Luminous arrow tail
By using a plug-in or threaded rotation integrated structure to connect the arrow tail assembly and the mounting assembly, and by setting a limiting structure and a locking position at the connection, the problems of the luminous arrow tail battery falling off and its applicability are solved, achieving stable power supply and applicability to dual-purpose composite bows.
Patent Information
- Application Number
- CN202520698628.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-14
- Publication Date
- 2026-02-13
- Estimated Expiration
- 2035-04-14
AI Technical Summary
The batteries in existing luminous arrow tails are prone to falling off under frequent vibrations and are not suitable for use in dual-purpose composite bows.
The arrow tail assembly and mounting assembly are connected by a plug-in or threaded rotation integrated structure, and movement limit and rotation limit structures are set at the connection. External locking positions are set to ensure stable connection of the power supply assembly and the light-emitting assembly.
The problem of battery detachment has been solved, and stable power supply to the light-emitting component has been achieved, making it suitable for dual-purpose composite bows.
Smart Images

Figure CN223910157U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to sports equipment technical field especially a luminous arrow tail. BACKGROUND
[0002] There are two similar luminous arrow tails on the market (for example, CN 207716955 U and CN 218566312 U), the battery and the main body of these luminous arrow tails are glued, and the vibration of the arrow under a large weight and the inertia of the battery after shooting the target will cause the battery to continue to move forward, which will cause the battery to fall off under frequent vibration and enter the inner core of the arrow shaft (the arrow shaft is a hollow structure), resulting in the inability to use. In addition, the head of these luminous arrow tails is designed for a single string bow only, with no external clamping position, which cannot be applied to a dual-purpose compound bow (a dual-purpose compound bow refers to a compound bow that can shoot arrows and shoot steel balls using an integrated magnetic seat). SUMMARY
[0003] In order to solve the problems existing in the prior art, the utility model provides a luminous arrow tail.
[0004] The technical scheme adopted by the utility model to solve its technical problems is:
[0005] A luminous arrow tail, comprising an arrow tail assembly 3, a light emitting assembly 4, a power supply assembly 2 and a mounting assembly 1, the arrow tail assembly 3 and the mounting assembly 1 are installed in an integrated structure, and the light emitting assembly 4 and the power supply assembly 2 are integrally installed in the internal cavity of the arrow tail assembly 3 and the mounting assembly 1.
[0006] The utility model also has the following additional technical features:
[0007] As a further specific optimization of the technical scheme of the utility model, the arrow tail assembly 3 and the mounting assembly 1 are installed in an integrated structure by pulling and inserting.
[0008] As a further specific optimization of the technical scheme of the utility model, at least two moving limiting structures are arranged at the connection between the arrow tail assembly 3 and the mounting assembly 1.
[0009] As a further specific optimization of the technical scheme of the utility model, at least one rotating limiting structure 314 is arranged at the connection between the arrow tail assembly 3 and the mounting assembly 1.
[0010] As a further specific optimization of the technical scheme of the utility model, the arrow tail assembly 3 and the mounting assembly 1 are installed in an integrated structure by screwing.
[0011] As the further specific optimization of the utility model technical scheme, the inside of arrow tail assembly 3 is provided with light emitting assembly cavity, light emitting assembly 4 is placed in the inside of light emitting assembly cavity, the inside of installation assembly 1 is provided with power supply assembly cavity, power supply assembly 2 is placed in the inside of power supply assembly cavity.
[0012] As the further specific optimization of the utility model technical scheme, the front of power supply assembly cavity is provided with power supply assembly limiting structure 101.
[0013] As the further specific optimization of the utility model technical scheme, the outside of arrow tail assembly 3 is provided with at least one external clamping position 301.
[0014] Compared with prior art, the utility model has the advantages of:
[0015] The installation assembly 1 and arrow tail assembly 3 of the utility model adopt the mode of pulling and inserting or screwing and rotating, so that power supply assembly 2 and light emitting assembly 4 are electrified to light up light emitting assembly 4, which is more convenient and fast to use, and solves the problem of existing light emitting arrow tail battery falling off.
