Pneumatic cylinder pillow type automatic packaging machine
Patent Information
- Application Number
- CN202522199786.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-17
- Publication Date
- 2026-09-25
- Estimated Expiration
- 2035-10-17
AI Technical Summary
然而,现有的包装流程存在显著缺陷:上料环节主要依赖于人工操作
[0011]本实用新型的有益效果是:通过设置安装架、底板、推料组件和放料板,操作人员可直接将若干物料放置在放料板上,由于放料板呈倾斜状态设置,物料在其重力作用将滑入推板上,再由推料组件中的驱动结构驱使推板将物料推进皮带输送机的皮带上端面,通过皮带输送机进入自动包装机进行包装工序;该结构的设置避免传统的人工手动逐一地将打气筒放置在包装机的进料传送带上,降低操作人员的劳动强度,实现轻松上料,使得单个操作人员能够轻松看管多台设备,提高工作效率的同时解决人力资源。
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Figure CN224797316U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of air pump packaging technology, and in particular to an automatic pillow-type air pump packaging machine. Background Technology
[0002] Pillow-type packaging machines are automatic continuous shrink packaging equipment that uses ordinary electric heating wires. They are characterized by rapid heating, good stability, and low maintenance costs. The shrinking temperature and motor transmission speed are stable and adjustable. Pillow-type packaging machines are suitable for various specifications of continuous packaging for both food and non-food products. They can be used not only for packaging unlabeled materials but also for high-speed packaging of roll materials pre-printed with trademarks.
[0003] In the production of air pumps (used to inflate balloons), the aforementioned pillow-type packaging machine is commonly used for finished product packaging. However, the existing packaging process has significant drawbacks: the feeding stage relies heavily on manual operation. Operators typically need to manually place each air pump onto the packaging machine's feed conveyor belt one by one. This requires repeated actions, resulting in high labor intensity, fatigue, and an increased risk of errors due to fatigue. Furthermore, operators can usually only oversee one machine at a time, leading to low overall work efficiency. Utility Model Content
[0004] To solve the above-mentioned technical problems, this utility model provides an automatic packaging machine with an air pump pillow type. The technical solution adopted by this utility model is as follows: An automatic packaging machine using an air pump pillow type, comprising: A belt conveyor, the front end of which is connected to an automatic packaging machine; The mounting frame is located on one side of the rear end of the belt conveyor, and a base plate is provided above the mounting frame, with mounting holes provided on the base plate; The material pushing assembly includes a driving structure, a push plate, a fixed plate, and a support plate. The support plate is fixedly mounted on the upper surface of the base plate. The push plate is slidably connected to the support plate and to the fixed plate. The two end faces of the fixed plate are fixedly connected to the side walls of the mounting holes. The driving structure is located below the base plate and is fixedly connected to the mounting frame for driving the push plate to perform up-and-down reciprocating motion. The feeding plate is fixedly connected to the side end face of the support plate and is set in an inclined state.
[0005] Furthermore, the push plate includes a first push plate, a second push plate, and a third push plate; the support plate includes a first support plate and a second support plate; and the fixing plate includes a first fixing plate and a second fixing plate.
[0006] Furthermore, the first push plate is slidably disposed between the first support plate and the first fixed plate, the second push plate is slidably disposed between the first fixed plate and the second fixed plate, the third push plate is slidably disposed between the second fixed plate and the second support plate, the lower side of the feeding plate is fixedly connected to the outer end face of the first support plate, the bottom edge of the upper inclined surface of the feeding plate is set to coincide with the top edge of the upper upper surface of the first support plate, the top of the second support plate is connected to the belt of the belt conveyor, the second support plate is set in an inclined state on the upper upper surface of the base plate, and the first support plate and the second support plate are set parallel to each other.
[0007] Furthermore, a mounting plate is provided below the base plate, the mounting plate is fixedly connected to the mounting frame, and a mounting base is fixedly provided on the upper surface of the mounting plate.
[0008] Furthermore, the drive structure includes a motor, a first pulley, a synchronous belt, a second pulley, a connecting shaft, a drive wheel, a connecting rod, a connecting seat, and a drive plate. The lower end face of the drive plate is fixedly connected to the upper end face of the connecting seat. The upper end of the connecting rod is hinged to the connecting seat, and the lower end of the connecting rod is eccentrically positioned with the drive wheel. The drive wheel is fixedly connected to the connecting shaft, and the connecting shaft is rotatably connected to the mounting seat. The second pulley is connected to the connecting shaft. One end of the synchronous belt is connected to the second pulley, and the other end of the synchronous belt is connected to the first pulley. The first pulley is fixedly connected to the output end of the motor, and the motor is fixedly connected to the mounting plate.
