WO2022194303A1 - 一种集成接头组件和集便排污护理装置 - Google Patents

一种集成接头组件和集便排污护理装置 Download PDF

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Publication number
WO2022194303A1
WO2022194303A1 PCT/CN2022/082645 CN2022082645W WO2022194303A1 WO 2022194303 A1 WO2022194303 A1 WO 2022194303A1 CN 2022082645 W CN2022082645 W CN 2022082645W WO 2022194303 A1 WO2022194303 A1 WO 2022194303A1
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WIPO (PCT)
Prior art keywords
water
sewage
joint
tank
disinfection
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PCT/CN2022/082645
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English (en)
French (fr)
Inventor
林德利
方正
赖鸿基
邱海奎
艾永意
汪云涛
Original Assignee
深圳航天科技创新研究院
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Publication of WO2022194303A1 publication Critical patent/WO2022194303A1/zh

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    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61FFILTERS IMPLANTABLE INTO BLOOD VESSELS; PROSTHESES; DEVICES PROVIDING PATENCY TO, OR PREVENTING COLLAPSING OF, TUBULAR STRUCTURES OF THE BODY, e.g. STENTS; ORTHOPAEDIC, NURSING OR CONTRACEPTIVE DEVICES; FOMENTATION; TREATMENT OR PROTECTION OF EYES OR EARS; BANDAGES, DRESSINGS OR ABSORBENT PADS; FIRST-AID KITS
    • A61F5/00Orthopaedic methods or devices for non-surgical treatment of bones or joints; Nursing devices; Anti-rape devices
    • A61F5/44Devices worn by the patient for reception of urine, faeces, catamenial or other discharge; Portable urination aids; Colostomy devices
    • A61F5/442Devices worn by the patient for reception of urine, faeces, catamenial or other discharge; Portable urination aids; Colostomy devices having irrigation ports or means
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61FFILTERS IMPLANTABLE INTO BLOOD VESSELS; PROSTHESES; DEVICES PROVIDING PATENCY TO, OR PREVENTING COLLAPSING OF, TUBULAR STRUCTURES OF THE BODY, e.g. STENTS; ORTHOPAEDIC, NURSING OR CONTRACEPTIVE DEVICES; FOMENTATION; TREATMENT OR PROTECTION OF EYES OR EARS; BANDAGES, DRESSINGS OR ABSORBENT PADS; FIRST-AID KITS
    • A61F5/00Orthopaedic methods or devices for non-surgical treatment of bones or joints; Nursing devices; Anti-rape devices
    • A61F5/44Devices worn by the patient for reception of urine, faeces, catamenial or other discharge; Portable urination aids; Colostomy devices
    • A61F5/4404Details or parts
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61FFILTERS IMPLANTABLE INTO BLOOD VESSELS; PROSTHESES; DEVICES PROVIDING PATENCY TO, OR PREVENTING COLLAPSING OF, TUBULAR STRUCTURES OF THE BODY, e.g. STENTS; ORTHOPAEDIC, NURSING OR CONTRACEPTIVE DEVICES; FOMENTATION; TREATMENT OR PROTECTION OF EYES OR EARS; BANDAGES, DRESSINGS OR ABSORBENT PADS; FIRST-AID KITS
    • A61F5/00Orthopaedic methods or devices for non-surgical treatment of bones or joints; Nursing devices; Anti-rape devices
    • A61F5/44Devices worn by the patient for reception of urine, faeces, catamenial or other discharge; Portable urination aids; Colostomy devices
    • A61F5/441Devices worn by the patient for reception of urine, faeces, catamenial or other discharge; Portable urination aids; Colostomy devices having venting or deodorant means, e.g. filters ; having antiseptic means, e.g. bacterial barriers
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02ATECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
    • Y02A50/00TECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE in human health protection, e.g. against extreme weather
    • Y02A50/30Against vector-borne diseases, e.g. mosquito-borne, fly-borne, tick-borne or waterborne diseases whose impact is exacerbated by climate change

Definitions

  • the present invention relates to the technical field of nursing devices, in particular to an integrated joint assembly and a feces collection and sewage nursing device.
  • the toilet cover is worn on the patient's crotch to collect urine and feces.
  • the urine and feces are transferred to the sewage tank for collection and storage, but because the urine and feces are sprayed and adhered to the inner wall of the sewage tank after entering the sewage tank, the inner wall of the sewage tank is dirty and inconvenient to clean, and the odor in the sewage tank is too heavy. , affecting normal use.
  • the problem solved by the present invention is how to design an integrated joint assembly for cleaning the inner wall of the sewage tank.
  • the present invention provides an integrated joint assembly, which is applied to a feces collection and sewage care device, the feces collection and sewage care device includes a sewage tank, and the integrated joint assembly includes a guide seat, and the guide seat is suitable for Embedded in the tank mouth of the sewage tank, the diversion seat and/or the tank mouth are provided with a disinfection water flow channel structure, and the disinfection water flow channel structure is suitable for connecting to the first disinfection water joint.
  • annular spray port that communicates with the disinfection water flow channel structure, and the disinfection water entered by the first disinfection water joint passes through the disinfection water flow channel structure from the annular spray port to the other side.
  • the inner wall of the sewage tank is sprayed with a ring-shaped projectile-shaped disinfection water flow.
  • the disinfection water flow channel structure is provided on the guide seat and/or the tank mouth, and the disinfection water flow channel structure is suitable for connecting to the first disinfection water joint. , so that the disinfection water flows in the disinfection water channel structure after entering from the first disinfection water joint, and then sprays the inner wall of the sewage tank from the annular spray port between the guide seat and the bottom end of the inner wall of the tank mouth.
  • Disinfecting water flow in the form of a ring-shaped radiator is emitted to flush the inner wall of the sewage tank, thereby keeping the inner wall of the sewage tank clean and hygienic, reducing the odor of the sewage tank, and ensuring the normal use of the sewage tank.
  • the integrated joint assembly further includes a sewage tank cover and a first sterilizing water joint, the sewage tank cover is embedded in the tank mouth, the interior of the sewage tank cover is provided with a accommodating cavity, and the guide seat is embedded in the tank mouth.
  • the outer wall of the guide seat and/or the sewage tank cover are provided with the disinfection water flow channel structure, and the annular spray is arranged between the guide seat and the bottom end of the inner wall of the sewage tank cover.
  • the sewage tank cover is also provided with a disinfection water interface, and the first disinfection water joint is embedded in the disinfection water interface and communicated with the disinfection water flow channel structure.
  • the guide seat is further provided with a sewage suction interface and a vacuum suction interface
  • the sewage suction interface is suitable for connecting to a wearable device installed at the patient's crotch
  • the vacuum suction interface is suitable for connecting to a suction device. vacuum components.
  • the sterilizing water flow channel structure is an annular flow channel structure, and the annular flow channel structure gradually shrinks along the flow direction of the sterilizing water.
  • the disinfection water flow channel structure includes a first flow channel, a plurality of second flow channels, a water storage groove and an annular boss, the first flow channel is suitable for connecting the first disinfection water joint, and the plurality of The top ends of the second flow channels are respectively communicated with the first flow channels, the water storage grooves are arranged on the lower side of the second flow channels and communicate with the two, and the annular bosses are supported on the water storage channels.
  • the annular spray port is preset between the annular boss and the bottom end of the inner wall of the tank mouth, and the disinfection water entering the first disinfection water joint passes through the first flow channel, a plurality of the first disinfection water
  • the two flow channels are then collected in the water storage groove, and then the annular projectile-shaped disinfection water flow is sprayed from the annular spray port to the inner wall of the sewage tank through the annular boss.
