Automatic film and label pasting device for aluminum material

By designing an aluminum automatic film labeling device, synchronous film and labeling of aluminum is achieved, solving the problem of inefficiency of existing equipment, improving production efficiency and stable stacking of aluminum, and adapting to flexible production needs.

CN120270594AActive Publication Date: 2025-07-08FOSHAN HUAYUN MASCH CO LTD
View PDF 5 Cites 0 Cited by

Patent Information

Application Number
CN202510748113.8
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-06
Publication Date
2025-07-08
Estimated Expiration
2045-06-06

AI Technical Summary

Technical Problem

Existing equipment cannot efficiently carry out the filming and labeling process of aluminum at the same time, resulting in low production efficiency and increased costs, and high labor intensity for transport and operators.

Method used

An aluminum automatic film labeling device is designed, including film assembly, labeling assembly, transition conveying assembly and storage lifting assembly to realize synchronous film and labeling of aluminum, and convenient transportation and stacking through storage transfer trucks.

Benefits of technology

It improves the efficiency of aluminum film labeling, saves production and transportation time, reduces the labor intensity of operators, ensures the stable stacking and quality of aluminum, and supports flexible production needs.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120270594A_ABST
    Figure CN120270594A_ABST
Patent Text Reader

Abstract

The invention provides an automatic aluminum product film and label pasting device, and relates to the technical field of automatic aluminum product film and label pasting equipment, the automatic aluminum product film and label pasting device comprises a film pasting assembly, a label pasting assembly, a transition conveying assembly and a storage lifting assembly, and a storage transfer trolley is further arranged below the storage lifting assembly. The aluminum product automatic film and label pasting device has the beneficial effects that the aluminum product automatic film and label pasting device, the transition conveying assembly and the storage lifting assembly are arranged, and the storage transfer trolley is further arranged below the storage lifting assembly; according to the automatic aluminum material film and label pasting device, film pasting and label pasting can be conducted on aluminum materials at the same time, the two working procedures are synchronized, and therefore the production time and the transfer time are saved, the aluminum materials are stacked together after being converted by an angle through the transition conveying assembly, the storage lifting assembly and the storage transfer trolley, then the aluminum materials are carried away through the storage transfer trolley, and the production efficiency is improved. And subsequent packaging of the aluminum materials is facilitated, continuous production is also facilitated, rapid line changing is supported through the design of the modular transfer trolley, and the flexible production requirement is met.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to the technical field of automatic film - sticking and labeling equipment for aluminum materials, and in particular to an automatic film - sticking and labeling device for aluminum materials. Background Art

[0002] Before shipping aluminum materials, aluminum material manufacturers will apply film and label on the surface of the aluminum materials. Film - sticking is to protect the surface of the aluminum materials from being scratched easily, and label - sticking is to mark the model and brand of the aluminum materials. However, most devices on the market do not have the function of simultaneously applying film and label to aluminum materials, so manufacturers need to set up two devices separately to complete the tasks. This segmented operation mode has the disadvantages of low efficiency and increased costs. The low efficiency is mainly due to the separation of processes, which prolongs the production cycle. The low efficiency is mainly reflected in the time - consuming and labor - intensive transfer between devices and the increased labor intensity of operators.

[0003] The technical content disclosed in the Chinese patent document (Publication No.: CN215044468U, Patent Name: Labeling Mechanism for Aluminum Material Production Line) is as follows: It includes a suspension frame arranged above the aluminum material conveyor line. The suspension frame is suspended with a fixed plate hinged to it through a connecting rod. A hand - held labeling machine is fixed on the lower side of the fixed plate. A driving mechanism for driving the labeling end of the hand - held labeling machine to swing downward is arranged between the fixed plate and the suspension frame. A contraction mechanism for driving the rotation handle of the hand - held labeling machine to swing upward is arranged at the other end of the fixed plate. A winding mechanism for winding release paper is also fixed on the rotation handle of the hand - held labeling machine. This labeling mechanism for the aluminum material production line has a compact structure and is convenient for labeling aluminum materials. As can be seen from the above implementation scheme and the corresponding drawings, this labeling mechanism for the aluminum material production line can only complete labeling, and film - sticking still depends on other devices, failing to solve the core problems of transfer time and labor consumption. Summary of the Invention

[0004] The present invention overcomes the disadvantages in the prior art and provides an automatic film - sticking and labeling device for aluminum materials, which is provided with an automatic film - sticking and labeling device for aluminum materials, a transition conveying component, and a storage and lifting component. A storage transfer vehicle is also arranged below the storage and lifting component. The automatic film - sticking and labeling part of this device can synchronously perform the film - sticking and labeling processes, effectively saving production and transfer time. The transition conveying component, the storage and lifting component, and the storage transfer vehicle work together to be able to perform angle conversion and stacking operations on aluminum materials, and then realize the convenient transfer of aluminum materials with the help of the storage transfer vehicle, providing convenience for subsequent packaging processes. In addition, by replacing the storage transfer vehicle, when the aluminum materials are full, an empty vehicle can be quickly replaced to ensure continuous production. The modular transfer vehicle design supports quick line change, meeting the requirements of flexible production.

[0005] In order to solve the above - mentioned technical problems, the present invention is realized through the following technical solutions: An automatic film and labeling device for aluminum materials, comprising a film-sticking component, a labeling component, a transition conveying component, and a storage lifting component, wherein a storage transfer vehicle is also arranged below the storage lifting component; The film-sticking assembly and labeling assembly are used to stick films and labels on long strips of aluminum. The cross-section of the long strips of aluminum is a right-angle shape with two perpendicular sides. When the aluminum is labeled and film-sticked, a plane of the aluminum is parallel to the ground to form an L shape. After the labeling and film-sticking are completed, the aluminum is transported to the transition conveying assembly. The transition conveying assembly is provided with a flip seat. The flip seat flips the aluminum so that the tips of the intersections of the two sides of the aluminum face downward, and then transports it to the storage and lifting assembly. The storage and lifting assembly clamps the storage and transfer vehicle so that it can be gradually raised and lowered. As the aluminum is placed in the storage and transfer vehicle one by one, the storage and transfer vehicle gradually descends. After the storage and transfer vehicle is full of aluminum, it is moved out of the storage and lifting assembly to transfer the aluminum to the next process.

[0006] Furthermore, an aluminum material conveying assembly is further provided on one side of the film-applying assembly and the label-applying assembly, and the aluminum material is input from one end of the aluminum material conveying assembly, the film-applying assembly applies film to the side of the aluminum material, and the label-applying assembly applies label to the upward side of the aluminum material; The aluminum material conveying assembly includes a conveying motor, which transmits power to a conveying driving wheel through a transmission gear. A conveying passive wheel is arranged above the conveying driving wheel, and the conveying passive wheel is connected to a passive wheel spring seat. The passive wheel spring seat uses the elastic force of a spring to squeeze the conveying passive wheel toward the conveying driving wheel. The plane of the aluminum material parallel to the ground is clamped between the conveying driving wheel and the conveying passive wheel, and the rotation of the conveying driving wheel pushes the aluminum material to move.

[0007] Furthermore, the film sticking assembly includes a film frame, and the film frame is used to install the film roll; A film strip limiting component is provided on one side of the film frame, and the film strip limiting component is provided with two film strip limiting blocks for limiting the left and right positions of the film strip. After the film strip of the film roll is pulled out, it passes through the film strip limiting component and is attached to the side of the aluminum material; As the aluminum material is pushed by the aluminum material conveying assembly, the film strip is also pulled out and attached to the side of the aluminum material; The film laminating assembly comprises an upper limit pressing block for aluminum material, a side pressing block for film strips and a side pressing roller for aluminum material. The upper limit pressing block for aluminum material is used to press against the upper end surface of the aluminum material, the side pressing block for film strips is used to press against the side of the aluminum material and the film laminating device; the side pressing roller for aluminum material is used to press against the side of the aluminum material during the conveying process of the aluminum material. The aluminum upper limit pressing block and the membrane strip side pressing block are roller bodies made of sponge; The film sticking assembly comprises a film strip cutting motor, the film strip cutting motor is connected to a film strip cutter, and the film strip cutter is used to cut the film strips connected between every two sections of aluminum material.

