A film production line control system
By introducing a strapping mechanism, a tipping mechanism, and a packaging mechanism into the film production line, combined with a control unit, the automatic bundling, tipping, and packaging of films are achieved, solving the problem of low efficiency of manual operation in existing technologies and improving production efficiency and continuity.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- HAINAN JUNENG HONGSEN PLASTIC PRODUCTS CO LTD
- Filing Date
- 2026-04-29
- Publication Date
- 2026-06-12
AI Technical Summary
The existing film production lines have low levels of automation in the manual stacking, bundling, and packaging processes after slicing, resulting in low production efficiency and limiting overall capacity.
By employing a strapping mechanism, a tipping mechanism, and a packaging mechanism, combined with a control unit, the film can be automatically bundled, tipped, and packaged, replacing manual operation.
It significantly improves the processing efficiency and production continuity of the film production line, reduces manual intervention, and increases overall capacity.
Smart Images

Figure CN122186476A_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of thin film production technology, and in particular to a thin film production line control system. Background Technology
[0002] In existing film production lines, after the film is cut by a slicing machine, the stacking and bundling of the film usually requires manual labor, followed by manual wrapping of the packaging film to achieve finished product packaging. This process has a low degree of automation, involves many manual interventions, and has limited operational efficiency, which restricts the continuous and efficient production of the film production line and is not conducive to improving overall production capacity. Summary of the Invention
[0003] This application proposes a thin film production line control system to improve production efficiency.
[0004] To achieve the above objectives, this application discloses the following technical solutions:
[0005] A film production line control system includes: a belt tensioning mechanism, a tipping mechanism, a packaging mechanism, a conveyor belt, and a control unit; the belt tensioning mechanism, the tipping mechanism, and the packaging mechanism are arranged along the film conveying direction on the conveyor belt;
[0006] The strapping mechanism bundles multiple films cut by the slicing machine to form film bundles;
[0007] The tipping mechanism tipped over the film bundle and transported the tipped film bundle to the packaging mechanism;
[0008] The packaging mechanism packages the overturned film bundle to form a finished package;
[0009] The control unit is electrically connected to the belt tensioning mechanism, the tipping mechanism, the packaging mechanism, and the conveyor belt to control the belt tensioning mechanism, the tipping mechanism, the packaging mechanism, and the conveyor belt to operate according to a preset pattern as needed.
[0010] In some technical solutions, the strapping mechanism includes: a strapping body and a strapping sensor;
[0011] Both the belt body and the belt sensor are located on the film conveying path. The belt sensor is used to detect the first position information of the film on the conveyor belt and transmit the first position information to the control unit. Based on the first position information, the control unit controls the belt body to bundle multiple films.
[0012] In some technical solutions, the strap body includes: a strap component, a clamping component, and a pressing component;
[0013] The clamping component clamps the multiple films along the width direction of the film;
[0014] The pressing component presses down the multiple films after they are clamped;
[0015] The strapping component bundles the multiple films after they have been pressed down.
[0016] In some technical solutions, the conveyor belt includes: a first conveyor belt, a second conveyor belt, and a third conveyor belt.
[0017] The strapping mechanism is located on the path of the first conveyor belt conveying the film, the tipping mechanism is located on the path of the second conveyor belt conveying the film, and the packaging mechanism is located on the path of the third conveyor belt conveying the film. The extension direction of the first conveyor belt is consistent with the extension direction of the second conveyor belt, and the extension direction of the third conveyor belt is perpendicular to the extension direction of the second conveyor belt. The tipping mechanism is used to tip the film bundle from the second conveyor belt onto the third conveyor belt.
[0018] In some technical solutions, the tipping mechanism includes: a pushing mechanism and a pushing sensor;
[0019] Both the tipping mechanism and the tipping sensor are located on the film conveying path. The tipping sensor is used to detect the second position information of the film bundle on the second conveyor belt and transmit the second position information to the control unit. Based on the second position information, the control unit controls the tipping mechanism to tip the film bundle from the second conveyor belt to the third conveyor belt.
