WO2015035547A1 - 电池组件、雾化组件及电子烟 - Google Patents
电池组件、雾化组件及电子烟 Download PDFInfo
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- WO2015035547A1 WO2015035547A1 PCT/CN2013/083189 CN2013083189W WO2015035547A1 WO 2015035547 A1 WO2015035547 A1 WO 2015035547A1 CN 2013083189 W CN2013083189 W CN 2013083189W WO 2015035547 A1 WO2015035547 A1 WO 2015035547A1
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- Prior art keywords
- connecting member
- battery
- sleeve
- slip structure
- assembly
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- A—HUMAN NECESSITIES
- A24—TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
- A24F—SMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
- A24F40/00—Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
- A24F40/40—Constructional details, e.g. connection of cartridges and battery parts
Definitions
- the present invention relates to the field of cigarette replacement technology, and more particularly to a battery assembly, an atomizing assembly, and an electronic cigarette.
- Smoking is harmful to health. As people's health awareness increases, more and more people know the dangers of smoking. Smoking does not only cause physical harm to the smoker itself, but also harms people around.
- an electronic cigarette has been developed which has the same shape as a regular cigarette. It can generate smoke when sucked, but it does not contain harmful substances such as tar, and is healthier than ordinary cigarettes.
- the electronic cigarette includes a battery assembly and an atomizing assembly that are screwed to each other, and the battery assembly includes a battery sleeve and a first connecting member for electrically connecting with the atomizing assembly, the atomizing assembly includes an atomizing sleeve and the same for the battery assembly A second connector that is electrically connected. Since the electronic cigarette requires maximum simulation of smoke in shape, size and weight to make it easy for smokers to accept, the battery casing and the atomization sleeve are required to be thin, and the battery casing and The atomizing sleeve is relatively thin, so that the conventional threaded connection structure cannot be used between the battery sleeve and the first connecting member and the atomizing sleeve and the second connecting member.
- the first connecting member and the inner wall of the battery sleeve are glued by glue, and between the second connecting member and the inner wall of the atomizing sleeve It is also bonded by glue and is generally bonded by liquid glue during assembly.
- the glue easily overflows the battery sleeve or the atomizing sleeve, and the outer surface of the electronic cigarette is not clean, and the existing glue usually contains dichloroethane which is harmful to the human body. Substance, therefore, it is necessary to increase the glue process for cleaning the outer surface of the electronic cigarette, waste working hours and low production efficiency.
- the technical problem to be solved by the present invention is that the above-mentioned connecting member and the outer sleeve of the prior art are glued with glue, and the process is complicated, and the battery assembly, the atomizing assembly and the electronic cigarette which are firmly connected and simple in production process are provided.
- the technical solution adopted by the present invention to solve the technical problem thereof is: construction A battery assembly for forming an electronic cigarette in combination with an atomizing assembly, the battery assembly comprising a battery sleeve, one end of the battery sleeve being connected with a first connecting member for connecting with the atomizing assembly, An anti-slip structure is protruded from a region of the first connecting member that is in contact with the battery sleeve, and the anti-slip structure
- the outer side wall is coated with a drop-resistant glue for enhancing the bonding strength between the first connecting member and the battery sleeve.
- the drop-resistant rubber is wholly or partially coated on the anti-slip structure.
- the drop-resistant rubber is coated on the anti-slip structure in the axial or radial direction of the first connecting member.
- the glue-resistant glue comprises a microcapsule containing a curing accelerator and an adhesive. When assembled, the microcapsule is crushed and broken to release a curing accelerator and react with the adhesive to form a non-slip structure. Thermoset plastic within the gap.
- the anti-slip structure is a knurled structure extending along the axial direction of the first connecting member and spaced apart.
- the knurling structure is a straight knurling, a twill knurling or a cross-web knurling.
- the anti-slip structure is a groove that is disposed at a radial interval along the first connecting member.
- the anti-slip structure is a thread disposed along a radial direction of the first connecting member.
- the invention also provides an atomization assembly for forming an electronic cigarette in combination with a battery assembly, the atomization assembly comprising an atomization sleeve, one end of the atomization sleeve being connected for connection with the battery assembly a second connecting member, an area of the second connecting member contacting the atomizing sleeve is convexly provided with a non-slip structure, and a circumferential outer side wall of the anti-slip structure is surrounded for reinforcing the second connecting member
- the atomization sleeve is bonded to the strength of the glue.
- the primer is wholly or partially wrapped around the anti-slip structure.
- the drop-resistant rubber surrounds the anti-slip structure axially or radially.
- the glue-resistant glue comprises a microcapsule containing a curing accelerator and an adhesive. When assembled, the microcapsule is crushed and broken to release a curing accelerator and react with the adhesive to form a non-slip structure. Thermoset plastic within the gap.
- the second connecting member includes a body portion sleeved in the atomization sleeve and an extension portion extending outside the atomization sleeve, and the anti-slip structure is disposed at On the outer side wall of the body portion.
- the anti-slip structure is a knurled structure extending along the axial direction of the second connecting member and spaced apart.
- the knurling structure is a straight knurling, a twill knurling or a cross-web knurling.
- the anti-slip structure is a groove that is disposed at a radial interval along the second connecting member.
- the anti-slip structure is a thread disposed along a radial direction of the second connecting member.
- the present invention also provides an electronic cigarette comprising an atomizing assembly having an atomizing sleeve and a battery assembly having a battery sleeve, wherein the battery sleeve and the atomizing sleeve are respectively provided with a first connection at a connection position And a second connecting member, the first connecting member and the battery sleeve and/or the second connecting member are in contact with the atomizing sleeve, and a non-slip structure is protruded.
- the circumferential outer side wall of the structure is coated with a drop-resistant glue for enhancing the bonding strength between the first connector and the battery sleeve and/or the second connector and the atomization sleeve.
