Packaging bag making machine controller

By introducing feedback components such as touch screens and indicator lights, modular transmission components, and multiple heat dissipation structures into the controller of the packaging bag making machine, the problems of insufficient heat dissipation, poor human-machine interaction, and unstable installation have been solved, achieving efficient and convenient controller operation and maintenance.

CN224675660UActive Publication Date: 2026-08-25RUIAN CITIC ELECTRONIC EQUIP CO LTD
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Patent Information

Application Number
CN202521945534.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-10
Publication Date
2026-08-25
Estimated Expiration
2035-09-10

AI Technical Summary

Technical Problem

Existing packaging bag making machine controllers suffer from poor heat dissipation, unpleasant human-machine interaction, and inconvenient installation, wiring, and maintenance, which affect the efficient and stable operation of the bag making machine.

Method used

A control feedback component including a touch screen, indicator lights, control buttons, and control knobs was designed. It adopts a modular transmission component layout, combined with an auxiliary heat dissipation component including an intake fan, upper and lower heat dissipation holes, and a rear groove heat dissipation fin, and achieves stable installation through a mounting base and anti-slip pads.

Benefits of technology

It improves heat dissipation efficiency, optimizes the human-machine interaction experience, enhances installation stability and wiring convenience, reduces the failure rate, simplifies the maintenance process, and ensures the stable operation of the bag making machine.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to packing bag making machine accessory technical field, and disclose packing bag making machine controller, including control host computer, control host computer is equipped with transmission assembly, control feedback assembly and auxiliary heat abstractor, control feedback assembly includes setting in the touch screen of control host computer front end upper portion, is used for directly showing bag making parameter, equipment operating condition, supports touch operation adjustment, still include the indicator light, control button and control knob of setting in control host computer front end, the utility model discloses through the construction "intake fan + up and down heat dissipation hole + back recessed groove heat dissipation fin " multiple auxiliary heat abstractor, intake fan accelerates the air flow, and up and down heat dissipation hole forms the convection channel, and the back heat dissipation fin cooperates the high -efficient heat export of guide flow hole, solves the single problem of traditional controller heat dissipation, and the heat dissipation efficiency is greatly promoted, prolongs the life of control element, reduces the probability of failure because of high temperature, guarantees bag making machine stable operation.
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Description

Technical Field

[0001] This utility model relates to the technical field of accessories for packaging bag making machines, specifically to a controller for packaging bag making machines. Background Technology

[0002] During the operation of a packaging bag making machine, the controller, as the core control component, needs to stably process various signals and accurately regulate the equipment's operation. However, existing packaging bag making machine controllers have many shortcomings: their heat dissipation structure is simplistic, relying solely on simple ventilation holes, which is insufficient to handle the large amount of heat generated during prolonged operation, easily leading to shortened lifespan of control components and frequent malfunctions due to high temperatures; the layout of the operation and interaction components is chaotic, making it inconvenient for operators to identify and operate, resulting in a poor human-machine interface experience and affecting the efficiency of bag-making parameter adjustment; the stability of the mounting and fixing structure is poor, easily loosening after prolonged use, and the unreasonable wiring layout leads to mutual interference between different component wiring, increasing the difficulty of later maintenance. These problems restrict the efficient and stable operation of the bag making machine, necessitating a controller with optimized heat dissipation, interaction, and mounting structure. Utility Model Content

[0003] (a) Technical problems to be solved This utility model aims to solve the problems of poor heat dissipation, poor human-computer interaction, and inconvenient installation, wiring, and maintenance of existing packaging bag making machine controllers, and provides a packaging bag making machine controller that is highly efficient in heat dissipation, easy to operate, stable in installation, and easy to maintain.

[0004] (II) Technical Solution To achieve the above objectives, the present invention provides the following technical solution: a controller for a packaging bag making machine, comprising a control host, wherein the control host is equipped with a transmission component, a control feedback component, and an auxiliary heat dissipation component.

[0005] The control feedback component includes a touch screen located at the top front of the control host, which is used to intuitively display bag-making parameters and equipment operating status, and supports touch operation adjustment; it also includes indicator lights, control buttons and control knobs located at the front of the control host. The indicator lights are used to provide feedback on the equipment operating status, such as fault, standby, running, etc. The control buttons enable quick operations such as start / stop and mode switching, and the control knobs are used to finely adjust parameters such as bag-making speed and size.

[0006] The transmission component includes a control output component located on one side of the front end of the control host for outputting control signals to each actuator of the bag making machine; it also includes a control input component located on the other side of the front end of the control host for receiving signals from various sensors of the bag making machine.