  • the present invention also provides a defecation collection and sewage care device, comprising a sewage tank and the above-mentioned integrated joint assembly, wherein the guide seat in the integrated joint assembly is suitable for being embedded at the tank mouth of the sewage tank.
  • the feces collection and sewage care device further includes a valve structure, a discharge port is provided on the sewage tank, and the valve structure is arranged at the discharge port.
  • the feces collection and sewage care device further includes a vacuuming assembly, and the vacuuming assembly includes a pump box, a vacuum pump arranged in the pump box, a sound-absorbing filter box, and an odor eliminating device arranged in the sound-absorbing filter box.
  • the suction port of the vacuum pump is suitable for communicating with the tank mouth of the sewage tank
  • the air outlet of the vacuum pump is communicated with one end of the muffler pipe
  • the side wall of the muffler filter box is provided with a discharge port.
  • the odor elimination structure is arranged opposite to the exhaust port of the muffler filter box, and the muffler pipe is provided with a plurality of muffler holes.
  • the feces collection and sewage care device further includes a vacuum joint, a sewage joint, and a water vapor filter assembly arranged on the pipeline between the suction port of the vacuum pump and the tank mouth of the sewage tank.
  • One end is passed through the sewage tank cover in the integrated joint assembly and communicated with the vacuum suction interface of the guide seat, the other end of the vacuum suction joint is communicated with the vacuum pump, and the sewage suction joint is passed through the
  • the sewage tank cover is connected to the sewage suction interface of the guide seat, and the water vapor filter assembly is suitable for filtering the air extracted from the sewage tank when the vacuum pump is working.
  • the water vapor filter assembly includes a water vapor connector plate, a water vapor filter structure, and the water vapor slag collecting cup, the water vapor connector plate is provided with an air inlet port and an air outlet port, and the water vapor filter structure is arranged on the water vapor filter.
  • the water vapor joint plate is covered at the opening of the water vapor slag collecting cup; the air inlet port is communicated with the vacuum joint, and the air outlet port is communicated with the vacuum pump.
  • the feces collection and sewage care device further includes a second sterile water connector, one end of the second sterile water connector is in communication with the first sterile water connector in the integrated connector assembly, and the other end of the second sterile water connector is in communication with the first sterile water connector in the integrated connector assembly.
  • One end is adapted to be connected to a sterilizing water mixing device, and the sterilizing water mixing device is adapted to communicate with the guide seat through the second sterilizing water connector and the first sterilizing water connector in sequence.
  • the feces collection and sewage care device further includes a box body and a warm water component disposed in the box body.
  • the warm water component includes a water pipe joint, a clean water tank, a first heating structure and a water pump.
  • One end of the water pipe joint is It is suitable for being connected to the water supply end, the other end of the water supply pipe joint, the clean water tank, and the water pump are connected in sequence, the water outlet end of the water pump is suitable for connecting to the wearing device, and the first heating structure is suitable for being arranged in the In the clean water tank, on the pipeline between the clean water tank and the water pump, or on the water pipe between the water pump and the wearable device.
  • the feces collection and sewage care device further includes an air blowing pump and a second heating structure, the air blowing pump is suitable for connecting with the wearing device, and the second heating structure is arranged between the air blowing pump and the wearing device. on the trachea.
  • FIG. 1 is a schematic structural diagram of a flow guide seat in an embodiment of the present invention
  • FIG. 2 is a schematic diagram of the axonometric structure of the integrated joint assembly in the embodiment of the present invention.
  • FIG. 3 is a schematic cross-sectional structural diagram of an integrated joint assembly in an embodiment of the present invention.
  • FIG. 4 is a schematic diagram of the axonometric structure of the sewage tank cover in the embodiment of the present invention.
  • FIG. 5 is a schematic diagram of an exploded structure of an integrated joint assembly in an embodiment of the present invention.
  • FIG. 6 is one of the structural schematic diagrams of the fecal collection and sewage care device according to the embodiment of the present invention.
  • Fig. 7 is the second structural schematic diagram of the feces collection and sewage care device according to the embodiment of the present invention.
  • FIG. 8 is a schematic diagram of an explosion structure of a centralized feces and sewage care device according to an embodiment of the present invention.
  • FIG. 9 is a schematic structural diagram of a vacuuming assembly in an embodiment of the present invention.
  • Figure 10 is an enlarged schematic view of the structure at A in Figure 7;
  • FIG. 11 is a schematic cross-sectional structure diagram of a water vapor filter assembly in an embodiment of the present invention.
  • FIG. 12 is a schematic diagram of an explosion structure of a water vapor filter assembly in an embodiment of the present invention.
  • FIG. 13 is a schematic cross-sectional structural diagram of a sterilizing water flow channel structure arranged inside the guide seat according to the embodiment of the present invention.
  • FIG. 14 is a schematic cross-sectional structural diagram of a structure in which a disinfection water flow channel is arranged on the outer wall of the guide seat according to the embodiment of the present invention
  • Figure 15 is a schematic cross-sectional structural diagram of a tank mouth or the inner wall of a sewage tank cover with a sterilizing water flow channel structure according to an embodiment of the present invention
  • Fig. 16 is a schematic cross-sectional structural diagram of a structure in which a disinfection water flow channel is arranged on the inner wall of the tank mouth or the waste water tank cover and the outer wall of the guide seat according to the embodiment of the present invention.
  • the terms “arranged”, “installed”, “connected” and “connected” should be understood in a broad sense, for example, it may be a fixed connection, or It can be a detachable connection or an integral connection; it can be a mechanical connection; it can be a direct connection or an indirect connection through an intermediate medium, and it can be the internal communication of the two elements.
  • the specific meanings of the above terms in the present invention can be understood in specific situations.
  • an embodiment of the present invention provides an integrated joint assembly, which is applied to a feces collection and sewage care device, and the feces collection and sewage care device includes a sewage tank 32.
  • the integrated joint assembly includes a guide seat 31, the guide seat 31 is suitable for being embedded at the tank mouth of the sewage tank 32, and the guide seat 31 and/or the tank mouth is provided with a disinfection water flow A channel structure 317, the disinfection water channel structure 317 is suitable for connecting to the first disinfection water joint 34, and an annular spray connected to the disinfection water channel structure 317 is arranged between the guide seat 31 and the bottom end of the inner wall of the tank mouth
  • the sterilizing water entering the first sterilizing water joint 34 is sprayed from the annular spraying port to the inner wall of the sewage tank 32 through the sterilizing water flow channel structure 317 in a circular projection shape.
  • the disinfection water flow channel structure 317 is provided on the guide seat 31 and/or the tank mouth, and the disinfection water flow channel structure 317 is suitable for In order to connect the first disinfection water joint 34, the disinfection water flows in the disinfection water channel structure 317 after entering from the first disinfection water joint 34, and then flows from the annular ring between the guide seat 31 and the bottom end of the inner wall of the tank mouth.
  • the spraying port sprays a circular shot-shaped disinfection water flow to the inner wall of the sewage tank to wash the inner wall of the sewage tank 32, thereby keeping the inner wall of the sewage tank 32 clean and hygienic, reducing the peculiar smell of the sewage tank 32, and ensuring the normal use of the sewage tank 32 .
