Light-emitting module for shuttlecock and shuttlecock

By embedding the LED beads inside the badminton shuttlecock shell and utilizing the light-emitting protrusions to transmit light and the semi-shell structure, the problems of limited LED beads and unstable assembly are solved, achieving wide compatibility and protective assembly of the LED beads, and improving ease of use.

CN223954111UActive Publication Date: 2026-02-27JIANGXI HUAKAI SPORTS PRODUCTS CO LTD
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Patent Information

Application Number
CN202520652886.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-08
Publication Date
2026-02-27
Estimated Expiration
2035-04-08

AI Technical Summary

Technical Problem

Existing badminton lamp cores have lamp beads that extend directly out of the outer shell to emit light, which limits the lamp beads and requires the outer shell to be fitted with an opening, affecting the selection of lamp beads and the stability of assembly.

Method used

The LED beads are built into the housing, and light is transmitted through the light-emitting protrusion. The housing is equipped with a flip-up half-shell structure and connecting parts to achieve stable assembly and protection of the LED beads.

Benefits of technology

It achieves wide compatibility and assembly stability of LED chips, avoids collision damage, simplifies the assembly process, and improves ease of use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The light-emitting module comprises a shell, an assembling cavity is formed in the shell, a protruding light-emitting protruding part is arranged on one side of the shell, the light-emitting protruding part is made of light-transmitting materials, and a light-emitting cavity communicated with the assembling cavity is formed in the light-emitting protruding part; the circuit structure comprises a light-emitting lamp bead, and the light-emitting lamp bead is arranged in the assembly cavity and / or the light-emitting cavity; light generated by the light-emitting lamp beads illuminates the light-emitting cavity, and the light is transmitted out of the light-emitting convex part. By adopting the scheme, the luminous module for the badminton and the badminton have the advantages that the luminous lamp beads are arranged in the shell, and the luminous convex parts for replacing the luminous lamp beads to emit light outside are arranged, so that the luminous lamp beads can be arranged in the shell.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the field of sports equipment, specifically relates to a light-emitting module for badminton and badminton. BACKGROUND

[0002] Chinese patent number CN202222145066.2 discloses a light-emitting badminton lamp wick and light-emitting badminton, which adopts the assembly of a battery, a switch and a lamp bead in a shell to form a lamp wick, and the lamp wick can be configured in the head of the badminton to make the head emit light in the light-emitting state of the lamp bead so as to facilitate the use at night.

[0003] However, the existing badminton lamp wick has the following deficiencies: the existing lamp beads are directly stretched out of the shell and emit light outside, so that an opening needs to be provided on the shell for the lamp bead to pass through, and in addition, in order to make the shape of the lamp bead outside more smooth and smooth, a round head lamp bead is used, and the opening on the shell is only matched with the round head lamp bead, so that the lamp bead that can be used is limited. UTILITY MODEL CONTENT

[0004] In view of the deficiencies of the prior art, the utility model aims to provide a light-emitting module for badminton and badminton by embedding a light-emitting lamp bead in a shell and setting a light-emitting convex part to replace the light-emitting lamp bead outside, so that the light-emitting lamp bead used only needs to meet the requirement of being configured in the shell.

[0005] To achieve the above-mentioned purpose, the utility model provides the following technical scheme:

[0006] A light-emitting module for badminton is used for assembling in the head of a badminton, comprising: a shell, a mounting cavity is arranged in the shell, a protruding light-emitting convex part is arranged on one side of the shell, the light-emitting convex part is made of a light-transmitting material, and a light-emitting cavity in communication with the mounting cavity is arranged in the light-emitting convex part; a circuit structure comprising a light-emitting lamp bead is arranged in the mounting cavity and / or the light-emitting cavity; the light-emitting lamp bead generates light that illuminates the light-emitting cavity, and the light is transmitted from the light-emitting convex part.

[0007] The utility model is further provided with: the outer periphery of the light-emitting convex part is in a semispherical shape.

