Atomizer easy to disassemble and assemble

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 housing is solved, achieving rapid and flexible electrical connection and stable conductivity, thus avoiding poor contact and power outage.

CN121198531AActive Publication Date: 2025-12-26XIAMEN FLYMAN TECH LTD
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Patent Information

Application Number
CN202511773880.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-11-28
Publication Date
2025-12-26
Estimated Expiration
2045-11-28

AI Technical Summary

Technical Problem

The connection between the existing atomizer nozzle and the contact is prone to loosening or poor contact, leading to power outages.

Method used

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 housing is achieved, ensuring stable conductivity.

Benefits of technology

This avoids the problems of poor contact and power failure caused by single-head elastic contact conductive connection, and enhances the connection stability and reliability of the atomizer.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses an atomizer easy to disassemble and assemble, and belongs to the field of atomizers. The atomizer body is provided with an atomizing nozzle, and an inner ring and a pressing rod are arranged in the atomizer body; the conduction component is arranged in the atomizer body in a removable manner, and one end of the conduction component is communicated with the atomizing nozzle; the self-adaptive compaction component is detachably arranged in the atomization spray head, and when the self-adaptive compaction component tends to move towards the inner ring, the self-adaptive compaction component can be forced to be conducted with the conduction component; the follow-up pressing component is composed of a displacement section connected to the inner wall of the containing cavity of the outer shell and a trigger section connected with the displacement section in a sliding mode. According to the atomizer easy to disassemble and assemble, conductive connection of the atomizing nozzle can be completed, and the situation that a single end elastically abuts against conductive connection, and power failure is caused by poor contact of the other end is avoided.
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Description

TECHNICAL FIELD

[0001] The present application belongs to the field of atomizers, in particular to an easy-to-disassemble atomizer. BACKGROUND

[0002] In the prior art, the contact of the atomizer nozzle on the market can only be elastically connected at one end, and the other end is hard contact. In the process of action, it is either too tight or loose contact after a long time of use. How to ensure that the atomizer nozzle and the atomizer shell can be quickly and elastically connected with the two ends of the contact has become a technical problem to be solved.

[0003] The present application attempts to alleviate or at least mitigate such problems or deficiencies by providing a new or otherwise improved atomizer. SUMMARY

[0004] In view of one or more of the above deficiencies or improvement needs of the prior art, the present application provides an easy-to-disassemble atomizer, which has the advantage of being able to ensure that the atomizer nozzle and the atomizer shell can be quickly and elastically connected with the two ends of the contact.

[0005] To achieve the above-mentioned purpose, the present application provides an easy-to-disassemble atomizer, which comprises an outer shell having a cavity therein; an atomizer body having an atomizing nozzle thereon, an inner ring and a pressing rod in the atomizer body; a conduction member removably disposed in the atomizer body, one end of the conduction member being in conduction with the atomizing nozzle; an adaptive compaction member detachably disposed in the atomizing nozzle, when the adaptive compaction member has a tendency to move towards the inner ring, the adaptive compaction member is forced to be in conduction with the conduction member; and a follow-up pressing member composed of a displacement segment connected to the inner wall of the cavity of the outer shell and a trigger segment slidingly connected with the displacement segment; wherein when the trigger segment has a tendency to move downward, the displacement segment is triggered to have a tendency to move upward, so as to force the adaptive compaction member to be in conduction with the conduction member.

[0006] As a further improvement of the present application, the pressing rod has a positioning block, and the positioning block is disposed along the center of the cross-sectional circle of the pressing rod.

[0007] As a further improvement of the present application, the conduction member comprises: a conduction column having a sliding cavity therein, the sliding cavity having an internal spring therein; A lower disc is detachably arranged on the conducting post, and a lower ball head is arranged in the lower disc, and the lower ball head is in contact with one end of the built-in spring; A penetrating rod is slidably arranged in the conducting post, and the penetrating rod is in contact with the other end of the built-in spring; An upper disc is arranged on one end of the penetrating rod, and an upper ball head is arranged on the upper disc.