[0007] The auxiliary heat dissipation components include an intake fan at the front of the control unit to accelerate the flow of air into the control unit; an upper heat dissipation hole at the top of the control unit and a lower heat dissipation hole at the bottom of the control unit to form an upper and lower air convection channel; and a back groove in the middle of the back of the control unit, in which heat dissipation fins are provided to increase the heat dissipation area. The heat dissipation fins have heat dissipation guide holes to guide airflow and quickly dissipate internal heat.

[0008] Mounting bases are fixedly connected to the middle of the rear sides of both ends of the control host. The two mounting bases are symmetrically arranged with two mounting slots at opposite ends, which facilitates the stable installation of the controller on the bag making machine by bolts and other components. Anti-slip pads are fixedly connected to both ends of the back of the control host to increase the stability after installation and to provide cushioning and shock absorption.

[0009] As a further improvement of this utility model: the air intake fans are symmetrically distributed on the lower front of the control host to accelerate the inflow of air, improve the heat dissipation efficiency in conjunction with the heat dissipation structure, and accelerate the exchange of air inside the control host with the outside air.

[0010] As a further improvement of this utility model: the indicator lights are evenly arranged along the center of the front of the control host, the control knob is located on one side of the front of the control host, and the control buttons are evenly arranged along the other side of the front of the control host, which facilitates quick identification and operation by the operator, optimizes the human-computer interaction experience, enables the operator to quickly find the corresponding operating parts, and improves operating efficiency.

[0011] As a further improvement of this utility model, the control output component and the control input component are respectively arranged on both sides of the control host and adopt a modular layout to avoid mutual interference of wiring, improve wiring convenience and later maintenance efficiency. Different types of wiring are arranged on both sides, which can be quickly distinguished and operated during maintenance.

[0012] As a further improvement of this utility model: the upper heat dissipation holes are elongated and equidistantly arranged to increase the top heat dissipation area; the lower heat dissipation holes are elongated slits and form an upper and lower air convection channel with the upper heat dissipation holes to enhance the heat dissipation effect and accelerate the heat dissipation by utilizing the principle of hot air rising and cold air sinking.

[0013] As a further improvement of this utility model: the back groove is a concave structure, the heat dissipation fins are vertically distributed in the back groove, and the heat dissipation guide holes penetrate the heat dissipation fins and are arranged in an array. By utilizing the flow of air between the back groove and the heat dissipation fins, the internal heat is quickly dissipated, the contact area between heat and air is increased, and the heat dissipation efficiency is improved.

[0014] As a further improvement of this utility model, the anti-slip mat is made of rubber, and its back is provided with multiple toothed anti-slip grooves in an array, which increases the stability of the control host after it is installed with the mounting components through the mounting groove on the mounting base, and at the same time plays a role in buffering and shock absorption, reducing the impact of the bag making machine's operating vibration on the controller's mounting structure.

[0015] Compared with the prior art, the beneficial effects of this utility model are: 1. In this utility model, by constructing a multi-auxiliary heat dissipation component consisting of "air intake fan + upper and lower heat dissipation holes + rear groove heat dissipation fins", the air intake fan accelerates the airflow, the upper and lower heat dissipation holes form a convection channel, and the rear heat dissipation fins work with the guide holes to efficiently dissipate heat, solving the problem of single heat dissipation in traditional controllers, greatly improving heat dissipation efficiency, extending the life of control components, reducing the probability of failure caused by high temperature, and ensuring the stable operation of the bag making machine.

[0016] 2. In this utility model, by optimizing the layout of the control feedback components (touch screen, indicator lights, buttons, and knobs are distributed in an orderly manner) and modularizing the transmission components on both sides, operators can quickly identify and operate the system, improving the human-machine interaction experience and parameter adjustment efficiency. At the same time, it avoids wiring interference, simplifies the later maintenance process, and helps the bag making machine achieve efficient production and operation.

[0017] 3. In this utility model, the structure of mounting base with mounting groove and anti-slip pad on the back enhances the installation stability of the controller. The anti-slip pad buffers and reduces shock, reducing the impact of vibration during bag making machine operation, ensuring long-term reliable fixation of the controller, and further improving the overall performance. Attached Figure Description

[0018] Figure 1 The overall three-dimensional structure of this utility model Figure 1 ; Figure 2 The overall three-dimensional structure of this utility model Figure 2 ; Figure 3 The overall three-dimensional structure of this utility model Figure 3 ; Figure 4 The overall three-dimensional structure of this utility model Figure 4 .

[0019] In the diagram: 1. Control unit; 2. Intake fan; 3. Indicator light; 4. Touch screen; 5. Control button; 6. Control knob; 7. Control output component; 8. Control input component; 9. Mounting base; 10. Mounting slot; 11. Upper heat dissipation hole; 12. Lower heat dissipation hole; 13. Back groove; 14. Heat dissipation fins; 15. Heat dissipation guide hole; 16. Anti-slip pad. Detailed Implementation

[0020] The embodiments of this utility model will be described in further detail below with reference to the accompanying drawings and examples. The following examples are for illustrative purposes only and should not be construed as limiting the scope of this utility model.