[0008] The utility model further sets up: the shell includes the first half shell and the second half shell of can separate from each other, the assembly cavity includes the first chamber of setting in the first half shell and the second chamber of setting in the second half shell, the first half shell and the second half shell combination to splice the first chamber and the second chamber, the first half shell and the second half shell separate to separate the first chamber and the second chamber, and / or, the light-emitting cavity includes the third chamber of setting in the first half shell and the fourth chamber of setting in the second half shell, the first half shell and the second half shell combination to splice the third chamber and the fourth chamber, the first half shell and the second half shell separate to separate the first chamber and the second chamber.

[0009] The utility model further sets up: the first half shell and the second half shell between setting has the first connecting portion, to make the first half shell and the second half shell under the action of the first connecting portion can be relative to turn over, the first half shell and the second half shell between setting has the second connecting portion, to make the first half shell and the second half shell under the action of the second connecting portion fixed connection.

[0010] The utility model further sets up: the shell is integrally formed injection molding piece, and / or, the first connecting portion includes integrally formed first connecting strip, second connecting strip and deformation strip, the first half shell, the first connecting strip, the deformation strip, the second connecting strip and the second half shell connect gradually, the thickness of deformation strip is less than the thickness of the first connecting strip and the thickness of the second connecting strip respectively, and / or, the light-emitting convex part includes the third component corresponding to the third chamber and the fourth component corresponding to the fourth chamber, the third component and the first half shell are integrally formed, and the fourth component and the second half shell are integrally formed.

[0011] The utility model further sets up: the second connecting portion includes connecting jack and connecting plug post, and the connecting jack and the connecting plug post are fixedly connected by interference plug-in cooperation.

[0012] The utility model further sets up: the circuit structure includes on-off switch, the on-off switch sets up in the assembly cavity, and the on-off switch is provided with on-off piece that extends the assembly cavity.

[0013] The utility model further sets up: the on-off piece and the light-emitting convex part set up in the same side of the shell, and / or, still include guide spring, the light-emitting lamp pearl is provided with first pin, the on-off switch is provided with third pin, and the first pin and the third pin are inserted into the guide spring from both ends of the guide spring and are electrically connected.

[0014] The utility model further sets up: the circuit structure includes battery, the assembly cavity includes first accessory cavity and second accessory cavity, first accessory cavity is located in second accessory cavity is close to the side of luminous convex part, luminous lamp pearl and / or on -off switch set up in first accessory cavity, battery set up in second accessory cavity.

[0015] A shuttlecock, comprising: a ball head, the ball head is provided with a hitting side and a light-emitting side on two sides away from each other, an inner cavity is arranged in the ball head and penetrates to the light-emitting side; a shaft, the shaft is arranged on the light-emitting side; the above-mentioned light-emitting module is arranged in the inner cavity, and the light-emitting convex part is located at the light-emitting side.

[0016] By adopting the above technical scheme, 1, the light-emitting module can be assembled in the ball head of the shuttlecock for use. Specifically, the light-emitting lamp pearl emits light by opening the on-off switch. After opening, the light emitted by the light-emitting lamp pearl illuminates the light-emitting cavity, and the light is transmitted from the light-emitting convex part to make the ball head of the shuttlecock emit light, which can be used at night. 2, Since the light-emitting lamp pearl is arranged in the shell, it only needs to satisfy that the light-emitting lamp pearl can be assembled in the shell, so that it can be more widely adapted to light-emitting lamp pearls of different shapes and sizes. 3, Since the light-emitting lamp pearl does not need to protrude out of the shell, the shell has a protective effect on the light-emitting lamp pearl. When a collision occurs, the light-emitting lamp pearl will not be directly impacted. In addition, the shell does not need to be provided with an opening for the light-emitting lamp pearl to protrude out, so that the assembly will not cause the problem of being unable to assemble due to structural errors. BRIEF DESCRIPTION OF DRAWINGS

[0017] In order to more clearly illustrate the technical scheme in the embodiments of the utility model or the prior art, the drawings needed to be used in the following embodiment or prior art description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the utility model, and those skilled in the art can also obtain other drawings according to these drawings without creating labor.

