A dual-use multifunctional fluorescent stick

By designing a dual-use multifunctional fluorescent stick and combining chemiluminescence and electronic luminescence modes, the problems of single function and low reuse rate of traditional fluorescent sticks are solved, flexible dual luminescence mode and long-term stable luminescence are achieved, and the service life and resource utilization of the device are improved.

CN120557581BActive Publication Date: 2025-09-30ZHANGZHOU TUOPULAITE IND & TRADE CO LTD
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Patent Information

Application Number
CN202511062952.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-07-31
Publication Date
2025-09-30
Estimated Expiration
2045-07-31

AI Technical Summary

Technical Problem

Traditional fluorescent sticks have a single function and low reuse rate. In addition, existing LED fluorescent sticks fail to effectively combine chemiluminescence and electroluminescence and lack flexibility.

Method used

A dual-use multifunctional fluorescent stick is designed, which combines chemiluminescence and electronic luminescence modes. Through the threaded connection of the fluorescent reaction tube and the fluorescent stick handle, the glass tube is broken to stimulate the chemical reaction and the generator converts mechanical energy into electrical energy, supporting long-term stable luminescence.

Benefits of technology

It realizes dual luminescence mode, improves the flexibility of use and life, saves electricity resources, is suitable for night activities, enhances brightness and visual effects, and supports instant lighting of chemiluminescence and long-term stable lighting of electronic luminescence.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the technical field of light-emitting devices, and specifically to a dual-use multifunctional fluorescent stick, comprising a fluorescent stick handle and a fluorescent reaction tube connected via a threaded connection column. The fluorescent stick handle is provided with an electronic light-emitting mechanism, which includes a battery and an LED lamp bead. The threaded connection column is internally provided with a glass tube, and the interior of the fluorescent reaction tube is filled with an ester compound mixture. A glass tube crushing cone is provided at one end of the fluorescent reaction tube. The device of the present invention can achieve dual light-emitting modes. Chemiluminescence provides instant lighting when there is no power supply, and can be combined and separated as needed to improve flexibility of use. Electronic light-emitting supports long-term stable light emission. By converting mechanical energy into electrical energy, it is beneficial to save power resources and is suitable for nighttime activities. The two light-emitting modes can be turned on simultaneously to enhance brightness or visual effects.
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Description

Technical Field

[0001] The present invention relates to a fluorescent stick, in particular to a dual-purpose multifunctional fluorescent stick, belonging to the technical field of light-emitting devices. Background Art

[0002] Early fluorescent sticks were made of organic fluorescent powder. They had a simple form and single function and were mainly used for exploration, entertainment, sports activities, etc.

[0003] Traditional glow sticks are usually disposable and contain chemical fluorescent solution. They are often discarded directly after use and have a low reuse rate. Whether it is traditional glow sticks or existing LED glow sticks, most of them have relatively simple functions and can only meet basic lighting needs. They have low flexibility and reuse rate. Moreover, there is currently no application on the market that combines traditional glow sticks and LED glow sticks.

[0004] Therefore, it is urgent to improve the fluorescent stick to solve the above problems. Summary of the Invention

[0005] The purpose of the present invention is to provide a dual-use multifunctional fluorescent stick. This device can realize dual luminescence modes. Chemiluminescence provides instant lighting when there is no power supply. It can be combined and separated as needed to improve the flexibility of use. Electronic luminescence supports long-term stable luminescence. By converting mechanical energy into electrical energy, it is beneficial to save electricity resources and is suitable for night activities. The two luminescence modes are turned on at the same time to enhance brightness or visual effects.

[0006] In order to achieve the above objectives, the main technical solutions adopted by the present invention include:

[0007] A dual-use multifunctional fluorescent stick comprises a fluorescent stick handle and a fluorescent reaction cylinder connected by a threaded connection column, wherein the upper end of the threaded connection column is screwed to the fluorescent reaction cylinder by a threaded connection, and the lower end of the threaded connection column is screwed to the fluorescent stick handle by a threaded connection, and the fluorescent stick handle is provided with an electronic light-emitting mechanism, which includes a battery and an LED lamp bead;

[0008] A glass tube placement chamber is provided inside the threaded connection column, a glass tube is provided inside the glass tube placement chamber, the glass tube is filled with a hydrogen peroxide solution, the interior of the fluorescent reaction cylinder is filled with an ester compound mixture, and a glass tube crushing cone is provided at one end of the fluorescent reaction cylinder away from the threaded connection column, and the glass tube crushing cone is fixedly arranged inside the fluorescent reaction cylinder;

[0009] The threaded connection column includes a threaded column and a limiting bolt, the threaded column and the limiting bolt are screwed together by threads, the fluorescent reaction tube is threadedly connected to one end of the threaded column, and the limiting bolt is used to limit the fluorescent reaction tube. When the limiting bolt rotates toward one side of the fluorescent stick handle, the fluorescent reaction tube approaches the threaded connection column, and the glass tube breaking cone squeezes the glass tube, causing the glass tube to break and fuse the hydrogen peroxide solution and the ester compound mixture.

