Intelligent temperature-control postpartum care cleaning device for obstetrical department
By employing a double-sealing structure and buffer scraping technology in the postpartum care cleaning device, the problem of nozzle contamination caused by sewage backflow has been solved, achieving efficient cleaning and safe use of the nozzles.
Patent Information
- Application Number
- CN202511328773.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-17
- Publication Date
- 2025-10-24
- Estimated Expiration
- 2045-09-17
AI Technical Summary
In existing postpartum care cleaning devices, wastewater can easily be drawn into the nozzle cavity by negative pressure during the cleaning process, leading to bacterial growth and affecting the health of postpartum women.
It adopts a dual-sealing structure, which achieves rapid sealing at the nozzle orifice through the drive component and the sealing component, blocking the communication between sewage and the inside of the nozzle, and performs secondary cleaning through buffering and scraping to prevent contamination.
It effectively blocks sewage backflow, prevents internal contamination of the nozzle, reduces the risk of bacterial growth, and ensures safe and hygienic use.
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Figure CN120827477A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of postpartum care cleaning devices, and particularly relates to a postpartum care cleaning device with intelligent temperature control for obstetrics. BACKGROUND
[0002] The use of Chinese herbal liquid for cleaning the private parts of puerpera during postpartum care is mainly because the Chinese herbal liquid has multiple effects and can meet the postpartum private part care needs of puerpera. On the one hand, many Chinese herbs such as Sophora flavescens, Phellodendri chinensis, and Cnidium monnieri contain natural antibacterial and anti-inflammatory ingredients, which can help inhibit the growth of bacteria in the private parts and reduce the risk of postpartum infection, which is particularly important for puerpera who are weak in body, have wounds or hyperemia and edema in the private parts due to childbirth. On the other hand, some Chinese herbs such as Motherwort and Angelica have the effects of promoting blood circulation and unblocking meridians, and can accelerate the repair of private part tissues and relieve swelling and discomfort. At the same time, the mild nature of some herbs can also regulate the local qi and blood of the private parts and help improve the state of postpartum deficiency of qi and blood. Moreover, the Chinese herbal liquid is usually made of mild formula, which has less irritation to the sensitive private part mucosa after delivery than some chemical lotions, and can nourish and protect while cleaning, which is in line with the traditional Chinese medicine concept of regulating the body after delivery, supporting the healthy and eliminating the evil. Through the synergistic effect of natural herbs, safer and more comprehensive care is provided for the private parts of puerpera.
[0003] In Chinese patent 202410496066.8, the invention relates to the technical field of medical cleaning, and discloses a vulva cleaner for postpartum care, which comprises a cover body, a basin body, a cleaning assembly for rolling contact cleaning of the external genitalia of a patient, a pressure regulating device for adjusting the flushing pressure, the cleaning assembly comprising an elastic contact device, a water inlet device and a power device, the basin body cover being arranged on the cover body, and the bottom of the basin body being provided with a water outlet. The vulva cleaner for postpartum care is arranged on the toilet cover, and the external genitalia of the patient is contacted and rolled by the rotating sleeve for water injection cleaning, so as to improve the convenience of the whole cleaning process, without the need for manual cleaning by the operator or the patient. The elastic contact of the device realizes automatic cleaning. Moreover, the whole device has a small size and can be directly placed on the toilet at home or in the hospital, without the need for the patient to go back and forth to the hospital, realizing the household use of the cleaning device and improving the convenience and privacy of the patient.
[0004] In view of the above and the prior art, the inventors believe that the following defects often exist: In the cleaning process, some cleaning used sewage may splash to the nozzle, when the cleaning ends, the water flow suddenly stops, the certain negative pressure formed in the cleaner is easy to suck the sewage at the nozzle back, causing the cleaning bottle inside the washing liquid to be contaminated, the existing cleaner mostly sets a one-way valve at the bottom of the nozzle or inside the spray rod for preventing backflow, but the setting of the one-way valve of the prior art can only prevent the contaminated water at the nozzle from flowing back into the cleaning bottle to cause pollution, the local negative pressure in the nozzle cavity still causes the sewage adhered to the surface of the nozzle to enter the nozzle cavity through the spray hole, which is easy to breed bacteria in the nozzle, affecting the subsequent use. SUMMARY
[0005] The technical problem to be solved by the present application is that in the prior art, sewage is sucked into the nozzle cavity by negative pressure, bacteria are easily bred, and the health of the puerpera is affected. To solve this problem, we propose an obstetric intelligent temperature control postpartum care cleaning device.