  • the integrated joint assembly further includes a sewage tank cover 33 and a first disinfecting water joint 34 , the sewage tank cover 33 is embedded in the tank In the mouth, the inside of the sewage tank cover 33 is provided with a receiving cavity, the guide seat 31 is embedded in the receiving cavity, and the outer wall of the guide seat 31 and/or the sewage tank cover 33 opens the disinfection water flow
  • the channel structure 317, the annular spray port is provided between the guide seat 31 and the bottom end of the inner wall of the sewage tank cover 33; the sewage tank cover 33 is also provided with a disinfection water interface 331, the first disinfection
  • the joint 34 is embedded in the sterilizing water port 331 and communicates with the sterilizing water flow channel structure 317 .
  • the partial structure of the sewage tank cover 33 is embedded in the tank mouth of the sewage tank 32. At this time, the circumferential side wall of the sewage tank cover 33 is in contact with the inner wall of the tank mouth, so as to ensure the gap between the sewage tank cover 33 and the inner wall of the tank mouth.
  • a disinfection water interface 331 is provided on the side wall of the sewage tank cover 33, a receiving cavity is set inside the sewage tank cover 33, the guide seat 31 is embedded in the receiving cavity of the sewage tank cover 33, The outer wall of 31 and/or the sewage tank cover 33 are provided with the disinfection water flow channel structure 317, and the first disinfection water joint 34 is embedded in the disinfection water interface 331 and communicated with the disinfection water flow channel structure 317, so that the The disinfecting water entering a disinfecting water joint 34 can flow into the disinfecting water channel structure 317, and finally the annular spray-shaped disinfecting water flow is sprayed from the annular spray port between the guide seat 31 and the bottom end of the inner wall of the sewage tank cover 33.
  • the inner wall of the sewage tank 32 is flushed by a certain pressure of the annular projecting disinfection water flow.
  • the bottom end of the annular spray port should be lower than the bottom end of the sewage tank cover 33, so as to prevent the bottom end of the sewage tank cover 33 from The spraying of the annular radiated disinfection water flow causes interference; and the annular spray port should be lower than the bottom end of the tank mouth of the sewage tank 32, so as to avoid the annular radiated disinfection water flow directly sprayed on the inner wall of the tank mouth of the sewage tank 32 after being sprayed from the annular spray port , thereby reducing the water pressure of the annular projecting disinfection water flow, so that the annular projecting disinfection water flow is sprayed from the annular spray port to the position below the bottom end of the tank mouth, thereby ensuring that the disinfection water flow from the uppermost end of the inner wall of the sewage tank 32 Start rinsing, realize all cleaning of the inner wall of the sewage tank 32, and avoid the existence of cleaning
  • the sterilizing water interface 331 can be a bolt hole, and the first sterilizing water connector 34 is installed in the sterilizing water interface 331 which is a bolt hole by means of threads, as shown in FIG. 5 ; the sterilizing water interface 331 can also be a The first sterilizing water connector 34 can be directly inserted into the sterilizing water interface 331 which is a through hole.
  • the sterilizing water flow channel structure 317 may be arranged inside the guide seat 31 , the disinfection water flow channel structure 317 may also be arranged on the outer side wall of the guide seat 31 , and the inner side wall of the sewage tank 32 may also be arranged.
  • a sterilizing water channel structure 317 is provided on the top, and a sterilizing water channel structure 317 can also be arranged on the opposite side walls of the guide seat 31 and the tank mouth of the sewage tank 32 .
  • the guide seat 31 includes an outer guide seat and an inner guide seat, and a cavity is provided inside the outer guide seat.
  • the inner guide seat is embedded in the outer guide seat, and a liquid inlet is provided at the top connection between the outer guide seat and the inner guide seat, and the liquid inlet is suitable for being communicated with the first disinfection water joint.
  • the bottom end of the outer guide seat and the bottom end of the inner guide seat are preset.
  • the annular spraying port firstly, the disinfecting water enters into the spaced disinfecting water channel structure 317 from the liquid inlet through the first disinfecting water joint (not shown in the figure), and finally, the annular spraying port sprays out the annular spraying-shaped disinfecting water flow, Fig.
  • the arrow on the dotted line in 13 is the flow direction of the disinfection water.
  • FIG. 14 is a sectional view of a sterilizing water channel structure arranged on the outer side wall of the guide seat 31.
  • a sterilizing water channel structure 317 is arranged on the outer side wall of the guide seat 31,
  • the disinfection water channel structure 317 is an annular groove on the outer side wall of the guide seat 31 .
  • the provided annular groove cooperates with the inner wall of the tank mouth of the sewage tank 32 or the inner wall of the sewage tank cover 33 to form a complete disinfection water flow channel.
  • the liquid port, the first disinfection water joint 34 is communicated with the liquid inlet, and the disinfection water flow channel structure 317 provided on the outer side wall of the guide seat 31 is connected with the inner wall of the tank mouth of the sewage tank 32 or the bottom end of the inner wall of the sewage tank cover 33.
  • a ring-shaped spray port is arranged between the two, and the disinfectant water enters the disinfectant water channel structure 317 which is an annular groove from the liquid inlet through the first disinfectant water joint (not shown in the figure), and finally sprays out the ring-shaped shot-shaped disinfectant from the annular spray port.
  • the water flow, the arrow on the dotted line in Figure 14 is the flow direction of the disinfection water.
  • FIG. 15 is a cross-sectional view of a sterilizing water channel structure arranged on the tank opening of the sewage tank 32 or the inner wall of the sewage tank cover 33.
  • the tank opening of the sewage tank 32 or the sewage The inner side wall of the tank cover 33 is provided with a sterilizing water channel structure 317.
  • the disinfection water channel structure 317 is at this time.
  • a disinfection water flow channel structure 317 is arranged on the tank mouth of the sewage tank 32 or the inner side wall of the sewage tank cover 33.
  • An annular spray port is provided between the bottom end of the outer side wall of the guide seat 31, and the disinfection water enters the disinfection water flow channel structure 317 which is an annular groove through the first disinfection water joint (not shown in the figure) from the liquid inlet, and finally An annular projecting flow of disinfecting water is sprayed from the annular spraying port, and the arrow on the dotted line in Figure 15 is the flow direction of the disinfecting water.
  • FIG. 16 is a cross-sectional view of a sterilizing water channel structure arranged on the tank mouth of the sewage tank 32 or the opposite side wall of the sewage tank cover 33 and the guide seat 31.
  • the sewage The tank mouth of the tank 32 or the sewage tank cover 33 and the opposite side walls of the guide seat 31 are respectively provided with a first disinfection water flow channel and a second disinfection water flow channel, and the first disinfection water flow channel and the second disinfection water flow channel are connected.
  • the first disinfection water flow channel and the second disinfection water flow channel are both annular grooves.
  • the tank mouth of 32 or the first disinfection water flow channel opened on the inner side wall of the sewage tank cover 33 and the second disinfection water flow channel opened on the outer wall of the guide seat 31 are enclosed and cooperate to form a complete disinfection water flow channel.
  • At least one liquid inlet is provided on the side wall of the port or the sewage tank cover 33, and the first disinfectant water joint 34 is communicated with the liquid inlet.
  • An annular spray port is provided between the structure 317 and the bottom end of the outer side wall of the guide seat 31, and the disinfection water enters the disinfection water channel structure which is an annular groove from the liquid inlet through the first disinfection water joint (not shown in the figure). 317. Finally, the annular spray-shaped sterilizing water flow is sprayed from the annular spray port.
  • the arrow on the dotted line in FIG. 16 is the flow direction of the sterilizing water.
