SUMMERY OF THE UTILITY MODEL
In view of the above, there is a need for a modular integrated atomizer device.
In order to solve the technical problem, the utility model discloses a technical scheme be: an integrated atomizing device comprising: the bottom of the atomizer assembly is provided with a connecting seat made of flexible materials, a connecting hole is formed in the connecting seat, and an electric connecting piece electrically connected with the atomizing core is arranged in the connecting hole; the battery pole component comprises a battery, a battery frame, a top seat and a base, wherein the top seat, the battery frame and the base are sequentially connected to form a cavity for accommodating the battery; the shell is provided with a suction hole corresponding to a suction nozzle of the atomizer assembly, and the atomizer assembly and the battery rod assembly are arranged in the shell.
Further, the atomizer subassembly still includes the fluid reservoir, the configuration is in atomizing core and the connection of the configuration in the fluid reservoir are in the suction nozzle at the top of fluid reservoir.
Further, the battery pole subassembly is configured with the air flue, the air flue intercommunication the atomizing core, the footstock with the base is configured with the intercommunication the gas pocket of air flue.
Furthermore, a mounting cavity is arranged in the base.
Furthermore, the connecting hole is a stepped hole, the stepped hole comprises a first stepped hole and a second stepped hole which extend towards the battery rod assembly, the electrode is T-shaped, and the electric connector bends from the second stepped hole and extends into the first stepped hole.
Furthermore, a detachable connecting structure is further arranged between the atomizer assembly and the top seat.
Further, the outer shell comprises an integrated main shell and a bottom cover detachably connected with the main shell.
Further, the bottom cover is connected with the main shell and is abutted to the atomizer assembly, so that the atomizer assembly is abutted to one end, far away from the base, of the outer shell.
Furthermore, the atomizer assembly and/or the battery rod assembly are/is in sliding interference connection with the main shell, a sleeve groove is formed in the bottom cover, and the bottom cover is connected with the base in a nested mode.
Further, the base of the battery rod assembly is connected with the main shell to form a bottom cover of the outer shell.
The beneficial effects of the utility model reside in that: the whole structure is modularized into the atomizer assembly, the battery rod assembly and the shell, the whole structure is simple and clear, the production can be carried out separately, the manufacturing is convenient and fast, and the production efficiency is improved; the atomizer subassembly disposes the connecting hole, disposes the electric connector who is connected with atomizing core electricity in the connecting hole, and the connecting hole is connected with the electrode interference, not only makes atomizing core and battery's electricity be connected more stably, still is connected atomizer subassembly and battery pole subassembly assembly together through the interference of connecting hole and electrode, and the connected mode is simple and convenient stable again.
Drawings
Fig. 1 is a schematic view of a matching structure of an atomizer assembly and a battery rod assembly of an integrated atomizer device according to an embodiment of the present invention;
fig. 2 is a schematic cross-sectional view of an integrated atomization device according to an embodiment of the present invention;
fig. 3 is a schematic structural diagram of an atomizer assembly of an integrated atomizer device according to an embodiment of the present invention;
fig. 4 is a schematic structural diagram of a battery rod assembly of an integrated atomization device according to an embodiment of the present invention;
fig. 5 is a schematic structural diagram of an appearance of an integrated atomization device according to an embodiment of the present invention.
Description of reference numerals:
100. an atomizer assembly; 110. a connecting seat; 111. connecting holes; 1111. a first stepped hole;
1112. a second stepped bore; 112. an electrical connection; 120. a liquid bin; 130. an atomizing core;
140. a suction nozzle; 200. a battery rod assembly; 210. a battery; 220. a battery holder; 230. a top seat;
231. an electrode; 232. air holes; 240. a base; 300. a housing; 310. a main housing; 320. a bottom cover.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more clearly understood, the following description, in conjunction with the accompanying drawings and embodiments, will explain the present invention in further detail. It should be understood that the specific embodiments described herein are for purposes of illustration only and are not intended to limit the invention.
Referring to fig. 1 to 5, an integrated atomization device includes: theatomizer assembly 100, the bottom of theatomizer assembly 100 is provided with a connectingseat 110 made of flexible material, the connectingseat 110 is provided with a connectinghole 111, and an electric connectingpiece 112 electrically connected with the atomizingcore 130 is arranged in the connectinghole 111; thebattery rod assembly 200 comprises abattery 210, abattery frame 220, atop seat 230 and abase 240, wherein thetop seat 230, thebattery frame 220 and thebase 240 are sequentially connected to form a cavity for accommodating thebattery 210, anelectrode 231 electrically connected with thebattery 210 is arranged on thetop seat 230, and theelectrode 231 is in interference fit with the connectinghole 111 and is electrically connected with theelectric connector 112; ahousing 300 provided with a suction hole corresponding to the suction nozzle 140 of theatomizer assembly 100, theatomizer assembly 100 and thebattery rod assembly 200 being disposed within thehousing 300.
