Breast pump, and self-suction breast pumping device, self-suction cover thereof and operation method therefor

By designing a self-adsorption breast pumping device in the breast pump, the negative pressure space is used to fix it on the breast, which solves the problem of underwear assistance in the prior art, improves the comfort and efficiency of breast pumping, and protects breast health.

WO2025102976A1PCT designated stage expired Publication Date: 2025-05-22NINGBO XIAOWU BRAND MANAGEMENT CO LTD
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Patent Information

Application Number
PCT/CN2024/120260
Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Priority Date
2024-07-10
Filing Date
2024-09-23
Publication Date
2025-05-22

AI Technical Summary

Technical Problem

Existing wearable breast pumps require auxiliary fixation of underwear, which increases the cumbersomeness of use and may affect the effect of breast pumping and breast health.

Method used

A self-adsorption breast pumping device is designed to form a negative pressure space between the horn cover and the breast, so that the breast pump can be fixed in the breast position without the need for underwear assistance.

Benefits of technology

It can be absorbed firmly on the breast without the assistance of underwear, reduces the pressure on the breast, improves the comfort and efficiency of breast pumping, and protects breast health.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN2024120260_22052025_PF_FP_ABST
    Figure CN2024120260_22052025_PF_FP_ABST
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Abstract

A breast pump, and a self-suction breast pumping device (10) and an operating method therefor. The self-suction breast pumping device (10) comprises a milk discharge one-way valve (13), a self-suction cover (12) and a negative-pressure forming unit (11), wherein the self-suction cover (12) comprises a fitting ring body (121), and a deformable flared cover body (122) extending outward from the fitting ring body (121); the negative-pressure forming unit (11) comprises a negative-pressure chamber (1101), an air exchange channel in communication with the negative-pressure chamber (1101), a breast pumping chamber (1103) independent of the negative-pressure chamber (1101), and a fitting opening (1104) and a milk discharge channel (1105) which are in communication with the breast pumping chamber (1103), the space size of the negative-pressure chamber (1101) and the space size of the breast pumping chamber (1103) being negatively correlated; and the milk discharge one-way valve (13) is arranged on the negative-pressure forming unit (11) so as to selectively open and close the milk discharge channel (1105). The fitting ring body (121) of the self-suction cover (12) is fitted, at the position where the fitting opening (1104) is located, to the negative-pressure forming unit (11), so that when the self-suction breast pumping device (10) is suctioned onto a breast, a negative-pressure space (100) is formed between the self-suction cover (12) and the breast.
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Description

Breast pump, self-adsorption type breast pumping device, self-adsorption cover and operation method thereof Technical Field

[0001] The present invention relates to a breast pump, belonging to the technical field of maternal and infant products, and in particular to a breast pump, a self-adsorption type milk-sucking device, a self-adsorption cover and an operation method thereof. Background Art

[0002] In recent years, wearable breast pumps used to assist breastfeeding mothers in expressing milk have become increasingly popular. Existing wearable breast pumps allow users to place them in underwear, which secures the wearable breast pump to the breast. This allows users to express milk while walking, without the need for hands. However, existing wearable breast pumps still have many drawbacks. For example, existing wearable breast pumps require underwear to assist in securing them, which not only increases the complexity of use but also affects the milk-sucking effect due to unsuitable or improperly worn underwear. Furthermore, the way underwear secures the wearable breast pump to the breast can cause additional pressure on the breast, causing the user to feel uncomfortable during the milk-sucking process. Long-term use can even affect breast health. Based on this, the inventors of the present invention are committed to developing a breast pump that can be secured to the breast without any assistance. Summary of the Invention

[0003] An object of the present invention is to provide a breast pump, a self-adhesive milk suction device, a self-adhesive milk suction cover and an operating method thereof, wherein the self-adhesive milk suction device can be adsorbed on the breast to achieve naked suction without the assistance of underwear.

[0004] One object of the present invention is to provide a breast pump, a self-adhesive milk suction device, a self-adhesive cover, and an operating method thereof, wherein the self-adhesive milk suction device can form a negative pressure space between the horn cover body of the self-adhesive cover and the breast, thereby achieving the self-adhesive milk suction device being adsorbed on the breast without the assistance of underwear.

[0005] One object of the present invention is to provide a breast pump, a self-adsorbing milk suction device, a self-adsorbing cover and an operating method thereof, wherein when a user adsorbs the self-adsorbing milk suction device on a breast, the horn cover is first turned over, and then the position of the horn cover for connecting the assembly ring is allowed to contact the areola, and then the horn cover is restored so that the horn cover wraps a part of the breast. In this way, the self-adsorbing milk suction device can form the negative pressure space between the horn cover and the breast, so that the self-adsorbing milk suction device can be adsorbed on the breast without the assistance of underwear.

[0006] One object of the present invention is to provide a breast pump, a self-adsorption milk suction device, a self-adsorption cover and an operating method thereof, wherein the air in the negative pressure space can be discharged through an exhaust one-way valve, so that the self-adsorption milk suction device can be reliably adsorbed on the breast.

[0007] According to one aspect of the present invention, the present invention provides an operating method of a self-sucking breast pump device, wherein the operating method comprises the following steps:

[0008] (a) Flipping the horn cover of the self-adsorption cover toward the negative pressure forming unit;

[0009] (b) allowing the position of the horn cover body of the self-adhesive cover for connecting the mounting ring body to interfere with the areola; and

[0010] (c) Restore the horn cover so that the horn cover wraps a portion of the breast, thereby forming a negative pressure space between the horn cover and the breast, allowing the self-adhesive milk pump to be attached to the breast.

[0011] According to one embodiment of the present invention, in step (b), the inner wall of the small cover body of the self-adsorption cover is allowed to fit the areola in a manner that the small cover body covers the nipple, wherein the small cover body extends to a position of the trumpet cover body for connecting to the assembly ring body.

[0012] According to an embodiment of the present invention, in step (b), the contact area between the horn cover body of the self-adsorption cover and the upper part of the breast is larger than the contact area between the horn cover body and the lower part of the breast.

[0013] According to one embodiment of the present invention, in the above method, the negative pressure space formed between the horn cover body of the self-adsorption cover and the breast is allowed to communicate with the milk suction chamber of the negative pressure forming unit through an exhaust one-way valve, wherein the exhaust one-way valve allows the air in the negative pressure space to flow toward the milk suction chamber and prevents the air in the milk suction chamber from flowing toward the negative pressure space.

[0014] According to one embodiment of the present invention, in the above method, the negative pressure space formed between the horn cover body of the self-adsorption cover and the breast is allowed to be connected to the external environment of the negative pressure forming unit through an exhaust one-way valve, wherein the exhaust one-way valve allows the air in the negative pressure space to flow to the outside and prevents the air in the external environment from flowing toward the negative pressure space.

[0015] According to one embodiment of the present invention, in the above method, the exhaust one-way valve extends into the valve cavity located at the top of the negative pressure generating unit, and the communicating channel of the negative pressure generating unit communicates with the valve cavity and the milk suction cavity, wherein the gas flow rate at the communicating position between the communicating channel and the valve cavity is less than the gas flow rate at the communicating position between the communicating channel and the milk suction cavity.

[0016] According to another aspect of the present invention, the present invention further provides a self-sucking breast pump device, comprising:

[0017] Milk discharge one-way valve;

[0018] A self-adsorption cover, wherein the self-adsorption cover comprises an assembly ring and a deformable speaker cover extending outward from the assembly ring; and

[0019] A negative pressure forming unit, wherein the negative pressure forming unit has a negative pressure chamber, a gas exchange channel connected to the negative pressure chamber, a milk suction chamber independent of the negative pressure chamber, and an assembly opening and a milk discharge channel connected to the milk suction chamber, the spatial size of the negative pressure chamber is negatively correlated with the spatial size of the milk suction chamber, wherein the milk discharge one-way valve is provided on the negative pressure forming unit for selectively opening and closing the milk discharge channel of the negative pressure forming unit, wherein the assembly ring of the self-adsorption cover is assembled to the negative pressure forming unit at the position of the assembly opening.

[0020] According to one embodiment of the present invention, the speaker cover has a rear cover and a front cover, and the rear cover is connected to the front cover and the assembly ring, wherein an angle α is formed between the extension direction of the rear cover and the central axis of the self-adsorption cover, and an angle β is formed between the extension direction of the front cover and the central axis of the self-adsorption cover, and the angle α and the angle β satisfy: α>β.

[0021] According to one embodiment of the present invention, the self-adsorption cover further includes a small cover body, which is arranged at the connection position between the speaker cover body and the assembly ring body, and at least a part of the small cover body is surrounded by the speaker cover body.

[0022] According to one embodiment of the present invention, the speaker cover has an exhaust passage, wherein the self-adsorption cover includes an exhaust one-way valve, and the exhaust one-way valve is arranged on the speaker cover for selectively opening and closing the exhaust passage of the speaker cover.

