The present invention relates to diffuser technology and more particularly, to an in-car environment purification diffuser, which converts liquid to fine vapor by oscillation.
Existing diffuser devices are used for washing, deodorizing, sterilizing, disinfecting and other functions. These diffuser devices use electronic parts, electrical components, wires, etc. When the diffuser device filled with chemical liquid is dumped, the chemical liquid easily penetrates into the diffuser device and damages or affects the operation performance of these electronic parts or electrical components. The chemical liquid overflowing the diffuser device is also easy to cause environmental pollution and harm the human body, and it is not safe to use. Moreover, the acid-alkaline liquid in the water tank of the existing diffuser device is easy to corrode the oscillating sheet, causing the positive and negative electrode layers to conduct with each other and damage, and the problem of forming a fine vapor cannot produce a better environmental effect.
The present invention has been accomplished under the circumstances in view. It is one object of the present invention to provide an in-car environment purification diffuser, which is so configured that when the in-car environment purification diffuser is dumped, the liquid in the diffuser is less likely to flow into the interior and the car environment, which helps to avoid damage to the circuit components in the diffuser and maintain the clean and safe environment in the car.
The present invention provides an in-car environment purification diffuser that can use a highly alkaline ionized water liquid, and the generated alkaline ionized water spray cleans, sterilizes, deodorizes, and disinfects the environment in the car, so that the environment in the car is safe and does not harm human health.
The present invention provides an in-car environment purification diffuser that includes decoration or lighting combined with spray effects to create a better atmosphere in the car.
In a preferred embodiment of the present invention, the in-car environment purification diffuser comprises a bottom housing, an electric fan, a water tank, an oscillation device, a spray cover, and a control unit. The bottom housing comprises an accommodation chamber defined inside, a first air inlet formed on the bottom side of the accommodation chamber, an opening formed in an upper edge of the accommodation chamber. The water tank comprises a slot, an oscillation space, a tank bottom, a perforation, a tank cover, and an air flow channel. The slot is formed on the upper side of the water tank. The oscillation space is defined in the water tank for holding a liquid. The tank bottom is provided with a perforation in communication with the oscillation space. The air flow channel has one side thereof protruding into the oscillation space of the water tank to form an inner vent, and an opposite side thereof extending out of the tank bottom to form an outer vent. The electric fan is mounted in the outer vent. In some embodiments, the diameter of the outer vent is larger than that of the inner vent, so that the airflow produced by the electric fan can flow from the outer vent through the inner vent into the oscillation space at a relatively higher speed and higher pressure.
The water tank is mounted in the accommodation chamber. The outer vent of the air flow channel and the electric fan are disposed in communication with the first air inlet in the accommodation chamber. The first air inlet provides a path for the electric fan to inhale external air.
The tank cover comprises a shield and a first exhaust hole. The shape of the tank cover matches the structure of the inner vent in the water tank. The shield forms a concave shape on an inner side of the peripheral edge of the tank cover. The inner side of the shield concave shape forms a sheltered space. The first exhaust hole is formed on an opposite side of the tank cover. The tank cover is detachably covered on the slot. The shield of the tank cover is covered over the inner vent. The inner vent and the first exhaust hole are commonly disposed in communication with the oscillation space.
The oscillation device is mounted in the perforation and used to vibrate and atomize the liquid in the oscillation space.
The spray cover comprises a spray hole. The spray cover is detachably mounted on the opening of the bottom housing to shield the tank cover, so that the spray hole communicates with the first exhaust hole and the oscillation space to form a spray outlet path.
The control unit is mounted in the accommodation chamber at one side of the tank bottom. The control unit comprises a circuit device such as a printed circuit board assembly, and a circuit for driving the oscillation device. The control unit is electrically connected with the oscillation device, the electric fan, or other lamps, electronics or appliances used in the in-car environment purification diffuser. It is used to control the switching or various action functions of the oscillation device or the electric fan or other lamps, electronics or appliances.
In this way, connect a power supply to the control unit, command to turn on the oscillation device to oscillate the liquid in the oscillation space (such as alkaline ionized water or various environmental cleaning and purification agents, etc., or add various natural sterilization and deodorant agents to the liquid for application) into atomized mist (fine water molecules). At the same time, the electric fan continuously sends the air flow from the first air inlet to the outer vent to passthrough the inner vent of the air flow channel. The airflow is blocked by the shield from backflow, and it flows in the oscillation space without directly flowing out of the first exhaust hole. It can effectively transport atomized alkaline ionized water (in the embodiment, the pH value of the hydroxide ionized water electrolyzed by pure water is about 10 to 12.5) and various mists (fine water molecules) from the oscillation space through the first exhaust hole and the spray cover to the car internal space or the outside environment for use in sterilization, cleaning, deodorization, virus elimination, or air purification. The light-permeable spray cover is light permeable and provided with an umbrella-shaped panel to shield the tank cover. The spray cover is shaped like a paper umbrella with a decorative effect. The umbrella-shaped panel with spray effect is very decorative and can create a better atmosphere in the car.
