Anti-accidental-touch atomized perfume bottle convenient to operate with one hand

By incorporating a press-and-rebound mechanism and an anti-accidental-touch button into the atomizing perfume bottle, the problems of one-handed operation and accidental touch prevention are solved, improving the convenience and safety of use.

CN223860371UActive Publication Date: 2026-02-03YIWU YUNRAN IMPORT & EXPORT CO LTD
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Patent Information

Application Number
CN202520008248.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-03
Publication Date
2026-02-03
Estimated Expiration
2035-01-03

AI Technical Summary

Technical Problem

Existing atomizing perfume bottles are not convenient for one-handed operation and lack anti-accidental contact design, making it easy for perfume to spill due to accidental contact with the nozzle.

Method used

A structure including an outer shell, an inner shell, a middle shell, an atomizing dispensing bottle, and an anti-accidental touch button was designed. Through the cooperation of the press-and-rebound mechanism and the anti-accidental touch button, one-handed operation and anti-accidental touch functions are realized.

Benefits of technology

It facilitates one-handed use and prevents accidental spray nozzle contact, ensuring the safety and convenience of the perfume.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of subpackaging bottles, in particular to an anti-accidental-touch atomized perfume bottle convenient to operate with one hand. The pressing type atomizer is mainly composed of the outer shell, the inner shell, the middle shell, the atomization subpackaging bottle and the mistaken touch prevention button, when the pressing type atomizer needs to be used, the pressing type atomizer of the atomization subpackaging bottle is pressed, at the moment, due to the fact that the inner shell is not locked, pressing force can be transmitted to the pressing rebounding mechanism, the pressing rebounding mechanism drives the inner shell to rebound and rise after being pressed, and therefore the pressing type atomizer can be used. The pressing type atomizing nozzle is exposed out of the outer shell, the position of the inner shell is locked through the mistaken touch prevention button, and the pressing type atomizing nozzle can be pressed again to spray mist. When storage is needed, by pressing the button part of the pressing mistaken-touch-preventing button, the pressing mistaken-touch-preventing button relieves locking of the inner shell, after the pressing rebounding mechanism is pressed again, the inner shell can be driven to contract, the pressing type atomization spray head enters the outer shell, and mistaken touch prevention is achieved.
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Description

Technical Field

[0001] This utility model relates to the field of dispensing bottle technology, and in particular to a perfume bottle that is easy to operate with one hand and prevents accidental atomization. Background Technology

[0002] As a refined and practical everyday item, the atomizing perfume bottle serves several key functions: 1) Portability and on-the-go fragrance touch-ups: The biggest advantage of the atomizing perfume bottle is its portability. It allows you to easily carry your favorite perfume with you, enjoying the pleasure of fragrance anytime, anywhere, whether commuting, traveling for business, or on vacation. 2) Savings and environmental friendliness: Using atomizing bottles effectively reduces perfume waste. Many people may not fully utilize their perfume after purchase due to travel, inconvenience of carrying it, or other reasons, leading to its expiration or evaporation. With atomizing bottles, the remaining perfume can be properly stored and carried, extending its lifespan and demonstrating respect for and protection of the environment. 3) Maintaining perfume quality: High-quality atomizing perfume bottles typically employ a well-sealed design, effectively preventing perfume oxidation and evaporation, thus maintaining the original quality and fragrance of the perfume. This is especially important for expensive or limited-edition perfumes, ensuring your precious fragrance is properly preserved and enjoyed for a long time.

[0003] Existing atomizing perfume bottles have several shortcomings: firstly, they are not convenient for one-handed operation; secondly, they lack anti-accidental contact measures, making it easy for perfume to spill due to accidental activation of the nozzle. Therefore, their structure needs to be optimized and improved. Utility Model Content

[0004] The purpose of this invention is to overcome the aforementioned problems in traditional technologies and provide a non-accidental atomizing perfume bottle that is easy to operate with one hand.

