A rapid auxiliary bagging device for pomegranate bagging

By designing a rapid auxiliary bagging device, which utilizes a multi-stage electric telescopic rod and a universal ball joint, the automatic fixing of pomegranate bags is achieved, solving the problem of cumbersome bagging operations at heights and improving the convenience and efficiency of bagging.

CN119769341BActive Publication Date: 2026-07-31SHANDONG INST OF POMOLOGY
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
SHANDONG INST OF POMOLOGY
Filing Date
2025-02-05
Publication Date
2026-07-31

AI Technical Summary

Technical Problem

The existing pomegranate bagging process is cumbersome, especially bagging at heights which requires workers to climb trees, resulting in low efficiency.

Method used

Design a rapid auxiliary bagging device, including a bagging device and a rubber band tensioning claw. Through the cooperation of a multi-stage electric telescopic rod and a universal ball, the paper bag is automatically fixed, avoiding manual climbing.

Benefits of technology

This significantly improves the convenience and efficiency of bagging, eliminating the need for workers to climb trees; the paper bags can be quickly and securely fixed to the pomegranates.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention relates to the field of pomegranate bagging technology, specifically to a rapid auxiliary bagging device for pomegranates. The device includes a vehicle body, with a bagging assembly on one side for placing a paper bag over the pomegranate. The bagging assembly includes a bagging device capable of placing the paper bag over the pomegranate, a paper bag tube for storing the paper bag, and a rubber band tensioning claw surrounding and rotatably disposed outside the paper bag tube for attaching an elastic band to the pomegranate. When the elastic band tensioning claw moves away from the paper bag tube, the elastic band opens; when the elastic band tensioning claw retracts towards the paper bag tube, the elastic band slides onto the pomegranate and tightens, securing the paper bag to the pomegranate. This invention involves placing the paper bag into the paper bag tube, attaching the elastic band to the elastic band tensioning claw, and when the paper bag is placed over the pomegranate, the elastic band automatically slides down onto the pomegranate when the elastic band tensioning claw retracts, thus securing the paper bag to the pomegranate.
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Description

Technical Field

[0001] This invention relates to the field of pomegranate bagging technology, specifically to a rapid auxiliary bagging device for pomegranate bagging. Background Technology

[0002] Pomegranate bagging is an important management measure in pomegranate cultivation, aiming to improve fruit yield and quality. It can effectively block contact with pests such as insects and birds, prevent the fruit from being eaten or bitten, and reduce the occurrence of diseases and pests. After bagging, the fruit is isolated from the environment, resulting in a more uniform peel color and better appearance, which helps to improve the commercial value of the fruit.

[0003] Currently, when bagging pomegranates, workers can easily bag the pomegranates located at lower positions on the tree. However, for pomegranates located higher up on the tree, workers typically use a ladder to climb up and place the paper bag on the pomegranate. After bagging at a higher position, workers also need to use rubber bands to secure the paper bag, making the process cumbersome and slow. Summary of the Invention

[0004] The purpose of this invention is to provide a quick auxiliary bagging device for pomegranates. By placing a paper bag into a paper bag tube and attaching a rubber band to the rubber band tensioning claw, when the paper bag is placed on the pomegranate, the rubber band will automatically slide down onto the pomegranate when the rubber band tensioning claw contracts, thus fixing the paper bag on the pomegranate.

[0005] To address the problems of existing technologies, this invention provides a rapid auxiliary bagging device for pomegranate bagging, comprising a vehicle body. A bagging assembly for placing a paper bag over the pomegranate is provided on one side of the vehicle body. The bagging assembly includes a bagging device capable of placing the paper bag over the pomegranate. The bagging device includes a paper bag tube for storing the paper bag. The bagging device includes a rubber band tensioning claw surrounding and rotatably disposed outside the paper bag tube for placing a rubber band over the pomegranate. When the rubber band tensioning claw moves away from the paper bag tube, the rubber band opens. When the rubber band tensioning claw retracts towards the paper bag tube, the rubber band slides onto the pomegranate and tightens, securing the paper bag to the pomegranate.

