WO2022042392A1 - 一种新型加油密封装置及气溶胶产生装置 - Google Patents

一种新型加油密封装置及气溶胶产生装置 Download PDF

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Publication number
WO2022042392A1
WO2022042392A1 PCT/CN2021/113234 CN2021113234W WO2022042392A1 WO 2022042392 A1 WO2022042392 A1 WO 2022042392A1 CN 2021113234 W CN2021113234 W CN 2021113234W WO 2022042392 A1 WO2022042392 A1 WO 2022042392A1
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WO
WIPO (PCT)
Prior art keywords
atomizer
suction nozzle
oil
oil tank
sealing
Prior art date
Application number
PCT/CN2021/113234
Other languages
English (en)
French (fr)
Inventor
黄欣荣
杨勇
赵贯云
Original Assignee
深圳市吉迩科技有限公司
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Filing date
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Application filed by 深圳市吉迩科技有限公司 filed Critical 深圳市吉迩科技有限公司
Publication of WO2022042392A1 publication Critical patent/WO2022042392A1/zh

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    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/10Devices using liquid inhalable precursors
    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/40Constructional details, e.g. connection of cartridges and battery parts
    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/40Constructional details, e.g. connection of cartridges and battery parts
    • A24F40/42Cartridges or containers for inhalable precursors
    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/85Maintenance, e.g. cleaning

Definitions

  • the present application relates to the field of aerosol generating devices, in particular to a novel oil filling and sealing device and an aerosol generating device.
  • the aerosol generating device is a portable device that replaces conventional cigarettes. It is usually plugged into the host by a pod to heat the e-liquid in the pod to form smoke, so as to achieve the effect of smoking.
  • Some of the existing aerosol generating devices generate aerosol by heating e-liquid. When the e-liquid is used up, the user needs to replenish e-liquid. device, the use cost is high.
  • the present application provides a novel refueling sealing device and an aerosol generating device.
  • a novel oil filling and sealing device comprising a suction nozzle, an atomizer and an oil filling silicone, the suction nozzle is covered with one end of the atomizer, and the oil filling silicone It is positioned between the atomizer and the suction nozzle;
  • the atomizer is provided with an oil tank, and the end of the atomizer close to the suction nozzle is provided with an oil filling port, and the oil filling port is connected to the oil
  • the oil-filling silica gel includes a sealing part and a fixing part, the sealing part is matched with the oil-filling port, the sealing part is covered with the oil-filling port, and the suction nozzle is pressed to fix the fixing part;
  • the sealing part is connected with the fixing part, and the sealing part can be turned relative to the fixing part;
  • the suction nozzle is slidably connected with the atomizer, and the suction nozzle can be close
  • an oil tank cover is provided at one end of the atomizer close to the suction nozzle, and the oil-filling silica gel is laid on the end of the oil tank cover facing away from the atomizer.
  • the side of the oil tank cover facing away from the atomizer is provided with raised positioning hooks, the number of the positioning hooks is two, and the two positioning hooks are arranged oppositely;
  • the suction nozzle is close to the One end of the atomizer is provided with a positioning plate, the number of the positioning plates is two, and the two positioning plates are arranged oppositely; when the suction nozzle is covered with the atomizer, the positioning plates are fastened together. is fixed on the positioning hook; the positioning plate can move along the extending direction of the positioning hook.
  • a raised rotating shaft is provided on the side of the oil tank cover facing away from the atomizer, and the rotating shaft is positioned on the edge of the surface of the atomizer; the suction nozzle is rotatably connected with the rotating shaft, so The suction nozzle is rotated relative to the atomizer based on the rotating shaft.
  • the oil tank cover is further provided with limit protrusions, and the limit protrusions and the rotating shaft are respectively arranged on opposite sides of the surface of the oil tank cover; the limit protrusions are hemispherical protrusions structure; the suction nozzle is provided with a limit groove matching the limit protrusion at the position corresponding to the limit protrusion, when the suction nozzle is covered with the atomizer, the limit protrusion placed in the limiting groove.
  • a first magnetic member is provided on the side of the oil tank cover away from the atomizer, the first magnetic member is a strip-shaped magnetic member, and the length of the first magnetic member is the same as the length of the oil tank cover. The lengths are the same; the surface of the suction nozzle close to the atomizer is provided with a second magnetic piece, and the first magnetic piece is magnetically connected with the second magnetic piece.
  • the sealing portion is in an interference fit with the oil filling port; and a handle extends outward from the sealing portion.
  • the oil filling port is provided with a step-like blocking member, and the blocking member is a silica gel blocking member; the diameter of the blocking member gradually decreases from the suction nozzle to the atomizer.
  • the atomizer is provided with a baffle on the side corresponding to the oil filling port, and the suction nozzle is pressed against the baffle.
  • the application also provides an aerosol generating device, which includes a new type of oil filling and sealing device;
  • the new type of oil filling and sealing device includes a suction nozzle, an atomizer and oil filling silica gel, and the suction nozzle is covered with one end of the atomizer,
  • the oil-filling silica gel is positioned between the atomizer and the suction nozzle;
  • the atomizer is provided with an oil tank, and one end of the atomizer near the suction nozzle is provided with an oil-filling port, the oil-filling port communicated with the oil tank;
  • the oil-filling silica gel includes a sealing part and a fixing part, the sealing part is matched with the oil-filling port, the sealing part is covered with the oil-filling port, and the suction nozzle is pressed and fixed to the oil-filling port.
  • the sealing part is connected with the fixing part, and the sealing part can be turned over relative to the fixing part;
  • the suction nozzle is slidably connected with the atomizer, and the suction nozzle can be relative to the atomizer The surface of the nebulizer is moved closer or further away to cover or open the surface of the nebulizer close to the nozzle.
  • an oil tank cover is provided at one end of the atomizer close to the suction nozzle, and the oil-filling silica gel is laid on the end of the oil tank cover facing away from the atomizer.
  • the side of the oil tank cover facing away from the atomizer is provided with raised positioning hooks, the number of the positioning hooks is two, and the two positioning hooks are arranged oppositely;
  • the suction nozzle is close to the One end of the atomizer is provided with a positioning plate, the number of the positioning plates is two, and the two positioning plates are arranged oppositely; when the suction nozzle is covered with the atomizer, the positioning plates are fastened together. is fixed on the positioning hook; the positioning plate can move along the extending direction of the positioning hook.