[0010] Preferably, a micro exhaust hole is fixedly provided on the side surface of the fluorescent reaction cylinder, and a one-way exhaust valve is fixedly provided inside the micro exhaust hole.

[0011] Preferably, a glass tube slot is provided inside the glass tube placement chamber, and the glass tube is arranged inside the glass tube slot;

[0012] A convex lens groove is formed at one end of the glass tube clamping groove close to the fluorescent stick handle, and a convex lens is fixedly arranged inside the convex lens groove.

[0013] Preferably, a threaded connection groove is provided on a side of the fluorescent reaction tube away from the handle of the fluorescent stick, and the threaded connection groove is screwed to the threaded column through a thread.

[0014] Preferably, a threaded column connection port is provided on a side of the fluorescent stick handle close to the threaded connection column, and the threaded column is threadedly connected to the threaded column connection port.

[0015] Preferably, an LED lamp bead bin is opened inside the handle of the fluorescent stick, the battery and the LED lamp bead are fixedly arranged inside the LED lamp bead bin, a lens is fixedly arranged between the LED lamp bead bin and the threaded column connection port, and the LED lamp bead is fixedly arranged on the inner side of the lens.

[0016] Preferably, a driving groove is provided on the outer side of the fluorescent stick handle, and the driving groove is connected to the LED lamp bead compartment through a generator compartment, and a generator is fixedly provided inside the generator compartment, and the generator is electrically connected to the battery;

[0017] A driving wheel is rotatably provided inside the driving slot, and the inner ring of the driving wheel is provided with driving teeth. The output end of the generator is provided with a generator driven wheel meshing with the driving teeth, and the driving wheel is used to rotate the generator driven wheel.

[0018] Preferably, a lamp switch is fixedly provided on the outer side of the fluorescent stick handle, the lamp switch is electrically connected to the LED lamp bead, and the lamp switch is used to control the on and off of the LED lamp bead.

[0019] Preferably, a plurality of evenly distributed spare glass tube bins are provided inside the handle of the fluorescent stick, and a spare hydrogen peroxide glass tube is provided inside the spare glass tube bin;

[0020] A spare ester compound mixed liquid tank is provided in the middle of the spare glass tube tank and inside the fluorescent stick handle. A spare ester compound mixed liquid is provided inside the spare ester compound mixed liquid tank.

[0021] Preferably, a rotating assembly port is provided at one end of the fluorescent stick handle away from the threaded connection column, a rotating material collecting plate is rotatably provided on the rotating assembly port, a rotating assembly port is provided on one side of the rotating material collecting plate, and the rotating material collecting plate is rotatably provided on the rotating assembly port through a rotating head:

[0022] A drain port is provided on one side of the rotary assembly port and is connected to the standby ester compound mixed liquid tank, and a drain plug is provided inside the drain port;

[0023] The rotary material taking plate is provided with a rotary plate taking port corresponding to the spare glass tube bin, and a rotary handle is fixedly provided on the outer side of the rotary material taking plate.

[0024] The present invention has at least the following beneficial effects:

[0025] 1. When luminescent, the glass tube is broken by the glass tube breaking cone, and the hydrogen peroxide solution enters the interior of the fluorescent reaction tube and mixes with the ester compound mixture, releasing energy to excite the fluorescent dye to emit light. When not in use, the fluorescent reaction tube is limited by moving the position of the limit bolt. When the fluorescent reaction tube moves to the limit bolt, it will no longer move, thereby ensuring that the glass tube is not broken by the broken glass tube breaking cone, thereby improving the flexibility and convenience of use.

[0026] 2. When the driving wheel rotates, it can drive the generator to rotate, store the generated electricity inside the battery and drive the LED lamp beads to light up. Therefore, when the electricity in the battery is exhausted, the driving wheel can be turned by hand to generate electricity for the generator, thereby improving the utilization rate of resources and thus extending the service life of the device. It converts mechanical energy into electrical energy, and the excess electricity can be directly stored in the battery for backup, thereby improving the flexibility of the device.