[0016] The outside of arrow tail assembly 3 of the utility model is provided with at least one external clamping position 301, and the design of external clamping position 301 can make the light emitting arrow tail suitable for dual-purpose composite bow. DRAWINGS
[0017] Figure 1 It is the embodiment 1 three-dimensional structure schematic diagram of the utility model;
[0018] Figure 2 It is the embodiment 1 vertical section structure schematic diagram of the utility model;
[0019] Figure 3 It is the embodiment 1 horizontal structure schematic diagram of the utility model;
[0020] Figure 4 It is the embodiment 2 three-dimensional structure schematic diagram of the utility model;
[0021] Figure 5 It is the embodiment 2 vertical structure schematic diagram of the utility model;
[0022] Figure 6 It is the embodiment 2 horizontal structure schematic diagram of the utility model;
[0023] Figure 7 It is the power supply assembly 2 and light emitting assembly 4 connection structure schematic diagram of the utility model.
[0024] Reference signs: installation assembly 1, power supply assembly 2, arrow tail assembly 3, light emitting assembly 4. DETAILED DESCRIPTION
[0025] Exemplary embodiments disclosed by the present utility model will be described in more detail below with reference to the drawings.
[0026] Embodiment 1
[0027] A light-emitting arrow tail, comprising an arrow tail assembly 3, a light-emitting assembly 4, a power supply assembly 2 and a mounting assembly 1, the arrow tail assembly 3 and the mounting assembly 1 are integrally structured by plug-in mounting, and the light-emitting assembly 4 and the power supply assembly 2 are integrally mounted in the internal cavity of the arrow tail assembly 3 and the mounting assembly 1.
[0028] Optimally, at least two moving limiting structures are arranged at the connection between the arrow tail assembly 3 and the mounting assembly 1.
[0029] When two moving limiting structures are arranged, the two moving limiting structures are respectively moving limiting structure I 311 and moving limiting structure II 312. At this time, the arrow tail assembly 3 is moved to the left, and the outer side of the connection between the arrow tail assembly 3 and the mounting assembly 1 is moved from the moving limiting structure I 311 to the moving limiting structure II 312. The arrow tail assembly 3 drives the light-emitting assembly 4 to move to the left, so that the circuit of the light-emitting assembly 4 and the power supply assembly 2 is disconnected. The function of the moving limiting structure II 312 is to prevent the arrow tail assembly 3 and the mounting assembly 1 from continuing to disengage.
[0030] When three moving limiting structures are arranged, the three moving limiting structures are respectively moving limiting structure I 311, moving limiting structure II 312 and moving limiting structure III 313. At this time, the arrow tail assembly 3 is moved to the left, and the outer side of the connection between the arrow tail assembly 3 and the mounting assembly 1 is moved from the moving limiting structure I 311 to the moving limiting structure II 312. The arrow tail assembly 3 drives the light-emitting assembly 4 to move to the left, so that the circuit of the light-emitting assembly 4 and the power supply assembly 2 is disconnected. The functions of the moving limiting structure II 312 and the moving limiting structure III 313 are to prevent the arrow tail assembly 3 and the mounting assembly 1 from continuing to disengage.
[0031] The design of the moving limiting structure can prevent the arrow tail assembly 3 and the mounting assembly 1 from disengaging after installation, so as to ensure that the arrow will not cause the light-emitting assembly 4 and the power supply assembly 2 to disengage and disconnect due to excessive thrust when the arrow is shot.
[0032] Optimally, at least one rotating limiting structure 314 is arranged at the connection between the arrow tail assembly 3 and the mounting assembly 1. The rotating limiting structure 314 is designed in a clamping type. When two rotating limiting structures 314 are arranged, the two rotating limiting structures 314 are designed in a symmetrical type.
[0033] The design of the rotating limiting structure 314 can prevent the arrow tail assembly 3 and the mounting assembly 1 from rotating and disengaging after installation, so as to prevent the light-emitting assembly 4 and the power supply assembly 2 from disengaging and disconnecting.
[0034] Optimized, the inside of the arrow tail assembly 3 is provided with a light emitting assembly cavity, the light emitting assembly cavity is placed with a light emitting assembly 4, the inside of the mounting assembly 1 is inlaid with a power supply assembly cavity, the power supply assembly cavity is inlaid with a power supply assembly 2.
[0035] The profiles of the light emitting assembly cavity and the power supply assembly cavity are consistent with the profiles of the light emitting assembly 4 and the power supply assembly 2 respectively, and after the installation of the arrow tail assembly 3 and the mounting assembly 1, the circuit communication of the light emitting assembly 4 and the power supply assembly 2 can be ensured.
[0036] Optimized, the front of the power supply assembly cavity is provided with a power supply assembly limiting structure 101.