[0020] In some technical solutions, the pushing mechanism includes: a support member and a pushing member;
[0021] The first end of the vertically arranged support member is disposed on the edge of the second conveyor belt, the second end of the support member is connected to the fixed end of the pusher member, and the pushing end of the pusher member faces the third conveyor belt to push the film bundle over to the third conveyor belt.
[0022] In some technical solutions, the packaging mechanism includes a packaging body and a packaging sensor; both the packaging body and the packaging sensor are located on the film conveying path, the packaging sensor is used to detect the third position information of the film bundle on the conveyor belt, and the control unit controls the packaging mechanism to package the film bundle based on the third position information.
[0023] In some technical solutions, the packaging body includes: a bagging component to a sealing assembly;
[0024] The bagging component is used to cover the packaging film around the outer periphery of the film bundle, and the sealing and cutting component is used to seal and cut the covered packaging film to form a finished packaged product that wraps the film bundle.
[0025] In some technical solutions, the packaging sensor includes: a first packaging sensor and a second packaging sensor;
[0026] The first packaging sensor is positioned upstream of the bagging component in the direction of film bundle conveying and is used to detect the first passage information of the film bundle; the second packaging sensor is positioned downstream of the sealing and cutting component in the direction of film bundle conveying and is used to detect the second passage information of the film bundle.
[0027] The control unit controls the time when the film bundle enters the packaging film based on the first passage information, and controls the sealing and cutting component to seal and cut the packaging film based on the second passage information.
[0028] Some technical solutions also include: a door closing mechanism;
[0029] The third conveyor belt includes: a third conveyor belt one and a third conveyor belt two arranged in the direction of film conveying; the third conveyor belt one is used to transport the overturned film bundles, and the third conveyor belt two is provided with the closing mechanism and the packaging mechanism in sequence along the direction of film conveying; the closing mechanism is used to isolate or open the transport of the film bundles.
[0030] As can be seen from the above technical solution, in this technical solution, the coordinated work between the belt-gathering mechanism, the tipping mechanism, the packaging mechanism, the conveyor belt and the control unit replaces manual labor, which can quickly package the film and greatly improve the overall processing efficiency and production continuity of the film production line. Attached Figure Description
[0031] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are merely some examples or embodiments of this application. For those skilled in the art, other drawings can be obtained based on the provided drawings without creative effort, and this application can be applied to other similar scenarios based on the provided drawings, all of which fall within the scope of protection of this solution. Unless obvious from the linguistic context or otherwise specified, the same reference numerals in the drawings represent the same structure or operation.
[0032] Figure 1 This is a schematic diagram of one embodiment of the control system for the thin film production line;
[0033] Figure 2This is a schematic diagram showing the interaction between the control unit and other components;
[0034] Figure 3 Schematic diagrams of two embodiments of a thin film production line control system;
[0035] Figure 4 This is a schematic diagram of the structure of the strap body;
[0036] Figure 5 A schematic diagram showing the interaction between the push-down mechanism and the film bundle;
[0037] Figure 6 This is a schematic diagram of the third conveyor belt and other components.
[0038] in:
[0039] 10 is the strapping mechanism, 11 is the strapping body, 111 is the clamping component, 112 is the pressing component, and 12 is the strapping sensor;
[0040] 20 is the tipping mechanism, 21 is the pushing mechanism, 211 is the support component, 212 is the pushing component, and 22 is the pushing sensor;
[0041] 30 is the packaging mechanism, 31 is the packaging body, and 32 is the packaging sensor;
[0042] 40 is a conveyor belt, 41 is the first conveyor belt, 42 is the second conveyor belt, 43 is the third conveyor belt, 431 is the third conveyor belt one, and 432 is the third conveyor belt two;
[0043] 50 is the control unit;
[0044] 60 is a closing mechanism;
[0045] 70 is a film bundle. Detailed Implementation
[0046] The present application will now be described in further detail with reference to the accompanying drawings and embodiments. It is to be understood that the specific embodiments described herein are merely illustrative of the application and not intended to limit it. The described embodiments are only a part of the embodiments of the present application, and not all of them. All other embodiments obtained by those skilled in the art based on the embodiments of the present application without inventive effort are within the scope of protection of the present application.