[0023] According to one embodiment of the present invention, the end of the exhaust one-way valve facing away from the speaker cover is located outside the negative pressure forming unit.

[0024] According to one embodiment of the present invention, the negative pressure forming unit has a valve cavity and a communication channel, the valve cavity is located above the milk suction cavity, and the communication channel connects the valve cavity and the milk suction cavity, wherein the end of the exhaust one-way valve away from the horn cover extends into the valve cavity of the negative pressure forming unit

[0025] According to one embodiment of the present invention, a gas flow rate at a communication point between the communication channel and the valve cavity is smaller than a gas flow rate at a communication point between the communication channel and the milk suction cavity.

[0026] According to one embodiment of the present invention, the distance between the front side of the top of the speaker cover and the rear side of the assembly ring is greater than the distance between the front side of the bottom of the speaker cover and the rear side of the assembly ring.

[0027] According to another aspect of the present invention, the present invention further provides a breast pump, comprising a main unit, a self-sucking milk sucking device, and an air tube connecting the main unit and the self-sucking milk sucking device, wherein the self-sucking milk sucking device comprises:

[0028] Milk discharge one-way valve;

[0029] A self-adsorption cover, wherein the self-adsorption cover comprises an assembly ring and a deformable speaker cover extending outward from the assembly ring; and

[0030] A negative pressure forming unit, wherein the negative pressure forming unit has a negative pressure chamber, a gas exchange channel connected to the negative pressure chamber, a milk suction chamber independent of the negative pressure chamber, and an assembly opening and a milk discharge channel connected to the milk suction chamber, the spatial size of the negative pressure chamber is negatively correlated with the spatial size of the milk suction chamber, wherein the milk discharge one-way valve is provided on the negative pressure forming unit for selectively opening and closing the milk discharge channel of the negative pressure forming unit, wherein the assembly ring of the self-adsorption cover is assembled to the negative pressure forming unit at the position of the assembly opening.

[0031] According to another aspect of the present invention, the present invention further provides a self-adsorption cover, comprising:

[0032] Assembling the ring body; and

[0033] A deformable speaker cover, wherein the speaker cover has a cover rear portion and a cover front portion, the cover rear portion is connected to the cover front portion and the assembly ring body, wherein an angle α is formed between an extension direction of the cover rear portion and a central axis of the self-adsorption cover, and an angle β is formed between an extension direction of the cover front portion and the central axis of the self-adsorption cover, and the angle α and the angle β satisfy: α>β.

[0034] According to one embodiment of the present invention, the angle β satisfies: 15°≤β≤40°.

[0035] According to one embodiment of the present invention, the distance between the front side of the top of the speaker cover and the rear side of the assembly ring is greater than the distance between the front side of the bottom of the speaker cover and the rear side of the assembly ring.

[0036] According to one embodiment of the present invention, the speaker cover has an exhaust passage, wherein the self-adsorption cover includes an exhaust one-way valve, and the exhaust one-way valve is arranged on the speaker cover for selectively opening and closing the exhaust passage of the speaker cover.

[0037] According to one embodiment of the present invention, the exhaust one-way valve and the speaker cover are integrally formed.

[0038] According to one embodiment of the present invention, the self-adsorption cover further includes a small cover body, which is arranged at the connection position between the speaker cover body and the assembly ring body, and at least a part of the small cover body is surrounded by the speaker cover body.

[0039] According to another aspect of the present invention, the present invention further provides a self-adsorption cover, comprising:

[0040] Assembling the ring body;

[0041] a deformable speaker cover, wherein the speaker cover integrally extends outward from the mounting ring and has an exhaust passage; and

[0042] An exhaust one-way valve, wherein the exhaust one-way valve is arranged on the speaker cover to selectively open and close the exhaust channel of the speaker cover.

[0043] According to another aspect of the present invention, the present invention further provides a self-sucking breast pump device, comprising:

[0044] Milk discharge one-way valve;

[0045] A self-adsorption cover, wherein the self-adsorption cover comprises an assembly ring and a deformable speaker cover extending outward from the assembly ring; and

[0046] A negative pressure forming unit, wherein the negative pressure forming unit has a negative pressure chamber, a gas exchange channel connected to the negative pressure chamber, a milk suction chamber independent of the negative pressure chamber, and an assembly opening and a milk discharge channel connected to the milk suction chamber, the spatial size of the negative pressure chamber is negatively correlated with the spatial size of the milk suction chamber, wherein the milk discharge one-way valve is provided on the negative pressure forming unit for selectively opening and closing the milk discharge channel of the negative pressure forming unit, wherein the assembly ring of the self-adsorption cover is assembled to the negative pressure forming unit at the position of the assembly opening.

[0047] According to one embodiment of the present invention, the speaker cover has a cover rear part and a cover front part, the cover rear part is connected to the cover front part and the assembly ring body, wherein there is an angle α between the cover rear part and the central axis of the self-adsorption cover, and there is an angle β between the cover front part and the central axis of the self-adsorption cover, and the angle α and the angle β satisfy: α>β.

[0048] According to one embodiment of the present invention, the self-adsorption cover further includes a small cover body, which is arranged at the connection position between the speaker cover body and the assembly ring body, and at least a part of the small cover body is surrounded by the speaker cover body.

[0049] According to one embodiment of the present invention, the rear side of the mounting ring is higher than the opening of the milk discharge channel of the negative pressure generating unit.

[0050] According to one embodiment of the present invention, the speaker cover has an exhaust passage, wherein the self-adsorption cover includes an exhaust one-way valve, and the exhaust one-way valve is arranged on the speaker cover for selectively opening and closing the exhaust passage of the speaker cover.

[0051] According to one embodiment of the present invention, the end of the exhaust one-way valve facing away from the speaker cover is located outside the negative pressure forming unit.

[0052] According to one embodiment of the present invention, the negative pressure forming unit has a valve cavity and a communicating channel, the valve cavity is located above the milk suction cavity, the communicating channel connects the valve cavity and the milk suction cavity, and the end of the exhaust one-way valve facing away from the horn cover extends into the valve cavity of the negative pressure forming unit.

[0053] According to one embodiment of the present invention, a gas flow rate at a communication point between the communication channel and the valve cavity is smaller than a gas flow rate at a communication point between the communication channel and the milk suction cavity.

[0054] According to one embodiment of the present invention, the distance between the front side of the top of the speaker cover and the rear side of the assembly ring is greater than the distance between the front side of the bottom of the speaker cover and the rear side of the assembly ring.

[0055] According to one embodiment of the present invention, the negative pressure forming unit includes a supporting shell and a negative pressure forming part, the supporting shell having a shell cavity and a shell opening and a shell notch respectively connected to the shell cavity, the negative pressure forming part includes a deformable bowl, an annular frame arranged at the opening of the deformable bowl, and a mounting arm extending downward from the frame, the frame is mounted on the supporting shell at the shell opening, the deformable bowl extends to the shell cavity of the supporting shell, and the mounting arm is located at the shell notch of the supporting shell, wherein the negative pressure chamber of the negative pressure forming unit is formed between the supporting shell and the deformable bowl, the gas exchange channel of the negative pressure forming unit is formed in the supporting shell, the milk suction chamber and the assembly opening of the negative pressure forming unit are formed in the frame, the milk discharge channel of the negative pressure forming unit extends from the inner wall of the deformable bowl through the frame to the end of the mounting arm or from the inner wall of the frame to the end of the mounting arm, wherein the milk discharge one-way valve is mounted on the mounting arm.

[0056] According to one embodiment of the present invention, the self-adsorption cover further includes a limiting portion, which extends from the peripheral wall of the assembly ring body in a direction roughly perpendicular to the extension direction of the assembly ring body, and there is a gap between the limiting portion and the speaker cover body, wherein the limiting portion can abut against the skeleton of the negative pressure forming portion.

[0057] According to one embodiment of the present invention, the supporting shell includes a shell body and an outer cover shell, and the supporting shell has a shell accommodating cavity, the shell cavity, the shell opening and the shell notch of the supporting shell are formed on the shell body, and the outer cover shell is installed on the shell body, and the supporting shell forms the shell accommodating cavity between the shell body and the outer cover shell, wherein the outer cover shell has a positioning hole, and the positioning hole is connected to the shell accommodating cavity of the supporting shell; wherein the negative pressure forming unit includes an airway unit, and the airway unit includes an air guide seat and a reversing seat, wherein the air guide seat has a first airway extending laterally, a bottom socket, a top socket and a top boss, the bottom socket and the top socket are respectively connected to the first airway, and the opening of the top socket is formed on the end face of the top boss, wherein the shell body has a shell insertion arm, and the shell insertion arm extends to the shell accommodating cavity of the supporting shell, and the negative pressure forming unit The cam is connected to the air duct of the air duct by the support frame, and the support frame has a bottom surface and a bottom surface, and the cam is connected with the air duct of the air duct by the support frame.

