Novel rescue rod capable of capturing actions

By designing a motion-capturing light stick, and utilizing an outer ring and centrifugal components combined with springs and centrifugal force, dynamic light and shadow effects are achieved. This solves the problem of traditional light sticks being unable to change shape in real time and having limited visual expressiveness, thus improving interactivity and reliability.

CN223855568UActive Publication Date: 2026-01-30COMMUNICATION UNIVERSITY OF CHINA
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Patent Information

Application Number
CN202520356527.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-03
Publication Date
2026-01-30
Estimated Expiration
2035-03-03

AI Technical Summary

Technical Problem

Traditional light sticks are mostly fixed in shape and cannot change their physical form in real time according to the user's waving action. Their visual expression is limited to static lighting or simple swinging. Existing variable-shape light sticks rely on motors, sensors or programming control, which are complex in structure and costly. They are also prone to jamming or failure due to electronic component failure, and have low reliability in outdoor scenarios.

Method used

A novel cheering stick with motion capture capability is designed. By combining a first outer ring, a second outer ring, and a centrifugal component, the outer rings are expanded and contracted using springs and centrifugal force. Combined with a concave centrifugal plate, the light strip rotates to achieve dynamic light and shadow effects. It is driven by the user's waving motion and does not require complex electronic components.

Benefits of technology

It achieves real-time changes in physical shape based on the user's waving motion, creating a dynamic blooming visual effect, enhancing visual interactivity and fun, avoiding reliability issues caused by electronic component failures, and is suitable for outdoor use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a novel assistance rod capable of capturing actions, which comprises an assistance rod shell, a fixed rod fixed at the top end in the assistance rod shell, a central shaft body fixed at the bottom of the fixed rod, a first outer ring penetrating through the outer part of the central shaft body, and a second outer ring penetrating through the outer part of the first outer ring, a plurality of first springs are fixed between the central shaft body and the first outer ring, and a plurality of second springs are fixed between the first outer ring and the second outer ring. In the process of shaking the reinforcing bar, the edge of the second outer ring is provided with a slidable concave centrifugal plate body, and the concave centrifugal plate body slides along the second outer ring through centrifugal force; due to the fact that the first spring and the second spring are arranged among the first outer ring, the second outer ring and the central shaft body, adjacent layers can be driven to be unfolded in sequence, and therefore the first annular lamp strip on the top of the first outer ring and the top of the second outer ring can change the physical form in real time and continuously expand and contract according to the waving action of a user, and the visual effect is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of rally stick, concretely to a new type rally stick of action capture. BACKGROUND

[0002] Rally stick, also known as light stick, is a handheld lighting device shaped like a stick. Previous rally sticks were fluorescent sticks based on chemical principles. The outer layer material is PE polyethylene, and the built-in is a glass tube interlayer. The inner and outer liquids of the interlayer are peroxide and ester compounds, respectively. The glass breaks through bending, hitting, rubbing, etc., causing the reaction of the two compounds to make the fluorescent dye emit light.

[0003] According to the public patent 202320048725.2, a rotatable rally stick, which includes a handle, a light emitting lamp set arranged on the upper end of the handle, a theme LOGO accessory rotatably mounted on the upper end of the handle and extending outward through the light emitting lamp set, a diffuser lamp ball arranged on the upper end of the handle and covering the theme LOGO accessory and the light emitting lamp set, a motor arranged in the handle for driving the theme LOGO accessory to rotate, and a battery arranged in the handle for powering the motor and the light emitting lamp set. The theme LOGO accessory is arranged on the handle to highlight the identification of a specific object, and the light emitting lamp set is arranged on the handle to add atmosphere. The motor arranged in the handle drives the theme LOGO accessory to rotate, making the theme LOGO accessory more dynamic and dreamy, and overcoming the difficulty of traditional fixed LOGO accessory in highlighting the characteristics of the product. Secondly, the structure can make the logo accessory of the customized product more intuitive, and upgrade the presence, so as to achieve the promotion effect of the customized product.

