CN220558070U - Integrated inhalation type acne removing device - Google Patents

Integrated inhalation type acne removing device Download PDF

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Publication number
CN220558070U
CN220558070U CN202320674996.9U CN202320674996U CN220558070U CN 220558070 U CN220558070 U CN 220558070U CN 202320674996 U CN202320674996 U CN 202320674996U CN 220558070 U CN220558070 U CN 220558070U
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China
Prior art keywords
piece
puncture
pipe barrel
tube
communicated
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CN202320674996.9U
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Chinese (zh)
Inventor
董志红
宋昌隆
唐璐
尹黎
谢富城
黄志强
兰海
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Chengdu University
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Chengdu University
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Abstract

The utility model discloses an integrated inhalation acne remover, which comprises: the needle cylinder comprises an upper pipe barrel and a lower pipe barrel which are sequentially and axially connected, the end part of the lower pipe barrel, which is far away from the upper pipe barrel, is communicated with a suction pipe, the outer wall of the upper pipe barrel is provided with a liquid inlet pipe, and the liquid inlet pipe extends into the upper pipe barrel and is communicated with the lower pipe barrel; the piston puncture mechanism comprises a push handle, a push rod, a sealing rubber plug and a puncture piece which are sequentially and axially connected; the sealing rubber plug is provided with a clamping piece for connecting the puncture piece, the puncture piece is communicated with the lower pipe barrel through the clamping piece, and the end part of the push rod, which is far away from the push handle, is connected with an on-off piece for switching on-off the clamping piece. According to the utility model, the piston puncture mechanism is used for reducing external infection, and simultaneously, the integrated operation of disinfection, skin breaking and acne suction can be realized by one hand, so that the acne removing effects of minimally damaging skin, removing acne cleanly and avoiding bacterial infection in the acne squeezing process are finally achieved.

