A detachable atomizer
By combining the conductive component, the adaptive compaction component, and the follow-up pressing component, the problem of unstable connection between the atomizer nozzle and the contact is solved, achieving fast and flexible electrical connection and stable electrical conduction, thus avoiding poor contact.
Patent Information
- Application Number
- CN202511773880.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-28
- Publication Date
- 2026-02-10
- Estimated Expiration
- 2045-11-28
AI Technical Summary
The connection between the existing atomizer nozzle and the contact is prone to problems such as jamming or loosening, resulting in unstable electrical connection.
An easy-to-disassemble atomizer was designed. Through the combination of a conductive component, an adaptive compaction component, and a follow-up pressing component, a rapid and flexible electrical connection between the atomizing nozzle and the contact was achieved, ensuring the stability of the connection.
This effectively avoids poor contact caused by single-head elastic contact conductive connection, improves the stability and reliability of the atomizer, and ensures the continuity of electrical connection.
Smart Images

Figure CN121198531B_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the field of atomizers, specifically relating to an easy-to-disassemble atomizer. Background Technology
[0002] In existing technologies, the contacts of atomizer nozzles on the market can only be elastically connected at one end, while the other end is a hard contact. During operation, they are either too tight or become loose and have poor contact after long-term use. How to ensure that the atomizer nozzle and atomizer housing can be quickly and elastically electrically connected to both ends of the contacts has become an urgent technical problem to be solved.
[0003] This invention seeks to mitigate or at least alleviate such problems or defects by providing new or otherwise improved atomizers. Summary of the Invention
[0004] In view of one or more of the above-mentioned defects or improvement needs of the prior art, the present invention provides an easy-to-disassemble atomizer, which has the advantage of ensuring that both the atomizer nozzle and the atomizer housing can be quickly and elastically electrically connected to both ends of the contact.
[0005] To achieve the above objectives, the present invention provides an easily detachable atomizer, which includes an outer shell having a cavity inside;
[0006] The atomizer body has an atomizing nozzle, and the atomizer body has an inner ring and a pressure rod.
[0007] A connecting component is removably disposed within the atomizer body, and one end of the connecting component is connected to the atomizing nozzle.
[0008] An adaptive compaction member, detachably disposed within the atomizing nozzle, is capable of forcing the adaptive compaction member to connect with the conducting member when the adaptive compaction member tends to move towards the inner ring; and:
[0009] The follow-up pressing component consists of a displacement section connected to the inner wall of the outer shell cavity and a trigger section slidably connected to the displacement section;
[0010] Specifically, when the trigger segment has a downward tendency, it can trigger the displacement segment to have an upward tendency, thereby forcing the adaptive compaction member to connect with the conducting member.
[0011] As a further improvement of the present invention, a positioning block is provided on the pressure rod, and the positioning block is arranged along the center of the cross-sectional circle of the pressure rod.
[0012] As a further improvement of the present invention, the conductive component includes:
[0013] A conductive post has a sliding cavity inside, and a built-in spring is located inside the sliding cavity;
[0014] The lower plate is detachably mounted on the guide post, and has a lower ball head inside the lower plate, which abuts against one end of the built-in spring.
[0015] A through rod is slidably arranged inside the guide post, and the other end of the through rod abuts against the built-in spring;
[0016] The upper plate is located at one end of the through rod and has an upper ball head.
[0017] As a further improvement of the present invention, the adaptive compaction member includes:
[0018] A conductive plate is located inside the inner ring, and a conductive rod is provided at one end of the conductive plate, and the conductive rod can pass through the inner ring;
[0019] A displacement rod is disposed on the guide plate and passes through the inner ring, and a spring is provided on the displacement rod;
[0020] A trigger block is disposed on one side of the conductive plate, and a trigger ramp is provided on the trigger block;
[0021] A trigger rod, located below the trigger ramp, has a trigger wheel on it.
[0022] As a further improvement of the present invention, in the initial state, the trigger wheel and the trigger ramp are in contact with each other, and the trigger wheel is located at the lowest point of the trigger ramp. When the trigger wheel moves upward, it can drive the guide plate to tend to move towards the inner wall of the inner ring.