[0018] Figure 1 It is the assembly drawing of the shell in the embodiment one of the utility model in closed state;

[0019] Figure 2 It is the assembly drawing of the shell in the embodiment one of the utility model in open state;

[0020] Figure 3 It is the explosion view of the shell in the embodiment one of the utility model in open state;

[0021] Figure 4 It is the assembly drawing of the on-off switch, the light-emitting lamp pearl and the guide spring in the embodiment one of the utility model;

[0022] Figure 5 is a top view of the shell in the embodiment one of the utility model;

[0023] Figure 6 is a sectional view of the embodiment two of the utility model.

[0024] Mark explanation:

[0025] 1, shell;

[0026] 11, assembly cavity; 12, first half shell; 13, second half shell; 14, first connecting part; 15, second connecting part;

[0027] 111, first chamber; 112, second chamber; 141, first connecting strip; 142, second connecting strip; 143, deformation strip; 151, connecting jack; 152, connecting plug post;

[0028] 2, light emitting convex part;

[0029] 21, light emitting cavity; 22, third component; 23, fourth component;

[0030] 211, third chamber; 212, fourth chamber;

[0031] 3, battery;

[0032] 4, on-off switch;

[0033] 41, third pin; 42, fourth pin; 43, on-off piece;

[0034] 5, light emitting lamp bead;

[0035] 51, first pin; 52, second pin;

[0036] 6, lead spring;

[0037] 71, first accessory cavity; 72, second accessory cavity;

[0038] 8, ball head;

[0039] 81, hitting ball side; 82, light emitting side; 83, built-in cavity;

[0040] 9, feather body. Specific implementation

[0041] To enable those skilled in the art to better understand this utility model and to more clearly define the scope of protection claimed by this utility model, the present utility model is described in detail below with reference to certain specific embodiments. It should be noted that the following are only some specific embodiments of the present utility model, and the specific and direct descriptions of related structures are merely for the convenience of understanding the present utility model; the specific features do not necessarily or directly limit the scope of implementation of the present utility model. Conventional choices and substitutions made by those skilled in the art under the guidance of the present utility model should all be considered within the scope of protection claimed by this utility model.

[0042] Example 1:

[0043] like Figures 1-5 As shown, this utility model discloses a light-emitting module for badminton, comprising:

[0044] The outer shell 1 has an assembly cavity 11 inside. The upper side of the outer shell 1 has a protruding light-emitting protrusion 2. The light-emitting protrusion 2 is made of a light-transmitting material. The light-emitting protrusion 2 has a light-emitting cavity 21 that communicates with the assembly cavity 11.

[0045] The circuit structure includes a battery 3, an on / off switch 4, and a light-emitting lamp 5. The three are connected in series so that the battery 3 supplies power to the circuit, the on / off switch 4 controls the opening and closing of the circuit, and the light-emitting lamp 5 emits light when the circuit is on. Specifically, the light-emitting lamp 5 is partially disposed in the assembly cavity 11 and partially disposed in the light-emitting cavity 21.

[0046] Therefore, 1. The light-emitting module can be installed inside the head 8 of the badminton shuttlecock for use. Specifically, the light-emitting LED 5 is made to emit light by turning on the switch 4. After being turned on, the light emitted by the light-emitting LED 5 illuminates the light-emitting cavity 21, and the light is transmitted from the light-emitting protrusion 2 to make the head 8 of the badminton shuttlecock emit light, so that it can be used at night. 2. Since the light-emitting LED 5 is set inside the outer shell 1, it is only necessary to meet the requirement that the light-emitting LED 5 can be installed inside the outer shell 1, so that it can be more widely adapted to light-emitting LEDs 5 of different shapes and sizes. 3. Since the light-emitting LED 5 does not need to protrude from the outer shell 1, the outer shell 1 has a protective function for the light-emitting LED 5. In the event of a collision, it will not directly impact the light-emitting LED 5. In addition, the outer shell 1 does not need to be provided with an opening for the light-emitting LED 5 to protrude, so that there will be no problem of assembly failure due to structural errors.