[0006] To achieve the above purpose, the following technical scheme is adopted in the present application: An obstetric intelligent temperature control postpartum care cleaning device, comprising: a cleaning nozzle, the inside of the cleaning nozzle is fixedly connected with a flow collecting cavity, the top end of the flow collecting cavity is coaxially provided with a driving assembly, the outer wall of the top end of the flow collecting cavity is fixedly connected with an elastic sealing sheet, the outer wall of the elastic sealing sheet is fixedly connected with a lifting plate, and the lifting plate is slidingly connected in the inside of the cleaning nozzle, the top of the lifting plate is annularly arrayed with a plugging assembly, the top of the cleaning nozzle is fixedly connected with a nozzle top plate, the inside of the nozzle top plate is annularly arrayed with liquid medicine spray holes, and the liquid medicine spray holes correspond one-to-one to the plugging assembly. The driving assembly comprises a support shaft, the outer part of the support shaft is rotatably connected with an elastic lever, one end of the elastic lever is rotatably connected with a push plate, and the other end of the elastic lever is rotatably connected with the lifting plate, the elastic lever is annularly arrayed about the outer wall of the push plate, and the push plate is coaxially arranged with the flow collecting cavity, the opening size of the flow collecting cavity gradually decreases from bottom to top, and the smallest end of the flow collecting cavity is opposite to the push plate. The plugging assembly comprises a silica gel plugging column, the top end of the silica gel plugging column is fixedly connected with a buffer part, a guide rod penetrates through the inside of the silica gel plugging column, the bottom end of the guide rod is fixedly connected with the lifting plate, and the part of the guide rod extending out of the buffer part is inserted into the inside of the liquid medicine spray hole.
[0007] Preferably, the outer part of the support shaft is further fixedly connected with a support block, the top end of the support block is fixedly connected to the bottom of the nozzle top plate, and the support block is spaced apart from the elastic lever.
[0008] Preferably, the outer diameter of the silica gel plugging column is matched with the inner diameter of the liquid medicine spray hole.
[0009] Preferably, the shape of the buffer part is set as a taper that gradually reduces from bottom to top, and the top end of the guide rod is integrally connected with a tapered tip.
[0010] Preferably, the inside of the current collecting cavity is coaxially sleeved with a reset assembly, the reset assembly comprises a lifting pull rod, and the lifting pull rod is fixedly connected to the bottom end of the push plate.
[0011] Preferably, the outside of the lifting pull rod is sleeved with a guide sliding cylinder, and the lifting pull rod and the guide sliding cylinder are slidingly connected, the outer wall of the guide sliding cylinder is fixedly connected with a fixed connecting rod, and the end of the fixed connecting rod away from the guide sliding cylinder is fixedly connected with the current collecting cavity.
[0012] Preferably, the bottom of the guide sliding cylinder is fixedly connected with a reset spring, the reset spring is sleeved on the outside of the lifting pull rod, the bottom end of the reset spring is fixedly connected with a pulling block, the pulling block is fixedly connected to the bottom end of the lifting pull rod, and the shape of the pulling block is set as an inverted taper that is large at the top and small at the bottom.
[0013] Preferably, the bottom of the cleaning nozzle is communicated with a threaded interface, the inside of the threaded interface is threadedly connected with a threaded connector, the bottom end of the threaded connector is fixedly connected with a liquid medicine spraying rod, and the end of the liquid medicine spraying rod away from the threaded connector is mounted with a micro electric pump.
[0014] Preferably, the outside of the micro electric pump is sleeved with a mounting shell, the top of the mounting shell is mounted with a control panel, and the control panel and the micro electric pump are electrically connected.
[0015] Preferably, the side of the mounting shell is threadedly connected with a cleaning liquid containing bottle, the inside of the cleaning liquid containing bottle is inserted with a water suction hose, the water suction hose is communicated with the input end of the micro electric pump, the bottom end of the cleaning liquid containing bottle is mounted with a heating sheet, and the heating sheet receives the control instruction of the control panel.