- the pressure-resistant glue comprises a microcapsule containing a curing accelerator and an adhesive, and the microcapsule is crushed and broken during assembly to release the curing accelerator and adhere to the adhesive.
- the agent reacts to form a thermoset plastic that fills the gaps of the anti-slip structure.
- the anti-slip structure is a knurled structure extending along the axial direction of the first connecting member and/or the second connecting member and spaced apart.
- the battery assembly, the atomizing assembly and the electronic cigarette embodying the invention have the following beneficial effects: by contacting the atomizing sleeve on the first connecting member in contact with the battery sleeve and/or on the second connecting member The contact area protrudes from the anti-slip structure, and the drop-proof glue is applied on the circumferential outer side wall of the anti-slip structure, when the first connecting member is inserted into the battery sleeve and/or the second connecting member is inserted into the atomizing sleeve, or Before the connector is inserted into the battery sleeve and before the second connector is inserted into the atomization sleeve, the glue is extruded to form a thermosetting plastic.
- thermosetting plastic is filled in the gap of the anti-slip structure, and the first connecting member and the battery sleeve are added.
- FIG. 1 is a cross-sectional view of a battery assembly according to a preferred embodiment of the present invention
- FIG. 2 is a schematic structural view of a first connecting member in the battery assembly provided by the first embodiment
- FIG. 3 is a schematic structural view of a first connecting member in the battery assembly provided by the second embodiment
- FIG. 4 is a schematic structural view of a second connecting member in the battery assembly provided by the third embodiment
- Figure 5 is a cross-sectional view of an atomizing assembly in accordance with a preferred embodiment of the present invention.
- a battery assembly As shown in FIG. 1, a battery assembly according to a preferred embodiment of the present invention is used in combination with an atomizing assembly to form a complete electronic cigarette.
- the battery assembly includes a battery cannula 10 and a first connector 20, wherein a first connector 20 is disposed at one end of the battery cannula 10 and is used to connect the atomizing assembly.
- the battery can 10 is cylindrical and the battery can 10 is made of plastic, metal or paper material.
- the inner side walls of the battery cannula 10 are all smooth to facilitate the fitting of other components within the battery cannula 10.
- the first connecting member 20 has a hollow cylindrical shape, and the first connecting member 20 is sleeved in the battery sleeve 10.
- the first connecting member 20 is opposite to the battery sleeve 10.
- the contact area is convexly provided with the anti-slip structure 30, and the circumferential outer side wall of the anti-slip structure 30 is coated with the anti-falling glue 40 for reinforcing the bond between the first connecting member 20 and the battery sleeve 10.
- the strength is to make the interference fit between the first connecting member 20 and the battery sleeve 10 more tight, increasing the friction between the first connecting member 20 and the battery sleeve 10, preventing the first connecting member 20 from the battery sleeve The tube 10 is detached.
- the anti-falling glue 40 is coated on the anti-slip structure 30 in whole or in part, and the anti-falling glue 40 is coated on the anti-slip structure 30 along the radial or axial direction of the first connecting member 20, that is, the anti-falling glue 40 can be coated. At any position of the anti-slip structure 30.
- the drop-resistant glue 40 is coated on the anti-slip structure 30 in the radial direction of the first connecting member 20, and the drop-resistant adhesive 40 coated on the anti-slip structure 30 forms a semi-circular structure.
- Drop-resistant glue 40 is a special engineering resin with very high chemical stability, acid and alkali resistance and other solvents, and no oxidative corrosion to metals.
- the drop-resistant glue 40 comprises two components, one is a microcapsule containing a curing accelerator, and the other is an adhesive, and the two components are used in combination to form a drop-resistant glue 40, wherein the microcapsules are crushed by being crushed.
- the curing accelerator is released and reacted with the adhesive to form a thermosetting plastic which is filled in the gap of the anti-slip structure 30 to increase the bonding strength between the battery can 10 and the first connecting member 20.
- the primer 40 containing the two components is coated on the anti-slip structure 30, and the first connector 20 and the battery sleeve 10 are inserted when the first connector 20 is inserted into the battery sleeve 10.
- the microcapsules in the anti-falling glue 40 are crushed and broken to release the curing accelerator, and react with the adhesive to form a thermosetting plastic which is filled in the gap of the anti-skid structure 30 and the battery.
- the inner side wall of the sleeve 10 enhances the bond strength between the first connector 20 and the battery cannula 10.
- the chemical composition of the primer 40 is known in the prior art and will not be described herein.
- the first connecting member 20 of the first embodiment of the present invention is generally hollow, and the anti-slip structure 30 is protruded from the outer side wall of the first connecting member 20 .
- the anti-slip structure 30 is a knurled structure extending along the axial direction of the first connecting member 20 and spaced apart.
- the knurling structure is a straight knurling, that is, the knurling structure is a plurality of protrusions spaced apart on the outer side wall of the first connecting member 20, and the plurality of bulgings are along the axis of the first connecting member 20. Extend and enclose a ring.
- the anti-falling glue 40 is applied along the radial direction of the anti-slip structure 30, and the anti-falling glue 40 forms a radial semicircle on the anti-skid structure 30, and when the first connecting member 20 is inserted into the battery sleeve 10, the anti-falling glue 40 reacts to generate
- the thermoset plastic is filled in the gap of the knurling so that the first connector 20 is tightly coupled to the battery can 10.
- a schematic structural view of a first connecting member 20 according to a second embodiment of the present invention is different from the first embodiment in that the knurling structure of the embodiment is a twill knurling, and the twill rolling
- the flower is substantially rhombic
- the plurality of prismatic twill knurls are spaced apart on the outer side wall of the first connecting member 20
- the anti-falling glue 40 is coated on the twill knurling structure
- the anti-falling glue 40 is on the anti-slip structure 30.
- a radial semicircle is formed.
- the knurled structure may also be a cross-web knurl.
- FIG. 4 a schematic structural view of a first connecting member 20 according to a third embodiment of the present invention is provided.