  • a raised rotating shaft is provided on the side of the oil tank cover facing away from the atomizer, and the rotating shaft is positioned at the edge of the surface of the atomizer; the suction nozzle is rotatably connected to the rotating shaft, so The suction nozzle is rotated relative to the atomizer based on the rotating shaft.
  • the oil tank cover is further provided with limit protrusions, and the limit protrusions and the rotating shaft are respectively arranged on opposite sides of the surface of the oil tank cover; the limit protrusions are hemispherical protrusions structure; the suction nozzle is provided with a limit groove matching the limit protrusion at the position corresponding to the limit protrusion, when the suction nozzle is covered with the atomizer, the limit protrusion placed in the limiting groove.
  • a first magnetic member is provided on the side of the oil tank cover away from the atomizer, the first magnetic member is a strip-shaped magnetic member, and the length of the first magnetic member is the same as the length of the oil tank cover. The lengths are the same; the surface of the suction nozzle close to the atomizer is provided with a second magnetic piece, and the first magnetic piece is magnetically connected with the second magnetic piece.
  • the sealing portion is in an interference fit with the oil filling port; and a handle extends outward from the sealing portion.
  • the oil filling port is provided with a step-like blocking member, and the blocking member is a silica gel blocking member; the diameter of the blocking member gradually decreases from the suction nozzle to the atomizer.
  • the atomizer is provided with a baffle on the side corresponding to the oil filling port, and the suction nozzle is pressed against the baffle.
  • the novel fueling sealing device and aerosol generating device provided by the present application have the following advantages:
  • the oil-filling silica gel is positioned between the atomizer and the suction nozzle, so that the user can seal the oil tank with the oil-filling silica gel when using it to avoid oil leakage in the oil tank.
  • the user can use the sliding connection between the suction nozzle and the atomizer to transfer the suction nozzle and open the sealing part, which is convenient for the user to refuel the oil tank through an external refueling device, avoiding one-time use.
  • the waste problem caused by the need to discard the atomizing equipment reduces the use cost of the product.
  • the sealing part is closed again, and then the suction nozzle is moved and reset, that is, the reset suction nozzle is pressed against the sealing part, so that when the user uses the device, the suction nozzle is further fixed and pressed.
  • the sealing part prevents the sealing part from being exposed, improves the covering stability of the sealing part, and further avoids the problem of oil leakage of the oil tank.
  • the positioning plate can move along the extending direction of the positioning hook, so that the suction nozzle is positioned on the positioning hook.
  • the positioning plate can move on the surface of the attached atomizer based on the direction of the positioning hook, so as to expose the sealing part to facilitate the user to refuel. It is fixed by the positioning hook, and there is no need to disassemble the suction nozzle as a whole, which is convenient for users to use. After refueling, just push the nozzle back in the opposite direction, which is convenient and quick, and the user can operate it with one hand, improving the user experience.
  • the rotating shaft By setting the rotating shaft, the rotating shaft is positioned on one of the diagonal corners of the oil tank cover, and the rotating shaft is connected to the suction nozzle, so that the suction nozzle can rotate relative to the oil tank cover to open the mist
  • the atomizer exposes the oil-filled silicone, which simplifies the connection structure between the nozzle and the atomizer and reduces the production cost of the product.
  • the use of the product is improved by the method of turning to open, and the user can also open the product through one-handed operation, which is convenient for the user to operate.
  • the limit protrusion and the limit groove By setting the limit protrusion and the limit groove, when the suction nozzle moves relative to the atomizer and covers the surface of the atomizer, the limit The positioning groove is moved to the position of the limiting protrusion, so that the limiting protrusion is placed in the limiting groove, that is, when the suction nozzle is moved and reset to completely cover one end of the atomizer, it can pass through the
  • the limiting function of the limiting protrusion is fixed at the current position, which improves the fixing stability of the suction nozzle during use by the user, avoids accidental movement of the suction nozzle, and improves the user experience.
  • the limiting groove can be slid out of the limiting protrusion through the arc structure of the hemispherical surface after the user exerts force. Can.
  • the second magnetic member can be attached and moved on the surface of the first magnetic member, that is, the suction nozzle is based on the surface of the second magnetic member.
  • the suction nozzle can move relative to the atomizer to open or close the surface on one side of the atomizer, so as to expose or cover the oil-filled silica gel.
  • the user can directly disassemble the lower suction nozzle, which is convenient for the user to disassemble based on the function of the magnetic suction connection.
  • the sealing part and the oil filling port have an interference fit, so that the sealing part can tightly cover the oil filling port based on the silicone material, so as to improve the sealing effect and avoid oil leakage. at the same time.
  • the sealing portion has a handle extending outward, which is convenient for the user to pick up the sealing portion.
  • the oil filling port is provided with a step-like blocking member, the blocking member is a silicone blocking member, and the diameter of the blocking member gradually decreases from the suction nozzle to the direction of the atomizer, so that the blocking member blocks
  • the oil filling port avoids the problem of a large amount of oil leakage caused by the user's shaking or falling during the refueling process, and also reduces the risk of oil leakage during use.
  • the blocker made of silicone allows the external oil filling equipment to insert the blocker through the oil filling pipe port when refueling the oil filling port, which further improves the sealing performance of the oil filling port during the oil filling process, and also protects the surface of the oil filling port. Clean and tidy , to avoid oil accumulation.
  • the atomizer is provided with a baffle on the side corresponding to the oil filling port, and the suction nozzle is against the baffle, that is, when the user pushes the suction nozzle to cover the sealing part , through the action of the baffle, the suction nozzle is accurately positioned on the surface of the atomizer, and the user can directly push the suction nozzle against the baffle, without manually adjusting the relative position of the suction nozzle and the atomizer, which simplifies the User operation steps are convenient for user operation.
  • FIG. 1 is a schematic structural diagram of a novel oil filling and sealing device provided by the first embodiment of the present application.
  • Fig. 2 is an exploded view of the novel oil filling and sealing device provided by the first embodiment of the present application.
  • FIG. 3 is a schematic cross-sectional view of the novel oil filling and sealing device provided by the first embodiment of the present application.
  • FIG. 4 is a schematic structural diagram of the novel oil filling and sealing device provided by the first embodiment of the present application when the suction nozzle is opened.
  • Fig. 5 is a schematic structural diagram of the novel oil filling sealing device provided by the first embodiment of the present application when the sealing portion is opened.
  • FIG. 6 is a schematic structural diagram of the blocking member in the novel oil filling and sealing device provided by the first embodiment of the present application.