Description

Integrated inhalation type acne removing device
Technical Field
The utility model relates to the technical field of medical beauty equipment, in particular to an integrated inhalation type acne removing device.
Background
This description of the background art pertains to the relevant art in connection with this application, which is provided solely for the purposes of illustration and to facilitate the understanding of the inventive concepts of this application, and is not to be construed as an admission that the applicant is explicitly aware or presumes that the applicant is prior art in the filing date of this application as the first time it has been filed.
Medical devices are increasingly used in cosmetic care, and in particular in medical and aesthetic technology. Teenagers have vigorous hormone secretion, and excessive sebum secretion can not be removed smoothly, so that local inflammation and acne are easy to form, the teenagers are mainly well developed, and the psychological and social effects on the teenagers are great. If the acne is manually squeezed, substances in the acne diffuse to two sides under the action of pressure, so that the skin injury area is increased, and meanwhile, due to bacteria on the hands, wound infection can be caused. Thus, people invented acne squeezing needles, acne suction devices and the like. Commonly used in beauty parlors are acne-squeezing needles, manual squeezing and electric acne-sucking devices. For example: patent document with the authority of CN201208281Y discloses a semiautomatic acne aspirator, comprising an aspirator pot with a unidirectional exhaust valve, on which a acne needle is arranged; the acne absorber disclosed in the patent document is used by firstly pricking with a acne needle and then extruding, but the acne needle and local skin are required to be disinfected by an external disinfectant during disinfection, so that the operation is inconvenient. For example: the acne squeezing needle is adopted, the speed and the depth of needling cannot be mastered, and dirt in acnes and acnes cannot be discharged by itself, and the purpose can be achieved only by squeezing the acne squeezing needle by hands after the acnes are punctured. This causes greater damage to the skin at the site of the long pox.
Therefore, in order to solve the problems set forth in the background art, the utility model provides an integrated inhalation type acne removing device.
Disclosure of Invention
The utility model aims to provide an integrated suction type acne removing device, which aims to solve the problems that the existing acne removing device is inconvenient to use and operate and cannot integrate disinfection, puncture and suction.
The technical scheme for solving the technical problems is as follows:
an integrated inhalation-type acne-removing device, comprising: the needle cylinder comprises an upper pipe barrel and a lower pipe barrel which are sequentially and axially connected, the end part of the lower pipe barrel, which is far away from the upper pipe barrel, is communicated with a suction pipe, the outer wall of the upper pipe barrel is provided with a liquid inlet pipe, and the liquid inlet pipe extends into the upper pipe barrel and is communicated with the lower pipe barrel;
the piston puncture mechanism comprises a push handle, a push rod, a sealing rubber plug and a puncture piece which are sequentially and axially connected, and the puncture piece is driven to penetrate out of the suction port of the suction tube by pressing the push handle;
the sealing rubber plug is provided with a clamping piece for connecting the puncture piece, the puncture piece is communicated with the lower pipe barrel through the clamping piece, and the end part of the push rod, which is far away from the push handle, is connected with an on-off piece for switching on-off the clamping piece.
According to the utility model, the liquid inlet pipe is connected with external disinfectant, the disinfectant enters the lower pipe barrel through the liquid inlet pipe, at the moment, the pushing handle is pressed to drive the push rod, the sealing rubber plug and the puncture piece to move downwards, after the push rod is pressed for positioning and moving, the push rod drives the on-off piece to move so as to realize the communication between the clamping piece and the lower pipe barrel, at the moment, the disinfectant in the lower pipe barrel enters the clamping piece and then flows into the puncture piece to disinfect the puncture piece, the pushing handle is continuously pressed and the push rod is enabled to push the on-off piece to contact with the puncture piece, so that the puncture piece and the clamping piece are blocked, at the moment, the puncture piece penetrates out of an suction port of the suction pipe, and puncture operation can be carried out; after the puncture is finished, the push handle is lifted to drive the push rod, the sealing rubber plug and the puncture piece to reset, at the moment, negative pressure is generated under the action of the sealing rubber plug and the needle cylinder, and then the suction tube is adopted for suction operation, so that the operation is convenient; the piston puncture mechanism reduces external infection, and simultaneously, the integrated device for disinfecting, breaking skin and sucking acne without dead angle at 360 degrees can be realized by one hand, so that the acne removing effects of minimally damaging skin, removing acne cleanly and avoiding bacterial infection in the acne squeezing process are finally achieved.