[0016] The technical effects and advantages of the present application are as follows: In the application, the double blocking structure is arranged to directly act on the nozzle hole of the nozzle. When water flows, the channel is opened to realize flushing. After the water flow is closed, the nozzle hole and the water outlet are quickly blocked by the linkage mechanism to isolate the external sewage from the internal communication of the nozzle. Compared with the traditional anti-backflow design, the pollution path can be more efficiently and accurately blocked, the sewage suction caused by negative pressure can be avoided, and the internal part of the nozzle can be prevented from being contaminated. While blocking the nozzle hole, the inner wall of the nozzle hole can also be cleaned. In the nozzle hole cleaning, a slow-then-fast insertion method is adopted. In the slow stage, the buffer characteristics are used to accurately align the nozzle hole, reducing the risk of deviation and collision damage. At the same time, the outer wall of the silica gel blocking column contacts the inner wall of the nozzle hole, scrapes off the attached drug chips and impurities to complete the preliminary cleaning. In the fast advancing stage, the residual dirt is completely pushed out by the instantaneous kinetic energy to realize secondary cleaning and prevent the nozzle hole from being blocked. Through the phased operation, the accuracy of the blocking is ensured, and the inner wall of the nozzle hole is double cleaned, which effectively improves the cleanliness of the nozzle, reduces the risk of bacterial growth, and ensures the safety and health of the next use. BRIEF DESCRIPTION OF DRAWINGS
[0017] The disclosure of the application will be described with reference to the accompanying drawings. It should be understood that the drawings are only for illustrative purposes, and are not intended to limit the scope of protection of the application. In the drawings, the same reference numerals are used to refer to the same parts: Figure 1 It is a cross-sectional structure schematic diagram of the whole application; Figure 2 It is a three-dimensional structure schematic diagram of the whole application; Figure 3 It is a cross-sectional structure schematic diagram of the cleaning nozzle in the water spraying state; Figure 4 It is a cross-sectional structure schematic diagram of the cleaning nozzle in the blocking state; Figure 5 It is a three-dimensional structure schematic diagram of the driving assembly part of the application; Figure 6 It is a cross-sectional structure schematic diagram of the current collecting cavity and the lifting plate part of the application; Figure 7 It is a three-dimensional structure schematic diagram of the reset assembly part of the application; Figure 8 It is a three-dimensional structure schematic diagram of the blocking assembly part of the application.
[0018] Legend: 1, cleaning nozzle; 2, flow collection cavity; 3, drive assembly; 4, lifting plate; 5, plugging assembly; 6, reset assembly; 7, nozzle top plate; 8, liquid jet; 9, threaded interface; 10, threaded joint; 11, elastic sealing sheet; 12, liquid jet rod; 13, micro electric pump; 14, mounting shell; 15, control panel; 16, cleaning liquid container; 17, water suction hose; 18, heating sheet; 301, support shaft; 302, elastic lever; 303, push plate; 304, support block; 501, silica gel plugging column; 502, buffer; 503, guide rod; 601, lifting pull rod; 602, guide sliding cylinder; 603, fixed connecting rod; 604, reset spring; 605, pulling block. DETAILED DESCRIPTION
[0019] It is easy to understand that those skilled in the art can propose a variety of structure modes and implementation modes that can be replaced with each other without changing the essential spirit of the present application. Therefore, the following detailed description and the accompanying drawings are only exemplary descriptions of the technical solutions of the present application, and should not be regarded as the whole or as a limitation or restriction on the technical solutions of the present application.
[0020] REFERENCE Figure 1 WITH Figure 2 As shown in the drawings, the present application provides a technical solution: a postpartum care cleaning device for obstetric intelligent temperature control, comprising: a cleaning nozzle 1, the bottom of the cleaning nozzle 1 is communicated with a threaded interface 9, the inside of the threaded interface 9 is threadedly connected with a threaded joint 10, the bottom end of the threaded joint 10 is fixedly connected with a liquid jet rod 12, the end of the liquid jet rod 12 away from the threaded joint 10 is provided with a micro electric pump 13, the outside of the micro electric pump 13 is sleeved with a mounting shell 14, the top of the mounting shell 14 is provided with a control panel 15, and the control panel 15 and the micro electric pump 13 are electrically connected, the side of the mounting shell 14 is threadedly connected with a cleaning liquid container 16, the inside of the cleaning liquid container 16 is inserted with a water suction hose 17, the water suction hose 17 is communicated with the input end of the micro electric pump 13, the bottom end of the cleaning liquid container 16 is provided with a heating sheet 18, and the heating sheet 18 receives the control instruction of the control panel 15.