- the anti-slip structure 30 of the present embodiment is a thread disposed along a radial direction of the first connecting member 20, that is, the anti-slip structure 30 is disposed.
- a plurality of loops of end-to-end threads on the outer side wall of the first connector member 20 are applied to the threads, and the tape-resistant glue 40 forms a radial semicircle on the anti-slip structure 30.
- the thermosetting plastic formed by the drop-resistant adhesive 40 is filled in the gap of the thread, so that the first connecting member 20 is tightly coupled with the battery cannula 10.
- the anti-slip structure 30 may also be a groove disposed along the radial spacing of the first connecting member 20, and the anti-falling glue 40 is coated on the groove, when the first connecting member 20 is inserted into the battery sleeve.
- the thermosetting plastic formed by the drop-resistant glue 40 is filled in the gap of the groove, so that the first connecting member 20 is tightly coupled to the battery cannula 10.
- the anti-slip structure 30 is protruded from the area in contact with the battery sleeve 10 on the first connecting member 20, and the anti-falling glue 40 is applied on the circumferential outer side wall of the anti-slip structure 30.
- the tape-resistant glue 40 is pressed to form a thermosetting plastic which is filled in the gap of the anti-skid structure 30 and is enhanced.
- the utility model has the advantages of strong ability, and is not easy to fall off under high temperature conditions; and can realize automatic production of the anti-falling glue 40 sprayed on the anti-skid structure 30, thereby improving production efficiency; the thermosetting plastic formed by the extrusion of the anti-falling glue 40 is a solid glue. , will not overflow the outer surface of the battery cannula 10, so that the electronic cigarette appearance is beautiful.
- an atomizing assembly As shown in FIG. 5, an atomizing assembly according to a preferred embodiment of the present invention is used in combination with a battery assembly to form a complete electronic cigarette.
- the atomizing assembly includes an atomizing sleeve 50 and a second connecting member 60, wherein the second connecting member 60 is disposed at one end of the atomizing sleeve 50 and is used to connect the battery assembly.
- the atomizing sleeve 50 is cylindrical and the atomizing sleeve 50 is made of plastic, metal or paper material.
- the inner side walls of the atomizing sleeve 50 are all smooth to facilitate the fitting of other components within the atomizing sleeve 50.
- the second connector 60 is generally hollow cylindrical and includes a body portion 602 and an extension portion 604, wherein the body portion 602 is sleeved within the atomization sleeve 50 and the extension portion 604 extends beyond the atomization sleeve 50.
- An anti-slip structure 30 is protruded from a portion of the second connecting member 60 that is in contact with the atomizing sleeve 50. Specifically, the anti-slip structure 30 is disposed on the outer side wall of the body portion 602, and the outer side wall of the anti-slip structure 30 is coated on the outer side wall.
- the drop-resistant glue 40 is used to enhance the bonding strength between the second connecting member 60 and the atomizing sleeve 50 to make an interference fit between the second connecting member 60 and the atomizing sleeve 50. It is further tightened to prevent the second connecting member 60 from falling out of the atomizing sleeve 50.
- the anti-falling glue 40 is coated on the anti-slip structure 30 in whole or in part, and the anti-falling glue 40 is coated on the anti-skid structure 30 along the radial or axial direction of the second connecting member 60, that is, the anti-falling glue 40 can be coated. At any position of the anti-slip structure 30.
- the drop-resistant glue 40 is coated on the anti-slip structure 30 along the radial direction of the second connecting member 60, and the anti-falling glue 40 coated on the anti-slip structure 30 forms a semi-circular structure.
- Drop-resistant glue 40 is a special engineering resin with very high chemical stability, acid and alkali resistance and other solvents, and no oxidative corrosion to metals.
- the drop-resistant glue 40 contains two components, one is a microcapsule containing a curing accelerator, and the other is an adhesive, and the two components are used in combination to form the drag-resistant glue 40. Wherein the microcapsules are ruptured by extrusion, the curing accelerator is released and reacts with the adhesive to form a thermosetting plastic, and the thermosetting plastic is filled in the gap of the anti-skid structure 30 to make the atomization sleeve 50 and the second connecting member 60 The bonding strength is increased.
- the drop-resistant glue 40 containing the two components is coated on the anti-slip structure 30, and when the second connecting member 60 is inserted into the atomizing sleeve 50, the second connecting member 60 and the atomizing sleeve are The pressing action occurs between the tubes 50, or the anti-drop glue 40 is pressed by other tools before the second connecting member 60 is inserted into the atomizing sleeve 50, and the microcapsules in the anti-falling glue 40 are crushed and broken to release the curing accelerator.
- thermosetting plastic filled in the gap of the anti-skid structure 30 and the inner side wall of the atomizing sleeve 50, thereby enhancing the relationship between the second connecting member 60 and the atomizing sleeve 50. Bond strength.
- the anti-slip structure 30 is protruded in the middle of the outer side wall of the second connecting member 60, and the anti-slip structure 30 is a knurled structure extending along the axial direction of the second connecting member 60 and spaced apart.
- the knurling structure is a straight knurling, that is, the knurling structure is a plurality of protrusions spaced apart on the outer side wall of the second connecting member 60, and the plurality of protrusions extend along the axial direction of the second connecting member 60 and enclose a ring.
- the anti-falling glue 40 is applied along the radial direction of the anti-skid structure 30, and the anti-falling glue 40 forms a radial semicircle on the anti-slip structure 30, and when the second connecting member 60 is inserted into the atomizing sleeve 50, the anti-falling glue 40 reacts.
- the resulting thermoset plastic is filled in the gap of the knurling so that the second connector 60 is tightly coupled to the atomizing sleeve 50.
- the knurled structure is a twill knurl, and the twill knurl is substantially rhombic, the plurality of prismatic twill knurls are spaced apart on the outer side wall of the body portion 602, and the dipped rubber 40 is coated on The twill knurling structure and the drop-resistant glue 40 form a radial semicircle on the anti-slip structure 30. It will be appreciated that in other embodiments, the knurled structure may also be a cross-web knurl.