[0008] As a further improvement of the present application, the self-adapting compacting member comprises: A conducting plate is arranged in the inner ring, and a conducting post is arranged on one end of the conducting plate, and the conducting post can penetrate the inner ring; A displacement rod is arranged on the conducting plate, and the displacement rod penetrates into the inner ring, and a spring one is arranged on the displacement rod; A trigger block is arranged on one side of the conducting plate, and a trigger inclined surface is arranged on the trigger block; A trigger post is arranged below the trigger inclined surface, and a trigger wheel is arranged on the trigger post.

[0009] As a further improvement of the present application, in the initial state, the trigger wheel is in contact with the trigger inclined surface, and the trigger wheel is located at the lowest point of the trigger inclined surface, and after the trigger wheel is moved upward, the conducting plate is driven to move towards the inner wall of the inner ring.

[0010] As a further improvement of the present application, an inner hole is further arranged on the inner wall of the inner ring, and the inner hole can be penetrated by the conducting post.

[0011] As a further improvement of the present application, the follow-up pressing member has a displacement section comprising: An outer cylinder is detachably arranged with a limiting ring, and the limiting ring is connected with the inner wall of the cavity of the outer shell; An inner guide cylinder is detachably arranged in the outer cylinder, and a first penetrating slot is arranged on the inner guide cylinder; A vertical rod is slidably arranged in the inner guide cylinder, and a second penetrating slot is arranged on the vertical rod, and a connecting plate is arranged on the tail end of the vertical rod; A spring two is detachably arranged on the top end of the vertical rod; An inclined plate can penetrate the first penetrating slot and the second penetrating slot, and a linkage block one is arranged on the tail end of the inclined plate, and a linkage block two is arranged on the other tail end of the inclined plate.

[0012] As a further improvement of the present application, a first contact inclined surface is arranged on the linkage block one, and a second contact inclined surface is arranged on the linkage block two.

[0013] As a further improvement of the present application, the follow-up pressing member has a trigger section comprising: A pressing cylinder is slidably arranged in the outer cylinder, and the pressing cylinder can cover the vertical rod therein, a protrusion is arranged in the pressing cylinder, and the protrusion is in contact with the spring; Two groups of contact blocks are detachably arranged on the inner wall of the pressing cylinder; A pad is detachably mounted on the pressing cylinder.

[0014] As a further improvement of the present application, a third contact slope is arranged on the contact block, and in the initial position, the third contact slope on one group of contact blocks is in contact with the first contact slope, and the third contact slope on the other group of contact blocks is in contact with the second contact slope.

[0015] Overall, compared with the prior art, the above technical solutions conceived by the present application have the following beneficial effects: 1. The easy-to-disassemble atomizer of the present application can complete the conductive connection of the atomizing nozzle by arranging the conductive member, avoiding single-head elastic contact conductive connection and the occurrence of poor contact at the other end leading to power failure. 2. The easy-to-disassemble atomizer of the present application, by arranging the self-adaptive compacting member, on the one hand, can quickly realize the 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 the positioning block penetrating into the pad, on the other hand, during the downward movement of the positioning block, the follow-up pressing member can be driven to move, after the trigger section has a downward movement trend, the displacement section can be triggered to have an upward movement trend, and then the trigger rod can have an upward movement trend, which can quickly contact the trigger block to have a leftward movement trend, after the trigger block has a leftward movement trend, the conductive rod can be continuously moved outward to strengthen the contact between the conductive rod and the upper ball head, further strengthening the conductive connection between the self-adaptive compacting member and the upper ball head, avoiding single-head elastic contact conductive connection and the occurrence of poor contact at the other end leading to power failure. 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