  • the guide seat 31 is further provided with a sewage suction interface 315 and a vacuum suction interface 316 , and the sewage suction interface 315 is suitable for being connected to a
  • the vacuuming interface 316 is adapted to be connected to the vacuuming assembly 41 .
  • a sewage discharge interface and a vacuum suction interface 316 are provided on the guide seat 31 , and the sewage suction interface 315 and the vacuum suction interface 316 are both communicated with the interior of the sewage tank 32 , and the vacuum suction interface 316 is suitable for connecting the vacuum pumping assembly 41 .
  • the interior of the sewage tank 32 is pumped by the vacuuming assembly 41 to generate a negative pressure inside the sewage tank 32, and the sewage suction interface 315 is suitable for connecting to the wearable device, so that the urine of the wearable device installed at the patient's crotch can be drained.
  • the feces are extracted and enter the sewage tank 32 from the sewage suction interface 315, so as to realize the automatic suction and storage of the urine and feces in the wearable device.
  • the integrated joint assembly further includes a first sealing ring 35 and a second sealing ring 36.
  • the first sealing ring 35 is disposed between the sewage tank cover 33 and the tank opening of the sewage tank 32, so as to realize the sewage tank cover 33 Sealing with the sewage tank 32 ;
  • the second sealing ring 36 is arranged between the top of the outer wall of the guide seat 31 and the inner wall of the sewage tank cover 33 , so as to realize the sealing between the guide seat 31 and the sewage tank cover 33 .
  • the disinfection water flow channel structure 317 is an annular flow channel structure, and the annular flow channel structure gradually contracts along the flow direction of the disinfection water.
  • the sterilizing water flow channel structure 317 as an annular flow channel structure, and the annular flow channel structure gradually shrinks along the flow direction of the sterilizing water, so that the sterilizing water flows in the annular flow direction.
  • the size of the annular flow channel structure gradually becomes smaller and the water pressure increases, so that the annular shot-shaped disinfection water flow ejected from the annular spray port is sprayed to the inner wall of the sewage tank 32 with a certain water pressure, thereby realizing The inner wall of the sewage tank 32 is flushed, so as to ensure the cleanliness of the inner wall of the sewage tank 32 and reduce peculiar smell.
  • the sterilizing water flow channel structure 317 includes a first flow channel 311 , a plurality of second flow channels 312 , a water storage groove 313 and an annular convex
  • the stage 314, the first flow channel 311 is suitable for connecting the first disinfection water joint 34, the top ends of the second flow channels 312 are respectively connected with the first flow channel 311, and the water storage groove 313 is provided
  • the annular boss 314 is supported on the water storage groove 313, and the annular boss 314 is connected to the bottom end of the inner wall of the tank mouth or the sewage tank
  • the annular spray port is preset between the lids 33, and the disinfected water entering the first disinfectant water joint 34 passes through the first flow channel 311 and the plurality of second flow channels 312 in sequence and then flows into the water storage groove. 313 , and then the annular projection-shaped disinfection water
  • the first flow channel 311 is suitable for connecting to the first disinfection water joint 34, so that the disinfection water entering from the first disinfection water joint 34 can pass through the first disinfection water joint 34 in sequence.
  • the first flow channel 311 and the plurality of second flow channels 312 are collected in the water storage groove 313, and the disinfection water collected in the water storage groove 313 flows downward through the annular boss 314 and from the annular spray port to the sewage tank.
  • the inner wall of 32 is sprayed with an annular sterilizing water flow, so that the inner wall of the sewage tank 32 is rinsed with the high-pressure annular sterilizing water flow, keeping the inner wall of the sewage tank 32 clean and hygienic, reducing the peculiar smell of the sewage tank 32, and ensuring the normal use of the sewage tank 32.
  • the first flow channel 311 is radially arranged around the outer side wall of the guide seat 31 , and the first flow channel 311 is a groove structure, wherein the first flow channel 311 can be an arc-shaped flow channel , can also be a circular flow channel, the first flow channel 311 can be parallel to the horizontal plane, or can maintain a certain angle with the horizontal plane, so the length of the first flow channel 311 and the angle between the horizontal plane are not specifically limited here.
  • a plurality of second flow channels 312 are all located on the lower side of the first flow channel 311, the number of the second flow channels 312 can be two, three, four, etc., the number of the second flow channels 312 is not specifically limited here , a plurality of second flow channels 312 surround the outer side wall of the guide seat 31 and are arranged at intervals, the second flow channels 312 are also groove structures, and the end of each second flow channel 312 or a certain position between the two ends is upward Extends and communicates with the first flow channel 311, and at least one part between two ends of each second flow channel 312 extends downward and communicates with the water storage groove 313, and the water storage groove 313 is an annular groove, and The annular groove is perpendicular to the central axis of the guide seat 31; when the guide seat 31 is embedded in the inner wall of the tank mouth of the sewage tank 32, the peripheral outer wall of the guide seat 31 abuts against the inner wall of the tank mouth, thereby ensuring the guide seat 31 and the tank mouth; when
  • the disinfected water enters the water storage groove 313 from the circumferential side wall of the guide seat 31 for collection, and the annular boss 314 is integrally or detachably arranged on the outer wall of the guide seat 31, and the annular boss 314 is located in the water storage groove.
  • an annular spray port is preset between the bottom end of the annular boss 314 and the inner wall of the tank mouth.
  • the annular spray port can be a continuous annular spray port or an intermittent annular spray port.
  • the height of the upper surface of 314 gradually decreases from the center to the outside.
  • the upper surface of the annular boss 314 has a certain slope, so that the size of the spray channel between the upper end of the annular boss 314 and the inner wall of the tank mouth is the same as that of the annular boss 314.
  • the size of the spray channel between the lower end and the inner wall of the tank mouth gradually becomes smaller, so that the disinfection water in the water storage groove 313 passes through the spray channel and is sprayed to the inner wall of the sewage tank 32 with a certain water pressure in a ring-shaped shot of the disinfection water flow, Therefore, the inner wall of the sewage tank is flushed, thereby ensuring the cleanliness of the inner wall of the sewage tank 32 and reducing odor.
  • Another embodiment of the present invention provides a defecation collection and sewage care device, which includes a sewage tank 32 and the integrated joint assembly described in the above-mentioned embodiment.
  • the guide seat 31 in the integrated joint assembly is suitable for being embedded in the At the tank mouth of the sewage tank 32, the beneficial effects of the feces collection and sewage care device are the same as those of the integrated joint assembly, which will not be repeated here.
  • the feces collection and sewage care device further includes a valve structure 6 , the sewage tank 32 is provided with a discharge port, and the valve structure 6 is disposed at the discharge port.
  • a discharge port is provided at the bottom end or the lower end of the side wall of the sewage tank 32, and the valve structure 6 It is installed at the discharge port, so that when the sewage mixed with urine and feces in the sewage tank 32 is almost full, there is no need to take out the sewage tank 32, just connect the sewage pipe at the valve structure 6, open the valve structure 6, and the sewage tank can be removed.
  • the urine and feces in 32 are discharged through the excretion port and the sewage pipe, which is convenient to use and has strong practicability.
  • the valve structure 6 can be a manual valve or an electric valve, as long as the valve structure 6 that can discharge the urine and feces in the sewage tank 32 is suitable for the technical solution, the specific structure type of the valve structure 6 is not limited here.
  • the defecation collection and sewage care device further includes a vacuuming assembly 41 , and the vacuuming assembly 41 includes a pump box 411 , which is arranged in the pump box.
