CN109682261B - Electronic firework spraying device and system - Google Patents

Electronic firework spraying device and system Download PDF

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Publication number
CN109682261B
CN109682261B CN201910101091.0A CN201910101091A CN109682261B CN 109682261 B CN109682261 B CN 109682261B CN 201910101091 A CN201910101091 A CN 201910101091A CN 109682261 B CN109682261 B CN 109682261B
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spraying
liquid
electronic firework
tube
floater
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CN109682261A (en
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蒋泽全
张科宇
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Shenzhen Jintaitan Technology Co ltd
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Shenzhen Jintaitan Technology Co ltd
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Abstract

An electronic firework spraying device and system, comprising: the top of the liquid storage tank is provided with an opening; the pressurizing mechanism comprises an electric hydraulic pump and is used for sucking feed liquid and pressurizing and discharging the feed liquid; the spraying mechanism is matched with the opening and comprises a spraying pipe and a spraying head cover, and the spraying pipe and the spraying head cover form a spraying path; the starting control circuit is used for being electrically connected with the electric hydraulic pump, and the electric hydraulic pump is also used for driving feed liquid to be sprayed out through the spraying path; the light-emitting mechanism comprises an LED lamp, and the starting control circuit is further used for driving the LED lamp to emit light and irradiating the feed liquid in the injection path to conduct light guiding of light rays. The device and the system can realize the safe and non-fire liquid firework spraying effect by spraying safe and non-harmful feed liquid, not only can avoid hidden dangers such as fire disaster caused by the use of open fire of the existing firework, but also can avoid hidden dangers such as explosion caused during transportation.

Description

Electronic firework spraying device and system
Technical Field
The application relates to a simulated firework, in particular to an electronic firework spraying device and system.
Background
The firework with fire is used for celebrating holidays, is a traditional custom for thousands of years in China, and is also loved by a plurality of people around the world.
At present, two kinds of fireworks exist in the market, one is the fireworks of traditional gunpowder agent, also called fireworks, and the fireworks are sprayed with various colors after being ignited, the ignition point is between 800 and 1200 ℃, and the present invention has the advantage of good visual effect of flame combustion. The disadvantage is that the set-off environment requires a fireproof environment, otherwise fire is easy, and a large amount of dense smoke is emitted after combustion, which has serious pollution to the environment and is easy to cause harm to human body due to high temperature of combustion. Meanwhile, the manufacturing, production and transportation processes are easy to generate danger. The other is cold fireworks which are processed by metal powder with lower ignition point, the ignition point is 60-80 ℃, the cold fireworks have the advantages of low ignition point temperature and poor visual effect, meanwhile, the cold fireworks still need to be ignited by fire, and the ignition environment still requires fireproof environment. In addition, if the cold fireworks are burnt in the setting-off process, the burning temperature can reach 600 ℃ and the environmental safety and the personal safety can be dangerously damaged. The environment of the cold fireworks needs to be careful to avoid chemical reactions of other gases in the air, and even explosion risks are caused when the chemical reactions are serious, for example, if entertainment products such as colored foam spray are used in the environment of igniting the cold fireworks, the chemical reactions and even the explosion are easy to occur.
Disclosure of Invention
The application provides an electronic firework spraying control device and an electronic firework spraying system.
According to a first aspect of the present application, there is provided an electronic firework spraying device comprising:
The liquid storage tank is used for containing liquid, the liquid comprises water, and an opening is formed in the top of the liquid storage tank;
The pressurizing mechanism comprises an electric hydraulic pump and is used for sucking the feed liquid and pressurizing and discharging the feed liquid;
The injection mechanism is matched with the opening and comprises an injection pipe and a nozzle cover, the nozzle cover is arranged on the opening, one end of the injection pipe is connected with an output port of the electric hydraulic pump, the other end of the injection pipe is connected with the nozzle cover, an input port of the electric hydraulic pump is connected with the bottom of the liquid storage tank, and the injection pipe and the nozzle cover form an injection path;
The starting mechanism comprises a starting control circuit, wherein the starting control circuit is used for being electrically connected with the electric hydraulic pump, and the electric hydraulic pump is also used for driving the feed liquid to be sprayed out through the spraying path;
The light-emitting mechanism comprises an LED lamp, and the starting control circuit is further used for driving the LED lamp to emit light and irradiating the feed liquid in the injection path to conduct light guiding of light rays.