[0008] Further, the labeling assembly includes a labeling lifting member, which includes a lifting rod and a lifting screw rod. A lifting block is slidably connected to the lifting rod, and the lifting screw rod is threadedly connected to the lifting block; The lifting block is connected to a lateral adjustment rod. The lifting block is provided with an open circular groove, and the lateral adjustment rod is inserted into the open circular groove. By tightening the bolt on one side of the open circular groove, the open circular groove clamps the lateral adjustment rod. A first limiting strip is also provided in the open circular groove, and a limiting slot is provided on the lateral adjustment rod. The first limiting strip is inserted into the limiting slot; One end of the lateral adjustment rod is rotatably connected to a lateral adjustment handle, and the lateral adjustment handle is connected to a lateral screw rod, which is arranged in the lateral adjustment rod; the lateral screw rod is threadedly connected to a labeling nut block; the outside of the labeling nut block is connected to a sliding block, and the sliding block is clamped in the labeling base plate, and the lateral adjustment rod is slidably connected to the sliding block.

[0009] Further, the labeling base plate is connected to a label rack, a first transition rotating shaft, a second transition rotating shaft, a conveying rotating shaft component, a label discharging component, and a label waste paper recycling rack; The label rack is used for hanging a whole roll of labels. After the label strip is pulled out from the roll-shaped label roll, it passes through a pulling spring component, then passes through the first transition rotating shaft and the second transition rotating shaft and enters the conveying rotating shaft component, and then bypasses the label discharging component. After the label is pasted on the aluminum material, the label waste paper passes through the conveying rotating shaft component again and finally winds around the label waste paper recycling rack for recycling; The conveying rotating shaft component is connected to a power component.

[0010] Further, the conveying rotating shaft component includes a conveying main shaft. On both sides above the conveying main shaft, a sixth transition shaft, a fifth transition shaft, and a first linkage card shaft are respectively arranged. The first linkage card shaft is connected to a first interference card shaft. Both ends of the first interference card shaft are rotatably connected to a first long plate, and both ends of the first linkage card shaft are also rotatably connected to the first long plate. The first linkage card shaft is connected to the labeling base plate. The first interference card shaft rotates around the first linkage card shaft with the first long plate as the radius; Before installing the label strip, when the first interference card shaft lies on top of the conveying main shaft, it only sags by gravity. After passing the label strip through the space between the conveying main shaft and the first interference card shaft, manually press the first interference card shaft downward, so that the first interference card shaft is in interference contact with the conveying main shaft, and then the label strip can be clamped for conveying; On both sides below the conveying main shaft, a third transition shaft, a fourth transition shaft, and a second linkage card shaft are respectively arranged; Both ends of the second linkage card shaft are rotatably connected to a second long plate, and both ends of the second interference card shaft are also rotatably connected to the second long plate. The second linkage card shaft is connected to the labeling base plate. The second interference card shaft rotates around the second linkage card shaft with the second long plate as the radius; Before installing the label waste strip, first pass the label waste through the space between the conveying main shaft and the second interference clamping shaft, and then manually squeeze the second interference clamping shaft upward so that the second interference clamping shaft is in interference contact with the conveying main shaft, then the label waste can be clamped and conveyed; The power component includes a label output motor. The label output motor is connected to the main shaft pulley through a belt. The main shaft pulley is connected to the recycling pulley through a belt. The main shaft pulley is connected to the conveying main shaft, and the recycling pulley is connected to the label waste recycling rack.

[0011] Further, the transition conveying assembly includes a plurality of angular turning components and conveying roller components arranged at intervals, and a pushing component is arranged at one end of the transition conveying assembly; The angular turning component includes a turning base. One end of the turning base is connected to a turning connecting rod, and the other end is connected to a turning cylinder. A turning slide rail is arranged in the middle of the turning base. The turning slide rail is slidably connected to a turning slider. The inner shape of the turning seat fits the outer shape of the aluminum material. The turning seat is composed of two vertical surfaces. The intersection of the vertical surfaces of the turning seat is rotatably connected to the turning slider. One end of one of the vertical surfaces of the turning seat is rotatably connected to the turning connecting rod; The turning slider is connected to the turning cylinder; The pushing component includes a pushing cylinder. The pushing cylinder is connected to a pushing lifting cylinder, and the pushing lifting cylinder is connected to a pushing block; the pushing component is used to push the end of the aluminum material and push the aluminum material from the transition conveying assembly to the storage transfer vehicle.

[0012] Further, the storage lifting assembly includes a storage lifting power component. Storage lifting support parts are arranged on both sides of the storage lifting power component, and a transfer vehicle slide is arranged in the middle of the storage lifting support parts; The storage lifting power component includes a storage lifting motor, a driving rotating shaft, a driven rotating shaft, a first lifting transmission shaft and a second lifting transmission shaft located on both sides of the storage lifting power component. The storage lifting motor is connected to a first sprocket. The middle of the driving rotating shaft is connected to a driving gear. One end of the driving rotating shaft is connected to a second sprocket, and the other end is connected to a third sprocket; The middle of the driven rotating shaft is connected to a driven gear, and one end of the driven rotating shaft is connected to a fourth sprocket; The middle of the first lifting transmission shaft is connected to a first lifting sprocket, and both ends are connected to a fifth sprocket; The middle of the second lifting transmission shaft is connected to a second lifting sprocket, and both ends are connected to a sixth sprocket; The first sprocket is connected to the third sprocket through a chain; The driving gear is meshed and connected with the driven gear; The fourth sprocket is connected to the second lifting sprocket through a chain; The second sprocket is connected to the first lifting sprocket through a chain.

[0013] Further, the storage lifting and supporting part includes a storage lifting base frame. Double tracks are arranged on both sides of the storage lifting base frame. The step-by-step lifting platform is slidably connected to the double tracks, and the step-by-step lifting platform is connected to a seventh sprocket wheel. First pulleys and second pulleys are arranged on both sides of the step-by-step lifting platform. The first pulleys are arranged in the middle of the double tracks and roll and slide on the inner side surfaces of the double tracks. The second pulleys roll and slide on the inner walls of the storage lifting base frame at the middle gaps of the double tracks. A fork-holding track and a fork-holding cylinder are arranged on the step-by-step lifting platform. A fork-holding rod is slidably connected to the fork-holding track, and the fork-holding cylinder is connected to the fork-holding rod.

[0014] Further, the storage transfer vehicle includes a transfer carriage. An inverted V-shaped seat is arranged inside the transfer carriage. Limit adjustment long columns are slidably arranged on both sides of the inverted V-shaped seat. The inverted V-shaped seat is provided with a V-seat transverse groove, and the bottom of the transfer carriage is provided with a carriage bottom transverse groove. The projected area of the V-seat transverse groove covers the carriage bottom transverse groove. The limit adjustment long columns are slidably inserted into the V-seat transverse groove. First clamping plates and second clamping plates are arranged at the bottoms of the limit adjustment long columns. The bottom plate of the transfer carriage is clamped between the first clamping plates and the second clamping plates. A width adjustment bolt is rotatably connected to the transfer carriage. One end of the width adjustment bolt is connected to a width adjustment handle. The width adjustment bolt is threadedly connected to an aluminum material limit adjustment connection seat, and the aluminum material limit adjustment connection seat is connected to the limit adjustment long column. A door panel clamping post is arranged on one side of the transfer carriage. The door panel clamping post is detachably connected to an end door panel. The end door panel is provided with a first card slot and a second card slot that communicate with each other. The inner diameter of the second card slot is larger than that of the first card slot. The door panel clamping post includes a large cylinder and a small cylinder connected together. The small cylinder is fixedly connected to the transfer carriage. A door handle is further arranged on the end door panel. Caster wheels are connected to the lower end of the transfer carriage. Compared with the prior art, the beneficial effects of the present invention are as follows: An aluminum material automatic film pasting and labeling device, a transition conveying assembly, and a storage lifting assembly are provided. A storage transfer vehicle is further arranged below the storage lifting assembly. The aluminum material automatic film pasting and labeling part of the device can synchronously perform the film pasting and labeling processes, effectively saving production and transfer time. The transition conveying assembly, the storage lifting assembly, and the storage transfer vehicle work together to perform angle conversion and stacking operations on aluminum materials, and then realize the convenient transfer of aluminum materials by means of the storage transfer vehicle, providing convenience for subsequent packaging processes. In addition, by replacing the storage transfer vehicle, an empty vehicle can be quickly replaced when the aluminum materials are full, ensuring continuous production. The modular transfer vehicle design supports rapid line change, meeting the requirements of flexible production. Description of the Drawings