  • the exhaust ports are arranged opposite to each other, and the muffler pipe 415 is provided with a plurality of muffler holes.
  • the vacuuming component 41 not only pumps air into the sewage tank 32 to generate negative pressure in the sewage tank 32, so that the urine and feces in the wearable device are extracted into the sewage through the sewage suction interface 315 of the guide seat 31.
  • the gas extracted from the sewage tank 32 can also be filtered and noise-reduced; as shown in FIG. 8 and FIG.
  • noises generated by the vacuum pump 412 one is the sound generated by the vacuum pump 412 when it is working, and the other is the sound of the gas extracted when the vacuum pump 412 is working, so that the vacuum pump 412 is normalized by the pump box 411.
  • the noise generated by working and pumping is enclosed in the pump box 411, which plays a role in reducing certain noise; the suction port of the vacuum pump 412 is suitable for communicating with the tank port of the sewage tank 32, and the air outlet of the vacuum pump 412 is connected to the silencer.
  • the pipe 415 is connected, and the circumferential side wall of the muffler pipe 415 is provided with a plurality of muffler holes, so that the muffler pipe 415 can be used to muffle the gas extracted by the vacuum pump 412 from the sewage tank 32, and further improve the noise reduction of the vacuum pump 412 effect; wherein, the muffler pipe 415 can be a tubular structure or a cuboid structure, etc., and its specific shape is not specifically limited here; After the pipe 415 reduces the noise of the gas discharged from the vacuum pump 412, the odor elimination structure 414 is used to absorb the silenced gas of the muffler pipe 415, and finally the clean gas is discharged from the exhaust port of the muffler filter box 413, so as to remove the noise from the muffler filter box 413.
  • the gas extracted by the vacuum pump 412 is noise-reduced and silencing first, and then filtered and adsorbed, thereby ensuring the cleanliness of the gas discharged from
  • the odor elimination structure 414 matches the internal size of the noise-absorbing filter box 413 and the size of the exhaust port, so that the odor in the gas in the noise-absorbing filter box 413 is completely absorbed, and the cleanliness of the exhaust gas is improved.
  • the odor elimination structure 414 can be a filter screen structure composed of activated carbon and HEPA high-efficiency air filter, and the activated carbon and HEPA high-efficiency air filter can be used to completely absorb the odor in the gas extracted from the sewage tank 32, and improve the noise reduction.
  • a shock-absorbing and sound-insulating layer is also provided on the inner wall of the pump box 411.
  • the shock-absorbing and sound-absorbing layer is a shock-absorbing sound-absorbing board, which can be made of sound-absorbing felt (coiled material), sound-absorbing board (plate) or other materials.
  • the structure of the shock-absorbing and sound-insulating layer that can have the effect of shock-absorbing and sound-absorbing the vacuum pump 412 is applicable to the technical solution, which is not specifically limited here.
  • the feces collection and sewage care device further includes a vacuum joint 37 , a sewage joint 38 , and water vapor disposed on the pipeline between the suction port of the vacuum pump 412 and the tank port of the sewage tank 32 .
  • one end of the vacuum joint 37 is penetrated through the sewage tank cover 33 in the integrated joint assembly and communicated with the vacuum interface 316 of the guide seat 31, and the other end of the vacuum joint 37
  • the sewage suction joint 38 penetrates the sewage tank cover 33 and communicates with the sewage suction interface 315 of the guide seat 31
  • the water vapor filter assembly 42 is suitable for the vacuum pump 412 During operation, the air extracted from the sewage tank 32 is filtered.
  • two vertical through holes are opened on the sewage tank cover 33 , and the two vertical through holes are respectively connected with the vacuum joint 37 and the sewage suction joint 38 .
  • the outer diameters match, after the guide seat 31 is embedded in the accommodating cavity of the sewage tank cover 33 , one end of the vacuum joint 37 is penetrated behind a vertical through hole of the sewage tank cover 33 and is connected to the guide seat 31
  • the vacuum interface 316 is connected, so that the vacuum joint 37 is communicated with the interior of the sewage tank 32 through the vacuum interface 316 of the guide seat 31, and the other end of the vacuum joint 37 can be communicated with the vacuum pump 412.
  • the inside of 32 is pumped, which not only generates negative pressure in the sewage tank 32, but also can extract the sewage in the sewage tank 32 to reduce the peculiar smell in the sewage tank 32;
  • the other vertical through hole of 33 is communicated with the sewage suction interface 315 of the guide seat 31, and the other end of the sewage suction joint 38 is suitable for connecting the wearing device installed at the crotch of the patient, so that when the vacuum assembly 41 is used to work
  • the negative pressure generated in the sewage tank 32 draws the urine and feces in the wearable device and enters the sewage tank 32 through the sewage suction joint 38 and the sewage suction interface 315 of the guide seat 31 in turn, so as to realize the urine and feces in the wearable device. Automatically extract storage.
  • the water vapor filter assembly 42 is installed on the connecting pipeline between the suction port of the vacuum pump 412 and the tank port of the sewage tank 32, and the water vapor filter assembly 42 can be used to remove the sewage from the sewage when the vacuum pump 412 is working.
  • the air extracted in the tank 32 is filtered, so as to prevent the water vapor in the air extracted in the sewage tank 32 from entering the vacuum pump 412 and affecting the normal use of the vacuum pump 412 .
  • the water vapor filter assembly 42 includes a water vapor connection plate 421 , a water vapor filter structure 422 and the water vapor slag collecting cup 423 , and the water vapor connection
  • the plate 421 is provided with an air inlet port 4211 and an air outlet port 4212, the water vapor filter structure 422 is arranged in the water vapor slag collecting cup 423, and the water vapor joint plate 421 is covered at the opening of the water vapor slag collecting cup 423 ;
  • the air inlet port 4211 communicates with the vacuum joint 37, and the air outlet port 4212 communicates with the vacuum pump 412.
  • the water vapor filtering structure 422 is used for
  • the gas port 4211 enters the sewage tank 32 gas in the water vapor slag collecting cup 423 for filtering, so as to remove the water vapor in the gas of the sewage tank 32 and prevent the water vapor from entering the vacuum pump 412, thereby ensuring the normal operation of the vacuum pump 412;
  • the air inlet port 4211 and the air outlet port 4212 wherein the air inlet port 4211 is communicated with the vacuum joint 37 which is worn on the sewage tank cover 33, and the air outlet port 4212 is communicated with the air suction port of the vacuum pump 412.
  • the water vapor filter structure 422 can be a filter made of absorbent paper, or For other types of filter screens, as long as the water vapor filtering structure 422 can absorb and filter the water vapor in the gas in the sewage tank 32, it is suitable for the technical solution, and no specific limitation is made here.
  • the water vapor filter assembly 42 further includes a joint plate seat 427, an air guide structure 426, a third sealing ring 425 and a sewage cover 424, and the water vapor joint plate 421 is installed on the joint plate seat 427.
  • the joint plate seat 427 is a shell structure with a hollow interior and an open upper end
  • the lower end of the joint plate seat 427 is sleeved on the upper end of the water vapor slag collecting cup 423
  • the third sealing ring 425 is arranged on the joint plate seat 427 and the water vapor slag collecting cup 423
  • the connection between the joint plate base 427 and the water vapor slag collecting cup 423 is realized;
  • the water vapor filter structure 422 is provided with an air inlet hole, an air flow channel and an air outlet hole.
