Electronic atomization device
09848651 ยท 2017-12-26
Assignee
Inventors
Cpc classification
A24F40/40
HUMAN NECESSITIES
International classification
Abstract
Disclosed is an electronic atomization device, which includes a suction nozzle, an oil cup assembly, an atomization core assembly and an electrode assembly. The atomization core assembly includes a heater support with a first stepped structure, an atomization core body supported by the heater support, a sealing washer sleeved on the atomization core body and closely contacting with the first stepped structure, an electrode connecting part connected with an end of the heater support via an insulating ring and an air hole connecting part disposed in the atomization core body. The oil cup assembly includes an oil cup body having an airway tube for connecting with the air hole connecting part, a first connecting element removably connected with the suction nozzle and a second connecting element having a second stepped structure formed therein for fitting the sealing washer. According to the present invention, its atomization core is easy to be changed.
Claims
1. An electronic atomization device, comprising a suction nozzle, an oil cup assembly, an atomization core assembly disposed in the oil cup assembly and an electrode assembly electrically connected with the atomization core assembly, wherein the atomization core assembly comprises a heater support with a first stepped structure, an atomization core body supported by the heater support, a sealing washer sleeved on the atomization core body and closely contacting with the first stepped structure, an electrode connecting part connected with an end of the heater support via an insulating ring and an air hole connecting part disposed in the atomization core body; the oil cup assembly comprises an oil cup body, a first connecting element removably connected with the suction nozzle and a second connecting element removably connected with the electrode assembly, the oil cup body having an airway tube disposed therein for connecting with the air hole connecting part and the second connecting element having a second stepped structure formed therein for fitting the sealing washer; and the atomization core assembly is disposed between the second connecting element and the electrode assembly, the electrode connecting part is connected with a positive electrode of the electrode assembly and the heater support is connected with a negative electrode of the electrode assembly.
2. The electronic atomization device according to claim 1, wherein the electrode assembly is assembled with the second connecting element via threaded connection.
3. The electronic atomization device according to claim 1, wherein the second connecting element has a stopper formed therein for stopping the first stepped structure.
4. The electronic atomization device according to claim 1, wherein the atomization core body has an ID chip disposed therein.
5. The electronic atomization device according to claim 1, wherein there is at least one protrusion made of elastic materials provided on an outside surface of the first connecting element.
6. The electronic atomization device according to claim 5, wherein the protrusion is made of rubber or silicon.
7. The electronic atomization device according to claim 5, wherein the protrusion comprises a long strip body and a plurality of convex bumps formed on a surface of the long strip body.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
(2)
(3)
(4)
(5)
(6)
DETAILED DESCRIPTION OF ILLUSTRATED EMBODIMENTS
(7) Some embodiments of the present invention will be described as follows, by way of example only, with reference to the accompanying drawings.
(8)
(9) The first connecting element 21 is assembled onto an end of the oil cup body 22 and the second connecting element 23 is assembled onto another end of the oil cup body 22 so as to constitute the oil cup assembly 2 together. The suction nozzle 1 is assembled onto the first connecting element 21 via threaded connection. The second connecting element 23 is connected with the electrode assembly 3 removably. When the atomization core assembly 4 is assembled into the second connecting element 23, the sealing washer 42 contacts with the first stepped structure 431 and the second stepped structure 231 closely. When the electrode assembly 3 is assembled onto the second connecting element 23, the atomization core assembly 4 is pushed against the second connecting element 23 by the electrode assembly 3 so that the sealing washer 42 contacts with the second stepped structure 231 closely and then the air hole connecting part 45 is hermetically connected with the airway tube disposed in the oil cup body 22. And the electrode connecting part 44 closely contacts with the positive electrode 31 of the electrode assembly 3 and the heater support 43 closely contact with the negative electrode 32 of the electrode assembly 3 so that good electrical connections are built between the electrode connecting part 44 and the positive electrode 31 of the electrode assembly 3 and between the heater support 43 and the negative electrode 32 of the electrode assembly 3.
(10) When the atomization core assembly 4 is needed to be replaced with another one, it just needs to disassemble the electrode assembly 3 from the second connecting element 23 then the atomization core assembly 4 could be removed easily.
(11) In this embodiment, the electrode assembly 3 is connected with the second connecting element 23 via threaded connection so that the electrode assembly 3 could be removed from the second connecting element 23 easily. The second connecting element 23 has a stopper 232 formed therein for stopping the first stepped structure 431 so as to avoid excessive pressure on the atomization core assembly 4 and ensure there is good electrical connection between the atomization core assembly 4 and the electrode assembly 3. In this embodiment, the distance between the stopper 232 and the second stepped structure 231 is smaller than the thickness of the sealing washer 42 so that the sealing washer 42 could contacts with the first stepped structure 431 and the second stepped structure 231 closely and then the electrode connecting part 44 and the electrode assembly 3 have a good electrical connection, and additionally it can prevent the atomization core assembly 4 from being pressed against the second stepped structure 231 overly. In this embodiment, the ID chip disposed in the atomization core assembly 4 is a RFID chip, which is used for recording the puff number of the electronic atomization device. When the recorded puff number reaches to a preset value, the electronic atomization device will stop working.
(12)
(13) Now the assembling process of the electronic atomization device of the present invention will be described as follows:
(14) Firstly, insert the atomization core assembly 4 into the second connecting element 23; screw the electrode assembly 3 onto the second connecting element 23 tightly, during screwing, the sealing washer 42 being pressed onto the second stepped structure 231 tightly so that the air hole connecting part 45 is hermetically connected with the airway tube disposed in the oil cup body 22; continue to screw the electrode assembly 3 onto the second connecting element 23, at this time, the first stepped structure 431 of the heater support 43 contacts with the stopper 232 so as to prevent the atomization core assembly 4 from being pressed against the second stepped structure 231 overly and ensure the electrode connecting part 44 and the electrode assembly 3 have a good electrical connection.
(15) Above descriptions of embodiments are provided for further illustrating the technical content of the present invention, so as to facilitate understanding. It should be understood that the invention is not to be limited to the disclosed embodiments. Any technique extension and recreation according to the present invention should be included within the scope of protection of the invention.