- the anti-slip structure 30 is a thread disposed along a radial direction of the body portion 602, that is, the anti-slip structure 30 is a plurality of loops of end-to-end threads disposed on the outer side wall of the body portion 602, and the anti-falling glue 40 is coated.
- the drop-resistant glue 40 forms a radial semicircle on the anti-slip structure 30.
- the anti-slip structure 30 can also be a groove disposed along the radial spacing of the second connecting member 60. Then, the anti-falling glue 40 is coated on the groove, and then the second connecting member 60 is inserted into the atomizing device. When the sleeve 50 is inside, the thermosetting plastic formed by the drop-resistant glue 40 is filled in the gap of the groove, so that the second connecting member 60 is tightly coupled with the atomizing sleeve 50.
- the anti-slip structure 30 is protruded from the area of the second connecting member 60 in contact with the atomizing sleeve 50, and the anti-falling glue 40 is coated on the circumferential outer side wall of the anti-slip structure 30.
- the drop-resistant adhesive 40 is pressed to form a thermosetting plastic which is filled in the gap of the anti-skid structure 30, so that the second connecting member 60 and the atomizing sleeve
- the 50 is closely matched, it is not easy to fall off, and the product quality is improved; and the temperature resistance of the glue-resistant glue 40 is strong, and it is not easy to fall off under high temperature conditions; and the automatic production of the glue-resistant glue 40 sprayed on the anti-skid structure 30 can be realized.
- the anti-falling glue 40 is a kind of solid glue, it will not overflow the outer surface of the atomizing sleeve 50, which can make the electronic cigarette look beautiful and avoid harm to the human body, and solve the problem that has been urgently solved for a long time.
- the invention also provides an electronic cigarette comprising an interconnected battery assembly and an atomizing assembly, the battery assembly comprising a battery sleeve 10, the atomizing assembly comprising an atomizing sleeve 50, and the battery sleeve 10 and the atomizing sleeve 50
- a first connecting member 20 and a second connecting member 60 are respectively disposed at corresponding connecting positions, and the first connecting member 20 is in contact with the atomizing sleeve 50 on the battery sleeve 10 and/or the second connecting member 60.
- the outer surface of the anti-slip structure 30 is coated with a non-slip structure 30 for reinforcing the bonding strength between the first connecting member 20 and the battery sleeve 10 and/or the second connecting member 60 and the atomizing sleeve 50. Resistance to glue 40.