[0047] Preferably, both the outer and inner peripheries of the light-emitting protrusion 2 are hemispherical. The hemispherical shape of the outer periphery allows the light to radiate more widely in all directions and is smoother on the outside, resulting in a better tactile feel. The hemispherical shape of the inner periphery is adapted to the hemispherical shape of the outer periphery, making the light-emitting cavity 21 larger in volume.

[0048] The shell 1 in the embodiment comprises a first half shell 12 and a second half shell 13 which can be separated from each other; the assembly cavity 11 comprises a first cavity 111 arranged in the first half shell 12 and a second cavity 112 arranged in the second half shell 13, the first half shell 12 and the second half shell 13 are combined to splice the first cavity 111 and the second cavity 112, and the first half shell 12 and the second half shell 13 are separated to separate the first cavity 111 and the second cavity 112; the light-emitting cavity 21 comprises a third cavity 211 arranged in the first half shell 12 and a fourth cavity 212 arranged in the second half shell 13, the first half shell 12 and the second half shell 13 are combined to splice the third cavity 211 and the fourth cavity 212, and the first half shell 12 and the second half shell 13 are separated to separate the first cavity 111 and the second cavity 112.

[0049] Therefore, during production and assembly, the first half shell 12 and the second half shell 13 are separated, so that the circuit structure can be conveniently arranged at the corresponding position, and then the first half shell 12 and the second half shell 13 are assembled to ensure stable installation of the circuit structure.

[0050] Specifically, the first half shell 12 and the second half shell 13 are provided with a first connecting portion 14, so that the first half shell 12 and the second half shell 13 can be relatively flipped under the action of the first connecting portion 14; and the first half shell 12 and the second half shell 13 are provided with a second connecting portion 15, so that the first half shell 12 and the second half shell 13 are fixedly connected under the action of the second connecting portion 15.

[0051] Therefore, under the action of the first connecting portion 14, the first half shell 12 and the second half shell 13 are in a connected state, and splicing and separation are achieved by flipping, which has the effect of preventing loss of spare parts, and the second connecting portion 15 fixes the first half shell 12 and the second half shell 13 when the first half shell 12 and the second half shell 13 are spliced, thereby ensuring the stability of the connection.

[0052] Preferably, the shell 1 in the embodiment is an integrally formed injection molding part, which makes production more convenient.

[0053] The first connecting portion 14 comprises an integrally formed first connecting strip 141, a second connecting strip 142 and a deformation strip 143, the first half shell 12, the first connecting strip 141, the deformation strip 143, the second connecting strip 142 and the second half shell 13 are connected in sequence, and the thickness of the deformation strip 143 is less than the thickness of the first connecting strip 141 and the thickness of the second connecting strip 142, so that the first connecting strip 141 and the second connecting strip 142 with greater thickness ensure the connection strength of the first half shell 12 and the second half shell 13, and in addition, the deformation strip 143 can deform to adapt when the first half shell 12 and the second half shell 13 are flipped due to its smaller thickness.

[0054] Specifically, the light-emitting convex part 2 comprises a third part 22 corresponding to the third chamber 211 and a fourth part 23 corresponding to the fourth chamber 212, the third part 22 is integrally formed with the first half shell 12, and the fourth part 23 is integrally formed with the second half shell 13.

[0055] Specifically, the second connecting part 15 in the embodiment comprises a connecting socket 151 and a connecting stud 152, the connecting stud 152 is integrally formed on the side of the first half shell 12 away from the first connecting part 14, and the connecting socket 151 is arranged on the side of the second half shell 13 away from the first connecting part 14, so that the connecting socket 151 and the connecting stud 152 are fixedly connected through interference fit.

