Fruit gathering device
The fruit collection device with a rigid ring and conical bag design addresses inefficiencies and fruit damage in traditional methods, providing adaptable and efficient fruit collection across various orchard environments.
Patent Information
- Application Number
- CN202421856607.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-02
- Publication Date
- 2025-07-15
- Estimated Expiration
- 2034-08-02
AI Technical Summary
Traditional fruit collection methods are inefficient, labor-intensive and easy to damage the fruit. The existing devices are inconvenient to carry and are difficult to pass through the woods.
A fruit assembly device including an open ring and a conical bag body is designed. The opening ring is a hard set ring ring ring, the bag body is removably connected, equipped with a support frame and handheld tool to achieve stable collection and convenient output of the fruit.
It improves fruit collection efficiency and reduces fruit damage. The device is compact and easy to carry, adapts to different fruit tree environments, and reduces operating and equipment costs.
Smart Images

Figure CN223094267U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of fruit collection, and more specifically, to a fruit gathering device. Background Art
[0002] In the agricultural field, especially in fruit tree planting, the work of fruit collection is an important and time-consuming link. Traditional fruit collection methods mainly rely on manual operation, which is not only inefficient but also labor-intensive. Especially during the fruit ripening season, a large amount of labor is required. In addition, during the manual collection process, due to improper operation or the characteristics of the fruits themselves, it is easy to cause fruit damage, affecting their quality and sales value. The existing fruit collection devices are large in size and not convenient to carry, and it is not easy to move through the woods. Therefore, there is an urgent need for a new type of fruit gathering device. Summary of the Utility Model
[0003] The purpose of the utility model is to provide a fruit gathering device to solve the problems of inconvenient fruit collection and inconvenient carrying in the prior art.
[0004] To achieve the above purpose, the following technical solutions are adopted.
[0005] A fruit gathering device includes:
[0006] An opening ring, the opening ring is a rigid and shaped ring;
[0007] A bag body, the bag body is conical, and a first opening is provided at the larger diameter end of the bag body. The first opening is connected to the opening ring for collecting fruits; a second opening is provided at the smaller diameter end of the bag body for outputting fruits;
[0008] A switch closing component is provided at the second opening for closing or opening the second opening.
[0009] Optionally, the first opening is connected along the border of the opening ring.
[0010] Optionally, the diameter of the first opening is the maximum diameter of the bag body, and the diameter of the opening ring is equal to the diameter of the first opening.
[0011] Optionally, it further includes a support frame, the support frame is arranged on the side of the opening ring, and there are multiple groups of the support frames for supporting the opening ring.
[0012] Optionally, the support frame is a telescopic support frame.
[0013] Optionally, the opening ring is a ring-shaped telescopic ring, and fixing parts are provided at both ends of the opening ring for splicing and fixing both ends of the opening ring when the opening ring is opened, so that the opening ring forms a ring shape.
[0014] Optionally, the bag body and the opening ring are detachably connected.
[0015] Optionally, the second opening is connected with an output cylinder for forming an output channel.
[0016] Optionally, it further includes a hand-held tool for knocking down fruits.
[0017] Optionally, a placement part is arranged on the opening ring for placing the hand-held tool.
[0018] Compared with the prior art, the utility model has the following beneficial effects:
[0019] By the combined use of the opening ring and the bag body, the utility model can effectively collect small fruits such as apricots and reduce the scattering and loss of fruits during the collection process. The rigid shaping design of the opening ring ensures its stability during the collection process, thus significantly improving the collection efficiency. The device is designed compactly with a moderate volume, facilitating passage and carrying in the woods. Holding the opening ring obliquely or vertically can also facilitate passage in the woods. In particular, the annular telescopic design of the opening ring is convenient for shrinking the opening ring when not in use or when movement is required, facilitating carrying.
[0020] The conical design of the bag body and the switch closing component of the second opening of the utility model enable the fruits to naturally accumulate in the bag body, reducing the extrusion and collision between the fruits, effectively reducing the fruit damage rate, and protecting the fruit quality.