[0015] The accompanying drawings are used to provide a further understanding of the present invention, and together with the embodiments of the present invention, are used to explain the present invention, and do not constitute a limitation to the present invention. In the accompanying drawings: Figure 1 is a schematic diagram of the overall structure of the film sticking and labeling device according to an embodiment of the present invention; Figure 2 is a schematic diagram of the structures of the film sticking component, the labeling component, and the aluminum material conveying component according to an embodiment of the present invention; Figure 3 is a schematic diagram of the structures of the labeling component and the aluminum material conveying component according to an embodiment of the present invention; Figure 4 is a schematic diagram of the structure of the labeling component according to an embodiment of the present invention; Figure 5 is a first exploded view of the labeling component according to an embodiment of the present invention; Figure 6 is a second exploded view of the labeling component according to an embodiment of the present invention; Figure 7 is a schematic diagram of the directions of the label strip and the label waste paper according to an embodiment of the present invention; Figure 8 is a schematic diagram of the structure of the label output component according to an embodiment of the present invention; Figure 9 is a schematic diagram of the structure of the transition conveying component according to an embodiment of the present invention; Figure 10 is a schematic diagram of the flipped state of the angle flipping component according to an embodiment of the present invention; Figure 11 is a schematic diagram of the unflipped state of the angle flipping component according to an embodiment of the present invention; Figure 12 is a schematic diagram of the structure of the storage and transfer cart according to an embodiment of the present invention; Figure 13 is a front view of the storage and transfer cart according to an embodiment of the present invention; Figure 14 is an exploded view of the storage and transfer cart according to an embodiment of the present invention; Figure 15 is a schematic diagram of the structure of the storage lifting component according to an embodiment of the present invention; Figure 16 is an exploded view of the storage lifting component according to an embodiment of the present invention; Figure 17 is an exploded view of the storage lifting support part according to an embodiment of the present invention.

[0016] In the figure: 1. Film pasting component; 101. Film rack; 102. Film strip limiting component; 103. Upper limit pressing block for aluminum material; 104. Side pressing block for film strip; 105. Film strip cutting motor; 1051. Film strip cutter; 106. Side pressing roller for aluminum material; 2. Label pasting component; 201. Label pasting lifting component; 2011. Lifting rod; 2012. Lifting screw rod; 2013. Lifting block; 20131. First limiting card strip; 2014. Transverse adjusting rod; 20141. Limiting card slot; 2015. Transverse screw rod; 2016. Transverse adjusting handle; 202. Label pasting base plate; 2021. Sliding block; 2022. First transition rotating shaft; 2023. Second transition rotating shaft; 203. Label rack; 204. Pulling spring component; 2040. Pulling base; 2041. Pulling shaft; 20411. Pulling swing rod; 2042. Supporting wheel; 20421. Supporting swing rod; 2043. First spring; 2044. Second spring; 205. Power component; 2051. Label output motor; 2052. Main shaft pulley; 2053. Recycling pulley; 206. Conveyor rotating shaft component; 2061. Conveyor main shaft; 2062. First linkage card shaft; 20621. First interference card shaft; 2063. Third transition shaft; 2064. Fourth transition shaft; 2065. Fifth transition shaft; 2066. Sixth transition shaft; 2067. Second linkage card shaft; 20671. Second interference card shaft; 207. Label output component; 2071. Label output adjusting rod; 2072. Label output plate; 2073. Label limiting block; 2074. Label pressing block; 2075. Color mark sensor; 208. Label waste paper recycling rack; 3. Aluminum material conveying component; 301. Conveying motor; 302. Conveying driving wheel; 303. Passive wheel spring seat; 304. Conveying driven wheel; 4. Transition conveying component; 401. Angle flipping component; 4011. Flipping base; 4012. Flipping slide rail; 4013. Flipping connecting rod; 4014. Flipping slider; 4015. Flipping seat; 4016. Flipping cylinder; 402. Conveyor roller component; 403. Pushing component; 4031. Pushing cylinder; 4032. Pushing lifting cylinder; 4033. Pushing block; 5. Storage lifting component; 501. Storage lifting power component; 5011. Storage lifting motor; 5012. First sprocket; 5013. Driving rotating shaft; 50131. Driving gear; 50132. Second sprocket; 50133. Third sprocket; 5014. Driven rotating shaft; 50141. Driven gear; 50142. Fourth sprocket; 5015. First lifting transmission shaft; 50151. Fifth sprocket; 5016. Second lifting transmission shaft; 50161. Sixth sprocket; 502. Storage lifting support part; 5021. Storage lifting base frame; 5022. Double track; 5023. Seventh sprocket; 5024. Step-by-step lifting platform; 5025. First pulley; 5026. Second pulley; 5027. Fork holding track; 5028. Fork holding cylinder; 5029. Fork holding rod;503. Transfer vehicle slide; 6. Storage transfer vehicle; 601. Transfer vehicle compartment; 6011. Inverted V seat; 6012. V seat horizontal groove; 6013. Compartment bottom horizontal groove; 6014. Door panel clamping post; 602. Aluminum material limit adjustment connection seat; 603. Limit adjustment long column; 6031. First clamping plate; 6032. Second clamping plate; 604. Width adjustment bolt; 6041. Width adjustment handle; 605. End door panel; 6051. First card slot; 6052. Second card slot; 6053. Door handle; 606. Caster wheel; Detailed implementation manners The following describes the preferred embodiments of the present invention with reference to the accompanying drawings. It should be understood that the preferred embodiments described herein are only used to illustrate and explain the present invention, and are not used to limit the present invention.

[0017] As Figures 1 to 17 shown, an automatic film sticking and labeling device for aluminum materials includes a film sticking component 1, a labeling component 2, a transition conveying component 4, and a storage lifting component 5. A storage transfer vehicle 6 is further arranged below the storage lifting component 5; The film sticking component 1 and the labeling component 2 perform film sticking and labeling on the long strip-shaped aluminum materials. The cross-section of the long strip-shaped aluminum materials is a right-angled shape with two perpendicular sides. When the aluminum materials are labeled and film-stuck, one plane of the aluminum materials is parallel to the ground to form an L shape. After the labeling and film sticking are completed, the aluminum materials are conveyed to the transition conveying component 4. The transition conveying component 4 is provided with a flipping seat 4015. The flipping seat 4015 flips the aluminum materials so that the tip of the intersection of the two sides of the aluminum materials faces downward, and then conveys them to the storage lifting component 5. The storage lifting component 5 clamps the storage transfer vehicle 6 to enable it to gradually lift and lower. As the aluminum materials are successively placed into the storage transfer vehicle 6, the storage transfer vehicle 6 gradually descends. After the storage transfer vehicle 6 is filled with aluminum materials, it is removed from the storage lifting component 5 to transfer the aluminum materials to the next process.

[0018] Through the synchronous operation of the double components of the film sticking component 1 and the labeling component 2, the device can simultaneously perform film sticking and labeling on the aluminum materials, greatly improving the efficiency of film sticking and labeling of the aluminum materials. Compared with the traditional method of completing these two processes on two devices respectively, this also saves the transfer time of the aluminum materials, eliminates the operator's action of transferring the aluminum materials, and reduces the labor intensity of the operator while improving the efficiency.

[0019] Because the aluminum materials are in a right-angled shape, directly stacking them not only occupies space, but also the structure of the stacked aluminum materials is unstable, which is not conducive to storage and subsequent packaging of the aluminum materials. Therefore, the transition conveying component 4 is provided to rotate the aluminum materials after film sticking and labeling into an inverted V shape. After stacking the aluminum materials in this way, the structural stability of the stacked aluminum materials is improved and the storage space occupied by the aluminum materials can also be reduced. The inverted V-shaped stacking avoids the direct contact of the right-angled aluminum materials, reduces the risk of surface scratches, and ensures the quality of the aluminum materials.