[0009] Furthermore, a first push rod, a second push rod, and a third push rod are fixedly provided at both ends of the upper surface of the drive plate. The upper surface of the third push rod is fixedly connected to the lower surface of the third push plate, the upper surface of the second push rod is fixedly connected to the lower surface of the second push plate, and the upper surface of the first push rod is fixedly connected to the lower surface of the first push plate.
[0010] Furthermore, a first baffle is fixedly provided on both sides of the upper surface of the base plate, and a second baffle is fixedly provided between the two first baffles, and the second baffle is fixedly connected to the feeding plate.
[0011] The beneficial effects of this utility model are as follows: By setting up an installation frame, a base plate, a pushing component, and a feeding plate, the operator can directly place several materials on the feeding plate. Since the feeding plate is set in an inclined state, the materials will slide into the pushing plate under their own gravity. Then, the driving structure in the pushing component drives the pushing plate to push the materials onto the upper end of the belt conveyor. The materials then enter the automatic packaging machine for packaging through the belt conveyor. This structure avoids the traditional manual placement of air pumps one by one on the feeding conveyor belt of the packaging machine, reduces the labor intensity of the operator, and enables easy material loading. This allows a single operator to easily manage multiple machines, improving work efficiency while solving human resource issues. Attached Figure Description
[0012] Figure 1 This is a three-dimensional structural diagram of the present invention.
[0013] Figure 2 This is a three-dimensional structural schematic diagram of the present invention (from another angle).
[0014] Figure 3 This is a utility model Figure 2 Enlarged view of point A in the middle.
[0015] Figure 4 This is a rear view of the present invention.
[0016] Figure 5 This is a utility model Figure 4 Enlarged view of section B in the middle.
[0017] In the picture: 1. Belt conveyor; 2. Automatic packaging machine; 3. Mounting frame; 4. Base plate; 5. Mounting hole; 6. Pushing assembly; 61. Drive structure; 610. Motor; 611. First pulley; 612. Synchronous belt; 613. Second pulley; 614. Connecting shaft; 615. Drive wheel; 616. Connecting rod; 617. Connecting seat; 618. Drive plate; 62. Push plate; 620. First push plate; 621. Second push plate; 622. Third push plate; 63. Fixing plate; 630. First fixing plate; 631. Second fixing plate; 64. Support plate; 640. First support plate; 641. Second support plate; 7. Discharge plate; 8. Mounting plate; 9. Mounting seat; 10. First push rod; 11. Second push rod; 12. Third push rod; 13. First baffle; 14. Second baffle; 15. Air pump. Detailed Implementation
[0018] To make the objectives, technical solutions, and advantages of this utility model clearer, the utility model will now be described in further detail with reference to the accompanying drawings and the following embodiments, so that the public can better understand the implementation method of this utility model. The specific implementation scheme of this utility model is as follows: An automatic packaging machine for air pump pillow type includes a belt conveyor 1. The front end of the belt conveyor 1 is connected to an automatic packaging machine 2. A mounting frame 3 is provided on one side of the rear end of the belt conveyor 1. A base plate 4 is provided above the mounting frame 3. The base plate 4 has mounting holes 5. A pushing component 6 is connected to the mounting holes 5. The pushing component 6 includes a drive structure 61, a push plate 62, a fixed plate 63, and a support plate 64. The support plate 64 is fixedly mounted on the upper end face of the base plate 4. The push plate 62 is slidably connected to the support plate 64 and the fixed plate 63. The two end faces of the fixed plate 63 are fixedly connected to the side walls of the mounting holes 5. The drive structure 61 is located below the base plate 4 and fixedly connected to the mounting frame 3. It is used to drive the push plate 62 to perform up-and-down reciprocating motion. The support plate 61 is fixedly mounted on the upper end face of the base plate 4. A feeding plate 7 is fixedly connected to the side end face of 64, and the feeding plate 7 is set in an inclined state. By setting up the mounting frame 3, the base plate 4, the pushing component 6 and the feeding plate 7, the operator can directly place several materials on the feeding plate 7. Since the feeding plate 7 is set in an inclined state, the materials will slide into the pushing plate 62 under the action of gravity. Then, the driving structure 61 in the pushing component 6 drives the pushing plate 62 to push the materials into the upper end face of the belt of the belt conveyor 1. The materials enter the automatic packaging machine 2 through the belt conveyor 1 for the packaging process. The setting of this structure avoids the traditional manual placement of the air pump 15 one by one on the feeding conveyor belt of the packaging machine, reduces the labor intensity of the operator, realizes easy feeding, and allows a single operator to easily manage multiple machines, improving work efficiency while solving human resource problems.