[0023] As a further improvement of the present invention, the inner wall of the inner ring is further provided with an inner hole, and the inner hole allows the guide rod to pass through.
[0024] As a further improvement of the present invention, the displacement segment of the follow-up pressing member includes:
[0025] An external cylinder is provided with a detachable limiting ring, and the limiting ring is connected to the inner wall of the cavity of the outer shell.
[0026] An internal guide tube is detachably installed inside the external tube, and the internal guide tube has a first through groove.
[0027] The upright is slidably arranged inside the built-in guide cylinder, has a second through groove on the upright, and has a connecting plate at one end of the upright;
[0028] Spring 2, one end of which is detachably mounted on the top of the upright;
[0029] An inclined plate that can pass through the first through slot and the second through slot has a linkage block one at one end and a linkage block two at the other end.
[0030] As a further improvement of the present invention, the first linkage block has a first abutting inclined surface, and the second linkage block has a second abutting inclined surface.
[0031] As a further improvement of the present invention, the trigger segment of the follow-up pressing member includes:
[0032] The pressing cylinder is slidably arranged inside the outer cylinder, and the pressing cylinder can cover the upright rod inside it. There is a protrusion inside the pressing cylinder, and the protrusion abuts against the second spring.
[0033] Both sets of contact blocks are detachably arranged on the inner wall of the pressing cylinder;
[0034] A pad, which is detachably mounted on the pressing cylinder.
[0035] As a further improvement of the present invention, the abutting block has a third abutting slope. In the initial position, the third abutting slope on one set of abutting blocks abuts against the first abutting slope, and the third abutting slope on another set of abutting blocks abuts against the second abutting slope.
[0036] In summary, the beneficial effects of the above-described technical solutions conceived by this invention compared with the prior art include:
[0037] 1. The easy-to-disassemble atomizer of the present invention can complete the conductive connection of the atomizing nozzle by arranging conductive components, avoiding the situation where the other end has poor contact and causes power failure due to the single-end elastic contact conductive connection.
[0038] 2. The easily detachable atomizer of the present invention, through the arrangement of adaptive compaction components, on the one hand, can quickly achieve insertion between the atomizer body and the outer shell, and can improve the stability of the connection between the atomizer body and the outer shell by inserting the positioning block into the pad. On the other hand, when the positioning block moves down, it can drive the follow-up pressing component to generate action. After the trigger segment has a downward movement tendency, it can trigger the displacement segment to have an upward movement tendency, and then the trigger rod has an upward movement tendency, which can quickly resist the trigger block's tendency to move to the left. When the trigger block has a leftward movement tendency, it can resist the conduction rod to continue to move outward, so as to strengthen the contact between the conduction rod and the upper ball head, and further strengthen the conductivity between the adaptive compaction component and the upper ball head, avoiding the situation where the single-end elastic contact conductive connection results in poor contact at the other end, leading to power failure.
[0039] 3. The easily detachable atomizer of the present invention, by arranging follow-up pressing components, on the one hand, can quickly force the trigger rod to move continuously upward during the upward movement of the upright, and can promptly calibrate the conductivity between the adaptive compaction component and the conductive component each time the pressing cylinder descends, avoiding the situation where a single-end elastic contact conductive connection results in poor contact at the other end and causes power failure. On the other hand, it can quickly insert the pad and the positioning block to enhance the connection between the atomizer body and the outer shell. Furthermore, when the pad and the positioning block are disconnected, and the atomizer body and the outer shell are disconnected, the second spring can be released from pressure, and the elastic force of the second spring triggers the downward movement of the contact block and the upright to return to the initial position. Finally, the stop of the inclined plate by the linkage block one and linkage block two is equivalent to driving the inclined plate to move within a small range within the first and second through slots each time, avoiding excessive compression and deformation of the conductive component due to excessive compression when the upright moves upward and the adaptive compaction component moves to the left, thus enhancing the stability of the conductive component during use. Attached Figure Description
[0040] Figure 1 This is a schematic diagram of the overall structure of the easily detachable atomizer of the present invention;
[0041] Figure 2 This is a structural schematic diagram of the easily detachable atomizer of the present invention from another perspective;
[0042] Figure 3 This is a schematic diagram of the structure of the outer shell, the adaptive compaction component, and the follow-up pressing component of the present invention when they are combined together;
[0043] Figure 4 For the present invention Figure 3 Exploded view;
[0044] Figure 5 This is a schematic diagram of the overall structure of the conductive component of the present invention;
[0045] Figure 6 This is a schematic diagram of the structure when the inner ring and the adaptive compaction component of the present invention are combined.