[0006] Preferably, the elastic band tensioning claw is configured with an inclined surface near the paper bag position in the paper bag tube so that the elastic band can slide onto the pomegranate. Each elastic band tensioning claw is also provided with a limiting protrusion near the inclined surface for limiting the elastic band.

[0007] Preferably, the bagging device includes a first connecting block fixed on the paper bag tube and corresponding to the elastic band tensioning claws. The first connecting block is rotatably connected to the limiting protrusion. The paper bag tube is also provided with through grooves corresponding to the elastic band tensioning claws.

[0008] Preferably, a transmission rod is rotatably mounted on the end of the elastic band tensioning claw away from the limiting protrusion. The transmission rod extends through the through groove into the interior of the paper bag tube. The bagging device includes a telescopic drive component fixed inside the paper bag tube. The output end of the telescopic drive component is connected to a movable disk. A second connecting block corresponding to the transmission rod is also provided around the movable disk. The second connecting block is rotatably connected to the transmission rod.

[0009] Preferably, the bagging assembly includes a universal joint, a multi-stage electric telescopic rod, and a fixing plate disposed at the bottom of the bagging device. The universal joint includes a first hinge fixed to the top of the multi-stage electric telescopic rod and a second hinge fixed to the bottom of the paper bag tube. An adjusting member is also rotatably disposed between the first hinge and the second hinge. The fixing plate is fixed to one side of the vehicle body.

[0010] Preferably, the universal joint includes a first rotary drive fixed to the side of the first hinge for driving the adjustment member to rotate, the output end of the first rotary drive is fixedly connected to the adjustment member, and the universal joint also includes a second rotary drive fixed to the outside of the second hinge for driving the second hinge for rotating, the output end of the second rotary drive is fixedly connected to the adjustment member.

[0011] Preferably, the bottom end of the multi-stage electric telescopic rod is fixed with a universal ball, and the fixing plate includes a sleeve fixed to one side of the vehicle body, the universal ball being inserted into the sleeve and able to rotate within the sleeve.

[0012] Preferably, the sleeve is also connected to a fastener via a thread, and the fastener is rotatable to lock the universal ball in the sleeve.

[0013] Preferably, connecting plates are also provided on both sides of the exterior of the vehicle body, and each connecting plate is also provided with a paper bag holder for storing paper bags.

[0014] Preferably, the connecting plate is also provided with a rubber band storage slot for storing rubber bands.

[0015] The advantages of this invention compared to the prior art are:

[0016] 1. This application involves placing a paper bag into a paper bag tube and folding the edges of the paper bag outwards. Then, a multi-stage electric telescopic rod is used to control the lifting and lowering of the bagging device to place the paper bag over the pomegranate. Subsequently, the elastic band tension claw retracts inwards, and the elastic band slides along its inclined surface to the pomegranate surface, thus firmly securing the paper bag to the pomegranate. This process eliminates the need for workers to climb the pomegranate tree, significantly improving the convenience and efficiency of bagging.

[0017] 2. This application features a universal ball joint at the bottom of the multi-stage electric telescopic pole, which can be inserted into a sleeve. By rotating the fastener, the multi-stage electric telescopic pole can move freely within a certain range. Therefore, simply rotating the multi-stage electric telescopic pole is sufficient to adjust the position of the bagging device, ensuring that it can accurately cover the outside of the pomegranate. Attached Figure Description

[0018] Figure 1 This is a first three-dimensional structural schematic diagram of a rapid auxiliary bagging device for pomegranate bagging according to the present invention.

[0019] Figure 2 This is a second three-dimensional structural schematic diagram of a rapid auxiliary bagging device for pomegranate bagging according to the present invention.

[0020] Figure 3 This is a front view schematic diagram of a rapid auxiliary bagging device for pomegranate bagging according to the present invention.

[0021] Figure 4 This is a schematic diagram of the vehicle body structure of a rapid auxiliary bagging device for pomegranate bagging according to the present invention.

[0022] Figure 5 This is an exploded structural diagram of a rapid auxiliary bagging device for pomegranate bagging according to the present invention.