[0027] 3. Combined luminescence: A lens is provided on the handle of the fluorescent stick, and the lens corresponds to the convex lens. After the LED lamp bead is started, the light will be emitted through the lens to the convex lens, and enter the interior of the fluorescent reaction tube through the convergence of the convex lens, thereby achieving the purpose of enhancing the brightness. Therefore, this device can achieve dual luminescence mode. Chemiluminescence provides instant lighting when there is no power supply. It can be combined and separated as needed to improve the flexibility of use. Electronic luminescence supports long-term stable luminescence. By converting mechanical energy into electrical energy, it is beneficial to save electricity resources and is suitable for night activities. The two luminescence modes are turned on at the same time to enhance brightness or visual effects.

[0028] 4. One end of the fluorescent reaction tube is connected to the threaded column through a thread, which can not only seal the ester compound mixture to achieve the purpose of storing the ester compound mixture, but also can remove the fluorescent reaction tube and add it back to the inside of the fluorescent reaction tube after the reaction is completed for recycling, thereby improving the flexibility of the device and the service life. Moreover, the threaded connection groove on the fluorescent reaction tube can also be reconnected to a threaded column and then connected to another fluorescent reaction tube. Multiple fluorescent reaction tubes greatly increase the lighting space. When using this device for exploration, several fluorescent reaction tubes can be removed in turn to set signposts, further improving the flexibility of the device and the scope of use.

[0029] 5. A spare glass tube warehouse and a spare ester compound mixture liquid warehouse are provided inside the handle of the fluorescent stick. A hydrogen peroxide glass tube is placed inside the spare glass tube warehouse, and a spare ester compound mixture liquid is provided inside the spare ester compound mixture liquid warehouse. Therefore, after the reaction of the hydrogen peroxide solution and the ester compound mixture liquid inside the fluorescent reaction tube is completed, the reaction liquid is poured out, and the hydrogen peroxide glass tube inside the spare glass tube warehouse replaces the position of the glass tube, and the spare ester compound mixture liquid is injected into the interior of the fluorescent reaction tube. Therefore, the glass tube and the ester compound mixture liquid are replaced in a short time, thereby improving the chemiluminescence time. BRIEF DESCRIPTION OF THE DRAWINGS

[0030] The drawings described herein are used to provide a further understanding of the present application and constitute a part of the present application. The illustrative embodiments of the present application and their descriptions are used to explain the present application and do not constitute an improper limitation on the present application. In the drawings:

[0031] Figure 1 is a cross-sectional view of the present invention;

[0032] Figure 2 It is a schematic diagram of the combination of the present invention;

[0033] Figure 3 It is a separation schematic diagram of the present invention;

[0034] Figure 4is a cross-sectional view of the electronic light-emitting mechanism of the present invention;

[0035] Figure 5 This is a structural diagram of a threaded connection column according to the present invention;

[0036] Figure 6 The fluorescent reaction tube structure of the present invention Figure 1 ;

[0037] Figure 7 This is a structural diagram of the electronic light-emitting mechanism of the present invention;

[0038] Figure 8 This is a structural diagram of the spare glass tube warehouse of the present invention;

[0039] Figure 9 is a cross-sectional view of the handle of the fluorescent stick of the present invention;

[0040] Figure 10 This is a structural diagram of the rotary reclaiming plate of the present invention;

[0041] Figure 11 The fluorescent reaction tube structure of the present invention Figure 2 .

[0042] In the figure, 1. fluorescent stick handle; 101. drive slot; 102. LED lamp bead compartment; 103. generator compartment; 104. spare glass tube compartment; 105. spare ester compound mixture compartment; 106. drain port; 107. rotary assembly port; 108. threaded column connection port; 2. threaded connection column; 201. threaded column; 202. limit bolt; 203. glass tube placement compartment; 204. glass tube clamping slot; 205. convex lens slot; 3. fluorescent reaction tube; 302. threaded connection slot; 304. glass tube crushing cone; 4. electronic light Mechanism; 401, driving wheel; 402, generator; 403, driving gear; 404, generator driven wheel; 405, battery; 406, LED lamp bead; 407, lamp body switch; 5, rotating feeding plate; 501, rotating head; 502, rotating plate feeding port; 503, rotating handle; 6, glass tube; 601, hydrogen peroxide solution; 602, spare hydrogen peroxide glass tube; 7, convex lens; 8, ester compound mixture; 801, spare ester compound mixture; 9, drain plug; 10, micro exhaust hole; 11, lens. DETAILED DESCRIPTION

[0043] The following will describe the implementation methods of the present application in detail with reference to the accompanying drawings and examples, so that the implementation process of how the present application applies technical means to solve technical problems and achieve technical effects can be fully understood and implemented accordingly.