[0046] Figure 7 For the present invention Figure 6 Enlarged view of point A;
[0047] Figure 8 This is a schematic diagram of the overall structure of the follow-up pressing component of the present invention;
[0048] Figure 9 This is a top view of the follow-up pressing component of the present invention;
[0049] Figure 10 For the present invention Figure 9 A cross-sectional view at section AA;
[0050] Figure 11 This is a schematic diagram of the overall structure of the follow-up pressing component of the present invention.
[0051] In all the accompanying drawings, the same reference numerals denote the same technical features, specifically: 1. Outer shell; 11. Atomizer body; 12. Atomizing nozzle; 13. Inner ring; 14. Pressure rod; 15. Positioning block; 2. Conducting component; 21. Conducting post; 22. Lower plate; 23. Lower ball head; 24. Through rod; 25. Upper plate; 26. Upper ball head; 3. Adaptive compaction component; 31. Conducting plate; 32. Conducting rod; 33. Displacement rod; 34. 1. Spring 1; 35. Trigger block; 36. Trigger ramp; 37. Trigger rod; 38. Trigger wheel; 4. Follow-up pressing component; 41. External cylinder; 42. Limiting ring; 43. Pressing cylinder; 44. Pad block; 45. Abutment block; 46. Internal guide cylinder; 461. First through slot; 47. Upright rod; 471. Connecting plate; 472. Second through slot; 48. Spring 2; 49. Inclined plate; 491. Linkage block 1; 492. Linkage block 2. Detailed Implementation
[0052] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0053] The terminology used herein is for the purpose of describing particular embodiments only and is not intended to limit the invention. The terms “comprising,” “including,” etc., as used herein indicate the presence of the stated features, steps, operations, and / or components, but do not exclude the presence or addition of one or more other features, steps, operations, or components.
[0054] All terms used herein (including technical and scientific terms) have the meanings commonly understood by those skilled in the art, unless otherwise defined. It should be noted that the terms used herein are to be interpreted in a manner consistent with the context of this specification, and not in an idealized or overly rigid way.
[0055] In the embodiments, by Figure 1-11 Provided is an easily detachable atomizer, comprising: a housing 1 having a cavity inside; an atomizer body 11 having an atomizing nozzle 12, an inner ring 13 and a pressure rod 14 within the atomizer body 11; a connecting member 2 removably disposed within the atomizer body 11, one end of the connecting member 2 communicating with the atomizing nozzle 12; an adaptive compaction member 3 detachably disposed within the atomizing nozzle 12, capable of forcing the adaptive compaction member 3 to communicate with the connecting member 2 when the adaptive compaction member 3 tends to move towards the inner ring 13; and a follow-up pressing member 4, comprising a displacement segment connected to the inner wall of the cavity of the housing 1 and a trigger segment slidably connected to the displacement segment; wherein, when the trigger segment tends to move downward, it can trigger the displacement segment to move upward, thereby forcing the adaptive compaction member 3 to communicate with the connecting member 2.
[0056] The overall concept behind this invention is that by arranging the conductive component 2, the conductive connection of the atomizing nozzle 12 can be completed, avoiding the situation where the other end has poor contact and causes power failure due to the single end elastically resisting the conductive connection.
