Hot-pressing film laminating method and equipment
By setting alternate feeding levels and feeding levels in the loading level, continuous feeding and feeding of the cooling pipe is achieved, and the problem of long waiting time during the cooling pipe coating process is solved, which improves production efficiency and reduces costs.
Patent Information
- Application Number
- CN202510707391.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-29
- Publication Date
- 2025-07-11
AI Technical Summary
In the prior art, there is a long waiting time during the cooling tube coating process, resulting in a prolonged production cycle and an increase in costs.
By placing multiple film-to-film parts in each loading level, and during the movement of the loading level, the alternate loading level and the loading level correspond to the coating table, the continuous loading and loading operations are achieved, so that the multiple coating tables can perform hot-film coating operations simultaneously.
It effectively shortens the production cycle, reduces production costs, and improves processing efficiency.
Smart Images

Figure CN120287567A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of film laminating processes, and in particular to a hot press film laminating method and equipment. Background Art
[0002] As a power supply module of new energy vehicles, the supporting cooling technology of the battery pack is very important for the normal use of the battery pack, and the quality of the cooling pipes used in the cooling technology is very important, which directly determines the service life of the cooling pipes, whether they can be reused, and the level of insulation.
[0003] In traditional technologies, a spraying process is used to coat the surface of the cooling pipes, but the coating uniformity is poor and the environmental pollution is high. In the prior art, a film laminating table is used to coat the cooling pipes. The film laminating table mainly includes several main parts such as a heating system, a film pressing device, a conveying mechanism, and a control unit. The heating system is responsible for heating the laminating material to an appropriate temperature for better bonding with the surface of the pipe fittings; the film pressing device tightly adheres the heated film material to the surface of the pipe fittings through mechanical pressure; the conveying mechanism is responsible for the movement and positioning of the pipe fittings between each process; the control unit coordinates the work of each part to ensure the automation and accuracy of the entire film laminating process.
[0004] However, during the film laminating process of the above equipment, before the pipe fittings are completely laminated, the conveying mechanism needs to stop to wait for the pipe fittings to be processed and then unloaded. After unloading, loading is carried out to coat the next pipe fitting, and then waiting continues, resulting in a long waiting time in the entire film laminating process, prolonging the production cycle and increasing the production cost. Summary of the Invention
[0005] The purpose of the present invention is to provide a hot press film laminating method and equipment, which solves the problem that in the prior art, a long waiting time is required during the film laminating of pipe fittings, resulting in a long overall film laminating cycle and high production costs.
[0006] To achieve this purpose, the present invention adopts the following technical solutions:
[0007] In a first aspect, the present invention provides a hot press film laminating method, which includes:
[0008] Placing a plurality of workpieces to be film laminated in each loading position and loading each film laminating table during initial processing;
[0009] Moving the loading position to the first film laminating table, unloading and then loading after unloading for the first film laminating table;
[0010] Moving the next group of the loading positions to the second film laminating table, unloading and then loading after unloading for the second film laminating table.
[0011] Optionally, the placing a plurality of workpieces to be film laminated in each loading position includes:
[0012] Obtain multiple loading positions and multiple unloading positions of the material loading position, place the parts to be film-coated at the loading positions, and keep the unloading positions empty.
[0013] Optionally, moving the material loading position to the first film coating table, unloading and then loading after unloading at the first film coating table, includes:
[0014] Move the material loading position so that the unloading position corresponds to the unloading port of the first film coating table to receive the products that have completed hot press film coating;
[0015] Move the material loading position so that the loading position corresponds to the loading port of the first film coating table to transport the parts to be film-coated to the loading port of the first film coating table to complete loading.
[0016] Optionally, detect the state of the unloading port of the first film coating table. When the first unloading information is detected, control the material loading position to stop at the first film coating table for unloading and loading.
[0017] Optionally, detect the information in the unloading position within the material loading position. After detecting the information of receiving the products, control the movement of the material loading position so that the loading position of the material loading position corresponds to the loading port of the first film coating table for loading.
[0018] Optionally, detect the state of the unloading port of the second film coating table. When the second unloading information is detected, detect the state of the unloading position within the material loading position passing through the first film coating table. When the empty load information is detected, control the material loading position to stop at the second film coating table for unloading and loading.