[0044] like Figures 1-11As shown, the dual-use multifunctional fluorescent stick provided by this embodiment includes a fluorescent stick handle 1 and a fluorescent reaction tube 3 connected by a threaded connecting column 2. The upper end of the threaded connecting column 2 is screwed together with the fluorescent reaction tube 3 by a thread, and the lower end of the threaded connecting column 2 is screwed together with the fluorescent stick handle 1 by a thread. The fluorescent reaction tube 3 is connected to the fluorescent stick handle 1 through the threaded connecting column 2, that is, the fluorescent reaction tube 3 can be combined with the fluorescent stick handle 1 through the threaded connecting column 2, and can also be separated from the fluorescent stick handle 1 through the threaded connecting column 2. The structure is simple and flexible. The fluorescent reaction tube 3 is connected to the threaded connecting column 2, and then the threaded connecting column 2 is connected to the fluorescent stick handle 1 to realize the combination of the fluorescent reaction tube 3 and the fluorescent stick handle 1. The fluorescent reaction tube 3 and the fluorescent stick handle 1 are separated by the threaded connecting column 2 to realize the independent use of the fluorescent reaction tube 3 and the fluorescent stick handle 1. In the process of separating the fluorescent stick handle 1 and the fluorescent reaction tube 3, the threaded connecting column 2 is always fixed on the fluorescent reaction tube 3. Therefore, the fluorescent reaction tube 3 can be carried and used by holding the fluorescent stick handle 1, and can also be used as a fixed light source or a guide light source by placing the fluorescent reaction tube 3 in an appropriate position.

[0045] When performing chemiluminescence:

[0046] The threaded connection column 2 is provided with a glass tube placement chamber 203, and the glass tube placement chamber 203 is provided with a glass tube 6. The interior of the glass tube 6 is filled with a hydrogen peroxide solution 601, and the interior of the fluorescent reaction cylinder 3 is filled with an ester compound mixture 8. In a conventional fluorescent stick, the hydrogen peroxide solution 601 is sealed inside the glass tube 6. After the glass tube 6 is broken, it is mixed with the ester compound mixture 8. After the two liquids are mixed, a chemical reaction occurs, releasing energy to excite the fluorescent dye to emit light. In the present invention, the hydrogen peroxide solution 601 is still stored inside the glass tube 6, and the glass tube 6 is arranged inside the glass tube placement chamber 203, and is also arranged inside the fluorescent reaction cylinder 3. The interior of the reaction cylinder 3, so during the process of carrying, the fluorescent reaction cylinder 3 can protect the glass tube 6, preventing the glass tube 6 from being damaged due to accidental contact during the process of carrying, which affects the effect of use. The end of the fluorescent reaction cylinder 3 away from the threaded connection column 2 is provided with a glass tube breaking cone 304, and the glass tube breaking cone 304 is fixedly arranged inside the fluorescent reaction cylinder 3. When light emission is required, the glass tube 6 can be broken by the glass tube breaking cone 304 inside the fluorescent reaction cylinder 3. After the glass tube 6 is broken, the hydrogen peroxide solution 601 enters the interior of the fluorescent reaction cylinder 3 and mixes with the ester compound mixture 8, releasing energy to excite the fluorescent dye to emit light;

[0047] In the process of breaking the glass tube 6, it is also necessary to control the breaking time, that is, to break it only when needed, the threaded connection column 2 includes a threaded column 201 and a limiting bolt 202, the threaded column 201 and the limiting bolt 202 are screwed together by threads, the fluorescence reaction tube 3 is threadedly connected to one end of the threaded column 201, and the limiting bolt 202 is used to limit the fluorescence reaction tube 3. If the glass tube 6 needs to be broken, the fluorescence reaction tube 3 needs to be moved, and the glass tube 6 is squeezed by the glass tube breaking cone 304 inside the fluorescence reaction tube 3. Therefore, the distance between the glass tube breaking cone 304 and the glass tube 6 can be changed by rotating the fluorescence reaction tube 3;

[0048] When the fluorescent tube 3 is in use, the fluorescent tube 6 is prevented from rotating on the threaded column 201. When the limiting bolt 202 is rotated and moved toward one side of the fluorescent stick handle 1, the fluorescent tube 3 is close to the threaded connection column 2, and the glass tube crushing cone 304 squeezes the glass tube 6, causing the glass tube 6 to break and fuse the hydrogen peroxide solution 601 and the ester compound mixture 8. Therefore, the limiting bolt 202 is threadedly connected to the threaded column 201, and the position of the limiting bolt 202 is moved to limit the fluorescent tube 3. When the fluorescent tube 3 moves to contact the limiting bolt 202, it no longer moves, thereby ensuring that the glass tube 6 is not broken by the broken glass tube crushing cone 304. When in use, the position of the limiting bolt 202 is moved, and then the glass tube crushing cone 304 squeezes the glass tube 6 when the position of the fluorescent tube 3 is moved, thereby achieving the purpose of breaking the glass tube 6.