[0057] By deploying the adaptive compaction component 3, on the one hand, it can quickly achieve insertion between the atomizer body 11 and the outer shell 1, and the positioning block 15 can be inserted into the pad block 44 to improve the stability of the connection between the atomizer body 11 and the outer shell 1. On the other hand, when the positioning block 15 moves down, it can drive the follow-up pressing component 4 to move. After the trigger segment has a downward movement tendency, it can trigger the displacement segment to have an upward movement tendency, and then the trigger rod 37 has an upward movement tendency, which can quickly resist the trigger block 35 to have a leftward movement tendency. When the trigger block 35 has a leftward movement tendency, it can resist the conduction rod 32 to continue to move outward, so as to strengthen the contact between the conduction rod 32 and the upper ball head 26, which can further strengthen the conductivity between the adaptive compaction component 3 and the upper ball head 26, avoiding the situation where the single end elastically resists the conductive connection and the other end has poor contact leading to power failure.
[0058] By arranging the follow-up pressing component 4, on the one hand, it can quickly force the trigger rod 37 to move continuously upward during the upward movement of the upright rod 47. This allows for timely calibration of the conductivity between the adaptive compaction component 3 and the conductive component 2 each time the pressing cylinder 43 descends, avoiding a situation where a single-end elastic contact leads to poor contact and power failure at the other end. On the other hand, it allows for quick insertion between the pad 44 and the positioning block 15, enhancing the connection between the atomizer body 11 and the outer shell 1. Furthermore, it prevents the atomizer from disengaging when the pad 44 and the positioning block 15 are disconnected. After the atomizer body 11 is disconnected from the outer shell 1, the spring 48 loses its pressure. The elastic force of the spring 48 triggers the contact block 45 to move down and the upright rod 47 to move back to the initial position. Finally, the inclined plate 49 is stopped by the linkage block 491 and the linkage block 492. This means that the inclined plate 49 is driven to move within a small range within the first through groove 461 and the second through groove 472 each time. This avoids excessive compression by moving the upright rod 47 up and the adaptive compaction component 3 to the left, which would cause excessive compression and deformation of the conductive component 2. This enhances the stability of the conductive component 2 during use.
[0059] In some embodiments, more specifically, a positioning block 15 is provided on the pressure rod 14, and the positioning block 15 is arranged along the center of the cross-sectional circle of the pressure rod 14.
[0060] Next, a more specific structure and construction of the conductive component 2 will be given for further explanation. The conductive component 2 includes: a conductive post 21, which has a sliding cavity and a built-in spring inside the sliding cavity; a lower plate 22, which is detachably arranged on the conductive post 21, and has a lower ball head 23 inside the lower plate 22, and the lower ball head 23 abuts against one end of the built-in spring; a through rod 24, which is slidably arranged in the conductive post 21, and the through rod 24 abuts against the other end of the built-in spring; and an upper plate 25, which is arranged at one end of the through rod 24, and has an upper ball head 26 on the upper plate 25.
[0061] Next, the overall operating principle of the conductive component 2 will be further explained. When the conductive component 2 is installed into the inner ring 13, the lower ball head 23 can abut against the atomizing nozzle 12. During the inward retraction of the lower ball head 23, it can elastically conduct electricity with the atomizing nozzle 12. At the same time, when the upper ball head 26 and the through rod 24 retract, they can simultaneously abut against the built-in spring and compress, so that the upper ball head 26 tends to elastically abut against the self-adaptive compaction component 3. Through the conductive component 2, the conductive connection of the atomizing nozzle 12 can be completed, avoiding the situation where the other end has poor contact and causes power failure due to a single-end elastic abutment conductive connection.
[0062] Next, a more specific structure and construction of the adaptive compaction component 3 will be given for further explanation. The adaptive compaction component 3 includes: a guide plate 31 located inside the inner ring 13, with a guide rod 32 at one end of the guide plate 31, and the guide rod 32 can pass through the inner ring 13; a displacement rod 33 disposed on the guide plate 31, and the displacement rod 33 passes into the inner ring 13, with a spring 34 on the displacement rod 33; a trigger block 35 disposed on one side of the guide plate 31, with a trigger ramp 36 on the trigger block 35; and a trigger rod 37 located below the trigger ramp 36, with a trigger wheel 38 on the trigger rod 37.
