Intelligence mosquito-repellent incense based on intelligence network time control is opened and close
Technical Field
The invention belongs to the technical field of mosquito-repellent incense, and particularly relates to intelligent mosquito-repellent incense based on intelligent network time control on-off.
Background
The electric mosquito repellent is a mosquito repellent tool, and the effective components of the electric mosquito repellent with disc type, liquid and electric mosquito repellent are chemical preparations with insecticidal components, and the difference is only that the carriers of the electric mosquito repellent are different. The most critical part is the stick that volatilizees that has the effect of volatilizing in the electric mosquito repellent ware, and the stick that volatilizees transports the mosquito-repellent incense liquid in the stock solution bottle to the heater position, then the heater heats electric mosquito-repellent incense liquid, and electric mosquito-repellent incense liquid volatilizees and outwards spreads to realize the effect of kill mosquito.
The invention belongs to the technical field of electric mosquito devices, and particularly relates to an electric mosquito device which comprises a shell, a liquid storage bottle and a volatilization rod, wherein the liquid storage bottle is connected inside the shell in a threaded manner, the volatilization rod is inserted into the liquid storage bottle, a radiating fin is arranged at the top of the volatilization rod, a heating sheet opposite to the radiating fin is arranged in the shell, a gap is formed between the heating sheet and the radiating fin, and a volatilization hole is formed in the shell right above the heating sheet. The volatilization rod is separated from the heating plate by the radiating plate, and the heating plate is used for heating air and the radiating plate to heat the volatilization rod in a heat conduction and heat radiation mode, so that the heating temperature is lower than that required in the prior art; and after the mosquito-repellent incense liquid is used, the problem that the volatilization rod is burnt by high temperature is avoided due to the fact that the distance between the heating sheet and the volatilization rod is large.
The search and the prior art of the patent find that the prior electric mosquito repellent device has the following defects when in application: when the electric mosquito repellent incense device is used, a user needs to turn on and turn off the electric mosquito repellent incense device by himself, time control on and off cannot be achieved, and once the user forgets to turn off the electric mosquito repellent incense device, mosquito repellent incense liquid in the electric mosquito repellent incense device can be consumed and volatilized quickly, so that waste is caused; after the mosquito-repellent incense liquid is consumed and volatilized, the user cannot be reminded at the first time, and the user can only wait for the user to find the mosquito-repellent incense liquid, so that the defects exist.
Disclosure of Invention
In order to solve the technical problems, the invention provides an intelligent mosquito-repellent incense based on intelligent network time control start-stop, so that the problem that when the existing electric mosquito-repellent incense device is used, a user needs to start and stop the electric mosquito-repellent incense device by himself, the time control start-stop cannot be realized, and once the user forgets to turn off the electric mosquito-repellent incense device, mosquito-repellent incense liquid in the electric mosquito-repellent incense device can be consumed and volatilized quickly, so that waste is caused; after the mosquito-repellent incense liquid is consumed and volatilized, the user cannot be reminded at the first time, and the problem that the user finds that the mosquito-repellent incense liquid is insufficient can only be solved.
The invention relates to an intelligent mosquito incense based on intelligent network time control on-off, which is achieved by the following specific technical means:
an intelligent mosquito-repellent incense based on intelligent network time control start-stop comprises a mosquito-repellent incense liquid storage mechanism, wherein a group of mosquito-repellent incense volatilization mechanisms are hermetically buckled on the top end surface of the mosquito-repellent incense liquid storage mechanism; the axis part of the mosquito-repellent incense volatilizing mechanism is connected with a group of mosquito-repellent incense liquid level reminding mechanisms in a sliding manner, and the bottom ends of the mosquito-repellent incense liquid level reminding mechanisms are connected in the mosquito-repellent incense liquid storage mechanism in a sliding manner; the mosquito-repellent incense liquid level reminds between mechanism top and the mosquito-repellent incense mechanism of volatilizing through a power connecting wire electric connection.