[0058] According to another aspect of the present invention, the present invention further provides a breast pump, comprising a main unit, an air tube, and a self-sucking milk sucking device, wherein the air tube connects the main unit and the self-sucking milk sucking device, and the self-sucking milk sucking device further comprises:

[0059] Milk discharge one-way valve;

[0060] A self-adsorption cover, wherein the self-adsorption cover comprises an assembly ring and a deformable speaker cover extending outward from the assembly ring; and

[0061] A negative pressure forming unit, wherein the negative pressure forming unit has a negative pressure chamber, a gas exchange channel connected to the negative pressure chamber, a milk suction chamber independent of the negative pressure chamber, and an assembly opening and a milk discharge channel connected to the milk suction chamber, the spatial size of the negative pressure chamber is negatively correlated with the spatial size of the milk suction chamber, wherein the milk discharge one-way valve is provided on the negative pressure forming unit for selectively opening and closing the milk discharge channel of the negative pressure forming unit, wherein the assembly ring of the self-adsorption cover is assembled to the negative pressure forming unit at the position of the assembly opening. BRIEF DESCRIPTION OF THE DRAWINGS

[0062] FIG1 is a schematic diagram of a breast pump according to a preferred embodiment of the present invention.

[0063] FIG2 is a perspective schematic diagram of a self-adsorption milk suction device of the breast pump according to the preferred embodiment of the present invention from one perspective.

[0064] FIG3 is a perspective schematic diagram of the self-adsorption milk suction device of the breast pump according to the preferred embodiment of the present invention from another perspective.

[0065] FIG4 is a cross-sectional view of the self-adsorption milk suction device of the breast pump according to the preferred embodiment of the present invention.

[0066] FIG5 is a schematic diagram showing one process of the self-adsorption milk suction device of the breast pump according to the preferred embodiment of the present invention being adsorbed on the breast.

[0067] FIG6 is a schematic diagram of the second process of the self-adsorption milk suction device of the breast pump according to the preferred embodiment of the present invention being adsorbed on the breast.

[0068] FIG7 is a schematic diagram of the third process of the self-adsorption milk suction device of the breast pump according to the preferred embodiment of the present invention being adsorbed on the breast, which shows the state of the self-adsorption milk suction device being adsorbed on the breast.

[0069] FIG8A and FIG8B are three-dimensional schematic diagrams of a partial structure of a modified example of the self-adsorption milk suction device of the breast pump according to the preferred embodiment of the present invention, viewed from different angles.

[0070] 9A and 9B are exploded schematic views of the partial structure of the modified example of the self-adsorption milk suction device of the breast pump according to the preferred embodiment of the present invention from different perspectives.

[0071] FIG10 is a schematic cross-sectional view of the partial structure of the modified example of the self-adsorption milk suction device of the breast pump according to the preferred embodiment of the present invention.

[0072] FIG11 is a schematic cross-sectional view of a partial structure of yet another modified example of the self-adsorption milk suction device of the breast pump according to the preferred embodiment of the present invention.

[0073] FIG12 is a schematic cross-sectional view of the partial structure of the modified example of the self-adsorption milk suction device of the breast pump according to the preferred embodiment of the present invention. DETAILED DESCRIPTION

[0074] Before describing in detail any embodiment of the present invention, it should be understood that the present invention is not limited in its application to the construction and arrangement details of the components set forth in the following description or illustrated in the following figures. The present invention is capable of other embodiments and can be practiced or carried out in various ways. In addition, it should be understood that the words and terms used herein are for descriptive purposes and should not be considered restrictive. The use of "including" or "having" and their variations herein is intended to cover the items and their equivalents set forth below and additional items. Unless otherwise specified or limited, the terms "mounted", "connected", "supported" and "coupled" and their variations are used broadly and cover direct mounting and indirect mounting, connection, support and coupling. In addition, "connected" and "coupled" are not limited to physical or mechanical connections or couplings.

[0075] Furthermore, on the first hand, in the disclosure of the present invention, the terms "longitudinal", "transverse", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside" and the like to indicate orientations or positional relationships are based on the orientations or positional relationships shown in the accompanying drawings, which are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore the above terms cannot be understood as limitations on the present invention; on the second hand, the term "one" should be understood as "at least one" or "one or more", that is, in one embodiment, the number of an element may be one, while in another embodiment, the number of the element may be multiple, and the term "one" cannot be understood as a limitation on the quantity.

[0076] With reference to Figures 1 to 7 of the accompanying drawings, a breast pump according to a preferred embodiment of the present invention will be disclosed and explained below. The breast pump includes at least one self-sucking breast pumping device 10, a main unit 20, and an air tube 30 connecting the self-sucking breast pumping device 10 and the main unit 20. After the self-sucking breast pumping device 10 is attached to a breast, the main unit 20, when in operation, can assist a user in expressing milk. Preferably, there are two self-sucking breast pumping devices 10, so that the two self-sucking breast pumping devices 10 can be attached to two breasts, respectively, to simultaneously express milk.

[0077] In this specific example of the breast pump of the present invention shown in Figures 1 to 7 , the breast pump allows the self-adhesive milk suction device 10 to be attached to the breast, enabling bare-breasted suction, without the need for the assistance of underwear. It should be noted that the "bare-breasted suction" described in the breast pump of the present invention refers to the self-adhesive milk suction device 10 being directly attached to the breast without the assistance of any items such as underwear, and sucking milk when the main unit 20 is turned on. Nevertheless, the breast pump of the present invention also allows the user to use it while wearing underwear. In this case, a portion of the self-adhesive milk suction device 10 is placed between the underwear and the breast. This significantly reduces the size of the portion of the self-adhesive milk suction device 10 located between the underwear and the breast, thereby reducing pressure on the breast. This is not only beneficial for milk suction, but also for breast health.

[0078] Specifically, referring to Figures 1 to 7 , the self-adhesive breast pumping device 10 includes a negative pressure generating unit 11, a self-adhesive hood 12, and a milk discharge one-way valve 13. The self-adhesive hood 12 and the milk discharge one-way valve 13 are respectively disposed at the front and bottom of the negative pressure generating unit 11. The negative pressure generating unit 11 is connected to the main unit 20. When a user attaches the self-adhesive breast pumping device 10 to a breast through the self-adhesive hood 12, a negative pressure space 100 is formed between the self-adhesive hood 12 and the breast, thereby enabling the self-adhesive breast pumping device 10 to be attached to the breast without the need for underwear.

[0079] More specifically, the negative pressure forming unit 11 has a negative pressure chamber 1101, a gas exchange channel 1102, a milk suction chamber 1103, an assembly opening 1104, and a milk discharge channel 1105. The gas exchange channel 1102 is connected to the negative pressure chamber 1101. The host 20 can change the air pressure state of the negative pressure chamber 1101 through the gas exchange channel 1102. That is, the host 20 can increase and decrease the air pressure of the negative pressure chamber 1101 through the gas exchange channel 1102 of the negative pressure forming unit 11. 1104 and the milk discharge channel 1105 are respectively connected to the milk suction chamber 1103, wherein the negative pressure chamber 1101 and the milk suction chamber 1103 of the negative pressure forming unit 11 are independent of each other, and the space size of the negative pressure chamber 1101 is negatively correlated with the space size of the milk suction chamber 1103. When the space of the negative pressure chamber 1101 of the negative pressure forming unit 11 becomes larger, the space of the milk suction chamber 1103 becomes smaller. Correspondingly, when the space of the negative pressure chamber 1101 of the negative pressure forming unit 11 becomes smaller, the space of the milk suction chamber 1103 becomes larger. In addition, the air pressure state of the negative pressure chamber 1101 of the negative pressure forming unit 11 is positively correlated with the air pressure state of the milk suction chamber 1103. When the air pressure of the negative pressure chamber 1101 of the negative pressure forming unit 11 increases, the air pressure of the milk suction chamber 1103 increases. When the air pressure of the negative pressure chamber 1101 of the negative pressure forming unit 11 decreases, the air pressure of the milk suction chamber 1103 decreases.

[0080] The self-adsorption cover 12 includes an assembly ring body 121 and a deformable trumpet cover body 122 extending outward from the assembly ring body 121. The assembly ring body 121 of the self-adsorption cover 12 is assembled to the negative pressure forming unit 11 at the position of the assembly opening 1104 of the negative pressure forming unit 11. The milk discharge one-way valve 13 is arranged on the negative pressure forming unit 11 at the position of the milk discharge channel 1105 of the negative pressure forming unit 11 to selectively open and close the milk discharge channel 1105 of the negative pressure forming unit 11.

