Capsule and electrostatic atomizing device thereof
09919322 ยท 2018-03-20
Assignee
Inventors
- Woojin KIM (Seoul, KR)
- Hyungho Park (Seoul, KR)
- Jongsun Jeon (Seoul, KR)
- Jaeseung Choi (Seoul, KR)
- Jieun CHOI (Seoul, KR)
- Hayoung Kim (Seoul, KR)
- Hyunjung KIM (Seoul, KR)
Cpc classification
F24F3/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B05B5/0255
PERFORMING OPERATIONS; TRANSPORTING
B01F23/2133
PERFORMING OPERATIONS; TRANSPORTING
B05B5/0533
PERFORMING OPERATIONS; TRANSPORTING
B05B5/057
PERFORMING OPERATIONS; TRANSPORTING
B05B5/0536
PERFORMING OPERATIONS; TRANSPORTING
B05B5/1691
PERFORMING OPERATIONS; TRANSPORTING
B01F2101/54
PERFORMING OPERATIONS; TRANSPORTING
International classification
B05B5/025
PERFORMING OPERATIONS; TRANSPORTING
B05B5/035
PERFORMING OPERATIONS; TRANSPORTING
B05B5/053
PERFORMING OPERATIONS; TRANSPORTING
B05B5/057
PERFORMING OPERATIONS; TRANSPORTING
B05B5/16
PERFORMING OPERATIONS; TRANSPORTING
F24F3/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
The present invention relates to an electrostatic atomizing device of a disposable capsule, wherein the capsule in accordance with an embodiment may include an ejection pin having a functional water solution impregnated therein, a sealing member for sealing the ejection pin, and a pressing member for pushing the ejection pin with external force to move the ejection pin such that a portion of the ejection pin penetrates the sealing member and is projected to an outside of the capsule, and the electrostatic atomizing device in accordance with an embodiment may include a hole for receiving a capsule, and a voltage applying portion in the hole so as to be brought into contact with an ejection pin being projecting to an outside of the capsule received in the hole for applying a voltage to the ejection pin in contact with thus.
Claims
1. A capsule comprising: an ejection pin having a functional water solution impregnated therein; a sealing member configured to seal the ejection pin such that the ejection pin is enclosed within the capsule; and a pressing member configured to push the ejection pin to move a portion of the ejection pin from an inside of the capsule towards an outside of the capsule, wherein the portion of the ejection pin penetrates the sealing member and is projected to the outside of the capsule when the pressing member is pushed by an external force.
2. The capsule as claimed in claim 1, wherein the ejection pin is formed of a porous medium.
3. The capsule as claimed in claim 2, wherein the porous medium is a ceramic or carbon fiber electrode.
4. The capsule as claimed in claim 1, wherein the sealing member is aluminum foil formed on a side of the capsule opposite from the pressing member.
5. The capsule as claimed in claim 1, wherein the pressing member has a piston shape.
6. An electrostatic atomizing device comprising the capsule as claimed in claim 1 and a driver, wherein the driver comprising: a hole for receiving the capsule; and a voltage applying portion in the hole so as to be brought into contact with the ejection pin projecting to the outside of the capsule received in the hole for applying a voltage to the ejection pin in contact with the voltage applying portion such that the functional water solution impregnated in the ejection pin is atomized.
Description
BRIEF DESCRIPTION OF DRAWINGS
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BEST MODE FOR CARRYING OUT THE INVENTION
(9) In what follows, a capsule and an electrostatic atomizing device according to preferred embodiments of the present invention will be described in detail with reference to the appended drawings.
(10) The electrostatic atomizing device of the present invention may be mounted in different types of air conditioning apparatuses, such as air cleaners, or air conditioners, or may be fabricated as a separate individual device.
(11) The electrostatic atomizing device of the present invention uses a disposable capsule having an amount of functional water solution impregnated in a porous medium, such as a ceramic or carbon fiber electrode, enough to use about 23 hours for preventing a scaling phenomenon in which an ejection pin is blocked from taking place.
(12) Moreover, the electrostatic atomizing device of the present invention uses the disposable capsule which can be placed in the device easily for the user to use a functional water solution of user's selection.