Further, the puncture member comprises a connecting pipe, a needle seat and a puncture needle which are sequentially connected, a through hole communicated with the connecting pipe is arranged on the needle seat, and the end part of the connecting pipe, which is far away from the needle seat, penetrates through the sealing rubber plug and is communicated with the buckle member.
Further, the buckle piece comprises a sleeve connected with the sealing rubber plug and a round hole formed in the sleeve, a cavity in the sleeve is communicated with the lower pipe barrel through the round hole, and the end part of the connecting pipe, which is far away from the needle seat, penetrates through the sealing rubber plug and stretches into the sleeve.
Further, the on-off piece comprises a connecting block and a sealing plug arranged on the connecting block, the connecting block is located in the cavity, the sealing plug corresponds to the round hole, and the end part of the push rod, which is far away from the push handle, penetrates through the sleeve and is connected with the connecting block.
Further, the suction tube comprises a connecting tube and a suction nozzle, wherein the connecting tube and the suction nozzle are sequentially connected, the connecting tube is detachably connected with the lower tube, and the suction port is formed in the end part, far away from the connecting tube, of the suction nozzle.
Further, the outer wall cover of push rod is equipped with the elasticity piece that resets, and the elasticity piece that resets is located the upper tube intraductal:
the elastic reset piece comprises a first spring seat, a second spring seat and a spring connected between the first spring seat and the second spring seat, wherein the first spring seat is connected between the push rod and the push handle, the spring is sleeved on the outer wall of the push rod, the outer edge of the second spring seat is connected with the inner wall of the upper pipe barrel, and a liquid inlet pipe positioned in the upper pipe barrel penetrates through the second spring seat and is communicated with the lower pipe barrel.
Further, the size of the first spring seat is matched with that of the inner wall of the upper pipe barrel, and the outer edge of the second spring seat is connected with the inner wall of the upper pipe barrel in a sealing mode.
Compared with the prior art, the utility model has the following beneficial effects:
1. according to the integrated suction type acne removing device, disinfection liquid enters the lower tube through the liquid inlet pipe, the pushing handle is pressed to drive the push rod, the sealing rubber plug and the puncture piece to move downwards, after the push rod is pressed for positioning and moving, the clamping piece is communicated with the lower tube through the on-off piece, at the moment, the disinfection liquid in the lower tube enters the clamping piece and then flows into the puncture piece to disinfect the puncture piece, the pushing handle is continuously pressed, the push rod is enabled to push the on-off piece to be in contact with the puncture piece, the puncture piece and the clamping piece are blocked, at the moment, the puncture piece penetrates out of an attraction port of the suction pipe, and puncture operation can be carried out; after the puncture is finished, the push handle is lifted to drive the push rod, the sealing rubber plug and the puncture piece to reset, at the moment, negative pressure can be generated under the action of the sealing rubber plug and the needle cylinder, and then the suction tube is adopted for suction operation, so that the operation is convenient.
2. According to the utility model, the piston puncture mechanism is used for reducing external infection, and the elastic reset piece is sleeved on the outer wall of the push rod, so that the puncture piece can be automatically reset, and the integrated device for sterilizing, breaking skin and sucking acne without dead angles at 360 degrees can be realized by one hand, so that the effects of minimally damaging skin, removing acne cleanly and avoiding bacterial infection in the acne squeezing process are finally achieved.
Drawings
Fig. 1 is a schematic diagram of the overall structure of an integrated inhalation-type acne remover;
FIG. 2 is a schematic structural view of a plunger puncturing mechanism;
FIG. 3 is an enlarged schematic view of the portion A of FIG. 2;
fig. 4 is a schematic cross-sectional structure of the snap member and the on-off member.
In the figure: 1-needle cylinder, 11-upper tube, 12-lower tube and 13-liquid inlet tube;
2-piston puncture mechanism, 21-push handle, 22-push rod, 23-sealing rubber plug, 24-puncture piece, 241-connecting pipe, 242-needle seat, 243-puncture needle;
3-suction tube, 31-suction port, 32-connecting cylinder and 33-suction nozzle;
4-snap fastener, 41-sleeve, 42-round hole, 43-cavity;