[0021] The pre-cooked Chinese herbal liquid for postpartum care is cooled, the mounting shell 14 is rotated and unscrewed, the Chinese herbal liquid is added into the inside of the cleaning liquid container 16 through the opening at the top end of the cleaning liquid container 16, the micro electric pump 13 is started by the control panel 15, the liquid in the inside of the cleaning liquid container 16 is sucked into the liquid jet rod 12 through the water suction hose 17, and finally sprayed outwards through the cleaning nozzle 1 to clean the private parts of the puerpera, if the temperature of the liquid is low, the heating sheet 18 is started by the control panel 15 to heat the liquid, improving the comfort of use.
[0022] During the cleaning process, the cleaning nozzle 1 is located obliquely below the private parts of the puerpera to spray water flow for cleaning. Due to the body position or improper operation, etc., the sewage after the private parts of the puerpera are washed may splash above the cleaning nozzle 1. During the washing process, the cleaning liquid flows from the inside of the cleaning nozzle 1 to the outside, and the cleaning nozzle 1 is in a positive pressure state. The splashed sewage cannot enter the inside of the cleaning nozzle 1, but when the cleaner is closed, due to the pressure change in the inside of the cleaner, etc., a certain negative pressure is formed, the water at the cleaning nozzle 1 is sucked back to the inside of the cleaning liquid containing bottle 16, the pollutants are brought into the cleaning system, not only polluting the cleaning liquid, but also possibly bringing the pollutants back to the private parts during the next use, increasing the risk of infection. In order to solve this problem, the prior art usually selects to install a one-way valve or other anti-backflow mechanism at the bottom end of the nozzle or in the inside of the spray rod, but this protection method can only prevent the contaminated liquid at the nozzle from flowing back to the inside of the cleaning bottle, but when the water flow suddenly stops, the water flow speed in the inside of the nozzle decreases suddenly, the pressure decreases rapidly, a certain negative pressure area is formed in the inside of the nozzle, and the sewage originally adhered to the surface of the nozzle is sucked into the inside of the nozzle together with the air through the spray hole, which is not easy to clean and is easy to breed bacteria in the inside of the nozzle. In order to solve this problem, the present application is improved as follows: Please refer to Figures 3 to 8 As shown in the figure, the inside of the cleaning nozzle 1 is fixedly connected with a flow collecting cavity 2, the top end of the flow collecting cavity 2 is coaxially provided with a driving assembly 3, the driving assembly 3 includes a supporting shaft 301, the outside of the supporting shaft 301 is rotatably connected with an elastic lever 302, one end of the elastic lever 302 is rotatably connected with a push plate 303, and the other end of the elastic lever 302 is rotatably connected with a lifting plate 4, the elastic lever 302 is arranged in an annular array about the outer wall of the push plate 303, and the push plate 303 is coaxially arranged with the flow collecting cavity 2, the opening size of the flow collecting cavity 2 gradually decreases from bottom to top, and the smallest end of the flow collecting cavity 2 is opposite to the push plate 303, the inside of the flow collecting cavity 2 is coaxially sleeved with a reset assembly 6, the reset assembly 6 is used for controlling the reset of the driving assembly 3, the outer wall of the top end of the flow collecting cavity 2 is fixedly connected with an elastic sealing piece 11, the outer wall of the elastic sealing piece 11 is fixedly connected with the lifting plate 4, and the lifting plate 4 is slidably connected in the inside of the cleaning nozzle 1, the top of the lifting plate 4 is arranged in an annular array with a plugging assembly 5, the top of the cleaning nozzle 1 is fixedly connected with a nozzle top plate 7, the inside of the nozzle top plate 7 is annularly and arrayedly provided with liquid medicine spray holes 8, and the liquid medicine spray holes 8 correspond to the plugging assembly 5 one by one.