[0019] It should be noted that the push plate 62 includes a first push plate 620, a second push plate 621, and a third push plate 622; the support plate 64 includes a first support plate 640 and a second support plate 641; the fixing plate 63 includes a first fixing plate 630 and a second fixing plate 631; the first support plate 640, the first fixing plate 630, the second fixing plate 631, and the second support plate 641 are fixedly arranged in order from low to high to form a stepped material conveying path; the first push plate 620, the second push plate 621, and the third push plate 622 are slidably arranged between the corresponding levels.
[0020] Furthermore, the first push plate 620 is slidably disposed between the first support plate 640 and the first fixed plate 630, the second push plate 621 is slidably disposed between the first fixed plate 630 and the second fixed plate 631, and the third push plate 622 is slidably disposed between the second fixed plate 631 and the second support plate 641. The side of the lower end of the discharge plate 7 is fixedly connected to the outer end face of the first support plate 640, and the bottom edge of the upper inclined surface of the discharge plate 7 is set to coincide with the top edge of the upper end face of the first support plate 640. The top end of the second support plate 641 is connected to the belt of the belt conveyor 1, and the second support plate 641 is set in an inclined state on the upper end face of the base plate 4. The first support plate 640 and the second support plate 641 are set parallel to each other. The first push plate 620, the second push plate 621, the third push plate 622, the first fixed plate 630, and the second fixed plate 631 are all set parallel to the second support plate 641. This structure is mainly used to continuously convey materials to the belt conveyor 1.
[0021] It should be noted that a mounting plate 8 is provided below the base plate 4, the mounting plate 8 is fixedly connected to the mounting bracket 3, and a mounting seat 9 is fixedly provided on the upper surface of the mounting plate 8.
[0022] It should be noted that the drive structure 61 includes a motor 610, a first pulley 611, a synchronous belt 612, a second pulley 613, a connecting shaft 614, a drive wheel 615, a connecting rod 616, a connecting seat 617, and a drive plate 618. The lower end face of the drive plate 618 is fixedly connected to the upper end face of the connecting seat 617. The upper end of the connecting rod 616 is hinged to the connecting seat 617. The lower end of the connecting rod 616 is eccentrically positioned with respect to the drive wheel 615. A connecting shaft 614 is fixedly connected to the mounting base 9. The second pulley 613 is connected to the connecting shaft 614. One end of the synchronous belt 612 is engaged with the second pulley 613, and the other end of the synchronous belt 612 is engaged with the first pulley 611. The first pulley 611 is fixedly connected to the output end of the motor 610, and the motor 610 is fixedly connected to the mounting plate 8. This structure is mainly used to drive the pusher assembly 6 to perform up-and-down reciprocating motion.
[0023] Furthermore, a first push rod 10, a second push rod 11, and a third push rod 12 are fixedly provided at both ends of the upper surface of the drive plate 618. The upper surface of the third push rod 12 is fixedly connected to the lower surface of the third push plate 622, the upper surface of the second push rod 11 is fixedly connected to the lower surface of the second push plate 621, and the upper surface of the first push rod 10 is fixedly connected to the lower surface of the first push plate 620.
[0024] In use, the motor 610 is started, and the output of the motor 610 drives the first pulley 611 to rotate. Power is transmitted to the second pulley 613 via the synchronous belt 612. The rotation of the second pulley 613 drives the connecting shaft 614 to rotate, which in turn drives the drive wheel 615 to rotate. The rotation of the drive wheel 615 drives the connecting rod 616 to perform circular motion. The connecting seat 617, hinged to the connecting rod 616, begins to reciprocate up and down. The drive plate 618 reciprocates up and down along with the connecting seat 617. The movement of the drive plate 618 simultaneously drives the first push rod 10, the second push rod 11, and the third push rod 12 to reciprocate up and down. The movement of the first push rod 10 drives the first push plate 620 to reciprocate up and down along the first fixed plate 630. The movement of the second push rod 11 drives the second push plate 621 to reciprocate up and down along the second fixed plate 631. The movement of the third push rod 12 drives the third push plate 616 to reciprocate up and down along the second fixed plate 630. Plate 622 reciprocates up and down along the second support plate 641; when the drive wheel 615 rotates and moves the connecting rod 616 to the lowest point, the upper surface of the first push plate 620 is flush with the upper surface of the first support plate 640, the upper surface of the second push plate 621 is flush with the upper surface of the first fixed plate 630, and the upper surface of the third push plate 622 is flush with the upper surface of the second fixed plate 631; when the drive wheel 615 rotates and moves the connecting rod 616 to the highest point, the upper surface of the first push plate 620... The upper end face of the first fixed plate 630 is flush with the upper end face of the second push plate 621, the upper end face of the second fixed plate 631 is flush with the upper end face of the third push plate 622, and the upper end face of the second support plate 641 is flush with the upper end face of the third support plate 641. During this process, the material will pass through the first support plate 640, the first push plate 620, the first fixed plate 631, the second push plate 621, the second fixed plate 631, and the third push plate 622, and finally the third push plate 622 will push the material onto the belt conveyor 1.