[0020] An accommodation lifting assembly 5 and an accommodation transfer vehicle 6 are also provided. The accommodation transfer vehicle 6 can be freely pushed. The accommodation transfer vehicle 6 is pushed into the accommodation lifting assembly 5, and the fork rod 5029 of the accommodation lifting assembly 5 will insert into the carriage jack 6015 of the transfer carriage 601. The accommodation lifting assembly 5 will lift the accommodation transfer vehicle 6, waiting for the transition conveying assembly 4 to push the aluminum material into the accommodation transfer vehicle 6. As the aluminum materials are placed layer by layer, the accommodation transfer vehicle 6 gradually descends to ensure neat stacking. Until the accommodation transfer vehicle 6 is filled with aluminum materials, the accommodation transfer vehicle 6 is pulled down from the transfer vehicle slide 503, and another empty accommodation transfer vehicle 6 is replaced. In this way, the aluminum materials are neatly accommodated in the accommodation transfer vehicle 6, which is convenient for transporting the aluminum materials and also convenient for subsequent packaging of the aluminum materials. And the way of replacing the accommodation transfer vehicle 6 enables quick replacement of the empty vehicle every time the aluminum materials are stacked full, realizing continuous production. The modular transfer vehicle design supports quick line change and adapts to the flexible production requirements.

[0021] On one side of the film pasting assembly 1 and the labeling assembly 2, an aluminum material conveying assembly 3 is also provided. The aluminum material is input from one end of the aluminum material conveying assembly 3. The film pasting assembly 1 pastes a film on the side of the aluminum material, and the labeling assembly 2 labels the upward-facing surface of the aluminum material. The aluminum material conveying assembly 3 includes a conveying motor 301. The conveying motor 301 transmits power to the conveying driving wheel 302 through a transmission gear. The surface of the conveying driving wheel 302 is coated with a rubber layer with a high coefficient of friction to enhance the contact friction force with the aluminum material. A conveying driven wheel 304 is arranged directly above the conveying driving wheel 302. The conveying driven wheel 304 is installed on the driven wheel spring seat 303 through a bearing. Multiple groups of pre-compressed springs are arranged inside the driven wheel spring seat 303. The elastic force of the springs is used to make the conveying driven wheel 304 always apply a constant pressure towards the conveying driving wheel 302. The plane of the aluminum material parallel to the ground is evenly clamped between the conveying driving wheel 302 and the conveying driven wheel 304, forming a stable force structure. When the conveying driving wheel 302 rotates driven by the motor, the aluminum material is precisely pushed to move in a straight line through the friction drive principle.

[0022] The film pasting assembly 1 includes a film rack 101, and the film rack 101 is used to install the film roll. On one side of the film rack 101, a film strip limiting component 102 is provided. The film strip limiting component 102 is provided with two film strip limiting blocks for limiting the left and right positions of the film strip, ensuring that the film strip does not shift during the conveying process and improving the film pasting accuracy.

[0023] After the film strip of the film roll is pulled out, it passes through the film strip limiting component 102 and is attached to the side of the aluminum material; as the aluminum material is pushed by the aluminum material conveying component 3, the film strip is also pulled out and attached to the side of the aluminum material; the film attaching component 1 includes an aluminum material upper limit pressing block 103, a film strip side pressing block 104 and an aluminum material side pressing roller 106. The aluminum material upper limit pressing block 103 adopts a high-elastic sponge roller body and is installed above the aluminum material conveying path to resist the upper end surface of the aluminum material to prevent the aluminum material from jumping or shifting during the conveying process. The film strip side pressing block 104 also adopts a sponge roller body and is located on the side of the aluminum material. When the sponge is squeezed, it can apply reverse pressure to the aluminum material, so that the film strip is better attached to the side of the aluminum material. During the film attaching process, uniform pressure is applied to the aluminum material and the film material to ensure that the film material is tightly attached to avoid bubbles or wrinkles. The aluminum material side pressing roller 106 is coated with wear-resistant rubber and continuously resists the side of the aluminum material during the aluminum material conveying process to prevent the aluminum material from shifting due to vibration or inertia and ensure the stability of the conveying. The film laminating assembly 1 includes a film strip cutting motor 105, which is connected to a film strip cutter 1051. The film strip cutter 1051 can accurately cut the film strip when the aluminum material is conveyed to a set length, thereby realizing independent laminating of a single section of aluminum material, so that the aluminum materials can be stacked together later.

[0024] The labeling assembly 2 includes a labeling lifting component 201, which includes a lifting rod 2011 and a lifting screw 2012. The lifting rod 2011 is slidably connected to a lifting block 2013, and the lifting screw 2012 is threadedly connected to the lifting block 2013; the lifting block 2013 is connected to a transverse adjustment rod 2014, and the lifting block 2013 is provided with an open circular groove, and the transverse adjustment rod 2014 is inserted into the open circular groove. By tightening the bolt on one side of the open circular groove, the open circular groove clamps the transverse adjustment rod 2014, and a first limiting clamping strip 20131 is also provided in the open circular groove, and the transverse adjustment rod 2014 is provided with a limiting clamping strip 20141. The first limiting clamping strip 20131 Inserted in the limiting slot 20141; one end of the lateral adjustment rod 2014 is rotatably connected to a lateral adjustment handle 2016, and the lateral adjustment handle 2016 is connected to the lateral screw 2015, and the lateral screw 2015 is arranged in the lateral adjustment rod 2014; the lateral screw 2015 is threadedly connected to the labeling nut block; the outer side of the labeling nut block is connected to the sliding block 2021, and the sliding block 2021 is clamped in the labeling base plate 202, the lateral adjustment rod 2014 is slidably connected to the sliding block 2021, and the lateral adjustment handle 2016 is manually rotated to adjust the distance between the labeling base plate 202 and the lifting block 2013, thereby adjusting the left and right position of the label on the aluminum material.

[0025] The labeling base plate 202 is connected to the label rack 203, the first transition shaft 2022, the second transition shaft 2023, the conveying shaft component 206, the label output component 207 and the label waste paper recovery rack 208; The label rack 203 is used to hang the whole roll of labels. After the label strip is pulled out from the roll-shaped label roll, it passes through the pulling spring member 204, then through the first transition rotating shaft 2022 and the second transition rotating shaft 2023 and enters the conveying rotating shaft member 206, and then bypasses the label discharging member 207. After the label is pasted on the aluminum material, the label waste paper passes through the conveying rotating shaft member 206 again and finally winds around the label waste paper recycling rack 208 for recycling; The conveying rotating shaft member 206 is connected to the power member 205; The conveying rotating shaft member 206 adopts a two-way independent conveying method. The upper part conveys the label tape, and the lower part recycles the waste bottom paper. Using a conveying main shaft 2061 can achieve the upper and lower split conveying, which not only saves the motor configuration, but also enables the label pasting and the recycling of label waste paper to be synchronized, so that the same amount of label waste paper is recycled as the number of labels pasted, and the equipment will not have redundant label waste paper affecting the operation of the equipment.

[0026] The power member 205 includes a label discharging motor 2051. The label discharging motor 2051 is connected to the main shaft pulley 2052 through a belt. The main shaft pulley 2052 is connected to the recycling pulley 2053 through a belt. The main shaft pulley 2052 is connected to the conveying main shaft 2061, and the recycling pulley 2053 is connected to the label waste paper recycling rack 208.