[0021] In the description of this utility model, unless otherwise stated, "a plurality of" means two or more; the terms "upper," "lower," "left," "right," "inner," "outer," "front end," "rear end," "head," "tail," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this utility model. In addition, the terms "first," "second," "third," etc., are used for descriptive purposes only and should not be construed as indicating or implying relative importance.

[0022] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "connected" and "linked" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.

[0023] Please see Figures 1-4 In this embodiment of the utility model, the packaging bag making machine controller includes a control host 1, which is equipped with a transmission component, a control feedback component and an auxiliary heat dissipation component.

[0024] The control feedback component includes a touch screen 4 located at the upper front of the control host 1, which is used to intuitively display bag-making parameters and equipment operating status, and supports touch operation adjustment; it also includes an indicator light 3, a control button 5, and a control knob 6 located at the front of the control host 1. The indicator light 3 is used to provide feedback on the equipment operating status, such as fault, standby, and running. The control button 5 enables quick operations such as start / stop and mode switching. The control knob 6 is used to finely adjust parameters such as bag-making speed and size.

[0025] The transmission component includes a control output component 7 located on one side of the front end of the control host 1, which is used to output control signals to each execution component of the bag making machine; it also includes a control input component 8 located on the other side of the front end of the control host 1, which is used to receive signals from various sensors of the bag making machine.

[0026] The auxiliary heat dissipation components include an intake fan 2 located at the front end of the control host 1 to accelerate the flow of air into the control host 1; an upper heat dissipation hole 11 located at the top of the control host 1 and a lower heat dissipation hole 12 located at the bottom of the control host 1 to form an upper and lower air convection channel; and a back groove 13 located in the middle of the back of the control host 1, in which heat dissipation fins 14 are provided to increase the heat dissipation area, and heat dissipation guide holes 15 are opened on the heat dissipation fins 14 to guide air flow and quickly dissipate internal heat.

[0027] The control host 1 has mounting bases 9 fixedly connected to the middle of the rear side at both ends. The two mounting bases 9 are symmetrically arranged with two mounting slots 10 at one end, which facilitates the stable installation of the controller on the bag making machine by bolts and other components. The control host 1 has anti-slip pads 16 fixedly connected to both ends of the back, which increases the stability after installation and also plays a role in buffering and shock absorption.

[0028] The intake fans 2 are symmetrically distributed on the lower front of the control host 1 to accelerate the inflow of air, improve the heat dissipation efficiency in conjunction with the heat dissipation structure, and accelerate the exchange of air inside the control host 1 with the outside air.

[0029] Indicator lights 3 are evenly arranged along the center of the front of the control host 1, control knobs 6 are located on one side of the front of the control host 1, and control buttons 5 are evenly arranged along the other side of the front of the control host 1. This facilitates quick identification and operation by operators, optimizes the human-machine interaction experience, enables operators to quickly find the corresponding operating parts, and improves operating efficiency.

[0030] The control output component 7 and the control input component 8 are respectively located on both sides of the control host 1 and adopt a modular layout to avoid mutual interference of wiring, improve wiring convenience and later maintenance efficiency. Different types of wiring are arranged on both sides, which can be quickly distinguished and operated during maintenance.

[0031] The upper heat dissipation holes 11 are elongated and equidistantly arranged to increase the top heat dissipation area; the lower heat dissipation holes 12 are elongated slits and form an upper and lower air convection channel with the upper heat dissipation holes 11 to enhance the heat dissipation effect. By utilizing the principle of hot air rising and cold air sinking, heat is dissipated more quickly.

[0032] The back groove 13 has a concave structure, and the heat dissipation fins 14 are vertically distributed in the back groove 13. The heat dissipation guide holes 15 penetrate the heat dissipation fins 14 and are arranged in an array. By utilizing the air flow between the back groove 13 and the heat dissipation fins 14, the internal heat is quickly dissipated, the contact area between heat and air is increased, and the heat dissipation efficiency is improved.

[0033] The anti-slip mat 16 is made of rubber, and its back is provided with multiple toothed anti-slip grooves in an array. This increases the stability of the control host 1 after it is installed in conjunction with the mounting components through the mounting slot 10 on the mounting base 9. At the same time, it plays a role in buffering and shock absorption, reducing the impact of the bag making machine's vibration on the controller's mounting structure.