- the anti-slip structure 30 may be protruded from the area of the first connecting member 20 that is in contact with the battery sleeve 10 or the anti-slip structure 30 may be protruded from the area of the second connecting member 60 that contacts the atomizing sleeve 50.
- the electronic cigarette of the present invention comprises the above-described battery assembly and/or atomizing assembly, so that the connection between the connecting member and the outer sleeve is made closer.
- Drop-resistant glue 40 is a special engineering resin with very high chemical stability, acid and alkali resistance and other solvents, and no oxidative corrosion to metals.
- the drop-resistant glue 40 contains two components, one is a microcapsule containing a curing accelerator, and the other is an adhesive, and the two components are used in combination to form the drag-resistant glue 40.
- the microcapsules are ruptured by extrusion to release the curing accelerator and react with the adhesive to form a thermosetting plastic.
- the thermosetting plastic is filled in the gap of the anti-skid structure 30, so that the bonding strength between the outer sleeve and the connecting member is increased.
- the anti-slip structure 30 of the present embodiment is a knurled structure extending along the axial direction of the first connecting member 20 and/or the second connecting member 60 and spaced apart.
- the anti-slip structure 30 may also be the groove or the thread described above, which will not be described herein.
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Abstract
一种电池组件、雾化组件及电子烟,其中电池组件用于与雾化组件组合形成电子烟。电池组件包括电池套管(10)。电池套管(10)的一端连接有用于与雾化组件相连的第一连接件(20)。第一连接件(20)上与电池套管(10)相接触的区域凸设有防滑结构(30),防滑结构(30)的周向外侧壁上涂覆有耐落胶(40),用于增强第一连接件(20)与电池套管(10)之间的结合强度。该结构增加了第一连接件(20)与电池套管(10)之间的摩擦力,使第一连接件(20)与电池套管(10)之间紧密配合。另外,由于挤压形成的热固性塑料是一种固态胶,不会溢出电池套管(10)外表面,可使电子烟外观美观,以及避免对人体造成伤害。
Description
本发明涉及香烟替代品技术领域,更具体地说,涉及一种电池组件、雾化 组件及电子烟。
吸烟有害健康,随着人们健康意识的提高,越来越多的人知道吸烟的危害性,吸烟不单单对吸烟者本身有着身体的伤害,而且对周围的人也有伤害。如今,研制出一种电子烟,其外形和普通香烟相同,抽吸时可产生烟雾,但不含焦油等有害物质,比普通香烟更健康。
电子烟包括相互螺纹连接的电池组件及雾化组件,且电池组件包括电池套管及用于与雾化组件电连接的第一连接件,雾化组件包括雾化套管及用于与电池组件电连接的第二连接件。由于电子烟在形状、尺寸及重量上要求最大限度地模仿真烟,以使吸烟者易于接受,因此,所述的电池套管及雾化套管要求较薄,而由于所述电池套管及雾化套管较薄,因而电池套管与所述第一连接件及雾化套管与第二连接件之间不能用常用的螺纹连接结构。
为了在不使用螺纹连接结构也能实现连接可靠,现有的电子烟中,第一连接件与电池套管的内壁之间通过胶水粘合,第二连接件与雾化套管的内壁之间也通过胶水粘合,且组装时一般均是通过液态胶水进行粘合。采用这种胶水粘合的方式连接,胶水容易外溢出电池套管或雾化套管,导致电子烟外表面不干净,而现有的所述胶水中通常含有对人体有害的二氯乙烷等物质,因此需要增加清洁电子烟外表面的胶水工艺,浪费工时,生产效率低。
本发明要解决的技术问题在于,针对现有技术的上述连接件与外套管采用胶水粘合,工艺复杂的缺陷,提供一种连接牢固及生产工艺简单的电池组件、雾化组件及电子烟。
本发明解决其技术问题所采用的技术方案是:构造
一种电池组件,用于与雾化组件组合形成电子烟,所述电池组件包括电池套管,所述电池套管的一端连接有用于与所述雾化组件相连的第一连接件,所述第一连接件上与所述电池套管相接触的区域凸设有防滑结构,所述防滑结构的
周向外侧壁上涂覆有用于增强所述第一连接件与所述电池套管之间结合强度的耐落胶。
在本发明所述的电池组件中,所述耐落胶全部或部分地涂覆在所述 防滑结构 上。
在本发明所述的电池组件中,所述耐落胶沿所述 第一连接件的 轴向或径向涂覆在所述 防滑结构 上。
在本发明所述的电池组件中,