[0056] The on-off switch 4 is arranged in the assembly cavity 11, and the on-off switch 4 is further provided with an on-off member 43 extending out of the assembly cavity 11, so that the on-off member 43 extending out of the assembly cavity 11 is used for controlling the on-off of the circuit.

[0057] Preferably, the on-off member 43 and the light-emitting convex part 2 are arranged on the same side of the shell 1, so that the light-emitting module is arranged behind the ball head 8, and the on-off member 43 and the light-emitting convex part 2 are both arranged on the rear side of the ball head 8, so that the on-off member 43 and the light-emitting convex part 2 are both exposed and convenient to control the on-off of the light-emitting lamp bead 5.

[0058] In addition, the embodiment further comprises a lead spring 6, the light-emitting lamp bead 5 is provided with a first pin 51 and a second pin 52, the on-off switch 4 is provided with a third pin 41 and a fourth pin 42, the first pin 51 and the third pin 41 are inserted into the lead spring 6 from both ends of the lead spring 6 to be electrically connected, and specifically, the first pin 51 and the lead spring 6 are in contact, the third pin 41 and the lead spring 6 are in contact, and the first pin 51 and the third pin 41 are in contact to realize triple lead connection, and the second pin 52 and the fourth pin 42 are respectively connected to the positive and negative poles of the battery 3.

[0059] So that under the action of the lead spring 6, the circuit conduction is more stable, and without welding, the disassembly is more convenient.

[0060] The assembly cavity 11 comprises a first assembly cavity 71 on the upper side and a second assembly cavity 72 on the lower side, so that the first assembly cavity 71 is located on the side of the second assembly cavity 72 close to the light-emitting convex part 2, the light-emitting lamp bead 5 and the on-off switch 4 are arranged in the first assembly cavity 71, and the battery 3 is arranged in the second assembly cavity 72.

[0061] So that the overall structure is more orderly.

[0062] Embodiment two:

[0063] As shown in the Figure 6 The utility model discloses a shuttlecock, including:

[0064] The ball head 8 is provided with a hitting side 81 at the front side and a light emitting side 82 at the rear side, and is provided with an inner cavity 83 penetrating to the light emitting side 82.

[0065] The feather body 9 is arranged at the light emitting side 82 and expands rearward.

[0066] The light emitting module in the first embodiment is arranged in the inner cavity 83, and the light emitting convex part 2 is located at the light emitting side 82.

[0067] Therefore, the formed badminton can emit light at the light emitting side 82, which is convenient for use at night.

[0068] The above description of disclosed embodiments enables those skilled in the art to implement or use the present application. Various modifications to these embodiments will be apparent to those skilled in the art, and the general principles defined herein can be implemented in other embodiments without departing from the spirit or scope of the present application. Therefore, the present application will not be limited to the embodiments shown herein, but will conform to the widest scope consistent with the principles and novel features disclosed herein.

Claims

1. A light module for badminton, for assembly in the head (8) of a shuttlecock, characterized in that, The utility model relates to a light-emitting shell, comprising: a shell (1) provided with an assembly cavity (11) inside, one side of the shell (1) is provided with a convex light-emitting convex part (2), the light-emitting convex part (2) is made of light-transmitting material, the light-emitting convex part (2) is provided with a light-emitting cavity (21) communicated with the assembly cavity (11) inside; a circuit structure comprising a light-emitting lamp bead (5), the light-emitting lamp bead (5) is arranged in the assembly cavity (11) and / or the light-emitting cavity (21) inside; the light emitted by the light-emitting lamp bead (5) illuminates the light-emitting cavity (21), and the light is transmitted from the light-emitting convex part (2).

2. The badminton light emitting module according to claim 1, characterized in that: The outer periphery of the light-emitting convex part (2) is semispherical.