[0034] The working principle of this utility model is as follows: Using mounting components (such as bolts), the control host 1 is fixed to the corresponding installation position on the packaging bag making machine by passing through the mounting groove 10 on the mounting base 9. The anti-slip and shock-absorbing characteristics of the anti-slip pad 16 ensure stable installation. During wiring, the wiring of the bag making machine's execution components is connected to the corresponding control output component 7, and the wiring of various sensors is connected to the corresponding control input component 8. Because both are modularly distributed on both sides of the control host 1, wiring tangling and interference can be avoided. During operation, bag making parameters (such as bag length, speed, temperature, etc.) and equipment operating status (such as motor operation, heating status, etc.) are viewed through the touch screen 4. Start / stop and mode switching (such as manual / automatic mode) are performed using the control buttons 5. The bag making speed, size, and other parameters are finely adjusted using the control knob 6. The indicator light 3 provides real-time feedback on the equipment operating status (e.g., green indicates normal operation, red indicates a fault alarm). During heat dissipation operation, the air intake fan 2 accelerates the flow of outside air into the control host 1, and the hot air is discharged through the upper heat dissipation hole 11. The heat dissipation fins 14 on the back of the control host 1, together with the heat dissipation guide holes 15, dissipate internal heat and work in conjunction with the vertical airflow to build an efficient heat dissipation system, ensuring stable operation of the control host 1 in a suitable temperature environment. During later maintenance, the components can be easily disassembled and installed for controller inspection. The clear wiring layout allows for quick troubleshooting and replacement of faulty wiring. If cleaning of the heat dissipation structure is required, dust can be cleaned from the intake fan 2, upper heat dissipation holes 11, and lower heat dissipation holes 12, as well as the accumulated dust on the heat dissipation fins 14 in the back groove 13, ensuring effective heat dissipation. The overall design optimizes human-machine interaction through a reasonable layout of the control feedback components. Modular wiring of the transmission components improves wiring and maintenance convenience. The multiple heat dissipation structures of the auxiliary heat dissipation components (intake fan 2, upper and lower heat dissipation holes, back groove 13, and heat dissipation fins 14) construct an efficient heat dissipation system. Combined with a stable installation structure and anti-slip shock-absorbing design, this achieves efficient heat dissipation, convenient operation, and stable installation for the packaging bag making machine controller, ensuring continuous and stable operation of the bag making machine.

[0035] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.

Claims

1. A controller for a packaging bag making machine, including a control host (1), wherein the control host (1) is equipped with a transmission component, a control feedback component and an auxiliary heat dissipation component; Its features are: The control feedback component includes a touch screen (4) located on the upper front of the control host (1), and the control feedback component also includes an indicator light (3), a control button (5) and a control knob (6) located on the front of the control host (1). The transmission component includes a control output component (7) disposed on one side of the front end of the control host (1), and the transmission component also includes a control input component (8) disposed on the other side of the front end of the control host (1). The auxiliary heat dissipation component includes an intake fan (2) provided at the front end of the control host (1), an upper heat dissipation hole (11) provided at the top of the control host (1) and a lower heat dissipation hole (12) provided at the bottom of the control host (1), and a back groove (13) opened in the middle of the back of the control host (1). The back groove (13) is provided with heat dissipation fins (14), and heat dissipation guide holes (15) are opened on the heat dissipation fins (14). The control host (1) has mounting bases (9) fixedly connected to the middle of the rear side of both ends. The two mounting bases (9) are symmetrically arranged with two mounting slots (10) at one end away from each other. The control host (1) has anti-slip pads (16) fixedly connected to both ends of the back.

2. The controller for a packaging bag making machine according to claim 1, characterized in that: The intake fan (2) is symmetrically distributed on the lower front of the control host (1).

3. The controller for a packaging bag making machine according to claim 1, characterized in that: The indicator lights (3) are evenly arranged along the center of the front of the control host (1), the control knob (6) is located on one side of the front of the control host (1), and the control buttons (5) are evenly arranged along the other side of the front of the control host (1).

4. The controller for a packaging bag making machine according to claim 1, characterized in that: The control output component (7) and the control input component (8) are respectively located on both sides of the control host (1) and adopt a modular layout.

5. The controller for a packaging bag making machine according to claim 1, characterized in that: The upper heat dissipation holes (11) are elongated and equidistant, and the lower heat dissipation holes (12) are elongated slits, forming an upper and lower air convection channel with the upper heat dissipation holes (11).

6. The controller for a packaging bag making machine according to claim 1, characterized in that: The back groove (13) is a concave structure, the heat dissipation fins (14) are vertically distributed in the back groove (13), and the heat dissipation guide holes (15) penetrate the heat dissipation fins (14) and are arranged in an array.

7. The controller for a packaging bag making machine according to claim 1, characterized in that: The anti-slip mat (16) is made of rubber and has multiple toothed anti-slip grooves arranged in an array on its back.