[0021] The design of the support frame and the telescopic support frame of the utility model enables the device to be adjusted according to different tree shapes and fruit distributions, improving the adaptability and flexibility of the device. Whether in a dense fruit forest or a sparse tree grove, the device can effectively collect fruits.
[0022] The detachable connection design of the bag body and the opening ring of the utility model makes the cleaning and maintenance of the device more convenient. Users can easily disassemble and clean each component to ensure the long-term use and efficient operation of the device.
[0023] The design of including a hand-held tool in the utility model can conveniently knock down fruits, further improving the collection efficiency. At the same time, the placement part design on the opening ring makes the storage and use of the hand-held tool more convenient, increasing the practicability of the device.
[0024] Compared with the traditional manual collection method and the existing automated equipment, the utility model improves the collection efficiency while reducing the operation cost and equipment cost. Its design is simple and the cost is low, making it suitable for popularization and application in fruit tree plantings of various scales. Description of the Drawings
[0025] Figure 1It is a schematic structural diagram of an embodiment of a fruit gathering device of the present utility model;
[0026] Figure 2 It is a schematic structural diagram of another embodiment of a fruit gathering device of the present utility model;
[0027] Figure 3 It is a schematic structural diagram of a hand tool of an embodiment of a fruit gathering device of the present utility model;
[0028] Among them, 1. Opening ring; 2. Bag body; 3. First opening; 4. Support frame; 5. Hand tool; 6. Output cylinder. Detailed implementation manners
[0029] The present utility model will be described in detail below with reference to the drawings and in conjunction with embodiments. It should be noted that, without conflict, the embodiments and features in the present application can be combined with each other.
[0030] The following detailed descriptions are all exemplary descriptions, aiming to provide further detailed descriptions of the present utility model. Unless otherwise specified, all technical terms adopted by the present utility model have the same meaning as commonly understood by those of ordinary skill in the technical field to which the present application belongs. The terms used in the present utility model are only for describing specific implementation manners, and are not intended to limit the exemplary implementation manners according to the present utility model.
[0031] As Figures 1-3 shown, a fruit gathering device includes
[0032] An opening ring 1, and the opening ring 1 is a rigidly shaped ring;
[0033] A bag body 2, the bag body 2 is conical, and a first opening 3 is provided at the larger diameter end of the bag body 2. The first opening 3 is connected to the opening ring 1 for collecting fruits; a second opening is provided at the smaller diameter end of the bag body 2 for outputting fruits;
[0034] A switch closing component is provided at the second opening for closing or opening the second opening.
[0035] Specifically, the opening ring 1 is a rigidly shaped ring, and its design uses high-strength plastic or metal materials, such as stainless steel or aluminum alloy, to ensure the stability and durability of the structure. The diameter of the opening ring 1 can be adjusted according to different tree trunk sizes to adapt to different sizes of trees.
[0036] The bag body 2 is designed as a conical structure, and its larger diameter end is fixedly connected to the opening ring 1 to form the first opening 3. The material of the bag body 2 is selected as a durable and lightweight fabric, such as nylon or polyester fiber, for easy carrying and cleaning. The conical design helps the fruits to slide smoothly inside the bag body 2, reducing the resistance during the collection process.
[0037] The first opening 3 is the part where the bag body 2 is connected to the opening ring 1. Its edge can be connected to the opening ring 1 by stitching, gluing or mechanical fixing to ensure the firmness of the connection. The size of the first opening 3 should be designed slightly larger than the inner diameter of the opening ring 1 to ensure that the fruit can smoothly enter the bag body 2.
[0038] The smaller-diameter end of the bag body 2 forms a second opening, which is equipped with a switch closure component. The switch closure component can be a zipper, Velcro, button or reusable clip, so that the operator can quickly close or open the second opening according to needs to control the output of the fruit.
[0039] When using this fruit gathering device, the operator first fixes the opening ring 1 on the tree trunk to ensure that the bag body 2 is suspended at an appropriate position. Subsequently, the operator can use a handheld tool 5 or a natural way to make the fruit fall into the bag body 2. When the bag body 2 is full of fruit, the operator opens the switch closure component of the second opening and dumps the fruit into a designated container or location.