[0004] However, in the process of use, the traditional rally stick has a fixed shape and cannot change its physical form in real time according to the user's swinging action. The visual expression is limited to static light or simple swinging, and cannot realize hierarchical response such as "dynamic blooming". Moreover, the existing variable form rally stick (such as folding type and telescopic type) needs to rely on motor, sensor or programming control, which has complex structure and high cost. It is easy to cause jamming or failure due to electronic component failure, and has low reliability in outdoor scenes. Therefore, it is necessary to design a new technical scheme to solve the problem. UTILITY MODEL CONTENTS

[0005] The utility model aims at overcoming the shortcomings of the prior art, adapting to the actual needs, and providing a new type rally stick with action capture to solve the technical problems that the current traditional rally stick has a fixed shape, cannot change its physical form in real time according to the user's swinging action, the visual expression is limited to static light or simple swinging, and cannot realize hierarchical response such as "dynamic blooming". Moreover, the existing variable form rally stick (such as folding type and telescopic type) needs to rely on motor, sensor or programming control, which has complex structure and high cost. It is easy to cause jamming or failure due to electronic component failure, and has low reliability in outdoor scenes.

[0006] In order to achieve the purpose of the utility model, the technical scheme that the utility model adopts is: a novel action-capturable relief stick is designed, which comprises a relief stick shell, a fixed rod is fixed to the top inside of the relief stick shell, a central shaft body is fixed to the bottom of the fixed rod, a first outer ring penetrates through the outside of the central shaft body, a second outer ring penetrates through the outside of the first outer ring, a plurality of first springs are fixed between the central shaft body and the first outer ring, a plurality of second springs are fixed between the first outer ring and the second outer ring, and a centrifugal assembly is arranged outside the second outer ring.

[0007] Preferably, a first annular groove is formed in the top of the first outer ring and the second outer ring, and a first annular lamp strip is arranged inside the first annular groove.

[0008] Preferably, a plurality of second annular grooves are formed in the surface of the second outer ring, and a second annular lamp strip is arranged inside the plurality of second annular grooves.

[0009] Preferably, the centrifugal assembly comprises a concave centrifugal plate body, a connecting rod, a limiting wheel, a square groove and a vertical lamp strip.

[0010] Preferably, bearings are arranged on the upper and lower ends of one side of the inner wall of the concave centrifugal plate body, and one end of the connecting rod is rotatably connected to the inside of the bearings.

[0011] Preferably, the other end of the connecting rod is fixed with the limiting wheel, and the limiting wheel is clamped with the upper and lower ends of the second outer ring.

[0012] Preferably, a relief stick handle is fixed to the bottom of the relief stick shell, a switch is arranged on the surface of the relief stick handle, and a bottom cover is arranged at the bottom of the relief stick handle.

[0013] Compared with the prior art, the utility model has the beneficial effects that:

[0014] 1.The utility model discloses a first outer ring, second outer ring and centrifugal component's combination is in the process of shaking the aid stick, because the second outer ring edge is provided with the slidable concave centrifugal plate body, and the concave centrifugal plate body will slide along the second outer ring through the centrifugal force, because the first spring and the second spring are arranged between the first outer ring, the second outer ring and the central shaft body, can drive the adjacent layer to unfold in turn to make the first annular lamp strip of the first outer ring and the second outer ring top, according to the user waving action real -time change physical form, constantly expand the contraction to improve the visual effect, simultaneously, need not set up complex element, solved the traditional aid stick and is mostly fixed shape (such as stick, spherical), cannot according to the user waving action real -time change physical form, visual expression force is limited to static light or simple swing, can not realize " dynamic blooming " etc. hierarchical response, and, the existing deformable aid stick (such as folding type, telescopic type) needs to rely on motor, sensor or programming control, and the structure is complex and the cost is high, and the electronic component failure leads to the technical problem of jam or failure, and the reliability of outdoor scene is low.