5-on-off parts, 51-connecting blocks and 52-sealing plugs;
6-elastic return piece, 61-first spring seat, 62-second spring seat, 63-spring.
Detailed Description
The following description of the embodiments of the present utility model will be made more apparent and fully hereinafter with reference to the accompanying drawings, in which some, but not all embodiments of the utility model are shown. All other embodiments, which can be made by a person skilled in the art without any inventive effort, are intended to be within the scope of the present utility model, based on the embodiments of the present utility model.
Example 1
As shown in fig. 1 to 4, the present utility model provides an integrated inhalation-type acne remover, comprising: the needle cylinder 1 and the piston puncture mechanism 2 sleeved in the needle cylinder 1, the needle cylinder 1 comprises an upper tube barrel 11 and a lower tube barrel 12 which are sequentially and axially connected, the end part of the lower tube barrel 12, which is far away from the upper tube barrel 11, is communicated with a suction tube 3, the outer wall of the upper tube barrel 11 is provided with a liquid inlet tube 13, the liquid inlet tube 13 extends into the upper tube barrel 11 and is communicated with the lower tube barrel 12, and the liquid inlet tube 13 can be connected with external disinfectant so as to further convey the disinfectant into the lower tube barrel 12; the suction tube 3 comprises a connecting cylinder 32 and a suction nozzle 33 which are sequentially connected and communicated with the connecting cylinder 32, the connecting cylinder 32 is detachably connected with the lower cylinder 12, the suction port 31 is formed at the end part of the suction nozzle 33 far away from the connecting cylinder 32, wherein the inner wall of the connecting cylinder 32 is provided with internal threads, and the outer wall of the corresponding lower cylinder 12 is provided with external threads, so that the detachable connection is realized; the end of the connecting tube 32 is provided with a clamping groove, the outer wall of the lower tube 12 is provided with a clamping block corresponding to the clamping groove, and a detachable connection mode is realized through clamping and threaded connection.
The piston puncture mechanism 2 comprises a push handle 21, a push rod 22, a sealing rubber plug 23 and a puncture piece 24 which are sequentially and axially connected, and the puncture piece 24 is driven to penetrate out of a suction port 31 of the suction tube 3 by pressing the push handle 21; when the push handle 21 is pressed, the push rod 22 and the sealing rubber plug 23 drive the puncture member 24 to move, when the puncture member 24 is pressed to penetrate from the suction port 31, puncture action can be performed, the puncture member 24 can be driven to reset when the push handle 21 is pulled reversely, and meanwhile, negative pressure is formed in the suction tube 3 under the cooperation of the sealing rubber plug 23 and the lower tube 12, so that suction operation can be performed.
Wherein, be equipped with on the sealing plug 23 and be used for connecting the buckle spare 4 of puncture spare 24, and puncture spare 24 passes through buckle spare 4 and lower bobbin 12 intercommunication, push rod 22 is kept away from push handle 21's end connection has the break-make piece 5 that is used for break-make buckle spare 4. By pressing or reversely pulling the on-off member 5, the buckling member 4 is communicated with or disconnected from the lower tube 12, the puncture member 24 comprises a connecting pipe 241, a needle seat 242 and a puncture needle 243 which are sequentially connected, a through hole communicated with the connecting pipe 241 is formed in the needle seat 242, and the end part of the connecting pipe 241, far away from the needle seat 242, penetrates through the sealing rubber plug 23 and is communicated with the buckling member 4.
The buckling piece 4 comprises a sleeve 41 connected with the sealing rubber plug 23 and a round hole 42 formed in the sleeve 41, a cavity 43 in the sleeve 41 is communicated with the lower tube 12 through the round hole 42, and the end part of the connecting tube 241, which is far away from the needle seat 242, penetrates through the sealing rubber plug 23 and stretches into the sleeve 41.
The on-off piece 5 comprises a connecting block 51 and a sealing plug 52 arranged on the connecting block 51, the connecting block 51 is positioned in the cavity 43, the sealing plug 52 corresponds to the round hole 42, and the end part of the push rod 22 away from the push handle 21 penetrates through the sleeve 41 and is connected with the connecting block 51.
The needle cylinder 1, the piston puncture mechanism 2, the suction tube 3, the buckle piece 4 and the on-off piece 5 are all made of the same material as the existing medical injector, have certain transparency, and are convenient to operate and observe; and the suction tube 3 is disposable, and the suction tube 3 is convenient to replace in a detachable connection mode with the lower tube barrel 12.