  • FIG. 7 is a schematic structural diagram of a rotating shaft in the novel oil filling and sealing device provided by the first embodiment of the present application.
  • FIG. 8 is a schematic structural diagram of a first magnetic member and a second magnetic member in the novel oil filling and sealing device provided by the first embodiment of the present application.
  • the first embodiment of the present application provides a novel oil filling and sealing device 1 , which includes a suction nozzle 11 , an atomizer 12 and oil filling silica gel 13 , and the suction nozzle 11 is covered with the atomizer 12 .
  • the oil-filling silica gel 13 is positioned between the atomizer 12 and the suction nozzle 11 .
  • An oil tank 121 is provided in the atomizer 12 , and an oil filling port 122 is provided at one end of the atomizer 12 near the suction nozzle 11 , and the oil filling port 122 communicates with the oil tank 121 .
  • the oil filling silicone 13 includes a sealing part 131 and a fixing part 132 , the sealing part 131 matches the oil filling port 122 , the sealing part 131 covers the oil filling port 122 , and the suction nozzle 11 presses and fixes the fixing part 132.
  • the sealing part 131 is connected with the fixing part 132 , and the sealing part 131 can be turned over relative to the fixing part 132 , so that the user can pull out the sealing part 131 from the oil filling port 122 and perform refueling operation.
  • the suction nozzle 11 is slidably connected with the atomizer 12 , and the suction nozzle 11 can approach or move away from the surface of the atomizer 12 to cover or open the surface of the atomizer 12 close to the suction nozzle 11 .
  • the user can move the suction nozzle 11 to open one end of the atomizer 12 (open in the direction of a in FIG. 4 ), so that after the oil filling silicone 13 is exposed, the sealing part 131 can be pulled out from the oil filling port 122 (such as b direction in FIG. 5 ), at this time, part of the suction nozzle 11 is still in contact with the atomizer 12 , that is, the suction nozzle 11 presses and fixes the fixing part 132 at the position corresponding to the fixing part 132 , so that the oil-filling silica gel 13 is integrally positioned in the mist.
  • the user can use the external oil filling equipment to refuel the oil tank 121 after unplugging the sealing part 131. After filling up, the sealing part 131 is re-covered and the suction nozzle 11 is moved back position.
  • the user can seal the oil tank 121 through the oil-filling silicone 13 during use, so as to avoid oil leakage in the oil tank 121.
  • the user can The sliding connection between the suction nozzle 11 and the atomizer 12, so that after the suction nozzle 11 is transferred, the sealing part 131 is opened, which is convenient for the user to refuel the oil tank 121 through an external refueling device, avoiding the need to discard the disposable atomizing device.
  • the waste problem reduces the cost of use of the product.
  • the sealing part 131 is closed again, and then the suction nozzle 11 is moved and reset, that is, the reset suction nozzle 11 is pressed against the sealing part 131, so that when the user uses the device, the suction nozzle 11 is further fixed.
  • the sealing portion 131 is press-fitted to prevent the sealing portion 131 from being exposed, the sealing stability of the sealing portion 131 is improved, and the problem of oil leakage of the oil tank 121 is further avoided.
  • the sealing portion 131 and the oil filling port 122 are in an interference fit, so that the sealing portion 131 can tightly cover the oil filling port 122 based on the silicone material, so as to improve the sealing effect and avoid oil leakage. . at the same time.
  • a handle 1311 extends outward from the sealing portion 131 , which is convenient for a user to pick up the sealing portion 131 .
  • the oil filling port 122 is provided with a step-like blocking member 1221 , the blocking member 1221 is a silicone blocking member, and the diameter of the blocking member 1221 is directed toward the atomization from the suction nozzle 11 .
  • the direction of the injector 12 is gradually reduced, so that the blocking member 1221 blocks the oil filling port 122, so as to avoid the problem of a large amount of oil seeping out caused by the shaking or falling of the user during the refueling process, and also reduce the risk of oil leakage during use.
  • the blocking member 1221 made of silica gel enables the external oil filling equipment to insert the blocking member 1221 through the oil filling pipe port when adding oil to the oil filling port 122, which further improves the sealing performance of the oil filling port 122 during the oil filling process, and also protects the oil filling port.
  • the surface is neat and clean to avoid oil accumulation.
  • the end of the atomizer 12 close to the suction nozzle 11 is provided with an oil tank cover 123 , and the oil filling silica gel 13 is laid on the end of the oil tank cover 123 away from the atomizer 12 .
  • the oil tank cover 123 is provided with an opening at a position corresponding to the oil filling port 122 , and the oil tank cover 123 is used as a connecting component between the atomizer 12 and the suction nozzle 11 .
  • the side of the oil tank cover 123 facing away from the atomizer 12 is provided with raised positioning hooks 1231 .
  • One end of the suction nozzle 11 close to the atomizer 12 is provided with a positioning plate 111 , the number of the positioning plates 111 is two, and the two positioning plates 111 are arranged opposite to each other.
  • the positioning plate 111 is fastened and fixed on the positioning hook 1231 , that is, the “eagle hook” structure of the positioning hook 1231 is hooked on the edge of the positioning plate 111 , so that the suction nozzle 11 is buckled. It is attached to the side of the atomizer 12.
  • the positioning hook 1231 is a horizontal strip positioning hook structure.
  • the positioning plate 111 can move along the extending direction of the positioning hook 1231, so that the suction nozzle 11 is attached to the mist.
  • the surface of the atomizer 12 is exposed, it can move on the surface that fits the atomizer 12 based on the direction of the positioning hook 1231, so as to expose the sealing part 131 to facilitate the user to perform refueling operations (as shown in the direction a in FIG.
  • the suction nozzles 11 are all fixed by the positioning hooks 1231 , and there is no need to disassemble the suction nozzle 11 as a whole, which is convenient for users to use.
  • the suction nozzle 11 can be pushed back in the opposite direction, which is convenient and quick, and the user can operate it with one hand, which improves the user's experience.
  • the side of the oil tank cover 123 facing away from the atomizer 12 is provided with a raised rotating shaft 1232 , and the rotating shaft 1232 is positioned at the edge of the surface of the atomizer 12 .
  • the suction nozzle 11 is rotatably connected with the rotating shaft 1232, and the suction nozzle 11 is based on the rotating shaft 1232 and rotates relative to the atomizer 12, so that the suction nozzle 11 rotates to open the side of the atomizer 12, and after the sealing part 131 is exposed, it is convenient for the user to open the oil filling port 122 Carry out refueling operation.