Further, the mosquito-repellent incense liquid storage mechanism comprises a mosquito-repellent incense liquid storage bottle, a mosquito-repellent incense liquid storage cavity, a liquid adding hole, a circular sliding hole A, a ball A, a circular limiting groove and a volatilization rod, a mosquito-repellent incense liquid storage cavity is arranged in the mosquito-repellent incense liquid storage bottle, a round sliding hole A communicated with the mosquito-repellent incense liquid storage cavity is arranged at the axle center of the top end face of the mosquito-repellent incense liquid storage bottle, the inner peripheral surface of the circular sliding hole A is in an annular array shape and is embedded with four balls A in a rotating way, the top end surface of the mosquito-repellent incense liquid storage bottle is in an annular array shape and is provided with six round limiting grooves, one side of the top end surface of the mosquito-repellent incense liquid storage bottle is provided with a liquid adding hole communicated with the mosquito-repellent incense liquid storage cavity, the top end of the mosquito-repellent incense liquid storage bottle is embedded with a volatilization rod, the bottom end of the volatilization rod is contacted with the bottom side surface of the inner end of the mosquito-repellent incense liquid storage cavity, and the top end of the volatilization rod is higher than the top end surface of the mosquito-repellent incense liquid storage bottle;
further, the mosquito incense volatilization mechanism comprises a buckle cover, a circular sliding hole B, a volatilization hole, a copper conductive bead A, a power line, a circular limiting column, a volatilization rod jack, a circular sliding hole C, a ball B, a volatilization cavity, a heating plate, a microcontroller, a WIFI module, a timing module A and a timing module B, the integral structure of the buckle cover adopts a rose structure, the inside of the buckle cover is provided with a volatilization cavity, the center part of the top end of the buckle cover is provided with a circular sliding hole B communicated with the volatilization cavity, the inner peripheral surface of the circular sliding hole B is embedded with a copper conductive bead A, the top end of the buckle cover is in an annular array shape and is provided with ten volatilization holes communicated with the volatilization cavity, the inside of the buckle cover is provided with the microcontroller and the WIFI module, the timing module A and the timing module B which are electrically connected with the microcontroller, and the heating plates which are electrically connected with the microcontroller are fixedly arranged on the top side surface and the bottom side surface of the volatilization cavity, the electric mosquito incense volatilization mechanism is characterized in that a power line electrically connected with a microcontroller is fixedly connected to one side of the buckle cover, a circular sliding hole C communicated with a volatilization cavity is formed in the center of the bottom end face of the buckle cover, four balls B are embedded and rotatably mounted in the circular sliding hole C in an annular array shape, six circular limiting columns are fixedly connected to the bottom end face of the buckle cover in an annular array shape, a volatilization rod jack communicated with the volatilization cavity is formed in the bottom end face of the buckle cover, the copper conductive balls A are electrically connected with a power supply connecting lead in the installation state of the mosquito incense volatilization mechanism, the six circular limiting columns are respectively in limiting and inserting connection in six circular limiting grooves, the top end of the volatilization rod penetrates through the volatilization rod jack and is located in the volatilization cavity, and the volatilization rod is not contacted with a heating plate;
further, the mosquito-repellent incense liquid level reminding mechanism comprises a round rod, a U-arc-shaped spherical block, a buzzer, a button battery, a floating ball, copper conductive beads B and an arc limiting groove, wherein the U-arc-shaped spherical block is arranged at the top end of the round rod, the buzzer is embedded in the plane of the top end of the U-arc-shaped spherical block, the floating ball is fixedly installed at the bottom end of the round rod, the periphery of the round rod is in an annular array shape, the four arc limiting grooves are formed in the periphery of the round rod, the button battery is embedded in the top side part of the periphery of the round rod, the copper conductive beads B are embedded in the round rod relative to the button battery, the copper conductive beads B are electrically connected with the buzzer through wires, the buzzer is electrically connected with a power supply connecting wire in the installation state of the liquid level mosquito-repellent incense reminding mechanism, and the round rod is positioned in the round sliding hole B, the round sliding hole C and, the ball A and the ball B are limited in the arc-shaped limiting groove in a sliding mode, and when the floating ball is in contact with the bottom side face of the inner end of the mosquito-repellent incense liquid storage cavity, the button battery is in contact with the copper conductive ball A;
compared with the prior art, the invention has the following beneficial effects:
in daily application, a power line is connected with a power socket, after the power supply is switched on, the microcontroller calls the calibration time through the WIFI module, when the set time value (for example, 10:00) of the timing module A is reached, the timing module A sends a signal to the microcontroller, the microcontroller controls the heating sheet to be started, air in the volatilization cavity is heated, and the volatilization rod is heated in a heat conduction and heat radiation mode, so that the volatilization efficiency of the volatilization rod on mosquito-repellent liquid is accelerated, and the mosquito repelling effect is enhanced; when the time value (for example, 7:00) set by the timing module B is reached, the timing module B sends a signal to the microcontroller, the microcontroller controls the heating sheet to be closed, the air in the volatilization cavity is stopped being heated, and the volatilization rod is heated in the forms of heat conduction and heat radiation, so that the high-efficiency mosquito repelling function of accelerating volatilization of the mosquito incense liquid of the invention is realized by the intelligent network time control on-off.
