This application claims the priority of Chinese patent application no. 201310676937.6, filed on Dec. 23, 2013, the entire contents of all of which are incorporated herein by reference.
1. Technical Field
The present invention relates to an electronic cigarette, an atomizing device and a power pole used in the electronic cigarette, and a charger connector for charging the power pole.
2. Description of Related Art
Electronic cigarettes are similar to conventional cigarettes in appearance and taste, but less harmful to human's health, so that electronic cigarettes are widely used for helping people to quit smoke.
A typical electronic cigarette includes an atomizing device and a power pole detachably connected to the atomizing device by a screw, and the screw also finishes the electrical connection between the atomizing device and the power pole. However, such screw results the atomizing device or the power pole needs to rotate a number of circles, and the screw member can only be made of metallic materials because of the electrical connection, by which to lower the cost is difficult.
What is needed, therefore, is an electronic cigarette which can overcome the above shortcomings.
What is also needed, are corresponding atomizing device, power pole and charger connector which can overcome the above shortcomings.
Many aspects of the present electronic cigarette, atomizing device, power pole and charger connector can be better understood with reference to the following drawings. The components in the drawings are not necessarily drawn to scale, the emphasis instead being placed upon clearly illustrating the principles of the present electronic cigarette, atomizing device, power pole and charger connector. Moreover, in the drawings, like reference numerals designate corresponding parts throughout the several views.
Embodiments of the present electronic cigarette, atomizing device, power pole and charger connector will now be described in detail below and with references to the drawings.
Referring to
Referring to
The atomizing device 1 further includes a first connecting assembly 110 configured at an end thereof. The first connecting assembly 110 includes an inner electrode 110a, an outer electrode 110b, and an insulated member 111 located between the inner electrode 110a and the outer electrode 110b. The inner electrode 110a and the outer electrode 110b are electrically connected to the heating coil 109 by conductive wires. The power pole 2 includes a battery sleeve 207, and a battery 203 received in the battery sleeve 207. The power pole 2 further includes a second connecting assembly 208 configured at an end thereof. The second connecting assembly 208 has a cavity receiving the first connecting assembly 110, and a positive electrode 209a and a negative electrode 209b. The first connecting assembly 110 and the second connecting assembly 208 are connected to each other by a lapping fitting (see the following detail), and when the first connecting assembly 110 and the second connecting assembly 208 are connected, the inner electrode 110a abuts on the positive electrode 209a, the outer electrode 110b abuts on the negative electrode 209b, thereby the atomizing device 1 can be powered on by the power pole 2.
Referring to
The glass fiber tube 106 has openings formed at a peripheral wall thereof, the liquid transferring member 108 extends through the openings to reach the liquid reservoir 103. The liquid transferring member 108 is made of glass fiber or porous material. The heating coil 109 wraps around the liquid transferring member 108, and the heating coil 109 is completely located in the aerosol passage 107, the tobacco liquid 104 reaches the heating coil 109 by capillary, and the heating coil 109 heats the tobacco liquid to atomize it to be aerosol. The aerosol can be sucked out at the air outlet 105 through the aerosol passage 107. A silicon base 112 is mounted at a bottom of the liquid reservoir 103, and configured for sealing the liquid reservoir 103.
The first connecting assembly 110 is located at an end of the atomizing sleeve 102. In the first connecting assembly 110, each of the inner electrode 110a and the outer electrode 110b are ring-shaped, the outer electrode 110b has a shoulder 110c formed thereon, and the inner electrode 110 has an air through hole 113 formed in a sidewall thereof. The shoulder 110c is engaged in the atomizing sleeve 102, with a bottom surface of the shoulder 110c exposed to an end of the atomizing sleeve 102. The air through hole 113 is in communication with the aerosol passage 107, and the air from the power pole 2 can flow through a gap between the inner electrode 110a and the outer electrode 110b, the air through hole 113 and the aerosol passage 107, thereby making sure the air flow from an air inlet to the air outlet.
Two ends of the heating coil 109 are connected to conductive wires, the silicon base 112 has through holes for guiding the conductive wires, and the conductive wires can be electrically connected to the inner electrode 110a and outer electrode 110b via welding, riveting, or interference fitting.