[0019] Optionally, the hot press film coating method further includes:
[0020] Move the material loading position that receives the products to the discharge port, move the products out of the material loading position, and move the material loading position to the starting position to receive the parts to be film-coated.
[0021] In a second aspect, a hot press film coating device that applies the hot press film coating method according to any one of the first aspect to perform hot press film coating on parts to be film-coated, includes:
[0022] A streamline having multiple material loading positions, each of which can receive multiple parts to be film-coated;
[0023] Multiple film coating tables are sequentially distributed along the extending direction of the streamline, and each film coating table has a loading port and an unloading port;
[0024] A handling mechanism is located above the film coating table and is used to transport the parts to be film-coated in the material loading position to the loading port of the film coating table or transport the products that have completed hot press film coating at the unloading port of the film coating table to the material loading position.
[0025] Optionally, the loading positions include a plurality of loading positions and a plurality of unloading positions which are alternately distributed; and / or
[0026] The plurality of film laminating platforms include a plurality of first film laminating platforms and a plurality of second film laminating platforms which are alternately distributed.
[0027] Optionally, the handling mechanism includes:
[0028] Multiple groups of handling components, all of which can slide along the extending direction of the flow line.
[0029] Advantages of the present invention:
[0030] In the first aspect, by this method, after the hot-pressing film laminating starts, as the loading positions move, one of the two adjacent loading positions is for loading after unloading by the first film laminating platform, and the other loading position is for loading after unloading by the second film laminating platform, so that both the first film laminating platform and the second film laminating platform can continuously perform hot-pressing film laminating operations. Therefore, when applying this hot-pressing film laminating method, when the second film laminating platform performs hot-pressing film laminating, the loading positions are for unloading and loading by the first film laminating platform, and when the first film laminating platform performs hot-pressing film laminating, the hot-pressing film laminating of the second film laminating platform has been completed and is ready to perform hot-pressing film laminating on the next workpiece to be film laminated. The next group of loading positions moves to the second film laminating platform to complete unloading and loading, so that the first film laminating platform and the second film laminating platform run continuously, and the multiple loading positions can continuously move, so as to reduce the waiting time in the whole hot-pressing film laminating process, improve the overall processing efficiency, shorten the production cycle, and reduce the production cost.
[0031] In the second aspect, in the initial state, loading is performed for each film laminating platform, and then a certain number of workpieces to be film laminated are placed in each loading position. When the loading position corresponds to some film laminating platforms, the products that have completed hot-pressing film laminating in these film laminating platforms are transported by the handling mechanism into the carriers in the loading positions to complete unloading, and then the workpieces to be film laminated contained in this loading position are transported into the loading ports of these film laminating platforms to complete loading. This loading position can then move to the unloading port for unloading, and the next group of loading positions performs unloading and loading for the film laminating platforms corresponding to them. Therefore, when this hot-pressing film laminating runs using the above method, the flow line does not need to wait for the hot-pressing film laminating of a single film laminating platform. When some film laminating platforms are performing hot-pressing film laminating, the flow line can continue to load and unload for the remaining film laminating platforms, thereby effectively saving the waiting time, being beneficial to shortening the production cycle, and reducing the production cost. Description of the drawings
[0032] Figure 1 is a schematic flow chart of the hot-pressing film laminating method in an embodiment of the present invention;
[0033] Figure 2 is a schematic flow chart of unloading and loading for the first film laminating platform in the hot-pressing film laminating method in an embodiment of the present invention;
[0034] Figure 3 It is a schematic structural diagram of the hot-pressing film laminating equipment in an embodiment of the present invention;
[0035] Figure 4 It is a schematic structural diagram of the material loading position in the streamline of the hot-pressing film laminating equipment in an embodiment of the present invention;
[0036] Figure 5 It is a schematic structural diagram of the film laminating table in the streamline of the hot-pressing film laminating equipment in an embodiment of the present invention;
[0037] Figure 6 It is a schematic structural diagram of the double-station film laminating table of the hot-pressing film laminating equipment in an embodiment of the present invention;
[0038] Figure 7 It is a schematic structural diagram of the handling module of the hot-pressing film laminating equipment in an embodiment of the present invention.