[0027] The conveying main shaft 2061 serves as the core driving shaft and rotates continuously driven by the label discharging motor 2051. On one side above the conveying main shaft 2061, there are a sixth transition shaft 2066 and a fifth transition shaft 2065 for guiding the label tape path. On the other side, there is a first linkage clamping shaft 2062. The conveying rotating shaft member 206 includes a conveying main shaft 2061. On both sides above the conveying main shaft 2061, there are a sixth transition shaft 2066, a fifth transition shaft 2065 and a first linkage clamping shaft 2062 respectively. The first linkage clamping shaft 2062 is connected to the first interference clamping shaft 20621. Both ends of the first interference clamping shaft 20621 are rotatably connected to the first long plate. Both ends of the first linkage clamping shaft 2062 are also rotatably connected to the first long plate. The first linkage clamping shaft 2062 is connected to the label pasting base plate 202. The first interference clamping shaft 20621 rotates around the first long plate as the radius and the first linkage clamping shaft 2062 as the center; Before installing the label strip, when the first interference clamping shaft 20621 is placed above the conveying main shaft 2061, it only droops by gravity. After passing the label strip through the space between the conveying main shaft 2061 and the first interference clamping shaft 20621, a person manually presses the first interference clamping shaft 20621 downward, so that the first interference clamping shaft 20621 is in interference contact with the conveying main shaft 2061, and then the label strip can be clamped for conveying. Therefore, when installing, by applying pressure with the hand, an interference fit is formed between the first interference clamping shaft 20621 and the conveying main shaft 2061. After the person inserts the label strip between the conveying main shaft 2061 and the first interference clamping shaft 20621, the hand can leave. After that, the label strip will be clamped by the pressure generated by the interference fit between the conveying main shaft 2061 and the first interference clamping shaft 20621. When the conveying main shaft 2061 rotates, it can drive the label strip to run, so the stable clamping and conveying of the label tape can be realized. The conveying of the label waste paper is realized by the conveying main shaft 2061 and the second interference clamping shaft 20671. On both sides below the conveying main shaft 2061, a third transition shaft 2063, a fourth transition shaft 2064 and a second linkage clamping shaft 2067 are respectively arranged. Both ends of the second linkage clamping shaft 2067 are rotatably connected to the second long plate, and both ends of the second interference clamping shaft 20671 are also rotatably connected to the second long plate. The second linkage clamping shaft 2067 is connected to the labeling base plate 202. The second interference clamping shaft 20671 rotates around the second linkage clamping shaft 2067 as the axis and with the second long plate as the radius. Before installing the label waste paper strip, first pass the label waste paper strip through the space between the conveying main shaft 2061 and the second interference clamping shaft 20671, and then manually press the second interference clamping shaft 20671 upward, so that the second interference clamping shaft 20671 is in interference contact with the conveying main shaft 2061. After the installation is completed, the hand can be released. At this time, due to the pressure generated by the interference contact between the second interference clamping shaft 20671 and the conveying main shaft 2061, the label waste paper is clamped between the two. Therefore, when the conveying main shaft 2061 rotates, it can also drive the label waste paper to move, thus realizing the recycling of the label waste paper.

[0028] The clamping of the label strip and the label waste paper is realized by the interference fit between the first interference clamping shaft 20621 and the conveying main shaft 2061, and between the second interference clamping shaft 20671 and the conveying main shaft 2061, making the mechanism very simple to operate and the clamping stable. Therefore, the stable conveying of the label can be ensured.

[0029] The pulling spring component 204 adopts a double swing rod - double spring buffer design, including a pulling swing rod 20411 rotatably connected to the labeling base plate 202 at one end and a supporting swing rod 20421. The other end of the pulling swing rod 20411 is rotatably connected to a pulling shaft 2041. The pulling shaft 2041 serves as a load-bearing and guiding component for the label tape, providing appropriate tension when hanging naturally. The other end of the supporting swing rod 20421 is rotatably connected to a supporting wheel 2042. The pulling shaft 2041 abuts against the lower side of the pulling swing rod 20411. The pulling swing rod 20411 is connected to a first spring 2043, and the other end of the first spring 2043 is connected to a pulling base 2040. The supporting swing rod 20421 is connected to a second spring 2044, and the other end of the second spring 2044 is connected to the pulling base 2040. After the label is pulled out of the label roll, the relaxation of the label strip is achieved by the pulling spring component 204, so that the label strip is in a slack state when being pulled by the conveying rotating shaft component 206, preventing the label strip from being overly pulled and broken during operation. The gravity of the pulling shaft 2041 causes the label strip to be pulled apart, and the first spring 2043 can assist the pulling shaft 2041 to reset after the label strip is pulled away by the conveying rotating shaft component 206, so that the pulling shaft 2041 will not drop to the bottom and be unable to relax the label roll anymore. The pulling shaft 2041 always supports the lower side of the pulling swing rod 20411 under the elastic force of the second spring 2044, ensuring that the lower side of the pulling swing rod 20411 is in an upward state. In this process, the first spring 2043 provides the main reset force, and the second spring 2044 maintains the balance of the system. The two springs work together to form a stable elastic support system.

[0030] The system with the cooperation of the two springs maintains the optimal working angle of the pulling shaft 2041 through the spring pre-tightening force, which can not only prevent the label from being broken due to excessive pulling, but also avoid the label strip being completely slack and causing poor conveying. Moreover, it has a self-resetting function to ensure that the system returns to the initial state after each conveyance.

[0031] The label ejection component 207 includes a label ejection adjusting rod 2071. The label ejection adjusting rod 2071 forms a sliding pair with the labeling base plate 202. The label ejection adjusting rod 2071 is used to adjust the distance between the label ejection component 207 and the labeling base plate 202, so as to adjust the distance between the label and the aluminum material when the label is ejected, ensuring the precise attachment of labels with different thicknesses to the aluminum material. The label ejection component 207 is connected to a label ejection plate 2072. Label limiting blocks 2073 are symmetrically arranged on the label ejection plate 2072. A label pressing block 2074 is rotatably connected to the label ejection plate 2072. The label pressing block 2074 is used to press the label strip during transportation, so that the label strip will not jump upwards. After the label strip bypasses the bottom end of the label ejection plate 2072, the label is separated from the label waste paper. At this time, the label is attached to the aluminum material, and the label waste paper is recycled. A color mark sensor 2075 is also arranged between the label ejection plate 2072 and the labeling base plate 202. The color mark sensor 2075 is used to sense the gap position between every two labels. Through the color mark sensor 2075, the system can be fed back with the information on the number of labels attached.

[0032] The transition conveying assembly 4 includes a number of angle flipping components 401 and conveying roller components 402 arranged at intervals, and a pushing component 403 is arranged at one end of the transition conveying assembly 4; The angle flipping component 401 includes a flipping base 4011. One end of the flipping base 4011 is connected to a flipping connecting rod 4013, and the other end is connected to a flipping cylinder 4016. A flipping slide rail 4012 is arranged in the middle of the flipping base 4011. A flipping slider 4014 is slidably connected to the flipping slide rail 4012. The inner shape of the flipping seat 4015 fits the outer shape of the aluminum material. The flipping seat 4015 is composed of two vertical planes. The intersection of the vertical planes of the flipping seat 4015 is rotatably connected to the flipping slider 4014. One end of one of the vertical planes of the flipping seat 4015 is connected to the flipping connecting rod 4013; the flipping slider 4014 is connected to the flipping cylinder 4016; the flipping cylinder 4016 pushes the flipping slider 4014 to move along the flipping slide rail 4012, which can make the flipping slider 4014 drive the flipping seat 4015 to rotate, so that the flipping seat 4015 can be converted between two angles. Through the innovative mechanical linkage design, this component realizes the precise angle conversion during the transportation of the aluminum material, enabling the aluminum material to smoothly enter the next stacking process.

[0033] The conveying roller component 402 enables the aluminum material to be conveyed on the transition conveying component 4 and cooperates with the angle flipping component 401 to flip the aluminum material during conveying. When the aluminum material reaches the end of the transition conveying component 4, the conveying roller component 402 can no longer push the aluminum material forward. Therefore, a pushing component 403 is provided to push the tail end of the aluminum material onto the storage and transfer vehicle 6. The pushing component 403 includes a propulsion cylinder 4031, the propulsion cylinder 4031 is connected to a pushing lifting cylinder 4032, and the pushing lifting cylinder 4032 is connected to a pushing block 4033; the pushing component 403 is used to push the end of the aluminum material and push the aluminum material from the transition conveying component 4 onto the storage and transfer vehicle 6.

[0034] The storage lifting component 5 includes a storage lifting power component 501. On both sides of the storage lifting power component 501, there are storage lifting support parts 502, and in the middle of the storage lifting support parts 502, there is a transfer vehicle sliding table 503; The storage lifting power component 501 includes a storage lifting motor 5011, a driving rotating shaft 5013, a driven rotating shaft 5014, a first lifting transmission shaft 5015 and a second lifting transmission shaft 5016 located on both sides of the storage lifting power component 501. The storage lifting motor 5011 is connected to a first sprocket 5012. In the middle of the driving rotating shaft 5013, there is a driving gear 50131. One end of the driving rotating shaft 5013 is connected to a second sprocket 50132, and the other end is connected to a third sprocket 50133; in the middle of the driven rotating shaft 5014, there is a driven gear 50141, and one end of the driven rotating shaft 5014 is connected to a fourth sprocket 50142; The first sprocket 5012 is connected to the third sprocket 50133 through a chain; when the third sprocket 50133 rotates, it drives the driving rotating shaft 5013 to rotate, thereby driving the driving gear 50131 to rotate. The driving gear 50131 is meshed and connected to the driven gear 50141; thus, the driving rotating shaft 5013 and the driven rotating shaft 5014 can rotate synchronously and in opposite directions.

