Automatic conveying mechanism used after beverage packaging and sealing
By combining the material guide channel with a buffer and pre-arranged group structure, the problem of collision and tipping caused by the high center of gravity and speed changes during the transportation of beverage packaging is solved, and orderly and damage-free packaging transportation is achieved.
Patent Information
- Application Number
- CN202511876325.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-12-12
- Publication Date
- 2026-01-09
AI Technical Summary
In existing technologies, beverage packaging is prone to collisions during transportation due to its high center of gravity and changes in speed, leading to tipping or damage.
The system employs a combination of a material guide channel, a buffer group, and a pre-arrangement group. The beverage packaging is arranged twice through a buffer plate and a baffle. The buffer plate tilts to slow down the speed, while the baffle blocks and moves the material pusher to ensure orderly arrangement.
It effectively prevents beverage packaging from colliding and tipping over due to speed changes during transportation, ensuring that it is transported to the cage-filling equipment in an orderly and undamaged manner.
Smart Images

Figure CN121291879A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of beverage production technology, specifically an automatic conveying mechanism for beverage packaging after sealing. Background Technology
[0002] As the core carrier for the storage, transportation and sales of beverages, beverage packaging widely uses glass bottles and cans. During the production and processing, it needs to be sealed to ensure the freshness of the beverage. After sealing, the beverage packaging usually needs to be packed into cages to achieve batch and orderly storage, providing a stable supporting foundation for the subsequent sterilization process and ensuring that the sterilization effect of the beverage packaging meets the standards.
[0003] In existing technologies, the common method is to use a continuous or step conveyor belt to directly transport the packaging containers to the cage-filling position. To achieve orderly cage-filling of the packaging, simple guide plates are usually set on the conveyor belt. The guide plates form a conveying channel to guide the packaging to move in a preset direction. Mechanical baffles or pneumatic push rods are used for intermittent blocking, so that the packaging can be initially stacked and aligned before being transported to the cage-filling equipment. Then, the cage-filling equipment arranges the glass bottles into a neat array that matches the cages to facilitate subsequent sterilization operations.
[0004] The following problems exist in the current process of conveying sealed beverage packaging such as glass bottles and cans: Since beverage packaging such as glass bottles and cans is usually a cylindrical or near-cylindrical container, its center of gravity may be relatively high, and the beverage packaging may experience speed changes during the conveying process, which may cause the beverage packaging to collide with each other, resulting in the beverage packaging tipping over or being damaged. Summary of the Invention
[0005] To solve the above-mentioned technical problems, the present invention adopts the following technical solution: an automatic conveying mechanism for sealing beverage packaging, comprising a stepping conveyor belt, a material guiding channel above the stepping conveyor belt, the material guiding channel being configured from left to right as a first material guiding section, a second material guiding section, and a third material guiding section with progressively increasing width; a top plate is fixedly installed on the stepping conveyor belt via an L-shaped connecting rod; a buffer group and a pre-arrangement group are respectively installed at the lower end of the top plate corresponding to the positions of the second and third material guiding sections; the buffer group includes a transmission plate mounted on the top plate via a driving component, and multiple buffers evenly distributed to the left and right are installed at the lower end of the transmission plate via elastic telescopic rods. The buffer plate has a rear end that tilts to the right. When the beverage packaging is conveyed to the second guide section, the buffer plate blocks the beverage packaging and arranges it on its left side. The beverage packaging moves slowly along the length of the buffer plate to reduce the degree of collision between adjacent beverage packaging. The pre-arrangement group includes a baffle fixedly installed on the top plate by a hydraulic cylinder. A material-pushing component is installed on the left end of the baffle. When the beverage packaging is conveyed to the third guide section, the baffle blocks the beverage packaging and, under the action of the material-pushing component, arranges multiple beverage packaging evenly on the left side of the baffle. Through the two-stage arrangement of the beverage packaging by the buffer plate and the baffle, the risk of collision and tipping of the beverage packaging is reduced.
[0006] Preferably, the driving component includes multiple guide rods fixedly mounted on the upper end of the transmission plate, and the upper ends of the guide rods slide vertically through the top plate. The driving component also includes multi-stage electric push rods fixedly mounted on the transmission plate, and the upper ends of the multi-stage electric push rods are fixedly connected to the top plate.