[0005] To achieve the above-mentioned technical objectives and effects, this utility model is implemented through the following technical solution:

[0006] An easy-to-operate, accident-proof atomizing perfume bottle includes an outer shell, an inner shell, a middle shell, an atomizing dispensing bottle, and an accident-proof button. The middle shell is installed between the outer shell and the inner shell. A press-and-return mechanism is provided between the bottom of the inner shell and the bottom of the outer shell. The atomizing dispensing bottle is placed in the inner shell. The spring coefficient built into the atomizing dispensing bottle is greater than the spring coefficient of the return spring in the press-and-return mechanism. The outer shell and the middle shell together restrict the accident-proof button, which can lock the position of the inner shell when the inner shell is in the rebounded state.

[0007] Furthermore, in the aforementioned anti-accidental-touch atomizing perfume bottle designed for easy one-handed operation, the atomizing dispensing bottle includes a bottle body and a press-type atomizing nozzle.

[0008] Furthermore, in the aforementioned anti-accidental-touch atomizing perfume bottle designed for easy one-handed operation, the anti-accidental-touch button includes a locking ring, a button, and a spring, with the button and spring respectively connected to both sides of the locking ring.

[0009] Furthermore, in the aforementioned anti-accidental-touch atomizing perfume bottle designed for easy one-handed operation, the locking ring, button, and spring are an integral structure made of plastic or metal.

[0010] Furthermore, in the aforementioned anti-accidental-touch atomizing perfume bottle that is easy to operate with one hand, the side end of the outer shell is provided with a pressing hole that mates with the button part of the anti-accidental-touch button, and the cross-sectional shape of the inner cavity of the outer shell matches the shape of the pressing atomizing nozzle of the atomizing dispensing bottle.

[0011] Furthermore, in the aforementioned anti-accidental-touch atomizing perfume bottle that is easy to operate with one hand, the intermediate shell includes an intermediate shell body. The upper part of the intermediate shell body is provided with a side mounting groove for easy installation of the anti-accidental-touch button. The upper and lower side plates of the intermediate shell body located in the side mounting groove are provided with lifting through holes for easy lifting of the inner shell. The outer port of the intermediate shell body located in the side mounting groove is provided with a button storage groove that cooperates with the button part.

[0012] Furthermore, in the aforementioned anti-accidental-touch atomizing perfume bottle that is easy to operate with one hand, the inner shell includes an inner shell body, the inner shell body has a dispensing bottle receiving cavity inside, the side of the inner shell body has a locking groove that cooperates with the locking ring part of the anti-accidental-touch button, and the bottom side of the inner shell body located at the dispensing bottle receiving cavity has a pressure relief groove.

[0013] Furthermore, in the aforementioned anti-accidental-touch atomizing perfume bottle that is easy to operate with one hand, the inner shell body is provided with a horizontal plate at the bottom end of the dispensing bottle receiving cavity, the inner shell body is provided with a limiting vertical plate on the outside of the dispensing bottle receiving cavity, the bottom end of the horizontal plate is provided with a side guide plate and a middle guide plate, and a limiting turning hole is provided in the middle guide plate.

[0014] Furthermore, in the aforementioned anti-accidental-touch atomizing perfume bottle designed for easy one-handed operation, the press-and-rebound mechanism includes a return spring, a pull rod, and a pull rod locking seat;

[0015] The pull rod includes a connecting plate, an upper pull rod shaft, and a lower pull rod shaft. An upper pull rod shaft that extends into a limiting rotating hole is installed on the upper inner side of the connecting plate. The outer end of the upper pull rod shaft is provided with a wide head to prevent it from arbitrarily disengaging from the limiting rotating hole. A lower pull rod shaft is installed on the lower outer side of the connecting plate.

[0016] The pull rod locking seat includes a bottom frame plate and an outer frame and an inner frame disposed thereon. The inner side wall of the outer frame is formed with a side sliding groove that cooperates with the side guide plate. The inner frame is provided with a middle sliding groove that cooperates with the middle guide plate. The inner frame is provided with a stroke control groove for limiting the displacement direction of the pull rod shaft.

[0017] The two ends of the reset spring abut against the horizontal plate and the bottom frame plate, respectively.

[0018] Furthermore, in the aforementioned anti-accidental-touch atomizing perfume bottle designed for easy one-handed operation, the stroke control groove includes a quasi-annular slide, a lower limit point, and a lower locking point. The lower limit point and the lower locking point are respectively provided on the lower and upper sides of the bottom end of the quasi-annular slide.