The present invention provides an embodiment. When the in-car environment purification diffuser is dumped, the liquid in the diffuser is less likely to flow into the interior and the car environment, which helps to avoid damage to the circuit components in the diffuser and maintain the clean and safe environment in the car.
The present invention provides an embodiment, wherein the oscillator of the oscillation device is coated with an acid-and-alkaline-resistant coating, so that an alkaline ionized water liquid can be used in the diffuser, and the generated alkaline ionized water spray can clean, sterilize, deodorize, and disinfect the environment in the car, which is safe and does not harm human health.
The present invention provides an embodiment, wherein the spray cover is light permeable and provided with an umbrella-shaped panel decoration that resembles a Hakka paper umbrella with a sense of beauty and charm, with lighting and spray effects to create a better atmosphere in the car.
Other advantages and features of the present invention will be fully understood by reference to the following specification in junction with the accompanying drawings, in which like reference signs denote like components of structure.
Referring to
The bottom housing 10 comprises an accommodation chamber 11 defined inside, a first air inlet 12 provided on the bottom side of the accommodation chamber 11, and an opening 13 formed on the upper edge of the accommodation chamber 11.
The water tank 30 comprises a slot 31, an oscillation space 32, a tank bottom 33, a perforation 34, a tank cover 35, and an air flow channel 37. The slot 31 is formed on the upper side of the water tank 30. The oscillation space 32 is defined in the water tank 30 for holding a liquid. The tank bottom 33 is located at the bottom of the oscillation space 32 and opens the perforation 34. One side of the air flow channel 37 protrudes into the oscillation space 32 of the water tank 30 to form an inner vent 371, and the other side of the air flow channel 37 extends out of the tank bottom 33 to form an outer vent 373. The electric fan 20 is mounted in the outer vent 373.
The water tank 30 is mounted inside the accommodation chamber 11. The outer vent 373 of the air flow channel 37 and the electric fan 20 are disposed in the accommodation chamber 11 in communication with the first air inlet 12. The first air inlet 12 provides a path for the electric fan 20 to inhale external air.
The tank cover 35 comprises a shield 355 and a first exhaust hole 357. The shape of the tank cover 35 matches the structure of the inner vent 371 in the water tank 30. The shield 355 forms a concave shape on the inner side of the peripheral edge of the tank cover 35, and the inner side of the concave shape of the shield 355 forms a sheltered space. The first exhaust hole 357 is formed on the other side of the tank cover 35. The tank cover 35 is detachably covered on the slot 31 and at the same time, the shield 355 of the tank cover 35 is covered over the inner vent 371. The inner vent 371 and the first exhaust hole 357 are commonly disposed in communication with the oscillation space 32.
The oscillation device 40 is mounted in the perforation 34, which is used to vibrate and atomize the liquid in the oscillation space 32.
The spray cover 60 comprises a spray hole 671. The spray cover 60 is detachably mounted on the opening 13 of the bottom housing 10 to shield the tank cover 35, so that the spray hole 671 communicates with the first exhaust hole 357 and the oscillation space 32 to form a spray outlet path.
The control unit 70 is mounted in the accommodation chamber 11 of the tank bottom 33, comprising circuit devices such as printed circuit board assembly (PCBA), and circuit means for driving the oscillation device 40. The control unit 70 is electrically connected with the oscillation device 40, the electric fan 20 or other lamps, electronics or appliances used in the in-car environment purification diffuser. It is used to control the switching or various action functions of the oscillation device 40 or the electric fan 20 or other lamps, electronics or appliances.
In this way, connect a power supply to the control unit 70, command to turn on the oscillation device 40 to oscillate the liquid in the oscillation space 32 (such as alkaline ionized water or various environmental cleaning and purification agents, etc., or add various natural sterilization and deodorant agents to the liquid for application) into atomized mist (fine water molecules). At the same time, the electric fan 20 continuously sends the air flow from the first air inlet 12 to the outer vent 373 to passthrough the inner vent 371 of the air flow channel 37. The airflow is blocked by the shield 355 from backflow, and it flows in the oscillation space 32 without directly flowing out of the first exhaust hole 357. It can effectively transport atomized alkaline ionized water (in the embodiment, the pH value of the hydroxide ionized water electrolyzed by pure water is about 10 to 12.5) and various mists (fine water molecules) from the oscillation space 32 through the first exhaust hole 357 and the spray cover 60 to the car internal space or the outside environment for use in sterilization, cleaning, deodorization, virus elimination, or air purification.
Referring to
Referring to
In an embodiment, the acid-and-alkaline-resistant coating of the oscillator 43 has a film thickness of 0.5 to 1.5 microns. Preferably, the film thickness is about 1 micron. The acid-and-alkaline-resistant coating contains fluorine-containing polymer (fluoropolymer) or fluorine-containing oligomers or electronic metal coating agents commonly used in the electronics industry, etc. The oscillation device 40 is set in the perforation 34 at the bottom of the oscillation space 32. The oscillator 43 is mounted in the waterproof ring 41, and then the waterproof ring 41 is set in the perforation 34. Fix the oscillation device 40 by the fixing frame 42 located on the lower side of the waterproof ring 41 and coupled to the lower side of the perforation 34. The oscillator 43 of the present invention is protected by the acid-and-alkaline-resistant coating, and the alkaline ionized water electrolyzed by natural pure water (for example, the pH value of the hydroxide ionized water electrolyzed by pure water is about 10 to 12.5) can be used to clean, sterilize, deodorize and disinfect the environment in the car to purify the environmental space in the car. Wherein, the waterproof ring 41 can be, for example, a silicone ring, a rubber ring, or a plastic ring.