[0039] In the figure:
[0040] 1. Streamline; 11. Material loading position; 111. Loading position; 112. Unloading position; 2. First film laminating table; 3. Second film laminating table; 4. Handling mechanism; 41. Handling component; 411. Mounting frame; 412. Driving module; 413. Handling module; 5. Handling frame. Detailed implementation manners
[0041] The present invention will be further described in detail below with reference to the drawings and embodiments. It can be understood that the specific embodiments described herein are only used to explain the present invention, rather than limiting the present invention. In addition, it should be noted that for the convenience of description, only the parts related to the present invention rather than all the structures are shown in the drawings.
[0042] In the description of the present invention, unless otherwise clearly defined and limited, the terms "connected", "connected to", and "fixed" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or integrated; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be the internal communication of two components or the interaction relationship between two components. For those of ordinary skill in the art, the specific meanings of the above terms in the present invention can be understood according to specific situations.
[0043] In the present invention, unless otherwise clearly specified or limited, the first feature being "above" or "below" the second feature may include direct contact between the first and second features, or may include the situation where the first and second features are not in direct contact but in contact through additional features therebetween. Moreover, the first feature being "above", "over" and "on top of" the second feature includes the first feature being directly above and obliquely above the second feature, or merely indicating that the horizontal height of the first feature is higher than that of the second feature. The first feature being "below", "beneath" and "underneath" the second feature includes the first feature being directly below and obliquely below the second feature, or merely indicating that the horizontal height of the first feature is less than that of the second feature.
[0044] In the description of this embodiment, the orientation or positional relationships such as "above", "below", "left" and "right" are based on the orientation or positional relationships shown in the drawings, and are only for the convenience of description and simplifying the operation, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus cannot be construed as a limitation on the present invention. In addition, the terms "first" and "second" are only used for distinction in description and have no special meaning.
[0045] The embodiments of the present invention disclose a hot pressing and laminating method and a hot pressing and laminating device.
[0046] Referring to Figure 1 , the hot pressing and laminating method includes:
[0047] Step S1: Place a plurality of workpieces to be laminated in each loading position 11 and load each laminating table during initial processing.
[0048] A plurality of loading positions 11 are arranged at intervals on the streamline 1, and a plurality of carriers are arranged at intervals in each loading position 11, and all the carriers are used to carry the workpieces to be laminated. When laminating, one workpiece to be laminated can be placed in each carrier, or the workpieces to be laminated can be placed only in some of the carriers in each loading position 11, which can be specifically designed according to the actual laminating process. During initial processing, each carrier in the first loading position 11 receives the workpiece to be laminated to load each laminating table simultaneously. The workpiece to be laminated is a cooling pipe used in the battery cell cooling system in this embodiment, and the carrier is a structure capable of carrying the cooling pipe. In other embodiments, the workpiece to be laminated can be other structures.
[0049] Step S2: Move the loading position 11 to the first laminating table 2, unload and then reload the first laminating table 2.
[0050] The film laminating table is straddled on the streamline 1, and a plurality of film laminating tables are distributed in sequence along the length direction of the streamline 1. The plurality of film laminating tables can be arranged closely in sequence to save space. Among them, some film laminating tables are called the first film laminating table 2, and the other part of the film laminating tables are called the second film laminating table 3. The two only differ in the arrangement position. The specific structure of the film laminating table can refer to the prior art, and the present invention will not elaborate here. After the initial loading position 11 completes the feeding of each film laminating table, there are some empty carriers in each subsequent loading position 11. When the loading position 11 moves to the first film laminating table 2, the empty carrier corresponds to the discharging port of the first film laminating table 2. The products that have completed the coating are transported into the empty carrier by using a manipulator or a feeding module, while the carrier carrying the parts to be film laminated corresponds to the feeding port of the film laminating table. The parts to be film laminated on the carrier are transported to the feeding port of the film laminating table by using a manipulator or a feeding module to feed the first film laminating table 2.
[0051] Step S3: Move the next group of loading positions 11 to the second film laminating table 3, discharge the material from the second film laminating table 3 and then load the material.
[0052] Since the completion of the coating process requires processes such as film lamination and hot pressing, after the feeding of the first film laminating table 2, the streamline 1 moves so that the loading position 11 continues to move, and the next group of loading positions 11 corresponds to the second film laminating table 3. The empty carriers in this group of loading positions 11 are used for discharging the material from the second film laminating table 3, and the carriers carrying the parts to be film laminated in this group of loading positions 11 are used for feeding the second film laminating table 3.