[0019] The beneficial effects of this utility model are:

[0020] This utility model has a reasonable structural design, mainly consisting of an outer shell, an inner shell, a middle shell, an atomizing dispensing bottle, and an anti-accidental contact button. When needed, the press-type atomizing nozzle of the dispensing bottle is pressed. Since the inner shell is not locked, and the spring coefficient inside the dispensing bottle is greater than the spring coefficient of the return spring in the press-and-return mechanism, the pressing force is transmitted to the press-and-return mechanism. The press-and-return mechanism, upon being pressed, causes the inner shell to spring back up, exposing the press-type atomizing nozzle from the outer shell. The anti-accidental contact button then locks the inner shell in place. Pressing the press-type atomizing nozzle again will activate the atomizing mechanism. When storage is required, pressing the anti-accidental contact button releases the lock on the inner shell. Upon being pressed again, the press-and-return mechanism causes the inner shell to retract, and the press-type atomizing nozzle retracts into the outer shell, thus preventing accidental contact.

[0021] Of course, any product implementing this utility model does not necessarily need to achieve all of the above advantages at the same time. Attached Figure Description

[0022] To more clearly illustrate the technical solutions of the embodiments of this utility model, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0023] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0024] Figure 2 This is a half-sectional view of the present invention after omitting the atomizing dispensing bottle and the anti-accidental touch button;

[0025] Figure 3 This is a schematic diagram of the structure of the atomizing dispensing bottle in this utility model;

[0026] Figure 4 This is a schematic diagram of the anti-accidental touch button in this utility model;

[0027] Figure 5This is a schematic diagram of the outer shell structure in this utility model;

[0028] Figure 6 This is a schematic diagram of the structure of the intermediate shell in this utility model;

[0029] Figure 7 This is a schematic diagram of the inner shell structure in this utility model;

[0030] Figure 8 This is a front view schematic diagram of the inner shell in this utility model;

[0031] Figure 9 This is a schematic diagram of the structure of this utility model with the outer shell and intermediate shell omitted;

[0032] Figure 10 This is a structural schematic diagram of the tie rod in this utility model;

[0033] Figure 11 This is a schematic diagram of the inner shell structure in this utility model;

[0034] Figure 12 This is a front view schematic diagram of the inner shell in this utility model;

[0035] In the attached diagram, the components represented by each number are as follows:

[0036] 1-Outer casing, 101-Press hole;

[0037] 2-Pull rod locking seat, 201-Bottom frame plate, 202-Outer frame, 203-Inner frame, 204-Side sliding groove, 205-Middle sliding groove, 206-Circular sliding track, 207-Lower limit point, 208-Lower locking point;

[0038] 3-Tie rod, 301-Connecting plate, 302-Upper tie rod shaft, 303-Lower tie rod shaft;

[0039] 4-Inner shell, 401-Inner shell body, 402-Dispensing bottle receiving cavity, 403-Locking groove, 404-Pressure relief groove, 405-Horizontal plate, 406-Limiting vertical plate, 407-Side guide plate, 408-Intermediate guide plate, 409-Limiting rotating hole;

[0040] 5-Intermediate shell, 501-Intermediate shell body, 502-Side mounting slot, 503-Lifting through hole, 504-Button storage slot;

[0041] 6-Atomizing dispensing bottle, 601-Bottle body, 602-Press-type atomizing nozzle;

[0042] 7-Anti-accidental touch button, 701-Locking ring part, 702-Button part, 703-Spring part. Detailed Implementation

[0043] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of the present utility model.

[0044] Example 1

[0045] like Figures 1-2 As shown, this embodiment is a convenient one-handed operation anti-accidental-touch atomizing perfume bottle, including an outer shell 1, an inner shell 4, a middle shell 5, an atomizing dispensing bottle 6, and an anti-accidental-touch button 7. The middle shell 5 is installed between the outer shell 1 and the inner shell 4. A press-and-return mechanism is provided between the bottom of the inner shell 4 and the bottom of the outer shell 1. The atomizing dispensing bottle 6 is placed inside the inner shell 4. The spring coefficient inside the atomizing dispensing bottle 6 is greater than the spring coefficient of the return spring in the press-and-return mechanism. The outer shell and the middle shell 5 together restrict the anti-accidental-touch button 7, which locks the position of the inner shell 4 when it is in the rebounded state.

