A swimming motion type diving decoy
Patent Information
- Application Number
- CN202521067581.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-28
- Publication Date
- 2026-09-04
- Estimated Expiration
- 2035-05-28
AI Technical Summary
但是现有的划水运动鸭子诱饵在动态效果、结构复杂程度、使用方便性方面还存在较大的提升空间
[0021](1)能够模拟真实野鸭潜入水面下滑动鸭脚引起水花的动态效果,加上仿真野鸭外型、颜色,配合多种其他诱饵,更容易吸引猎物的注意和降落水面;
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Figure CN224710377U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of outdoor leisure products technology, and in particular to a diving duck bait for water sports. Background Technology
[0002] With social development and the continuous improvement of people's living standards, participating in outdoor recreational sports has become an indispensable part of people's leisure time. Hunting is one such outdoor recreational activity, and different regions offer hunting opportunities at specific times and in specific areas. In hunting, to attract the attention of prey, artificial bait is prepared and placed in the prey's activity area. However, existing artificial baits are either stationary or have overly simplistic and rigid movements, making them difficult to attract prey's attention and failing to effectively mimic the dynamic effects of wild animals. Therefore, the simulation effect needs improvement.
[0003] In the field of outdoor leisure products, water paddleboarding duck baits, compared to traditional duck baits, not only simulate a duck dipping its head in the water to find food, but also add the action of a duck's feet slapping the water's surface, resulting in a significantly more realistic simulation. However, existing water paddleboarding duck baits still have considerable room for improvement in terms of dynamic effects, structural complexity, and ease of use. Utility Model Content
[0004] The purpose of this invention is to provide a diving duck lure that is simple in structure, easy to use, and has a realistic dynamic effect.
[0005] The technical solution to achieve the purpose of this utility model is: a water-skimming diving duck bait, including a bait shell assembly, a bait base, a control box assembly, two DC geared motor assemblies, two duck foot assemblies, an anti-tipping hammer assembly, eye screws, a remote control, and a charger;
[0006] The bait base is blow-molded and filled with foaming agent to allow it to float on water. A control box and a DC geared motor assembly are installed inside. The bait shell is mounted on the upper surface of the bait base, and the anti-tipping hammer assembly is mounted on the lower surface. The duck-foot assembly is mounted on the side of the bait base and connected to the output of the DC geared motor assembly, rotating clockwise under its drive. Eye bolts are fixed to the bait base to limit the bait's movement. A remote control is used to control the bait's movement. The charger is used to charge the bait.
[0007] Furthermore, the decoy housing assembly includes a decoy housing, a spring clip, a Phillips head pan screw, a hex nut, and a Phillips head pan screw;
[0008] The bait shell is biomimetic in shape to the rear half of a wild duck's body, with two U-shaped grooves on the back, allowing the two duck foot components to be connected to the two DC geared motor components through the two U-shaped grooves; two holes are drilled on each side of the bait shell, and spring clips are fixed to the sides of the bait shell with cross-slot pan head screws and hexagonal nuts, and spring clips are fixed to the bait base with cross-slot pan head self-tapping screws.
[0009] Furthermore, the bait base is blow-molded and filled with foaming agent to make it float on the water surface. It has a control box assembly and a DC geared motor assembly mounting slot inside. The tail is beveled so that the duck foot assembly is installed on the bait base at a set angle to simulate the duck foot movement of a wild duck.
[0010] Furthermore, the control box assembly includes a control box upper cover, a control box lower cover, a sealing gasket, two female magnetic connectors, two sealing rings, two hexagonal nuts for the magnetic connectors, a transparent cover, a receiver, receiver screws, Phillips head countersunk self-tapping screws, and a lithium battery.
[0011] Install the two female magnetic connectors, two hexagonal nuts, and two sealing rings into the top cover of the control box. Fix the transparent cover and receiver to the top cover of the control box with receiver screws. Install the lithium battery into the bottom cover of the control box. After connecting the leads and powering on, assemble the top cover, sealing gasket, and bottom cover of the control box and fix them with Phillips head countersunk self-tapping screws.