[0007] Preferably, a rubber pad is installed at the left end of the buffer plate, which can provide cushioning between the buffer plate and the beverage packaging.
[0008] Preferably, a plurality of ball bearings are installed at the lower end of the buffer plate.
[0009] Preferably, a pushing plate is provided below the transmission plate and between two adjacent buffer plates. A rubber pad is installed on the right end of the pushing plate. The upper end of the pushing plate is connected to the transmission plate through a connecting rod. The pushing plate can squeeze the beverage packaging to the right to ensure that the beverage packaging is evenly arranged on the left side of the buffer plate.
[0010] Preferably, the transmission plate has square holes at the positions corresponding to the push plate, and limit blocks are slidably installed in the square holes from left to right, and the limit blocks are slidably sleeved on the outside of the corresponding connecting rods from top to bottom.
[0011] Preferably, the upper end of the transmission plate is equipped with a U-shaped plate corresponding to the square hole via an L-shaped rod. Guide holes are provided at both the front and rear ends of the U-shaped plate, and a mating rod is slidably installed in both the front and rear guide holes. The mating rod and the corresponding connecting rod are fixedly connected.
[0012] Preferably, a plurality of ball bearings are installed at the lower end of the push plate.
[0013] Preferably, the left end of the baffle is provided with an installation groove, and the material feeding component includes a pusher plate installed in the middle of the installation groove via an electric telescopic rod. Both the front and rear ends of the pusher plate are hinged with square telescopic rods, and the end of the square telescopic rod away from the pusher plate is hinged in the installation groove.
[0014] Preferably, a triangular pusher block is fixedly installed on the left end of the pusher plate.
[0015] The beneficial effects of the present invention are as follows: First, the present invention can arrange the beverage packaging in the second feeding section and in the third feeding section. Through the two arrangements, the beverage packaging is pre-arranged into a row that matches the cage and transported to the cage-filling equipment, so as to realize the orderly transportation of the beverage packaging, prevent the beverage packaging from colliding with each other due to factors such as speed changes, and thus effectively prevent the beverage packaging from tipping over or being damaged.
[0016] Second, this invention arranges beverage packaging in the first stage by setting up inclined buffer plates. The inclined structure of the buffer plates can slow down the movement speed of the beverage packaging, thereby reducing the degree of collision between adjacent beverage packaging and thus reducing the probability of beverage packaging tipping over or being damaged. In addition, multiple buffer plates are set up to ensure that the arranged beverage packaging is transported in an orderly manner to the third guide section.
[0017] Third, this invention uses baffles to block the beverage packaging after the first arrangement. At the same time, the invention uses a feeding component to slowly move the beverage packaging after the first arrangement to the front and back sides, reducing the degree of collision between the beverage packaging and ensuring that the beverage packaging is arranged in a row on the left side of the baffle, thus realizing the second arrangement of the beverage packaging. This ensures that the beverage packaging is pre-arranged into a row that matches the cage, so that the beverage packaging after the second arrangement is transported to the cage-filling equipment in an orderly manner.
[0018] Fourth, by setting a push plate to flexibly squeeze the beverage packaging arranged in the first row to the right, the present invention ensures that the beverage packaging is evenly arranged on the left side of the buffer plate, thereby further ensuring that the beverage packaging is transported in an orderly manner to the third guide section. Attached Figure Description
[0019] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0020] Figure 1 This is a three-dimensional structural diagram of the present invention.
[0021] Figure 2 This is a three-dimensional structural diagram of the top plate, buffer group, and pre-arranged group of the present invention.
[0022] Figure 3 This is a three-dimensional structural diagram of the buffer plate and the push plate of the present invention.
[0023] Figure 4 This is a three-dimensional structural diagram of the present invention after the transmission plate and U-shaped plate have been partially cut out.
[0024] Figure 5 This is a diagram showing the working state of the material feeding component of the present invention.
[0025] Figure 6 This is a schematic diagram of the present invention during the delivery of beverage packaging.