[0040] The advantages of this fruit gathering device lie in its simple operation process and high collection ability. The design of the rigidly shaped opening ring 1 and the conical bag body 2 ensures the stability of the device and the efficiency of fruit collection. The switch closure component of the second opening provides a convenient way to output the fruit, reducing the workload of the operator.
[0041] The rigid shaping of the opening ring 1 can be achieved by injection molding, metal stamping or 3D printing and other processes. The specific process selection depends on material characteristics and cost-effectiveness. The conical structure of the bag body 2 can be achieved by cutting and stitching fabrics to ensure that its shape and size meet the design requirements.
[0042] This fruit gathering device is not only suitable for collecting small fruits such as mountain apricots, but also can be adapted to collect other types of fruits, such as cherries, plums, etc. by adjusting the size of the opening ring 1 and the material of the bag body 2. In addition, the design of this device allows it to be used in orchards of different scales, from small family orchards to large commercial orchards.
[0043] As a preferred example, the first opening 3 is connected along the border of the opening ring 1.
[0044] Specifically, the connection of the first opening 3 along the border of the opening ring 1 means that the edge of the first opening 3 of the bag body 2 is closely connected to the edge of the opening ring 1, forming a seamless transition area to ensure the smooth introduction of the fruit during the collection process.
[0045] To achieve this connection, the edge of the first opening 3 of the bag body 2 can be heat-treated or chemically treated to enhance the durability of the edge and prevent wear. In addition, the edge can be designed as a rolled edge or a hem to provide additional strength and protection.
[0046] A variety of materials can be used to connect the first opening 3 and the opening ring 1, including but not limited to high-strength sutures, adhesives, welding materials, or other mechanical connectors. When selecting the connecting material, its compatibility with the materials of the bag body 2 and the opening ring 1 and its durability in the expected usage environment should be considered.
[0047] If a suturing method is used for connection, single-needle or double-needle suturing techniques can be employed to ensure the uniformity and strength of the connection. The suture can be made of absorbable or non-absorbable material, depending on the expected service life and maintenance requirements of the device.
[0048] Adhesive connection is an alternative without sutures and is suitable for occasions where external sutures are not desired to affect the appearance or function. Hot melt adhesives, solvent adhesives, or other types of adhesives can be used to ensure the firmness and weather resistance of the adhesion.
[0049] For the metal opening ring 1, welding technology can provide a very firm connection method. Welding can be fusion welding or pressure welding, depending on the type of material and the capabilities of the welding equipment.
[0050] Mechanical connections such as using snaps, zippers, or buttons can provide a way for quick connection and disconnection, facilitating the replacement or cleaning of the bag body 2.
[0051] Considering the different environmental conditions that may be encountered during the collection process, the connection part should be designed to resist the intrusion of moisture, dust, and other potential pollutants.
[0052] The ease of maintenance of the connection part should be considered during design. For example, if sutures are used for connection, it should be ensured that the sutures can be easily inspected and replaced. If adhesives are used, types that are easy to clean and re-bond should be selected.
[0053] As a preferred example, the diameter of the first opening 3 is the maximum diameter of the bag body 2, and the diameter of the opening ring 1 is equal to the diameter of the first opening 3.
[0054] Specifically, the diameter of the first opening 3 is the maximum diameter of the bag body 2, ensuring that when the bag body 2 is connected to the opening ring 1, its maximum diameter part exactly matches the diameter of the opening ring 1. This design enables the bag body 2 to remain stable when hanging and reduces swaying or tilting caused by size mismatch.
[0055] The diameter of the opening ring 1 is equal to the diameter of the first opening 3. The opening ring 1 can be made of metal materials such as stainless steel or aluminum alloy, and high-precision processing techniques such as numerical control cutting or laser cutting are used to ensure the accuracy of its diameter. The material and processing method of the opening ring 1 should ensure its durability and corrosion resistance under different environmental conditions.