[0023] In the water flowing state, under the flow collecting effect of the flow collecting cavity 2, when the water flow gradually moves upward, the opening size of the flow collecting cavity 2 gradually decreases, thereby strengthening the impact force of the water flow, and when the water flow reaches the top end of the flow collecting cavity 2, the push plate 303 moves upward, so that the top end of the flow collecting cavity 2 is in an open state, at this time, the liquid overflows outward through the top end of the flow collecting cavity 2 to the lower side of the shower head top plate 7, when the push plate 303 moves upward, the lifting plate 4 is driven to move downward by the elastic lever 302, thereby bringing the sealing assembly 5 to move downward, so as to be separated from the sealing of the liquid spray hole 8, at this time, the liquid under the shower head top plate 7 can flow outward through the liquid spray hole 8, so as to frequently wash the private parts of the puerpera, the liquid first enters the interlayer cavity between the lifting plate 4 and the shower head top plate 7, and then flows outward, the interlayer cavity between the lifting plate 4 and the shower head top plate 7 can play a pressure equalizing and buffering effect, so that the cleaning liquid flows outward more gently, thereby improving the comfort of the puerpera.
[0024] When the water flowing is closed, the water pressure in the flow collecting cavity 2 decreases, and under the action of the reset assembly 6, the push plate 303 moves downward, and at the same time, the lifting plate 4 is driven to move upward by the elastic lever 302, and the sealing assembly 5 moves upward, so as to seal the liquid spray hole 8, thereby preventing the sewage on the surface of the shower head top plate 7 from being sucked into the inside of the liquid spray hole 8, and the bottom surface of the push plate 303 is fixedly connected with a layer of silica gel, when the push plate 303 moves downward to tightly adhere to the top end of the flow collecting cavity 2, the top end of the flow collecting cavity 2 is sealed, so as to improve the anti-blocking effect and prevent the sewage from being sucked into the inside of the cleaning shower head 1.
[0025] Due to the structure characteristics that the elastic lever 302 is long strip-shaped and the upper and lower surfaces are flat, the cross-sectional moment of inertia in the thickness direction of the flat structure is small, and under the action of external force, the elastic lever 302 is more prone to bending deformation along the length axis direction, and in combination with the arrangement mode of the annular array, the elastic levers 302 are mutually restrained, and the top end of the guide rod 503 is always inserted into the liquid spray hole 8 for preliminary positioning, and the tapered structure of the buffer part 502 plays a guiding role, so that the buffer part 502 moves up and down in the liquid spray hole 8; the above-mentioned structures jointly form a complete structure system, which can ensure that the elastic lever 302 deforms along the axial direction, thereby realizing the reliable upward and downward movement of the lifting plate 4.
[0026] The present application adopts the mode of directly sealing the spray hole, compared with the traditional anti-backflow mode, the sealing position is closer to the pollution source, can more accurately and efficiently block the reverse flow path, can immediately isolate the communication between the external sewage and the inside of the shower head, not only can prevent the liquid in the cleaning liquid container 16 from being polluted, but also can prevent the inside of the cleaning shower head 1 from being polluted, so as to more directly and reliably improve the anti-pollution effect and ensure the cleanliness of the inside of the shower head.
[0027] The outer part of the support shaft 301 is also fixedly connected with a support block 304, the top end of the support block 304 is fixedly connected to the bottom of the nozzle top plate 7, the support block 304 is used for supporting and fixing the support shaft 301, the liquid flowing out of the top end of the flow collecting cavity 2 flows through the gap between the support block 304 and the elastic lever 302 to the inside of the interlayer cavity, the support block 304 and the elastic lever 302 are arranged in a spaced manner, forming a structure similar to a filter fence, which can intercept some residual herbal impurities in the herbal liquid to prevent them from blocking the liquid injection hole 8.