  • the rotating shaft 1232 is positioned on one of the diagonal corners of the oil tank cover 123, and the rotating shaft 1232 is connected to the suction nozzle 11, so that the suction nozzle 11 can be rotated relative to the oil tank cover 123 to open the atomizer 12 and expose the oil filling silicone 13 , simplifies the connection structure of the suction nozzle 11 and the atomizer 12, and reduces the production cost of the product.
  • the use of the product is improved by the method of turning to open, and the user can also open the product through one-handed operation, which is convenient for the user to operate.
  • the atomizer 12 is provided with a baffle (not shown) on the side corresponding to the oil filling port 122 , and the suction nozzle 11 abuts on the baffle, that is, when the user pushes the suction nozzle 11
  • the suction nozzle 11 is accurately positioned on the surface of the atomizer 12 by the baffle, and the user can directly push the suction nozzle 11 against the baffle without manually adjusting the suction nozzle 11 and the mist.
  • the relative position of the converter 12 simplifies the user operation steps and facilitates the user operation.
  • the oil tank cover 123 is further provided with limit protrusions 1233 , and the limit protrusions 1233 and the rotating shaft 1232 are respectively disposed on opposite sides of the surface of the oil tank cover 123 .
  • the protrusion 1233 is a hemispherical protrusion structure.
  • the position of the suction nozzle 11 corresponding to the limit protrusion 1233 is provided with a limit groove 112 matching the limit protrusion 1233 .
  • the limit protrusion 1233 is placed on the in the limiting groove 112 .
  • the limiting groove 112 Move to the position of the limit protrusion 1233, so that the limit protrusion 1233 is placed in the limit groove 112, that is, when the suction nozzle 11 moves and resets so as to completely cover one end of the atomizer 12, it can pass the limit protrusion
  • the limiting function of 1233 is fixed at the current position, which improves the fixing stability of the suction nozzle 11 during use by the user, avoids accidental movement of the suction nozzle 11, and improves the user experience.
  • the limiting groove 112 can slide the limiting groove 112 out of the limiting protrusion 1233 through the arc structure of the hemispherical surface after the user exerts a force. Can.
  • a first magnetic member 1234 is provided on the side of the oil tank cover 123 away from the atomizer 12 , and the first magnetic member 1234 is a strip-shaped magnetic member.
  • the length of 1234 is the same as that of the oil tank cover 123 .
  • a second magnetic member 113 is disposed on the surface of the suction nozzle 11 near the atomizer 12 , and the first magnetic member 1234 is magnetically connected to the second magnetic member 113 .
  • the second magnetic member 113 can move in contact with the surface of the first magnetic member 1234 , that is, the suction nozzle 11 can be connected based on the magnetic attraction of the second magnetic member 113 .