[0023] Figure 6 This is a schematic diagram of the three-dimensional structure of the bagging device, universal joint, and multi-stage electric telescopic rod of a rapid auxiliary bagging device for pomegranate bagging according to the present invention.

[0024] Figure 7 This is an exploded three-dimensional structural diagram of the bagging device, universal joint, and multi-stage electric telescopic rod of a rapid auxiliary bagging device for pomegranate bagging according to the present invention.

[0025] Figure 8 This is an exploded structural diagram of the bagging device of a rapid auxiliary bagging device for pomegranate bagging according to the present invention.

[0026] Figure 9 This is a first three-dimensional structural diagram of a bagging device for a rapid auxiliary bagging apparatus for pomegranate bagging according to the present invention.

[0027] Figure 10 This is a schematic diagram of the second three-dimensional structure of a bagging device for a quick auxiliary bagging apparatus for pomegranate bagging according to the present invention.

[0028] The following components are labeled in the diagram: 1. Vehicle body; 11. Connecting plate; 111. Paper bag holder; 112. Rubber band storage slot; 2. Bag assembly; 21. Bag maker; 211. Paper bag tube; 2111. First connecting block; 2112. Through groove; 212. Rubber band tensioning claw; 2121. Limiting protrusion; 213. Transmission rod; 214. Moving disc; 2141. Second connecting block; 215. Telescopic drive component; 22. Universal joint; 221. First hinge; 2211. First rotary drive component; 222. Second hinge; 2221. Second rotary drive component; 223. Adjusting component; 23. Multi-stage electric telescopic rod; 231. Universal ball; 24. Fixing plate; 241. Sleeve; 2411. Fastener. Detailed Implementation

[0029] To further understand the features, technical means, and specific objectives and functions achieved by the present invention, the present invention will be described in further detail below with reference to the accompanying drawings and specific embodiments.

[0030] Reference Figures 1-10 As shown, the present invention provides a quick auxiliary bagging device for pomegranate bagging, including a vehicle body 1. A bagging assembly 2 for bagging paper bags onto the outside of pomegranates is provided on one side of the vehicle body 1. The bagging assembly 2 includes a bagging device 21 capable of bagging paper bags onto pomegranates. The bagging device 21 includes a paper bag tube 211 for storing paper bags. The bagging device 21 includes a rubber band tensioning claw 212 surrounding the outside of the paper bag tube 211 and rotatably disposed outside the paper bag tube 211 for attaching rubber bands onto pomegranates. When the rubber band tensioning claw 212 moves away from the paper bag tube 211, the rubber band is opened. When the rubber band tensioning claw 212 retracts towards the paper bag tube 211, the rubber band can slide onto the pomegranate and tighten to fix the paper bag onto the pomegranate.

[0031] The core component of the bagging assembly 2 is the bagging device 21. The bagging device 21 includes a paper bag tube 211 for holding the paper bag to be bagged. In addition to the paper bag tube 211, the bagging device 21 is also equipped with an elastic band tensioning claw 212. The elastic band tensioning claw 212 is positioned around the outside of the paper bag tube 211 and can rotate relative to the paper bag tube 211. When the elastic band tensioning claw 212 moves away from the paper bag tube 211, it opens the elastic band. When the elastic band tensioning claw 212 retracts towards the paper bag tube 211, the elastic band slides smoothly onto the pomegranate and tightens, thus firmly securing the paper bag to the outside of the pomegranate.

[0032] The elastic band tensioning claw 212 is set at the position of the paper bag in the paper bag tube 211 with an inclined surface so that the elastic band can slide onto the pomegranate. Each elastic band tensioning claw 212 is also provided with a limiting protrusion 2121 for limiting the elastic band at the position near the inclined surface.

[0033] When the elastic band tensioning claw 212 retracts towards the paper bag tube 211, the elastic band can smoothly slide down the inclined plane onto the pomegranate, thus ensuring that the elastic band can be accurately fitted onto the pomegranate. The main function of the limiting protrusion 2121 is to limit the elastic band and prevent it from moving downward when the elastic band tensioning claw 212 opens.