[0081] 5 to 7 , the process of attaching the self-adsorption milk sucking device 10 to the breast may be as follows: first, flipping the horn cover 122 of the self-adsorption cover 12 toward the negative pressure forming unit 11; second, allowing the position of the horn cover 122 for connecting with the assembly ring 121 to contact the areola; third, restoring the horn cover 122 so that the horn cover 122 wraps a part of the breast to form the negative pressure space 100 between the horn cover 122 and the breast, allowing the self-adsorption milk sucking device 10 to be attached to the breast to achieve naked suction. That is to say, after the self-adsorption milk suction device 10 is adsorbed on the breast, the breast closes the front opening of the horn cover 122, and the areola closes the rear opening of the horn cover 122. In this way, the self-adsorption milk suction device 10 not only allows the negative pressure space 100 to be formed between the horn cover 122 and the breast, but also allows the milk suction cavity 1103 of the negative pressure forming unit 11 to form a closed space, which is conducive to ensuring milk suction efficiency.

[0082] During the milk expression process, when the main unit 20 inhales, the main unit 20 allows the air in the negative pressure chamber 1101 of the negative pressure generating unit 11 to be discharged through the gas exchange channel 1102, so as to reduce the air pressure in the negative pressure chamber 1101 and the space in the negative pressure chamber 1101. At this time, the space of the milk suction chamber 1103 of the negative pressure generating unit 11 increases and the air pressure decreases, so as to suck milk from the breast and temporarily store it in the milk suction chamber 1103 of the negative pressure generating unit 11. At the same time, in this process, the areola tends to be pulled toward the milk suction chamber 1103 of the negative pressure generating unit 11. The position of the horn cover 122 for connecting to the assembly ring 121 prevents the areola from being pulled toward the milk suction chamber 1103 of the negative pressure generating unit 11, so that the position of the horn cover 122 for connecting to the assembly ring 121 can squeeze the areola to squeeze out the milk. When the main unit 20 is venting air, the main unit 20 allows air to be added to the negative pressure chamber 1101 of the negative pressure forming unit 11, thereby increasing the pressure and volume of the negative pressure chamber 1101. At this time, the volume of the milk suction chamber 1103 of the negative pressure forming unit 11 is reduced and the pressure is increased, and the milk discharge one-way valve 13 automatically opens to discharge the milk temporarily stored in the milk suction chamber 1103 of the negative pressure forming unit 11. This process is repeated, and the breast pump achieves milking.

[0083] That is to say, the space of the milk suction chamber 1103 of the negative pressure forming unit 11 decreases as the space of the negative pressure chamber 1101 increases and increases as the space of the negative pressure chamber 1101 decreases, thereby achieving that the air pressure of the milk suction chamber 1103 of the negative pressure forming unit 11 increases when the air pressure of the negative pressure chamber 1101 increases and decreases when the air pressure of the negative pressure chamber 1101 decreases.

[0084] Furthermore, the self-adsorption milk suction device 10 includes a milk bottle 14, which is installed on the negative pressure generating unit 11, and the opening of the milk discharge one-way valve 13 is facing the milk bottle 14. In this way, after the milk discharge one-way valve 13 is automatically opened, the milk temporarily stored in the milk suction chamber 1103 of the negative pressure generating unit 11 can be collected into the milk bottle 14.

[0085] Continuing with reference to Figures 1 to 7, the negative pressure generating unit 11 includes a supporting housing 111 and a negative pressure generating portion 112. The supporting housing 111 has a housing cavity 1111, a housing opening 1112, and a housing notch 1113, respectively communicating with the housing cavity 1111. The negative pressure generating portion 112 includes a deformable bowl 1121, an annular frame 1122 disposed at the opening of the deformable bowl 1121, and a mounting arm 1123 extending downward from the frame 1122. The skeleton 1122 is mounted on the supporting shell 111 at the shell opening 1112, the deformable bowl 1121 extends to the shell cavity 1111 of the supporting shell 111, and the mounting arm 1123 is located at the shell notch 1113 of the supporting shell 111, wherein the negative pressure cavity 1101 of the negative pressure forming unit 11 is formed between the supporting shell 111 and the deformable bowl 1121, the gas exchange channel 1102 of the negative pressure forming unit 11 is formed in the supporting shell 111, the milk suction cavity 1103 and the assembly opening 1104 of the negative pressure forming unit 11 are formed in the skeleton 1122, and the milk discharge channel 1105 of the negative pressure forming unit 11 extends from the inner wall of the deformable bowl 1121 through the skeleton 1122 to the end of the mounting arm 1123. Optionally, in other examples of the breast pump of the present invention, the milk discharge channel 1105 of the negative pressure generating unit 11 may extend from the inner wall of the frame 1122 to the end of the mounting arm 1123 .

[0086] In other words, whether the opening of the milk discharge channel 1105 of the negative pressure forming unit 11 is formed on the inner wall of the deformable bowl 1121 or on the inner wall of the skeleton 1122 depends on the width of the joint position of the deformable bowl 1121 and the skeleton 1122. In an embodiment where the width of the joint position of the deformable bowl 1121 and the skeleton 1122 is wider, the opening of the negative pressure forming unit 1105 is formed on the inner wall of the deformable bowl 1121. In a case where the width of the joint position of the deformable bowl 1121 and the skeleton 1122 is narrower, the opening of the negative pressure forming unit 1105 is formed on the inner wall of the skeleton 1122.

[0087] It is also worth noting that the specific manner in which the frame 1122 is positioned at the opening of the deformable bowl 1121 is not limited in the breast pump of the present invention. For example, in some embodiments, after the frame 1122 and the deformable bowl 1121 are separately molded, the frame 1122 is glued to the opening of the deformable bowl 1121. In other embodiments, the frame 1122 may also be positioned at the opening of the deformable bowl 1121 using a secondary injection molding process.

[0088] The milk discharge one-way valve 13 and the feeding bottle 14 are both mounted on the mounting arm 1123 of the negative pressure forming portion 112. Specifically, the mounting arm 1123 of the negative pressure forming portion 112 has an inner arm body 11231 and an outer arm body 11232 surrounding the inner arm body 11231, wherein the milk discharge one-way valve 13 is mounted on the inner arm body 11231, and the feeding bottle 14 is mounted on the outer arm body 11232. In this way, the milk discharge one-way valve 13 and the feeding bottle 14 are both mounted on the mounting arm 1123, and the opening of the milk discharge one-way valve 13 faces the feeding bottle 14.

[0089] When the air pressure in the negative pressure chamber 1101 of the negative pressure forming unit 11 changes, the shape of the deformable bowl 1121 of the negative pressure forming portion 112 changes accordingly, and the air pressure and spatial size of the milk suction chamber 1103 of the negative pressure forming unit 11 also change. Specifically, when the air pressure in the negative pressure chamber 1101 of the negative pressure forming unit 11 decreases, the deformable bowl 1121 of the negative pressure forming portion 112 deforms toward the bottom of the housing cavity 1111 of the support shell 111, thereby reducing the air pressure in the milk suction chamber 1103 of the negative pressure forming unit 11. Correspondingly, when the air pressure in the negative pressure chamber 1101 of the negative pressure forming unit 11 increases, the deformable bowl 1121 of the negative pressure forming portion 112 deforms toward the bottom of the housing cavity 1111 of the support shell 111, thereby increasing the air pressure in the milk suction chamber 1103 of the negative pressure forming unit 11.

[0090] It is worth mentioning that when the air pressure in the negative pressure chamber 1101 of the negative pressure forming unit 11 increases, the deformation bowl 1121 of the negative pressure forming part 112 can deform toward the bottom of the shell chamber 1111 away from the supporting shell 111 because the deformation bowl 1121 of the negative pressure forming part 112 accumulates elastic potential energy after being deformed toward the bottom of the shell chamber 1111 close to the supporting shell 111.

[0091] With reference to FIG4 , the speaker cover body 122 of the self-adsorption cover 12 has a cover body rear portion 1221 and a cover body front portion 1222, wherein the cover body rear portion 1221 connects the cover body front portion 1222 and the assembly ring body 121, wherein an angle α is formed between the extension direction of the cover body rear portion 1221 and the central axis of the self-adsorption cover 12, and an angle β is formed between the extension direction of the cover body front portion 1222 and the central axis of the self-adsorption cover 12, and the angle α and the angle β satisfy: α>β. In this way, on the one hand, the front side of the speaker cover body 122 can have a larger opening, and the rear side of the speaker cover body 122 (that is, the position of the speaker cover body 122 for connecting the assembly ring body 121) The self-adsorption milk suction device 10 can have a smaller opening, so that when the self-adsorption milk suction device 10 is adsorbed on the breast, the negative pressure space 100 can be formed between the speaker cover body 122 and the breast. On the other hand, the center of gravity of the self-adsorption milk suction device 10 can be closer to the self-adsorption cover 12, so that after the self-adsorption milk suction device 10 is adsorbed on the breast, the center of gravity of the self-adsorption milk suction device 10 is closer to the body, so as to reduce the component force of the gravity of the self-adsorption milk suction device 10 acting on the breast, thereby not only reducing the requirement of the self-adsorption milk suction device 10 on the adsorption force of the self-adsorption cover 12, but also avoiding the self-adsorption milk suction device 10 from causing pressure on the breast during the milking process, thereby ensuring breast health.