[0026] Reference numerals: 1. Stepping conveyor belt; 11. L-shaped connecting rod; 2. Material guide channel; 3. Top plate; 4. Buffer group; 41. Drive component; 411. Guide rod; 412. Multi-stage electric push rod; 42. Transmission plate; 421. Pushing plate; 422. Rubber pad II; 423. Connecting rod; 424. Limiting block; 425. L-shaped rod; 426. U-shaped plate; 427. Guide hole; 428. Matching rod; 429. Ball bearing II; 43. Elastic telescopic rod; 44. Buffer plate; 441. Rubber pad I; 442. Ball bearing I; 5. Pre-arrangement group; 51. Hydraulic cylinder; 52. Baffle; 53. Material pusher; 531. Electric telescopic rod; 532. Pushing plate; 533. Square telescopic rod; 534. Pushing block. Detailed Implementation
[0027] The embodiments described below are exemplary and are only used to explain the present invention, and should not be construed as limiting the present invention. Where no specific technology or conditions are specified in the embodiments, they shall be performed in accordance with the technology or conditions described in the literature in the field or in accordance with the product manual.
[0028] See Figure 1 and Figure 2 An automatic conveying mechanism for sealing beverage packaging includes a stepping conveyor belt 1, a guide channel 2 above the stepping conveyor belt 1, and the guide channel 2 is configured from left to right as a first guide section, a second guide section and a third guide section with progressively increasing width. A top plate 3 is fixedly installed on the stepping conveyor belt 1 by an L-shaped connecting rod 11. A buffer group 4 and a pre-arrangement group 5 are respectively installed at the lower end of the top plate 3 corresponding to the positions of the second guide section and the third guide section.
[0029] It should be noted that the stepping conveyor belt 1 is equipped with two guide plates, and the guide channel 2 is formed by the two guide plates. The distance between the two guide plates increases in a stepped manner from left to right. The first guide section only allows a single beverage package to pass through, so that the beverage packages are conveyed evenly. The second guide section can accommodate multiple beverage packages side by side. It is the transition between the first guide section and the third guide section. By gradually widening the spacing, the glass bottles begin to be arranged in a concentrated manner. The third guide section allows the bottles to be densely stacked to fit the capacity of the cage.
[0030] See Figure 1 and Figure 2 The buffer group 4 includes a transmission plate 42 mounted on the top plate 3 via a drive component 41. Multiple buffer plates 44, evenly distributed left and right, are mounted on the lower end of the transmission plate 42 via an elastic telescopic rod 43, with the rear ends of the buffer plates 44 tilted to the right. The pre-arrangement group 5 includes a baffle 52 fixedly mounted on the top plate 3 via a hydraulic cylinder 51. A material feeding component 53 is mounted on the left end of the baffle 52. The buffer group 4 can perform a first arrangement of beverage packaging such as glass bottles and cans conveyed to the second guide section, reducing the degree of collision between adjacent beverage packaging, thereby preventing the beverage packaging from tipping over or being damaged. The pre-arrangement group 5 can perform a second arrangement of beverage packaging conveyed to the third guide section, pre-arranging the beverage packaging into a row matching the cage and continuously conveying it. Through these two arrangements of the beverage packaging, orderly conveying of the beverage packaging is achieved, preventing collisions caused by speed changes and other factors, thereby effectively preventing the packaging from tipping over or being damaged.
[0031] See Figure 1 and Figure 2 The driving component 41 includes a plurality of guide rods 411 fixedly installed on the upper end of the transmission plate 42, and the upper end of the guide rods 411 slides through the top plate 3. The driving component 41 also includes a multi-stage electric push rod 412 fixedly installed on the transmission plate 42, and the upper end of the multi-stage electric push rod 412 is fixedly connected to the top plate 3.
[0032] See Figure 1 , Figure 2 and Figure 6 Specifically, after the beverage packaging is sealed, the stepping conveyor belt 1 is started to move the beverage packaging step by step. Figure 6 (In the direction of the middle arrow), the beverage packaging moves from the first guide section to the second guide section. The buffer plate 44 can block the beverage packaging. As the stepping conveyor belt 1 steps forward, the beverage packaging moves along the inclined structure of the buffer plate 44, so that multiple beverage packages are arranged on the left side of the buffer plate 44. Since the inclined structure of the buffer plate 44 can slow down the movement speed of the beverage packaging, the degree of collision between adjacent beverage packages is reduced. Then, the multi-stage electric push rod 412 is controlled to drive the transmission plate 42 to move upward under the action of the guide rod 411. The transmission plate 42 drives the buffer plate 44 to move upward so as not to block the beverage packaging. Then, the stepping conveyor belt 1 steps forward again to transport the beverage packaging, so that the multiple beverage packages after being arranged move to the right step by step. And multiple buffer plates 44 are provided, so that the beverage packages that have moved to the second guide section can be arranged for the first time and ensure that the arranged beverage packages move to the third guide section in an orderly manner.