[0016] Figure 1 This is a schematic diagram of the overall structure of the easily detachable atomizer of the present invention; Figure 2 This is a structural schematic diagram of the easily detachable atomizer of the present invention from another perspective; 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; Figure 4 For the present invention Figure 3 Exploded view; Figure 5 This is a schematic diagram of the overall structure of the conductive component of the present invention; 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. Figure 7 For the present invention Figure 6 Enlarged view of point A; Figure 8 This is a schematic diagram of the overall structure of the follow-up pressing component of the present invention; Figure 9 This is a top view of the follow-up pressing component of the present invention; Figure 10 For the present invention Figure 9 A cross-sectional view at section AA; Figure 11 This is a schematic diagram of the overall structure of the follow-up pressing component of the present invention.

[0017] In all the drawings, the same reference signs refer to the same technical features, specifically: 1, outer shell; 11, atomizer body; 12, atomizing nozzle; 13, inner ring; 14, pressing rod; 15, positioning block; 2, conductive member; 21, conductive column; 22, lower disc; 23, lower ball head; 24, through rod; 25, upper disc; 26, upper ball head; 3, self-adaptive compaction member; 31, conductive plate; 32, conductive rod; 33, displacement rod; 34, spring one; 35, trigger block; 36, trigger inclined surface; 37, trigger rod; 38, trigger wheel; 4, follow-up pressing member; 41, external cylinder; 42, limiting ring; 43, pressing cylinder; 44, pad block; 45, abutting block; 46, internal guide cylinder; 461, first through slot; 47, vertical rod; 471, connecting plate; 472, second through slot; 48, spring two; 49, inclined plate; 491, linkage block one; 492, linkage block two. DETAILED DESCRIPTION

[0018] The technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all the other embodiments obtained by those skilled in the art without creative work fall within the scope of protection of the present application.

[0019] The terms used herein are only used for describing the specific embodiments, and are not intended to limit the present application. The terms "comprise", "contain", and the like used herein indicate the existence of the described features, steps, operations and / or components, but do not exclude the existence or addition of one or more other features, steps, operations or components.

[0020] All the terms used herein (including technical and scientific terms) have the meanings generally understood by those skilled in the art, unless otherwise defined. It should be noted that the terms used herein should be interpreted to have meanings consistent with the context of the present specification, and should not be interpreted in an idealized or overly stereotyped manner.

[0021] In the embodiments, by Figures 1-11The application discloses an easy-to-disassemble atomizer which comprises an outer shell 1 with a cavity, an atomizer body 11 with an atomizing nozzle 12, an inner ring 13 and a pressing rod 14 in the atomizer body 11, a conducting member 2 arranged in the atomizer body 11 and removed, one end of the conducting member 2 being in mutual conduction with the atomizing nozzle 12, an adaptive compacting member 3 arranged in the atomizing nozzle 12, the adaptive compacting member 3 being forced to be in conduction with the conducting member 2 when the adaptive compacting member 3 has a movement tendency towards the inner ring 13, and a follow-up pressing member 4 comprising a displacement section connected to the inner wall of the cavity of the outer shell 1 and a trigger section in sliding connection with the displacement section, wherein when the trigger section has a downward movement tendency, the displacement section is triggered to have an upward movement tendency, so as to force the adaptive compacting member 3 to be in conduction with the conducting member 2.