[0092] It can be understood that the angle β between the extension direction of the front part 1222 of the speaker cover 122 and the central axis of the self-adsorption cover 12 cannot be too small or too large. If the angle β is too small, the opening size of the speaker cover 122 will be too small, and the speaker cover 122 will not be able to cover the breast and the position of the speaker cover 122 for connecting the assembly ring 122 will not be able to conflict with the areola. Even if the breast is forced into the speaker cover 122, the speaker cover 122 will provide a large clamping force and act on the breast, causing breast discomfort or even damage to the breast. If the angle β is too large, the opening size of the speaker cover 122 will be too large, and the speaker cover 122 will not be able to fit the breast and the self-adsorption cover 12 will not be able to adsorb the breast. In the self-sucking breast pump 10 of the present invention, the minimum value of the angle β is preferably not less than 15°, and the maximum value is preferably not greater than 40°. Therefore, the suitable range of the angle β is 15° to 40°. In other words, the angle β satisfies the following: 15°≤β≤40°.

[0093] In addition, the hardness of the horn cover 122 of the self-adsorbing cover 12 ranges from 10A to 50A, ensuring flexibility while improving comfort. The surface roughness of the inner wall of the horn cover 122 of the self-adsorbing cover 12 ranges from Ra0.016um to Ra0.063um. In this way, when the horn cover 122 is adsorbed on the breast, there is a reasonable friction between the horn cover 122 and the breast, allowing the self-adsorbing cover 12 to stably adsorb the breast.

[0094] Preferably, continuing to refer to Figure 4, the distance L1 between the front side of the top of the speaker cover body 122 of the self-adsorption cover 12 and the rear side of the assembly ring body 121 is greater than the distance L2 between the front side of the bottom of the speaker cover body 122 and the rear side of the assembly ring body 121, that is, on the front side of the speaker cover body 122, the top of the speaker cover body 122 protrudes further forward than the bottom, so that the contact area between the speaker cover body 122 of the self-adsorption cover 12 and the upper part of the breast is greater than the contact area between the speaker cover body 122 and the lower part of the breast. In this way, the shape of the speaker cover body 122 better matches the shape of the breast, which is conducive to increasing the friction between the speaker cover body 122 and the breast, so that the self-adsorption milk suction device 10 can be more firmly adsorbed on the breast.

[0095] Furthermore, in the self-sucking breast pumping device 10 of the present invention, the negative pressure generating unit 11 does not require any electronic components. Instead, the gas exchange channel 1102 of the negative pressure generating unit 11 is connected to the main unit 20 via an air tube 30. This allows the self-sucking breast pumping device 100 to be lighter and smaller in size. This not only brings the center of gravity of the self-sucking breast pumping device 10 closer to the self-sucking cup 12, allowing the device 10 to be securely attached to the breast, but also reduces the burden on the breast. Furthermore, due to the small size of the negative pressure generating unit 11, even if the user chooses to use underwear to assist in attaching the self-sucking breast pumping device 10 to the breast, the negative pressure generating unit 11 will not excessively push the underwear outward. Furthermore, the pressure applied by the underwear to the breast via the negative pressure generating unit 11 is reduced, thereby improving the user's comfort when sucking milk through the breast pump and promoting breast health.

[0096] Continuing to refer to Figure 4, the self-adsorption cover 12 includes a small cover body 123, which is arranged at the connection position of the trumpet cover body 122 and the assembly ring body 121, and at least a part of the small cover body 123 is surrounded by the trumpet cover body 122. In this way, when the user adsorbs the self-adsorption milk suction device 10 on the breast, the inner wall of the small cover body 123 fits the areola in the way that the small cover body 123 covers the nipple, so as to ensure that the milk suction cavity 1103 of the negative pressure forming unit 11 forms a closed space and ensure the sealing of the negative pressure space 100 formed between the breast and the trumpet cover body 122, so that the self-adsorption milk suction device 10 can be reliably adsorbed on the breast.

[0097] It is worth noting that the specific manner in which the small cover 123 is disposed at the connection between the speaker cover 122 and the assembly ring 121 is not limited in the breast pump of the present invention. For example, in the specific example of the breast pump shown in Figures 1 to 7 , the small cover 123 can integrally extend forward from the connection between the speaker cover 122 and the assembly ring 121 to be disposed at the connection between the speaker cover 122 and the assembly ring 121. Optionally, the small cover 123 of the breast pump of the present invention is detachable.

[0098] In the specific example of the breast pump of the present invention shown in Figures 1 to 7 , the mounting ring 121 of the self-adhesive cover 12 is detachably mounted to the negative pressure generating portion 112. This allows for easy cleaning of the self-adhesive cover 12, thereby improving the hygiene of the breast pump. Furthermore, mothers can choose the self-adhesive cover 12 of a suitable material, shape, and / or size to meet their individual needs.

[0099] Specifically, the outer diameter of the assembly ring body 121 of the self-adsorption hood 12 is consistent with the inner diameter of the negative pressure forming part 112, so that after the assembly ring body 121 of the self-adsorption hood 12 is installed in the negative pressure forming part 112, based on the friction between the outer wall of the assembly ring body 121 and the inner wall of the negative pressure forming unit 112, the self-adsorption hood 12 can be reliably installed in the negative pressure forming unit 11.

[0100] 4 to 7 , after the assembly ring 121 of the self-adsorption cover 12 is mounted on the negative pressure forming portion 112 , the rear side of the assembly ring 121 is higher than the opening formed on the inner wall of the deformable bowl 1121 by the milk discharge channel 1105 of the negative pressure forming unit 11. In this way, the sucked milk can be blocked by the assembly ring 121 of the self-adsorption cover 12, thereby preventing the milk from flowing to the position of the horn cover 122 and further preventing the milk from leaking from the fitting position of the horn cover 122 and the breast, that is, the milk is only allowed to be discharged to the feeding bottle 14 through the milk discharge channel 1105 of the negative pressure forming unit 11.

[0101] Continuing to refer to Figure 4, the self-adsorption cover 12 further includes a limiting portion 124, which extends from the peripheral wall of the assembly ring body 121 to a direction roughly perpendicular to the extension direction of the assembly ring body 121, and there is a gap between the limiting portion 124 and the rear portion 1221 of the speaker cover body 122. In this way, when the self-adsorption cover 12 is assembled to the position of the assembly opening 1104 of the negative pressure forming unit 11, the limiting portion 124 limits the assembly depth of the assembly ring body 121 by abutting against the skeleton 1122 of the negative pressure forming portion 112. In this way, on the one hand, the limiting portion 124 can ensure that the speaker cover body A gap is provided between the rear portion 1221 of the cover body 122 and the negative pressure generating unit 11, so that when the assembly ring 121 changes position with the negative pressure generating unit 11, the horn cover body 122 can deform without being separated from the breast. Furthermore, the limiting portion 124 ensures that the assembly ring 121 extends through the assembly opening 1104 of the negative pressure generating unit 11 to the outside of the opening formed on the inner wall of the deformable bowl 1121 by the milk discharge passage 105 of the negative pressure generating unit 11, thereby preventing the assembly ring 121 from blocking the opening formed on the inner wall of the deformable bowl 1121 by the milk discharge passage 105 of the negative pressure generating unit 11. Preferably, the limiting portion 124 of the self-adsorption cover 12 is annular.

[0102] Referring to Figures 2, 3 and 4, the supporting shell 111 includes a shell body 1114 and an outer cover shell 1115, and the supporting shell 111 has a shell accommodating cavity 1116, the shell cavity 1111, the shell opening 1112 and the shell notch 1113 of the supporting shell 111 are formed in the shell body 1114, the outer cover shell 1115 is installed on the shell body 1114, and the supporting shell 111 forms the shell accommodating cavity 1116 between the shell body 1114 and the outer cover shell 1115, wherein the outer cover shell 1115 has a positioning hole 11151, and the positioning hole 11151 is connected to the shell accommodating cavity 1116 of the supporting shell 111.

[0103] It is worth noting that the specific manner in which the housing body 1114 and the outer shell 1115 are mounted to each other is not limited in the breast pump of the present invention. For example, in the specific example of the breast pump of the present invention shown in Figures 1 to 7, screws can be used to mount the housing body 1114 and the outer shell 1115.