所述耐落胶包括含有固化促进剂的微胶囊和胶黏剂,组装时所述微胶囊受挤压破裂使固化促进剂释放出来并与所述胶黏剂反应,形成填充在所述防滑结构的间隙内的热固性塑料。
在本发明所述的电池组件中,所述防滑结构为沿所述第一连接件的轴向延伸且间隔设置的滚花结构。
在本发明所述的电池组件中, 所述滚花结构为直纹滚花、斜纹滚花或交叉网纹滚花。
在本发明所述的电池组件中, 所述防滑结构为沿所述第一连接件的径向间隔设置的凹槽。
在本发明所述的电池组件中, 所述防滑结构为沿所述第一连接件的径向设置的螺纹。
本发明还提供了一种雾化组件,用于与电池组件组合形成电子烟,所述雾化组件包括雾化套管,所述雾化套管的一端连接有用于与所述电池组件相连的第二连接件,所述第二连接件上与所述雾化套管相接触的区域凸设有防滑结构,所述防滑结构的周向外侧壁上环绕有用于增强所述第二连接件与所述雾化套管之间结合强度的耐落胶。
在本发明所述的雾化组件中,所述耐落胶全部或部分地环绕在所述 防滑结构 上。
在本发明所述的雾化组件中,所述耐落胶轴向或径向地环绕在所述 防滑结构 上。
在本发明所述的雾化组件中,
所述耐落胶包括含有固化促进剂的微胶囊和胶黏剂,组装时所述微胶囊受挤压破裂使固化促进剂释放出来并与所述胶黏剂反应,形成填充在所述防滑结构的间隙内的热固性塑料。
在本发明所述的雾化组件中,所述第二连接件包括套设在所述雾化套管内的本体部及延伸至所述雾化套管外的延伸部,所述防滑结构设置在所述本体部的外侧壁上。
在本发明所述的雾化组件中,所述防滑结构为沿所述第二连接件的轴向延伸且间隔设置的滚花结构。
在本发明所述的雾化组件中,所述滚花结构为直纹滚花、斜纹滚花或交叉网纹滚花。
在本发明所述的雾化组件中,所述防滑结构为沿所述第二连接件的径向间隔设置的凹槽。
在本发明所述的雾化组件中,所述防滑结构为沿所述第二连接件的径向设置的螺纹。
本发明还提供了一种电子烟,包括具有雾化套管的雾化组件和具有电池套管的电池组件,所述电池套管和雾化套管相对应连接位置处分别设置有第一连接件和第二连接件,所述第一连接件上与所述电池套管和/或所述第二连接件上与所述雾化套管相接触的区域凸设有防滑结构,所述防滑结构的周向外侧壁上涂覆有用于增强所述第一连接件与所述电池套管和/或所述第二连接件与所述雾化套管之间结合强度的耐落胶。
在本发明所述的电子烟中,所述耐落胶包括含有固化促进剂的微胶囊和胶黏剂,组装时所述微胶囊受挤压破裂使固化促进剂释放出来并与所述胶黏剂反应,形成填充在所述防滑结构的间隙内的热固性塑料。
在本发明所述的电子烟中,所述防滑结构为沿所述第一连接件和/或所述第二连接件的轴向延伸且间隔设置的滚花结构。
实施本发明的电池组件、雾化组件及电子烟,具有以下有益效果:通过在第一连接件上与电池套管相接触的区域和/或所述第二连接件上与雾化套管相接触的区域凸设防滑结构,并在防滑结构的周向外侧壁上涂覆耐落胶,则当第一连接件插入电池套管内和/或第二连接件插入雾化套管内时,或第一连接件插入电池套管之前和第二连接件插入雾化套管内之前,耐落胶受挤压形成热固性塑料,该热固性塑料填充在防滑结构的间隙内,增加了第一连接件与电池套管之间的摩擦力,从而使第一连接件与电池套管和/或所述第二连接件与雾化套管之间紧密配合,不容易脱落,提升产品品质;且耐落胶的耐温能力强,在高温条件下也不容易脱落;且可实现耐落胶喷涂在防滑结构上的自动化生产,提高生产效率;由于挤压形成的所述热固性塑料是一种固态胶,不会溢出电池套管外表面,可使电子烟外观美观及避免对人体造成伤害,解决了长期以来亟待解决的问题。
下面将结合附图及实施例对本发明作进一步说明,附图中:
图 1 是本发明较佳实施例提供的电池组件的剖视图;
图 2 是第一实施例提供的电池组件中第一连接件的结构示意图;
图 3 是第二实施例提供的电池组件中第一连接件的结构示意图;
图4是第三实施例提供的电池组件中第二连接件的结构示意图;
图5是本发明较佳实施例提供的雾化组件的剖视图。
为了对本发明的技术特征、目的和效果有更加清楚的理解,现对照附图详细说明本发明的具体实施方式。
如图1所示,本发明较佳实施例提供的电池组件,用于与雾化组件组合形成完整的电子烟。电池组件包括电池套管10和第一连接件20,其中第一连接件20设置在电池套管10的一端并用于连接雾化组件。
电池套管10为圆筒状,且电池套管10由塑胶、金属或纸质材料制成。本实施例中,电池套管10的内侧壁均是光滑的,以便于其它部件套在电池套管10内。
如图2所示,第一连接件20为中空的圆筒状,且第一连接件20套设在电池套管10内,本实施例中,第一连接件20上与电池套管10相接触的区域凸设有防滑结构30,且该防滑结构30的周向外侧壁上涂覆有耐落胶40,耐落胶40用于增强第一连接件20与电池套管10之间的结合强度,以使第一连接件20与电池套管10之间的过盈配合更加紧固,增加第一连接件20与电池套管10之间的摩擦力,防止第一连接件20从电池套管10内脱落。
耐落胶40全部或部分地涂覆在防滑结构30上,且耐落胶40沿第一连接件20的径向或轴向地涂覆在防滑结构30上,即耐落胶40可以涂覆在防滑结构30的任何位置处。本实施例中,耐落胶40沿第一连接件20的径向涂覆在防滑结构30上,且涂覆在防滑结构30上的耐落胶40形成半圆形的结构。
耐落胶40是一种特殊的工程树脂,它具有非常高的化学稳定性,耐酸碱及其它溶剂,对金属也不会产生氧化腐蚀。耐落胶40包含两种成分,一种是含有固化促进剂的微胶囊,另一种是胶黏剂,且这两种组分混合使用形成耐落胶40,其中微胶囊受挤压会破裂使固化促进剂释放出来并与胶黏剂反应形成热固性塑料,该热固性塑料填充在防滑结构30的间隙内,使电池套管10与第一连接件20之间的结合强度增大。本实施例中,将含有该两种组分的耐落胶40涂覆在防滑结构30上,则在第一连接件20插入电池套管10内时,第一连接件20与电池套管10之间发生挤压作用,则耐落胶40中的微胶囊受挤压破裂使固化促进剂释放出来,并与胶黏剂反应生成热固性塑料,该热固性塑料填充在防滑结构30的间隙内以及电池套管10的内侧壁上,从而增强第一连接件20与电池套管10之间的结合强度。其中,所述耐落胶40的化学成分为现有技术,在此不再赘述。
如图2所示,本发明第一实施例提供的第一连接件20的结构示意图,第一连接件20大体为中空的圆筒状,防滑结构30凸设在第一连接件20的外侧壁的中间,且防滑结构30为沿第一连接件20的轴向延伸并间隔设置的滚花结构。本实施例中,滚花结构为直纹滚花,即滚花结构为间隔设置在第一连接件20的外侧壁上的若干个凸起,该若干个凸起沿第一连接件20的轴向延伸并围成一圆环。耐落胶40沿防滑结构30的径向涂覆,且耐落胶40在防滑结构30上形成径向的半圆,则当第一连接件20插入电池套管10时,耐落胶40反应生成的热固性塑料填充在直纹滚花的间隙内,从而使第一连接件20与电池套管10紧密结合。