[0025] It should be noted that a first baffle 13 is fixedly installed on both sides of the upper end face of the base plate 4, and a second baffle 14 is fixedly installed between the two first baffles 13. The second baffle 14 is fixedly connected to the feeding plate 7. The first baffle 13 is mainly set to prevent materials from falling from both sides of the feeding plate 7, and the second baffle 14 is set to provide stable support for the feeding plate 7.
[0026] The working principle and process of this utility model are as follows: In the initial state, the upper surface of the first push plate 620 is flush with the upper surface of the first support plate 640, the upper surface of the second push plate 621 is flush with the upper surface of the first fixed plate 630, and the upper surface of the third push plate 622 is flush with the upper surface of the second fixed plate 631. Several pieces of material (air pump) are placed on the discharge plate 7. The material will slide down to the upper surface of the first push plate 620 under its own gravity. The motor 610 is started, and the output of the motor 610 drives the first pulley 611 to rotate. Power is transmitted to the second pulley 613 through the synchronous belt 612. The rotation of the second pulley 613 drives the rotation of the connecting shaft 614, which in turn drives the rotation of the drive wheel 615. The rotation of 615 will drive the connecting rod 616 to perform circular motion, and the connecting seat 617, which is hinged to the connecting rod 616, will begin to perform up-and-down reciprocating motion. The drive plate 618 will also perform up-and-down reciprocating motion along with the connecting seat 617. The movement of the drive plate 618 will simultaneously drive the first push rod 10, the second push rod 11, and the third push rod 12 to perform up-and-down reciprocating motion. The movement of the first push rod 10 will drive the first push plate 620 to perform up-and-down reciprocating motion along the first fixed plate 630. The movement of the second push rod 11 will drive the second push plate 621 to perform up-and-down reciprocating motion along the second fixed plate 631. The movement of the third push rod 12 will drive the third push plate 622 to perform up-and-down reciprocating motion along the second support plate 641. Material is present on the upper surfaces of the first push plate 620, the second push plate 621, and the third push plate 622. The drive plate 618 is lifted, simultaneously driving the first push plate 620, the second push plate 621, and the third push plate 622 upwards. When the upper surface of the first push plate 620 is flush with the upper surface of the first fixed plate 630, the upper surface of the second push plate 621 is flush with the upper surface of the second fixed plate 631, and the upper surface of the third push plate 622 is flush with the upper surface of the second support plate 641, the material on the upper surface of the first push plate 620 will slide to the upper surface of the first fixed plate 630, the material on the upper surface of the second push plate 621 will slide to the upper surface of the second fixed plate 631, and the material on the upper surface of the third push plate 622 will slide to the upper surface of the third push plate 622. The material will be conveyed above the belt conveyor; the drive plate 618 descends, simultaneously driving the first push plate 620, the second push plate 621, and the third push plate 622 to move downwards. When the upper surface of the first push plate 620 is flush with the upper surface of the first support plate 641, the upper surface of the second push plate 621 is flush with the upper surface of the first fixed plate 630, and the upper surface of the third push plate 622 is flush with the upper surface of the second fixed plate 631; the material stacked on the upper surface of the first support plate 641 will slide to the upper surface of the first push plate 620, the material on the upper surface of the first fixed plate 630 will slide to the upper surface of the second push plate 621, and the material on the upper surface of the second fixed plate 631 will slide to the upper surface of the third push plate 622.