[0049] In order to prevent excessive pressure inside the fluorescent reaction tube 3, which would prevent the glass tube 6 from being broken by the glass tube breaking cone 304, a micro exhaust hole 10 is fixedly provided on the side of the fluorescent reaction tube 3. A one-way exhaust valve is fixedly provided inside the micro exhaust hole 10. The micro exhaust hole 10 is provided on the fluorescent reaction tube 3 to reduce pressure to a certain extent, ensuring that the fluorescent reaction tube 3 moves smoothly on the threaded column 201, thereby improving the efficiency of luminescence.

[0050] When electron emission occurs:

[0051] The handle 1 of the fluorescent stick is provided with an electronic light-emitting mechanism 4, which includes a battery 405 and an LED lamp bead 406. The battery 405 drives the LED lamp bead 406 to emit light, which is reusable and has stable brightness. In order to improve the utilization rate, a driving groove 101 is provided on the outer side of the fluorescent stick handle 1. The driving groove 101 is connected to the LED lamp bead compartment 102 through the generator compartment 103. A generator 402 is fixedly provided inside the generator compartment 103. The generator 402 is electrically connected to the battery 405. A generator 402 is fixed inside the generator compartment 103. When the driving wheel 401 arranged inside the driving groove 101 is rotated, the generator 402 can be driven to rotate, and the generated electrical energy is stored inside the battery 405 and drives the LED lamp bead 406 to emit light. Therefore, when the electrical energy in the battery 405 is exhausted, the driving wheel 401 can be manually rotated to generate electricity for the generator 402, thereby improving the utilization rate of resources and thus extending the service life of the device.

[0052] The driving groove 101 is provided with a driving wheel 401 for rotation. The inner ring of the driving wheel 401 is provided with a driving tooth 403. The output end of the generator 402 is provided with a generator driven wheel 404 that is meshed with the driving tooth 403. The driving wheel 401 is used to rotate the generator driven wheel 404. When the driving wheel 401 is manually rotated, the driving tooth 403 on the driving wheel 401 drives the generator driven wheel 404 to rotate. When the generator driven wheel 404 rotates, the generator 402 generates electrical energy, which can directly drive the LE The D lamp bead 406 emits light, converting mechanical energy into electrical energy. The excess electrical energy can also be directly stored in the battery 405 for standby use, thereby improving the flexibility of the device. A lamp body switch 407 is fixedly provided on the outer side of the fluorescent stick handle 1. The lamp body switch 407 is electrically connected to the LED lamp bead 406. The lamp body switch 407 is used to control the on and off of the LED lamp bead 406. The lamp body switch 407 is provided on the outer side of the fluorescent stick handle 1. The on and off of the LED lamp bead 406 is controlled by the lamp body switch 407, thereby improving the convenience of use.

[0053] Combination luminescence, the interior of the glass tube placement chamber 203 is provided with a glass tube slot 204, the glass tube 6 is arranged inside the glass tube slot 204, the glass tube 6 is installed inside the glass tube slot 204, the stability of the glass tube 6 is improved, and the glass tube 6 is prevented from being accidentally touched, the glass tube slot 204 is provided with a convex lens groove 205 at one end close to the fluorescent stick handle 1, and a convex lens 7 is fixedly provided inside the convex lens groove 205, and the convex lens 7 has a certain focusing effect on light, and a threaded column connecting port 108 is provided on one side of the fluorescent stick handle 1 close to the threaded connecting column 2, the threaded column 201 is threadedly connected to the threaded column connecting port 108, and after the threaded column 201 is connected to the threaded column connecting port 108, the threaded connecting column 2 can be fixed on the fluorescent stick handle 1, and the fluorescent stick handle An LED lamp bead bin 102 is provided inside the hand 1, and the battery 405 and the LED lamp bead 406 are fixedly arranged inside the LED lamp bead bin 102, thereby improving the sealing performance of the device and increasing the service life of the battery 405 and the LED lamp bead 406. In addition, a lens 11 is fixedly provided between the LED lamp bead bin 102 and the threaded column connection port 108, and the LED lamp bead 406 is fixedly provided on the inner side of the lens 11. A convex lens 7 is provided at the bottom of the threaded connection column 2, and a lens 11 is provided on the fluorescent stick handle 1. The lens 11 corresponds to the convex lens 7. After the LED lamp bead 406 is started, the light will be emitted through the lens 11 to the convex lens 7, and enter the interior of the fluorescent reaction tube 3 through the convergence of the convex lens 7, thereby achieving the purpose of enhancing the brightness;

[0054] Therefore, this device can achieve dual luminescence modes. Chemiluminescence provides instant lighting when there is no power supply. It can be combined and separated as needed to improve the flexibility of use. Electronic luminescence supports long-term stable luminescence. By converting mechanical energy into electrical energy, it is beneficial to save electricity resources and is suitable for night activities. The two luminescence modes are turned on at the same time to enhance brightness or visual effects.