[0063] Next, the overall usage principle and effect of the adaptive compaction component 3 will be further explained. When the atomizer body 11 moves down, on the one hand, it can quickly achieve insertion between the atomizer body 11 and the outer shell 1, and the positioning block 15 can be inserted into the pad block 44 to improve the stability of the connection between the atomizer body 11 and the outer shell 1. On the other hand, when the positioning block 15 moves down, it can drive the follow-up pressing component 4 to move. After the trigger segment has a downward movement tendency, it can trigger the displacement segment to have an upward movement tendency, and then the trigger rod 37 has an upward movement tendency, which can quickly contact the trigger block 35 to have a leftward movement tendency. When the trigger block 35 has a leftward movement tendency, it can contact the conduction rod 32 to continue to move outward, so as to strengthen the contact between the conduction rod 32 and the upper ball head 26, which can further strengthen the conductivity between the adaptive compaction component 3 and the upper ball head 26, avoiding the situation where the single end elastic contact conductive connection is poorly contacted and the other end is disconnected.
[0064] Further explanation is needed regarding the displacement rod 33 and spring 34. When the conductor plate 31 moves outward, that is, when the conductor plate 31 moves to the left, the displacement rod 33 can pass into the inner ring 13, which can enhance the stability of the conductor plate 31 when it moves outward. After the spring 34 loses the pressure of the trigger wheel 38, the reaction force of the spring 34 can reset the conductor plate 31 to the initial position.
[0065] In some embodiments, more specifically, in the initial state, the trigger wheel 38 and the trigger ramp 36 abut against each other, and the trigger wheel 38 is located at the lowest point of the trigger ramp 36. When the trigger wheel 38 moves upward, it can drive the conductor plate 31 to move towards the inner wall of the inner ring 13.
[0066] In some embodiments, in order to enable the conductor rod 32 to pass quickly through the inner ring 13, an inner hole is provided on the inner wall of the inner ring 13, and the inner hole allows the conductor rod 32 to pass through.
[0067] Next, a more specific structure and construction of the follow-up pressing component 4 will be given for further explanation. The displacement section of the follow-up pressing component 4 includes: an outer cylinder 41, on which a limiting ring 42 is detachably arranged, and the limiting ring 42 is connected to the inner wall of the cavity of the outer shell 1; an inner guide cylinder 46, which is detachably arranged inside the outer cylinder 41, and has a first through groove 461; a vertical rod 47, which is slidably arranged inside the inner guide cylinder 46, and has a second through groove 472, and has a connecting plate 471 at one end of the vertical rod 47; and a spring 48, one end of which is detachably arranged... Located at the top of the upright 47; an inclined plate 49, which can pass through the first through slot 461 and the second through slot 472, has a linkage block 491 at one end of the inclined plate 49 and a linkage block 492 at the other end of the inclined plate 49; the trigger section of the follow-up pressing member 4 includes: a pressing cylinder 43, which is slidably arranged inside the outer cylinder 41, and the pressing cylinder 43 can cover the upright 47 inside it; a protrusion is provided inside the pressing cylinder 43, and the protrusion abuts against the spring 48; two sets of abutting blocks 45, which are detachably arranged on the inner wall of the pressing cylinder 43; and a pad block 44, which is detachably installed on the pressing cylinder 43.