[0053] Through the above steps S1 to S3, after the hot pressing and film lamination start, as the loading position 11 moves, one of the adjacent two loading positions 11 discharges the material from the first film laminating table 2 and then loads the material, while the other loading position 11 can discharge the material from the second film laminating table 3 and then load the material, so that both the first film laminating table 2 and the second film laminating table 3 can continuously carry out the hot pressing and film lamination operations. Therefore, when this hot pressing and film lamination method is applied, when the second film laminating table 3 is performing hot pressing and film lamination, the loading position 11 discharges and loads the material for the first film laminating table 2, and when the first film laminating table 2 is performing hot pressing and film lamination, the next group of loading positions 11 moves to the second film laminating table 3 to complete the discharging and loading of the second film laminating table 3, so that the first film laminating table 2 and the second film laminating table 3 operate continuously, and the multiple loading positions 11 can continue to move, so as to reduce the waiting time required for the parts to be film laminated during the entire hot pressing and film lamination process, improve the overall processing efficiency, shorten the production cycle, and reduce the production cost.
[0054] Optionally, placing a plurality of parts to be film laminated in each loading position 11 includes:
[0055] Obtain a plurality of feeding positions 111 and a plurality of discharging positions 112 of the loading position 11, place the parts to be film laminated at the feeding positions 111, and keep the discharging positions 112 empty.
[0056] A carrier is provided at each loading position 111 and each unloading position 112. The carrier at the loading position 111 contains the parts to be film-coated, while the carrier at the unloading position 112 does not contain the parts to be film-coated, so as to keep the unloading position 112 empty. The distribution of multiple loading positions 111 and multiple unloading positions 112 can be designed according to the distribution of the first film-coating table 2 and the second film-coating table 3, and the present invention does not limit this.
[0057] By providing a loading position 111 and an unloading position 112 at each loading position 11, after the loading position 11 corresponds to the first film-coating table 2 or the second film-coating table 3, the unloading can be completed first and then the loading can be carried out, so as to ensure that the first film-coating table 2 or the second film-coating table 3 can smoothly complete the hot-press film coating.
[0058] Refer to Figure 2 , optionally, move the movable loading position 11 to the first film-coating table 2, unload the material for the first film-coating table 2 and then load the material, including:
[0059] Step S21: Move the loading position 11 so that the unloading position 112 corresponds to the unloading port of the first film-coating table 2 to receive the product that has completed the hot-press film coating.
[0060] After the product has completed the hot-press film coating on the first film-coating table 2, it will move to the unloading port of the first film-coating table 2. When the first film-coating table 2 stops, the product is transported from the unloading port to the carrier at the unloading position 112 by a manipulator or a handling mechanism 4, and the unloading of the product can be completed. At this time, the first film-coating table 2 enters the waiting state.
[0061] Step S22: Move the loading position 11 so that the loading position 111 corresponds to the loading port of the first film-coating table 2 to transport the parts to be film-coated to the loading port of the first film-coating table 2 to complete the loading.
[0062] After the first film-coating table 2 enters the waiting state, the loading position 11 continues to move so that the loading position 111 corresponds to the loading port of the first film-coating table 2. At this time, the parts to be film-coated received on the carrier at the loading position 111 are transported to the loading port of the first film-coating table 2 by a manipulator or a handling module 413 to complete the loading. At this time, the first film-coating table 2 continues to operate to perform hot-press film coating on the parts to be film-coated.
[0063] Through the above steps S21 and S22, after the first film-coating table 2 has completed the hot-press film coating on the parts to be film-coated, the unloading position 112 in the loading position 11 can receive the product that has completed the hot-press film coating, and the loading position 111 can immediately supply the parts to be film-coated for the first film-coating table 2, so that the first film-coating table 2 can continue to operate. Similarly, the loading and unloading processes of the second film-coating table 3 are the same as the above process and will not be elaborated here.
[0064] Optionally, detect the state of the discharging opening of the first film laminating table 2. When the first discharging information is detected, control the material loading position 11 to stop at the first film laminating table 2 for discharging and loading.
[0065] The first discharging information indicates that there is a product with completed film lamination at the discharging opening of the first film laminating table 2. At this time, when the material loading position 11 corresponds to the first film laminating table 2, control the material loading position 11 to stop, and then the discharging and loading operations can be carried out. After the loading is completed, move the material loading position 11 away, and the first film laminating table 2 can continue to operate to thermally press and laminate new products.
