Multi-functional bait generating apparatus

CN224761140UActive Publication Date: 2026-09-18CHONGQING JUNYU ENVIRONMENTAL PROTECTION ENG CO LTD
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Patent Information

Application Number
CN202521891017.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-02
Publication Date
2026-09-18
Estimated Expiration
2035-09-02

AI Technical Summary

Technical Problem

[0004]有鉴于此,本实用新型提供了一种多功能饵料生成装置,以解决现有技术中,饵料生成装置作用单一,影响钓鱼活动体验感的问题

Benefits of technology

[0021] The multifunctional bait generating device provided by this utility model integrates two or more bait processing mechanisms, such as a bait grinding mechanism and a powdering mechanism, along with a power supply and transmission components into one unit. This not only meets the needs and efficiency of generating various baits, but also makes it easy to carry, reduces the probability of missing bait, and greatly improves the fishing experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a kind of multifunctional bait generating device, including cabinet, at least be provided with twisting material mechanism and powder mechanism on the cabinet, drive component is arranged in the cabinet, power supply for drive component, and transmission assembly connected with drive component, the drive component works by transmission assembly drive twisting material mechanism and powder mechanism.Adopt above scheme, twisting material mechanism, powder mechanism and above two kinds of bait processing mechanism, and power and transmission assembly integration, so as to meet the generation demand and generation efficiency of multiple bait, it is convenient to carry, reduce the probability of omission, it is favorable to greatly improve the experience of fishing activity.
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Description

Technical Field

[0001] This utility model belongs to the field of fishing tackle, specifically relating to a multifunctional bait generating device. Background Technology

[0002] Fish bait is the food used to lure fish when fishing. To attract different types of fish, the formula, pellet size, and particle size are adjusted to control the atomization speed and retention time in the water. The main components of these baits are plant-based and meat-based. Plant-based baits usually need to be ground into powder or pellets and then mixed, while meat-based baits need to be minced. Fishing enthusiasts often need to use a variety of different baits in rotation or combination during fishing trips or competitions.

[0003] Currently, the common practice is for fishing enthusiasts to bring a power bank, as well as multiple devices such as a pellet grinder and a food processor, and then choose the appropriate one on-site based on the specific needs. The applicant found in practice that using multiple devices increases the space occupied by their belongings, and also increases the risk of forgetting or losing them, thus reducing the overall enjoyment of the fishing activity. Utility Model Content

[0004] In view of this, the present invention provides a multifunctional bait generating device to solve the problem that the existing bait generating devices have a single function, which affects the fishing experience.

[0005] The technical solution is as follows:

[0006] A multifunctional bait generating device includes a housing, the key feature of which is that: the housing is provided with at least a feeding mechanism and a powdering mechanism, a driving component is provided inside the housing, a power supply for the driving component, and a transmission component connected to the driving component, the driving component drives the feeding mechanism and the powdering mechanism to work through the transmission component.

[0007] By adopting the above solution, two or more bait processing mechanisms can be set up on one machine at the same time, and the power supply and transmission components can be integrated into one unit. This not only meets the needs of generating multiple baits, but also makes the machine easy to carry, reduces the probability of missing bait, and thus improves the fishing experience.

[0008] Preferably, the driving component is a motor, and there is only one. Using a single motor drive reduces the overall weight, facilitates loading and carrying, and further improves practicality.

[0009] Preferably, the transmission assembly includes a meshing worm gear and a worm, either of which is connected to the drive component. When the transmission assembly is working, the worm gear and worm provide rotational momentum to the material feeding mechanism and the powder feeding mechanism, respectively. With this design, the transmission assembly primarily uses a worm gear structure, which facilitates the layout of the two mechanisms and ensures good overall stability during operation.

[0010] Preferably, the material feeding mechanism includes a working sleeve A and a spiral feeding shaft A rotatably supported inside the working sleeve A. The upper side of the working sleeve A has a discharge hopper A, and the far end of the working sleeve A has a discharge hole.

[0011] A cutting blade is provided on the spiral feeding shaft A or inside the working sleeve A. The cutting blade is located near the far end of the working sleeve A, and the near end of the spiral feeding shaft A has a connection structure that cooperates with the transmission assembly.

[0012] Preferably, the powder mechanism includes a working sleeve B and a spiral feeding shaft B rotatably supported inside the working sleeve A, with a discharge hopper B on the upper side of the working sleeve B.