[0047] To address the technical problem of low production efficiency in existing thin-film production lines, such as... Figure 1 and Figure 2As shown, a film production line control system may include: a belt tensioning mechanism 10, a tipping mechanism 20, a packaging mechanism 30, a conveyor belt 40, and a control unit 50. The belt tensioning mechanism 10, the tipping mechanism 20, and the packaging mechanism 30 are arranged along the conveying direction of the film on the conveyor belt 40.
[0048] The strapping mechanism 10 bundles multiple films cut by the slicing machine to form film bundles 70.
[0049] The tipping mechanism 20 tipps the film bundle 70 and transports the tipped film bundle 70 to the packaging mechanism 30; this can be understood as tilting the upright film bundle 70 as a whole, such as... Figure 5 As shown, the direction of the overturning or tilting is as follows: Figure 5 As shown by the arrow in the image.
[0050] The packaging unit 30 packages the film bundles 70 to form the finished package.
[0051] Among them, such as Figure 2 As shown, the control unit 50 is electrically connected to the belt tensioning mechanism 10, the tipping mechanism 20, the packaging mechanism 30, and the conveyor belt 40 to control the belt tensioning mechanism 10, the tipping mechanism 20, the packaging mechanism 30, and the conveyor belt 40 to operate according to a preset pattern as needed.
[0052] In the above technical solution, during use, multiple films cut by the slicing machine are placed on the conveyor belt 40. The films are conveyed along the conveyor belt 40. When passing through the bundling area, the control unit 50 controls the strapping mechanism 10 to bundle the films into a film bundle 70. Then, when the film bundle 70 passes through the tipping area, the control unit 50 controls the tipping mechanism 20 to tip the film bundle 70. After tipping, the film bundle 70 is transported to the packaging mechanism 30. Finally, when the film bundle 70 passes through the packaging area, the control unit 50 controls the packaging mechanism 30 to perform integrated packaging of the adjusted film bundle 70, forming a finished package. As can be seen, through the coordinated work of the strapping mechanism 10, the tipping mechanism 20, the packaging mechanism 30, the conveyor belt 40, and the control unit 50, manual labor can be replaced, and the film can be packaged quickly, greatly improving the overall processing efficiency and production continuity of the film production line.
[0053] Based on the above technical solutions, such as Figure 3 As shown, the strapping mechanism 10 may include a strapping body 11 and a strapping sensor 12.
[0054] Both the belt tensioner 11 and the belt tensioner sensor 12 are located on the film conveying path. The belt tensioner sensor 12 detects the first position information of the film on the conveyor belt 40 and transmits this information to the control unit 50. Based on the first position information, the control unit 50 controls the belt tensioner 11 to bundle multiple films. In the above technical solution, when the film appears within the detection range of the belt tensioner sensor 12, the belt tensioner sensor 12 detects the first position information of the film and then uploads it to the control unit 50. Based on the first position information, the control unit 50 controls the belt tensioner 11 to open and bundle the passing multiple films to form a film bundle 70.
[0055] Based on the above technical solutions, such as Figure 4 As shown, the strap body 11 may include: a strap component, a clamping component 111, and a pressing component 112. The strap component is not located in... Figure 4 The diagram is shown in the image.
[0056] The clamping component 111 clamps multiple films along the width direction of the film.
[0057] The pressing component 112 presses down on the clamped multiple films.
[0058] The strapping component bundles multiple films after they have been pressed down. In this technical solution, the strapping component works in sequence with the clamping and pressing processes to wrap and secure the multiple films, thereby forming a structurally stable film bundle 70, ensuring the stable operation of subsequent flipping, conveying and packaging processes.