  • the suction nozzle 11 can move relative to the atomizer 12 to open or close the surface of one side of the atomizer 12 to expose or cover the oil-filled silicone 13 .
  • the user can directly disassemble the lower suction nozzle 11, which is convenient for the user to disassemble based on the function of the magnetic suction connection.
  • the second embodiment of the present application provides an aerosol generating device, which includes a host and a novel fueling and sealing device 1 as provided in the first embodiment above.
  • the novel fueling and sealing device 1 is plugged into the host, and the host supplies the novel fueling and sealing device. 1 to provide electricity.
  • the novel oil filling sealing device provided by the present application has the following advantages:
  • the oil-filling silica gel is positioned between the atomizer and the suction nozzle, so that the user can use the oil-filling silica gel to seal the oil tank to avoid oil leakage in the oil tank.
  • the user can use the sliding connection between the suction nozzle and the atomizer to transfer the suction nozzle and open the sealing part, which is convenient for users to refuel the oil tank through external refueling equipment, avoiding the one-time use of mist. It eliminates the waste problem caused by the need to discard chemical equipment, and reduces the use cost of the product.
  • the sealing part is closed again, and then the suction nozzle is moved and reset, that is, the reset suction nozzle is pressed against the sealing part, so that when the user uses the device, the suction nozzle is further fixed and pressed.
  • the sealing part prevents the sealing part from being exposed, improves the covering stability of the sealing part, and further avoids the problem of oil leakage of the oil tank.

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Abstract

本申请涉及气溶胶产生装置领域,具体公开一种新型加油密封装置,通过设置注油硅胶,所述注油硅胶定位于所述雾化器与所述吸嘴之间,使得用户在使用时,可通过注油硅胶对油仓进行密封,避免油仓漏油。在油仓内油液用尽时,用户可通过吸嘴和雾化器的滑动连接,以将吸嘴转移后,打开密封部,方便用户通过外部加油设备给油仓加油,避免了一次性使用的雾化设备需要丢弃带来的浪费问题,降低了产品的使用成本。同时,当用户加油完毕后,将密封部重新盖合,再将吸嘴移动复位,也即复位后的吸嘴压合所述密封部,使得用户在使用设备时,吸嘴进一步固定压合了所述密封部,避免密封部外露,提高了密封部的盖合稳定性,进一步避免了油仓的漏油问题。

Description

一种新型加油密封装置及气溶胶产生装置
本申请要求于2020年8月24日提交中国专利局、申请号为202010856942.5,申请名称为“一种新型加油密封装置及气溶胶产生装置”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本申请涉及气溶胶产生装置领域,特别涉及一种新型加油密封装置及气溶胶产生装置。
背景技术
气溶胶产生装置是替代常规卷烟的便携式设备,其通常是由烟弹插接在主机上,以将烟弹中的烟油加热形成烟雾,以达到出烟效果。
现有的气溶胶产生装置中,部分通过加热烟油产生气溶胶的方式下,在烟油用尽时,需要用户补充烟油,有的无法加注烟油,只能废弃后更换整个雾化器,使用成本较高。
发明内容
为了克服目前现有的气溶胶产生装置中调节无法加注烟油的问题,本申请提供一种新型加油密封装置及气溶胶产生装置。
本申请为解决上述技术问题,提供一技术方案如下:一种新型加油密封装置,包括吸嘴、雾化器及注油硅胶,所述吸嘴盖合于所述雾化器一端,所述注油硅胶定位于所述雾化器与所述吸嘴之间;所述雾化器内设有油仓,所述雾化器靠近所述吸嘴一端设有注油口,所述注油口与所述油仓连通;所述注油硅胶包括密封部及固定部,所述密封部与所述注油口匹配,所述密封部盖合于所述注油口,所述吸嘴压合固定所述固定部;所述密封部与所述固定部连接,所述 密封部可相对于所述固定部翻转;所述吸嘴与所述雾化器滑动连接,所述吸嘴可相对于所述雾化器表面靠近或远离,以盖合或打开所述雾化器靠近所述吸嘴的表面。
优选地,所述雾化器靠近所述吸嘴一端设有油仓盖,所述注油硅胶铺设于所述油仓盖背离所述雾化器一端。
优选地,所述油仓盖背离所述雾化器的一面上设有凸起的定位钩,所述定位钩的数量为两个,两个所述定位钩相对设置;所述吸嘴靠近所述雾化器一端设有定位板,所述定位板的数量为两个,两个所述定位板相对设置;当所述吸嘴盖合于所述雾化器时,所述定位板扣合固定于所述定位钩上;所述定位板可沿着所述定位钩的延伸方向上移动。
