinder two (66) and two connecting bracket four (621) are fixedly connected to the top of mounting bracket five (65). The left and right movement assembly includes a mounting bracket six (67) fixedly sleeved on the outside of the pneumatic cylinder three (68). The mounting bracket six (67) is fixedly connected to the pneumatic cylinder two (66) on the same side. A connecting bracket two (69) is fixedly connected between one end of the pneumatic cylinder three (68) and the square box (610). Multiple needles (611) are inserted into the square box (610) and rotatably connected to the square box (610). A portion of the needles (611) are all fitted with sprockets (612) on their outer sides, and multiple sprockets (612) are fitted with chains (613) on their outer sides. Another portion of the needles (611) are all fitted with sprockets (614) on their outer sides, and multiple sprockets (614) are fitted with chains (615) on their outer sides. The square box (610) has baffles (616) fixedly connected to both sides inside. Chains (613) and (615) are both located between the two baffles (616). One of the sprockets (614) and one of the sprockets (615) are connected to each other. 12) Gears (617) are provided on one side of each gear (617), which are fixedly sleeved on the outside of the adjacent needles (611). A drive shaft (618) is provided on one side of one of the gears (617). The drive shaft (618) is fixedly connected to the adjacent needles (611). One end of the drive shaft (618) extends to the outside of the square box (610) and is rotatably connected to the square box (610). A motor (619) is fixedly connected to one end of the drive shaft (618). Two connecting brackets (620) are fixedly connected between the motor (619) and the square box (610). The left and right movement component includes a mounting frame seven (622), which is fixedly connected to an adjacent mounting frame six (67). A mounting frame nine (626) is provided on the top of the mounting frame seven (622), and the mounting frame nine (626) is fixedly sleeved on the outside of the pneumatic cylinder four (625) on the same side. The cutting assembly includes two connecting frames six (632) and a mounting frame ten (633) fixedly connected between the two connecting frames six (632). One end of the connecting frame six (632) is fixedly connected to the adjacent mounting frame seven (622). A pneumatic cylinder five (635) and two telescopic rods two (634) are fixedly inserted on the mounting frame ten (633). A connecting frame seven (636) is fixedly connected between the pneumatic cylinder five (635) and the two telescopic rods two (634). A blade (638) is rotatably connected to one end of the connecting frame seven (636). A motor two (637) is fixedly connected to the other end of the connecting frame seven (636). The output end of the motor two (637) is fixedly connected to the blade (638). The top of the mounting frame seven (622) is provided with a connecting frame five (623). The top ends of the two connecting frames four (621) pass through the mounting frame seven (622) and are fixedly connected to the mounting frame nine (626) and the connecting frame five (623) respectively. The round rod (627) passes through the connecting frame five (623) on the same side. Multiple hydraulic telescopic rods (630) are fixedly connected inside the transmission box (628). One end of the hydraulic telescopic rod (630) is fixedly connected to the clamping plate (629). A hydraulic sensor (631) is installed on one of the hydraulic telescopic rods (630). The hydraulic sensor (631) is fixedly installed inside the transmission box (628).

2. The sample buffering, cutting, and sealing integrated device for planar design according to claim 1, characterized in that: The conveying equipment (4) has mounting brackets (3) fixedly installed at both ends of its outer side. Both mounting brackets (3) are fixedly connected to the edge sealing machine (1). The edge sealing machine (1) has a human-machine interaction device (7) installed on one side.

3. The sample buffering, cutting, and edge-sealing integrated device for planar design according to claim 1, characterized in that: The storage structure (5) includes a slide rail (51), two mounting brackets (52) slidably connected to the outside of the slide rail (51), and a hydraulic cylinder (53) fixedly connected to one side of the top of the slide rail (51). A connecting bracket (54) is fixedly connected between the two mounting brackets (52). The hydraulic cylinder (53) is fixedly connected to one of the mounting brackets (52). A support plate (55) is slidably connected inside the mounting bracket (52). A transmission block (56) is fixedly connected to one side of the support plate (55). 6) A rope (57) is fixedly connected to the top. An arc-shaped hollow pipe (58) is sleeved on the outside of the rope (57). An installation frame (59) is fixedly connected between the arc-shaped hollow pipe (58) and the second installation frame (52). A torsion spring box (511) is fixedly connected to one side of the second installation frame (52). A torsion spring (510) is installed inside the torsion spring box (511). One end of the torsion spring (510) is fixedly connected to the bottom end of the rope (57). A protective box (512) is fixedly connected to one side of the second installation frame (52).

Citation Information

Patent Citations

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