[0056] The bag body 2 is designed to be conical, with its maximum diameter located at the top of the bag body 2 and connected to the opening ring 1. The material of the bag body 2 can be a durable fabric, such as nylon or polyester fiber, which are not only lightweight but also have good abrasion resistance and tear resistance. The conical design of the bag body 2 helps the fruits to slide smoothly inside the bag body 2, reducing the resistance during the collection process.
[0057] The connection between the first opening 3 and the opening ring 1 can be achieved in various ways, such as sewing, bonding, or mechanical connection. For sewing, high-strength sewing threads can be used to ensure the firmness of the connection. For bonding, adhesives with high temperature resistance and weather resistance can be used to ensure the stability of the connection under various environmental conditions. Mechanical connections such as using snaps or zippers can provide the convenience of quick connection and disconnection.
[0058] When using this fruit collection device, the operator first fixes the opening ring 1 on the tree trunk to ensure that the bag body 2 is suspended in the appropriate position. Subsequently, the operator can use a handheld tool 5 or natural means to make the fruits fall into the bag body 2. Since the diameter of the first opening 3 is equal to the maximum diameter of the bag body 2, the fruits can smoothly enter the bag body 2, reducing the scattering and loss of fruits during the collection process.
[0059] The design advantage of this fruit collection device lies in the compactness of its structure and the simplicity of its operation. The size-matching design ensures the stability of the device when suspended, reducing the swing or tilt caused by size mismatch. This design also helps to improve the efficiency and accuracy of fruit collection.
[0060] The diameter of the opening ring 1 can be precisely controlled in various ways, such as through precision machining or 3D printing technology. The conical structure of the bag body 2 can be achieved by cutting and sewing the fabric to ensure that its shape and size meet the design requirements.
[0061] The design of this fruit collection device allows it to be used in orchards of different scales, from small family orchards to large commercial orchards. By adjusting the sizes of the opening ring 1 and the bag body 2, it can adapt to the fruit collection needs of different sizes and types.
[0062] As a preferred example, it also includes a support frame 4. The support frame 4 is arranged on the side of the opening ring 1, and there are multiple groups of the support frame 4 for supporting the opening ring 1.
[0063] Specifically, the main function of the support frame 4 is to firmly support the opening ring 1, ensuring that the bag body 2 maintains the appropriate shape and position during fruit collection, and reducing the swing caused by wind or fruit falling.
[0064] The support frame 4 is arranged on the side of the opening ring 1 and can be evenly distributed on the circumference of the opening ring 1 to provide omnidirectional support. The position of the support frame 4 can be adjusted according to the size and shape of the opening ring 1 to adapt to different usage environments.
[0065] The support frame 4 can be made of materials such as metal rods, plastic pipes or carbon fiber rods. These materials have sufficient strength and rigidity while remaining lightweight. The support frame 4 can be designed in a straight rod or curved shape to adapt to different support requirements.
[0066] There are multiple groups of the support frame 4, and the specific number can be determined according to the size of the opening ring 1 and the weight of the harvested fruits. Multiple groups of the support frame 4 can provide more uniform and stable support force to prevent the device from tilting or deforming during use.
[0067] The support frame 4 can be connected to the opening ring 1 by means of welding, bolt connection, fixture fixation or bonding. The choice of connection method should consider the convenience of disassembly of the device and the firmness of the connection.
[0068] To adapt to tree trunks of different sizes, the support frame 4 can be designed with an adjustable length. This design can be achieved through telescopic rods, hinge connections or adjustable buckles.
[0069] The bottom of the support frame 4 can be designed with anti-slip pads or spikes that can be inserted into the ground to increase the friction with the ground and prevent the device from sliding or tipping over during use.
[0070] The material selection should consider the durability, weight and cost of the support frame 4. Metal rods and plastic pipes are common choices, while carbon fiber rods provide higher strength and rigidity but may have a higher cost.
[0071] The design of the support frame 4 should facilitate cleaning and maintenance. For example, if a metal support frame 4 is used, an anti-rust coating or material should be adopted to extend its service life.
[0072] As a preferred example, the support frame 4 is a telescopic support.
[0073] Specifically, the design of the telescopic support aims to provide adjustability to adapt to tree trunks or support surfaces of different diameters. This design allows users to adjust the length of the support frame 4 according to actual needs to ensure the stability and adaptability of the device.