优选地,所述油仓盖背离所述雾化器的一面上设有凸起的转轴,所述转轴定位于所述雾化器表面的边缘;所述吸嘴与所述转轴转动连接,所述吸嘴基于所述转轴,相对于所述雾化器转动。
优选地,所述油仓盖上还设有限位凸起,所述限位凸起与所述转轴分设于所述油仓盖表面的相对两侧;所述限位凸起为半球状凸起结构;所述吸嘴对应所述限位凸起的位置设有与限位凸起匹配的限位凹槽,当所述吸嘴盖合于所述雾化器时,所述限位凸起置于所述限位凹槽内。
优选地,所述油仓盖背离所述雾化器一侧设有第一磁性件,所述第一磁性件为条状磁性件,所述第一磁性件的长度与所述油仓盖的长度相同;所述吸嘴靠近所述雾化器一侧表面设有第二磁性件,所述第一磁性件与所述第二磁性件磁吸连接。
优选地,所述密封部与所述注油口过盈配合;所述密封部向外延伸有一把手。
优选地,所述注油口设有阶梯状设置的阻隔件,所述阻隔件为硅胶制阻隔件;所述阻隔件的口径自吸嘴向雾化器的方向逐渐减小。
优选地,所述雾化器在对应所述注油口的侧面设有挡板,所述吸嘴抵持于所述挡板上。
本申请还提供一种气溶胶产生装置,其包括新型加油密封装置;所述新型加油密封装置,包括吸嘴、雾化器及注油硅胶,所述吸嘴盖合于所述雾化器一端,所述注油硅胶定位于所述雾化器与所述吸嘴之间;所述雾化器内设有油仓,所述雾化器靠近所述吸嘴一端设有注油口,所述注油口与所述油仓连通;所述注油硅胶包括密封部及固定部,所述密封部与所述注油口匹配,所述密封部盖合于所述注油口,所述吸嘴压合固定所述固定部;所述密封部与所述固定部连接,所述密封部可相对于所述固定部翻转;所述吸嘴与所述雾化器滑动连接,所述吸嘴可相对于所述雾化器表面靠近或远离,以盖合或打开所述雾化器靠近所述吸嘴的表面。
优选地,所述雾化器靠近所述吸嘴一端设有油仓盖,所述注油硅胶铺设于所述油仓盖背离所述雾化器一端。
优选地,所述油仓盖背离所述雾化器的一面上设有凸起的定位钩,所述定位钩的数量为两个,两个所述定位钩相对设置;所述吸嘴靠近所述雾化器一端设有定位板,所述定位板的数量为两个,两个所述定位板相对设置;当所述吸嘴盖合于所述雾化器时,所述定位板扣合固定于所述定位钩上;所述定位板可沿着所述定位钩的延伸方向上移动。
优选地,所述油仓盖背离所述雾化器的一面上设有凸起的转轴,所述转轴定位于所述雾化器表面的边缘;所述吸嘴与所述转轴转动连接,所述吸嘴基于所述转轴,相对于所述雾化器转动。
优选地,所述油仓盖上还设有限位凸起,所述限位凸起与所述转轴分设于所述油仓盖表面的相对两侧;所述限位凸起为半球状凸起结构;所述吸嘴对应所述限位凸起的位置设有与限位凸起匹配的限位凹槽,当所述吸嘴盖合于所述雾化器时,所述限位凸起置于所述限位凹槽内。
优选地,所述油仓盖背离所述雾化器一侧设有第一磁性件,所述第一磁性件为条状磁性件,所述第一磁性件的长度与所述油仓盖的长度相同;所述吸嘴靠近所述雾化器一侧表面设有第二磁性件,所述第一磁性件与所述第二磁性件磁吸连接。
优选地,所述密封部与所述注油口过盈配合;所述密封部向外延伸有一把手。
优选地,所述注油口设有阶梯状设置的阻隔件,所述阻隔件为硅胶制阻隔件;所述阻隔件的口径自吸嘴向雾化器的方向逐渐减小。
优选地,所述雾化器在对应所述注油口的侧面设有挡板,所述吸嘴抵持于所述挡板上。
与现有技术相比,本申请提供的新型加油密封装置及气溶胶产生装置具有以下优点:
1、通过设置注油硅胶,所述注油硅胶定位于所述雾化器与所述吸嘴之间,使得用户在使用时,可通过注油硅胶对油仓进行密封,避免油仓漏油,同时,在油仓内油液用尽时,用户可通过吸嘴和雾化器的滑动连接,以将吸嘴转移后,打开密封部,方便用户通过外部加油设备给油仓加油,避免了一次性使用的雾化设备需要丢弃带来的浪费问题,降低了产品的使用成本。同时,当用户加油完毕后,将密封部重新盖合,再将吸嘴移动复位,也即复位后的吸嘴压合所述密封部,使得用户在使用设备时,吸嘴进一步固定压合了所述密封部,避免密 封部外露,提高了密封部的盖合稳定性,进一步避免了油仓的漏油问题。
2、通过设置所述定位钩和所述定位板,使得当所述定位板定位于定位钩上时,所述定位板可沿着所述定位钩的延伸方向上移动,使得所述吸嘴在贴合于所述雾化器表面时,可基于定位钩的方向,在贴合雾化器的表面上移动,以将密封部外露后方便用户进行加油操作,而在移动过程中,吸嘴均被定位钩固定,无需将吸嘴整体拆卸,方便用户的使用。当加油完毕后,将吸嘴反方向推回即可,方便快捷,用户可单手进行操作,提高用户的使用体验。
3、通过设置所述转轴,所述转轴定位于油仓盖的其中一个对角上,所述转轴连接所述吸嘴,使得所述吸嘴可相对于所述油仓盖旋转,以打开雾化器,将注油硅胶露出,简化了吸嘴与雾化器的连接结构,降低产品的生产成本。同时,通过转动打开的方式,提高产品的使用趣味,也使得用户可通过单手操作打开,方便用户的操作。
4、通过设置所述限位凸起与所述限位凹槽,使得当所述吸嘴在相对于所述雾化器移动,并盖合于雾化器表面时,可通过将所述限位凹槽移动至限位凸起的位置,使得所述限位凸起置于所述限位凹槽内,也即所述吸嘴在移动复位以至于完全覆盖雾化器一端时,可通过限位凸起的限位作用固定在当前位置,提高了用户在使用过程中吸嘴的固定稳定性,避免吸嘴的意外移动,提高用户的使用体验。同时,由于所述限位凸起为半球状的凸起结构,使得所述限位槽同基于用户施力后,通过半球状表面的弧形结构,将限位槽滑出限位凸起即可。
5、通过设置所述条状结构的第一磁性件,使得所述第二磁性件可在所述第一磁性件表面贴合移动,也即使得所述吸嘴基于所述第二磁性件的磁吸连接作用,吸嘴可相对于所述雾化器移动打开或关闭所述雾化器一侧的表面,以外露或遮盖所述注油硅胶。或用户可以直接拆卸下吸嘴,基于磁吸连接的作用方便 用户的拆卸。
6、所述密封部与所述注油口过盈配合,使得所述密封部可基于硅胶材质对注油口紧密盖合,提高密封效果,避免漏油。同时。所述密封部向外延伸有一把手,方便用户拿起密封部。
7、所述注油口设有阶梯状设置的阻隔件,所述阻隔件为硅胶制阻隔件,所述阻隔件的口径自吸嘴向雾化器的方向逐渐减小,使得所述阻隔件遮挡注油口,避免用户在加油过程中的抖动或掉落导致的油液大量外渗的问题,也降低了在使用过程中油液泄漏的风险。同时,通过硅胶制的阻隔件,使得外部注油设备在向注油口加油时,可通过注油管口插入阻隔件,进一步提高注油过程中注油口的密封性,同时也保护了注油口表面的整洁干净,避免油液堆积。
8、所述雾化器在对应所述注油口的侧面设有挡板,所述吸嘴抵持于所述挡板上,也即当用户在推动所述吸嘴以遮盖所述密封部时,通过所述挡板的作用使得吸嘴准确定位于雾化器表面,也使得用户可直接将吸嘴推动抵持于挡板上,无需手动调整吸嘴与雾化器的相对位置,简化了用户操作的步骤,方便用户操作。
附图说明
图1是本申请第一实施例所提供的新型加油密封装置的结构示意图。
图2是本申请第一实施例所提供的新型加油密封装置的爆炸图。
图3是本申请第一实施例所提供的新型加油密封装置的剖切结构示意图。
图4是本申请第一实施例所提供的新型加油密封装置中吸嘴打开时的结构示意图。
图5是本申请第一实施例所提供的新型加油密封装置中密封部打开时的结 构示意图。
图6是本申请第一实施例所提供的新型加油密封装置中阻隔件的结构示意图。
图7是本申请第一实施例所提供的新型加油密封装置中转轴的结构示意图。