When the mosquito-repellent incense liquid water level in the mosquito-repellent incense liquid storage cavity is gradually reduced, the floating ball descends along with the mosquito-repellent incense liquid water level, when the floating ball contacts with the bottom side face of the inner end of the mosquito-repellent incense liquid storage cavity, after the mosquito-repellent incense liquid is used, at the moment, a button battery embedded and installed on a round rod which synchronously slides and descends along the circular sliding hole A, the circular sliding hole B and the circular sliding hole C contacts with the copper conductive bead A, the button battery respectively contacts with the copper conductive bead A and the copper conductive bead B, the copper conductive bead B is electrically connected with the buzzer through a wire, and the buzzer is electrically connected with the power connection wire, so that the power is connected, the transmission electric energy is given to the buzzer, and the buzzer sends out sound to remind a user of adding the mosquito-repellent incense liquid.
Drawings
FIG. 1 is a schematic axial view structure of the invention without adding mosquito liquid.
Fig. 2 is a schematic structural view in plan view of the state of no mosquito-repellent incense liquid addition of the present invention.
Fig. 3 is a schematic view of the structure of the mosquito coil liquid-free state of the invention.
Fig. 4 is a schematic view of the structure of the mosquito incense liquid in the state of being added.
Fig. 5 is a schematic view of the axial view structure of the mosquito incense liquid adding state of the invention.
Fig. 6 is a schematic view of the internal sectional structure of the mosquito coil liquid of the present invention in an added state.
Fig. 7 is a schematic axial view structure of the mosquito coil liquid storage mechanism of the invention.
Fig. 8 is a schematic view of the internal sectional structure of the mosquito coil liquid storage mechanism of the present invention.
Fig. 9 is a top axial view structure schematic diagram of the mosquito incense volatilization mechanism of the invention.
Fig. 10 is a bottom end axial view structure schematic diagram of the mosquito incense volatilization mechanism of the invention.
Fig. 11 is a schematic view of the internal sectional structure of the mosquito incense volatilization mechanism of the invention.
FIG. 12 is a schematic axial view of the mosquito incense liquid level reminding mechanism of the present invention.
FIG. 13 is a schematic view of the internal sectional structure of the mosquito incense liquid level reminding mechanism of the invention.
Fig. 14 is a system block diagram in the mosquito incense volatilization mechanism of the invention.
In the drawings, the corresponding relationship between the component names and the reference numbers is as follows:
1. a mosquito-repellent incense liquid storage mechanism; 101. a mosquito-repellent incense liquid storage bottle; 102. a mosquito-repellent incense liquid storage cavity; 103. a liquid addition hole; 104. a circular sliding hole A; 105. a ball A; 106. a circular limiting groove; 107. a volatilization stick; 2. a mosquito incense volatilizing mechanism; 201. covering; 202. a circular sliding hole B; 203. a volatilization hole; 204. a copper conductive bead A; 205. a power line; 206. a circular limiting column; 207. a volatile rod jack; 208. a circular sliding hole C; 209. a ball B; 2010. a volatilization chamber; 2011. a heating plate; 2012. a microcontroller; 2013. a WIFI module; 2014. a timing module A; 2015. a timing module B; 3. a mosquito incense liquid level reminding mechanism; 301. a round bar; 302. a major arc shaped spherical block; 303. a buzzer; 304. a button cell; 305. a floating ball; 306. a copper conductive bead B; 307. an arc-shaped limiting groove; 4. a power supply connecting wire;
Detailed Description
The embodiments of the present invention will be described in further detail with reference to the drawings and examples. The following examples are intended to illustrate the invention but are not intended to limit the scope of the invention.
In the description of the present invention, "a plurality" means two or more unless otherwise specified; the terms "upper", "lower", "left", "right", "inner", "outer", "front", "rear", "head", "tail", and the like, indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, are only for convenience in describing and simplifying the description, and do not indicate or imply that the device or element referred to must have a particular orientation, be constructed in a particular orientation, and be operated, and thus, should not be construed as limiting the invention. Furthermore, the terms "first," "second," "third," and the like are used for descriptive purposes only and are not to be construed as indicating or implying relative importance.
In the description of the present invention, it is to be noted that, unless otherwise explicitly specified or limited, the terms "connected" and "connected" are to be interpreted broadly, e.g., as being fixed or detachable or integrally connected; can be mechanically or electrically connected; may be directly connected or indirectly connected through an intermediate. The specific meanings of the above terms in the present invention can be understood in specific cases to those skilled in the art.