[0068] Next, the overall operating principle and effect of the follow-up pressing component 4 will be further explained. When the pressing rod 14 moves down, it can drive the pressing cylinder 43 to move down. When the pressing cylinder 43 moves down, it can abut against the abutting block 45. Since the abutting block 45 initially abuts against the first linkage block 491 and the second linkage block 492 respectively, when the abutting block 45 moves down, it can abut against the first linkage block 491 and the inclined plate 49 to move to the left. When the first linkage block 491 moves to the left, it can lift the upright rod 47 upward through the inclined plate 49. On the one hand, it can quickly force the trigger rod 37 to move upward continuously during the upward movement of the upright rod 47. It can promptly calibrate the conduction between the adaptive compaction component 3 and the conductive component 2 each time the pressing cylinder 43 descends, avoiding single-end elastic abutment conductive connection and poor contact at the other end. In the event of a power outage, on the other hand, the pad 44 and the positioning block 15 can be quickly connected to enhance the connection between the atomizer body 11 and the outer shell 1. Furthermore, when the pad 44 and the positioning block 15 are disconnected, and the atomizer body 11 and the outer shell 1 are disconnected, the spring 48 can be released from pressure. The elastic force of the spring 48 triggers the abutment block 45 to move down and the upright rod 47 to move back to the initial position. Finally, the stop of the inclined plate 49 by the linkage block 491 and the linkage block 492 is equivalent to driving the inclined plate 49 to move within a small range within the first through groove 461 and the second through groove 472 each time, avoiding excessive compression by the upright rod 47 moving up and the adaptive compaction member 3 moving left, which would cause excessive compression and deformation of the conductive member 2, thus enhancing the stability of the conductive member 2 during use.
[0069] It should also be noted that the connecting plate 471 is connected to the trigger rod 37. The operating principle and power supply principle of the atomizing nozzle 12 are known technologies in the prior art, and the electrical connection between the trigger block 35 and the battery are also known principles in the prior art. Therefore, they will not be described in detail in this application.
[0070] In some embodiments, more specifically, a first abutting slope is provided on the first linkage block 491, and a second abutting slope is provided on the second linkage block 492.
[0071] In some embodiments, more specifically, the abutting block 45 has a third abutting slope, and in the initial position, the third abutting slope on one set of abutting blocks 45 abuts against the first abutting slope, and the third abutting slope on another set of abutting blocks 45 abuts against the second abutting slope.
[0072] In summary, the conductive component 2 ensures the conductive connection of the atomizing nozzle 12, preventing power outages caused by poor contact at one end due to elastic contact during conductive connection. The adaptive compaction component 3 facilitates rapid insertion between the atomizer body 11 and the outer shell 1, and improves the stability of the connection between the atomizer body 11 and the outer shell 1 by inserting the positioning block 15 into the pad 44. Furthermore, as the positioning block 15 moves downward, it drives the follow-up pressing component 4 to actuate, triggering a downward movement. Following the trend of movement, the displacement segment can be triggered to move upward, which in turn triggers rod 37 to move upward. This quickly contacts trigger block 35, which tends to move to the left. When trigger block 35 moves to the left, it contacts conducting rod 32 to continue moving outward, thus strengthening the contact between conducting rod 32 and upper ball head 26. This further enhances the conductivity between adaptive compaction component 3 and upper ball head 26, avoiding a situation where a single-end elastic contact conductive connection results in poor contact at the other end, leading to power failure. By deploying follow-up pressing component 4... On the one hand, it can quickly force the trigger rod 37 to move continuously upward during the upward movement of the upright rod 47, and can promptly calibrate the conductivity between the adaptive compaction component 3 and the conductive component 2 each time the pressing cylinder 43 descends, avoiding the situation where a single-end elastic contact conductive connection results in poor contact at the other end and causes a power outage. On the other hand, it can quickly insert the pad 44 and the positioning block 15 to enhance the connection between the atomizer body 11 and the outer shell 1. Furthermore, when the pad 44 and the positioning block 15 are disengaged, the atomizer body... After the connection between 11 and the outer shell 1 is broken, the second spring 48 can be released from pressure. The elastic force of the second spring 48 triggers the abutment block 45 to move down and the upright rod 47 to move back to the initial position. Finally, the inclined plate 49 is stopped by the first linkage block 491 and the second linkage block 492. This means that the inclined plate 49 is driven to move within a small range in the first through groove 461 and the second through groove 472 each time. This avoids excessive compression by moving the upright rod 47 up and the adaptive compaction member 3 to the left, which would cause excessive compression and deformation of the conductive member 2. This enhances the stability of the conductive member 2 during use.