[0012] Furthermore, the DC geared motor assembly includes a motor bracket, a cross-slot pan head screw, a magnetic connector male terminal, a motor housing, a motor housing cover, and a DC geared motor;
[0013] Pass the lead wire with the male end of the magnetic connector through the wire hole in the motor housing and solder it to the DC geared motor. Install it into the motor housing, cover it with the motor housing cover, and use cross-slot pan head screws to install the motor housing onto the motor bracket. The motor bracket is then fixed to the DC geared motor assembly mounting slot in the decoy base using cross-slot pan head screws.
[0014] Furthermore, the duck foot assembly includes a connecting block, a shaft pin, a duck foot bracket, a duck foot, a cross-grooved pan head screw, and a hexagonal nut;
[0015] The connecting block is fixed to the shaft end of the DC geared motor by threads; the duck foot bracket is inserted into the connecting block, and the shaft pin is pressed into the shaft pin hole of the duck foot bracket through the waist hole of the connecting block to install the duck foot bracket on the connecting block; the duck foot is fixed to the duck foot bracket by cross-slot pan head screws and hexagonal nuts.
[0016] Furthermore, the anti-tipping hammer assembly includes an anti-tipping hammer base, a D-type locking pin, an outer tube sleeve, a locking nut, an anti-tipping hammer, and a cross-slot pan head screw;
[0017] The anti-tipping hammer base is fixed to the bottom of the bait base by a cross-grooved pan head screw, and the outer tube sleeve is fixed to the anti-tipping hammer base by a D-type locking pin; the locking nut is inserted into the thread at the end of the outer tube sleeve, and the anti-tipping hammer is installed inside the outer tube sleeve by the locking nut.
[0018] Furthermore, the counterweight ball on the anti-tipping hammer is made of lead material, which ensures the balance when the bait flips into the water.
[0019] Furthermore, the remote control can remotely control the start and stop of the bait within a range of ≤60m by controlling the rotation of the DC geared motor on the duck foot assembly, which in turn controls the duck foot assembly to paddle the water surface and splash water, while simultaneously generating a force to make the bait move slowly forward on the water surface; the ON button turns it on and the OFF button turns it off; the remote control is equipped with a remote control protective cover and a lanyard for protecting and hanging the remote control.
[0020] Compared with the prior art, the significant advantages of this utility model are:
[0021] (1) It can simulate the dynamic effect of a real wild duck diving into the water and sliding its feet to cause water splashes. Combined with the simulated wild duck shape and color, and a variety of other baits, it is easier to attract the attention of prey and make them land on the water.
[0022] (2) The structure is simple and the production cost is low. The internal connecting lines have been integrated, making the bait neater and more durable. Attached Figure Description
[0023] Figure 1 This is a schematic diagram of the structure of a water-skimming diving duck bait according to this utility model.
[0024] Figure 2 This is an exploded view of the structure of the water-skimming diving duck bait of this utility model.
[0025] Figure 3 This is a schematic diagram of the control box assembly in this utility model.
[0026] Figure 4 This is a schematic diagram of the DC geared motor assembly in this utility model.
[0027] Figure 5 This is a schematic diagram of the duck foot component in this utility model.
[0028] Figure 6 This is a schematic diagram of the anti-tipping hammer assembly in this utility model.
[0029] Figure 7 This is a schematic diagram of the structure of the remote control in this utility model. Detailed Implementation
[0030] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments.
[0031] like Figure 1 , Figure 2 As shown, this utility model provides a water-skimming type diving duck bait, which includes a bait shell assembly 1, a bait base 2, a control box assembly 3, two DC geared motor assemblies 4, two duck foot assemblies 5, an anti-tipping hammer assembly 6, eye screws 7, a remote control 8, and a charger 9.
[0032] The bait base 2 is blow-molded and filled with foaming agent to allow it to float on the water surface. A control box 3 and a DC geared motor assembly 4 are installed inside. The bait shell 1 is installed on the upper surface of the bait base 2, and the anti-tipping hammer assembly 6 is installed on the lower surface of the bait base 2. The duck-foot assembly 5 is installed on the side of the bait base 2 and connected to the output end of the DC geared motor assembly 4. Driven by the DC geared motor assembly 4, it rotates clockwise, splashing water and creating a force that slowly moves the bait forward on the water surface. The eye screw 7 is fixed to the bait base 2 to limit the bait's range of motion. The remote control 8 is used to control the bait's movement. The charger 9 is used to charge the bait.