Referring to
Referring to
Referring to
In one embodiment of the present invention, as shown in
In some embodiments, these radial ribs 673 are arranged on the inner side of the umbrella-shaped panel 67 and radially extended from the from the periphery of the spray hole 671 of the umbrella-shaped panel 67 to the edge of the umbrella-shaped panel 67. The umbrella-shaped panel 67 can be selectively made of various translucent or transparent plastic materials, acrylic, glass, etc. This translucent or transparent umbrella-shaped panel 67 vaguely sees through the radial ribs 673, and the overall shape is like a paper umbrella with a decorative effect.
In one embodiment of the present invention, as shown in
Referring to
In some embodiments, a light source 51 is also incorporated in the groove 39. The light source 51 is a light-emitting device such as an LED lamp or a bulb, and the light source 51 is electrically connected to the control unit 70. The groove 39 and tank cover 35 are made of transparent or translucent plastic material, acrylic or glass, etc. The control unit 70 is electrically connected to an external power source to provide power supply to the light source 51. The light emitted by the light source 51 goes through the wall of the groove 39, the tank cover 35 and the light hole 637 to radiate on the transparent umbrella-shaped panel 67 to form a light decoration effect. The light passes through the transparent umbrella-shaped panel 67 is refracted by the radial ribs 673 to produce a skeleton charm of a paper umbrella and a light decoration effect. Combining the mist-spray effect and the lighting effect, the in-car environment purification diffuser can have a better atmosphere. In particular, the water tank 30 can also be additionally added with fragrance liquid to make the car interior sterilization, disinfection, and deodorization smell better.
In this way, the switch circuit 50 provides the button selection function and the switch signal is sent to the control unit 70. The control unit 70 is used to connect the power supply and provide button selection functions and switch signals to turn on or off the oscillating device 40, the electric fan 20 or the light source 51. The control unit 70 instructs to turn on the oscillation device 40 to generate atomized mist (fine water molecules) by oscillating the liquid in the oscillation space 32 of the tank cover 35. At the same time, the electric fan 20 continues to deliver the air flow from the first air inlet 12, through the air flow channel 39 into the shield 355 and then the oscillation space 32. The air flow transports the atomized mist (fine water molecules) through the first exhaust hole 357, the air duct 65 and the spray hole 671 to the external environment.
In some embodiments, the control unit 70 can be any of a variety of printed circuit board assemblies or electronic circuits, or various computer equipment such as computers or microprocessors, which can be used in the operation or control function of the in-car environment purification diffuser of the present invention.
Referring to
In one embodiment of the present invention, the in-car environment purification diffuser is used for sterilization or disinfection. The user will use cleaning, sterilizing, disinfecting or/and deodorizing liquids, for example, alkaline ionized water with a pH value of 10.0 or more, such as pH 10, 10.5, 11, 11.5, 12, 12.5 pure water electrolysis alkaline ionized water. In the preferred embodiment, the pH value of hydroxide ionized water, such as pure water electrolysis, is 10 to 12.5. Alkaline ionized water has a peeling effect, which can neutralize static electricity and float away from dirt. Alkalization can decompose oil or protein. Alkaline ionized water is more permeable than ordinary water and has a good cleaning and sterilization effect.
In the embodiment, the hydroxide ion water electrolyzed by pure water with a pH value of 10.5 to 12.5 is used. The hydroxide ion water is poured into the oscillation space 32 of the water tank 30. The user switches on the switch circuit 50 to provide power to the control unit 70, so that the control unit 70 drives the oscillation device 40 to vibrate, causing the alkaline ionized water in the oscillation space 32 to generate mist. At the same time, the electric fan 20 is turned on to drawing outside air from the first air inlet 12 of the bottom housing 10 through the air flow channel 37 to the shield 355 and the oscillation space 32, forcing the alkaline ionized water mist to flow from the oscillation space 32 through the first exhaust hole 357, the second exhaust hole 631, the air duct 65 and the spray hole 671 into the car inside space to sterilize, disinfect and deodorize the environment in the car. Eliminate odors in the car, purify the air in the car, etc. The in-car environment purification diffuser is safe to use and does not affect health.
Although the present invention has been described using the above-mentioned preferred embodiments, it is not intended to limit the scope of protection of the present invention. Any person skilled in the art can make various modifications and changes relative to the above-mentioned embodiments without departing from the spirit and scope of the present invention. Therefore, the scope of protection of the present invention is as defined by the claims.
This application is a Continuation-in-Part of application Ser. No. 16/259,833 filed Jan. 28, 2019.
Number | Date | Country | |
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Parent | 16259833 | Jan 2019 | US |
Child | 17102236 | US | |
Parent | 16157994 | Oct 2018 | US |
Child | 16259833 | US |