According to a second aspect of the present application, there is provided an electronic firework spraying system comprising a plurality of the electronic firework spraying devices described above, a plurality of the electronic firework spraying devices being in communication through a connecting tube.
Due to the adoption of the technical scheme, the application has the beneficial effects that:
due to the adoption of the technical scheme, the application has the beneficial effects that:
⑴ The embodiment of the application comprises a liquid storage tank, wherein the top of the liquid storage tank is provided with an opening; the pressurizing mechanism comprises an electric hydraulic pump and is used for sucking feed liquid and pressurizing and discharging the feed liquid; the spraying mechanism is matched with the opening and comprises a spraying pipe and a spraying head cover, and the spraying pipe and the spraying head cover form a spraying path; the starting control circuit is used for being electrically connected with the electric hydraulic pump, and the electric hydraulic pump is also used for driving feed liquid to be sprayed out through the spraying path; the light-emitting mechanism comprises an LED lamp, and the starting control circuit is further used for driving the LED lamp to emit light and irradiating the feed liquid in the injection path to conduct light guiding of light rays. The device and the system can realize the safe and non-fire liquid firework spraying effect by spraying safe and non-harmful feed liquid, not only can avoid hidden dangers such as fire disaster caused by the use of open fire of the existing firework, but also can avoid hidden dangers such as explosion caused during transportation.
⑵ According to the embodiment of the application, the safe and fireless liquid color firework spraying effect can be formed by adjusting materials with diffuse reflection or light absorption characteristics for light, such as plant starch and the like mixed in the feed liquid.
⑶ The device and the system of the embodiment of the application not only can generate continuous automatic injection effect, but also can be reused, thereby reducing the cost.
Drawings
FIG. 1 is a schematic view of the structure of an electronic firework spraying apparatus of the present application in one embodiment;
FIG. 2 is a schematic view of the structure of the electronic firework spraying apparatus of the present application in another embodiment;
fig. 3 is a schematic structural view of an electronic firework spraying system according to the present application in one embodiment.
Detailed Description
The application will be described in further detail below with reference to the drawings by means of specific embodiments. This application may be embodied in many different forms and is not limited to the implementations described in this example. The following detailed description is provided to facilitate a more thorough understanding of the present disclosure, in which words of upper, lower, left, right, etc., indicating orientations are used solely for the illustrated structure in the corresponding figures.
However, one skilled in the relevant art will recognize that the detailed description of one or more of the specific details may be omitted, or that other methods, components, or materials may be used. In some instances, some embodiments are not described or described in detail.
The numbering of the components itself, e.g. "first", "second", etc., is used herein merely to distinguish between the described objects and does not have any sequential or technical meaning.
Furthermore, the features and aspects described herein may be combined in any suitable manner in one or more embodiments. It will be readily understood by those skilled in the art that the steps or order of operation of the methods associated with the embodiments provided herein may also be varied. Thus, any order in the figures and examples is for illustrative purposes only and does not imply that a certain order is required unless explicitly stated that a certain order is required.
Embodiment one:
As shown in fig. 1 and 2, an electronic firework spraying apparatus 100 according to an embodiment of the present application includes:
the liquid storage tank 110 is used for containing liquid, the liquid 111 comprises water, and an opening is formed in the top of the liquid storage tank 110.
The pressurizing mechanism comprises an electric hydraulic pump 121 for sucking the feed liquid 111 in the liquid storage tank 110 and pressurizing and discharging the feed liquid.