[0027] In the description of this utility model, it should be understood that the terms "center," "upper," "lower," "left," "right," "front," "rear," "lower left," "upper right," "outer," "clockwise," and "counterclockwise," etc., indicating the orientation or positional relationship, are 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 limiting the scope of protection of this utility model. Furthermore, the terms "first," "second," and "third" are used for descriptive purposes only and should not be construed as indicating or implying relative importance. Although this utility model has been described according to a limited number of embodiments, those skilled in the art should understand from the above description that other embodiments can be conceived within the scope of this utility model described herein.
Claims
1. An automatic packaging machine using an air pump pillow, characterized in that, include: A belt conveyor (1), the front end of which is connected to an automatic packaging machine (2); Mounting bracket (3) is provided on one side of the rear end of the belt conveyor (1). A base plate (4) is provided above the mounting bracket (3), and the base plate (4) has mounting holes (5). The pusher assembly (6) includes a drive structure (61), a pusher plate (62), a fixing plate (63), and a support plate (64). The support plate (64) is fixedly mounted on the upper surface of the base plate (4). The pusher plate (62) is slidably connected to the support plate (64) and slidably connected to the fixing plate (63). The two end faces of the fixing plate (63) are fixedly connected to the side walls of the mounting holes (5). The drive structure (61) is located below the base plate (4) and is fixedly connected to the mounting bracket (3) for driving the pusher plate (62) to move up and down reciprocally. The feeding plate (7) is fixedly connected to the side end face of the support plate (64), and the feeding plate (7) is set in an inclined state.
2. The automatic packaging machine for pillow-type air pumps according to claim 1, characterized in that: The push plate (62) includes a first push plate (620), a second push plate (621), and a third push plate (622); the support plate (64) includes a first support plate (640) and a second support plate (641); the fixing plate (63) includes a first fixing plate (630) and a second fixing plate (631).
3. The automatic packaging machine for pillow-type air pumps according to claim 2, characterized in that: The first push plate (620) is slidably disposed between the first support plate (640) and the first fixed plate (630), the second push plate (621) is slidably disposed between the first fixed plate (630) and the second fixed plate (631), the third push plate (622) is slidably disposed between the second fixed plate (631) and the second support plate (641), the side of the lower end of the feeding plate (7) is fixedly connected to the outer end face of the first support plate (640), the bottom edge of the upper inclined surface of the feeding plate (7) is set in a state of overlap with the top edge of the upper end face of the first support plate (640), the top of the second support plate (641) is connected to the belt of the belt conveyor (1), the second support plate (641) is set in an inclined state on the upper end face of the bottom plate (4), and the first support plate (640) and the second support plate (641) are set in parallel.
4. The automatic packaging machine for pillow-type air pumps according to claim 1, characterized in that: An mounting plate (8) is provided below the base plate (4). The mounting plate (8) is fixedly connected to the mounting frame (3). A mounting base (9) is fixedly provided on the upper surface of the mounting plate (8).
5. The automatic air pump pillow-type packaging machine according to claim 4, characterized in that: The drive structure (61) includes a motor (610), a first pulley (611), a synchronous belt (612), a second pulley (613), a connecting shaft (614), a drive wheel (615), a connecting rod (616), a connecting seat (617), and a drive plate (618). The lower end face of the drive plate (618) is fixedly connected to the upper end face of the connecting seat (617). The upper end of the connecting rod (616) is hinged to the connecting seat (617), and the lower end of the connecting rod (616) is offset from the drive wheel (615). The drive wheel (615) is fixedly connected to the connecting shaft (614), the connecting shaft (614) is rotatably connected to the mounting base (9), the second pulley (613) is connected to the connecting shaft (614), one end of the synchronous belt (612) is connected to the second pulley (613), the other end of the synchronous belt (612) is connected to the first pulley (611), the first pulley (611) is fixedly connected to the output end of the motor (610), and the motor (610) is fixedly connected to the mounting plate (8).
6. The automatic packaging machine for pillow-type air pumps according to claim 5, characterized in that: The upper end face of the drive plate (618) is fixedly provided with a first push rod (10), a second push rod (11) and a third push rod (12). The upper end face of the third push rod (12) is fixedly connected to the lower end face of the third push plate (622). The upper end face of the second push rod (11) is fixedly connected to the lower end face of the second push plate (621). The upper end face of the first push rod (10) is fixedly connected to the lower end face of the first push plate (620).
7. The automatic packaging machine for pillow-type air pumps according to claim 1, characterized in that: The bottom plate (4) has a first baffle (13) fixedly installed on both sides of the upper end surface, and a second baffle (14) fixedly installed between the two first baffles (13). The second baffle (14) is fixedly connected to the feeding plate (7).