[0046] like Figure 3 As shown, the atomizing dispensing bottle 6 includes a bottle body 601 and a press-type atomizing nozzle 602 with a built-in spring.

[0047] like Figure 4 As shown, the anti-accidental-touch button 7 includes a locking ring portion 701, a button portion 702, and a spring portion 703. The button portion 702 and the spring portion 703 are respectively connected to both sides of the locking ring portion 701. The locking ring portion 701, the button portion 702, and the spring portion 703 are an integral structure made of plastic or metal materials.

[0048] like Figure 5 As shown, the side end of the outer shell 1 is provided with a pressing hole 101 that cooperates with the button part 702 in the anti-accidental touch button 7, and the cross-sectional shape of the inner cavity of the outer shell 1 is matched with the shape of the pressing atomizing nozzle 602 of the atomizing dispensing bottle 6.

[0049] like Figure 6 As shown, the intermediate shell 5 includes an intermediate shell body 501. The upper part of the intermediate shell body 501 is provided with a side mounting groove 502 for easy installation of the anti-accidental button 7. The upper and lower side plates of the intermediate shell body 501 located in the side mounting groove 502 are provided with lifting through holes 503 for easy lifting of the inner shell 4. The outer port of the intermediate shell body 501 located in the side mounting groove 502 is provided with a button storage groove 504 that cooperates with the button part 702.

[0050] like Figures 7-8As shown, the inner shell 4 includes an inner shell body 401. The inner shell body 401 has a dispensing bottle receiving cavity 402 inside. The side of the inner shell body 401 has a locking groove 403 that cooperates with the locking ring part 701 in the anti-accidental contact button 7. The bottom side of the inner shell body 401 located in the dispensing bottle receiving cavity 402 has a pressure relief groove 404. The design of the pressure relief groove 404 facilitates the quick insertion of the bottle body 601 of the atomizing dispensing bottle 6 into the dispensing bottle receiving cavity 402.

[0051] In this embodiment, the inner shell body 401 is provided with a horizontal plate 405 at the bottom end of the dispensing bottle receiving cavity, and a limiting vertical plate 406 is provided on the outer side of the inner shell body 401 in the dispensing bottle receiving cavity. The limiting vertical plate 406 has two main functions. First, when the inner shell 4 is in the rebound state, the top of the limiting vertical plate 406 just abuts against the lower side plate of the side mounting groove 502, thus achieving the rebound height limit. Second, it abuts against the anti-deviation plate provided on the inner side of the intermediate shell 5, which can prevent the inner shell 4 from twisting during the rebound process.

[0052] The specific application of this embodiment is as follows: When needed, the press-type atomizing nozzle 602 of the atomizing dispensing bottle 6 is pressed manually (with the index finger of one hand). At this time, since the inner shell 4 is not locked, and the stiffness coefficient of the spring built into the atomizing dispensing bottle 6 is greater than the stiffness coefficient of the return spring in the press-return mechanism, the pressing force will be transmitted to the press-return mechanism. After being pressed, the press-return mechanism drives the inner shell 4 to spring back and rise, and the press-type atomizing nozzle 602 of the press-type atomizing dispensing bottle 6 loaded in the inner shell 4... 2. The inner shell 4 is exposed from the outer shell 1. The locking groove 403 of the inner shell 4 is raised to the locked position. The locking ring 701 in the anti-accidental contact button 7 is displaced outward under the elastic recovery of the spring piece 703 and is locked into the locking groove 403 of the inner shell 4. At this time, the position of the inner shell 4 can be locked. Then, the press-type atomizing nozzle 602 of the atomizing dispensing bottle 6 is pressed again manually. Since the inner shell 4 is locked, the pressing force will not be transmitted to the press-rebound mechanism. The press-type atomizing nozzle 602 sprays after being pressed. When storage is required, manually (with the thumb of one hand) press the button 702 of the anti-accidental contact button 7, which releases the locking ring 701 from locking the inner shell 4. Then, manually (with the index finger of one hand) press the push-type atomizing nozzle 602 of the atomizing dispensing bottle 6. Since the inner shell 4 is not locked and the stiffness coefficient of the spring built into the atomizing dispensing bottle 6 is greater than the stiffness coefficient of the return spring in the press-rebound mechanism, the pressing force will be transmitted to the press-rebound mechanism. After being pressed again, the press-rebound mechanism will cause the inner shell 4 to retract, and the push-type atomizing nozzle 602 will also enter the outer shell 1, thus preventing accidental contact.