The injection mechanism is matched with the opening and comprises an injection pipe 131 and a nozzle cover 132, the nozzle cover 132 is arranged on the opening, the injection pipe 131 penetrates through the opening, the injection pipe 131 can extend out of the opening, the injection pipe 131 can be flush with the opening, one end of the injection pipe 131 is connected with an output port of the electric hydraulic pump 121, the other end of the injection pipe 131 is connected with the nozzle cover 132, an input port of the electric hydraulic pump 121 is connected with the bottom of the liquid storage tank, and the injection pipe 131 and the nozzle cover 132 form an injection path. In one embodiment, one end of the injection pipe 131 may be connected to an output port of the electric hydraulic pump 121 through a first connection pipe 133, and an input port of the electric hydraulic pump 121 may be connected to a bottom of the liquid storage tank 110 through a second connection pipe 134.
The starting mechanism comprises a starting control circuit 141, the starting control circuit is used for being electrically connected with the electric hydraulic pump 121, and the electric hydraulic pump 121 is also used for driving the feed liquid 111 to be sprayed out through an injection path.
The light-emitting mechanism includes an LED lamp 151, and the start control circuit 141 is further configured to drive the LED lamp 151 to emit light, and to radiate the feed liquid 111 in the injection path to guide light. In one embodiment, the LED lamp 151 is disposed within the reservoir 110, and light from the LED lamp 151 may be directed into the spray path.
The electronic firework spraying device 100 of the present application may include one or more spraying mechanisms, and for the electronic firework spraying device 100 provided with a plurality of spraying mechanisms, each spraying mechanism may be provided with an input pipe 135 and an output pipe 136, and the input pipe 135 and the output pipe 136 are respectively communicated with the liquid storage tank 110. Multiple injection mechanisms may be connected end-to-end by an inlet pipe 135 and an outlet pipe 136. The plurality of spraying mechanisms may be connected in other ways.
In one embodiment, the plurality of injection mechanisms are connected in a predetermined order, with the output tube 136 of the preceding injection mechanism being connected to the input tube 135 of the following injection mechanism, with the input tube 135 of the first injection mechanism being sealable, and the output tube 136 of the last injection mechanism being sealable.
The electronic firework spraying device 100 of the present application may further comprise a liquid level switch mechanism, wherein the liquid level switch mechanism is disposed in the liquid storage tank 110, and is electrically connected with the start control circuit 141, and the liquid level switch mechanism is used for closing the start control circuit 141 after spraying is completed.
In one embodiment, the liquid level switch mechanism comprises a float mechanism and a micro switch 164, the float mechanism comprises a float limiting tube 161, a float rod 162 and a float 163, the float 163 is arranged at the tail end of the float rod 162, the float limiting tube 161 is of a frame structure and is used for limiting the float rod 162 penetrating through the float limiting tube 161, when the liquid 111 is not sprayed or is not sprayed, the position of the float 163 is at a high position, the micro switch 164 on the float mechanism is normally open, after the liquid is sprayed, the float 163 descends along with the height of the liquid, the float rod 162 drives the micro switch 164, the micro switch 164 is disconnected, and the start control circuit 141 of fireworks after the spraying is completed is closed.
The feed solution 111 of the present application may also include vegetable starch and/or organic fluorescent pigments. The LED lamp can also be a single-color lamp or a full-color LED lamp. The start control circuit 141 drives the LED lamp to guide light to the liquid material 111 in the injection path, and diffuse reflection when the liquid material 111 is mixed with a diffuse reflection material of plant starch, and diffuse reflection when the liquid material 111 is mixed with a light-absorbing and light-emitting material of organic fluorescent powder, so that the effect of color light of the injected liquid is realized.