When the acne removing device is used, the acne removing device is used for integrally sterilizing, sterilizing fluid is conveyed into the fluid inlet pipe 13 through an external pipeline and further enters the lower pipe barrel 12, the push handle 21 is pressed to drive the push rod 22, the sealing rubber plug 23 and the puncture piece 24 to move along the lower pipe barrel 12, after the push rod 22 is pressed for positioning and moving, the push rod 22 can drive the on-off piece 5 to move so as to realize the communication between the buckling piece 4 and the lower pipe barrel, specifically, the push rod 22, the sealing rubber plug 23 and the puncture piece 24 are moved by pressing the push handle 21, when the push rod 22 pushes the connecting block 51 to move downwards in the cavity 43 of the sleeve 41, the sealing plug 52 is separated from the round hole 42, at the moment, the sleeve 41 is communicated with the lower pipe barrel 12 through the round hole 42, sterilizing fluid enters the sleeve 41 through the round hole 42, meanwhile, the connecting block 51 is not contacted with the top of the connecting pipe 241, the sterilizing fluid entering the sleeve 41 further enters the connecting pipe 241, and the sterilizing fluid flows out onto the puncture needle 243 through the through hole on the needle seat 242, so that the flushing and sterilizing of the puncture needle 243 are realized, and the cross infection can be avoided when the skin with acne is locally punctured, and the cleaning and sterilizing of the puncture needle 243 are convenient. After the puncture needle 243 is disinfected, the push handle 21 is continuously pressed, the push rod 22 pushes the on-off piece 5 to contact with the puncture piece 24, so that the puncture piece 24 and the buckling piece 4 are blocked, namely, the bottom of the connecting block 51 contacts with the top of the connecting pipe 241, then the puncture piece 24 is temporarily blocked with the sleeve 41, and the push handle 21 is further pressed until the puncture piece 24 penetrates out of the suction port 31 of the suction pipe 3, so that the puncture operation can be performed; after the puncture is finished, the push rod 22, the sealing rubber plug 23 and the puncture piece 24 are driven to reset by reversely lifting the push rod 21, when the bottom of the connecting block 51 and the top of the connecting pipe 241 are loosened, sterilizing liquid can enter the puncture piece 24 to be washed and sterilized again, the round hole 42 is plugged by continuously lifting the sealing plug 52, negative pressure can be generated under the action of the sealing rubber plug 23 and the needle cylinder 1, and then the suction pipe 3 is adopted for suction operation, so that the operation is convenient.
Example 2
On the basis of the embodiment 1, in order to further simplify the operation steps, the whole automatic reset of the piston puncture mechanism 2 is facilitated; as shown in fig. 1, the outer wall of the push rod 22 is sleeved with an elastic reset piece 6, and the elastic reset piece 6 is positioned in the upper tube 11; the elastic restoring member 6 includes a first spring seat 61, a second spring seat 62, and a spring 63 connected between the first spring seat 61 and the second spring seat 62, wherein the first spring seat 61 is connected between the push rod 22 and the push rod 21, the spring 63 is sleeved on the outer wall of the push rod 22, the outer edge of the second spring seat 62 is connected with the inner wall of the upper tube 11, and the liquid inlet tube 13 located in the upper tube 11 passes through the second spring seat 62 and is communicated with the lower tube 12.
The first spring seat 61 is sized to match the interior wall of the upper barrel 11, and the outer edge of the second spring seat 62 is sealingly connected to the interior wall of the upper barrel 11. A sealing ring can be arranged between the outer edge of the second spring seat 62 and the inner wall of the upper tube 11 to realize sealing connection, so that the overall tightness of the lower tube 12 is ensured, and the disinfectant is prevented from leaking out of the gap to cause waste; the diameter of the first spring seat 61 is adapted to the inner diameter of the upper tube 11, so that when the push handle 21 is pressed, the first spring seat 61 can be driven to move and the compression of the spring 63 can be realized; when the push handle 21 is pressed to finally realize the disinfection of the puncture needle 243, and simultaneously, after the puncture needle 243 is adopted to perform the puncture action, the puncture needle 243 can be automatically reset under the action of the spring 63 when the push handle 21 is loosened, so that the operation of one hand is convenient, the purposes of disinfection, skin breaking and 360-degree dead angle-free acne suction can be realized by one hand, and finally, the acne removing effects of minimum damage to skin, acne removing cleanness and bacterial infection prevention in the acne squeezing process are achieved.
The foregoing description of the preferred embodiments of the utility model is not intended to limit the utility model to the precise form disclosed, and any such modifications, equivalents, and alternatives falling within the spirit and scope of the utility model are intended to be included within the scope of the utility model.