[0053] Example 2

[0054] like Figures 9-12 As shown, the press-and-rebound mechanism includes a return spring (not shown for simplicity), a pull rod 3, and a pull rod locking seat 2.

[0055] In this embodiment, the inner shell body 401 is provided with a side guide plate 407 and a middle guide plate 408 at the bottom end of the horizontal plate 405, and a limiting rotating hole 409 is provided in the middle guide plate 408.

[0056] In this embodiment, the pull rod 3 includes a connecting plate 301, an upper pull rod shaft 302, and a lower pull rod shaft 303. The upper inner side of the connecting plate 301 is equipped with an upper pull rod shaft 302 that extends into a limiting rotating hole 409. The outer end of the upper pull rod shaft 302 is provided with a wide head to prevent it from arbitrarily disengaging from the limiting rotating hole 409. The lower outer side of the connecting plate 301 is equipped with a lower pull rod shaft 303.

[0057] In this embodiment, the pull rod locking seat 2 includes a bottom frame plate 201 and an outer frame 202 and an inner frame 203 disposed thereon. The inner sidewall of the outer frame 202 forms a side sliding groove 204 that cooperates with the side guide plate 407. The inner frame 203 is provided with a middle sliding groove 205 that cooperates with the middle guide plate 408. The bottom two sides of the middle guide plate 408 are provided with first limiting protrusions, and the top two sides of the middle sliding groove 205 are provided with second limiting protrusions. Due to the interference of the first limiting protrusions and the second limiting protrusions, the middle guide plate 408 will not arbitrarily detach from the inner frame 203. The inner frame 203 is provided with a stroke control groove for limiting the displacement direction of the pull rod shaft 303. The stroke control groove includes a quasi-annular slide 206, a lower limit point 207, and a lower locking point 208. The lower limit point 207 and the lower locking point 208 are respectively provided on the lower and upper sides of the bottom end of the quasi-annular slide 206.

[0058] In this embodiment, the two ends of the return spring abut against the horizontal plate 405 and the bottom frame plate 201, respectively.

[0059] The specific application of this embodiment is as follows: When the inner shell 4 transmits the pressing force to the pressing and rebound mechanism, the inner shell 4 moves down together with the pull rod 3. The pull rod shaft 303 of the pull rod 3 slides along the right half of the annular slide 206 to the lower limit point 207. Then, due to the reset action of the return spring, the pull rod shaft 303 moves upward and slides to the lower locking point 208. At this time, the pressing and rebound mechanism is in the "contracted state". When the inner shell 4 transmits the pressing force to the pressing and rebound mechanism again, the pull rod shaft 303 moves downward from the lower locking point 208 and flips to the left under the guidance of the lower blocking part. Then, due to the reset action of the return spring, the pull rod shaft 303 moves upward along the left half of the annular slide 206. The apex of the annular slide 206 is used as the upper locking point. At this time, the pressing and rebound mechanism is in the "rebound" state.

[0060] The preferred embodiments of this utility model disclosed above are merely illustrative of the present utility model. These preferred embodiments do not exhaustively describe all details, nor do they limit the utility model to specific implementation methods. Clearly, many modifications and variations can be made based on the content of this specification. This specification selects and specifically describes these embodiments to better explain the principles and practical applications of this utility model, thereby enabling those skilled in the art to better understand and utilize it. This utility model is limited only by the claims and their full scope and equivalents.