In one embodiment, the electronic firework spraying device 100 of the present application may further include a driving motor (not shown) electrically connected to the spraying tube 131 and/or the nozzle cap 132, the driving motor being used to drive the spraying tube 131 and/or the nozzle cap 132 to shake, thereby increasing the shaking effect of the sprayed firework. The driving motor for driving the injection tube 131 and the driving motor for driving the injection cap 132 may be separately arranged, and the driving motor for driving the injection tube 131 may control the injection tube 131 to shake and swing, so as to generate the firework shake effect. The driving motor for driving the nozzle cover 132 can control the gap of the nozzle cover 132 to realize the opening and contraction functions of fireworks, so that the fireworks can be bundled into a straight line or can be scattered into a flower shape.
After the electronic firework spraying device 100 of the application is started, the electric hydraulic pump 121 starts to work, and the feed liquid 111 in the liquid storage tank 110 is pumped out through the first connecting pipe 133 and the second connecting pipe 134. The LED light source is lightened simultaneously, light is guided by the feed liquid and the injection pipe, and along with the injection of the feed liquid, the injection effect of single color or color is realized. When the liquid 111 is not sprayed or before the liquid is not sprayed, the position of the float 163 of the liquid level switch mechanism is at a high position, the micro switch 164 on the float mechanism is normally closed, and when the liquid 111 is sprayed, the float 163 descends along with the height of the liquid 111, the float rod 162 drives the micro switch 164 to turn off the micro switch 164, so that the circuit of the whole firework after the spraying is completed is closed. Meanwhile, the spraying pipe 131 can be singly connected with a driving motor (not shown), different shaking and swaying effects are added to the spraying pipe 131, and the sprayed firework effect is added with an additional shaking and swaying function. The nozzle cover 132 may also be separately connected to a driving motor, and by adjusting the gap of the nozzle cover 132, the firework effect sprayed by the nozzle cover 132 can increase the firework dispersing and bundling effect. When the visual firework attractive demand can be realized according to different spraying arrangements, the multiple spraying mechanisms which can be pushed by one electric hydraulic pump can be added on one liquid storage tank 110 for spraying, and the multiple spraying mechanisms can improve the visual firework attractive effect. The injection works in the same way as an injection mechanism.
Embodiment two:
As shown in fig. 1 to 3, the arrow direction in the drawing is the direction in which the feed liquid moves. An embodiment of the electronic firework spraying system comprises a plurality of electronic firework spraying devices 100, wherein the plurality of electronic firework spraying devices 100 are communicated through a pipeline connector 170.
An electronic firework spraying apparatus 100 of the present application, one embodiment of which comprises:
the liquid storage tank 110 is used for containing liquid, the liquid 111 comprises water, and an opening is formed in the top of the liquid storage tank 110.
The pressurizing mechanism comprises an electric hydraulic pump 121 for sucking the feed liquid 111 in the liquid storage tank 110 and pressurizing and discharging the feed liquid.
The injection mechanism is matched with the opening and comprises an injection pipe 131 and a nozzle cover 132, the nozzle cover 132 is arranged on the opening, the injection pipe 131 penetrates through the opening, the injection pipe 131 can extend out of the opening, the injection pipe 131 can be flush with the opening, one end of the injection pipe 131 is connected with an output port of the electric hydraulic pump 121, the other end of the injection pipe 131 is connected with the nozzle cover 132, an input port of the electric hydraulic pump 121 is connected with the bottom of the liquid storage tank, and the injection pipe 131 and the nozzle cover 132 form an injection path. In one embodiment, one end of the injection pipe 131 may be connected to an output port of the electric hydraulic pump 121 through a first connection pipe 133, and an input port of the electric hydraulic pump 121 may be connected to a bottom of the liquid storage tank 110 through a second connection pipe 134.
The starting mechanism comprises a starting control circuit 141, the starting control circuit is used for being electrically connected with the electric hydraulic pump 121, and the electric hydraulic pump 121 is also used for driving the feed liquid 111 to be sprayed out through an injection path.