[0073] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. An easily detachable atomizer, characterized in that, It includes: An outer shell containing a cavity; The atomizer body has an atomizing nozzle, and the atomizer body has an inner ring and a pressure rod. A connecting component is removably disposed within the atomizer body, and one end of the connecting component is connected to the atomizing nozzle. An adaptive compaction component is detachably installed inside the atomizing nozzle. When the adaptive compaction component tends to move towards the inner ring, it can force the adaptive compaction component to connect with the conducting component. as well as: The follow-up pressing component consists of a displacement section connected to the inner wall of the outer shell cavity and a trigger section slidably connected to the displacement section; Specifically, when the trigger segment has a downward tendency, it can trigger the displacement segment to have an upward tendency, thereby forcing the adaptive compaction member to connect with the conducting member. The displacement segment of the follow-up pressing component includes: An external cylinder is provided with a detachable limiting ring, and the limiting ring is connected to the inner wall of the cavity of the outer shell. An internal guide tube is detachably installed inside the external tube, and the internal guide tube has a first through groove. The upright is slidably arranged inside the built-in guide cylinder, has a second through groove on the upright, and has a connecting plate at one end of the upright; Spring 2, one end of which is detachably mounted on the top of the upright; An inclined plate that can pass through the first through slot and the second through slot has a linkage block one at one end and a linkage block two at the other end of the inclined plate. The trigger segment of the follow-up pressing component includes: The pressing cylinder is slidably arranged inside the outer cylinder, and the pressing cylinder can cover the upright rod inside it. There is a protrusion inside the pressing cylinder, and the protrusion abuts against the second spring. Both sets of contact blocks are detachably arranged on the inner wall of the pressing cylinder; A pad, which is detachably mounted on the pressing cylinder.
2. The easily detachable atomizer according to claim 1, characterized in that, The pressure bar has a positioning block, and the positioning block is arranged along the center of the cross-sectional circle of the pressure bar.
3. The easily detachable atomizer according to claim 2, characterized in that, The conductive component includes: A conductive post has a sliding cavity inside, and a built-in spring is located inside the sliding cavity; The lower plate is detachably mounted on the guide post, and has a lower ball head inside the lower plate, which abuts against one end of the built-in spring. A through rod is slidably arranged inside the guide post, and the other end of the through rod abuts against the built-in spring; The upper plate is located at one end of the through rod and has an upper ball head.
4. The easily detachable atomizer according to claim 3, characterized in that, The adaptive compaction component includes: A conductive plate is located inside the inner ring, and a conductive rod is provided at one end of the conductive plate, and the conductive rod can pass through the inner ring; A displacement rod is disposed on the guide plate and passes through the inner ring, and a spring is provided on the displacement rod; A trigger block is disposed on one side of the conductive plate, and a trigger ramp is provided on the trigger block; A trigger rod, located below the trigger ramp, has a trigger wheel on it.
5. The easily detachable atomizer according to claim 4, characterized in that, in, In the initial state, the trigger wheel and the trigger ramp are in contact with each other, and the trigger wheel is located at the lowest point of the trigger ramp. When the trigger wheel moves upward, it can drive the guide plate to move towards the inner wall of the inner ring.
6. The easily detachable atomizer according to claim 5, characterized in that, The inner wall of the inner ring also has an inner hole, through which the guide rod can pass.
7. The easily detachable atomizer according to claim 6, characterized in that, The first linkage block has a first abutting inclined surface, and the second linkage block has a second abutting inclined surface.
8. The easily detachable atomizer according to claim 7, characterized in that, The abutting block has a third abutting slope. In the initial position, the third abutting slope on one set of abutting blocks abuts against the first abutting slope, and the third abutting slope on another set of abutting blocks abuts against the second abutting slope.
Citation Information
Patent Citations
Precise insulin aerosolization and respiratory system aerosolization device
CN113304361A
Uniform deodorizing liquid atomization device for deodorizer
CN221888820U