[0013] The working sleeve B is equipped with a grinding disc assembly, and a discharge port is provided on its lower side corresponding to the grinding disc assembly. The near end of the spiral feeding shaft B has a connection structure that cooperates with the transmission assembly.

[0014] Preferably, the housing is formed by a bottom plate, a rear baffle, and a surrounding plate, wherein the rear side and bottom of the surrounding plate are open, and a base is fixedly provided on the bottom plate. The base has at least a first support surface and a second support surface, and the first support surface and the second support surface are respectively used to install the drive component and the transmission component.

[0015] Preferably, the power source is a rechargeable power source and is equipped with a power cord, and the casing has a power cord storage cavity. This design improves the overall compactness.

[0016] Preferably, the front side of the housing is provided with a switch and a power display screen.

[0017] Preferably, the top of the housing has a handle, which further improves portability.

[0018] Preferably, the housing has heat dissipation holes;

[0019] The powder handling mechanism is located at the rear of the housing, the snagging mechanism is located beside the housing and near the center, the drive unit is near the bottom of the housing, and the power supply is near the front of the housing. This layout improves overall stability during both stationary and operational periods, and extends service life.

[0020] Compared with the prior art, the beneficial effects of this utility model are:

[0021] The multifunctional bait generating device provided by this utility model integrates two or more bait processing mechanisms, such as a bait grinding mechanism and a powdering mechanism, along with a power supply and transmission components into one unit. This not only meets the needs and efficiency of generating various baits, but also makes it easy to carry, reduces the probability of missing bait, and greatly improves the fishing experience. Attached Figure Description

[0022] Figure 1 This is a schematic diagram of the structure of this utility model;

[0023] Figure 2 for Figure 1 Rear structure diagram;

[0024] Figure 3 for Figure 1 Bottom structure diagram;

[0025] Figure 4 This is a schematic diagram of the internal structure of this utility model;

[0026] Figure 5 for Figure 4 Side view diagram;

[0027] Figure 6 for Figure 4 Top view;

[0028] Figure 7 This is a schematic diagram of the enclosure structure;

[0029] Figure 8 This is a sectional view of the winnowing mechanism;

[0030] Figure 9 This is a cross-sectional view of the powder material mechanism. Detailed Implementation

[0031] The present invention will now be described in further detail with reference to the accompanying drawings.

[0032] refer to Figure 1 and Figure 9 The multifunctional bait generating device shown mainly includes a housing 100, on which at least a grinding mechanism 200 and a powdering mechanism 300 are provided. Inside the housing 100, there is a drive component 400, a power supply 600 for supplying power to the drive component 400, and a transmission component 500 connected to the drive component. The drive component 400 drives the grinding mechanism 200 and the powdering mechanism 300 to work through the transmission component. The grinding mechanism 200 is mainly used to grind meat raw materials to make corresponding bait, while the powdering mechanism 300 is mainly used to grind raw materials to form fine particles or powdered bait.

[0033] As shown in the figure, in this embodiment, the housing 100 is formed by a base plate 110, a rear baffle 120, and a surrounding plate 130. The rear side and bottom of the surrounding plate 130 are open. A base 140 is fixedly installed on the base plate 110. A shock-absorbing pad is provided between the base 140 and the base plate 110. The base 140 has at least a first support surface 141 and a second support surface 142. The first support surface 141 and the second support surface 142 are used to install the drive component 400 and the transmission component 500, respectively. In specific implementation, the surrounding plate 130 and the base plate 110, and the rear baffle 120 and the surrounding plate 130 are fastened with screws.

[0034] To fully improve the portability of the device, in this embodiment, the driving component 400 is a motor, and there is only one, that is, a single motor is used to drive the snagging mechanism 200 and the powder mechanism 300 to work, thereby reducing the weight of the whole machine and shrinking its size.

[0035] Based on a single-motor structure, the transmission assembly 500 includes a meshing worm gear 510 and a worm 520. Either the worm gear 510 or the worm 520 is connected to the drive component 400. When the transmission assembly 500 is working, the worm gear 510 and the worm 520 provide rotational momentum to the material feeding mechanism 200 and the powder feeding mechanism 300, respectively. Specifically, the axes of the worm gear 510 and the worm 520 are orthogonally arranged. In this embodiment, the worm 520 extends to form a first transmission shaft, while the worm gear 510 has a second transmission shaft 511 coaxially arranged with it. As shown in the figure, the housing 100 has a base 140. The worm gear 510 and the worm 520 are rotatably supported on the second support surface 142 of the base 140 via bearings. The second support surface 142 is located above the first support surface 141, while the motor is fixed to the first support surface 141. In specific implementation, the worm 520 and the motor are driven by a synchronous belt.