[0074] The telescopic support can be implemented by various mechanisms, such as screw type, spring type or segmented telescopic type. The screw type telescopic support adjusts the length by rotating components; the spring type telescopic support utilizes the elasticity of the spring to achieve telescoping; the segmented telescopic type adjusts the length through an internally nested tubular structure.
[0075] The material of the telescopic support should have sufficient strength and rigidity while remaining lightweight. Common materials include aluminum alloy, stainless steel, or high-strength plastic. The material selection should take into account cost, weight, and corrosion resistance.
[0076] The telescopic support should be equipped with a reliable locking mechanism to fix the adjusted length. The locking mechanism can be a snap type, screw type, or ratchet type to ensure that the support does not accidentally expand or contract during use.
[0077] The design of the telescopic support should facilitate quick length adjustment by the user. The adjustment process should be simple and intuitive without the need for additional tools to improve usability.
[0078] The telescopic support should provide stable support force after being fully extended. The design of the support should avoid bending or deformation under heavy loads.
[0079] Connecting component: The connecting component between the telescopic support and the opening ring 1 should be designed to be easy to install and disassemble while ensuring the firmness of the connection.
[0080] As a preferred example, the opening ring 1 is a circular telescopic ring. Fixed parts are provided at both ends of the opening ring 1 for splicing and fixing the two ends of the opening ring 1 when the opening ring 1 is opened, so that the opening ring 1 forms a ring shape.
[0081] Specifically, the opening ring 1 is designed as a circular telescopic ring. This design allows the opening ring 1 to contract when not in use, facilitating carrying and storage. When in need of use, it can be expanded into a ring shape to adapt to tree trunks of different diameters.
[0082] The circular telescopic ring can be realized by various mechanisms, such as a spring mechanism, a locking mechanism, or a telescopic tubular structure. The spring mechanism utilizes the elasticity of the spring to achieve expansion and contraction; the locking mechanism controls expansion and contraction through locking and unlocking; the tubular structure adjusts the length through internally nested tubular components.
[0083] Fixed parts are provided at both ends of the opening ring 1. The fixed parts can be hooks, clips, snaps, or other types of connectors. These fixed parts can splice and fix the two ends when the opening ring 1 is expanded, ensuring that the opening ring 1 forms a stable ring-shaped structure.
[0084] The connection between the fixed part and the opening ring 1 can be made by welding, bolt connection, adhesion, or snap connection, etc. The choice of connection method should consider the firmness and detachable nature of the fixed part for easy maintenance and replacement.
[0085] The design of the fixed part should facilitate user operation, whether for splicing and fixing or disassembling. The operation process should be simple and intuitive without the need for additional tools to improve usability.
[0086] The material of the opening ring 1 should have sufficient strength and rigidity while remaining lightweight. Common materials include stainless steel, aluminum alloy, or high-strength plastic. The material selection should take into account cost, weight, and corrosion resistance.
[0087] As a preferred example, the bag body 2 and the opening ring 1 are detachably connected.
[0088] Specifically, the detachable connection design between the bag body 2 and the opening ring 1 is intended to provide convenient installation, disassembly, and maintenance, while allowing for the quick replacement of the bag body 2, improving the flexibility and economy of the device's use.
[0089] The connection between the bag body 2 and the opening ring 1 can adopt various detachable mechanisms, such as zippers, Velcro, buttons, snaps, or detachable stitching. These mechanisms should be designed to be easy to operate while ensuring the firmness of the connection.
[0090] If a zipper is selected as the connection mechanism, the zipper should be able to completely cover the connection edge between the bag body 2 and the opening ring 1 to provide a sealed connection. The material of the zipper should be chosen as durable and waterproof materials, such as nylon or polyester.
[0091] The Velcro connection provides a quick and easy-to-operate connection method. The stickiness of the Velcro should be strong enough to ensure that it does not accidentally come apart during the fruit collection process.
[0092] The button or snap connection mechanism should be designed to withstand the pulling force of the bag body 2 during fruit collection. The connecting parts should be chosen from wear-resistant materials, such as plastic or metal.