[0059] Additionally, in a specific embodiment, such as Figure 4 As shown, the clamping component 111 may include: a first clamping plate and a second clamping plate symmetrically arranged, spaced apart to form a clamping space between them. Multiple films are placed within this clamping space. Driven by a clamping cylinder, the first and second clamping plates cause the clamping space to expand and contract to clamp the films. The position of the first clamping plate can remain fixed, while the second clamping plate moves relative to the first clamping plate. Figure 4 The arrows shown indicate the clamping direction of the second clamping plate. The control unit 50 is electrically connected to the cylinder to control its operation. Additionally, the pressing component 112, under the action of the pressing cylinder, can press down multiple films.
[0060] To achieve segmented, orderly conveying and multi-stage processing of the film, such as Figure 3 As shown, the conveyor belt 40 includes: a first conveyor belt 41, a second conveyor belt 42, and a third conveyor belt 43.
[0061] The strapping mechanism 10 is located on the path of the first conveyor belt 41 conveying the film, the tipping mechanism 20 is located on the path of the second conveyor belt 42 conveying the film, and the packaging mechanism 30 is located on the path of the third conveyor belt 43 conveying the film. The extension direction of the first conveyor belt 41 is consistent with the extension direction of the second conveyor belt 42, while the extension direction of the third conveyor belt 43 is perpendicular to the extension direction of the second conveyor belt 42. The tipping mechanism 20 is used to tip the film bundle 70 from the second conveyor belt 42 onto the third conveyor belt 43. In this technical solution, by utilizing the tilting and reversing transfer functions of the tipping mechanism 20, the tilting and tilting of the film bundle 70 is completed, and the film bundle 70 can be smoothly reversed and transferred from the linearly conveying second conveyor belt to the vertically arranged third conveyor belt, achieving a 90° reversing flow of materials and accurately conveying the film bundle 70 to the working area of the packaging mechanism 30. Furthermore, after tipping, the film bundle 70 is easier for the packaging mechanism 30 to package.
[0062] Based on the above technical solutions, such as Figure 3 As shown, the tipping mechanism 20 may include a tipping mechanism 21 and a tipping sensor 22.
[0063] Both the pushing mechanism 21 and the pushing sensor 22 are located on the film conveying path (the pushing mechanism 21 and the pushing sensor 22 are set on the second conveyor belt 42). The pushing sensor 22 is used to detect the second position information of the film bundle 70 on the second conveyor belt 42 and transmit the second position information to the control unit 50. Based on the second position information, the control unit 50 controls the pushing mechanism 21 to flip the film bundle 70 from the second conveyor belt 42 to the third conveyor belt 43. In this technical solution, when the film bundle 70 is conveyed to the area to be flipped, the control unit 50 sends an action control command to the pushing mechanism 21 according to the received position detection signal (i.e., the second position information), driving the pushing mechanism 21 to perform the pushing action, thereby stably pushing the film bundle 70 on the second conveyor belt 42 to complete the posture flipping, so that the film bundle 70 is smoothly transferred to the downstream third conveyor belt 43, realizing the connection between the directional flipping of the film bundle and the automatic conveying across workstations, replacing the manual transfer and flipping operation, and improving the automation level of the production line.
[0064] Based on the above technical solutions, such as Figure 5 As shown, based on its inventive concept, the pushing mechanism 21 may include: a support member 211 and a pushing member 212.
[0065] The first end of the vertically arranged support member 211 is disposed on the edge of the second conveyor belt 42, and the second end of the support member 211 is connected to the fixed end of the pusher member 212. The pushing end of the pusher member 212 faces the third conveyor belt 43 to push the film bundle 70 to the third conveyor belt 43. In this technical solution, the pushing end of the pusher member 212 can extend to perform a pushing operation, pushing the film bundle 70 to the third conveyor belt 43. Thus, by setting the pusher member 212, the pushing and turning of the film bundle 70 can be completed simultaneously. In addition, the pusher member 212 can be a pusher cylinder, which uses its free end to push and turn the film bundle 70. The turning direction of the film bundle 70 can be as follows: Figure 5 As indicated by the middle arrow. Additionally, the pushing end of the pusher 212, used to push the end of the film bundle 70, has a circular structure.