[0015] 2.The utility model discloses a concave centrifugal plate body, square groove and vertical lamp strip's combination, in the process of concave centrifugal plate body centrifugal displacement, still will drive the vertical lamp strip rotation on the surface simultaneously to when the user swings the aid stick, according to the user waving action real -time change light position angle, further improved the visual effect, and, the concave centrifugal plate body still will constantly shield the multiple second annular lamp strips on the surface of the second outer ring in the process of moving, cooperate with vertical lamp strip and first annular lamp strip, realize the dynamic change of different positions, further improved the visual effect, solved the traditional aid stick and is mostly fixed shape (such as stick, spherical), cannot according to the user waving action real -time change physical form, visual expression force is limited to static light or simple swing, can not realize " dynamic blooming " etc. hierarchical response, and, the existing deformable aid stick (such as folding type, telescopic type) needs to rely on motor, sensor or programming control, and the structure is complex and the cost is high, and the electronic component failure leads to the technical problem of jam or failure, and the reliability of outdoor scene is low. ACCURACY OF DRAWINGS

[0016] Figure 1 It is the inside structure schematic diagram of the aid stick shell of the utility model;

[0017] Figure 2 It is the overhead structure schematic diagram of the central shaft body, first outer ring and second outer ring of the utility model;

[0018] Figure 3 It is the centrifugal component structure schematic diagram of the utility model.

[0019] In the figure: 1, the support rod shell; 101, the support rod handle; 102, the switch; 103, the bottom cover; 2, the fixed rod; 201, the central shaft body; 202, the first outer ring; 203, the second outer ring; 204, the second annular groove; 205, the second annular light belt; 206, the concave centrifugal plate body; 207, the square groove; 208, the vertical light belt; 209, the connecting rod; 210, the limiting wheel; 211, the first annular groove; 212, the bearing; 213, the first annular light belt; 3, the first spring; 301, the second spring. DETAILED DESCRIPTION

[0020] The utility model is further explained in connection with the drawings and examples as follows:

[0021] Example 1: a novel support rod capable of action capture, referring to Figures 1 to 3 , including support rod shell 1, the inside top of support rod shell 1 is fixed with fixed rod 2, the bottom of fixed rod 2 is fixed with central shaft body 201, the outside of central shaft body 201 is penetrated with first outer ring 202, the outside of first outer ring 202 is penetrated with second outer ring 203, a plurality of first springs 3 are fixed between central shaft body 201 and first outer ring 202, a plurality of second springs 301 are fixed between first outer ring 202 and second outer ring 203, centrifugal assembly is arranged on the outside of second outer ring 203, in the static state, first outer ring 202 and second outer ring 203 keep compact state due to the pre-tightening force of spring, concave centrifugal plate body 206 is located at an initial position on the edge of second outer ring 203, along with the rapid shaking of support rod, concave centrifugal plate body 206 is subjected to centrifugal force and starts to slide along the edge of second outer ring 203, the sliding of concave centrifugal plate body 206 causes second outer ring 203 to be subjected to uneven force, prompting second outer ring 203 to start to unfold relative to first outer ring 202, simultaneously, first spring 3 and second spring 301 start to be stretched, store elastic potential energy, first outer ring 202 further unfolds relative to central shaft body 201 due to the unfolding of second outer ring 203, along with the unfolding and contraction of first outer ring 202 and second outer ring 203, the first annular light belt 213 installed on their top also changes form, creating dynamic light and shadow effect, when the user stops shaking the support rod, first outer ring 202 and second outer ring 203 will gradually recover to the initial compact state due to the elastic restoring force of first spring 3 and second spring 301, concave centrifugal plate body 206 also returns to the initial position, preparing for the next unfolding action, solve the technical problems that the traditional support rod is mostly fixed shape (such as rod shape, spherical shape), cannot change physical form in real time according to the user's swinging action, the visual expression is limited to static light emission or simple swing, cannot realize the hierarchical response such as "dynamic blooming", moreover, the existing deformable support rod (such as folding type, telescopic type) needs to rely on motor, sensor or programming control, the structure is complex and the cost is high, is prone to jam or failure due to electronic component failure, and the reliability is low in outdoor scene.

[0022] Specifically, referring to Figure 1 , the first outer ring 202 and the second outer ring 203 are both provided with a first annular groove 211 at the top, and the first annular groove 211 is internally provided with a first annular lamp strip 213.

[0023] Further, referring to Figure 1 , the surface of the second outer ring 203 is provided with a plurality of second annular grooves 204, and the plurality of second annular grooves 204 are internally provided with a second annular lamp strip 205.