The light-emitting mechanism includes an LED lamp 151, and the start control circuit 141 is further configured to drive the LED lamp 151 to emit light, and to radiate the feed liquid 111 in the injection path to guide light. In one embodiment, the LED lamp 151 is disposed within the reservoir 110, and light from the LED lamp 151 may be directed into the spray path.
The electronic firework spraying device 100 of the present application may include one or more spraying mechanisms, and for the electronic firework spraying device 100 provided with a plurality of spraying mechanisms, each spraying mechanism may be provided with an input pipe 135 and an output pipe 136, and the input pipe 135 and the output pipe 136 are respectively communicated with the liquid storage tank 110. Multiple injection mechanisms may be connected end-to-end by an inlet pipe 135 and an outlet pipe 136. The plurality of spraying mechanisms may be connected in other ways.
In one embodiment, the plurality of injection mechanisms are connected in a predetermined order, with the output tube 136 of the preceding injection mechanism being connected to the input tube 135 of the following injection mechanism, with the input tube 135 of the first injection mechanism being sealable, and the output tube 136 of the last injection mechanism being sealable.
The electronic firework spraying device 100 of the present application may further comprise a liquid level switch mechanism, wherein the liquid level switch mechanism is disposed in the liquid storage tank 110, and is electrically connected with the start control circuit 141, and the liquid level switch mechanism is used for closing the start control circuit 141 after spraying is completed.
In one embodiment, the liquid level switch mechanism comprises a float mechanism and a micro switch 164, the float mechanism comprises a float limiting tube 161, a float rod 162 and a float 163, the float 163 is arranged at the tail end of the float rod 162, the float limiting tube 161 is of a frame structure and is used for limiting the float rod 162 penetrating through the float limiting tube 161, when the liquid 111 is not sprayed or is not sprayed, the position of the float 163 is at a high position, the micro switch 164 on the float mechanism is normally open, after the liquid is sprayed, the float 163 descends along with the height of the liquid, the float rod 162 drives the micro switch 164, the micro switch 164 is disconnected, and the start control circuit 141 of fireworks after the spraying is completed is closed.
The feed solution 111 of the present application may also include vegetable starch and/or organic fluorescent pigments. The LED lamp can also be a single-color lamp or a full-color LED lamp. The start control circuit 141 drives the LED lamp to guide light to the liquid material 111 in the injection path, and diffuse reflection when the liquid material 111 is mixed with a diffuse reflection material of plant starch, and diffuse reflection when the liquid material 111 is mixed with a light-absorbing and light-emitting material of organic fluorescent powder, so that the effect of color light of the injected liquid is realized.
In one embodiment, the electronic firework spraying device 100 of the present application may further include a driving motor (not shown) electrically connected to the spraying tube 131 and/or the nozzle cap 132, the driving motor being used to drive the spraying tube 131 and/or the nozzle cap 132 to shake, thereby increasing the shaking effect of the sprayed firework.
The plurality of electronic firework spraying devices 100 may be connected in a predetermined order, and the output tube of the previous electronic firework spraying device 100 and the input tube of the next electronic firework spraying device 100 may be connected through a pipe connector 170, and in one embodiment, the output tube 136 of each spraying mechanism of the previous electronic firework spraying device 100 and the input tube 135 of each spraying mechanism of the next electronic firework spraying device 100 may be connected through a pipe connector 170. The input tube of the first electronic firework spraying device 100 is sealed, and the output tube of the last electronic firework spraying device 100 is sealed.