[0034] The bagging device 21 includes a first connecting block 2111 fixed on the paper bag tube 211 and corresponding to the elastic band tensioning claw 212. The first connecting block 2111 is rotatably connected to the limiting protrusion 2121. The paper bag tube 211 is also provided with a through groove 2112 corresponding to the elastic band tensioning claw 212.

[0035] The bagging device 21 includes first connecting blocks 2111 fixed to the paper bag tube 211, and these first connecting blocks 2111 correspond one-to-one with the elastic band tensioning claws 212. This means that each elastic band tensioning claw 212 is connected to the paper bag tube 211 via a dedicated first connecting block 2111. This design ensures that the elastic band tensioning claws 212 can rotate stably and reliably on the paper bag tube 211.

[0036] A transmission rod 213 is rotatably mounted on one end of the elastic band tensioning claw 212 away from the limiting protrusion 2121. The transmission rod 213 extends through the through groove 2112 into the interior of the paper bag tube 211. The bagging device 21 includes a telescopic drive component 215 fixed inside the paper bag tube 211. The output end of the telescopic drive component 215 is connected to a movable disk 214. A second connecting block 2141 corresponding to the transmission rod 213 is also provided around the movable disk 214. The second connecting block 2141 is rotatably connected to the transmission rod 213.

[0037] When the telescopic drive component 215 is activated, it pushes or pulls the movable disk 214 to move. As the movable disk 214 moves under the push of the telescopic drive component 215, it drives the transmission rod 213 to rotate via the second connecting block 2141. The rotation of the transmission rod 213 further drives the elastic band tensioning claw 212 to open or close.

[0038] The bagging assembly 2 includes a universal joint 22, a multi-stage electric telescopic rod 23, and a fixing plate 24, which are disposed at the bottom of the bagging device 21. The universal joint 22 includes a first hinge 221 fixed to the top of the multi-stage electric telescopic rod 23 and a second hinge 222 fixed to the bottom of the paper bag tube 211. An adjusting member 223 is also rotatably disposed between the first hinge 221 and the second hinge 222. The fixing plate 24 is fixed to one side of the vehicle body 1.

[0039] As a key component for driving the bagging device 21 to move up and down, the multi-stage electric telescopic rod 23 is designed to allow the bagging device 21 to perform a wider range of telescopic movements within a limited space.

[0040] The paper bag is placed into the paper bag tube 211, and the edges of the paper bag are folded outwards. Then, the bagging device 21 is raised and lowered using the multi-stage electric telescopic rod 23 to place the paper bag over the pomegranate. Afterwards, the elastic band tensioning claw 212 retracts inwards, and the elastic band slides along its inclined surface to the pomegranate surface, thus firmly securing the paper bag to the pomegranate. This process eliminates the need for workers to climb the pomegranate tree, significantly improving the convenience and efficiency of bagging.

[0041] The universal joint 22 includes a first rotary drive 2211 fixed to the side of the first hinge 221 for driving the adjustment member 223 to rotate. The output end of the first rotary drive 2211 is fixedly connected to the adjustment member 223. The universal joint 22 also includes a second rotary drive 2221 fixed to the outside of the second hinge 222 for driving the second hinge 222 to rotate. The output end of the second rotary drive 2221 is fixedly connected to the adjustment member 223.

[0042] The design of the universal joint 22 not only allows the bagging device 21 to rotate and adjust flexibly in multiple directions, but also achieves automated control through the introduction of a first rotary drive 2211 and a second rotary drive 2221. The first rotary drive 2211 is fixed to the side of the first hinge 221, and its output end is fixedly connected to the adjusting member 223. This means that when the first rotary drive 2211 is working, it drives the adjusting member 223 to rotate. The second rotary drive 2221 is fixed to the outside of the second hinge 222, and its output end is also fixedly connected to the adjusting member 223. When the second rotary drive 2221 is working, it drives the adjusting member 223 to rotate relative to the second hinge 222, thereby changing the tilt angle and orientation of the bagging device 21.

