Atomization device capable of preventing self-starting
By installing an air control component on the sensing airway of the atomizing device and rotating to adjust the position of the airway, the problem of the lack of a switch function in the sensing airway is solved, thus preventing accidental triggering and accidental inhalation by children, preventing condensate corrosion, and improving the reliability and safety of the device.
Patent Information
- Application Number
- CN202422900043.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-27
- Publication Date
- 2025-11-28
- Estimated Expiration
- 2034-11-27
AI Technical Summary
The existing nebulizer's sensing airway lacks an on/off function, leading to problems such as false triggering, accidental inhalation by children, and condensation corroding the sensing device.
An air control element is installed on the sensing airway. By rotating and adjusting the position of the airway, the connection or blockage between the sensing device and the installation chamber can be controlled, thereby realizing the sensing control of negative pressure and avoiding accidental triggering and aspiration by children.
It effectively prevents accidental triggering and accidental inhalation by children, prevents condensate from corroding the sensing device, and improves the reliability and safety of the device.
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Figure CN223600860U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model embodiment relates to electronic atomization technical field, in particular to a kind of atomization device of preventing self starting. BACKGROUND
[0002] In the field of electronic atomization technology, the atomization device is usually provided with an air inlet channel and a sensing channel. The air inlet channel is generally connected with the outside world, and the atomization gas is taken out by inhaling. The sensing channel is usually connected with the sensing device. When inhaling, the negative pressure generated in the sensing channel triggers the sensing device, and the device is powered to generate heat to produce smoke.
[0003] The existing sensing channel has no switch function. In some use processes, there may be false triggering and child misinhalation. In addition, repeated heating and stopping during use may cause condensate to flow to the sensing channel, corroding the sensing device. INVENTION CONTENTS
[0004] The technical problem to be solved by the utility model embodiment is to provide an atomization device that prevents self starting, to solve the problem that the existing sensing channel has no switch function, and in some use processes, there may be false triggering and child misinhalation. In addition, repeated heating and stopping during use may cause condensate to flow to the sensing channel, corroding the sensing device.
[0005] To solve the above technical problems, the utility model embodiment adopts the following technical scheme: an atomization device that prevents self starting, comprising a rod body provided with a mounting bin, an atomization cartridge arranged in the mounting bin, a sensing channel arranged in the atomization cartridge and connected with the mounting bin, a sensing device arranged in the rod body, and further comprising:
[0006] An air inlet channel connected with the outside world and the mounting bin, respectively;
[0007] A sensing channel connected with the sensing device and the mounting bin, respectively;
[0008] A gas control member arranged on the sensing channel to control the connection between the sensing device and the mounting bin.
[0009] Further, a gas passage is arranged on the gas control member, and the gas control member can rotate to adjust the position of the gas passage to connect or block the sensing channel between the mounting bin and the sensing device.
[0010] Further, a fixing hole is formed in the rod body to lead to the sensing device, and the fixing hole is used for inserting and fixing the gas control member.
[0011] Further, a torsion part is arranged on the end surface of the gas control member.
[0012] Further, the gas passage is composed of a vertical groove formed on the gas control member and a groove formed along the axis of the gas control member. The vertical groove and the groove are connected, and the rotation of the gas control member makes the vertical groove connected with or staggered with the sensing channel.
[0013] Further, the installation warehouse bottom is circumferentially provided with a fixed boss with an adsorption part.
[0014] Further, the installation warehouse bottom is circumferentially provided with a fixed boss with an adsorption part.
[0015] Further, the installation warehouse bottom is circumferentially provided with a fixed boss with an adsorption part.
[0016] Further, the installation warehouse bottom is circumferentially provided with a fixed boss with an adsorption part.
[0017] Further, the installation warehouse bottom is circumferentially provided with a fixed boss with an adsorption part.
[0018] The technical scheme has at least the following beneficial effects: in the embodiment of the utility model, the gas control member is arranged in the induction airway, the induction airway of the installation warehouse and the induction device is connected or blocked, whether the induction device can induce the negative pressure generated when inhaling is controlled, and then the power supply heating of the starting device is controlled, the induction airway of the installation warehouse and the induction device is connected or blocked by adjusting the gas control member, the phenomenon that the condensate flows to the induction airway, corrodes the induction device and the like is avoided. BRIEF DESCRIPTION OF DRAWINGS
[0019] Figure 1 is the three-dimensional structure schematic diagram of the combined state of one optional embodiment of the utility model.