[0093] If stitching is used as the connection mechanism, the stitching should be selected from high-strength materials, such as nylon or polyester. The stitching can be designed as an easily detachable structure for the easy replacement of the bag body 2.
[0094] Regardless of which connection mechanism is chosen, the firmness of the connection should be ensured to prevent the bag body 2 from falling off due to loose connection during the fruit collection process.
[0095] The ease of maintenance of the connection part should be considered during design. For example, if zippers or Velcro are used, it should be ensured that these components can be easily inspected and replaced. If stitching is used, it should be designed as an easily detachable structure.
[0096] As a preferred example, the second opening is connected to an output cylinder 6 for forming an output channel.
[0097] Specifically, the main function of the output cylinder 6 is to serve as a channel for the fruit to output from the bag body 2, ensuring that the fruit can be smoothly exported from the bag body 2 for easy collection and transportation.
[0098] The connection between the output tube 6 and the second opening can be fixed or detachable. The fixed connection can be achieved by welding, bonding or integrated molding; the detachable connection can be achieved by thread, buckle or quick release mechanism.
[0099] The output cylinder 6 can be a straight cylinder or a curved design to adapt to different usage scenarios and operational convenience. The cylinder body can be designed as a single-layer structure or a multi-layer structure to increase strength and durability.
[0100] The material of the output cylinder 6 should have good wear resistance and impact resistance, and common materials include plastic, metal or synthetic materials. The selection of materials should take into account cost, weight and durability.
[0101] The size of the output tube 6 should match the size of the second opening to ensure that the fruit can pass smoothly. The diameter and length of the tube can be designed according to the size of the fruit and the expected collection amount.
[0102] The output tube 6 can be designed to be flexible or retractable to adapt to different collection angles and distances. This design can be achieved by a built-in spring mechanism or a retractable tubular structure.
[0103] The design of the output tube 6 should be convenient for user operation, and whether it is a fixed or detachable connection, it should ensure that the user can easily install and remove it.
[0104] As a preferred example, a handheld tool 5 is also included for knocking down fruits.
[0105] Specifically, the main function of the handheld tool 5 is to assist the operator in knocking down the fruits from the tree, especially when the fruits are densely packed or difficult to be picked directly by hand.
[0106] The handheld tool 5 can be a long pole, and the top is equipped with a device for knocking down the fruit, such as a cushion, a hook or a brush. The material of the long pole can be an aluminum alloy, carbon fiber or glass fiber to ensure lightness and strength.
[0107] The design of the top device should take into account the protection of the fruit to avoid damage to the fruit during the knocking process. The cushion can be made of foam, rubber or silicone material, and the hook and brush can be made of plastic or metal.
[0108] The connection between the handheld tool 5 and the top device can be fixed or replaceable. The fixed connection can be achieved by welding or bonding; the replaceable connection can be achieved by a quick buckle or a threaded interface.
[0109] The length and weight of the hand-held tool 5 should be designed to be convenient for the operator to use and not easy to get tired. The length of the tool and the weight of the top device can be determined according to the average height and strength level of the operator.
[0110] To adapt to trees of different heights, the hand-held tool 5 can be designed to be telescopic, and its length can be adjusted through an internally nested tubular structure or a telescopic rod.
[0111] The material and manufacturing process of the hand-held tool 5 should ensure durability and be able to withstand wear and impact during long-term use.
[0112] As a preferred example, a placement part is provided on the open ring 1 for placing the hand-held tool 5.
[0113] Specifically, the placement part is specially designed for temporarily storing the hand-held tool 5, so that during the fruit collection process, the tool is easily accessible and will not be lost or cause inconvenience.
[0114] The placement part is provided on the open ring 1 and can be located at the top, side or bottom of the open ring 1. The specific position depends on the convenience of use and the optimization of the space layout.
[0115] The placement part can be in the form of a hook, clip, slot or sleeve, etc. The design should ensure that the hand-held tool 5 can be stably placed and is easy to pick up.
[0116] The design of the placement part should take into account the diversity of the hand-held tool 5 and be able to adapt to tools of different shapes and sizes to provide versatility.