After the electronic firework spraying device 100 of the application is started, the electric hydraulic pump 121 starts to work, and the feed liquid 111 in the liquid storage tank 110 is pumped out through the first connecting pipe 133 and the second connecting pipe 134. The LED light source is lightened simultaneously, light is guided by the feed liquid and the injection pipe, and along with the injection of the feed liquid, the injection effect of single color or color is realized. When the liquid 111 is not sprayed or before the liquid is not sprayed, the position of the float 163 of the liquid level switch mechanism is at a high position, the micro switch 164 on the float mechanism is normally closed, and when the liquid 111 is sprayed, the float 163 descends along with the height of the liquid 111, the float rod 162 drives the micro switch 164 to turn off the micro switch 164, so that the circuit of the whole firework after the spraying is completed is closed. Meanwhile, the spraying pipe 131 can be singly connected with a driving motor (not shown), different shaking and swaying effects are added to the spraying pipe 131, and the sprayed firework effect is added with an additional shaking and swaying function. The nozzle cover 132 may also be separately connected to a driving motor, and by adjusting the gap of the nozzle cover 132, the firework effect sprayed by the nozzle cover 132 can increase the firework dispersing and bundling effect. When the visual firework attractive demand can be realized according to different spraying arrangements, the multiple spraying mechanisms which can be pushed by one electric hydraulic pump can be added on one liquid storage tank 110 for spraying, and the multiple spraying mechanisms can improve the visual firework attractive effect. The injection works in the same way as an injection mechanism. When the visual firework attractive demand is realized according to different spraying arrangement, when more spray heads are needed to be added, if one electric hydraulic pump cannot push more spraying mechanisms, the number of the spraying mechanisms which can be pushed by the electric hydraulic pump can be used as a single body, a plurality of combinations are carried out, and more visual firework attractive effects are met. The injection works in the same way as an injection mechanism.
The application creates a holographic mode through the optical transmission process designed by the visual sense of human eyes, does not have any fire source in the setting-off process, and can display the setting-off effect of fireworks. The environment is protected to the greatest extent, the air pollution is reduced, the personal safety of consumers and the safety of the setting-off environment are protected, the replacement requirement of the firework market is filled, and the market blank of the environment for prohibiting setting-off of the firework is filled. The application is a high-simulation firework, and can be visually seen by consumers, and meanwhile, the used spray is only safe liquid, such as water added with plant starch and organic fluorescent powder, and the like, so that the firework is completely safe and environment-friendly, and meanwhile, the device and the system can be repeatedly used, and the requirement of safe and fireless firework is met. The application adopts a hydraulic pushing structure, a photoelectric structure and a mechanical structure, and can complete the safe and flameless liquid color firework spraying effect and perform safe spraying from the aspects of system structure and optics by spraying liquid and adjusting the materials with diffuse reflection or light absorption characteristics on optics by plant starch and the like mixed in the liquid.
The foregoing is a further detailed description of the application in connection with specific embodiments, and it is not intended that the application be limited to such description. It will be apparent to those skilled in the art that several simple deductions or substitutions can be made without departing from the spirit of the application.

Claims (10)

1. An electronic firework spraying device, comprising:
The liquid storage tank is used for containing liquid, the liquid comprises water, and an opening is formed in the top of the liquid storage tank;
The pressurizing mechanism comprises an electric hydraulic pump and is used for sucking the feed liquid and pressurizing and discharging the feed liquid;
The injection mechanism is matched with the opening and comprises an injection pipe and a nozzle cover, the nozzle cover is arranged on the opening, one end of the injection pipe is connected with an output port of the electric hydraulic pump, the other end of the injection pipe is connected with the nozzle cover, an input port of the electric hydraulic pump is connected with the bottom of the liquid storage tank, and the injection pipe and the nozzle cover form an injection path;
The starting mechanism comprises a starting control circuit, wherein the starting control circuit is used for being electrically connected with the electric hydraulic pump, and the electric hydraulic pump is also used for driving the feed liquid to be sprayed out through the spraying path;
the light-emitting mechanism comprises an LED lamp, and the starting control circuit is used for driving the LED lamp to emit light and irradiating the feed liquid in the injection path to conduct light guiding of light rays.