(13) Referring to
(14) If a pressing member 54 like a piston in a rear side of the ejection pin 51 is moved by external force, for an example, pressing with a user's hand, the ejection pin 51 projects to an outside of the capsule penetrating the sealing member 53. Since the pressing member 54 and the sealing member 53 form a top and a bottom sides of the capsule 50 of the cylindrical or polygonal pillar respectively, and a side of the capsule 50 is formed of a sealing member of a solid material, such as plastic, the ejection pin 51 is enclosed so as not to be exposed to an outside of the capsule.
(15) Referring to
(16) The driver 60 has a structure similar to a cigar jack insert, or a ball pointed pen spring, to enable a conductor that can apply a voltage to be brought into contact with the ejection pin 51.
(17) Referring to
(18) And, if the user pushes the pressing member 54 of the disposable capsule further, since the spring (Not shown) in the driver 60 comes into action, the air conditioning apparatus and the disposable capsule perfectly fastened closely. In this time, since a voltage is applied to ejection pin 51 through the voltage applying portion 61, the functional water solution 52 impregnated in the ejection pin 51 is atomized to form the nano-sized super fine mist.
(19) The mist formed thus is discharged to an outside of the air conditioning apparatus carried on an air flow generated by the air conditioning apparatus, wherein unipolar charged droplets at a droplet atomizing voltage (For an example, 67 KV) from the voltage applying portion 61 are carried by the air flow and discharged to the outside of disposable capsule, and has improved spatial diffusibility by repulsive force among the droplets.
(20) Referring to
(21) Eventually, the user may use the disposable capsule 50 by selecting and inserting the disposable capsule 50 having the functional water solution of a desired composition impregnated therein in the driver 60 of a cigar jack shape provided in the front or the side of the air conditioning apparatus, simply.
(22) In the meantime,
(23) Since a non-conductive liquid, such as a natural essential oil, for an example, lavender, rosemary, chamomile, and so on, has almost no ions which can serve as a charge, and very low electric conductivity, it is not possible to charge the non-conductive liquid, easily.
(24) Referring to
(25) The air conditioning apparatuses, such as the air cleaner or the air conditioner, may have a driver 80 of a tray shape mounted therein in a front or a side thereof for inserting the disposable capsule 70 having the portion of the needle of electrode 73 projected therefrom in a width direction. As shown in
(26) And, referring to
(27) And, a fluid in the vicinity of the electrons emitted thus is charged, so that the fluid charged thus is atomized and ejected to an outside of the disposable capsule from both ends of the ejection pin 71 by electric force stronger than surface tension of the fluid, thereby ejecting nano-sized super fine mist from both sides of the ejection pin 71.
(28) Though
(29) Eventually, the user may use the disposable capsule 70 having a functional water solution of a desired composition impregnated therein by inserting the disposable capsule 70 in the tray shaped support of the driver 60 to the front or the side of the air conditioning apparatus, simply.
(30) In the meantime,
(31) Referring to
(32) The air conditioning apparatuses, such as the air cleaner or the air conditioner, may have a driver 100 of a vertical tray shape mounted therein in a front or a side thereof for inserting the disposable capsule 90 in a vertical direction to have the portion of the needle of electrode 93 projected therefrom. As shown in
(33) And, referring to
(34) And, the fluid in the vicinity of the electron emitted thus is charged, so that the fluid charged thus is atomized and ejected to an outside of the capsule by an electric force stronger than a surface tension of the fluid, thereby ejecting nano-sized super fine mist from both sides of the ejection pin 91.
(35) When the capsule 90 is fastened to the driver 100 with the needle of electrode 93 inserted in the electrode hole 102, it is possible to make the first ground electrode 103 movable in a length direction such that the first ground electrode 103 is in contact with a bottom or a top of the capsule 90 having no needle of electrode 93 formed thereon.
(36) As have been described, the capsule and the electrostatic atomizing device of the present invention have the following advantages.
(37) While this invention has been described in connection with what is presently considered to be practical exemplary embodiments, it is to be understood that technical aspects of the present invention are not limited to the exemplary embodiments suggested in the specification, but, though a person of an ordinary skill in this field of art who understand the technical aspects of the present invention can suggest another exemplary embodiment by modifications, changes, removal, and addition of constituent elements within a range of technical aspects the same with the present invention, it may also be within a range of right of the present invention.