[0055] Further, such as Figure 2 、 Figure 3 as well as Figure 6 As shown, a threaded connection groove 302 is provided on a side of the fluorescent reaction tube 3 away from the fluorescent stick handle 1. The threaded connection groove 302 is screwed together with the threaded column 201 through a thread. One end of the fluorescent reaction tube 3 is threadedly connected to the threaded column 201, which can not only seal the ester compound mixture 8 and achieve the purpose of storing the ester compound mixture 8, but also enable the fluorescent reaction tube 3 to be removed and the ester compound mixture 8 to be refilled into the interior of the fluorescent reaction tube 3 after the reaction is completed for recycling, thereby improving the flexibility and service life of the device.

[0056] Moreover, the threaded connection groove 302 on the fluorescent reaction tube 3 can also be reconnected to a threaded column 201 and then connected to a fluorescent reaction tube 3. Similarly, multiple fluorescent reaction tubes 3 can be connected. Multiple fluorescent reaction tubes 3 greatly increase the lighting space. When using this device for exploration, several fluorescent reaction tubes 3 can be removed in turn to set signposts, further improving the flexibility and scope of use of this device.

[0057] Furthermore, in order to prolong the time of chemiluminescence, e.g. Figure 1 、 Figure 8 as well as Figure 9 As shown, the interior of the fluorescent stick handle 1 is provided with a plurality of evenly distributed spare glass tube warehouses 104, the interior of the spare glass tube warehouse 104 is provided with a spare hydrogen peroxide glass tube 602, the middle of the spare glass tube warehouse 104 is provided with a spare ester compound mixed liquid warehouse 105 inside the fluorescent stick handle 1, the interior of the spare ester compound mixed liquid warehouse 105 is provided with a spare ester compound mixed liquid 801, and the spare glass tube warehouse 104 and the spare ester compound mixed liquid warehouse 105 are provided inside the fluorescent stick handle 1, and the spare glass tube warehouse 104 is provided with a spare hydrogen peroxide glass tube 602. The hydrogen peroxide glass tube 602 and the spare ester compound mixture liquid tank 105 are provided with a spare ester compound mixture liquid 801. Therefore, after the reaction of the hydrogen peroxide solution 601 and the ester compound mixture liquid 8 inside the fluorescent reaction tube 3 is completed, the reaction liquid is poured out, and the spare hydrogen peroxide glass tube 602 inside the spare glass tube tank 104 replaces the position of the glass tube 6, and the spare ester compound mixture liquid 801 is injected into the interior of the fluorescent reaction tube 3. Therefore, the glass tube 6 and the ester compound mixture liquid 8 are replaced in a short time, thereby improving the chemiluminescence time.

[0058] Further, if Figure 8 and Figure 10As shown, a rotating assembly port 107 is provided at one end of the fluorescent stick handle 1 away from the threaded connection column 2, and a rotating material taking plate 5 is rotatably provided on the rotating assembly port 107. A rotating assembly port 107 is provided on one side of the rotating material taking plate 5. The rotating material taking plate 5 is rotatably provided on the rotating assembly port 107 through a rotating head 501. In order to facilitate material taking, a rotating assembly port 107 is provided on the fluorescent stick handle 1, and a rotating material taking plate 5 is rotatably provided. A drain port 106 connected to a spare ester compound mixed liquid tank 105 is provided on one side of the rotating assembly port 107. A drain plug 9 is provided inside the drain port 106. When the ester compound mixed liquid 8 needs to be replaced, the drain plug 9 is removed. 9 is taken out from the discharge port 106 and injected into the interior of the fluorescent reaction cylinder 3. The rotating plate taking port 502 corresponding to the spare glass tube warehouse 104 is opened on the rotating material taking plate 5. At the same time, the rotating plate taking port 502 is opened on the rotating material taking plate 5. When the rotating plate taking port 502 corresponds to the spare glass tube warehouse 104, the spare hydrogen peroxide glass tube 602 can be taken out. Only when the rotating plate taking port 502 corresponds to the discharge port 106 can the spare ester compound mixed liquid 801 be taken out. A rotating handle 503 is fixedly provided on the outer side of the rotating material taking plate 5. The rotating handle 503 is used to rotate the rotating material taking plate 5 to improve the convenience of use.