[0033] As a specific example, the decoy housing assembly 1 includes a decoy housing 1-1, a spring latch 1-2, a Phillips head pan screw 10, a hex nut 11, and a Phillips head pan screw 12;
[0034] The bait shell 1-1 is a biomimetic shape of the rear half of a wild duck's body, with two U-shaped grooves on the back, through which the two duck foot components 5 are connected to the two DC geared motor components 4. Two holes are drilled on each side of the bait shell 1-1, and spring buckles 1-2 are fixed to the sides of the bait shell 1-1 with cross-head pan screws 10 and hexagonal nuts 11. Spring buckles 1-2 are fixed to the bait base 2 with cross-head pan screws 12.
[0035] As a specific example, the bait base 2 is blow-molded and filled with foaming agent so that the base can float on the water surface. It has a control box assembly 3 and a DC geared motor assembly 4 mounting slot inside. The tail is beveled so that the duck foot assembly 5 is installed on the bait base 2 at a certain angle to simulate the duck foot movement of a wild duck.
[0036] As a specific example, such as Figure 3 As shown, the control box assembly 3 includes a control box upper cover 3-1, a control box lower cover 3-2, a sealing gasket 3-3, two magnetic connector female ends 3-4, two sealing rings 3-5, two magnetic connector hexagonal nuts 3-6, a transparent cover 3-7, a receiver 3-8, a receiver screw 3-9, a cross-slot countersunk self-tapping screw 13, and a lithium battery 3-10;
[0037] Install the two female magnetic connectors 3-4, the two hexagonal nuts 3-6, and the two sealing rings 3-5 into the control box cover 3-1. Fix the transparent cover 3-7 and the receiver 3-8 to the control box cover 3-1 with the receiver screws 3-9. Install the lithium battery 3-10 into the control box cover 3-2. After connecting the leads and powering on, assemble the control box cover 3-1, the sealing gasket 3-3, and the control box cover 3-2 and fix them with cross-slot countersunk self-tapping screws 13.
[0038] As a specific example, such as Figure 4 As shown, the DC geared motor assembly 4 includes a motor bracket 4-1, a cross-slot pan head screw 10, a magnetic connector male terminal 4-2, a motor housing 4-3, a motor housing cover 4-4, and a DC geared motor 4-5.
[0039] Pass the lead wire with the male end 4-2 of the magnetic connector soldered through the wire hole of the motor housing 4-3 and solder it to the DC geared motor 4-5. Install it into the motor housing 4-3, cover it with the motor housing cover 4-4, and use cross-slot pan head screws 10 to install the motor housing 4-3 onto the motor bracket 4-1. The motor bracket 4-1 is fixed in the DC geared motor assembly 4 mounting slot in the decoy base 2 by the cross-slot pan head screws 10.
[0040] As a specific example, such as Figure 5 As shown, the duck foot assembly 5 includes a connecting block 5-1, a shaft pin 5-2, a duck foot bracket 5-3, a duck foot 5-4, a cross-grooved pan head screw 10, and a hexagonal nut 11;
[0041] The connecting block 5-1 is fixed to the shaft end of the DC geared motor 4-5 by threads; the duck foot bracket 5-3 is inserted into the connecting block 5-1, and the shaft pin 5-2 is pressed into the shaft pin hole of the duck foot bracket 5-3 through the waist hole of the connecting block 5-1, so that the duck foot bracket 5-3 is installed on the connecting block 5-1; the duck foot 5-4 is fixed to the duck foot bracket 5-3 by the cross-slot pan head screw 10 and the hexagonal nut 11.
[0042] As a specific example, such as Figure 6 As shown, the anti-tipping hammer assembly 6 includes an anti-tipping hammer seat 6-1, a D-type locking pin 6-2, an outer tube clamp 6-3, a locking nut 6-4, an anti-tipping hammer 6-5, and a cross-slot pan head screw 10;
[0043] The anti-tipping hammer base 6-1 is fixed to the bottom of the bait base 2 by a cross-slot pan head screw 10, and the outer tube sleeve 6-3 is fixed to the anti-tipping hammer base 6-1 by a D-type locking pin 6-2; the locking nut 6-4 is inserted into the thread at the end of the outer tube sleeve 6-3, and the anti-tipping hammer 6-5 is installed inside the outer tube sleeve 6-3 by the locking nut 6-4.