[0035] In the middle of the first lifting transmission shaft 5015, there is a first lifting sprocket, and at both ends, there are fifth sprockets 50151; in the middle of the second lifting transmission shaft 5016, there is a second lifting sprocket, and at both ends, there are sixth sprockets 50161; the first lifting sprocket is connected to the second sprocket 50132 through a chain, so that the power of the driving rotating shaft 5013 can be transmitted to the first lifting transmission shaft 5015, thereby driving the fifth sprocket 50151 to rotate.

[0036] The second lifting sprocket is connected to the fourth sprocket 50142 through a chain, so that the power of the driven rotating shaft 5014 can be transmitted to the second lifting transmission shaft 5016, thereby driving the sixth sprocket 50161 to rotate.

[0037] The fifth sprocket 50151 and the sixth sprocket 50161 are connected by a chain to lift the step-by-step lifting platform 5024. Therefore, when the fifth sprocket 50151 and the sixth sprocket 50161 rotate, the step-by-step lifting platform 5024 can be pulled by the chain to move up and down.

[0038] The receiving and lifting support part 502 includes a receiving and lifting base frame 5021. Double tracks 5022 are arranged on both sides of the receiving and lifting base frame 5021. The step-by-step lifting platform 5024 is slidably connected to the double tracks 5022, and the step-by-step lifting platform 5024 is connected to the seventh sprocket 5023. Therefore, the receiving and lifting motor 5011 drives the driving rotating shaft 5013 to rotate, and then through the meshing of the driving gear 50131 and the driven gear 50141, the driven rotating shaft 5014 can also rotate synchronously. Finally, the step-by-step lifting platform 5024 is pulled up and down by the chain. This component realizes stable lifting movement under large loads through a precise gear-chain composite transmission system, enabling the aluminum materials to be neatly received.

[0039] First pulleys 5025 and second pulleys 5026 are arranged on both sides of the step-by-step lifting platform 5024. The first pulley 5025 is arranged in the middle of the double tracks 5022 and rolls and slides on the inner side surface of the double tracks 5022. The second pulley 5026 rolls and slides on the inner wall of the receiving and lifting base frame 5021 at the middle gap of the double tracks 5022. By arranging the first pulley 5025 and the second pulley 5026, when the step-by-step lifting platform 5024 rises and falls in the receiving and lifting support part 502, it is restricted in all four directions of front, back, left, and right. Therefore, the step-by-step lifting platform 5024 will not shake during the lifting process, ensuring the stability of the lifting of the step-by-step lifting platform 5024, and thus realizing the neatness of the aluminum material receiving.

[0040] A fork-holding track 5027 and a fork-holding cylinder 5028 are arranged on the step-by-step lifting platform 5024. A fork-holding rod 5029 is slidably connected to the fork-holding track 5027, and the fork-holding cylinder 5028 is connected to the fork-holding rod 5029. The receiving and transporting vehicle 6 includes a transporting carriage 601. Carriage jacks 6015 are arranged on both sides of the transporting carriage 601. After the empty transporting carriage 601 is moved onto the transporter slide 503, the fork-holding cylinder 5028 pushes the fork-holding rod 5029 to insert it into the carriage jack 6015. Then, the step-by-step lifting platform 5024 can drive the receiving and transporting vehicle 6 to rise and fall. When the receiving and transporting vehicle 6 is already full of aluminum materials and the fork-holding rod 5029 is withdrawn from the carriage jack 6015, the receiving and transporting vehicle 6 can be pulled away.

[0041] The storage and transfer vehicle 6 includes a transfer carriage 601. Inside the transfer carriage 601, there is an inverted V seat 6011. The inverted V seat 6011 can adapt to the V-shaped angle of the aluminum material, enabling the aluminum material to be stably stored in the inverted V seat 6011. On both sides of the inverted V seat 6011, there are slidingly arranged limit adjustment long columns 603. The inverted V seat 6011 is provided with a V-seat transverse groove 6012, and the bottom of the transfer carriage 601 is provided with a carriage bottom transverse groove 6013. The projected area of the V-seat transverse groove 6012 covers the carriage bottom transverse groove 6013. The limit adjustment long columns 603 are slidably inserted into the V-seat transverse groove 6012. At the bottom of the limit adjustment long columns 603, there are a first clamping plate 6031 and a second clamping plate 6032. The bottom plate of the transfer carriage 601 is clamped between the first clamping plate 6031 and the second clamping plate 6032. Through the restriction of the first clamping plate 6031, the second clamping plate 6032, the V-seat transverse groove 6012, and the aluminum material limit adjustment connection seat 602 on the limit adjustment long columns 603, the limit adjustment long columns 603 can stand upright in the transfer carriage 601. The transfer carriage 601 is rotatably connected with a width adjustment bolt 604. One end of the width adjustment bolt 604 is connected with a width adjustment handle 6041. The width adjustment bolt 604 is threadedly connected with the aluminum material limit adjustment connection seat 602, and the aluminum material limit adjustment connection seat 602 is connected with the limit adjustment long columns 603. Therefore, by rotating the width adjustment handle 6041, the gap between the two limit adjustment long columns 603 can be adjusted, thereby limiting both sides of the stacked aluminum materials, enabling the aluminum materials to be stably stored in the transfer carriage 601. The transfer carriage 601 combines the innovative positioning of the inverted V seat 6011 with the adjustable limit adjustment long columns 603, perfectly solving the fixing problem during the storage of aluminum materials. Its modular design can easily adapt to the storage and transfer requirements of different specifications of materials, greatly improving the loading and unloading efficiency while ensuring transportation safety. On one side of the transfer carriage 601, there is a door panel clamping column 6014. The door panel clamping column 6014 is detachably connected with the end door panel 605. The end door panel 605 is provided with a first clamping groove 6051 and a second clamping groove 6052 that communicate with each other. The inner diameter of the second clamping groove 6052 is larger than that of the first clamping groove 6051. The door panel clamping column 6014 includes a large cylinder and a small cylinder connected together. The small cylinder is fixedly connected with the transfer carriage 601. The end door panel 605 is also provided with a door handle 6053. At the lower end of the transfer carriage 601, there are connected casters 606. When installing the end door panel 605, only need to align the second clamping groove 6052 with the large cylinder and then push it in, and then put down the end door panel 605, then the first clamping groove 6051 can be clamped on the small cylinder. At this time, the end door panel 605 will not come out due to the restriction of the large cylinder. The end door panel 605 can prevent the aluminum materials from sliding out of the transfer carriage 601, ensuring the safety of the aluminum materials during transportation. The double-stage clamping groove design not only ensures the operation convenience but also ensures the transportation safety, and is especially suitable for the aluminum material transfer operation under high-frequency and high-intensity working conditions. During operation, first, the unlabeled aluminum materials are manually input into the film laminating assembly 1 and the labeling assembly 2. The film laminating assembly 1 and the labeling assembly 2 simultaneously perform film lamination and labeling on the aluminum materials. Then, through the transition conveying assembly 4, the aluminum materials are flipped by the transition conveying assembly 4 to facilitate subsequent orderly stacking of the aluminum materials. The aluminum materials are orderly placed into the storage transfer vehicle 6 of the storage and lifting assembly 5 by the pushing component. After the storage transfer vehicle 6 has completed storing a vehicle load of aluminum materials, it exits from the storage and lifting assembly 5 and transports the aluminum materials to the next process.

[0042] Among them, the film laminating assembly 1 and the labeling assembly 2 are used to simultaneously perform film lamination and labeling on the aluminum materials. The film laminating assembly laminates the side of the aluminum material, and the labeling assembly labels the upward-facing side of the aluminum material. The two assemblies of the film laminating assembly and the labeling assembly perform synchronous operations to improve the efficiency of film lamination and labeling.

[0043] The film laminating assembly 1 is provided with a film rack 101 to install the film roll. The film strip is pulled out and attached to the side of the aluminum material after passing through the film strip limiting component 102. The upper limit pressing block 103, the film strip side pressing block 104, and the aluminum material side pressing roller 106 on the aluminum material ensure stable film lamination. The film strip cutting motor 105 cuts the film strip when the aluminum material is conveyed to the set length.