The whole structure is modularized into theatomizer assembly 100, thebattery rod assembly 200 and theshell 300, the whole structure is simple and clear, the production can be separated, the manufacturing is convenient and fast, and the production efficiency is improved; theatomizer assembly 100 is provided with theconnection hole 111, theelectric connection member 112 electrically connected with the atomizingcore 130 is arranged in theconnection hole 111, and theconnection hole 111 is in interference connection with theelectrode 231, so that the electric connection between the atomizingcore 130 and thebattery 210 is more stable, and theatomizer assembly 100 and thebattery rod assembly 200 are assembled together through the interference connection between theconnection hole 111 and theelectrode 231. By inserting the 2electrodes 231 into theatomizer assembly 100, the connection is more secure and reliable, and the manner is simple, convenient and stable.
Referring to fig. 1, 2 and 3, theatomizer assembly 100 further includes afluid chamber 120, an atomizingcore 130 disposed in thefluid chamber 120, and a nozzle 140 connected to the top of thefluid chamber 120. Namely, theatomizer assembly 100 is provided with theliquid chamber 120, instead of thehousing 300 taking on the role of theliquid chamber 120, which not only ensures the sealing performance, but also facilitates the assembly and disassembly, and avoids the smoke pollution during disassembly.
Referring to fig. 1, 2, 4 and 5, thebattery rod assembly 200 is provided with an air passage, the air passage is communicated with the atomizingcore 130, and thetop seat 230 and thebottom seat 240 are provided withair holes 232 communicated with the air passage. Theair hole 232 is arranged at the bottom, so that the appearance is attractive, and the structure and the attractiveness of the integratedshell 300 are prevented from being damaged.
Referring to fig. 2 and 4, a mounting cavity is formed in thebase 240. Thebase 240 is provided with a mounting cavity, and can be used for mounting electronic components such as a circuit board and a microphone.
Referring to fig. 2 and 3, theconnection hole 111 is a stepped hole including a first stepped hole and a second stepped hole extending toward thebattery rod assembly 200, theelectrode 231 is T-shaped, and theelectrical connector 112 is bent from the second stepped hole and extends into the first stepped hole. Through the ladder hole and the T-shaped electrode 231, the temperature property of electric connection is greatly improved, and theelectrode 231 is not only in axial contact with the electric connectingpiece 112 positioned in the second ladder hole, but also in radial tight fit with the electric connectingpiece 112 positioned in the first ladder hole. Specifically, the connectingseat 110 may directly form a bottom shell of theliquid chamber 120, or may be configured with a bottom shell connected to theliquid chamber 120, and the connectingseat 110 is configured on the bottom shell; the connectingsocket 110 is made of a flexible material, and is generally made of a heat-resistant insulating material, such as rubber or plastic.
Referring to fig. 1-4, a detachable connection structure is further provided between theatomizer assembly 100 and thetop seat 230. The configuration of the auxiliary detachable connection structure improves the stability of the connection between theatomizer assembly 100 and thetop mount 230, and is simple, and the detachable connection structure includes a threaded connection, an interference connection or a snap connection.
Referring to fig. 2 and 5, theouter case 300 includes amain case 310 of a single body type and abottom cover 320 detachably coupled to themain case 310. Themain housing 310 and thebottom cap 320 are removable for ease of maintenance and may be readily replaced with theatomizer assembly 100 or thebattery pack assembly 200 as desired. It can be understood that thebottom cover 320 is provided with air inlet holes 232 communicating with the air holes 232 of thebase 240. In particular, thebase 240 of thebattery rod assembly 200 is coupled to themain case 310 to form thebottom cover 320 of theouter case 300. Alternatively, as another embodiment of the present invention, theatomizer assembly 100 and/or thebattery rod assembly 200 are slidably interference-connected with themain housing 310, thebottom cap 320 is provided with a sleeve groove, and thebottom cap 320 is nested-connected with thebase 240.
Preferably, thebottom cap 320 is coupled to themain housing 310 and abuts theatomizer assembly 100 such that theatomizer assembly 100 abuts the end of theouter housing 300 remote from thebase 240. Theatomizer assembly 100 and thebattery rod assembly 200 are prevented from loosening, and stability is improved.
In particular, theelectrical connection 112 is formed directly from the two poles of the heater of theatomizing core 130. Compare in the structure of traditional atomizing core configuration electrode, saved spare part, the erection joint is simple and convenient more, has reduced material cost and installation cost, connects for traditional contact or elastic contact simultaneously, and the interference is connected more reliable and stable, and the resistance is also relatively stable, atomizes effectually.
In summary, the integral atomization device provided by the utility model has the advantages that the whole structure is modularized into the atomizer assembly, the battery rod assembly and the shell, the whole structure is simple and clear, the production can be separated, the manufacture is convenient and fast, and the production efficiency is improved; the atomizer subassembly disposes the connecting hole, disposes the electric connector who is connected with atomizing core electricity in the connecting hole, and the connecting hole is connected with the electrode interference, not only makes atomizing core and battery's electricity be connected more stably, still is connected atomizer subassembly and battery pole subassembly assembly together through the interference of connecting hole and electrode, and the connected mode is simple and convenient stable again.
The above description is only a preferred embodiment of the present invention, and the present invention is not limited to the above description in any form, and although the present invention has been disclosed with reference to the preferred embodiment, it is not limited to the present invention, and any skilled person in the art can make modifications or changes equivalent to the equivalent embodiment of the above embodiments without departing from the scope of the present invention.