[0104] Preferably, the supporting shell 111 includes a decorative cover 1117 , which is mounted on the shell body 1114 to cover the screws for mounting the shell body 1114 and the outer cover shell 1115 . More preferably, the decorative cover 1117 has a plurality of buckle arms 11171, and the shell body 1114 has a plurality of buckle holes 11141, and the buckle holes 11141 of the shell body 1114 are connected to the shell accommodating cavity 1116 of the supporting shell 111, wherein the buckle arms 11171 of the decorative cover 1117 extend to the shell accommodating cavity 1116 of the supporting shell 111 after respectively passing through the buckle holes 11141 of the shell body 1114, and in the shell accommodating cavity 1116 of the supporting shell 1114, the buckle arms 11171 of the decorative cover 1117 automatically buckle the shell body 1114, thereby installing the decorative cover 1117 on the shell body 1114.

[0105] 2 to 4 , the negative pressure forming unit 11 includes an airway unit 113 , and the airway unit 113 includes an air guide seat 1131 and a reversing seat 1132 .

[0106] The air guide seat 1131 has a transversely extending first air channel 11311, a bottom socket 11312, a top socket 11313, and a top boss 11314. The bottom socket 11312 and the top socket 11313 are respectively connected to the first air channel 11311, and the opening of the top socket 11313 is formed on the end surface of the top boss 11314. The shell body 1114 has a shell insert arm 11142, which extends to the shell receiving chamber 1116 of the support shell 111. The opening of the gas exchange channel 1102 of the negative pressure generating unit 11 is formed on the end surface of the shell insert arm 11142 of the shell body 1114. The air guide seat 1131 is arranged at the top of the shell body 1114, the shell insertion arm 11142 of the shell body 1114 is inserted into the bottom socket 11312 of the air guide seat 1131, and the top boss 11314 of the air guide seat 1131 extends to the positioning hole 11151 of the outer cover shell 1115, so that the air guide seat 1131 can be reliably accommodated in the shell accommodating cavity 1116 of the supporting shell 111, and the first air duct 11311 of the air guide seat 1131 is connected to the gas exchange channel 1102 of the negative pressure forming unit 11.

[0107] The reversing seat 1132 has a bottom insert arm 11321 , a side insert arm 11322 and a second air channel 11323 . An opening of the second air channel 11323 is formed on the end surface of the bottom insert arm 11321 , and another opening is formed on the end surface of the side insert arm 11322 . The bottom insert arm 11321 of the reversing seat 1132 is inserted into the top insert hole 11313 of the air guide seat 1131, so that the negative pressure chamber 1101 of the negative pressure forming unit 11 and the gas exchange channel 1102, the first air channel 11311 of the air guide seat 1131 and the second air channel 11323 of the reversing seat 1132 are connected in sequence, wherein one end of the air pipe 30 is installed on the side insert arm 11322 of the reversing seat 1132, so that the main unit 20 can change the air pressure state of the negative pressure chamber 1101 of the negative pressure forming unit 11 through the air pipe 30.

[0108] In the specific example of the breast pump of the present invention shown in Figures 1 to 7 , by disposing the air guide seat 1131 and the reversing seat 1132 on the top of the housing body 1114 of the support shell 111, the portion of the negative pressure generating unit 11 used to connect to the air tube 30 (i.e., the side arms 11322 of the reversing seat 1132) can be positioned in a suitable location, thus preventing this portion from occupying a large space. In other words, the provision of the air guide seat 1131 and the reversing seat 1132 of the airway unit 113 enables the miniaturization of the self-sucking breast pumping device 10. Thus, even if the user chooses to use underwear to assist in attaching the self-sucking breast pumping device 10 to the breast, the negative pressure generating unit 11 of the self-sucking breast pumping device 10 will not excessively push the underwear outward. Furthermore, the pressure applied to the breast by the underwear through the negative pressure generating unit 11 is reduced, thereby improving the user's comfort while expressing milk through the breast pump and promoting breast health.

[0109] In this specific example of the breast pump of the present invention shown in Figures 1 to 7, the bottom plug hole 11312 of the reversing seat 1132 is pluggably inserted into the top plug hole 11313 of the air guide seat 1131, so that the user can change the direction of the side plug arm 11322 of the reversing seat 1132 as needed. For example, the user can allow the bottom plug arm 11321 of the reversing seat 1132 to be inserted into the side of the reversing seat 1132 as needed. The insertion arm 11322 is inserted into the top socket 11313 of the air guide seat 1131 with the insertion arm 11322 facing the left side, and the bottom insertion arm 11321 of the reversing seat 1132 can also be inserted into the top socket 11313 of the air guide seat 1131 with the side insertion arm 11322 of the reversing seat 1132 facing the right side. In this way, the user does not need to distinguish the directions of the two self-adsorption milk suction devices 10 during the process of assembling the breast pump.

[0110] It can be understood that since the shell insertion arm 11142 of the shell body 1114 of the supporting shell 111 is inserted into the bottom socket 11312 of the air guide seat 1131 and the top boss 11314 of the air guide seat 1131 extends to the positioning hole 11151 of the outer cover shell 1115, the air guide seat 1131 can be stably accommodated in the shell accommodating cavity 1116 of the supporting shell 111, so that no matter when the bottom insertion arm 11321 of the reversing seat 1132 is inserted into the top socket 11313 of the air guide seat 1131 or when the bottom insertion arm 11321 of the reversing seat 1132 is pulled out from the top socket 11313 of the air guide seat 1131, the air guide seat 1131 will not shift, so as to ensure the reliability of the breast pump.

[0111] 3 and 4 , the top of the shell body 1114 has a positioning wall 11143, and the positioning wall 11143 surrounds the bottom of the air guide seat 1131, and the positioning wall 11143 and the outer wall of the air guide seat 1131 are in contact with each other. In this way, on the one hand, before the outer cover 1115 is assembled to the shell body 1114, the positioning wall 11143 of the shell body 1114 pre-positions the air guide seat 1131, and when the outer cover 1115 is assembled to the shell body 1114, the positioning wall 11143 of the shell body 1114 can avoid the The air guide seat 1131 is shifted to ensure that the top boss 11314 of the air guide seat 1131 is inserted into the positioning hole 11151 of the outer cover shell 1115, thereby improving assembly efficiency. On the other hand, when the bottom insert arm 11321 of the reversing seat 1132 is inserted into the top socket 11313 of the air guide seat 1131 or the bottom insert arm 11321 of the reversing seat 1132 is pulled out from the top socket 11313 of the air guide seat 1131, the positioning wall 11143 of the shell body 1114 can prevent the air guide seat 1131 from shifting.

[0112] Continuing with reference to Figures 2 to 4, the outer cover 1115 further includes an outer shell 11152 and an anti-detachment cover 11153, wherein the positioning hole 11151 is formed in the anti-detachment cover 11153, wherein the outer shell 11152 has a shell channel 111521, and the outer shell 11152 is fixedly mounted on the shell body 1114, and the position of the top boss 11314 of the air guide seat 1131 corresponds to the shell channel 1111 of the outer shell 11152. 521, wherein the anti-detachment cover 11153 is fixedly mounted on the shell channel 111521 of the outer shell body 11152, and the top boss 11314 of the air guide seat 1131 is inserted into the positioning hole 11151 formed on the anti-detachment cover 11153 of the outer cover shell 1115. In this way, the shell body 1114, the air guide seat 1131 and the outer cover shell 1115 can be easily assembled and the misalignment of the air guide seat 1131 can be avoided.

[0113] It is worth mentioning that the specific manner in which the anti-detachment cover 11153 is fixedly mounted on the housing channel 111521 of the outer shell 11152 is not limited in the breast pump of the present invention. For example, in the specific example of the breast pump of the present invention shown in Figures 1 to 7, with reference to Figures 2 to 4, the anti-detachment cover 11153 has a plurality of hook arms 111531 on opposite sides, the shape of the anti-detachment cover 11153 matches the shape of the housing channel 111521 of the outer shell 11152, and the size of the anti-detachment cover 11153 is slightly larger than the size of the housing channel 111521 of the outer shell 11152. The hook arms 111531 extend into the shell accommodating cavity 1116 of the supporting shell 111 through the shell channels 111521 of the outer shell 11152 respectively, and the hook arms 111531 of the anti-detachment cover 11153 hook the edge of the outer shell 11152 for forming the shell channel 111521, so that the anti-detachment cover 11153 can be reliably installed on the outer shell 11152 to close the shell channel 111521 of the outer shell 11152.