[0022] One overall idea of the application is that the conducting connection of the atomizing nozzle 12 can be achieved by arranging the conducting member 2, so as to avoid the single-head elastic conduction connection and the power-off caused by poor contact of the other end. The adaptive compacting member 3 arranged in the atomizing nozzle 12 can be quickly inserted between the atomizer body 11 and the outer shell 1, and the positioning block 15 can be inserted into the pad 44 to improve the stability of the connection between the atomizer body 11 and the outer shell 1, and in the process of moving downward of the positioning block 15, the follow-up pressing member 4 can be driven to move, the trigger section has a downward movement tendency, the displacement section is triggered to have an upward movement tendency, the trigger rod 37 has an upward movement tendency, the trigger block 35 has a leftward movement tendency, the conducting rod 32 is continuously moved outward, the conducting rod 32 is in conduction with the upper ball head 26, the conduction between the adaptive compacting member 3 and the upper ball head 26 is further strengthened, the single-head elastic conduction connection is avoided, and the power-off caused by poor contact of the other end is avoided. By arranging the follow-up pressing member 4, on the one hand, the trigger rod 37 can be quickly forced to continuously move upward during the movement of the stand rod 47, and the conduction between the self-adaptive compacting member 3 and the conducting member 2 can be timely calibrated after the pressing cylinder 43 is lowered each time, avoiding single-head elastic resistance to conductive connection, and the other end head appears poor contact and causes power failure. On the other hand, the quick insertion between the cushion block 44 and the positioning block 15 can enhance the connection between the atomizer body 11 and the outer shell 1. On the other hand, after the connection between the cushion block 44 and the positioning block 15 is disconnected, the connection between the atomizer body 11 and the outer shell 1 is disconnected, the spring 48 loses the pressure, and the trigger resistance block 45 is triggered to move downward by the elastic force of the spring 48, and the stand rod 47 moves 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 in a small range in the first slot 461 and the second slot 472 each time, avoiding excessive extrusion of the self-adaptive compacting member 3 to the left of the conducting member 2, and enhancing the stability of the conducting member 2 in use.

[0023] In some embodiments, more specifically, the positioning block 15 is arranged on the pressing rod 14 along the center of the cross-sectional circle of the pressing rod 14.

[0024] Then the conducting member 2 is further explained and described in a more specific structure and configuration. The conducting member 2 includes: a conducting column 21 with a sliding cavity inside, and an internal spring in the sliding cavity; a lower disc 22 detachably arranged on the conducting column 21, with a lower ball head 23 in the lower disc 22, and the lower ball head 23 in contact with one end of the internal spring; a through rod 24 slidably arranged in the conducting column 21, and the through rod 24 in contact with the other end of the internal spring; and an upper disc 25 arranged on one end of the through rod 24, with an upper ball head 26 on the upper disc 25. Then the principle of use of the conducting member 2 is further explained and described. After the conducting member 2 is installed into the inner ring 13, the lower ball head 23 can be in contact with the atomizing nozzle 12, and the lower ball head 23 can be in elastic conductive connection with the atomizing nozzle 12 during the inward movement. At this time, the upper ball head 26 and the through rod 24 can simultaneously contact the internal spring during the inward movement, so that the upper ball head 26 has a tendency to elastically contact the self-adaptive compacting member 3. The conducting member 2 can complete the conductive connection of the atomizing nozzle 12, avoid single-head elastic resistance to conductive connection, and the other end head appears poor contact and causes power failure.