[0036] Key reference Figure 2 , Figure 5 , Figure 7 and Figure 8 The material feeding mechanism 200 mainly includes a working sleeve A210 and a spiral feeding shaft A220 rotatably supported inside the working sleeve A210. The upper side of the working sleeve A210 has a discharge hopper A230, and the far end of the working sleeve A210 has a discharge hole 211. A cutting blade 240 is provided on the spiral feeding shaft A220 or inside the working sleeve A210. The cutting blade 240 is close to the far end of the working sleeve A210, and the near end of the spiral feeding shaft A220 has a connection structure that cooperates with the transmission assembly.

[0037] As shown in the figure, in specific implementation, the discharge hopper A230 is located in the middle and rear part of the conveying direction of the screw feed shaft A220. The working sleeve A210 and the housing 100 can be fixed by a quick-locking structure or by a screw fastening structure. The enclosure plate 130 has a through hole 131 at the position opposite to the second drive shaft 511. The end of the second drive shaft 511 near the through hole 131 has a countersunk hole. At the same time, the near end of the screw feed shaft A220 has an insertion part that matches the polygonal countersunk hole. When the working sleeve A210 is fixed relative to the housing 100, the insertion part can be inserted into the polygonal countersunk hole. In this way, when the worm gear rotates, it can synchronously drive the screw feed shaft A220 to rotate and work.

[0038] A cutting blade 240 is installed at the far end of the spiral feeding shaft A220. Together with the cutting blade 240 on the inner wall of the working sleeve A210, the meat material can be cut and then extruded through the discharge hole 211 at the end.

[0039] To facilitate the installation and cleaning of internal components, the working sleeve A210 adopts a detachable end cap A250. The end cap A250 and the cylinder of the working sleeve A210 are connected by a thread, and the discharge hole 211 is directly formed on the end cap A250.

[0040] Key reference Figure 2 , Figure 3 and Figure 9 The powder feeding mechanism 300 mainly includes a working sleeve B310 and a spiral feeding shaft B320 rotatably supported inside the working sleeve B310. The upper side of the working sleeve B310 has a discharge hopper B330, and the working sleeve B310 is equipped with a grinding disc assembly. This structure is similar to the existing grinding mill structure and mainly includes two grinding discs arranged opposite each other. The lower side of the working sleeve B310 is provided with a discharge port 311 corresponding to the grinding disc assembly. The near end of the spiral feeding shaft B320 has a connection structure that cooperates with the transmission assembly.

[0041] As shown in the figure, one grinding disc is fixed inside the working sleeve B310. This fixed grinding disc has a through hole for the spiral feeding shaft B320 and the material to pass through. The other grinding disc is fixed on the spiral feeding shaft B320. The discharge hopper B330 is close to the middle of the spiral feeding shaft B320. The spiral feeding shaft B320 and the worm 520 are connected to each other by a connecting rod 340. That is, the ends of the worm 520 and the ends of the spiral feeding shaft B320 have polygonal countersunk holes that are compatible with the connecting rod 340. During installation, the connecting rod 340 is inserted into the countersunk hole of the worm 520, and then the spiral feeding shaft B320 is aligned and inserted with the connecting rod 340. Finally, the working sleeve B310 is fixed to the machine housing. In this embodiment, screws are used for fixing.

[0042] refer to Figures 3 to 5 In this embodiment, the power supply 600 is a rechargeable power supply and is equipped with a power cord 610. The housing 100 has a power cord storage cavity 150. In specific implementation, the power cord storage cavity 150 is set on the bottom plate 110 and its opening faces downward. Based on this structure, the lower edge of the bottom plate 110 and the surrounding plate 130 has a notch for the power cord to pass through, which can prevent the power cord from being squeezed when it is pulled out.

[0043] The power supply charging and discharging and motor control module 700 can be directly fixed on the outside of the power cord storage cavity 150. Meanwhile, the base 140 has a third support surface 143, and the power supply 600 is fixed on the third support surface 143. This makes the height of the internal components almost flush, improves the overall compactness, and helps to reduce the size and space occupation.

[0044] For ease of operation, a switch 160 and a power display screen 170 are provided on the front side of the housing 100.