[0114] According to another aspect of the present invention, the present invention further provides an operating method of the self-adsorption breast pump device 10. Referring to Figures 5 to 7, the operating method includes the following steps:

[0115] (a) turning over the speaker cover 122 of the self-adsorption cover 12 toward the negative pressure forming unit 11;

[0116] (b) allowing the position of the trumpet cover body 122 of the self-adsorbing cover 12 for connecting with the mounting ring body 121 to contact the areola; and

[0117] (c) The speaker cover 122 is restored so that the speaker cover 122 covers a portion of the breast, thereby forming the negative pressure space 100 between the speaker cover 122 and the breast to allow the self-adsorption milk pump 10 to be adsorbed on the breast.

[0118] After the self-sucking breast pump device 10 is attached to the breast, the breast closes the front opening of the horn cover 122, and the areola closes the rear opening of the horn cover 122. Thus, the self-sucking breast pump device 10 not only allows the negative pressure space 100 to be formed between the horn cover 122 and the breast, but also allows the milk suction chamber 1103 of the negative pressure generating unit 11 to form a closed space. Through the above-described operating method, the self-sucking breast pump device 10 can be reliably attached to the breast without the aid of underwear, allowing for bare breast suction.

[0119] Preferably, in step (b), the operating method allows the inner wall of the small cover body 123 of the self-adsorption cover 12 to fit the areola in a manner that the small cover body 123 covers the nipple. In this way, it is helpful to ensure that the milk suction cavity 1103 of the negative pressure forming unit 11 forms a closed space, thereby increasing the sealing performance of the negative pressure space 100, so that the self-adsorption milk suction device 10 can be reliably adsorbed on the breast.

[0120] Preferably, in step (b), the contact area between the horn cover 122 of the self-adhesive cover 12 and the upper part of the breast is greater than the contact area between the horn cover 122 and the lower part of the breast. In this way, the shape of the horn cover 122 better matches the shape of the breast, which helps to increase the friction between the horn cover 122 and the breast, allowing the self-adhesive breast pumping device 10 to be more firmly attached to the breast. More preferably, the self-adhesive cover 12 is made of silicone. Because the distance between the front side of the top of the horn cover 122 of the self-adhesive cover 12 and the rear side of the mounting ring 121 is greater than the distance between the front side of the bottom of the horn cover 122 and the rear side of the mounting ring 121, the horn cover 122 can provide a greater wrapping force on the upper part of the breast due to the elasticity of the silicone itself, allowing the self-adhesive breast pumping device 10 to be more firmly attached to the breast.

[0121] Figures 8A to 10 show a modified example of the self-adsorption milk suction device 10. Unlike the self-adsorption milk suction device 10 of the breast pump shown in Figures 1 to 7, in this specific example of the self-adsorption milk suction device 10 of the present invention shown in Figures 8A to 10, the trumpet cover 122 of the self-adsorption cover 12 has an exhaust channel 1223, and the self-adsorption cover 12 further includes an exhaust one-way valve 125, which is provided on the trumpet cover 122 for selectively opening and closing the exhaust channel 1223 of the trumpet cover 122. When the self-adhesive breast pumping device 10 is attached to a breast, forming the negative pressure space 100 between the speaker housing 122 and the breast, the exhaust check valve 125 allows air in the negative pressure space 100 to be discharged through the exhaust passage 1223 of the speaker housing 122, thereby ensuring that the air pressure in the negative pressure space 100 is lower than the air pressure of the external environment, thereby ensuring that the self-adhesive breast pumping device 10 is reliably attached to the breast. Preferably, the exhaust check valve 125 and the speaker housing 122 are integrally formed.

[0122] Furthermore, the negative pressure generating unit 11 has a valve chamber 1106 and a communication channel 1107. The valve chamber 1106 is located above the milk suction chamber 1103, and the communication channel 1107 connects the valve chamber 1106 and the milk suction chamber 1103. The end of the exhaust check valve 125 facing away from the horn cover 122 extends into the valve chamber 1106 of the negative pressure generating unit 11. It can be understood that when the self-adhesive breast pumping device 10 is attached to a breast, the negative pressure space 100 is formed between the horn cover 122 and the breast. At the same time, the areola closes the rear opening of the horn cover 122, forming a closed space in the milk suction chamber 1103 of the negative pressure generating unit 11. Therefore, the negative pressure space 100 and the milk suction chamber 1103 of the negative pressure generating unit 11 are independent of each other. When the main unit 20 inhales air, causing the air pressure in the milk suction chamber 1103 of the negative pressure generating unit 11 to decrease, the exhaust check valve 125 opens the exhaust passage 1223 of the speaker cover 122, allowing air in the negative pressure space 100 to enter the milk suction chamber 1103 of the negative pressure generating unit 11 through the exhaust passage 1223 of the speaker cover 122, thereby preventing the speaker cover 122 from falling off the breast during milk suction, and ensuring that the self-adhesive milk suction device 10 is securely attached to the breast. It is understood that when the main unit 20 exhausts air, causing the air pressure in the milk suction chamber 1103 of the negative pressure generating unit 11 to increase, the exhaust check valve 125 closes the exhaust passage 1223 of the speaker cover 122, preventing air in the milk suction chamber 1103 of the negative pressure generating unit 11 from entering the negative pressure space 100, thereby ensuring that the self-adhesive milk suction device 10 is securely attached to the breast.

[0123] In the breast pump of the present invention, since the valve chamber 1106 of the negative pressure generating unit 11 is located above the milk suction chamber 1103, the valve chamber 1106 and the milk suction chamber 1103 are connected through the connecting channel 1107, and the connecting channel 1107 has a relatively small size. Therefore, during the milk suction process, the sucked milk is prevented from entering the valve chamber 1106 from the milk suction chamber 1103 through the connecting channel 1107 of the negative pressure generating unit 11.

[0124] Preferably, the gas flow rate at the communication position between the communicating channel 1107 and the valve cavity 1106 of the negative pressure forming unit 11 is smaller than the gas flow rate at the communication position between the communicating channel 1107 and the milk suction cavity 1103. In this way, it can ensure that the air pressure in the milk suction cavity 1103 of the negative pressure forming unit 11 drops to a sufficiently low level to provide a strong suction force for milk suction, and can avoid a substantial drop in the air pressure in the valve cavity 1106 of the negative pressure forming unit 11, so that the speaker cover 122 will not be excessively deformed, thereby ensuring comfort during milk suction.

[0125] Preferably, the exhaust one-way valve 125 is arranged on the rear side of the top of the speaker cover 122, so that the exhaust one-way valve 125 and the valve cavity 1106 of the negative pressure forming unit 11 cooperate with each other to guide the installation method of the self-adsorption cover 12, that is, after the self-adsorption cover 12 is installed on the negative pressure forming unit 11, the forward protruding part of the speaker cover 122 can be automatically located at the top, ensuring that the top of the speaker cover 122 protrudes further forward than the bottom.

[0126] Unlike the specific structure of the negative pressure generating unit 11 of the self-sucking milk extraction device 10 of the breast pump shown in Figures 1 to 7 , the negative pressure generating unit 11 in the specific example of the negative pressure generating unit 11 shown in Figures 8A to 10 includes a milk suction shell 114, a deformable bowl 1121, and a top cover 115. The milk suction shell 114 has a first concave cavity 1141 with a front opening, a second concave cavity 1142 with a front opening, a third concave cavity 1143 with a top opening, a first through hole 1144, and a second through hole 1145. The second concave cavity 1142 is located above the first concave cavity 1141. The first through hole 1144 connects the first concave cavity 1141 and the third concave cavity 1143. The second through hole 1145 connects the second concave cavity 1142 and the third concave cavity 1143. The deformable bowl 1121 is accommodated in the third concave cavity 1143 of the milk suction shell 114, and the edge of the deformable bowl 1121 rests on the edge of the third concave cavity 1143 of the milk suction shell 114. The connecting channel 1107 of the negative pressure forming unit 11 is formed between the milk suction shell 114 and the deformable bowl 115. The first concave cavity 1141 and the second concave cavity 1142 of the milk suction shell 114 respectively form the milk suction cavity 1103 and the valve cavity 1106 of the negative pressure forming unit 11. The top cover 115 is mounted on the milk suction shell 114, and the edge of the top cover 115 and the edge of the third concave cavity 1143 of the milk suction shell 114 clamp the edge of the deformable bowl 1121 to form the negative pressure chamber 1101 of the negative pressure forming unit 11 between the top cover 116 and the deformable bowl 115, wherein the air pipe 300 can be connected to the top cover 116.

[0127] The size of the first through hole 1144 of the milk suction shell 114 is larger than the size of the second through hole 1145, so that the gas flow rate at the communication position between the communicating channel 1107 and the valve cavity 1106 of the negative pressure forming unit 11 is smaller than the gas flow rate at the communication position between the communicating channel 1107 and the milk suction cavity 1103.