2. An electronic firework spraying device according to claim 1, wherein the spraying mechanism comprises one or more of an input pipe and an output pipe, each of which is in communication with the liquid reservoir.
3. An electronic firework spraying device as claimed in claim 2, wherein a plurality of said spraying mechanisms are connected end to end through said input tube and said output tube.
4. An electronic firework spraying device according to claim 3 wherein a plurality of said spraying mechanisms are connected in a prescribed sequence, the output tube of the former spraying mechanism being connected to the input tube of the latter spraying mechanism, the input tube of the first spraying mechanism being sealed and the output tube of the last spraying mechanism being sealed.
5. The electronic firework spraying device of any one of claims 1 to 4 further comprising a liquid level switch mechanism disposed within the liquid reservoir, the liquid level switch mechanism being electrically connected to the activation control circuit, the liquid level switch mechanism being configured to close the activation control circuit upon completion of spraying.
6. The electronic firework spraying device according to claim 5, wherein the liquid level switch mechanism comprises a floater mechanism and a micro switch, the floater mechanism comprises a floater limiting tube, a floater rod and a floater, the floater is arranged at the tail end of the floater rod, the floater limiting tube is used for limiting the floater rod, the floater is in a high position before the liquid is sprayed, the micro switch is normally open, the height of the floater is reduced after the liquid is sprayed, and the floater rod drives the micro switch to be disconnected.
7. The electronic firework spraying apparatus of claim 5 wherein the feed liquid further comprises plant starch and/or organic fluorescent pigment and the LED lamp comprises a single color or full color LED lamp.
8. An electronic firework spraying device as claimed in any one of claims 1 to 4, further comprising a drive motor electrically connected to the spray tube and/or the spray cap, the drive motor being for driving the spray tube and/or the spray cap to shake.
9. An electronic firework spraying system comprising a plurality of electronic firework spraying devices as claimed in any one of claims 5 to 8, wherein a plurality of said electronic firework spraying devices are in communication via a connecting tube.
10. An electronic firework spraying system according to claim 9 wherein a plurality of said electronic firework spraying devices are connected in a prescribed sequence, the output tube of the former said electronic firework spraying device being connected to the input tube of the latter said electronic firework spraying device, the input tube of the first said electronic firework spraying device being sealed and the output tube of the last said electronic firework spraying device being sealed.
CN201910101091.0A 2019-01-31 Electronic firework spraying device and system Active CN109682261B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201910101091.0A CN109682261B (en) 2019-01-31 Electronic firework spraying device and system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201910101091.0A CN109682261B (en) 2019-01-31 Electronic firework spraying device and system

Publications (2)

Publication Number Publication Date
CN109682261A CN109682261A (en) 2019-04-26
CN109682261B true CN109682261B (en) 2024-06-04

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Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1302321A (en) * 1998-12-25 2001-07-04 特种制纸株式会社 Fluorescnet particle, method for preparing the same and paper for preventing forgery using fluorescent particle
CN2450264Y (en) * 2000-08-24 2001-09-26 李清洋 Peacock tail spreading type environment protection road-sprinkler
CN1975954A (en) * 2005-11-28 2007-06-06 徐旺 Liquid level switch quick-break device
CN209689500U (en) * 2019-01-31 2019-11-26 深圳市金泰坦科技有限公司 Electronic fireworks injection apparatus and system

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1302321A (en) * 1998-12-25 2001-07-04 特种制纸株式会社 Fluorescnet particle, method for preparing the same and paper for preventing forgery using fluorescent particle
CN2450264Y (en) * 2000-08-24 2001-09-26 李清洋 Peacock tail spreading type environment protection road-sprinkler
CN1975954A (en) * 2005-11-28 2007-06-06 徐旺 Liquid level switch quick-break device
CN209689500U (en) * 2019-01-31 2019-11-26 深圳市金泰坦科技有限公司 Electronic fireworks injection apparatus and system

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