[0033] The stepping conveyor belt 1 drives the beverage packages after the first arrangement to move to the right in the third guide section. The baffle 52 can block the beverage packages, causing the beverage packages after the first arrangement to accumulate in the middle of the baffle 52. By controlling the material pusher 53, the beverage packages after the first arrangement are pushed forward and backward to both sides. As the beverage packages after the first arrangement are continuously conveyed to the third guide section, the material pusher 53 can evenly arrange multiple beverage packages on the left side of the baffle 52 to achieve the second arrangement of the beverage packages, so as to pre-arrange the beverage packages into a row that matches the cage. Finally, the hydraulic cylinder 51 is controlled to drive the baffle 52 to move upward, and the stepping conveyor belt 1 is controlled to step forward again to convey the beverage packages, so as to transport the multiple beverage packages arranged in a row to the cage filling equipment.
[0034] It should be noted that during the process of lifting the buffer plate 44 and the baffle 52, the beverage packaging on the stepping conveyor belt 1 is in a stationary state. When the buffer plate 44 and the baffle 52 are fully lifted, the stepping conveyor belt 1 begins to step and transport the beverage packaging to prevent the beverage packaging from tipping over if the buffer plate 44 and the baffle 52 are not fully lifted and block the top of the beverage packaging.
[0035] It should be further explained that when the buffer plate 44 arranges multiple beverage packages for the first time, the number of beverage packages in the first arrangement is even. When the beverage packages after the first arrangement are conveyed to the corresponding position of the baffle 52, the middle of the beverage packages after the first arrangement corresponds to the middle of the baffle 52, so that the feeding component 53 can evenly move the beverage packages after the first arrangement to the front and back sides of the baffle 52, thereby ensuring that the beverage packages after the second arrangement are evenly distributed on the left side of the baffle 52, so as to realize the pre-arrangement of the beverage packages into a row that matches the cage.
[0036] See Figure 2 and Figure 3 A rubber pad 441 is installed on the left end of the buffer plate 44; several ball bearings 442 are installed on the lower end of the buffer plate 44; the rubber pad 441 can provide cushioning between the buffer plate 44 and the beverage packaging, preventing the beverage packaging and the buffer plate 44 from rigidly colliding; and under the action of the ball bearings 442, the buffer plate 44 and the stepping conveyor belt 1 are subjected to rolling friction, preventing the buffer plate 44 from wearing the stepping conveyor belt 1.
[0037] To ensure that the beverage packaging is evenly arranged on the left side of the buffer plate 44, the present invention adopts the following structure: (See attached diagram) Figure 2 , Figure 3 and Figure 4A pushing plate 421 is provided below the transmission plate 42 and between two adjacent buffer plates 44. A rubber pad 422 is installed on the right end of the pushing plate 421. The upper end of the pushing plate 421 is connected to the transmission plate 42 via a connecting rod 423. A square hole is opened on the transmission plate 42 at the position corresponding to the pushing plate 421. A limit block 424 is slidably installed in the square hole and is fitted on the outside of the corresponding connecting rod 423. A U-shaped plate 426 corresponding to the square hole is installed on the upper end of the transmission plate 42 via an L-shaped rod 425. A guide hole 427 is opened at both the front and rear ends of the U-shaped plate 426. A mating rod 428 is slidably installed in both the front and rear guide holes 427 and is fixedly connected to the corresponding connecting rod 423. Several ball bearings 429 are installed on the lower end of the pushing plate 421.