[0128] Continuing with reference to Figures 8A to 10, the negative pressure generating unit 11 further includes a mounting arm 1123, which extends downward from the milk suction shell 114 as a whole. The milk discharge channel 1105 of the negative pressure generating unit 11 extends from the inner wall of the milk suction shell 114 to the end of the mounting arm 1123. The milk discharge one-way valve 13 is mounted on the mounting arm 1123 for selectively opening and closing the milk discharge channel 1105 of the negative pressure generating unit 11.

[0129] FIG11 shows another modified example of the self-adsorption milk suction device 10. Different from the self-adsorption milk suction device 10 shown in FIG8A to FIG10, in this specific example of the self-adsorption milk suction device 10 shown in FIG11, the end of the exhaust check valve 125 of the self-adsorption cover 12 facing away from the self-adsorption cover 122 is located outside the negative pressure forming unit 11, that is, when the self-adsorption milk suction device 10 is adsorbed on the breast and the negative pressure space 100 is formed between the horn cover 122 and the breast, the exhaust check valve 125 allows the air in the negative pressure space 100 to be discharged to the external environment through the exhaust channel 1223 of the horn cover 122, so as to ensure that the air pressure in the negative pressure space 100 is lower than the air pressure of the external environment, thereby ensuring that the self-adsorption milk suction device 10 is reliably adsorbed on the breast.

[0130] FIG12 shows a modified example of the self-adsorption milk sucking device 10. Unlike the self-adsorption milk sucking device 10 of the breast pump shown in FIG1 to FIG7 , in this specific example of the self-adsorption milk sucking device 10 of the present invention shown in FIG12 , the horn cover 122 of the self-adsorption cover 12 has the exhaust channel 1223, and the self-adsorption cover 12 includes the exhaust one-way valve 125. The exhaust one-way valve 125 is provided on the horn cover 122 for selectively opening and closing the exhaust passage 1223. The exhaust channel 1223 of the trumpet cover 122, the negative pressure forming unit 11 has the valve cavity 1106 and the connecting channel 1107, the connecting channel 1107 connects the milk suction cavity 1103 and the valve cavity 1106, the valve cavity 1106 and the connecting channel 1107 are formed in the negative pressure forming part 112, when the self-adsorption cover 12 is installed in the negative pressure forming part 112, the exhaust one-way valve 125 of the self-adsorption cover 12 extends into the valve cavity 1106 of the negative pressure forming unit 11. When the main unit 20 inhales air, causing the air pressure in the milk suction chamber 1103 of the negative pressure generating unit 11 to decrease, the exhaust check valve 125 opens the exhaust passage 1223 of the speaker cover 122, allowing air in the negative pressure space 100 to enter the milk suction chamber 1103 of the negative pressure generating unit 11 through the exhaust passage 1223 of the speaker cover 122, thereby preventing the speaker cover 122 from falling off the breast during milk suction, and ensuring that the self-adhesive milk suction device 10 is securely attached to the breast. It is understood that when the main unit 20 exhausts air, causing the air pressure in the milk suction chamber 1103 of the negative pressure generating unit 11 to increase, the exhaust check valve 125 closes the exhaust passage 1223 of the speaker cover 122, preventing air in the milk suction chamber 1103 of the negative pressure generating unit 11 from entering the negative pressure space 100, thereby ensuring that the self-adhesive milk suction device 10 is securely attached to the breast.

[0131] Those skilled in the art will appreciate that the embodiments of the present invention described above and shown in the accompanying drawings are intended to be illustrative only and are not intended to limit the present invention. The objectives of the present invention have been fully and effectively achieved. The functional and structural principles of the present invention have been demonstrated and illustrated in the embodiments. Any variations or modifications may be made to the embodiments of the present invention without departing from the principles described.

Claims

1. A method for operating a self-adsorption breast pumping device, characterized in that: The operation method comprises the following steps: (a) turning over the horn cover of the self-adsorption cover toward the negative pressure forming unit; (b) allowing the position of the horn cover body of the self-adhesive cover for connecting the mounting ring body to abut against the areola; and (c) restoring the horn cover so that the horn cover wraps a portion of the breast to form a negative pressure space between the horn cover and the breast, allowing the self-adsorbing milk suction device to be adsorbed on the breast.

2. The operating method of the self-adsorbing breast pump according to claim 1, wherein in the step (b), the inner wall of the small cover body of the self-adsorbing cover is allowed to fit the areola in a manner that the small cover body covers the nipple, wherein the small cover body extends to a position of the trumpet cover body for connecting to the assembly ring body.

3. The operating method of the self-adsorbing breast pump according to claim 1, wherein in the step (b), the contact area between the horn cover body of the self-adsorbing cover and the upper part of the breast is greater than the contact area between the horn cover body and the lower part of the breast.

4. The operating method of the self-adsorption breast pumping device according to claim 1, wherein in the above method, the negative pressure space formed between the horn cover body of the self-adsorption cover and the breast is allowed to be connected to the milk suction chamber of the negative pressure forming unit through an exhaust one-way valve, wherein the exhaust one-way valve allows the air in the negative pressure space to flow toward the milk suction chamber and prevents the air in the milk suction chamber from flowing toward the negative pressure space.

5. The operating method of the self-adsorption breast pumping device according to claim 1, wherein in the above method, the negative pressure space formed between the horn cover body of the self-adsorption cover and the breast is allowed to be connected to the external environment of the negative pressure forming unit through an exhaust one-way valve, wherein the exhaust one-way valve allows the air in the negative pressure space to flow to the outside and prevents the air in the external environment from flowing toward the negative pressure space.

6. The operating method of the self-adsorption breast pumping device according to claim 4, wherein in the above method, the exhaust one-way valve extends into the valve cavity located at the top of the negative pressure forming unit, and the connecting channel of the negative pressure forming unit connects the valve cavity and the milk suction cavity, wherein the gas flow rate at the connecting position between the connecting channel and the valve cavity is smaller than the gas flow rate at the connecting position between the connecting channel and the milk suction cavity.

7. A self-adsorption breast pumping device, characterized in that: include: Milk discharge check valve; A self-adsorption cover, wherein the self-adsorption cover comprises a mounting ring body and a deformable horn cover body extending outward from the mounting ring body; and A negative pressure forming unit, wherein the negative pressure forming unit has a negative pressure chamber, a gas exchange channel connected to the negative pressure chamber, a milk suction chamber independent of the negative pressure chamber, and an assembly opening and a milk discharge channel connected to the milk suction chamber, the spatial size of the negative pressure chamber is negatively correlated with the spatial size of the milk suction chamber, wherein the milk discharge one-way valve is arranged on the negative pressure forming unit for selectively opening and closing the milk discharge channel of the negative pressure forming unit, wherein the assembly ring body of the self-adsorption cover is assembled to the negative pressure forming unit at the position of the assembly opening.

8. The self-adsorbing breast pump device according to claim 7, wherein the horn cover body has a cover body rear part and a cover body front part, the cover body rear part connects the cover body front part and the assembly ring body, wherein an angle α is formed between an extension direction of the cover body rear part and a central axis of the self-adsorbing cover, an angle β is formed between an extension direction of the cover body front part and a central axis of the self-adsorbing cover, and the angle α and the angle β satisfy: α>β.

9. The self-adsorbing breast pump device according to claim 7, wherein the self-adsorbing cover further comprises a small cover body, the small cover body is arranged at the connection position between the trumpet cover body and the assembly ring body, and at least a part of the small cover body is surrounded by the trumpet cover body.

10. The self-adsorbing breast pump device according to any one of claims 7 to 9, wherein the bell housing has an exhaust passage, wherein the self-adsorbing housing comprises an exhaust one-way valve, and the exhaust one-way valve is arranged on the bell housing for selectively opening and closing the exhaust passage of the bell housing. 11 . The self-adsorption breast pumping device according to claim 10 , wherein an end of the exhaust one-way valve facing away from the horn cover is located outside the negative pressure forming unit.

12. The self-adsorption milk sucking device according to claim 10, wherein the negative pressure forming unit has a valve cavity and a connecting passage, the valve cavity is located above the milk suction cavity, the connecting passage connects the valve cavity and the milk suction cavity, and the end of the exhaust one-way valve facing away from the horn cover body extends into the valve cavity of the negative pressure forming unit.

13. The self-adsorbing breast pump device according to claim 12, wherein a gas flow rate at a communication position between the communication channel and the valve chamber is smaller than a gas flow rate at a communication position between the communication channel and the milk suction chamber.

14. The self-sucking breast pump device according to any one of claims 7 to 9, wherein the distance between the front side of the top of the horn cover and the rear side of the mounting ring is greater than the distance between the front side of the bottom of the horn cover and the rear side of the mounting ring.

15. A breast pump, characterized in that include: Host; trachea; and The self-adsorption breast pumping device according to any one of claims 7 to 14, wherein the air pipe connects the host and the self-adsorption breast pumping device.

Citation Information

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