[0059] like Figures 1-11 As shown, the principle of the dual-use multifunctional fluorescent stick provided in this embodiment is as follows:

[0060] When performing chemiluminescence:

[0061] During the carrying process, the fluorescent reaction tube 3 can protect the glass tube 6 to prevent the glass tube 6 from being damaged due to accidental contact during the carrying process, which would affect the use effect. When luminescence is required, the glass tube 6 can be broken by the glass tube breaking cone 304 inside the fluorescent reaction tube 3. After the glass tube 6 is broken, the hydrogen peroxide solution 601 enters the interior of the fluorescent reaction tube 3 and mixes with the ester compound mixture 8, releasing energy to excite the fluorescent dye to emit light;

[0062] When electron emission occurs:

[0063] The handle 1 of the fluorescent stick is provided with an electronic light-emitting mechanism 4, which includes a battery 405 and an LED lamp bead 406. The battery 405 drives the LED lamp bead 406 to emit light, and the fluorescent stick can be reused and has stable brightness. In order to improve the utilization rate, a generator 402 is fixedly provided inside the generator compartment 103. The driving wheel 401 arranged inside the driving slot 101 can drive the generator 402 to rotate when rotating, and the generated electric energy is stored inside the battery 405 and drives the LED lamp bead 406 to emit light. Therefore, when the electric energy in the battery 405 is exhausted, the driving wheel 401 can be manually rotated to generate electricity for the generator 402, thereby improving the utilization rate of resources and thus extending the service life of the device.

[0064] Combined lighting: a convex lens 7 is provided at the bottom of the threaded connection column 2, and a lens 11 is provided on the fluorescent stick handle 1. The lens 11 corresponds to the convex lens 7. After the LED lamp bead 406 is turned on, the light will be emitted through the lens 11 to the convex lens 7, and then converged by the convex lens 7 into the interior of the fluorescent reaction tube 3, thereby achieving the purpose of enhancing the brightness;

[0065] Therefore, this device can achieve dual luminescence modes. Chemiluminescence provides instant lighting when there is no power supply. It can be combined and separated as needed to improve the flexibility of use. Electronic luminescence supports long-term stable luminescence. By converting mechanical energy into electrical energy, it is beneficial to save electricity resources and is suitable for night activities. The two luminescence modes are turned on at the same time to enhance brightness or visual effects.

[0066] For example, certain words are used in the specification and claims to refer to specific components. Those skilled in the art should understand that hardware manufacturers may use different terms to refer to the same component. This specification and claims do not use differences in names as a way to distinguish components, but use differences in the functions of the components as the criteria for distinction. For example, "including" mentioned throughout the specification and claims is an open term, so it should be interpreted as "including but not limited to". "Approximately" means that within an acceptable error range, those skilled in the art can solve technical problems within a certain error range and basically achieve technical effects.

[0067] It should be noted that the terms "include," "comprises," or any other variations thereof are intended to encompass non-exclusive inclusion, such that a product or system comprising a series of elements includes not only those elements but also other elements not explicitly listed, or elements inherent to such product or system. In the absence of further limitations, an element defined by the phrase "comprising a..." does not exclude the presence of other identical elements in the product or system comprising the element.

[0068] The foregoing description shows and describes several preferred embodiments of the present invention. However, as previously stated, it should be understood that the present invention is not limited to the forms disclosed herein and should not be construed as excluding other embodiments. Rather, the present invention can be used in various other combinations, modifications, and environments and can be modified within the scope of the inventive concept described herein by the teachings above or by techniques or knowledge in the relevant art. Modifications and variations made by those skilled in the art that do not depart from the spirit and scope of the present invention are intended to be within the scope of the appended claims.

Claims

1. A dual-use multifunctional fluorescent stick, comprising a fluorescent stick handle (1) and a fluorescent reaction tube (3) connected via a threaded connection column (2), characterized in that: The upper end of the threaded connection column (2) is connected to the fluorescent reaction cylinder (3) by screwing, and the lower end of the threaded connection column (2) is connected to the fluorescent stick handle (1) by screwing. The fluorescent stick handle (1) is provided with an electronic light-emitting mechanism (4), and the electronic light-emitting mechanism (4) includes a battery (405) and an LED lamp bead (406); A glass tube placement chamber (203) is provided inside the threaded connection column (2), a glass tube (6) is provided inside the glass tube placement chamber (203), the glass tube (6) is filled with a hydrogen peroxide solution (601), the fluorescent reaction cylinder (3) is filled with an ester compound mixture (8), and a glass tube crushing cone (304) is provided at one end of the fluorescent reaction cylinder (3) away from the threaded connection column (2), and the glass tube crushing cone (304) is fixedly provided inside the fluorescent reaction cylinder (3); The threaded connection column (2) includes a threaded column (201) and a limiting bolt (202), the threaded column (201) and the limiting bolt (202) are connected by screwing, the fluorescent reaction tube (3) is threadedly connected to one end of the threaded column (201), the limiting bolt (202) is used to limit the fluorescent reaction tube (3), when the limiting bolt (202) rotates toward one side of the fluorescent stick handle (1), the fluorescent reaction tube (3) approaches the threaded connection column (2), and the glass tube crushing cone (304) squeezes the glass tube (6), and causes the glass tube (6) to break and fuse the hydrogen peroxide solution (601) and the ester compound mixture (8).