[0044] The labeling assembly 2 adjusts the label attachment position through the labeling lifting component 201 and the horizontal adjusting rod 2014. The label strip is pulled out from the label rack 203 and attached to the aluminum material after passing through the pulling spring component 204, the first transition rotating shaft 2022, the second transition rotating shaft 2023, the conveying rotating shaft component 206, and the label discharging component 207. The label waste paper is recycled.

[0045] The flipping base 4011 of the transition conveying assembly 4 flips the aluminum material so that the tip of the intersection of the two sides of the aluminum material faces downward, and then continues to convey it.

[0046] The storage and lifting assembly 5 clamps the storage transfer vehicle 6 to enable it to gradually lift and lower. As the aluminum materials are successively placed into the storage transfer vehicle 6, the storage transfer vehicle 6 gradually descends.

[0047] After the storage transfer vehicle 6 is filled with aluminum materials, it is removed from the storage and lifting assembly and transported to the next process. At the same time, an empty storage transfer vehicle 6 is replaced to achieve continuous production.

[0048] The automatic film - sticking and labeling device for aluminum materials of the present invention synchronizes the operations of the film - sticking component and the labeling component to simultaneously stick film and label the aluminum materials, saving the transfer time of the aluminum materials, eliminating the operator's transfer actions, improving the film - sticking and labeling efficiency, reducing the labor intensity. The transition conveying component rotates the aluminum materials after film - sticking and labeling into an inverted V shape, improving the structural stability of the stacked aluminum materials, reducing the storage space occupied by the aluminum materials, avoiding direct contact between right - angled aluminum materials, reducing the risk of surface scratches, ensuring the quality of the aluminum materials. The storage lifting component and the storage transfer vehicle enable the aluminum materials to be neatly stored, facilitating transfer and subsequent packaging. The way of replacing the storage transfer vehicle can achieve continuous production, and the modular transfer vehicle design supports rapid line change, adapting to the requirements of flexible production.

[0049] Finally, it should be noted that the above are only the preferred embodiments of the present invention and are not used to limit the present invention. Although the present invention has been described in detail with reference to the embodiments, for those skilled in the art, they can still modify the technical solutions recorded in the foregoing embodiments, or perform equivalent replacements for some of the technical features. However, any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.

Claims

1. An automatic film and label pasting device for aluminum materials, characterized in that, It comprises a film sticking component (1), a label sticking component (2), a transition conveying component (4) and a storage lifting component (5), and a storage transfer vehicle (6) is also arranged below the storage lifting component (5); The film pasting component (1) and the labeling component (2) apply film and label to the long strip of aluminum material. The cross section of the long strip of aluminum material is a right angle shape with two perpendicular surfaces. When the aluminum material is labeled and pasted with film, a plane of the aluminum material is parallel to the ground to form an L shape. After the labeling and film pasting are completed, the aluminum material is transported to the transition conveying component (4). The transition conveying component (4) is provided with a flip seat (4015). The flip seat (4015) flips the aluminum material so that the tip of the intersection of the two surfaces of the aluminum material faces downward, and then transports it to the storage lifting component (5). The storage lifting component (5) clamps the storage transfer vehicle (6) so that it can be gradually raised and lowered. As the aluminum materials are placed in the storage transfer vehicle (6) one by one, the storage transfer vehicle (6) gradually descends. After the storage transfer vehicle (6) is full of aluminum materials, it is moved out of the storage lifting component (5) to transfer the aluminum materials to the next process.

2. The aluminum material automatic film and label pasting device according to claim 1, wherein An aluminum material conveying assembly (3) is also provided on one side of the film laminating assembly (1) and the label laminating assembly (2); the aluminum material is input from one end of the aluminum material conveying assembly (3); the film laminating assembly (1) applies film to the side of the aluminum material, and the label laminating assembly (2) applies label to the upward side of the aluminum material; The aluminum material conveying assembly (3) comprises a conveying motor (301), the conveying motor (301) transmits power to a conveying driving wheel (302) via a transmission gear, a conveying passive wheel (304) is arranged above the conveying driving wheel (302), the conveying passive wheel (304) is connected to a passive wheel spring seat (303), the passive wheel spring seat (303) uses the elastic force of a spring to squeeze the conveying passive wheel (304) toward the conveying driving wheel (302), the plane of the aluminum material parallel to the ground is clamped between the conveying driving wheel (302) and the conveying passive wheel (304), and the rotation of the conveying driving wheel (302) pushes the aluminum material to move.

3. The aluminum material automatic film pasting and labeling device according to claim 2, characterized in that, The film sticking assembly (1) comprises a film frame (101), and the film frame (101) is used to install a film roll; A film strip limiting component (102) is provided on one side of the film frame (101), and the film strip limiting component (102) is provided with two film strip limiting blocks for limiting the left and right positions of the film strip. After the film strip of the film roll is pulled out, it passes through the film strip limiting component (102) and is attached to the side of the aluminum material; As the aluminum material is pushed forward by the aluminum material conveying assembly (3), the film strip is also pulled out and attached to the side of the aluminum material; The film laminating assembly (1) comprises an aluminum material upper limit pressing block (103), a film strip side pressing block (104) and an aluminum material side pressing roller (106); the aluminum material upper limit pressing block (103) is used to press against the upper end surface of the aluminum material; the film strip side pressing block (104) is used to press against the aluminum material and the side surface of the film laminating; the aluminum material side pressing roller (106) is used to press against the side surface of the aluminum material during the conveying process of the aluminum material; The aluminum upper limit pressing block (103) and the membrane strip side pressing block (104) are roller bodies made of sponge; The film laminating assembly (1) includes a film strip cutting motor (105), the film strip cutting motor (105) is connected to a film strip cutter (1051), and the film strip cutter (1051) is used to cut the film strip connected between every two sections of aluminum materials.

4. The aluminum material automatic film and label pasting device according to claim 1, characterized in that, The labeling assembly (2) includes a labeling lifting component (201), the labeling lifting component (201) includes a lifting rod (2011) and a lifting screw rod (2012), a lifting block (2013) is slidably connected to the lifting rod (2011), and the lifting screw rod (2012) is threadedly connected to the lifting block (2013); The lifting block (2013) is connected to a lateral adjustment rod (2014), the lifting block (2013) is provided with an open circular groove, the lateral adjustment rod (2014) is inserted into the open circular groove, and the open circular groove clamps the lateral adjustment rod (2014) by tightening a bolt on one side of the open circular groove. A first limiting strip (20131) is further provided in the open circular groove, and a limiting card slot (20141) is provided on the lateral adjustment rod (2014), and the first limiting strip (20131) is inserted into the limiting card slot (20141); One end of the lateral adjustment rod (2014) is rotatably connected to a lateral adjustment handle (2016), the lateral adjustment handle (2016) is connected to a lateral screw rod (2015), and the lateral screw rod (2015) is arranged in the lateral adjustment rod (2014); the lateral screw rod (2015) is threadedly connected to a labeling nut block; the outside of the labeling nut block is connected to a sliding block (2021), the sliding block (2021) is clamped in a labeling base plate (202), and the lateral adjustment rod (2014) is slidably connected to the sliding block (2021).

5. The aluminum material automatic film sticking and labeling device according to claim 4, characterized in that, The labeling base plate (202) is connected to a label rack (203), a first transition rotating shaft (2022), a second transition rotating shaft (2023), a conveying rotating shaft component (206), a label discharging component (207), and a label waste paper recycling rack (208); The label rack (203) is used to hang a whole roll of labels. After the label strip is pulled out from the roll-shaped label roll, it passes through a pulling spring component (204), then passes through the first transition rotating shaft (2022) and the second transition rotating shaft (2023) and enters the conveying rotating shaft component (206), and then bypasses the label discharging component (207). After the label is pasted on the aluminum material, the label waste paper passes through the conveying rotating shaft component (206) again and finally winds around the label waste paper recycling rack (208) for recycling; The conveying rotating shaft component (206) is connected to a power component (205).