[0066] In a technical solution, such as Figure 3 As shown, the packaging mechanism 30 may include a packaging body 31 and a packaging sensor 32.
[0067] Both the packaging body 31 and the packaging sensor 32 are located on the film conveying path. The packaging sensor 32 is used to detect the third position information of the film bundle 70 on the conveyor belt 40. Based on the third position information, the control unit 50 controls the packaging mechanism 30 to package the film bundle 70.
[0068] In this technical solution, when the film bundle 70 is conveyed to the packaging area, the control unit 50 receives and identifies the third position information of the film bundle 70, and then issues a control command in conjunction with the preset production program to accurately trigger the packaging body 31 to start working and automatically perform packaging operations on the film bundle 70 that has been conveyed to the position.
[0069] Based on the above technical solution, the packaging body 31 may include: a bagging component and a sealing assembly;
[0070] The bagging component is used to cover the packaging film around the film bundle 70, and the sealing and cutting component is used to seal and cut the covered packaging film to form a finished packaged product wrapping the film bundle 70. In this technical solution, the sealing and cutting component is located downstream of the bagging component. After the packaging film is covered, the sealing and cutting component performs heat sealing on the overlapping parts of the packaging film and simultaneously cuts and separates the excess packaging film.
[0071] In one technical solution, the packaging sensor 32 may include: a first packaging sensor and a second packaging sensor;
[0072] The first packaging sensor is positioned upstream of the bagging component in the conveying direction of the film bundle 70, and is used to detect the first passage information of the film bundle 70; the second packaging sensor is positioned downstream of the sealing and cutting component in the conveying direction of the film bundle 70, and is used to detect the second passage information of the film bundle 70.
[0073] In this design, the control unit 50 controls the timing of the film bundles 70 entering the packaging film based on the first passage information, and controls the sealing and cutting assembly to seal and cut the packaging film based on the second passage information. In this technical solution, the control unit 50 precisely controls the timing of the film bundles 70 entering the bagging component by adjusting the intermittent start and stop duration of the third conveyor belt 43, ensuring a preset interval between each film bundle 70. This interval can be set to 180mm to avoid material interference and congestion. Of course, the control unit 50 controls the interval between different packaged products by controlling the sealing and cutting time of the packaging film by the sealing and cutting assembly.
[0074] In a technical solution, such as Figure 2 and Figure 6 As shown, in order to isolate or open the transport of the film bundle 70, a door closing mechanism 60 may also be included.
[0075] The third conveyor belt 43 may include: a first third conveyor belt 431 and a second third conveyor belt 432 arranged in the film conveying direction; the first third conveyor belt 431 is used to transport the overturned film bundle 70, and the second third conveyor belt 432 is provided with a closing mechanism 60 and a packaging mechanism 30 in sequence along the film conveying direction; the closing mechanism 60 is used to block or open the transport of the film bundle 70. In this technical solution, when the closing mechanism 60 blocks the transport of the film bundle 70, the first third conveyor belt 431 stops during the control interval of the control unit 50; when the closing mechanism 60 does not block the transport of the film bundle 70, the first third conveyor belt 431 transports the film bundle 70 to the second third conveyor belt 432 under the control of the control unit 50.
[0076] In a specific technical solution, the closing mechanism 60 may include: a closing mechanism body, an opening sensor, and a full-material sensor. The full-material sensor is located on the third conveyor belt 2 432 near the third conveyor belt 1 431 to sense the full-material information of the film bundles 70. The opening sensor may be located on the closing mechanism body to sense whether the closing mechanism body is open. In use, if the full-material sensor senses that there are already three film bundles 70 on the third conveyor belt 2 432, the full-material sensor sends a full-material information. The control unit 50 controls the closing mechanism body to open the door based on the full-material information so that the three film bundles 70 can pass through. At the same time, the opening sensor transmits the opening information to the control unit 50, and the control unit 50 controls the third conveyor belt 1 431 to stop intermittently based on the opening information.