  • the air inlet port 4211 communicates with the air inlet hole of the water vapor filter structure 422, and the air outlet port of the water vapor filter structure 422 communicates with the air outlet port 4212. , the gas with impurities such as water vapor entering from the air inlet 4211 enters the air flow channel through the air inlet hole.
  • the circumferential side wall of the water vapor filter is provided with a plurality of said air inlet holes, the interior of the cylindrical structure is an air flow channel, and the top opening of the cylindrical structure is an air outlet.
  • the impurities filtered by the water vapor filtering structure 422 can be collected by the water vapor slag collecting cup 423.
  • the sewage cover 424 includes a disc, an upper bracket arranged on the upper surface of the disc, and a lower bracket arranged on the lower side of the disc.
  • the peripheral outer wall is also provided with a plurality of protrusions arranged in a ring shape.
  • the water vapor filtering structure 422 is installed in the water vapor slag collecting cup 423 through the sewage discharge cover 424. Matching, wherein, a plurality of the protrusions are in contact with the inner wall of the water vapor slag collecting cup 423.
  • the sewage cover 424 not only plays a supporting role for the water vapor filtering structure 422, but also when the gas enters the water vapor slag collecting cup 423.
  • the impurities adsorbed and filtered by the water vapor filter structure 422 stay at the inner bottom of the water vapor slag collecting cup 423.
  • the sewage discharge cover 424 can block the impurities at the bottom of the water vapor slag collecting cup 423 to prevent the impurities from accompanying the water vapor slag collecting cup 423.
  • the air flow in 423 enters the vacuum pump 412 through the air flow channel or air outlet of the water vapor filter structure 422, and the air outlet port 4212 of the water vapor joint plate 421;
  • the air guide structure 426 is arranged between the water vapor filter structure 422 and the joint plate seat 427, and the air guide structure 426 not only It is used to make the air entering the water vapor slag collecting cup 423 into a spiral airflow, speed up the air flow rate, and also improve the filtering efficiency of impurities in the air in the water vapor slag collecting cup 423.
  • the cylindrical structure of the through hole is provided with a plurality of helical blades arranged in a ring on the circumferential side wall of the cylindrical structure, and the air in the water vapor slag collecting cup 423 can be turned into a helical airflow by using the helical blades on the outer side wall of the cylindrical structure. .
  • the feces collection and sewage care device further includes a second disinfectant water connector 51 , and one end of the second disinfectant water connector 51 is connected to the first disinfectant in the integrated connector assembly.
  • the water joint 34 is connected, and the other end of the second disinfection water joint 51 is suitable for connecting to a disinfection water mixing device, and the disinfection water mixing device is suitable for sequentially passing through the second disinfection water joint 51 and the first disinfection water joint. 34 communicates with the guide seat 31 .
  • the feces collection and sewage care device further includes a joint box, the second disinfectant water joint 51 is arranged in the joint box, and one end of the second disinfectant water joint 51 is connected to the first disinfectant water joint 34 provided on the sewage tank cover 33 .
  • the other end of the second disinfection water joint 51 is suitable for connecting to the disinfection water mixing device, so that the disinfection water generated by the disinfection water mixing device passes through the second disinfection water joint 51, the first disinfection water joint 34, and the guide seat 31 in turn.
  • the dashed line in FIG. 8 is the flow direction of clean water; wherein, the disinfection water mixing device is used to provide disinfection water.
  • the defecation collection and sewage care device further includes a box body and a warm water component disposed in the box body, and the warm water component includes a water adding pipe joint 52 , a clean water tank 53, a first heating structure 54 and a water pump 55, one end of the water adding pipe joint 52 is suitable for connecting to the water supply end, the other end of the water adding pipe joint 52, the clean water tank 53, and the water pump 55 are sequentially
  • the water outlet end of the water pump 55 is suitable for connecting to a wearable device
  • the first heating structure 54 is suitable for being arranged in the clean water tank 53, on the pipeline between the clean water tank 53 and the water pump 55, or anywhere. on the water pipe between the water pump 55 and the wearing device.
  • the water adding pipe joint 52 is arranged in the joint box.
  • the water adding pipe joint 52 By connecting the water adding pipe joint 52, the clean water tank 53, and the water pump 55 in sequence and suitable for connecting to the wearable device, and the water adding pipe joint One end of 52 is communicated with the water supply end such as a faucet, so that the cold water provided by the faucet enters into the clean water tank 53 through the water adding pipe joint 52 in turn, so that the clean water tank 53 is supplemented with clean water by the water adding pipe joint 52; at the bottom end of the clean water tank 53 Or a water outlet is provided at the side end, and the water outlet is communicated with the water pump 55, so that the water of the clean water tank 53 is pumped out to the wearing device by the water pump 55, and the first heating structure 54 is arranged in the clean water tank 53, the clean water tank 53 On the pipeline between the water pump 55 or the water pipe between the water pump 55 and the wearable device, the first heating structure 54 is used to heat the clean water into warm water and supply the wearable device.
  • the first heating structure 54 can be a commonly used U-shaped or rod-shaped heating pipe; if the first heating structure 54 is disposed in the clean water tank 53
  • the first heating structure 54 is an instantaneous heat type heater, which can counter flow through the clean water tank 53
  • the clean water on the pipeline between the water pump 55 or the water pipe between the water pump 55 and the wearable device is heated, so that warm water can also be provided for the wearable device.
  • the instantaneous heat type heater can use thick film on the market.
  • Heating elements of which the thick film heating element can rapidly generate high temperature in ten seconds or several tens of seconds to rapidly heat water, which is the prior art, as long as the first heating structure 54 that can quickly heat water is applicable to this technical solution , which is not specifically limited here.
  • the warm water assembly also includes a water valve 59, which is arranged on the pipeline between the water outlet of the water pump 55 and the wearable device, and is used to close the water outlet of the water pump 55 to prevent the water pump 55 from continuously providing clean water for the wearable device; wherein, the water valve 59 may be a solenoid valve or a rotary valve, and the specific structure of the water valve 59 is not limited herein.
  • the feces collection and sewage care device further includes an air blowing pump 56 and a second heating structure, the air blowing pump 56 is suitable for connecting to the wearable device, and the second heating structure is disposed on the on the trachea between the insufflation pump 56 and the wearable device.
  • the blowing pump 56 is arranged in the box, and the second heating structure (not shown in the figure) is arranged on the trachea between the air outlet of the blowing pump 56 and the wearing device.
  • the generated wind is heated to form warm air and sent to the wearable device; wherein, the second heating structure can be a heating pipe or other structures, as long as the second heating structure that can heat the wind generated by the blowing pump 56 into warm air is applicable
  • the technical solution is not limited here.
  • the wearing device is a feces collection cover
  • the stool collection cover is an arc structure
  • the stool collection cover is provided with a bayonet
  • the stool collection cover is detachably installed on the crotch of the patient through the bayonet
  • the stool collection cover The inner bottom wall of the feces collection tank is provided with a urinal for collecting the urine and feces of the patient.
  • the inner side wall of the feces collection shield is provided with a cleaning nozzle and a warm air nozzle.
  • the nozzles are connected, so that warm water can be provided for the feces collection cover, so as to facilitate the cleaning of the patient's crotch; the air blowing pump 56 is connected with the warm air nozzle, so that after the cleaning nozzle has cleaned the patient's crotch, the warm air nozzle is used to clean the patient's crotch. The patient's crotch is blown to keep the patient's crotch clean and hygienic.
  • the feces collection and sewage care device further includes an intermediate joint assembly 7, a power supply assembly 57 and a control panel 58.