[0028] The elastic lever 302 is made of medical-grade cobalt-chromium alloy, which has high strength and high elasticity. During the gradual rising of the lifting plate 4, the distance between the inner ring of the lifting plate 4 and the support shaft 301 becomes smaller, and the elastic lever 302 also gradually deforms and stores energy. When the lifting plate 4 rises to the level of the support shaft 301, the amount of deformation and energy storage of the elastic lever 302 reaches the maximum. When it continues to rotate and breaks through the horizontal point, the energy of the elastic lever 302 is released, and its end pops up, thereby causing the lifting plate 4 to rise quickly. Therefore, the lifting plate 4 rises slowly at first and then quickly, and the plugging assembly 5 moves slowly at first and then quickly. When it is inserted into the liquid injection hole 8, the relative position of the plugging assembly 5 and the liquid injection hole 8 can be adjusted by slowly pushing the plugging assembly 5, the buffer characteristics of low-speed movement can reduce the risk of deviation, and the risk of skewing or collision damage caused by rapid insertion can be avoided. At the same time, during the slow pushing process, the outer wall of the silica gel plugging column 501 can first contact the inner wall of the liquid injection hole 8, gradually removing the attached herbal debris and other impurities, and completing the preliminary cleaning. After the silica gel plugging column 501 is inserted to a certain depth to achieve preliminary positioning, the residual dirt and other impurities after preliminary cleaning can be pushed out by instantaneous kinetic energy during the later rapid pushing stage, forming a secondary cleaning effect. With the slow-then-fast rhythm, the buffer accuracy of the alignment process is ensured, and the inner wall of the liquid injection hole 8 is cleaned twice through phased operation, improving the reliability and cleaning efficiency of the insertion operation.
[0029] The reset assembly 6 includes a lifting pull rod 601, which is fixedly connected to the bottom end of the push plate 303. The lifting pull rod 601 is sleeved with a guide sliding cylinder 602, and is slidingly connected between the lifting pull rod 601 and the guide sliding cylinder 602. The outer wall of the guide sliding cylinder 602 is fixedly connected with a fixed connecting rod 603, and the end of the fixed connecting rod 603 away from the guide sliding cylinder 602 is fixedly connected with the flow collecting cavity 2. The bottom of the guide sliding cylinder 602 is fixedly connected with a reset spring 604, which is sleeved outside the lifting pull rod 601. The bottom end of the reset spring 604 is fixedly connected with a pulling block 605, which is fixedly connected to the bottom end of the lifting pull rod 601. The shape of the pulling block 605 is set as an inverted cone shape with a large upper end and a small lower end.
[0030] When water flows, the water pressure pushes the push plate 303 upward, and at this time, the reset spring 604 is in a compressed state, and when the water flow is closed, the reset spring 604 restores the original state and pushes the pull block 605 downward, and then pulls the push plate 303 through the lifting pull rod 601 to block the top end of the collecting cavity 2, and the inverted cone shape of the pull block 605 can weaken the impact force of the water flow on the pull block 605.
[0031] The blocking assembly 5 comprises a silica gel blocking column 501, and the top end of the silica gel blocking column 501 is fixedly connected with a buffer portion 502, the inside of the silica gel blocking column 501 penetrates a guide rod 503, the bottom end of the guide rod 503 is fixedly connected with the lifting plate 4, and the part of the guide rod 503 extending out of the buffer portion 502 is inserted into the inside of the liquid medicine spraying hole 8, the outer diameter of the silica gel blocking column 501 is matched with the inner diameter of the liquid medicine spraying hole 8, the shape of the buffer portion 502 is set as a taper that gradually decreases from bottom to top, and the top end of the guide rod 503 is integrally connected with a tapered tip.
[0032] When the blocking assembly 5 is in a lowered state, the guide rod 503 is still inserted into the inside of the liquid medicine spraying hole 8, can play a guiding role for the water flow out of the liquid medicine spraying hole 8, and at the same time, when the blocking assembly 5 rises, can also play a guiding role for the buffer portion 502 and the silica gel blocking column 501 entering the inside of the liquid medicine spraying hole 8.
[0033] The technical scope of the present application is not limited to the above description, and those skilled in the art can make various modifications and changes to the above embodiments without departing from the technical idea of the present application, and these modifications and changes should be within the protection scope of the present application.