6. The aluminum material automatic film sticking and labeling device according to claim 5, wherein, The conveying rotating shaft component (206) includes a conveying main shaft (2061). On both sides above the conveying main shaft (2061), a sixth transition shaft (2066), a fifth transition shaft (2065), and a first linkage clamping shaft (2062) are respectively arranged. The first linkage clamping shaft (2062) is connected to a first interference clamping shaft (20621). Both ends of the first interference clamping shaft (20621) are rotatably connected to a first long plate, and both ends of the first linkage clamping shaft (2062) are also rotatably connected to the first long plate. The first linkage clamping shaft (2062) is connected to the labeling base plate (202). The first interference clamping shaft (20621) rotates around the first linkage clamping shaft (2062) with the first long plate as the radius and the first linkage clamping shaft (2062) as the center of the circle; Before installing the label strip, when the first interference clamping shaft (20621) is placed above the conveying main shaft (2061), it only droops by gravity. After passing the label strip through the space between the conveying main shaft (2061) and the first interference clamping shaft (20621), a person manually presses the first interference clamping shaft (20621) downward, so that the first interference clamping shaft (20621) is in interference contact with the conveying main shaft (2061), and then the label strip can be clamped for conveying; On both sides below the conveying main shaft (2061), a third transition shaft (2063), a fourth transition shaft (2064), and a second linkage clamping shaft (2067) are respectively arranged; Both ends of the second linkage clamping shaft (2067) are rotatably connected to a second long plate, and both ends of a second interference clamping shaft (20671) are also rotatably connected to the second long plate. The second linkage clamping shaft (2067) is connected to the labeling base plate (202). The second interference clamping shaft (20671) rotates around the second linkage clamping shaft (2067) with the second linkage clamping shaft (2067) as the axis and the second long plate as the radius; Before installing the label waste paper strip, first pass the label waste paper strip through the space between the conveying main shaft (2061) and the second interference clamping shaft (20671), and then manually press the second interference clamping shaft (20671) upward, so that the second interference clamping shaft (20671) is in interference contact with the conveying main shaft (2061), and then the label waste paper can be clamped for conveying; The power component (205) includes a label output motor (2051). The label output motor (2051) is connected to a main shaft pulley (2052) through a belt. The main shaft pulley (2052) is connected to a recovery pulley (2053) through a belt. The main shaft pulley (2052) is connected to the conveying main shaft (2061), and the recovery pulley (2053) is connected to the label waste paper recovery rack (208).

7. The aluminum material automatic film pasting and labeling device according to any one of claims 1 to 6, characterized in that The transition conveying assembly (4) includes a plurality of angle flipping components (401) and conveying roller components (402) arranged at intervals. One end of the transition conveying assembly (4) is provided with a pushing component (403); The angle flipping component (401) includes a flipping base (4011). One end of the flipping base (4011) is connected to a flipping link (4013), and the other end is connected to a flipping cylinder (4016). A flipping slide rail (4012) is arranged in the middle of the flipping base (4011). The flipping slide rail (4012) is slidably connected to a flipping slider (4014). The inner shape of the flipping seat (4015) fits the outer shape of the aluminum material. The flipping seat (4015) is composed of two vertical surfaces. The intersection of the vertical surfaces of the flipping seat (4015) is rotatably connected to the flipping slider (4014). One end of one of the vertical surfaces of the flipping seat (4015) is rotatably connected to the flipping link (4013); The flipping slider (4014) is connected to the flipping cylinder (4016); The pushing component (403) includes a pushing cylinder (4031). The pushing cylinder (4031) is connected to a pushing lifting cylinder (4032), and the pushing lifting cylinder (4032) is connected to a pushing block (4033). The pushing component (403) is used to push the end of the aluminum material and push the aluminum material from the transition conveying assembly (4) onto the storage transfer vehicle (6).

8. The aluminum material automatic film sticking and labeling device according to any one of claims 1 to 6, characterized in that, The storage lifting assembly (5) includes a storage lifting power component (501). Storage lifting support parts (502) are arranged on both sides of the storage lifting power component (501). A transfer vehicle slide (503) is arranged in the middle of the storage lifting support parts (502); The storage lifting power component (501) includes a storage lifting motor (5011), a driving rotating shaft (5013), a driven rotating shaft (5014), a first lifting transmission shaft (5015) and a second lifting transmission shaft (5016) located on both sides of the storage lifting power component (501). The storage lifting motor (5011) is connected to a first sprocket (5012). The middle of the driving rotating shaft (5013) is connected to a driving gear (50131). One end of the driving rotating shaft (5013) is connected to a second sprocket (50132), and the other end is connected to a third sprocket (50133); The middle of the driven rotating shaft (5014) is connected to a driven gear (50141). One end of the driven rotating shaft (5014) is connected to a fourth sprocket (50142); The middle of the first lifting transmission shaft (5015) is connected to a first lifting sprocket, and both ends are connected to fifth sprockets (50151); The middle of the second lifting transmission shaft (5016) is connected to a second lifting sprocket, and both ends are connected to sixth sprockets (50161); The first sprocket (5012) is connected to the third sprocket (50133) through a chain; The driving gear (50131) is meshed and connected with the driven gear (50141); The fourth sprocket (50142) is connected to the second lifting sprocket through a chain; The second sprocket (50132) is connected to the first lifting sprocket through a chain.

9. The aluminum material automatic film pasting and labeling device according to claim 8, wherein, The storage lifting and supporting part (502) includes a storage lifting base frame (5021). Double tracks (5022) are arranged on both sides of the storage lifting base frame (5021). A step-by-step lifting platform (5024) is slidably connected to the double tracks (5022), and the step-by-step lifting platform (5024) is connected to a seventh sprocket (5023). First pulleys (5025) and second pulleys (5026) are arranged on both sides of the step-by-step lifting platform (5024). The first pulleys (5025) are arranged in the middle of the double tracks (5022) and roll and slide on the inner side surface of the double tracks (5022). The second pulleys (5026) roll and slide on the inner wall of the storage lifting base frame (5021) at the middle gap of the double tracks (5022). A fork holding track (5027) and a fork holding cylinder (5028) are arranged on the step-by-step lifting platform (5024). A fork holding rod (5029) is slidably connected to the fork holding track (5027), and the fork holding cylinder (5028) is connected to the fork holding rod (5029).

10. The aluminum material automatic film sticking and labeling device according to claim 9, wherein, The storage and transfer vehicle (6) includes a transfer carriage (601). An inverted V seat (6011) is arranged inside the transfer carriage (601). Limit adjusting long columns (603) are slidably arranged on both sides of the inverted V seat (6011). The inverted V seat (6011) is provided with a V seat transverse groove (6012). A carriage bottom transverse groove (6013) is arranged at the bottom of the transfer carriage (601). The projected area of the V seat transverse groove (6012) covers the carriage bottom transverse groove (6013). The limit adjusting long columns (603) are slidably inserted into the V seat transverse groove (6012). First clamping plates (6031) and second clamping plates (6032) are arranged at the bottoms of the limit adjusting long columns (603). The bottom plate of the transfer carriage (601) is clamped between the first clamping plates (6031) and the second clamping plates (6032). A width adjusting bolt (604) is rotatably connected to the transfer carriage (601). One end of the width adjusting bolt (604) is connected to a width adjusting handle (6041). The width adjusting bolt (604) is threadedly connected to an aluminum material limit adjusting connection seat (602), and the aluminum material limit adjusting connection seat (602) is connected to the limit adjusting long column (603). A door panel clamping column (6014) is arranged on one side of the transfer carriage (601). The door panel clamping column (6014) is detachably connected to an end door panel (605). The end door panel (605) is provided with a first card slot (6051) and a second card slot (6052) that communicate with each other. The inner diameter of the second card slot (6052) is larger than the inner diameter of the first card slot (6051). The door panel clamping column (6014) includes a large cylinder and a small cylinder connected together. The small cylinder is fixedly connected to the transfer carriage (601). The end door panel (605) is further provided with a door handle (6053). Caster wheels (606) are connected to the lower end of the transfer carriage (601).

Citation Information

Patent Citations

  • Labeling mechanism for aluminum production line

    CN215044468U

  • Aluminum plate stack packaging system and packaging method

    CN114889897A

  • Feeding and film pasting mechanism applied to aluminum material automatic film pasting

    CN118514925A

  • Single-frame automatic labeling mechanism

    CN215044455U

  • Labeling mechanism of film sealing and cutting packaging machine

    CN215044458U