[0020] Figure 2 is the three-dimensional structure schematic diagram of the combined state of one optional embodiment of the utility model.
[0021] Figure 3 is the installation warehouse cross section structure schematic diagram of another optional embodiment of the utility model.
[0022] Figure 4 is the induction airway cross section structure schematic diagram of another optional embodiment of the utility model.
[0023] Figure 5 is the induction airway cross section structure schematic diagram of another optional embodiment of the utility model.
[0024] Figure 6 is the fixed hole cross section structure schematic diagram of another optional embodiment of the utility model.
[0025] Figure 7 is the fixed hole cross section structure schematic diagram of another optional embodiment of the utility model.
[0026] Figure 8 is the air inlet cross section structure diagram of another optional embodiment of the utility model.
[0027] Figure 9 is the atomizing bullet structure diagram of another optional embodiment of the utility model.
[0028] Figure 10 is the flow step diagram of an optional embodiment of the utility model. DETAILED DESCRIPTION
[0029] The utility model will be explained further in detail below in combination with the drawings and specific embodiments. It should be understood that the following illustrative embodiments and explanations are only used to explain the utility model and are not as the limitation of the utility model, and in the case of no conflict, the embodiments in the utility model and the features in the embodiments can be combined with each other.
[0030] As Figures 1-10 shown, an optional embodiment of the utility model provides a self-starting prevention atomizing device, including the rod body 2 with the installation bin 20, the atomizing bullet 1 arranged in the installation bin 20, the atomizing channel 10 in the atomizing bullet 1 is connected with the installation bin 20, the induction device 3 arranged in the rod body 2, further including:
[0031] The air inlet 21 is connected with the outside and the installation bin 20 respectively;
[0032] The induction air channel 22 is connected with the induction device 3 and the installation bin 20 respectively;
[0033] The control gas piece 23 is arranged on the induction air channel 22 and controls the induction device 3 and the installation bin 20 to be connected.
[0034] In the embodiment, the control gas piece 23 is arranged in the induction air channel 22, the induction air channel 22 of the installation bin 20 and the induction device 3 is connected or blocked, whether the induction device 3 can sense the negative pressure generated when inhaling is controlled, and then the power supply heating of the starting device is realized, the induction air channel 22 of the installation bin 20 and the induction device 3 is connected or blocked by adjusting the control gas piece 23, and the phenomenon that the condensate flows to the induction air channel and erodes the induction device can be effectively avoided when the process of repeated heating and stopping in the use process is triggered and the child is inhaled by mistake.
[0035] As Figure 4 , 5 shown, in an optional embodiment of the utility model, the control gas piece 23 is arranged on the air channel 230, the control gas piece 23 can rotate and adjust the position of the air channel 230, and the induction air channel 22 of the installation bin 20 and the induction device 3 is connected or blocked.
[0036] As Figure 6As shown in another optional embodiment of the present utility model, the rod body 2 is provided with a fixed hole 25 leading to the induction device 3, and the fixed hole 25 is used for inserting and fixing the air control member 23.
[0037] As Figure 7 shown in an optional embodiment of the present utility model, the air control member 23 is provided with a torsion part 235 on the end face.
[0038] In the embodiment, the torsion part 235 is convenient for the user to adjust the air control member 23 to control the communication between the induction device 3 and the installation compartment 20.
[0039] As Figure 5 , 7 As shown in another optional embodiment of the present utility model, the air passage 230 is composed of a vertical groove 231 formed on the air control member 23 and a groove 232 formed along the axis of the air control member 23, the vertical groove 231 and the groove 232 are communicated, and the rotation of the air control member 23 makes the vertical groove 231 communicate with or stagger with the induction air passage 22.
[0040] As Figure 3 , 4 , 9, 10 shown in an optional embodiment of the present utility model, the installation compartment 20 is provided with a fixed boss 26 with a first adsorption part 260 on the bottom, and the atomizing bullet 1 is provided with a second adsorption part 11 on the bottom for abutting and adsorbing the first adsorption part 260.