[0066] Optionally, detect the information in the discharging position 112 within the material loading position 11. After detecting the information of receiving the product, control the material loading position 11 to move so that the loading position 111 of the material loading position 11 corresponds to the loading opening of the first film laminating table 2 for loading.
[0067] After discharging the first film laminating table 2, it is possible to detect whether there is a product in the carrier by means of detecting the weight of the product or infrared scanning. When a product is detected, it means that the discharging has been completed. According to the interval distance between the discharging position 112 and the loading position 111, after moving the material loading position 11 a certain distance, the loading position 111 of the material loading position 11 will correspond to the loading opening of the first film laminating table 2, so that the parts to be film laminated can be transported to the loading opening of the first film laminating table 2 to complete the loading.
[0068] Optionally, the loading position 111 and the discharging position 112 are alternately and spacedly distributed.
[0069] Within the material loading position 11, one discharging position 112 is arranged in two adjacent loading positions 111, and the intervals between the loading position 111 and the discharging position 112 are different. The intervals are correspondingly designed according to the size of the film laminating table, so that the loading position 111 and the discharging position 112 within each material loading position 11 are alternately and spacedly distributed. When the discharging position 112 corresponds to the discharging opening of the first film laminating table 2 or the second film laminating table 3, the distance between the loading position 111 and the loading opening of the first film laminating table 2 or the second film laminating table 3 is relatively close. Then, after discharging, the material loading position 11 only needs to move a small distance to make the loading position 111 correspond to the loading opening of the first film laminating table 2 or the second film laminating table 3, so as to further save the waiting time.
[0070] Optionally, detect the state of the discharging opening of the second film laminating table 3. When the second discharging information is detected, detect the state of the discharging position 112 within the material loading position 11 passing through the first film laminating table 2. When the no-load information is detected, control the material loading position 11 to stop at the second film laminating table 3 for discharging and loading.
[0071] When it is detected that there are products that have completed hot-pressing lamination in the unloading port of the second laminating station 3, unloading information will be generated. At this time, the passing loading position 11 will be detected. Since the loading position 11 has passed the first laminating station 2 first, when it is detected that the unloading position 112 of the loading position 11 is empty, it means that the loading position 11 can load and unload materials for the second laminating station 3. Otherwise, it is judged that the loading position 11 has already loaded and unloaded materials for the first laminating station 2, and needs to pass through the second laminating station 3 to move directly to the discharge port.
[0072] Optionally, the loading position 11 receiving the product is moved to the discharge port, the product is removed from the loading position 11 and the loading position 11 is moved to the starting position to receive the film-receiving member.
[0073] The product is formed after the workpiece to be coated is completed with hot-pressing coating. When the loading position 11 passes through the first coating station 2 and the second coating station 3, the product is transported from the first coating station 2 or the second coating station 3 to the unloading position 112 in the loading position 11 by unloading, and is received by the carrier of the unloading position 112. The loading position 11 receiving the product continues to move to the discharge port, and the product is moved away by the robot or the conveying mechanism 4. The loading position 11 moves to the starting position again and continues to receive the workpiece to be coated, thereby allowing the loading position 11 to be recycled.
[0074] Reference Figures 3 to 7 The hot pressing film laminating equipment applies the hot pressing film laminating method as described above to perform hot pressing film lamination on the parts to be laminarized, and comprises a streamline 1, a plurality of laminating tables and a conveying mechanism 4. The streamline 1 has a plurality of loading positions 11, each of which can receive a plurality of parts to be laminarized; a plurality of laminating tables are sequentially distributed along the extending direction of the streamline 1, and each laminating table has a loading port and a unloading port; the conveying mechanism 4 is located above the laminating table and is used to convey the parts to be laminarized at the loading position 11 to the loading port of the laminating table or to convey the products that have been hot pressed and laminarized at the unloading port of the laminating table to the loading position 11.