[0044] As a specific example, the counterweight ball on the anti-tipping hammer 6-5 is made of high-density lead material, which can ensure the balance when the bait flips into the water and will not tip over or tilt.
[0045] As a specific example, such as Figure 7 As shown, the remote controller 8 can remotely control the start and stop of the bait within a range of ≤60m. It controls the rotation of the DC geared motor 4-5 on the duck foot assembly 5. The working mode is 0.5S on / 1.3S off, 0.5S on / 1.3S off, 0.5S on / 1.3S off, 0.5S on / 1.3S off, 0.5S on / 6S off, and so on. This controls the duck foot assembly 5 to paddle the water surface and splash water, while at the same time generating force to make the bait move slowly forward on the water surface. The ON button turns it on and the OFF button turns it off. The remote controller 8 is equipped with a remote controller protective cover 8-1 and a lanyard 8-2 for protecting and hanging the remote controller 8.
[0046] As a specific example, the working process of the swimming-type diving wild duck bait is as follows: The male end 4-2 of the magnetic connector in the DC geared motor assembly 4 is securely connected to the female end 3-4 of the magnetic connector in the control box assembly 3; the bait shell 1 and the bait base 2 are fixed together using spring clips 1-2; the switch button on the control box assembly 3 is turned on to enter standby mode; the anti-tipping hammer assembly 6 is fixed to the bait base 2 using D-type locking pins 6-2; the bait is placed in the water; and the system is controlled by the remote control 8. When in operation, within a range of ≤60m, the remote control is turned ON, and the DC geared motor 4-5 connected to the duck foot assembly 5 rotates. The working mode is 0.5S on / 1.3S off, 0.5S on / 1.3S off, 0.5S on / 1.3S off, 0.5S on / 6S off, repeating in sequence. The duck foot rotates clockwise, splashing water and creating a force that makes the bait move slowly forward on the water surface. The OFF button is used to turn off the operation, simulating the dynamic effect of a real wild duck diving into the water and splashing water with its feet.
[0047] The above are merely preferred embodiments of this utility model. It should be noted that, for those skilled in the art, several improvements and modifications can be made without departing from the principle of this utility model, and these improvements and modifications should also be considered within the scope of protection of this utility model.
Claims
1. A type of diving duck bait for paddling, characterized in that, Includes a bait shell assembly (1), a bait base (2), a control box assembly (3), two DC geared motor assemblies (4), two duck foot assemblies (5), an anti-tipping hammer assembly (6), eye screws (7), a remote control (8), and a charger (9); The bait base (2) is blow-molded and filled with foaming agent so that the base can float on the water surface. The control box assembly (3) and the DC geared motor assembly (4) are installed inside. The bait shell assembly (1) is installed on the upper surface of the bait base (2), and the anti-tipping hammer assembly (6) is installed on the lower surface of the bait base (2). The duck foot assembly (5) is installed on the side of the bait base (2) and connected to the output end of the DC geared motor assembly (4). It rotates clockwise under the drive of the DC geared motor assembly (4). The eye screw (7) is fixed on the bait base (2) to limit the range of movement of the bait. The remote control (8) is used to control the movement of the bait. The charger (9) is used to charge the bait.
2. The water-skimming diving duck bait according to claim 1, characterized in that, The bait shell assembly (1) includes a bait shell (1-1), a spring clip (1-2), a cross-head pan screw (10), a hex nut (11), and a cross-head pan screw (12). The bait shell (1-1) is a biomimetic shape of the rear half of a wild duck's body, with two U-shaped grooves on the back, allowing the two duck foot components (5) to be connected to the two DC geared motor components (4) through the two U-shaped grooves; two holes are drilled on each side of the bait shell (1-1), and spring buckles (1-2) are fixed to the sides of the bait shell (1-1) with cross-slot pan head screws (10) and hexagonal nuts (11), and spring buckles (1-2) are fixed to the bait base (2) with cross-slot pan head self-tapping screws (12).