2. The dual-use multifunctional fluorescent stick according to claim 1, characterized in that: A micro exhaust hole (10) is fixedly provided on the side surface of the fluorescent reaction cylinder (3), and a one-way exhaust valve is fixedly provided inside the micro exhaust hole (10).

3. The dual-use multifunctional fluorescent stick according to claim 1, characterized in that: A glass tube clamping slot (204) is provided inside the glass tube placement chamber (203), and the glass tube (6) is arranged inside the glass tube clamping slot (204); A convex lens groove (205) is provided at one end of the glass tube clamping groove (204) close to the fluorescent stick handle (1), and a convex lens (7) is fixedly arranged inside the convex lens groove (205).

4. The dual-use multifunctional fluorescent stick according to claim 1, characterized in that: A threaded connection groove (302) is provided on a side of the fluorescent reaction tube (3) away from the fluorescent stick handle (1), and the threaded connection groove (302) is connected to the threaded column (201) through a threaded engagement.

5. The dual-use multifunctional fluorescent stick according to claim 1, characterized in that: A threaded column connection opening (108) is provided on one side of the fluorescent stick handle (1) close to the threaded connection column (2), and the threaded column (201) is threadedly connected to the threaded column connection opening (108).

6. The dual-use multifunctional fluorescent stick according to claim 5, characterized in that: An LED lamp bead bin (102) is provided inside the fluorescent stick handle (1), the battery (405) and the LED lamp bead (406) are both fixedly arranged inside the LED lamp bead bin (102), a lens (11) is fixedly arranged between the LED lamp bead bin (102) and the threaded column connection port (108), and the LED lamp bead (406) is fixedly arranged on the inner side of the lens (11).

7. The dual-use multifunctional fluorescent stick according to claim 6, characterized in that: The outer side of the fluorescent stick handle (1) is provided with a driving groove (101), the driving groove (101) is connected to the LED lamp bead compartment (102) through the generator compartment (103), a generator (402) is fixedly arranged inside the generator compartment (103), and the generator (402) is electrically connected to the battery (405); A driving wheel (401) is rotatably provided inside the driving slot (101), and an inner ring of the driving wheel (401) is provided with driving teeth (403). An output end of the generator (402) is provided with a generator driven wheel (404) meshingly connected to the driving teeth (403), and the driving wheel (401) is used to rotate the generator driven wheel (404).

8. The dual-use multifunctional fluorescent stick according to claim 1, characterized in that: A lamp body switch (407) is fixedly provided on the outer side of the fluorescent stick handle (1), and the lamp body switch (407) is electrically connected to the LED lamp bead (406). The lamp body switch (407) is used to control the on and off of the LED lamp bead (406).

9. The dual-use multifunctional fluorescent stick according to claim 1, characterized in that: A plurality of evenly distributed spare glass tube bins (104) are provided inside the fluorescent stick handle (1), and a spare hydrogen peroxide glass tube (602) is provided inside the spare glass tube bin (104); A spare ester compound mixed liquid tank (105) is provided in the middle of the spare glass tube tank (104) inside the fluorescent stick handle (1), and a spare ester compound mixed liquid tank (801) is provided inside the spare ester compound mixed liquid tank (105).

10. The dual-use multifunctional fluorescent stick according to claim 9, characterized in that: A rotating assembly opening (107) is provided at one end of the fluorescent stick handle (1) away from the threaded connection column (2), a rotating material collecting plate (5) is rotatably provided on the rotating assembly opening (107), a rotating assembly opening (107) is provided on one side of the rotating material collecting plate (5), and the rotating material collecting plate (5) is rotatably provided on the rotating assembly opening (107) via a rotating head (501): A drain port (106) communicating with the standby ester compound mixed liquid tank (105) is provided on one side of the rotary assembly port (107), and a drain plug (9) is provided inside the drain port (106); The rotary material taking plate (5) is provided with a rotary plate taking port (502) corresponding to the spare glass tube bin (104), and a rotary handle (503) is fixedly provided on the outer side surface of the rotary material taking plate (5).

Citation Information

Patent Citations

  • Luminescent bar for amusement

    CN208605942U

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