[0024] It is worth noting that, referring to Figure 1 and Figure 3 , the centrifugal assembly includes a concave centrifugal plate body 206, a connecting rod 209, a limiting wheel 210, a square groove 207, and a vertical lamp strip 208. When the user starts to swing the support stick, the concave centrifugal plate body 206 is subjected to centrifugal force and starts to slide along the edge of the second outer ring 203, thereby driving the surface vertical lamp strip 208 to rotate. With the movement of the concave centrifugal plate body 206, the position angle of the vertical lamp strip 208 changes constantly, thereby forming a dynamic light trajectory in space. During the movement of the concave centrifugal plate body 206, it will constantly shield the plurality of second annular lamp strips 205 on the surface of the second outer ring 203. This shielding is not a simple on-off 102 effect, but the degree and range of shielding are constantly changing with the position and speed of the concave centrifugal plate body 206. The rotation of the vertical lamp strip 208, the expansion and contraction of the first annular lamp strip 213, and the part of the second annular lamp strip 205 shielded by the concave centrifugal plate body 206 together constitute a complex and dynamic light effect. This effect relies on the movement of the physical structure and does not need to be controlled by programming, without the need to set a large number of electronic components. Since the movement of the concave centrifugal plate body 206 is directly driven by the user's swinging action, the change of the light effect is also real-time. The speed, direction, and force of the user's swing will directly affect the position, angle, and brightness of the light, etc. This real-time light and structure interaction provides a new interactive experience for the user. The user can explore different light effects by changing the swinging action, thereby increasing the interest and participation of the support stick, solving the technical problems that the traditional support stick has a fixed shape (such as a rod shape, a spherical shape), cannot change the physical form in real time according to the user's swinging action, the visual expression is limited to static light or simple swinging, and cannot realize "dynamic blooming" and other hierarchical responses. Moreover, the existing variable form support stick (such as a folding type and a telescopic type) needs to rely on a motor, a sensor, or programming control, and has a complex structure and high cost, is prone to jamming or failure due to electronic component failure, and has low reliability in outdoor scenes.

[0025] It is worth noting that, referring to Figure 3The concave centrifugal plate body 206 is provided with bearings 212 on the upper and lower ends of one side of the inner wall, and one end of a connecting rod 209 is rotatably connected to the inside of the bearings 212.

[0026] It is worth mentioning that, referring to Figure 3 The other end of the connecting rod 209 is fixed with a limiting wheel 210, and the limiting wheel 210 is clamped with the upper and lower ends of the second outer ring 203.

[0027] It is worth emphasizing that, referring to Figure 1 The bottom of the alarm stick shell 1 is fixed with an alarm stick handle 101, the surface of the alarm stick handle 101 is provided with a switch 102, the bottom of the alarm stick handle 101 is provided with a bottom cover 103, and it should be noted that the inside of the alarm stick handle 101 is provided with a battery, which supplies power to the first annular lamp strip 213, the second annular lamp strip 205, and the vertical lamp strip 208.