[0045] In addition, the top of the housing 100 has a handle 180, and the housing 100 has heat dissipation holes, which are mainly located at the position of the motor.

[0046] As shown in the figure, in this embodiment, the powder mechanism 300 is located on the rear side of the housing 100, the snagging mechanism 200 is located on the side of the housing 100 and close to the middle, the drive component 400 is close to the bottom of the housing 100, and the power supply 600 is close to the front of the housing 100. The overall weight distribution is balanced, which is more conducive to improving its working stability.

[0047] refer to Figures 1 to 9 The multi-functional bait generator shown typically has its power cord 610 stored in the power cord storage cavity 150 during normal use or storage. To charge, simply pull the power cord 610 out of the power cord storage cavity 150. When bait needs to be prepared, place the raw materials into the corresponding feeding hopper, and then start the motor via switch 160.

[0048] Finally, it should be noted that the above description is merely a preferred embodiment of the present utility model. Those skilled in the art, under the guidance of the present utility model, can make various similar representations without departing from the spirit and claims of the present utility model, and such modifications all fall within the protection scope of the present utility model.

Claims

1. A multi-functional bait generating apparatus comprising a housing (100), characterised in that: The housing (100) is provided with at least a material snagging mechanism (200) and a powdering mechanism (300). Inside the housing (100) are a drive component (400), a power supply (600) for supplying power to the drive component (400), and a transmission assembly (500) connected to the drive component. The drive component drives the material snagging mechanism (200) and the powdering mechanism (300) to work through the transmission assembly.

2. The multi-functional bait generating apparatus according to claim 1, characterized by: The drive component (400) is a motor, and there is one and only one.

3. The multifunctional bait generating device according to claim 2, characterized in that: The transmission assembly (500) includes a worm wheel (510) and a worm (520) that mesh with each other. Either the worm wheel (510) or the worm (520) is connected to the drive component (400) for transmission. When the transmission assembly (500) is working, the worm wheel (510) and the worm (520) provide rotational momentum to the material winnowing mechanism (200) and the powdering mechanism (300), respectively.

4. The multi-functional bait generating apparatus according to any one of claims 1 to 3, characterized by: The material feeding mechanism (200) includes a working sleeve A (210) and a spiral feeding shaft A (220) rotatably supported in the working sleeve A (210). The upper side of the working sleeve A (210) has a discharge hopper A (230), and the far end of the working sleeve A (210) has a discharge hole (211). A cutting blade (240) is provided on the spiral feeding shaft A (220) or inside the working sleeve A (210). The cutting blade (240) is located near the far end of the working sleeve A (210), and the near end of the spiral feeding shaft A (220) has a connection structure that cooperates with the transmission assembly.

5. The multi-functional bait generating apparatus according to any one of claims 1 to 3, characterized by: The powder mechanism (300) includes a working sleeve B (310) and a spiral feeding shaft B (320) rotatably supported in the working sleeve B (310). The upper side of the working sleeve B (310) has a discharge hopper B (330). The working sleeve B (310) is provided with a grinding disc assembly, and a discharge port (311) is provided on its lower side corresponding to the grinding disc assembly. The near end of the spiral feeding shaft B (320) has a connection structure that cooperates with the transmission assembly.

6. The multi-functional bait generating apparatus according to claim 3, wherein: The housing (100) is formed by a base plate (110), a rear baffle (120) and a surrounding plate (130), wherein the rear side and bottom of the surrounding plate (130) are open, and a base (140) is fixedly provided on the base plate (110). The base (140) has at least a first support surface (141) and a second support surface (142), and the first support surface (141) and the second support surface (142) are respectively used to install the drive component (400) and the transmission component (500).

7. The multi-functional bait generating apparatus according to claim 1, wherein: The power supply (600) is a charging power supply and is equipped with a power cord (610). The housing (100) has a power cord storage cavity (150).

8. The multi-functional bait generating apparatus according to claim 1 or 7, wherein: The front side of the housing (100) is provided with a switch (160) and a power display screen (170).

9. The multi-functional bait generating apparatus according to claim 1, wherein: The top of the housing (100) has a handle (180).

10. The multi-functional bait generating apparatus according to any one of claims 1 to 3, characterized by: The housing (100) has heat dissipation holes distributed on it; The powder mechanism (300) is located on the rear side of the housing (100), the snagging mechanism (200) is located on the side of the housing (100) and near the center, the drive component (400) is near the bottom of the housing (100), and the power supply (600) is near the front side of the housing (100).