[0025] Next, the adaptive compaction member 3 as a whole is endowed with a more specific structure and configuration to further explain and illustrate, the adaptive compaction member 3 includes: a lead-through plate 31 located in the inner ring 13, having a lead-through rod 32 at one end of the lead-through plate 31, and the lead-through rod 32 can pass through the inner ring 13; a displacement rod 33 arranged on the lead-through plate 31, and the displacement rod 33 penetrates into the inner ring 13, having a spring one 34 on the displacement rod 33; a trigger block 35 arranged on one side of the lead-through plate 31, having a trigger slope 36 on the trigger block 35; a trigger rod 37 located below the trigger slope 36, having a trigger wheel 38 on the trigger rod 37; Next, the principle and effect of the use of the adaptive compaction member 3 as a whole are further explained and illustrated. After the atomizer body 11 moves down, on the one hand, the insertion between the atomizer body 11 and the outer shell 1 can be quickly achieved, and the stability of the connection between the atomizer body 11 and the outer shell 1 can be improved by the positioning block 15 penetrating into the pad 44. On the other hand, during the process of the positioning block 15 moving down, the follow-up pressing member 4 can be driven to act, and after the trigger section has a downward movement trend, the displacement section can be triggered to have an upward movement trend, and then the trigger rod 37 has a upward movement trend, which can quickly resist the trigger block 35 to have a leftward movement trend. When the trigger block 35 has a leftward movement trend, the lead-through rod 32 can continue to move outward to resist the upper ball head 26, which can further strengthen the conductive condition between the adaptive compaction member 3 and the upper ball head 26, avoiding the single-head elastic resistance to the conductive connection, and the other end head contact failure leading to power failure; The displacement rod 33 and the spring one 34 also need to be further explained and illustrated. During the process of the lead-through plate 31 moving outward, that is, during the process of the lead-through plate 31 moving leftward, the displacement rod 33 can penetrate into the inner ring 13, which can strengthen the stability of the lead-through plate 31 during the outward movement. After the spring one 34 loses the extrusion of the trigger wheel 38, the lead-through plate 31 can be reset to the initial position by the reaction force of the spring one 34.

[0026] In some embodiments, more specifically, in the initial state, the trigger wheel 38 and the trigger slope 36 resist each other, and the trigger wheel 38 is located at the lowest point of the trigger slope 36. After the trigger wheel 38 moves upward, the lead-through plate 31 can be driven to have a movement trend toward the inner wall of the inner ring 13.

[0027] In some embodiments, in order to enable the lead-through rod 32 to quickly pass through the inner ring 13, the inner wall of the inner ring 13 also has an inner hole, and the inner hole can be passed through by the lead-through rod 32.

[0028] Next, the whole follow-up pressing member 4 is endowed with a more specific structure and configuration to further explain and illustrate, the displacement section of the follow-up pressing member 4 includes: the outer cylinder 41, which is detachably arranged with a limiting ring 42, and the limiting ring 42 is connected with the inner wall of the cavity of the shell 1; the inner guide cylinder 46 is detachably arranged in the outer cylinder 41, and the inner guide cylinder 46 has a first slot 461; the vertical rod 47 is slidably arranged in the inner guide cylinder 46, and the vertical rod 47 has a second slot 472, and the vertical rod 47 has a connecting plate 471 at one end; the spring 48 is detachably arranged at the top end of the vertical rod 47; the inclined plate 49 can pass through the first slot 461 and the second slot 472, and the inclined plate 49 has a linkage block one 491 at one end, and the inclined plate 49 has a linkage block two 492 at the other end; the trigger section of the follow-up pressing member 4 includes: the pressing cylinder 43 is slidably arranged in the outer cylinder 41, and the pressing cylinder 43 can cover the vertical rod 47, and the pressing cylinder 43 has a protrusion, and the protrusion is in contact with the spring 48; two groups of contact blocks 45 are detachably arranged on the inner wall of the pressing cylinder 43; the pad 44 is detachably mounted on the pressing cylinder 43.

[0029] Next, the whole follow-up pressing member 4 is endowed with a more specific structure and configuration to further explain and illustrate, the displacement section of the follow-up pressing member 4 includes: the outer cylinder 41, which is detachably arranged with a limiting ring 42, and the limiting ring 42 is connected with the inner wall of the cavity of the shell 1; the inner guide cylinder 46 is detachably arranged in the outer cylinder 41, and the inner guide cylinder 46 has a first slot 461; the vertical rod 47 is slidably arranged in the inner guide cylinder 46, and the vertical rod 47 has a second slot 472, and the vertical rod 47 has a connecting plate 471 at one end; the spring 48 is detachably arranged at the top end of the vertical rod 47; the inclined plate 49 can pass through the first slot 461 and the second slot 472, and the inclined plate 49 has a linkage block one 491 at one end, and the inclined plate 49 has a linkage block two 492 at the other end; the trigger section of the follow-up pressing member 4 includes: the pressing cylinder 43 is slidably arranged in the outer cylinder 41, and the pressing cylinder 43 can cover the vertical rod 47, and the pressing cylinder 43 has a protrusion, and the protrusion is in contact with the spring 48; two groups of contact blocks 45 are detachably arranged on the inner wall of the pressing cylinder 43; the pad 44 is detachably mounted on the pressing cylinder 43;