[0041] In the embodiment, the fixed boss 26 and the first adsorption part 260 are provided, when the atomizing bullet 1 is installed in the installation compartment 20, the second adsorption part 11 on the bottom of the atomizing bullet 1 is adsorbed on the first adsorption part 260 and seated on the fixed boss 26, a gap is formed between the atomizing bullet 1 and the bottom of the installation compartment 20, which can be used for the air entering from the air inlet passage 21 to contact the induction air passage 22, when the air is inhaled to the atomization passage 10 of the atomizing bullet 1, the flowing air forms a negative pressure in the induction air passage 22 to trigger the induction device 3, so that the device generates smoke by heating.
[0042] As Figure 3 , 4 , 9, 10 shown in another optional embodiment of the present utility model, the installation compartment 20 is further provided with a power supply part 29 on the bottom, and the atomizing bullet 1 is provided with a contact 12 on the bottom for abutting and electrically connecting with the power supply part 29.
[0043] In the embodiment, the rod body 2 is electrically connected with the contact 12 of the atomizing bullet 1 through the power supply part 29 to realize the electrification and atomization of the atomizing bullet 1.
[0044] As Figure 10As shown, in another optional embodiment of this utility model, a power supply unit 200 and a control unit 201 are provided inside the rod body 2, and the control unit 201 is electrically connected to the power supply unit 200.
[0045] In this embodiment, a power supply unit 200 is set up to provide power to the whole device, and the control unit 201 allocates power supply unit 200 to supply power to each component.
[0046] like Figure 10 As shown, in an optional embodiment of this utility model, the sensing device 3 is electrically connected to the control unit 201.
[0047] In this embodiment, the working trigger control unit 201 of the sensing device 3 schedules the power supply to output to the power supply unit 29.
[0048] like Figure 10 As shown, in an optional embodiment of this utility model, the power supply unit 29 is electrically connected to the control unit 201.
[0049] In this embodiment, the sensing device 3 triggers the control unit 201 to schedule power to output to the power supply unit 29, and supplies power to the atomizing bullet 1 for atomization through the contact 12.
[0050] The embodiments of the present invention have been described above with reference to the accompanying drawings. However, the present invention is not limited to the specific embodiments described above. The specific embodiments described above are merely illustrative and not restrictive. Those skilled in the art can make many other forms under the guidance of the present invention without departing from the spirit and scope of the claims. All of these forms are within the scope of protection of the present invention.
Claims
1. A self-priming atomizing device, comprising a rod body provided with a mounting cavity, an atomizing cartridge arranged in the mounting cavity, an atomizing channel arranged in the atomizing cartridge and communicated with the mounting cavity, and a sensing device arranged in the rod body, characterized in that, Also include: Respectively connect with the outside world and the installation of the air inlet of warehouse; Respectively connect with the induction device and the installation of the induction airway of warehouse; The control gas piece is set on the induction airway, and the control gas piece can be rotatably adjusted to connect or block the induction airway of the induction device and the installation of the warehouse.
2. The anti-self-discharge atomizing device of claim 1, wherein, The control gas piece is set on the induction airway, and the control gas piece can be rotatably adjusted to connect or block the induction airway of the induction device and the installation of the warehouse.
3. The self-opening prevention atomizing device according to claim 2, wherein The rod body is provided with a fixed hole leading to the induction device, and the fixed hole is used for inserting and fixing the control gas piece.
4. The anti-self-discharge atomizing device of claim 3, wherein, The end surface of the control gas piece is provided with a torsion part.
5. The self-opening prevention atomizing device according to claim 4, wherein The over airway is composed of a vertical groove opened outside the control gas piece and a groove opened along the axis of the control gas piece, the vertical groove is communicated with the groove, and the rotation of the control gas piece makes the vertical groove communicated or staggered with the induction airway.
6. The anti-self-discharge atomizing device of claim 5, wherein, The bottom of the installation warehouse is circumferentially provided with a fixed boss with an adsorption part.
7. The anti-self-discharge atomizing device of claim 6, wherein, The bottom of the installation warehouse is also provided with a power supply part, and the bottom of the atomization bullet is provided with a contact point electrically connected with the power supply part.
8. The anti-self-discharge atomizing device of claim 7, wherein, The rod body is provided with a power supply unit and a control unit, and the control unit is electrically connected with the power supply unit.
9. The anti-self-discharge atomizing device of claim 8, wherein, The induction device is electrically connected with the control unit.
10. The anti-self-discharge atomizing device of claim 9, wherein, The power supply part is electrically connected with the control unit.