[0075] Specifically, the streamline 1 is composed of a conveyor frame, on which a chain structure is provided, and the chain is driven to rotate by a motor or the like. A plurality of carriers are arranged at intervals on the connection, and a certain number of carriers are set to form a loading position 11 together, and the number of carriers included in the loading position 11 is determined by the number of laminating tables. The laminating table can be a separate device, or it can be a plurality of double-station laminating machines, each of which contains two laminating tables, and the plurality of double-station laminating machines are spliced in sequence along the length direction of the streamline 1. A transport frame 5 is provided above the laminating table, and a transport mechanism 4 can be provided in the transport frame 5 to carry out loading and unloading operations for the laminating table. The transport mechanism 4 can be a manipulator or a clamping cylinder, which can be specifically designed according to the shape of the actual product, and the present invention does not limit this.
[0076] In the initial state, each laminating table is loaded. Subsequently, a certain number of workpieces to be laminated are placed in each loading position 11. When the loading position 11 corresponds to some of the laminating tables, the products that have completed hot-press lamination in this part of the laminating tables are transported by the handling mechanism 4 into the carriers in the loading position 11 to complete unloading. Subsequently, the workpieces to be laminated contained in this loading position 11 are transported into the loading ports of this part of the laminating tables to complete loading. This loading position 11 can then move to the unloading port for unloading, and the next group of loading positions 11 performs unloading and loading for the remaining laminating tables. Therefore, when this hot-press lamination operates using the above method, the streamline 1 does not need to wait for the hot-press lamination of a single laminating table to be completed before loading. Instead, when some of the laminating tables are performing hot-press lamination, the streamline 1 can continue to unload and load for the remaining laminating tables, thus effectively saving the waiting time, being conducive to shortening the production cycle, and reducing the production cost.
[0077] Optionally, the loading position 11 includes a plurality of loading positions 111 and a plurality of unloading positions 112 that are alternately distributed; the plurality of laminating tables include a plurality of first laminating tables 2 and a plurality of second laminating tables 3 that are alternately distributed.
[0078] Specifically, taking a group of loading positions 11 formed by two loading positions 111 and two unloading positions 112 as an example, the laminating tables include two first laminating tables 2 and two second laminating tables 3. In the initial state, four laminating tables are loaded synchronously so that they all perform hot-press lamination on the workpieces to be laminated. When a group of loading positions 11 moves to the first laminating table 2, first, the two unloading positions 112 of this loading position 11 correspond to the unloading ports of the two first laminating tables 2. The handling mechanism 4 is used to transport the products in the two unloading ports into the carriers in the unloading positions 112 to complete unloading. The loading position 11 is moved so that the two loading positions 111 correspond to the loading ports of the two first laminating tables 2. The handling mechanism 4 is used to transport the workpieces to be laminated in the two loading positions 111 to the loading ports of the first laminating table 2 to complete loading. At this time, the two first laminating tables 2 can start hot-press lamination. During the hot-press lamination process of the first laminating table 2, the streamline 1 continues to move so that the loading position 11 with products in the unloading position 112 moves to the unloading port for unloading, and the next group of loading positions 11 moves to the second laminating table 3, and the above process is repeated to perform unloading and loading for the second laminating table 3. By continuously repeating this way, the streamline 1 can continue to move, effectively reducing the waiting time required for the workpieces to be laminated.
[0079] By alternately distributing a plurality of loading positions 111 and unloading positions 112 and cooperating with a plurality of first laminating tables 2 and a plurality of second laminating tables 3 that are alternately distributed, a plurality of laminating tables can share a single streamline 1 without the need to set up other streamlines 1, reducing the space occupied and thus being conducive to improving the space utilization rate.
[0080] The handling mechanism 4 includes multiple groups of handling components 41. Multiple groups of handling components 41 can all slide along the extension direction of the streamline 1.
[0081] Specifically, a handling rack 5 extending along the length direction of the streamline 1 is provided on the film laminating table. Multiple groups of handling components 41 are arranged inside the handling rack 5. The handling mechanism 4 includes a mounting rack 411, a driving module 412, and a handling module 413. The mounting rack 411 is slidably connected to the handling rack 5, and the driving module 412 can drive the mounting rack 411 to slide. The driving module 412 can be a motor, and a gear set is arranged at its output end. A rack can be provided on the handling rack 5, and the rack extends along the length direction of the streamline 1. The gear set meshes with the rack, so that when the motor operates, the mounting rack 411 can be driven to slide relative to the handling rack 5. It should be understood that the driving module 412 can also be implemented by other structures, such as a motor driving a lead screw to rotate, a motor driving a chain to move, etc. Specifically, it can be designed according to the actual transmission requirements, and the present invention does not limit this.