[0043] The bottom end of the multi-stage electric telescopic rod 23 is fixed with a universal ball 231. The fixing plate 24 includes a sleeve 241 fixed to one side of the vehicle body 1. The universal ball 231 is inserted into the sleeve 241 and can rotate within the sleeve 241. A fastener 2411 is also threadedly connected to the sleeve 241. The fastener 2411 can rotate to lock the universal ball 231 in the sleeve 241.

[0044] A universal ball 231 is fixed to the bottom end of the multi-stage electric telescopic rod 23. This design allows the multi-stage electric telescopic rod 23 to rotate and adjust in multiple directions while extending and retracting. The introduction of the universal ball 231 not only improves the flexibility of the multi-stage electric telescopic rod 23, but also enables the entire bagging assembly 2 to more accurately align with the pomegranate for bagging operations. To lock the universal ball 231 in the sleeve 241 and prevent wobbling or displacement during bagging, a fastener 2411 is also threaded onto the sleeve 241. When it is necessary to lock the universal ball 231, simply rotate the fastener 2411 to make it make tight contact with the universal ball 231 and generate sufficient friction, thereby fixing the universal ball 231 in the sleeve 241.

[0045] By rotating the fastener 2411, the multi-stage electric telescopic rod 23 can move freely within a certain range. Therefore, by simply rotating the multi-stage electric telescopic rod 23, the position of the bagging device 21 can be adjusted to ensure that it can be accurately placed over the pomegranate.

[0046] Connecting plates 11 are also provided on both sides of the exterior of the vehicle body 1, and each connecting plate 11 is equipped with a paper bag holder 111 for storing paper bags. The connecting plate 11 also has a rubber band storage slot 112 for storing rubber bands. The design of the paper bag holder 111 allows users to easily access paper bags during the bagging process without frequently stopping to search for or replenish them. This design not only improves the efficiency of bagging but also makes the entire bagging process smoother and more convenient. The design of the rubber band storage slot 112 allows users to neatly store rubber bands, avoiding confusion and loss. When bagging is needed, the user simply takes out the rubber band from the rubber band storage slot 112 without having to search for or organize it again. This design not only improves the convenience of bagging.

[0047] Working Principle: In use, the worker first places several paper bags into the paper bag holder 111 and places rubber bands in the rubber band storage slot 112. Then, the worker can sit on the vehicle 1 and operate it to move around the field. When it is necessary to place a paper bag on a pomegranate tree high up, the multi-stage electric telescopic rod 23 first operates, lowering the bagging device 21 to the appropriate height. Next, the first rotary drive 2211 drives the adjusting component 223 to rotate, while the second rotary drive 2221 drives the second hinge 222 to rotate, thereby adjusting the bagging device 21 to the appropriate position. The worker then places the paper bag into the paper bag tube 211 and folds the edges of the paper bag outwards. At this time, the multi-stage electric telescopic rod 23 is activated again, causing it to move the bagging device 21 closer to the pomegranate. By rotating the end of the multi-stage electric telescopic rod 23, the paper bag is precisely placed on the pomegranate. Immediately afterwards, the telescopic drive 215 starts working, driving the moving disc 214 to move. The movement of the movable disc 214 causes the transmission rod 213 to shift, which in turn causes the elastic band tensioning claw 212 to rotate. The tip of the elastic band tensioning claw 212 contracts towards the paper bag tube 211. At this time, the elastic band slides down the inclined surface of the elastic band tensioning claw 212 onto the pomegranate, thus firmly fixing the paper bag to the pomegranate. The entire process eliminates the need for workers to climb the pomegranate tree, significantly improving the convenience and efficiency of bagging and achieving the goal of convenient and quick bagging.

[0048] The above embodiments only illustrate one or more implementations of the present invention, and their descriptions are relatively specific and detailed, but they should not be construed as limiting the scope of the present invention. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of the present invention, and these all fall within the protection scope of the present invention. Therefore, the protection scope of the present invention should be determined by the appended claims.