[0030] It is also necessary to point out that the connecting plate 471 is connected with the trigger rod 37, the use principle of the atomizing head 12 and the power supply principle are all known technologies in the prior art, and the electrical connection between the trigger block 35 and the battery is also a known principle in the prior art, so that in the present application, excessive repetition is not performed.

[0031] In some embodiments, more specifically, the first abutting inclined surface is arranged on the linkage block one 491, and the second abutting inclined surface is arranged on the linkage block two 492.

[0032] In some embodiments, more specifically, the third abutting inclined surface is arranged on the abutting block 45, and in the initial position, the third abutting inclined surface on one set of the abutting blocks 45 abuts against the first abutting inclined surface, and the third abutting inclined surface on the other set of the abutting blocks 45 abuts against the second abutting inclined surface.

[0033] In summary, through the arrangement of the conductive member 2, the conductive connection of the atomizing nozzle 12 can be completed, avoiding the single head elastic resistance to the conductive connection, and the other end head contact failure leading to power failure; through the arrangement of the self-adaptive compacting member 3, on the one hand, the atomizer body 11 and the outer shell 1 can be quickly inserted and combined, 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, in the process of the positioning block 15 moving down, the driven pressing member 4 can be driven to act, after the trigger section has a downward movement trend, the displacement section can trigger an upward movement trend, and then the lever 37 can have an upward movement trend, which can quickly resist the trigger block 35 to have a leftward movement trend, after the trigger block 35 has a leftward movement trend, the conductive rod 32 can continue to move outward to resist the contact between the conductive rod 32 and the upper ball head 26, which can further strengthen the conductive connection between the self-adaptive compacting member 3 and the upper ball head 26, avoiding the single head elastic resistance to the conductive connection, and the other end head contact failure leading to power failure; through the arrangement of the driven pressing member 4, on the one hand, the trigger lever 37 can be forced to continue to move upward during the upward movement of the stand rod 47, and the conductive connection between the self-adaptive compacting member 3 and the conductive member 2 can be timely calibrated after the pressing cylinder 43 is lowered each time, avoiding the single head elastic resistance to the conductive connection, and the other end head contact failure leading to power failure, on the other hand, the pad block 44 and the positioning block 15 can be quickly inserted to enhance the connection between the atomizer body 11 and the outer shell 1, and on the other hand, after the pad block 44 and the positioning block 15 are disconnected, the atomizer body 11 and the outer shell 1 are disconnected, the spring 48 loses the pressure, and the trigger resistance block 45 and the stand rod 47 are triggered to move downward and return to the initial position by the elastic force of the spring 48, and on the last hand, the linkage block 491 and the linkage block 492 stop the inclined plate 49, which is equivalent to driving the inclined plate 49 to move in a small range in the first slot 461 and the second slot 472 each time, avoiding excessive extrusion of the self-adaptive compacting member 3 to deform the conductive member 2 by the upward movement of the stand rod 47, and enhancing the stability of the conductive member 2 in use.

[0034] Although embodiments of the present application have been shown and described, it is to be understood that various modifications, substitutions, replacements and changes can be made to these embodiments without departing from the principles and spirit of the present application, and the scope of the present application 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

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  • Spraying and coating equipment for coated glass processing

    CN118745080A

  • Uniform deodorizing liquid atomization device for deodorizer

    CN221888820U

  • atmospheric pressure nozzle device

    KR1020150107253A

  • Rotating conductive apparatus and power socket

    WO2024217294A1