如图3所示,本发明第二实施例提供的第一连接件20的结构示意图,其与实施例一的不同之处在于:本实施例的滚花结构为斜纹滚花,且该斜纹滚花大致为菱形,该若干个棱形的斜纹滚花间隔设置在第一连接件20的外侧壁上,耐落胶40涂覆在斜纹滚花结构上,且耐落胶40在防滑结构30上形成径向的半圆。可以理解,在其它实施例中,滚花结构还可以为交叉网纹滚花。
如图4所示,本发明第三实施例提供的第一连接件20的结构示意图,本实施例的防滑结构30为沿第一连接件20的径向设置的螺纹,即防滑结构30为设置在第一连接件20的外侧壁上的若干圈首尾相连的螺纹,耐落胶40涂覆在螺纹上,且耐落胶40在防滑结构30上形成径向的半圆。则当第一连接件20插入电池套管10内时,耐落胶40形成的热固性塑料填充在螺纹的间隙内,从而使第一连接件20与电池套管10紧密结合。
在其它实施例中,防滑结构30也可以为沿第一连接件20的径向间隔设置的凹槽,则耐落胶40涂覆在该凹槽上,则当第一连接件20插入电池套管10内时,耐落胶40形成的热固性塑料填充在凹槽的间隙内,从而使第一连接件20与电池套管10紧密结合。
本发明的电池组件,通过在第一连接件20上与电池套管10相接触的区域凸设防滑结构30,并在防滑结构30的周向外侧壁上涂覆耐落胶40,则当第一连接件20插入电池套管10内时或在第一连接件20插入电池套管10之前,使耐落胶40受挤压形成热固性塑料,该热固性塑料填充在防滑结构30的间隙内,增强了第一连接件20与电池套管10之间的摩擦力,从而使第一连接件20与电池套管10之间紧密配合,不容易脱落,提升产品品质;且耐落胶40的耐温能力强,在高温条件下也不容易脱落;且可实现耐落胶40喷涂在防滑结构30上的自动化生产,提高生产效率;由于耐落胶40受挤压形成的热固性塑料是一种固态胶,不会溢出电池套管10外表面,可使电子烟外观美观。
如图5所示,本发明较佳实施例提供的雾化组件,用于与电池组件组合形成完整的电子烟。雾化组件包括雾化套管50和第二连接件60,其中第二连接件60设置在雾化套管50的一端并用于连接电池组件。
雾化套管50为圆筒状,且雾化套管50由塑胶、金属或纸质材料制成。本实施例中,雾化套管50的内侧壁均是光滑的,以便于其它部件套在雾化套管50内。
第二连接件60大体为中空的圆筒状,包括本体部602和延伸部604,其中,本体部602套设在雾化套管50内,延伸部604延伸至雾化套管50外。第二连接件60上与雾化套管50相接触的区域凸设有防滑结构30,具体地防滑结构30设置在本体部602的外侧壁上,且该防滑结构30的周向外侧壁上涂覆有耐落胶40,耐落胶40用于增强第二连接件60与雾化套管50之间的结合强度,以使第二连接件60与雾化套管50之间的过盈配合更加紧固,防止第二连接件60从雾化套管50内脱落。
耐落胶40全部或部分地涂覆在防滑结构30上,且耐落胶40沿第二连接件60的径向或轴向地涂覆在防滑结构30上,即耐落胶40可以涂覆在防滑结构30的任何位置处。本实施例中,耐落胶40沿第二连接件60的径向涂覆在防滑结构30上,且涂覆在防滑结构30上的耐落胶40形成半圆形的结构。
耐落胶40是一种特殊的工程树脂,它具有非常高的化学稳定性,耐酸碱及其它溶剂,对金属也不会产生氧化腐蚀。耐落胶40包含两种成分,一种是含有固化促进剂的微胶囊,另一种是胶黏剂,且这两种组分混合使用形成耐落胶40。其中微胶囊受挤压会破裂使固化促进剂释放出来并与胶黏剂反应形成热固性塑料,该热固性塑料填充在防滑结构30的间隙内,使雾化套管50与第二连接件60之间的结合强度增大。本实施例中,将含有该两种组分的耐落胶40涂覆在防滑结构30上,则在第二连接件60插入雾化套管50内时,第二连接件60与雾化套管50之间发生挤压作用,或者第二连接件60插入雾化套管50之前通过其它工具挤压耐落胶40,则耐落胶40中的微胶囊受挤压破裂使固化促进剂释放出来,并与胶黏剂反应生成热固性塑料,该热固性塑料填充在防滑结构30的间隙内以及雾化套管50的内侧壁上,从而增强第二连接件60与雾化套管50之间的结合强度。
防滑结构30凸设在第二连接件60的外侧壁的中间,且防滑结构30为沿第二连接件60的轴向延伸并间隔设置的滚花结构。滚花结构为直纹滚花,即滚花结构为间隔设置在第二连接件60的外侧壁上的若干个凸起,该若干个凸起沿第二连接件60的轴向延伸并围成一圆环。耐落胶40沿防滑结构30的径向涂覆,且耐落胶40在防滑结构30上形成径向的半圆,则当第二连接件60插入雾化套管50时,耐落胶40反应生成的热固性塑料填充在直纹滚花的间隙内,从而使第二连接件60与雾化套管50紧密结合。
在其它实施例中,滚花结构为斜纹滚花,且该斜纹滚花大致为菱形,该若干个棱形的斜纹滚花间隔设置在本体部602的外侧壁上,耐落胶40涂覆在斜纹滚花结构上,且耐落胶40在防滑结构30上形成径向的半圆。可以理解,在其它实施例中,滚花结构还可以为交叉网纹滚花。
在另一实施例中,防滑结构30为沿本体部602的径向设置的螺纹,即防滑结构30为设置在本体部602的外侧壁上的若干圈首尾相连的螺纹,耐落胶40涂覆在螺纹上,且耐落胶40在防滑结构30上形成径向的半圆。则当第二连接件60插入雾化套管50内时,耐落胶40形成的热固性塑料填充在螺纹的间隙内,从而使第二连接件60与雾化套管50紧密结合。
在其它实施例中,防滑结构30也可以为沿第二连接件60的径向间隔设置的凹槽,则耐落胶40涂覆在该凹槽上,则当第二连接件60插入雾化套管50内时,耐落胶40形成的热固性塑料填充在凹槽的间隙内,从而使第二连接件60与雾化套管50紧密结合。
本发明的雾化组件,通过在第二连接件60上与雾化套管50相接触的区域凸设防滑结构30,并在防滑结构30的周向外侧壁上涂覆耐落胶40,则当第二连接件60插入雾化套管50内时,耐落胶40受挤压形成热固性塑料,该热固性塑料填充在防滑结构30的间隙内,从而使第二连接件60与雾化套管50之间紧密配合,不容易脱落,提升产品品质;且耐落胶40的耐温能力强,在高温条件下也不容易脱落;且可实现耐落胶40喷涂在防滑结构30上的自动化生产,提高生产效率;由于耐落胶40是一种固态胶,不会溢出雾化套管50外表面,可使电子烟外观美观及避免对人体造成伤害,解决了长期以来亟待解决的问题。