Example (b):
as shown in figures 1 to 14:
the invention provides an intelligent mosquito-repellent incense based on intelligent network time control start and stop, which comprises: the mosquito-repellent incense liquid storage mechanism comprises a mosquito-repellent incense liquid storage mechanism 1, a group of mosquito-repellent incense volatilization mechanisms 2 are hermetically buckled on the top end face of the mosquito-repellent incense liquid storage mechanism 1, the mosquito-repellent incense liquid storage mechanism 1 comprises a mosquito-repellent incense liquid storage bottle 101, a mosquito-repellent incense liquid storage cavity 102, a liquid adding hole 103, a circular sliding hole A104, balls A105, a circular limiting groove 106 and a volatilization rod 107, the mosquito-repellent incense liquid storage bottle 101 is internally provided with a mosquito-repellent incense liquid storage cavity 102, the axis part of the top end face of the mosquito-repellent incense liquid storage bottle 101 is provided with a circular sliding hole A104 communicated with the mosquito-repellent incense liquid storage cavity 102, the inner circumference of the circular sliding hole A104 is in an annular array shape and is internally embedded with four balls A105 in a rotating mode, the top end of the mosquito-repellent incense liquid storage bottle 101 is in an annular array shape and is provided with six circular limiting grooves 106, one side of the top end face, the bottom end of the volatilization rod 107 is contacted with the bottom side surface of the inner end of the mosquito-repellent incense liquid storage cavity 102, and the top end of the volatilization rod 107 is higher than the top end surface of the mosquito-repellent incense liquid storage bottle 101; the axis position of the mosquito incense volatilization mechanism 2 is slidably connected with a group of mosquito incense liquid level reminding mechanisms 3, the mosquito incense volatilization mechanism 2 comprises a buckle cover 201, a circular sliding hole B202, a volatilization hole 203, a copper conductive bead A204, a power line 205, a circular limiting column 206, a volatilization rod jack 207, a circular sliding hole C208, a ball B209, a volatilization cavity 2010, a heating plate 2011, a microcontroller 2012, a WIFI module 2013, a timing module A2014 and a timing module B2015, the overall structure of the buckle cover 201 adopts a rose structure, the inside of the buckle cover 201 is provided with a volatilization cavity 2010, the center position of the top end of the buckle cover 201 is provided with a circular sliding hole B202 communicated with the volatilization cavity 2010, the inner peripheral surface of the circular sliding hole B202 is embedded with a copper conductive bead A204, the top end of the buckle cover 201 is provided with a circular array shape and ten volatilization holes 203 communicated with the volatilization cavity 2010, the inside of the buckle cover 201 is provided with the microcontroller 2012 and the WIFI module 2013 electrically connected with the, Timing module A2014, timing module B2015, heating sheets 2011 electrically connected with the microcontroller 2012 are fixedly installed on the top side surface and the bottom side surface of the inner end of the volatilization cavity 2010, a power line 205 electrically connected with the microcontroller 2012 is fixedly connected on one side surface of the buckle cover 201, a circular sliding hole C208 communicated with the volatilization cavity 2010 is formed in the center of the bottom end surface of the buckle cover 201, four balls B209 are installed in the circular sliding hole C208 in an annular array manner in a co-embedded and rotating manner, six circular limiting columns 206 are fixedly connected with the bottom end surface of the buckle cover 201 in an annular array manner, a volatilization rod jack 207 communicated with the volatilization cavity 2010 is formed in the bottom end surface of the buckle cover 201, the copper conductive balls A204 are electrically connected with the power supply connecting lead 4 in the installation state of the mosquito incense volatilization mechanism 2, the six circular limiting columns 206 are respectively limited and inserted in the six circular limiting grooves 106, the top end of the volatilization rod 107 penetrates through the volatilization rod jack 207 and is located in the volatilization cavity, the volatilization rod 107 is not in contact with the heating sheet 2011, and the bottom end of the mosquito-repellent incense liquid level reminding mechanism 3 is connected in the mosquito-repellent incense liquid storage mechanism 1 in a sliding manner; the top end of the mosquito incense liquid level reminding mechanism 3 is electrically connected with the mosquito incense volatilization mechanism 2 through a power supply connecting wire 4.