The outer electrode 110b can be made of metallic material, or instead made of plastic material, and further have a conductive layer formed thereon. When the outer electrode 110b is inserted into the cavity of second connecting assembly 208, the outer electrode 110b can be rotated, and the outer electrode 110b has at least one lapping portion formed thereon to form a connection with at least one adapting portion of the power pole 2. See
Referring to
The cavity of the second connecting assembly 208 is provided by an electrode fixing base 211 which is located at the other end of the battery sleeve 207 opposite to the lamp cover 201. A circuit board 210 is mounted in the cavity, and the positive electrode 209a is located at a central position of the circuit board 210. The positive electrode 209a is a resilient electrode which may have a spring and an electrode pin connected to the spring. The spring provides a resilient force for the electrode pin, thereby making sure to closely contact the inner electrode 110a of the atomizing device 1. The negative electrode 209b is a ring-shaped electrode inserted between battery sleeve 207 and the electrode fixing base 211, and has a flange 209c having a top surface exposed on the end of the battery sleeve 207, when the first connecting assembly 110 is connected to the second connecting assembly 208, the top surface of the flange 209c of the negative electrode 209b contacts the bottom surface of the shoulder 110c of the outer electrode 110b to form an electrical connection.
Referring to
Referring to
It is understood that the positive electrode 209a and the negative electrode 209b can act as discharging electrodes for the atomizing device 1 when the atomizing device 1 is connected to the power pole 2, and can also act as charging electrodes for the power pole 2 when atomizing device 1 is detached from the power pole 2 and a charger is applied on the power pole 2. In alternative embodiments, the power pole 2 can have additional charging electrodes, for example, adding a positive electrode 206 at a distal end of the power pole 2, and the positive electrode 206 and the negative electrode 209b cooperatively form charging electrodes.
Referring to
Referring to
The power pole 2 further includes an electrode fixing base 406 and a second connecting assembly 407 positioned at top end thereof. The electrode fixing base 406 provides a cavity for the second connecting assembly 407. The outer electrode 303 has at least one rib 3031 extending outwards thereof, the electrode fixing base 406 has at least one protrusion 4061 extending inwards thereof. The at least one rib 3031 and protrusion 4061 each are arc-shaped, and at least one gap is formed adjacent to the at least one rib 3031, and also at least one gap is formed adjacent to the at least one protrusion 4061. In the present embodiment, there are two ribs 3031 and two protrusions 4061. The ribs 3031 of the outer electrode 303 enter the cavity of the electrode fixing base 406 from the gaps between the protrusions 4061, and are rotated a certain angle to abut on a bottom surface of the protrusions 4061, thereby forming a lapping fitting. The second connecting assembly 407 has a positive electrode 408 and a negative electrode 409, the positive electrode 408 is a coil spring and is arranged at a central position of the cavity, and the negative electrode 409 is a metal shrapnel and is arranged under the protrusions 4061. In accompany with the lapping fitting, the positive electrode 408 abuts a connecting portion 3021 of the inner electrode 302, and the negative electrode 409 abuts the ribs 3031 of the outer electrode 303.
In addition, the power pole 2 further has a first charging electrode 402 and a second charging electrode 405, the first charging electrode 402 is arranged in the lamp cover 401, and the second charging electrode 405 is set around the electrode fixing base 406, and electrically connected to the negative electrode 409. In the present embodiment, the electrode fixing base 406 has a hole 406a, and the negative electrode 409 is integrally formed with the second charging electrode 405 and extends through the hole 406a to contact the ribs 3031 of the outer electrode 303. In charging the power pole 2, the first charging electrode 402 and the second charging electrode 405 are connected to a charger for charging the battery 403.
Referring to
It is understood that the above described first connecting assembly can be mounted at the power pole 2, and the second connecting assembly can be mounted at the atomizing device 1.
Referring also to
It is understood that the above-described embodiments are intended to illustrate rather than limit the disclosure. Variations may be made to the embodiments and methods without departing from the spirit of the disclosure. Accordingly, it is appropriate that the appended claims be construed broadly and in a manner consistent with the scope of the disclosure.
Number | Date | Country | Kind |
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201310676937.6 | Dec 2013 | CN | national |