  • the intermediate joint assembly 7 includes a joint mounting plate and passes through the joint mounting plate. The sewage joint, cleaning joint and heater joint of the wearable device are quickly connected to the sewage suction joint 38 through the sewage joint, so that the urine and feces in the toilet can enter the sewage tank 32 through the sewage joint and sewage joint 38.
  • the cleaning nozzle in the wearable device is quickly communicated with the water valve 59 in the warm water component through the cleaning connector, so that the warm water component is used to provide warm water for the cleaning nozzle of the wearable device through the cleaning connector, which is convenient for cleaning the patient's crotch;
  • the warm air nozzle is communicated with the air blowing pump 56 through the warm air joint. Since the second heating structure is arranged on the trachea between the air blowing pump 56 and the wearing device, it is convenient for the second heating structure to heat the cold air generated by the air blowing pump 56.
  • the warm air is formed and sent to the warm air nozzle of the wearable device through the warm air joint, so as to blow warm air on the patient's crotch to ensure the cleanliness of the patient's crotch, that is, the intermediate joint assembly 7 is used to realize the toilet collection in the wearable device.
  • the tank, the cleaning nozzle and the warm air nozzle are respectively connected with or disconnected from the sewage suction joint 38, the water valve 59 in the warm water assembly and the air blowing pump 56.
  • the power supply assembly 57 is arranged in the box to provide working power for the vacuum pump 412, the first heating structure 54, the water pump 55, the blowing pump 56, the control panel 58, the second heating structure and the valve structure 6; the control panel 58 can be arranged in the box.
  • control panel 58 The upper surface or side surface of the control panel 58 is electrically connected with the vacuum pump 412, the first heating structure 54, the water pump 55, the air blowing pump 56, the control panel 58, the second heating structure and the valve structure 6, so as to facilitate the separate control of the above electrical appliances.

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Abstract

本发明涉及护理装置技术领域,并提供一种集成接头组件和集便排污护理装置,集便排污护理装置包括污水罐,所述集成接头组件包括导流座,所述导流座和/或所述罐口开设消毒水流道结构,所述消毒水流道结构适于连接第一消毒水接头,所述导流座与所述罐口内壁底端之间设置与所述消毒水流道结构连通的环形喷洒口,所述第一消毒水接头进入的消毒水经所述消毒水流道结构从所述环形喷洒口向所述污水罐的内壁喷出环形发射状消毒水流;本发明利用高压环形消毒水流对污水罐的内壁进行冲洗,保持污水罐内壁的清洁,减少异味。

Description

一种集成接头组件和集便排污护理装置 技术领域
本发明涉及护理装置技术领域,具体而言,涉及一种集成接头组件和集便排污护理装置。
背景技术
现阶段,对于一些行动不便、长期卧床的患者而言,大小便比较困难,通常采用将集便器护罩穿戴在患者的裆部处进行收集尿便的方式,集便器护罩通过管路再将尿便传输至污水罐内进行收集存储,但是由于尿便在进入污水罐内后会喷洒附着在污水罐内壁上,从而导致污水罐内壁脏乱不堪,不便清洗,进而使污水罐内异味过重,影响正常使用。
发明内容
本发明解决的问题是如何设计一种对污水罐内壁进行清洁的集成接头组件。
为解决上述问题,本发明提供一种集成接头组件,应用于集便排污护理装置,所述集便排污护理装置包括污水罐,所述集成接头组件包括导流座,所述导流座适于嵌设于所述污水罐的罐口处,所述导流座和/或所述罐口开设消毒水流道结构,所述消毒水流道结构适于连接第一消毒水接头,所述导流座与所述罐口内壁底端之间设置与所述消毒水流道结构连通的环形喷洒口,所述第一消毒水接头进入的消毒水经所述消毒水流道结构从所述环形喷洒口向所述污水罐的内壁喷出环形发射状消毒水流。
由此,在导流座嵌设于污水罐的罐口时,通过在所述导流座和/或所述罐口开设消毒水流道结构,以及消毒水流道结构适于连接第一消毒水接头,从而使消毒水从第一消毒水接头进入后在所述消毒水流道结构内流动,再从所述导流座与所述罐口内壁底端之间的环形喷洒口向污水罐的内壁喷出环形发射状消毒水流,以对污水罐内壁进行冲洗,进而保持污水罐内壁的清洁卫生,减少污水罐的异味,保证污水罐的正常使用。
可选地,集成接头组件还包括污水箱盖和第一消毒水接头,所述污水箱盖嵌设于所述罐口内,所述污水箱盖的内部设有容纳腔,所述导流座嵌入所述容纳腔内,所述导流座的外壁和/或所述污水箱盖开设所述消毒水流道结 构,所述导流座与所述污水箱盖内壁底端之间设置所述环形喷洒口;所述污水箱盖上还设有消毒水接口,所述第一消毒水接头嵌设于消毒水接口内并与所述消毒水流道结构连通。
可选地,所述导流座上还设有抽污接口和抽真空接口,所述抽污接口适于连接于安装在患者裆部处的穿戴装置,所述抽真空接口适于连接于抽真空组件。
可选地,所述消毒水流道结构为环形流道结构,所述环形流道结构沿所述消毒水的流向逐渐收缩。