Wherein, the mosquito incense liquid level reminding mechanism 3 comprises a round rod 301, a major arc-shaped spherical block 302, a buzzer 303, a button cell 304, a floating ball 305, copper conductive beads B306 and an arc-shaped limiting groove 307, the major arc-shaped spherical block 302 is arranged at the top end of the round rod 301, the buzzer 303 is embedded in the plane of the top end of the major arc-shaped spherical block 302, the floating ball 305 is fixedly arranged at the bottom end of the round rod 301, the circular rod 301 is annularly arrayed and provided with four arc-shaped limiting grooves 307, the button cell 304 is embedded in the top side part of the outer peripheral surface of the round rod 301, the copper conductive beads B306 are embedded in the round rod 301 corresponding to the button cell 304, the copper conductive beads B306 are electrically connected with the buzzer 303 through leads, the buzzer 303 is electrically connected with a power supply connecting lead 4 in the installation state of the mosquito incense liquid level reminding mechanism 3, the round rod 301 is positioned in a circular sliding hole B202, a circular sliding hole C208 and a circular sliding hole A104, and the ball A105 and the ball B209 are limited in the arc-shaped limiting groove 307 in a sliding way, when the floating ball 305 is contacted with the bottom side surface of the inner end of the mosquito-repellent incense liquid storage cavity 102, the button cell 304 is contacted with the copper conductive ball A204.
When in use:
mosquito-repellent incense liquid adding step: the buckle cover 201 is pulled upwards, so that the circular limiting column 206 is separated from the circular limiting groove 106, the liquid adding hole 103 part covered by the buckle cover 201 is exposed, and a user can add the mosquito-repellent incense liquid into the mosquito-repellent incense liquid storage cavity 102 from the liquid adding hole 103 part;
after the mosquito-repellent incense liquid is added, the floating ball 305 floats on the water surface of the mosquito-repellent incense liquid, so that the top end of the round rod 301 is far away from the top end of the mosquito-repellent incense volatilization mechanism 2, and the round rod 301 can be ensured not to rotate when ascending or descending along the round sliding hole A104, the round sliding hole B202 and the round sliding hole C208 through the sliding fit of the ball A105 and the ball B209 and the arc-shaped limiting groove 307, and meanwhile, the power supply connecting wire 4 in a spiral containing structure can be extended and contained along with the power supply connecting wire;
during daily application, the power line 205 is connected with a power socket, after the power supply is switched on, the microcontroller 2012 calls the calibration time through the WIFI module 2013, when the set time value (for example, 22:00) of the timing module A2014 is reached, the timing module A2014 sends a signal to the microcontroller 2012, the microcontroller 2012 controls the heating sheet 2011 to be started, air in the volatilization cavity 2010 is heated, and the volatilization rod 107 is heated in a heat conduction and heat radiation mode, so that the volatilization efficiency of the volatilization rod 107 on mosquito-repellent liquid is accelerated, and the mosquito-repellent effect is enhanced; when the time value (for example, 7:00) set by the timing module B2015 is reached, the timing module B2015 sends a signal to the microcontroller 2012, the microcontroller 2012 controls the heating sheet 2011 to close, the air in the volatilization cavity 2010 is stopped to be heated, and the volatilization rod 107 is heated in a heat conduction and heat radiation mode, further, the top end of the volatilization rod 107 penetrates through the volatilization rod jack 207 and is located in the volatilization cavity 2010, but the volatilization rod 107 is not in contact with the heating sheet 2011, so that the volatilization rod 107 can be prevented from being burnt by high temperature;
when the mosquito liquid level in the mosquito liquid storage cavity 102 is gradually lowered, the floating ball 305 descends along with the mosquito liquid level, so that the round rod 301 synchronously slides and descends along the circular sliding hole A104, the circular sliding hole B202 and the circular sliding hole C208, when the floating ball 305 contacts with the bottom side surface of the inner end of the mosquito liquid storage cavity 102, after the mosquito liquid is used, the button battery 304 embedded and installed on the round rod 301 synchronously slides and descends along the circular sliding hole A104, the circular sliding hole B202 and the circular sliding hole C208 contacts with the copper conductive ball A204, at this time, the button battery 304 respectively contacts with the copper conductive ball A204 and the copper conductive ball B306, because the copper conductive ball A204 is electrically connected with the power supply connecting wire 4, the copper conductive ball B306 is electrically connected with the buzzer 303 through a wire, and the buzzer 303 is electrically connected with the power supply connecting wire 4, so that the power supply is connected, and the electric energy is transmitted to the buzzer 303, buzzer 303 sounds to alert the user to the need to add mosquito liquid.
The embodiments of the present invention have been presented for purposes of illustration and description, and are not intended to be exhaustive or limited to the invention in the form disclosed. Many modifications and variations will be apparent to those of ordinary skill in the art. The embodiment was chosen and described in order to best explain the principles of the invention and the practical application, and to enable others of ordinary skill in the art to understand the invention for various embodiments with various modifications as are suited to the particular use contemplated.