3. The water-skimming diving duck bait according to claim 1, characterized in that, The bait base (2) is blow-molded and filled with foaming agent so that the base can float on the water surface. It has a control box assembly (3) and a DC geared motor assembly (4) mounting slot inside. The tail is made of a slope so that the duck foot assembly (5) is installed on the bait base (2) at a set angle to simulate the duck foot movement of a wild duck.
4. The water-skimming diving duck bait according to claim 1, characterized in that, The control box assembly (3) includes a control box top cover (3-1), a control box bottom cover (3-2), a sealing gasket (3-3), two magnetic connector female ends (3-4), two sealing rings (3-5), two magnetic connector hexagonal nuts (3-6), a transparent cover (3-7), a receiver (3-8), a receiver screw (3-9), a cross-slot countersunk self-tapping screw (13), and a lithium battery (3-10). Install the two female magnetic connectors (3-4), two hexagonal nuts (3-6), and two sealing rings (3-5) into the control box cover (3-1). Fix the transparent cover (3-7) and receiver (3-8) to the control box cover (3-1) with receiver screws (3-9). Install the lithium battery (3-10) into the control box cover (3-2). After connecting the leads and powering on, assemble the control box cover (3-1), sealing gasket (3-3), and control box cover (3-2) and fix them with cross-slot countersunk self-tapping screws (13).
5. The water-skimming diving duck bait according to claim 1, characterized in that, The DC geared motor assembly (4) includes a motor bracket (4-1), a cross-slot pan head screw (10), a magnetic connector male terminal (4-2), a motor housing (4-3), a motor housing cover (4-4), and a DC geared motor (4-5). Pass the lead wire with the male end (4-2) of the magnetic connector through the wire hole of the motor housing (4-3) and solder it to the DC geared motor (4-5). Install it into the motor housing (4-3), cover the motor housing with the cover (4-4), and install the motor housing (4-3) on the motor bracket (4-1) with cross-slot pan head screws (10). The motor bracket (4-1) is fixed in the DC geared motor assembly (4) mounting slot in the decoy base (2) by cross-slot pan head screws (10).
6. The water-skimming diving duck bait according to claim 1, characterized in that, The duck foot assembly (5) includes a connecting block (5-1), a shaft pin (5-2), a duck foot bracket (5-3), a duck foot (5-4), a cross-grooved pan head screw (10), and a hexagonal nut (11). The connecting block (5-1) is fixed to the shaft end of the DC geared motor (4-5) by threads; the duck foot bracket (5-3) is inserted into the connecting block (5-1), and the shaft pin (5-2) is pressed into the shaft pin hole of the duck foot bracket (5-3) through the waist hole of the connecting block (5-1) to install the duck foot bracket (5-3) on the connecting block (5-1); the duck foot (5-4) is fixed to the duck foot bracket (5-3) by cross-slot pan head screws (10) and hexagonal nuts (11).
7. The water-skimming diving duck bait according to claim 1, characterized in that, The anti-tipping hammer assembly (6) includes an anti-tipping hammer seat (6-1), a D-type locking pin (6-2), an outer tube clamp (6-3), a locking nut (6-4), an anti-tipping hammer (6-5), and a cross-slot pan head screw (10). The anti-tipping hammer seat (6-1) is fixed to the bottom of the bait base (2) by a cross-groove pan head screw (10), and the outer tube sleeve (6-3) is fixed to the anti-tipping hammer seat (6-1) by a D-type locking pin (6-2); the locking nut (6-4) is inserted into the thread at the end of the outer tube sleeve (6-3), and the anti-tipping hammer (6-5) is installed inside the outer tube sleeve (6-3) by the locking nut (6-4).
8. The water-skimming diving duck bait according to claim 7, characterized in that, The counterweight ball on the anti-tipping hammer (6-5) is made of lead material, which can ensure balance when the bait flips into the water.
9. The water-skimming diving duck bait according to claim 1, characterized in that, The remote controller (8) controls the start and stop of the bait within a range of ≤60m. By controlling the rotation of the DC geared motor (4-5) on the duck foot assembly (5), the duck foot assembly (5) is controlled to paddle the water surface and splash water, while at the same time generating force to make the bait move slowly forward on the water surface; the ON button is on and the OFF button is off; the remote controller (8) is equipped with a remote controller protective cover (8-1) and a lanyard (8-2) for protecting and hanging the remote controller (8).