本发明还提供了一种电子烟,包括相互连接的电池组件和雾化组件,电池组件包括电池套管10,雾化组件包括雾化套管50,且电池套管10和雾化套管50相对应的连接位置处分别设置有第一连接件20和第二连接件60,第一连接件20上与电池套管10和/或第二连接件60上与雾化套管50相接触的区域凸设有防滑结构30,防滑结构30的周向外侧壁上涂覆有用于增强第一连接件20与电池套管10和/或第二连接件60与雾化套管50之间结合强度的耐落胶40。可以在第一连接件20上与电池套管10相接触的区域凸设防滑结构30或在第二连接件60上与雾化套管50相接触的区域凸设防滑结构30,也可以同时在第一连接件20上与电池套管10相接触的区域和第二连接件60上与雾化套管50相接触的区域凸设防滑结构30,即在本发明的电子烟中,至少设置一个防滑结构30。
本发明的电子烟中,包含上述所述的电池组件和/或雾化组件,从而使连接件与外套管的连接更加紧密。耐落胶40是一种特殊的工程树脂,它具有非常高的化学稳定性,耐酸碱及其它溶剂,对金属也不会产生氧化腐蚀。耐落胶40包含两种成分,一种是含有固化促进剂的微胶囊,另一种是胶黏剂,且这两种组分混合使用形成耐落胶40。其中微胶囊受挤压会破裂使固化促进剂释放出来并与胶黏剂反应形成热固性塑料,该热固性塑料填充在防滑结构30的间隙内,使外套管与连接件之间的结合强度增大。
本实施例的防滑结构30为沿第一连接件20和/或第二连接件60的轴向延伸且间隔设置的滚花结构。
关于滚花结构的具体结构,参见上述关于对雾化组以及电池组件部分的防滑结构的描述,当然防滑结构 30 也可以为上述所述的凹槽或螺纹,这里不再赘述。
上面结合附图对本发明的实施例进行了描述,但是本发明并不局限于上述的具体实施方式,上述的具体实施方式仅仅是示意性的,而不是限制性的,本领域的普通技术人员在本发明的启示下,在不脱离本发明宗旨和权利要求所保护的范围情况下,还可做出很多形式,这些均属于本发明的保护之内。
Claims (20)
- 一种电池组件,用于与雾化组件组合形成电子烟,所述电池组件包括电池套管(10),所述电池套管(10)的一端连接有用于与所述雾化组件相连的第一连接件(20),其特征在于,所述第一连接件(20)上与所述电池套管(10)相接触的区域凸设有防滑结构(30),所述防滑结构(30)的 周向外侧壁上涂覆有用于增强所述第一连接件( 20 )与所述电池套管( 10 )之间结合强度的耐落胶( 40 )。
- 根据权利要求 1 所述的电池组件,其特征在于,所述耐落胶( 40 )全部或部分地涂覆在所述 防滑结构(30) 上。
- 根据权利要求 1 所述的电池组件,其特征在于,所述耐落胶( 40 )沿所述 第一连接件(20)的 轴向或径向涂覆在所述 防滑结构(30) 上。
- 根据权利要求1所述的电池组件,其特征在于,所述耐落胶(40)包括含有固化促进剂的微胶囊和胶黏剂,组装时所述微胶囊受挤压破裂使固化促进剂释放出来并与所述胶黏剂反应,形成填充在所述防滑结构(30)的间隙内的热固性塑料。
- 根据权利要求1所述的电池组件,其特征在于,所述防滑结构(30)为沿所述第一连接件(20)的轴向延伸且间隔设置的滚花结构。
- 根据权利要求5所述的电池组件,其特征在于,所述滚花结构为直纹滚花、斜纹滚花或交叉网纹滚花。
- 根据权利要求1所述的电池组件,其特征在于,所述防滑结构(30)为沿所述第一连接件(20)的径向间隔设置的凹槽。
- 根据权利要求1所述的电池组件,其特征在于,所述防滑结构(30)为沿所述第一连接件(20)的径向设置的螺纹。
- 一种雾化组件,用于与电池组件组合形成电子烟,所述雾化组件包括雾化套管(50),所述雾化套管(50)的一端连接有用于与所述电池组件相连的第二连接件(60),其特征在于,所述第二连接件(60)上与所述雾化套管(60)相接触的区域凸设有防滑结构(30),所述防滑结构(30)的周向外侧壁上环绕有用于增强所述第二连接件(20)与所述雾化套管(50)之间结合强度的耐落胶(40)。
- 根据权利要求 9 所述的雾化组件,其特征在于,所述耐落胶( 40 )全部或部分地环绕在所述 防滑结构(30) 上。
- 根据权利要求 9 所述的雾化组件,其特征在于,所述耐落胶( 40 )轴向或径向地环绕在所述 防滑结构(30) 上。
- 根据权利要求9所述的雾化组件,其特征在于,所述耐落胶(40)包括含有固化促进剂的微胶囊和胶黏剂,组装时所述微胶囊受挤压破裂使固化促进剂释放出来并与所述胶黏剂反应,形成填充在所述防滑结构(30)的间隙内的热固性塑料。
- 根据权利要求9所述的雾化组件,其特征在于,所述第二连接件(60)包括套设在所述雾化套管(50)内的本体部(602)及延伸至所述雾化套管(50)外的延伸部(604),所述防滑结构(30)设置在所述本体部(602)的外侧壁上。
- 根据权利要求9所述的雾化组件,其特征在于,所述防滑结构(30)为沿所述第二连接件(60)的轴向延伸且间隔设置的滚花结构。
- 根据权利要求14所述的电池组件,其特征在于,所述滚花结构为直纹滚花、斜纹滚花或交叉网纹滚花。
- 根据权利要求9所述的电池组件,其特征在于,所述防滑结构(30)为沿所述第二连接件(60)的径向间隔设置的凹槽。
- 根据权利要求9所述的电池组件,其特征在于,所述防滑结构(30)为沿所述第二连接件(60)的径向设置的螺纹。
- 一种电子烟,包括具有雾化套管(50)的雾化组件和具有电池套管(10)的电池组件,其特征在于,所述电池套管(10)和雾化套管(50)相对应连接位置处分别设置有第一连接件(20)和第二连接件(60),所述第一连接件(20)上与所述电池套管(10)和/或所述第二连接件(60)上与所述雾化套管(50)相接触的区域凸设有防滑结构(30),所述防滑结构(30)的周向外侧壁上涂覆有用于增强所述第一连接件(20)与所述电池套管(10)和/或所述第二连接件(60)与所述雾化套管(50)之间结合强度的耐落胶(40)。
- 根据权利要求18所述的电子烟,其特征在于,所述耐落胶(40)包括含有固化促进剂的微胶囊和胶黏剂,组装时所述微胶囊受挤压破裂使固化促进剂释放出来并与所述胶黏剂反应,形成填充在所述防滑结构(30)的间隙内的热固性塑料。
- 根据权利要求19所述的电子烟,其特征在于,所述防滑结构(30)为沿所述第一连接件(20)和/或所述第二连接件(60)的轴向延伸且间隔设置的滚花结构。
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