Claims
1. An obstetric intelligent temperature control postpartum care cleaning device, characterized in that, The utility model provides a cleaning spray head, the inside fixed connection of cleaning spray head has the collecting cavity, the top of collecting cavity coaxially arranged has driven assembly, the outer wall of collecting cavity top is fixedly connected with elastic sealing sheet, and the outer wall of elastic sealing sheet is fixedly connected with the lifting plate, and the lifting plate is slidingly connected in the inside of cleaning spray head, the top of lifting plate is annular array and is provided with the plugging assembly, the top of cleaning spray head is fixedly connected with the spray head top plate, the inside of spray head top plate is annular array and is provided with the liquid medicine spray hole, and the liquid medicine spray hole corresponds with plugging assembly one to one, The driven assembly includes a support shaft, the outer portion of the support shaft is rotatably connected with an elastic lever, one end of the elastic lever is rotatably connected with a push plate, and the other end of the elastic lever is rotatably connected with the lifting plate, the elastic lever is annularly arranged about the outer wall of the push plate, and the push plate is coaxially arranged with the collecting cavity, the opening size of the collecting cavity gradually decreases from bottom to top, and the smallest end of the collecting cavity is opposite to the push plate; The plugging assembly includes a silica gel plugging column, and the top of the silica gel plugging column is fixedly connected with a buffer portion, the inside of the silica gel plugging column is penetrated with a guide rod, the bottom end of the guide rod is fixedly connected with the lifting plate, and the part of the guide rod extending out of the buffer portion is inserted into the inside of the liquid medicine spray hole.
2. The obstetric intelligent temperature-controlled postpartum care cleansing device of claim 1, wherein: The outer portion of the support shaft is also fixedly connected with a support block, the top of the support block is fixedly connected with the bottom of the spray head top plate, and the support block is spaced apart from the elastic lever.
3. The obstetric intelligent temperature-controlled postpartum care cleansing device of claim 1, wherein: The outer diameter of the silica gel plugging column is matched with the inner diameter of the liquid medicine spray hole.
4. The obstetric intelligent temperature-controlled postpartum care cleansing device of claim 3, wherein: The shape of the buffer portion is set as a taper that gradually decreases from bottom to top, and the top of the guide rod is integrally connected with a tapered tip.
5. The obstetric intelligent temperature-controlled postpartum care cleansing device of claim 1, wherein: The inside of the collecting cavity is coaxially sleeved with a reset assembly, the reset assembly includes a lifting rod, and the lifting rod is fixedly connected with the bottom end of the push plate.
6. The obstetric intelligent temperature-controlled postpartum care cleansing device of claim 5, wherein: The outside of the lifting rod is sleeved with a guide sliding cylinder, and the lifting rod is slidingly connected with the guide sliding cylinder, the outer wall of the guide sliding cylinder is fixedly connected with a fixed connecting rod, and one end of the fixed connecting rod away from the guide sliding cylinder is fixedly connected with the collecting cavity.
7. The obstetric intelligent temperature-controlled postpartum care cleansing device of claim 6, wherein: The bottom of the guide sliding cylinder is fixedly connected with a reset spring, the reset spring is sleeved on the outside of the lifting rod, the bottom end of the reset spring is fixedly connected with a pulling block, the pulling block is fixedly connected with the bottom end of the lifting rod, and the shape of the pulling block is set as an inverted taper that is large at the top and small at the bottom.
8. The obstetric intelligent temperature-controlled postpartum care cleansing device of claim 1, wherein: The bottom of the cleaning spray head is communicated with a threaded interface, the inside of the threaded interface is threadedly connected with a threaded connector, the bottom end of the threaded connector is fixedly connected with a liquid medicine spray rod, and one end of the liquid medicine spray rod away from the threaded connector is mounted with a miniature electric pump.
9. The obstetric intelligent temperature-controlled postpartum care cleansing device of claim 8, wherein: The outside of the miniature electric pump is sleeved with a mounting shell, the top of the mounting shell is mounted with a control panel, and the control panel is electrically connected with the miniature electric pump.
10. The obstetric intelligent temperature-controlled postpartum care cleaning device according to claim 9, characterized in that: The side of the mounting shell is threadedly connected with a cleaning liquid containing bottle, the inside of the cleaning liquid containing bottle is inserted with a water suction hose, the water suction hose is communicated with the input end of the miniature electric pump, the bottom end of the cleaning liquid containing bottle is mounted with a heating sheet, and the heating sheet receives the control instruction of the control panel.
Citation Information
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