3. The badminton light emitting module according to claim 1, characterized in that: The shell (1) comprises a first half shell (12) and a second half shell (13) that can be separated from each other; the assembly cavity (11) comprises a first cavity (111) arranged in the first half shell (12) and a second cavity (112) arranged in the second half shell (13), the first half shell (12) and the second half shell (13) are combined to splice the first cavity (111) and the second cavity (112), and the first half shell (12) and the second half shell (13) are separated to separate the first cavity (111) and the second cavity (112); and / or, the light-emitting cavity (21) comprises a third cavity (211) arranged in the first half shell (12) and a fourth cavity (212) arranged in the second half shell (13), the first half shell (12) and the second half shell (13) are combined to splice the third cavity (211) and the fourth cavity (212), and the first half shell (12) and the second half shell (13) are separated to separate the first cavity (111) and the second cavity (112).

4. The badminton light emitting module according to claim 3, characterized in that: a first connecting part (14) is arranged between the first half shell (12) and the second half shell (13) to enable the first half shell (12) and the second half shell (13) to be relatively flipped under the action of the first connecting part (14); a second connecting part (15) is arranged between the first half shell (12) and the second half shell (13) to enable the first half shell (12) and the second half shell (13) to be fixedly connected under the action of the second connecting part (15).

5. The badminton light emitting module according to claim 4, characterized in that: the shell (1) is an integrally formed injection molding part; and / or, the first connecting part (14) comprises an integrally formed first connecting strip (141), a second connecting strip (142) and a deformation strip (143), the first half shell (12), the first connecting strip (141), the deformation strip (143), the second connecting strip (142) and the second half shell (13) are sequentially connected, and the thickness of the deformation strip (143) is respectively less than the thickness of the first connecting strip (141) and the thickness of the second connecting strip (142); and / or, The light-emitting convex part (2) comprises a third part (22) corresponding to the third chamber (211) and a fourth part (23) corresponding to the fourth chamber (212), the third part (22) is integrally formed with the first half shell (12), and the fourth part (23) is integrally formed with the second half shell (13).

6. The badminton light emitting module according to claim 4, characterized in that: The second connecting part (15) comprises a connecting socket (151) and a connecting stud (152), and the connecting socket (151) and the connecting stud (152) are fixedly connected through interference fit.

7. The badminton light emitting module according to claim 1, characterized by: The circuit structure comprises an on-off switch (4), the on-off switch (4) is arranged in the assembly cavity (11), and the on-off switch (4) is provided with an on-off member (43) extending out of the assembly cavity (11).

8. The badminton light emitting module according to claim 7, characterized in that: The on-off member (43) and the light-emitting convex part (2) are arranged on the same side of the shell (1); and / or, Further comprising a lead spring (6), the light-emitting lamp bead (5) is provided with a first pin (51), the on-off switch (4) is provided with a third pin (41), and the first pin (51) and the third pin (41) are inserted into the lead spring (6) from both ends of the lead spring (6) to be electrically connected.

9. The badminton light emitting module according to claim 7, characterized in that: The circuit structure comprises a battery (3); the assembly cavity (11) comprises a first accessory cavity (71) and a second accessory cavity (72), the first accessory cavity (71) is located on the side of the second accessory cavity (72) close to the light-emitting convex part (2), the light-emitting lamp bead (5) and / or the on-off switch (4) are arranged in the first accessory cavity (71), and the battery (3) is arranged in the second accessory cavity (72).

10. A shuttlecock characterised in that Comprise: A ball head (8) is provided with a hitting side (81) and a light-emitting side (82) on two sides away from each other, and an internal cavity (83) is arranged in the ball head (8) and penetrates to the light-emitting side (82); A shaft (9) is arranged on the light-emitting side (82); The light-emitting module of any one of claims 1-9 is arranged in the internal cavity (83), and the light-emitting convex part (2) is located at the light-emitting side (82).

Citation Information

Patent Citations

  • Luminous shuttlecock wick and luminous shuttlecock

    CN218485124U