Claims

1. A convenient one-handed operation, accident-proof atomizing perfume bottle, characterized in that, The device includes an outer shell, an inner shell, a middle shell, an atomizing dispensing bottle, and an anti-accidental contact button. The middle shell is installed between the outer shell and the inner shell. A press-and-return mechanism is provided between the bottom of the inner shell and the bottom of the outer shell. The atomizing dispensing bottle is placed in the inner shell. The spring coefficient built into the atomizing dispensing bottle is greater than the spring coefficient of the return spring in the press-and-return mechanism. The outer shell and the middle shell together restrict the anti-accidental contact button, which can lock the position of the inner shell when the inner shell is in the rebounded state.

2. The anti-accidental-touch atomizing perfume bottle for easy one-handed operation according to claim 1, characterized in that, The atomizing dispensing bottle includes a bottle body and a press-type atomizing nozzle.

3. The anti-accidental-touch atomizing perfume bottle for easy one-handed operation according to claim 2, characterized in that, The anti-accidental touch button includes a locking ring, a button, and a spring. The button and the spring are respectively connected to both sides of the locking ring.

4. The anti-accidental-touch atomizing perfume bottle for easy one-handed operation according to claim 3, characterized in that, The locking ring, button, and spring are an integral structure made of plastic or metal.

5. The anti-accidental-touch atomizing perfume bottle for easy one-handed operation according to claim 3, characterized in that, The side end of the outer shell is provided with a pressing hole that matches the button part of the anti-accidental touch button, and the cross-sectional shape of the inner cavity of the outer shell matches the shape of the pressing atomizing nozzle of the atomizing dispensing bottle.

6. The anti-accidental-touch atomizing perfume bottle for easy one-handed operation according to claim 5, characterized in that, The intermediate shell includes an intermediate shell body. The upper part of the intermediate shell body is provided with a side mounting groove for easy installation of the anti-accidental button. The upper and lower side plates of the intermediate shell body located in the side mounting groove are provided with lifting through holes for easy lifting of the inner shell. The outer port of the intermediate shell body located in the side mounting groove is provided with a button storage groove that cooperates with the button part.

7. The anti-accidental-touch atomizing perfume bottle for easy one-handed operation according to claim 6, characterized in that, The inner shell includes an inner shell body, the inner shell body has a dispensing bottle receiving cavity inside, the side of the inner shell body has a locking groove that cooperates with the locking ring part of the anti-accidental contact button, and the bottom side of the inner shell body located in the dispensing bottle receiving cavity has a pressure relief groove.

8. The anti-accidental-touch atomizing perfume bottle for easy one-handed operation according to claim 7, characterized in that, The inner shell body is provided with a horizontal plate at the bottom end of the dispensing bottle receiving cavity, and a limiting vertical plate is provided on the outside of the dispensing bottle receiving cavity. The bottom end of the horizontal plate is provided with a side guide plate and a middle guide plate, and a limiting rotating hole is provided in the middle guide plate.

9. The anti-accidental-touch atomizing perfume bottle for easy one-handed operation according to claim 8, characterized in that, The press-and-rebound mechanism includes a return spring, a pull rod, and a pull rod locking seat; The pull rod includes a connecting plate, an upper pull rod shaft, and a lower pull rod shaft. An upper pull rod shaft that extends into a limiting rotating hole is installed on the upper inner side of the connecting plate. The outer end of the upper pull rod shaft is provided with a wide head to prevent it from arbitrarily disengaging from the limiting rotating hole. A lower pull rod shaft is installed on the lower outer side of the connecting plate. The pull rod locking seat includes a bottom frame plate and an outer frame and an inner frame disposed thereon. The inner side wall of the outer frame is formed with a side sliding groove that cooperates with the side guide plate. The inner frame is provided with a middle sliding groove that cooperates with the middle guide plate. The inner frame is provided with a stroke control groove for limiting the displacement direction of the pull rod shaft. The two ends of the reset spring abut against the horizontal plate and the bottom frame plate, respectively.

10. The anti-accidental-touch atomizing perfume bottle for easy one-handed operation according to claim 9, characterized in that, The stroke control groove includes a ring-shaped slide, a lower limit point, and a lower locking point. The lower limit point and the lower locking point are respectively provided on the lower and upper sides of the bottom end of the ring-shaped slide.