[0038] Specifically, after multiple beverage packages are initially arranged on the left side of the buffer plate 44, the multi-stage electric push rod 412 drives the transmission plate 42 downward, compressing the elastic telescopic rod 43. Simultaneously, the transmission plate 42 drives the U-shaped plate 426 downward via the L-shaped rod 425. Due to the obstruction of the stepping conveyor belt 1, the pushing plate 421 cannot move downward, causing the U-shaped plate 426 to move downward relative to the connecting rod 423. With the cooperation of the guide hole 427 and the cooperating rod 428, the cooperating rod 428 drives the pushing plate 421 to move to the right via the connecting rod 423, causing the pushing plate 421 to squeeze the beverage packages to the right, ensuring that the beverage packages are evenly arranged on the left side of the buffer plate 44. Under the action of the second rubber pad 422, the pushing plate 421 flexibly squeezes the beverage packages, preventing them from being deformed. At the same time, under the action of the second ball bearing 429, the pushing plate 421 moves smoothly to the right.
[0039] See Figure 2 , Figure 5 and Figure 6The baffle 52 has an installation groove at its left end. The feeding component 53 includes a pusher plate 532 installed in the middle of the installation groove via an electric telescopic rod 531. Square telescopic rods 533 are hinged to both ends of the pusher plate 532, with the ends of the square telescopic rods 533 away from the pusher plate 532 hinged in the installation groove. A triangular pusher block 534 is fixedly installed on the left end of the pusher plate 532. When the beverage packaging, after its initial arrangement, moves to the left side of the baffle 52, the electric telescopic rod 531 is activated, causing the pusher plate 532 to move to the left, which in turn moves the pusher block. 534 moves to the left, and the pusher block 534 corresponds to the center of the beverage packaging after the first arrangement. Under the action of the triangular structure of the pusher block 534, the beverage packaging after the first arrangement is pushed evenly to the front and back sides. Under the action of the telescopic joint of the square telescopic rod 533, the two square telescopic rods 533 are arranged at an angle, so that the beverage packaging can move with the tilted square telescopic rods 533. At this time, the tilt angle of the square telescopic rods 533 is small, thereby reducing the moving speed of the beverage packaging and reducing the degree of collision between adjacent beverage packaging.
[0040] After the beverage packaging is sealed, the invention starts the stepping conveyor belt 1 to transport the beverage packaging in a stepping manner. The beverage packaging moves from the first guide section to the second guide section. The buffer plate 44 blocks the beverage packaging and slows down the movement speed using its inclined structure, guiding it to complete the first arrangement on the left side of the buffer plate 44. At the same time, the push plate 421 flexibly squeezes to the right to ensure that the beverage packaging is evenly distributed on the left side of the buffer plate 44, so that multiple beverage packages are arranged along the left side of the buffer plate 44, completing the first arrangement. Subsequently, the multi-stage electric push rod 412 is controlled to drive the buffer plate 44 to move upward, and the stepping conveyor belt 1 will arrange the beverage packaging. The packaged items are then fed into the third guiding section. In the third guiding section, the baffle 52 blocks the packaged items, while the pusher 53 pushes the packaged items evenly to both sides, so that the packaged items are arranged in a row on the left side of the baffle 52 to match the cage, completing the second arrangement. Finally, the baffle 52 is controlled to move upward, and the stepping conveyor belt 1 transports the neatly arranged packaged items to the cage-filling equipment. The entire conveying process achieves orderly conveying that matches the cage through two arrangements, effectively avoiding the tipping or damage caused by the collision of beverage packages due to speed changes. Moreover, the parameters only need to be set during equipment debugging, and the subsequent arrangement and conveying are completed automatically.
[0041] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.
[0042] In embodiments of the present invention, unless otherwise explicitly specified and limited, "above" or "below" the second feature can mean that the first feature is in direct contact with the second feature, or that the first feature is in indirect contact with the second feature through an intermediate medium. Furthermore, "above," "on top of," and "over" the second feature can mean that the first feature is directly above or diagonally above the second feature, or simply that the first feature is at a higher horizontal level than the second feature. "Below," "below," and "under" the second feature can mean that the first feature is directly below or diagonally below the second feature, or simply that the first feature is at a lower horizontal level than the second feature.
[0043] In the description of this invention, it should also be noted that, unless otherwise explicitly specified and limited, the terms "set," "connected," "installed," and "linked" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, an integral connection, or a sliding 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; and they can refer to the internal communication between two components. Those skilled in the art can understand the specific meaning of the above terms in this invention according to the specific circumstances.