[0077] In addition, the closing mechanism 60 is also equipped with an anti-closing sensor; the anti-closing sensor is installed between the closing mechanism body and the full material sensor to detect in real time whether the film bundle 70 exists within the closing area of the closing mechanism body. When the anti-closing sensor detects that the film bundle 70 is within the closing range of the closing mechanism body, it immediately feeds back the collected position information of the film bundle 70 to the control unit 50; after receiving the position information, the control unit 50 locks the closing action of the closing mechanism body, forcibly prohibiting the closing mechanism from performing the closing operation, effectively avoiding squeezing, collision and interference between the closing component and the film bundle 70, preventing material damage and equipment jamming, and ensuring the safe operation of the equipment and the continuity of production.
[0078] In one technical solution, during the bagging process, the packaging film is prone to sticking to the conveyor belt edge due to its own weight, static electricity, or deformation, easily causing problems such as film wrinkles, film jamming, and bag misalignment, affecting the normal operation of the packaging process. To address the above technical issues, the film production line control system also includes a blower mechanism, which is installed on the edge of the third conveyor belt 43 and used to blow air onto the packaging film. The blower mechanism continuously outputs airflow to the packaging film area, using the sweeping and isolating effect of the airflow to maintain a separation gap between the packaging film and the edge of the third conveyor belt 43, preventing the packaging film from sticking to or adhering to the frame structure.
[0079] In one technical solution, the film production line control system may further include: a packaging film unwinding mechanism, which includes: an unwinding shaft and a tension adjusting component. Tension adjusting components are respectively provided at both ends of the unwinding shaft. The tension adjusting components control the unwinding resistance of the packaging film by adjusting the damping force on the unwinding shaft, thereby adjusting the tension of the packaging film during the conveying process.
[0080] In the above context, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature.
[0081] In the description of the embodiments of this application, unless otherwise stated, " / " means "or". For example, A / B can mean A or B. "And / or" in this article is merely a description of the relationship between related objects, indicating that there can be three relationships. For example, A and / or B can mean: A exists alone, A and B exist simultaneously, and B exists alone.
[0082] It should be noted that, for ease of description, only the parts relevant to the application are shown in the accompanying drawings. Unless otherwise specified, the embodiments and features described in this application can be combined with each other.
[0083] The above description is merely a preferred embodiment of this application and an explanation of the technical principles employed, and is not intended to limit this application. Various modifications and variations can be made to this application by those skilled in the art. The scope of this application is not limited to technical solutions formed by specific combinations of the above-described technical features, but should also cover other technical solutions formed by arbitrary combinations of the above-described technical features or their equivalents without departing from the above-described application concept. For example, technical solutions formed by substituting the above features with (but not limited to) technical features with similar functions disclosed in this application.
Claims
1. A thin film production line control system, characterized by, The film production line control system includes: a belt tensioning mechanism (10), a tipping mechanism (20), a packaging mechanism (30), a conveyor belt (40), and a control unit (50); the belt tensioning mechanism (10), the tipping mechanism (20), and the packaging mechanism (30) are arranged along the conveying direction of the film on the conveyor belt (40); The strapping mechanism (10) bundles multiple films cut by the slicing machine to form film bundles (70). The tipping mechanism (20) tipped over the film bundle (70) and transported the tipped film bundle (70) to the packaging mechanism (30). The packaging mechanism (30) packages the overturned film bundle (70) to form a finished package; The control unit (50) is electrically connected to the belt-gathering mechanism (10), the tipping mechanism (20), the packaging mechanism (30), and the conveyor belt (40) to control the belt-gathering mechanism (10), the tipping mechanism (20), the packaging mechanism (30), and the conveyor belt (40) to operate according to a preset pattern as needed.
2. The thin film production line control system as described in claim 1, characterized in that, The strapping mechanism (10) includes: a strapping body (11) and a strapping sensor (12); The strapping body (11) and the strapping sensor (12) are both located on the film conveying path. The strapping sensor (12) is used to detect the first position information of the film on the conveyor belt (40) and transmit the first position information to the control unit (50). Based on the first position information, the control unit (50) controls the strapping body (11) to bundle multiple films.