[0028] In the use of a new type of action-capturable baton, in the static state, the first outer ring 202 and the second outer ring 203 are kept in a compact state due to the pre-tightening force of the spring, and the concave centrifugal plate body 206 is located at an initial position on the edge of the second outer ring 203. With the rapid shaking of the baton, the concave centrifugal plate body 206 is subjected to centrifugal force and starts to slide along the edge of the second outer ring 203. The sliding of the concave centrifugal plate body 206 causes the second outer ring 203 to be subjected to uneven force, prompting the second outer ring 203 to start to expand relative to the first outer ring 202, while the first spring 3 and the second spring 301 start to be stretched, storing elastic potential energy. The first outer ring 202 further expands relative to the central shaft body 201 due to the expansion of the second outer ring 203, and with the expansion and contraction of the first outer ring 202 and the second outer ring 203, the first annular light belt 213 installed on their top also changes its form, creating a dynamic light and shadow effect. When the user stops shaking the baton, the first outer ring 202 and the second outer ring 203 will gradually return to the initial compact state due to the elastic restoring force of the first spring 3 and the second spring 301, and the concave centrifugal plate body 206 also returns to the initial position, preparing for the next expansion action. When the user starts to swing the baton, the concave centrifugal plate body 206 is subjected to centrifugal force and starts to slide along the edge of the second outer ring 203, thereby driving the surface vertical light belt 208 to rotate. With the movement of the concave centrifugal plate body 206, the position angle of the vertical light belt 208 changes constantly, thereby forming a dynamic light trajectory in space. During the movement of the concave centrifugal plate body 206, it constantly blocks the second annular light belt 205 on the surface of the second outer ring 203. This blocking is not a simple on-off 102 effect, but the degree and range of blocking are constantly changing with the position and speed of the concave centrifugal plate body 206. The rotation of the vertical light belt 208, the expansion and contraction of the first annular light belt 213, and the part of the second annular light belt 205 blocked by the concave centrifugal plate body 206 together constitute a complex and dynamic light effect. This effect relies on the movement of the physical structure and does not need to be controlled by programming, without the need to set a large number of electronic components. Since the movement of the concave centrifugal plate body 206 is directly driven by the user's swinging action, the change of the light effect is also real-time. The speed, direction and intensity of the user's swinging will directly affect the position, angle and brightness of the light, etc. This real-time light and structure interaction provides a new interactive experience for the user. The user can explore different light effects by changing the swinging action, thereby increasing the interest and participation of the baton.

[0029] In addition, the components designed in the utility model are all general standard components or components known by the person skilled in the art, the structure and principle of which can be known by the person skilled in the art through a technical manual or through a conventional experimental method, and the person skilled in the art can completely realize without redundancy, and the content protected by the utility model does not involve improvement of internal structure and method.

[0030] The utility model discloses the embodiment discloses the preferable embodiment, but is not limited to this, and the person skilled in the art, the person skilled in the art, very easily according to the above -mentioned embodiment, the spirit of the utility model is appreciated, and different is drawn and changes, but as long as not departing from the spirit of the utility model, all are in the protection scope of the utility model.

Claims

1. A new type of action-capturable baton, comprising a baton housing (1), characterized in that, The inside top of the rescue stick shell (1) is fixed with a fixed rod (2), the bottom of the fixed rod (2) is fixed with a center shaft body (201), the outside of the center shaft body (201) penetrates a first outer ring (202), the outside of the first outer ring (202) penetrates a second outer ring (203), a plurality of first springs (3) are fixed between the center shaft body (201) and the first outer ring (202), a plurality of second springs (301) are fixed between the first outer ring (202) and the second outer ring (203), and a centrifugal assembly is arranged outside the second outer ring (203).

2. The action-capturable novelty rally stick of claim 1, wherein, The top of the first outer ring (202) and the top of the second outer ring (203) are both provided with a first annular groove (211), and the inside of the first annular groove (211) is mounted with a first annular lamp strip (213).

3. The action-capturable novelty rally stick of claim 1, wherein, A plurality of second annular grooves (204) are arranged on the surface of the second outer ring (203), and the inside of the plurality of second annular grooves (204) is mounted with a second annular lamp strip (205).

4. The action-capturable novelty rally stick of claim 1, wherein, The centrifugal assembly comprises a concave centrifugal plate body (206), a connecting rod (209), a limiting wheel (210), a square groove (207) and a vertical lamp strip (208).

5. The action-capturable novelty rally stick of claim 4, wherein, The inside of the bearing (212) is rotatably connected with one end of the connecting rod (209).

6. The action-capturable novelty rally stick of claim 4, wherein, The other end of the connecting rod (209) is fixed with the limiting wheel (210), and the limiting wheel (210) is clamped with the upper and lower ends of the second outer ring (203).

7. The action-capturable novelty rally stick of claim 1, wherein, The bottom of the rescue stick shell (1) is fixed with a rescue stick handle (101), the surface of the rescue stick handle (101) is mounted with a switch (102), and the bottom of the rescue stick handle (101) is mounted with a bottom cover (103).

Citation Information

Patent Citations

  • Rotatable rescue rod

    CN219120370U