[0082] The handling module 413 is used to handle the parts or products to be film laminated. It can include a lifting component and a clamping component. The clamping component can clamp the parts or products to be film laminated, and the lifting component can use a cylinder or the like as a driving part to drive the clamping component to rise or fall, so as to successfully realize the handling of the parts or products to be film laminated.
[0083] Obviously, the above-mentioned embodiments of the present invention are only examples for clearly explaining the present invention, rather than limitations on the implementation manners of the present invention. For those of ordinary skill in the art, various obvious changes, re-adjustments, and substitutions can be made without departing from the protection scope of the present invention. It is not necessary and impossible to enumerate all the implementation manners here. Any modifications, equivalent substitutions, and improvements made within the spirit and principle of the present invention shall be included in the protection scope of the claims of the present invention.
Claims
1. A hot stamping and laminating method, characterized in that, Including: Placing a plurality of parts to be film-coated in each loading position (11) and feeding each film-coating table during initial processing; Moving the loading position (11) to the first film-coating table (2), unloading and then reloading after unloading to the first film-coating table (2); Moving the next group of the loading positions (11) to the second film-coating table (3), unloading and then reloading after unloading to the second film-coating table (3).
2. The hot pressing and laminating method according to claim 1, characterized in that, The placing a plurality of parts to be film-coated in each loading position (11) includes: Obtaining a plurality of loading positions (111) and a plurality of unloading positions (112) of the loading position (11), placing the parts to be film-coated in the loading positions (111), and keeping the unloading positions (112) empty.
3. The hot pressing and laminating method according to claim 2, wherein The moving the loading position (11) to the first film-coating table (2), unloading and then reloading after unloading to the first film-coating table (2) includes: Moving the loading position (11) so that the unloading position (112) corresponds to the unloading opening of the first film-coating table (2) to receive the products that have completed hot-press film coating; Moving the loading position (11) so that the loading position (111) corresponds to the loading opening of the first film-coating table (2) to transport the parts to be film-coated to the loading opening of the first film-coating table (2) to complete reloading.
4. The hot pressing and laminating method according to claim 1, wherein Detecting the state of the unloading opening of the first film-coating table (2), and when the first unloading information is detected, controlling the loading position (11) to stop at the first film-coating table (2) for unloading and reloading.
5. The hot-press film coating method according to claim 4, wherein Detecting the information in the unloading position (112) of the loading position (11), and when the information of receiving the product is detected, controlling the movement of the loading position (11) so that the loading position (111) of the loading position (11) corresponds to the loading opening of the first film-coating table (2) for reloading.
6. The hot-press film coating method according to claim 1, wherein Detecting the state of the unloading opening of the second film-coating table (3), when the second unloading information is detected, detecting the state of the unloading position (112) in the loading position (11) passing through the first film-coating table (2), and when the empty-load information is detected, controlling the loading position (11) to stop at the second film-coating table (3) for unloading and reloading.
7. The hot pressing and laminating method according to claim 1, characterized in that, The hot-press film coating method further includes: Moving the loading position (11) that receives the product to the discharge port, removing the product from the loading position (11) and moving the loading position (11) to the starting position to receive the parts to be film-coated.
8. A hot-pressing laminating device, characterized in that, Applying the hot-press film coating method according to any one of claims 1 to 7 to perform hot-press film coating on the parts to be film-coated, including: A streamline (1) having a plurality of loading positions (11), each of the loading positions (11) being capable of receiving a plurality of parts to be film-coated; A plurality of film-coating tables distributed in sequence along the extending direction of the streamline (1), each of the film-coating tables having a loading opening and an unloading opening; A handling mechanism (4) located above the film-coating table and used to transport the parts to be film-coated in the loading position (11) to the loading opening of the film-coating table or transport the products that have completed hot-press film coating at the unloading opening of the film-coating table to the loading position (11).
9. The hot pressing and laminating device according to claim 8, characterized in that, The material loading positions (11) include a plurality of loading positions (111) and a plurality of unloading positions (112) that are alternately distributed; and / or The plurality of film laminating tables include a plurality of first film laminating tables (2) and a plurality of second film laminating tables (3) that are alternately distributed.
10. The hot pressing and laminating device according to claim 8, wherein, The handling mechanism (4) includes: Multiple groups of handling components (41), all of which can slide along the extension direction of the streamline (1).