图8是本申请第一实施例所提供的新型加油密封装置中第一磁性件和第二磁性件的结构示意图。
附图标记说明:
1-新型加油密封装置,
11-吸嘴,111-定位板,112-凹槽,113-第二磁性件,
12-雾化器,121-油仓,122-注油口,1221-阻隔件,123-油仓盖,1231-定位钩,1232-转轴,1233-限位凸起,1234-第一磁性件,
13-注油硅胶,131-密封部,1311-把手,132-固定部。
具体实施方式
下面结合附图,对本申请的具体实施方式进行详细描述,但应当理解本申请的保护范围并不受具体实施方式的限制。
请结合图1、图2和图3,本申请第一实施例提供一种新型加油密封装置1,包括吸嘴11、雾化器12及注油硅胶13,吸嘴11盖合于雾化器12一端,注油硅胶13定位于雾化器12与吸嘴11之间。
雾化器12内设有油仓121,雾化器12靠近吸嘴11一端设有注油口122,注油口122与油仓121连通。
请结合图2、图4和图5,注油硅胶13包括密封部131及固定部132,密封部131与注油口122匹配,密封部131盖合于注油口122,吸嘴11压合固定固定部132。
密封部131与固定部132连接,密封部131可相对于固定部132翻转,使得用户可将密封部131从注油口122内拔起后进行加油操作。
吸嘴11与雾化器12滑动连接,吸嘴11可相对于雾化器12表面靠近或远离,以盖合或打开雾化器12靠近吸嘴11的表面。
可以理解,用户在使用时,可将吸嘴11移动打开雾化器12一端(如图4中a方向打开),使得注油硅胶13外露后,通过将密封部131从注油口122拔出(如图5中b方向),此时吸嘴11的部分位置仍然与雾化器12接触,也即吸嘴11在对应固定部132的位置压合固定固定部132,使得注油硅胶13整体定位在雾化器12上,避免注油硅胶13的掉落,当用户拔开密封部131后可基于外部注油设备,以给油仓121加油,加满后将密封部131重新盖合并将吸嘴11移动回位即可。
可以理解,通过设置注油硅胶13,使得用户在使用时,可通过注油硅胶13对油仓121进行密封,避免油仓121漏油,同时,在油仓121内油液用尽时,用户可通过吸嘴11和雾化器12的滑动连接,以将吸嘴11转移后,打开密封部131,方便用户通过外部加油设备给油仓121加油,避免了一次性使用的雾化设备需要丢弃带来的浪费问题,降低了产品的使用成本。同时,当用户加油完毕后,将密封部131重新盖合,再将吸嘴11移动复位,也即复位后的吸嘴11压合密封部131,使得用户在使用设备时,吸嘴11进一步固定压合了密封部131,避免密封部131外露,提高了密封部131的盖合稳定性,进一步避免了油仓121 的漏油问题。
可选地,请继续参阅图5,作为一种实施例,密封部131与注油口122过盈配合,使得密封部131可基于硅胶材质对注油口122紧密盖合,提高密封效果,避免漏油。同时。密封部131向外延伸有一把手1311,方便用户拿起密封部131。
可选地,请参阅图6,作为又一种实施例,注油口122设有阶梯状设置的阻隔件1221,阻隔件1221为硅胶制阻隔件,阻隔件1221的口径自吸嘴11向雾化器12的方向逐渐减小,使得阻隔件1221遮挡注油口122,避免用户在加油过程中的抖动或掉落导致的油液大量外渗的问题,也降低了在使用过程中油液泄漏的风险。同时,通过硅胶制的阻隔件1221,使得外部注油设备在向注油口122加油时,可通过注油管口插入阻隔件1221,进一步提高注油过程中注油口122的密封性,同时也保护了注油口122表面的整洁干净,避免油液堆积。
请继续结合图2和图3,雾化器12靠近吸嘴11一端设有油仓盖123,注油硅胶13铺设于油仓盖123背离雾化器12一端。
可以理解,油仓盖123在对应注油口122的位置设有开口,油仓盖123用于作为雾化器12与吸嘴11之间的连接部件。
具体地,油仓盖123背离雾化器12的一面上设有凸起的定位钩1231,定位钩1231的数量为两个,两个定位钩1231相对设置。
吸嘴11靠近雾化器12一端设有定位板111,定位板111的数量为两个,两个定位板111相对设置。
当吸嘴11盖合于雾化器12时,定位板111扣合固定于定位钩1231上,也即定位钩1231的“鹰钩状”结构钩在定位板111边缘上,使得吸嘴11扣合在 雾化器12一侧。
可以理解,定位钩1231为横条状定位钩结构,当定位板111定位于定位钩1231上时,定位板111可沿着定位钩1231的延伸方向上移动,使得吸嘴11在贴合于雾化器12表面时,可基于定位钩1231的方向,在贴合雾化器12的表面上移动,以将密封部131外露后方便用户进行加油操作(如图4中a方向所示),而在移动过程中,吸嘴11均被定位钩1231固定,无需将吸嘴11整体拆卸,方便用户的使用。当加油完毕后,将吸嘴11反方向推回即可,方便快捷,用户可单手进行操作,提高用户的使用体验。
可选地,请参阅图7,作为一种实施例,油仓盖123背离雾化器12的一面上设有凸起的转轴1232,转轴1232定位于雾化器12表面的边缘。吸嘴11与转轴1232转动连接,吸嘴11基于转轴1232,相对于雾化器12转动,使得吸嘴11转动打开雾化器12一侧,将密封部131外露后,方便用户打开注油口122进行加油操作。
可以理解,转轴1232定位于油仓盖123的其中一个对角上,转轴1232连接吸嘴11,使得吸嘴11可相对于油仓盖123旋转,以打开雾化器12,将注油硅胶13露出,简化了吸嘴11与雾化器12的连接结构,降低产品的生产成本。同时,通过转动打开的方式,提高产品的使用趣味,也使得用户可通过单手操作打开,方便用户的操作。
可选地,作为一种实施例,雾化器12在对应注油口122的侧面设有挡板(图未示),吸嘴11抵持于挡板上,也即当用户在推动吸嘴11以遮盖密封部131时,通过挡板的作用使得吸嘴11准确定位于雾化器12表面,也使得用户可直接将吸嘴11推动抵持于挡板上,无需手动调整吸嘴11与雾化器12的相对位置, 简化了用户操作的步骤,方便用户操作。
可选地,请参阅图5,作为一种实施例,油仓盖123上还设有限位凸起1233,限位凸起1233与转轴1232分设于油仓盖123表面的相对两侧,限位凸起1233为半球状凸起结构。对应地,吸嘴11对应限位凸起1233的位置设有与限位凸起1233匹配的限位凹槽112,当吸嘴11盖合于雾化器12时,限位凸起1233置于限位凹槽112内。
可以理解,通过设置限位凸起1233与限位凹槽112,使得当吸嘴11在相对于雾化器12移动,并盖合于雾化器12表面时,可通过将限位凹槽112移动至限位凸起1233的位置,使得限位凸起1233置于限位凹槽112内,也即吸嘴11在移动复位以至于完全覆盖雾化器12一端时,可通过限位凸起1233的限位作用固定在当前位置,提高了用户在使用过程中吸嘴11的固定稳定性,避免吸嘴11的意外移动,提高用户的使用体验。同时,由于限位凸起1233为半球状的凸起结构,使得限位槽112同基于用户施力后,通过半球状表面的弧形结构,将限位槽112滑出限位凸起1233即可。
可选地,请参阅图8,作为又一种实施例,油仓盖123背离雾化器12一侧设有第一磁性件1234,第一磁性件1234为条状磁性件,第一磁性件1234的长度与油仓盖123的长度相同。