[0037] The design of the power supply assembly limiting structure 101 can prevent the power supply assembly 2 from being displaced inside the power supply assembly cavity, so that the light emitting assembly 4 and the power supply assembly 2 will not be displaced and disconnected.
[0038] Embodiment 2
[0039] A light-emitting arrow tail, comprising an arrow tail assembly 3, a light emitting assembly 4, a power supply assembly 2 and a mounting assembly 1, the arrow tail assembly 3 and the mounting assembly 1 are integrally connected by screwing, and the light emitting assembly 4 and the power supply assembly 2 are integrally installed in the internal cavity of the arrow tail assembly 3 and the mounting assembly 1.
[0040] Optimized, the inside of the arrow tail assembly 3 is provided with a light emitting assembly cavity, the light emitting assembly cavity is placed with a light emitting assembly 4, the inside of the mounting assembly 1 is inlaid with a power supply assembly cavity, the power supply assembly cavity is inlaid with a power supply assembly 2.
[0041] The profiles of the light emitting assembly cavity and the power supply assembly cavity are consistent with the profiles of the light emitting assembly 4 and the power supply assembly 2 respectively, and after the installation of the arrow tail assembly 3 and the mounting assembly 1, the circuit communication of the light emitting assembly 4 and the power supply assembly 2 can be ensured.
[0042] Optimized, the front of the power supply assembly cavity is provided with a power supply assembly limiting structure 101.
[0043] The design of the power supply assembly limiting structure 101 can prevent the power supply assembly 2 from being displaced inside the power supply assembly cavity, so that the light emitting assembly 4 and the power supply assembly 2 will not be displaced and disconnected.
[0044] Embodiment 3
[0045] A light-emitting arrow tail, based on embodiment 1 and embodiment 2, the outside of the arrow tail assembly 3 is provided with at least one external clamping 301, when two external clamping 301 are provided, the two external clamping 301 are designed in a symmetrical manner.
[0046] The design of the external detent 301 can make the light-emitting arrow tail suitable for dual-purpose compound bows.
[0047] As an illustration of the prior art of example 1, example 2 and example 3, the power supply assembly 2 comprises a power supply positive pole 201 and a power supply negative pole 202, and the light-emitting assembly 4 comprises a lamp bead positive pole 201 and a lamp bead negative pole 202. After the arrow tail assembly 3 and the mounting assembly 1 are connected to the position, the power supply positive pole 201 is connected to the lamp bead positive pole 201, and the power supply negative pole 202 is connected to the lamp bead negative pole 202, at which time the lamp bead is powered on and brightens.
[0048] The above detailed description of the embodiments of the present application provided in the drawings is not intended to limit the scope of the claimed application, but only represents selected embodiments of the present application.
Claims
1. A luminous arrow tail, characterized by: The application relates to an arrow tail assembly, a light-emitting assembly, a power supply assembly and a mounting assembly, wherein the arrow tail assembly and the mounting assembly are integrally mounted, the light-emitting assembly and the power supply assembly are integrally mounted in the internal cavities of the arrow tail assembly and the mounting assembly.
2. A lighted tail according to claim 1, wherein: The arrow tail assembly and the mounting assembly are integrally mounted by pulling and inserting.
3. A lighted tail according to claim 2, wherein: At least two moving limiting structures are arranged at the joint of the arrow tail assembly and the mounting assembly.
4. The lighted tail according to claim 2, wherein: At least one rotating limiting structure is arranged at the joint of the arrow tail assembly and the mounting assembly.
5. The lighted tail according to claim 1, wherein: The arrow tail assembly and the mounting assembly are integrally mounted by screwing and rotating.
6. A lighted tail according to claim 2 or 5, wherein: An internal light-emitting assembly cavity is arranged in the arrow tail assembly, and a light-emitting assembly is arranged in the internal light-emitting assembly cavity; an internal power supply assembly cavity is arranged in the mounting assembly, and a power supply assembly is arranged in the internal power supply assembly cavity.
7. A lighted tail fin according to claim 6, wherein: A power supply assembly limiting structure is arranged at the front of the power supply assembly cavity.
8. The lighted arrow according to claim 2 or 5, wherein: At least one external clamping site is arranged on the outside of the arrow tail assembly.
Citation Information
Patent Citations
Arrow props up arrow tail that can give out light for bow and crossbow
CN207716955U
Double-LED luminous arrow tail
CN218566312U