Claims

1. A quick assisted bagging device for pomegranate bagging, characterized by: The vehicle includes a body (1), and a bagging assembly (2) for putting a paper bag over a pomegranate is provided on one side of the body (1). The bagging assembly (2) includes a bagging device (21) for putting a paper bag over a pomegranate. The bagging device (21) includes a paper bag tube (211) for storing the paper bag. The bagging device (21) includes a rubber band tensioning claw (212) that surrounds the outside of the paper bag tube (211) and is rotatably disposed outside the paper bag tube (211) for putting a rubber band over a pomegranate. When the rubber band tensioning claw (212) moves away from the paper bag tube (211), the rubber band is opened. When the rubber band tensioning claw (212) retracts toward the paper bag tube (211), the rubber band can slide onto the pomegranate and tighten to fix the paper bag on the pomegranate. The bagging assembly (2) includes a universal joint (22) disposed at the bottom of the bagger (21), a multi-stage electric telescopic rod (23) and a fixing plate (24). The universal joint (22) includes a first hinge (221) fixed to the top of the multi-stage electric telescopic rod (23) and a second hinge (222) fixed to the bottom of the paper bag tube (211). An adjusting member (223) is rotatably disposed between the first hinge (221) and the second hinge (222). The fixing plate (24) is fixed to one side of the vehicle body (1). The universal joint (22) includes a first rotary drive (2211) fixed to the side of the first hinge (221) for driving the adjustment member (223) to rotate. The output end of the first rotary drive (2211) is fixedly connected to the adjustment member (223). The universal joint (22) also includes a second rotary drive (2221) fixed to the outside of the second hinge (222) for driving the second hinge (222) to rotate. The output end of the second rotary drive (2221) is fixedly connected to the adjustment member (223). The bottom end of the multi-stage electric telescopic rod (23) is fixed with a universal ball (231), and the fixing plate (24) includes a sleeve (241) fixed to one side of the vehicle body (1). The universal ball (231) is inserted into the sleeve (241) and can rotate in the sleeve (241). The sleeve (241) is also connected to a fastener (2411) by a thread, and the fastener (2411) can rotate to lock the universal ball (231) in the sleeve (241).

2. A quick assisted bagging device for pomegranate bagging as claimed in claim 1, wherein: The elastic band tensioning claw (212) is set at the position of the paper bag in the paper bag tube (211) with an inclined surface so that the elastic band can slide onto the pomegranate. Each elastic band tensioning claw (212) is also provided with a limiting protrusion (2121) near the inclined surface for limiting the elastic band.

3. A rapid auxiliary bagging device for pomegranate bagging according to claim 2, characterized in that: The bagging device (21) includes a first connecting block (2111) fixed on the paper bag tube (211) and corresponding to the elastic band tensioning claw (212). The first connecting block (2111) is rotatably connected to the limiting protrusion (2121). The paper bag tube (211) is also provided with a through groove (2112) corresponding to the elastic band tensioning claw (212).

4. A rapid auxiliary bagging device for pomegranate bagging according to claim 3, characterized in that: The end of the elastic band tensioning claw (212) away from the limiting protrusion (2121) is rotatably equipped with a transmission rod (213). The transmission rod (213) extends through the through groove (2112) into the interior of the paper bag tube (211). The bagging device (21) includes a telescopic drive component (215) fixed inside the paper bag tube (211). The output end of the telescopic drive component (215) is connected to a moving disk (214). The moving disk (214) is also surrounded by a second connecting block (2141) that corresponds one-to-one with the transmission rod (213). The second connecting block (2141) is rotatably connected to the transmission rod (213).

5. A rapid auxiliary bagging device for pomegranate bagging according to claim 1, characterized in that: The vehicle body (1) is also provided with connecting plates (11) on both sides of the exterior, and each connecting plate (11) is also provided with a paper bag holder (111) for storing paper bags.

6. A rapid auxiliary bagging device for pomegranate bagging according to claim 5, characterized in that: The connecting plate (11) is also provided with a rubber band storage slot (112) for storing rubber bands.