[0044] The embodiments described herein are preferred embodiments of the present invention and are not intended to limit the scope of protection of the present invention. Therefore, all equivalent changes made based on the structure, shape, and principle of the present invention should be covered within the scope of protection of the present invention.
Claims
1. An automatic conveying mechanism for sealing beverage packaging, comprising a stepping conveyor belt, a guide channel above the stepping conveyor belt, the guide channel being configured from left to right as a first guide section, a second guide section, and a third guide section with progressively increasing width, characterized in that, A top plate is fixedly installed on the stepping conveyor belt by an L-shaped connecting rod. Buffer groups and pre-arrangement groups are respectively installed at the lower end of the top plate corresponding to the positions of the second and third guide sections. The buffer group includes a transmission plate mounted on the top plate via a drive component. Multiple buffer plates evenly distributed on the left and right are mounted on the lower end of the transmission plate via an elastic telescopic rod. The rear end of the buffer plate is tilted to the right. When the beverage packaging is conveyed to the second guide section, the buffer plate blocks the beverage packaging and arranges the beverage packaging on its left side. The beverage packaging moves slowly along the length of the buffer plate to reduce the degree of collision between adjacent beverage packaging. The pre-arrangement group includes a baffle fixedly installed on the top plate by a hydraulic cylinder. A material feeding component is installed on the left end of the baffle. When the beverage packaging is conveyed to the third guide section, the baffle blocks the beverage packaging and, under the action of the material feeding component, arranges multiple beverage packages evenly on the left side of the baffle. The two-stage arrangement of the beverage packaging by the buffer plate and the baffle reduces the risk of collision and tipping of the beverage packaging.
2. The automatic conveying mechanism for sealing beverage packaging according to claim 1, characterized in that, The driving component includes multiple guide rods fixedly installed on the upper part of the transmission plate, and the upper ends of the guide rods slide up and down through the top plate. The driving component also includes multi-stage electric push rods fixedly installed on the transmission plate, and the upper ends of the multi-stage electric push rods are fixedly connected to the top plate.
3. The automatic conveying mechanism for sealing beverage packaging according to claim 1, characterized in that, A rubber pad is installed on the left end of the buffer plate, which can provide cushioning between the buffer plate and the beverage packaging.
4. The automatic conveying mechanism for sealing beverage packaging according to claim 1, characterized in that, The lower end of the buffer plate is equipped with several ball bearings.
5. The automatic conveying mechanism for sealing beverage packaging according to claim 1, characterized in that, A pushing plate is provided below the transmission plate and between two adjacent buffer plates. A rubber pad is installed on the right end of the pushing plate. The upper end of the pushing plate is connected to the transmission plate through a connecting rod. The pushing plate can squeeze the beverage packaging to the right to ensure that the beverage packaging is evenly arranged on the left side of the buffer plate.
6. The automatic conveying mechanism for sealing beverage packaging according to claim 5, characterized in that, The transmission plate has square holes at the positions corresponding to the push plate. Limiting blocks are slidably installed in the square holes, and the limiting blocks are slidably sleeved on the outside of the corresponding connecting rods.
7. The automatic conveying mechanism for sealing beverage packaging according to claim 5, characterized in that, The transmission plate has a U-shaped plate corresponding to the square hole installed on its upper end via an L-shaped rod. Guide holes are provided at both the front and rear ends of the U-shaped plate. A mating rod is slidably installed in both the front and rear guide holes, and the mating rod is fixedly connected to the corresponding connecting rod.
8. The automatic conveying mechanism for sealing beverage packaging according to claim 5, characterized in that, The lower end of the push plate is equipped with several ball bearings.
9. The automatic conveying mechanism for sealing beverage packaging according to claim 1, characterized in that, The baffle has an installation groove at its left end. The material feeding component includes a pusher plate installed in the middle of the installation groove via an electric telescopic rod. Both ends of the pusher plate are hinged with square telescopic rods, and the end of the square telescopic rod away from the pusher plate is hinged in the installation groove.
10. The automatic conveying mechanism for sealing beverage packaging according to claim 9, characterized in that, A triangular pusher block is fixedly installed on the left end of the pusher plate.