吸嘴11靠近雾化器12一侧表面设有第二磁性件113,第一磁性件1234与第二磁性件113磁吸连接。
可以理解,通过设置条状结构的第一磁性件1234,使得第二磁性件113可在第一磁性件1234表面贴合移动,也即使得吸嘴11基于第二磁性件113的磁吸连接作用,吸嘴11可相对于雾化器12移动打开或关闭雾化器12一侧的表面, 以外露或遮盖注油硅胶13。或用户可以直接拆卸下吸嘴11,基于磁吸连接的作用方便用户的拆卸。
本申请第二实施例提供一种气溶胶产生装置,其包括主机及如上述第一实施例中提供的新型加油密封装置1,新型加油密封装置1插接于主机上,主机给新型加油密封装置1提供电能。
与现有技术相比,本申请提供的新型加油密封装置具有以下优点:
通过设置注油硅胶,所述注油硅胶定位于所述雾化器与所述吸嘴之间,使得用户在使用时,可通过注油硅胶对油仓进行密封,避免油仓漏油,同时,在油仓内油液用尽时,用户可通过吸嘴和雾化器的滑动连接,以将吸嘴转移后,打开密封部,方便用户通过外部加油设备给油仓加油,避免了一次性使用的雾化设备需要丢弃带来的浪费问题,降低了产品的使用成本。同时,当用户加油完毕后,将密封部重新盖合,再将吸嘴移动复位,也即复位后的吸嘴压合所述密封部,使得用户在使用设备时,吸嘴进一步固定压合了所述密封部,避免密封部外露,提高了密封部的盖合稳定性,进一步避免了油仓的漏油问题。
前述对本申请的具体示例性实施方案的描述是为了说明和例证的目的。这些描述并非想将本申请限定为所公开的精确形式,并且很显然,根据上述教导,可以进行很多改变和变化。对示例性实施例进行选择和描述的目的在于解释本申请的特定原理及其实际应用,从而使得本领域的技术人员能够实现并利用本申请的各种不同的示例性实施方案以及各种不同的选择和改变。本申请的范围意在由权利要求书及其等同形式所限定。

Claims (18)

  1. 一种新型加油密封装置,包括吸嘴、雾化器及注油硅胶,所述吸嘴盖合于所述雾化器一端,所述注油硅胶定位于所述雾化器与所述吸嘴之间;
    所述雾化器内设有油仓,所述雾化器靠近所述吸嘴一端设有注油口,所述注油口与所述油仓连通;
    所述注油硅胶包括密封部及固定部,所述密封部与所述注油口匹配,所述密封部盖合于所述注油口,所述吸嘴压合固定所述固定部;
    所述密封部与所述固定部连接,所述密封部可相对于所述固定部翻转;
    所述吸嘴与所述雾化器滑动连接,所述吸嘴可相对于所述雾化器表面靠近或远离,以盖合或打开所述雾化器靠近所述吸嘴的表面。
  2. 如权利要求1中所述新型加油密封装置,其中,所述雾化器靠近所述吸嘴一端设有油仓盖,所述注油硅胶铺设于所述油仓盖背离所述雾化器一端。
  3. 如权利要求2中所述新型加油密封装置,其中,所述油仓盖背离所述雾化器的一面上设有凸起的定位钩,所述定位钩的数量为两个,两个所述定位钩相对设置;
    所述吸嘴靠近所述雾化器一端设有定位板,所述定位板的数量为两个,两个所述定位板相对设置;
    当所述吸嘴盖合于所述雾化器时,所述定位板扣合固定于所述定位钩上;
    所述定位板可沿着所述定位钩的延伸方向上移动。
  4. 如权利要求2中所述新型加油密封装置,其中,所述油仓盖背离所述雾化器的一面上设有凸起的转轴,所述转轴定位于所述雾化器表面的边缘;
    所述吸嘴与所述转轴转动连接,所述吸嘴基于所述转轴,相对于所述雾化 器转动。
  5. 如权利要求4中所述新型加油密封装置,其中,所述油仓盖上还设有限位凸起,所述限位凸起与所述转轴分设于所述油仓盖表面的相对两侧;
    所述限位凸起为半球状凸起结构;
    所述吸嘴对应所述限位凸起的位置设有与限位凸起匹配的限位凹槽,当所述吸嘴盖合于所述雾化器时,所述限位凸起置于所述限位凹槽内。
  6. 如权利要求2中所述新型加油密封装置,其中,所述油仓盖背离所述雾化器一侧设有第一磁性件,所述第一磁性件为条状磁性件,所述第一磁性件的长度与所述油仓盖的长度相同;
    所述吸嘴靠近所述雾化器一侧表面设有第二磁性件,所述第一磁性件与所述第二磁性件磁吸连接。
  7. 如权利要求1中所述新型加油密封装置,其中,所述密封部与所述注油口过盈配合;
    所述密封部向外延伸有一把手。
  8. 如权利要求1中所述新型加油密封装置,其中,所述注油口设有阶梯状设置的阻隔件,所述阻隔件为硅胶制阻隔件;
    所述阻隔件的口径自吸嘴向雾化器的方向逐渐减小。
  9. 如权利要求1中所述新型加油密封装置,其中,所述雾化器在对应所述注油口的侧面设有挡板,所述吸嘴抵持于所述挡板上。
  10. 一种气溶胶产生装置,其包括新型加油密封装置;所述新型加油密封装置,包括吸嘴、雾化器及注油硅胶,所述吸嘴盖合于所述雾化器一端,所述 注油硅胶定位于所述雾化器与所述吸嘴之间;所述雾化器内设有油仓,所述雾化器靠近所述吸嘴一端设有注油口,所述注油口与所述油仓连通;所述注油硅胶包括密封部及固定部,所述密封部与所述注油口匹配,所述密封部盖合于所述注油口,所述吸嘴压合固定所述固定部;所述密封部与所述固定部连接,所述密封部可相对于所述固定部翻转;所述吸嘴与所述雾化器滑动连接,所述吸嘴可相对于所述雾化器表面靠近或远离,以盖合或打开所述雾化器靠近所述吸嘴的表面。
  11. 如权利要求10中所述气溶胶产生装置,其中,所述雾化器靠近所述吸嘴一端设有油仓盖,所述注油硅胶铺设于所述油仓盖背离所述雾化器一端。
  12. 如权利要求11中所述气溶胶产生装置,其中,所述油仓盖背离所述雾化器的一面上设有凸起的定位钩,所述定位钩的数量为两个,两个所述定位钩相对设置;所述吸嘴靠近所述雾化器一端设有定位板,所述定位板的数量为两个,两个所述定位板相对设置;当所述吸嘴盖合于所述雾化器时,所述定位板扣合固定于所述定位钩上;所述定位板可沿着所述定位钩的延伸方向上移动。
  13. 如权利要求11中所述气溶胶产生装置,其中,所述油仓盖背离所述雾化器的一面上设有凸起的转轴,所述转轴定位于所述雾化器表面的边缘;所述吸嘴与所述转轴转动连接,所述吸嘴基于所述转轴,相对于所述雾化器转动。
  14. 如权利要求13中所述气溶胶产生装置,其中,所述油仓盖上还设有限位凸起,所述限位凸起与所述转轴分设于所述油仓盖表面的相对两侧;所述限位凸起为半球状凸起结构;所述吸嘴对应所述限位凸起的位置设有与限位凸起匹配的限位凹槽,当所述吸嘴盖合于所述雾化器时,所述限位凸起置于所述限位凹槽内。
  15. 如权利要求11中所述气溶胶产生装置,其中,所述油仓盖背离所述雾化器一侧设有第一磁性件,所述第一磁性件为条状磁性件,所述第一磁性件的长度与所述油仓盖的长度相同;所述吸嘴靠近所述雾化器一侧表面设有第二磁性件,所述第一磁性件与所述第二磁性件磁吸连接。
  16. 如权利要求10中所述气溶胶产生装置,其中,所述密封部与所述注油口过盈配合;所述密封部向外延伸有一把手。
  17. 如权利要求10中所述气溶胶产生装置,其中,所述注油口设有阶梯状设置的阻隔件,所述阻隔件为硅胶制阻隔件;所述阻隔件的口径自吸嘴向雾化器的方向逐渐减小。
  18. 如权利要求10中所述气溶胶产生装置,其中,所述雾化器在对应所述注油口的侧面设有挡板,所述吸嘴抵持于所述挡板上。
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