[0117] The placement part can be an integral part of the open ring 1 and is fixed by integral molding or welding; it can also be an additional component and is fixed to the open ring 1 by bolts, buckles or adhesives.
[0118] An embodiment of the usage method of the present utility model is as follows:
[0119] Before using the fruit gathering device, check whether all components are complete, including the open ring 1, the bag body 2, the support frame 4, the telescopic support (if applicable), the output cylinder 6 (if applicable), and the hand-held tool 5 (if applicable).
[0120] Connect the bag body 2 to the open ring 1 through a detachable connection mechanism (such as a zipper, Velcro, etc.). If the device includes a telescopic support, adjust it to an appropriate length and lock it to adapt to the diameter of the tree trunk. Fix the support frame 4 on the side of the open ring 1 to support the entire device.
[0121] Position the assembled fruit gathering device under the target fruit tree. Adjust the height and angle of the open ring 1 as needed to ensure that the bag body 2 can cover the area where the fruits are concentrated.
[0122] Use the support frame 4 to fix the open ring 1 to the tree trunk or the ground to ensure the stability of the device and prevent swaying caused by wind or fruit falling.
[0123] If the fruit cannot naturally fall into the bag body 2, use the handheld tool 5 to gently knock down the fruit or the tree trunk. Place the handheld tool 5 on the specially provided placement part on the opening ring 1 for easy access.
[0124] After the fruit is ripe, it falls naturally or is assisted by the handheld tool 5 to fall into the bag body 2. The design of the bag body 2 should ensure that the fruit can be safely collected with reduced damage.
[0125] When a certain amount of fruit is collected in the bag body 2, an output channel is formed through the output cylinder 6 connected by the second opening, and the fruit is poured into a designated container or location.
[0126] After collection, disassemble the bag body 2 and the opening ring 1, and clean and maintain the device as needed. Ensure that all components are dried and properly stored for future use.
[0127] As is known by common technical knowledge, the present utility model can be implemented by other embodiments without departing from its spiritual essence or essential features. Therefore, the above-disclosed embodiments are illustrative in all aspects and not exclusive. All changes within the scope of the present utility model or within the scope equivalent to the present utility model are encompassed by the present utility model.
Claims
1. A fruit gathering device, characterized in that, Comprising, An opening ring (1), the opening ring (1) being a rigid shaped ring; A bag body (2), the bag body (2) being conical, a first opening (3) being provided at the larger diameter end of the bag body (2), the first opening (3) connecting the opening ring (1) for collecting fruits; a second opening being provided at the smaller diameter end of the bag body (2) for outputting fruits; A switch closing member is provided at the second opening for closing or opening the second opening.
2. The fruit clustering device according to claim 1, wherein, The first opening (3) is connected along the border of the opening ring (1).
3. The fruit assembling device according to claim 1, wherein The diameter of the first opening (3) is the maximum diameter of the bag body (2), and the diameter of the opening ring (1) is equal to the diameter of the first opening (3).
4. A fruit aggregation device according to claim 1, characterized in that, It further comprises a support frame (4), the support frame (4) being provided at the side of the opening ring (1), there being multiple groups of the support frame (4) for supporting the opening ring (1).
5. The fruit assembling device according to claim 4, characterized in that, The support frame (4) is a telescopic support frame.
6. The fruit gathering device according to claim 1, wherein The opening ring (1) is a ring-shaped telescopic ring, fixing parts being provided at both ends of the opening ring (1) for splicing and fixing both ends of the opening ring (1) when the opening ring (1) is opened, so that the opening ring (1) forms a ring shape.
7. The fruit gathering device according to claim 1, characterized in that The bag body (2) and the opening ring (1) are detachably connected.
8. A fruit gathering device according to claim 1, wherein, The second opening is connected with an output cylinder (6) for forming an output channel.
9. The fruit gathering device according to claim 1, characterized in that, It further comprises a hand tool (5) for knocking down fruits.
10. A fruit gathering device according to claim 9, characterized in that, A placement part is provided on the opening ring (1) for placing the hand tool (5).