3. The thin film production line control system as described in claim 2, characterized in that, The strap body (11) includes: a strap component, a clamping component (111), and a pressing component (112). The clamping component (111) clamps the multiple films along the width direction of the film; The pressing component (112) presses down the multiple films after they are clamped; The strapping component bundles the multiple films after they have been pressed down.
4. The thin film production line control system as described in claim 1, characterized in that, The conveyor belt (40) includes: a first conveyor belt (41), a second conveyor belt (42), and a third conveyor belt (43): The strapping mechanism (10) is located on the path of the first conveyor belt (41) conveying the film, the flipping mechanism (20) is located on the path of the second conveyor belt (42) conveying the film, and the packaging mechanism (30) is located on the path of the third conveyor belt (43) conveying the film. The extension direction of the first conveyor belt (41) is consistent with the extension direction of the second conveyor belt (42), and the extension direction of the third conveyor belt (43) is perpendicular to the extension direction of the second conveyor belt (42). The flipping mechanism (20) is used to flip the film bundle (70) from the second conveyor belt (42) onto the third conveyor belt (43).
5. The thin film production line control system as described in claim 4, characterized in that, The tipping mechanism (20) includes: a push-down mechanism (21) and a push-down sensor (22); The pushing mechanism (21) and the pushing sensor (22) are both located on the film conveying path. The pushing sensor (22) is used to detect the second position information of the film bundle (70) on the second conveyor belt (42) and transmit the second position information to the control unit (50). Based on the second position information, the control unit (50) controls the pushing mechanism (21) to flip the film bundle (70) from the second conveyor belt (42) onto the third conveyor belt (43).
6. The thin film production line control system as described in claim 5, characterized in that, The pushing mechanism (21) includes: a support (211) and a pushing component (212); The first end of the vertically arranged support member (211) is disposed on the edge of the second conveyor belt (42), and the second end of the support member (211) is connected to the fixed end of the pusher (212). The pushing end of the pusher (212) is directed toward the third conveyor belt (43) to push the film bundle (70) to flip over to the third conveyor belt (43).
7. The thin film production line control system as described in claim 1, characterized in that, The packaging mechanism (30) includes a packaging body (31) and a packaging sensor (32); both the packaging body (31) and the packaging sensor (32) are located on the film conveying path. The packaging sensor (32) is used to detect the third position information of the film bundle (70) on the conveyor belt (40). Based on the third position information, the control unit (50) controls the packaging mechanism (30) to package the film bundle (70).
8. The thin film production line control system as described in claim 7, characterized in that, The packaging body (31) includes: a bagging component and a sealing assembly; The bagging component is used to cover the packaging film around the outer periphery of the film bundle (70), and the sealing and cutting component is used to seal and cut the covered packaging film to form a finished packaged product that wraps the film bundle (70).
9. The thin film production line control system as described in claim 7, characterized in that, The packaging sensor (32) includes: a first packaging sensor and a second packaging sensor; The first packaging sensor is positioned upstream of the bagging component in the conveying direction of the film bundle (70) and is used to detect the first passage information of the film bundle (70); the second packaging sensor is positioned downstream of the sealing and cutting component in the conveying direction of the film bundle (70) and is used to detect the second passage information of the film bundle (70). The control unit (50) controls the time when the film bundle (70) enters the packaging film based on the first passage information, and controls the sealing and cutting assembly to seal and cut the packaging film based on the second passage information.
10. The thin film production line control system as described in claim 8, characterized in that, Also includes: Door closing mechanism (60); The third conveyor belt (43) includes: a third conveyor belt one (431) and a third conveyor belt two (432) arranged in the direction of film conveying; the third conveyor belt one (431) is used to transport the overturned film bundle (70), and the third conveyor belt two (432) is provided with the closing mechanism (60) and the packaging mechanism (30) in sequence along the direction of film conveying; the closing mechanism (60) is used to block or open the transport of the film bundle (70).