Claims (7)

1. An integrated inhalation-type acne-removing device, comprising: needle cylinder (1) and suit are in piston piercing mechanism (2) in needle cylinder (1), its characterized in that: the needle cylinder (1) comprises an upper pipe barrel (11) and a lower pipe barrel (12) which are sequentially and axially connected, an end part, far away from the upper pipe barrel (11), of the lower pipe barrel (12) is communicated with an aspiration pipe (3), a liquid inlet pipe (13) is arranged on the outer wall of the upper pipe barrel (11), and the liquid inlet pipe (13) extends into the upper pipe barrel (11) and is communicated with the lower pipe barrel (12);
the piston puncture mechanism (2) comprises a push handle (21), a push rod (22), a sealing rubber plug (23) and a puncture piece (24) which are sequentially and axially connected, and the puncture piece (24) is driven to penetrate out of an suction port (31) of the suction tube (3) by pressing the push handle (21);
the sealing rubber plug (23) is provided with a buckling piece (4) used for connecting the puncture piece (24), the puncture piece (24) is communicated with the lower pipe barrel (12) through the buckling piece (4), and the end part, far away from the pushing handle (21), of the push rod (22) is connected with an on-off piece (5) used for switching on and off the buckling piece (4).
2. The integrated inhalation-acne device according to claim 1, wherein the puncture member (24) comprises a connecting tube (241), a needle seat (242) and a puncture needle (243) which are sequentially connected, a through hole communicated with the connecting tube (241) is arranged on the needle seat (242), and the end part of the connecting tube (241) far away from the needle seat (242) penetrates through the sealing rubber plug (23) and is communicated with the buckle member (4).
3. The integrated inhalation-acne device according to claim 2, wherein the buckle part (4) comprises a sleeve (41) connected with the sealing rubber plug (23) and a round hole (42) formed in the sleeve (41), a cavity (43) in the sleeve (41) is communicated with the lower tube (12) through the round hole (42), and the end part of the connecting tube (241) away from the needle seat (242) penetrates through the sealing rubber plug (23) and stretches into the sleeve (41).
4. An integrated inhalation-device according to claim 3 characterised in that the on-off element (5) comprises a connecting block (51) and a sealing plug (52) arranged on the connecting block (51), the connecting block (51) is located in the cavity (43), the sealing plug (52) corresponds to the round hole (42), and the end of the push rod (22) away from the push handle (21) passes through the sleeve (41) and is connected with the connecting block (51).
5. The integrated inhalation-acne device according to claim 1, wherein the suction tube (3) comprises a connecting tube (32) and a suction nozzle (33) communicated with the connecting tube (32) which are sequentially connected, the connecting tube (32) is detachably connected with the lower tube (12), and the suction opening (31) is formed at the end part of the suction nozzle (33) far away from the connecting tube (32).
6. The integrated inhalation-based acne device according to any one of claims 1 to 5, wherein the outer wall of the push rod (22) is sleeved with an elastic return element (6), and the elastic return element (6) is located in the upper tube (11):
the elastic reset piece (6) comprises a first spring seat (61), a second spring seat (62) and a spring (63) connected between the first spring seat (61) and the second spring seat (62), the first spring seat (61) is connected between the push rod (22) and the push handle (21), the spring (63) is sleeved on the outer wall of the push rod (22), the outer edge of the second spring seat (62) is connected with the inner wall of the upper pipe barrel (11), and a liquid inlet pipe (13) positioned in the upper pipe barrel (11) penetrates through the second spring seat (62) and is communicated with the lower pipe barrel (12).
7. The integrated inhalation-device according to claim 6, wherein the first spring seat (61) is sized to match the inner wall of the upper tube (11), and the outer edge of the second spring seat (62) is sealingly connected to the inner wall of the upper tube (11).
CN202320674996.9U 2023-03-30 2023-03-30 Integrated inhalation type acne removing device Active CN220558070U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202320674996.9U CN220558070U (en) 2023-03-30 2023-03-30 Integrated inhalation type acne removing device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202320674996.9U CN220558070U (en) 2023-03-30 2023-03-30 Integrated inhalation type acne removing device

Publications (1)

Publication Number Publication Date
CN220558070U true CN220558070U (en) 2024-03-08

Family

ID=90090806

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202320674996.9U Active CN220558070U (en) 2023-03-30 2023-03-30 Integrated inhalation type acne removing device

Country Status (1)

Country Link
CN (1) CN220558070U (en)

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