可选地,所述消毒水流道结构包括第一流道、多个第二流道、蓄水凹槽和环形凸台,所述第一流道适于连接所述第一消毒水接头,多个所述第二流道的顶端分别与所述第一流道连通,所述蓄水凹槽设置于所述第二流道的下侧且两者相连通,所述环形凸台承接于所述蓄水凹槽,所述环形凸台与所述罐口内壁底端之间预设所述环形喷洒口,所述第一消毒水接头进入的消毒水依次经所述第一流道、多个所述第二流道后在所述蓄水凹槽内汇集,再经所述环形凸台从所述环形喷洒口向所述污水罐的内壁喷出所述环形发射状消毒水流。
本发明还提供一种集便排污护理装置,包括污水罐以及上述所述的集成接头组件,所述集成接头组件中的导流座适于嵌设于所述污水罐的罐口处。
所述集便排污护理装置的有益效果同所述集成接头组件的有益效果,在此不再赘述。
可选地,集便排污护理装置还包括阀门结构,所述污水罐上设有排泄口,所述阀门结构设置于所述排泄口处。
可选地,集便排污护理装置还包括抽真空组件,所述抽真空组件包括泵盒、设置于所述泵盒内的真空泵、消音过滤盒以及设置于所述消音过滤盒内的臭味消除结构和消音管,所述真空泵的抽气口适于与所述污水罐的罐口连通,所述真空泵的出气口与所述消音管的一端连通,所述消音过滤盒的侧壁上设有排气口,所述臭味消除结构与所述消音过滤盒的所述排气口相对设置,所述消音管上设有多个消音孔。
可选地,集便排污护理装置还包括抽真空接头、抽污接头以及设置于所 述真空泵的抽气口与所述污水罐的罐口之间管路上的水汽过滤组件,所述抽真空接头的一端穿设于所述集成接头组件中的污水箱盖并与所述导流座的抽真空接口连通,所述抽真空接头的另一端与所述真空泵连通,所述抽污接头穿设于所述污水箱盖并与所述导流座的抽污接口连通,所述水汽过滤组件适于对所述真空泵工作时从所述污水罐内抽取的空气进行过滤。
可选地,所述水汽过滤组件包括水汽接头板、水汽过滤结构和所述水汽集渣杯,所述水汽接头板上设有进气接口和出气接口,所述水汽过滤结构设置于所述水汽集渣杯内,所述水汽接头板盖设于所述水汽集渣杯的开口处;所述进气接口与所述抽真空接头连通,所述出气接口与所述真空泵连通。
可选地,集便排污护理装置还包括第二消毒水接头,所述第二消毒水接头的一端与所述集成接头组件中的第一消毒水接头连通,所述第二消毒水接头的另一端适于连接消毒水混合装置,所述消毒水混合装置适于依次通过所述第二消毒水接头和所述第一消毒水接头与所述导流座连通。
可选地,集便排污护理装置还包括箱体以及设置于所述箱体内的温水组件,所述温水组件包括加水管接头、清水箱、第一加热结构和水泵,所述加水管接头的一端适于连接于供水端,所述加水管接头的另一端、所述清水箱、所述水泵依次连通,所述水泵的出水端适于连接穿戴装置,所述第一加热结构适于设置于所述清水箱内、所述清水箱与所述水泵之间的管路上或所述水泵与所述穿戴装置之间的水管上。
可选地,集便排污护理装置还包括吹气泵和第二加热结构,所述吹气泵适于连接所述穿戴装置,所述第二加热结构设置于所述吹气泵与所述穿戴装置之间的气管上。
附图说明
图1为本发明实施例中导流座的结构示意图;
图2为本发明实施例中集成接头组件的轴测结构示意图;
图3为本发明实施例中集成接头组件的剖面结构示意图;
图4为本发明实施例中污水箱盖的轴测结构示意图;
图5为本发明实施例中集成接头组件的爆炸结构示意图;
图6为本发明实施例中集便排污护理装置的结构示意图之一;
图7为本发明实施例中集便排污护理装置的结构示意图之二;
图8为本发明实施例中集便排污护理装置的爆炸结构示意图;
图9为本发明实施例中抽真空组件的结构示意图;
图10为图7中A处的放大结构示意图;
图11为本发明实施例中水汽过滤组件的剖面结构示意图;
图12为本发明实施例中水汽过滤组件的爆炸结构示意图;
图13为本发明实施例中导流座内部设置消毒水流道结构的剖面结构示意图;
图14为本发明实施例中导流座外壁设置消毒水流道结构的剖面结构示意图;
图15为本发明实施例中罐口或污水箱盖内壁设置消毒水流道结构的剖面结构示意图;
图16为本发明实施例中罐口或污水箱盖内壁与导流座外壁设置消毒水流道结构的剖面结构示意图。
附图标记说明:
31-导流座;311-第一流道;312-第二流道;313-蓄水凹槽;314-环形凸台;315-抽污接口;316-抽真空接口;317-消毒水流道结构;32-污水罐;33-污水箱盖;331-消毒水接口;34-第一消毒水接头;35-第一密封圈;36-第二密封圈;37-抽真空接头;38-抽污接头;41-抽真空组件;411-泵盒;412-真空泵;413-消音过滤盒;414-臭味消除结构;415-消音管;42-水汽过滤组件;421-水汽接头板;4211-进气接口;4212-出气接口;422-水汽过滤结构;423-水汽集渣杯;424-排污盖;425-第三密封圈;426-导风结构;427-接头板座;51-第二消毒水接头;52-加水管接头;53-清水箱;54-第一加热结构;55-水泵;56-吹气泵;57-电源组件;58-控制面板;59-水阀;6-阀门结构;7-中间接头组件。
具体实施方式
为使本发明的上述目的、特征和优点能够更为明显易懂,下面结合附图对本发明的具体实施例做详细的说明。
需要说明的是,本发明的说明书和权利要求书及上述附图中的术语“第 一”、“第二”等是用于区别类似的对象,而不必用于描述特定的顺序或先后次序。应该理解这样使用的数据在适当情况下可以互换,以便这里描述的本发明的实施例能够以除了在这里图示或描述的那些以外的顺序实施。
在本发明的描述中,需要说明的是,除非另有明确的规定和限定,术语“设置”、“安装”、“相连”、“连接”应做广义理解,例如,可以是固定连接,也可以是可拆卸连接,或一体地连接;可以是机械连接;可以是直接相连,也可以通过中间媒介间接相连,可以是两个元件内部的连通。对于本领域的普通技术人员而言,可以具体情况理解上述术语在本发明中的具体含义。
在本说明书的描述中,参考术语“实施例”、“一个实施例”和“一个实施方式”等的描述意指结合该实施例或实施方式描述的具体特征、结构、材料或者特点包含于本发明的至少一个实施例或示实施方式中。在本说明书中,对上述术语的示意性表述不一定指的是相同的实施例或实施方式。而且,描述的具体特征、结构、材料或者特点可以在任何的一个或多个实施例或实施方式以合适的方式结合。
为解决上述技术问题,结合图1、图6、图13至图16所示,本发明实施例提供一种集成接头组件,应用于集便排污护理装置,所述集便排污护理装置包括污水罐32,所述集成接头组件包括导流座31,所述导流座31适于嵌设于所述污水罐32的罐口处,所述导流座31和/或所述罐口开设消毒水流道结构317,所述消毒水流道结构317适于连接第一消毒水接头34,所述导流座31与所述罐口内壁底端之间设置与所述消毒水流道结构317连通的环形喷洒口,所述第一消毒水接头34进入的消毒水经所述消毒水流道结构317从所述环形喷洒口向所述污水罐32的内壁喷出环形发射状消毒水流。
需要说明的是,在导流座31嵌设于污水罐32的罐口时,通过在所述导流座31和/或所述罐口开设消毒水流道结构317,以及消毒水流道结构317适于连接第一消毒水接头34,从而使消毒水从第一消毒水接头34进入后在消毒水流道结构317流动,再从所述导流座31与所述罐口内壁底端之间的环形喷洒口处向污水罐的内壁喷出环形发射状消毒水流,以对污水罐32的内壁进行冲洗,进而保持污水罐32内壁的清洁卫生,减少污水罐32的异味, 保证污水罐32的正常使用。
在本发明的一个实施例中,结合图2、图3和图5所示,集成接头组件还包括污水箱盖33和第一消毒水接头34,所述污水箱盖33嵌设于所述罐口内,所述污水箱盖33的内部设有容纳腔,所述导流座31嵌入所述容纳腔内,所述导流座31的外壁和/或所述污水箱盖33开设所述消毒水流道结构317,所述导流座31与所述污水箱盖33内壁底端之间设置所述环形喷洒口;所述污水箱盖33上还设有消毒水接口331,所述第一消毒水接头34嵌设于消毒水接口331内并与所述消毒水流道结构317连通。
需要说明的是,污水箱盖33部分结构嵌设于污水罐32的罐口内,此时污水箱盖33的周向侧壁与罐口的内壁相抵,从而保证污水箱盖33与罐口内壁的密封性;在污水箱盖33的侧壁上设有消毒水接口331,在污水箱盖33的内部设置容纳腔,导流座31嵌设在污水箱盖33的容纳腔内,在导流座31的外壁和/或所述污水箱盖33开设所述消毒水流道结构317,第一消毒水接头34嵌设于消毒水接口331内并与所述消毒水流道结构317连通,从而使从第一消毒水接头34进入的消毒水可以进入消毒水流道结构317流动,最后从导流座31与所述污水箱盖33内壁底端之间的环形喷洒口喷出环形发射状消毒水流,利用具有一定压力的环形发射状消毒水流对污水罐32的内壁进行冲洗。
其中,在导流座31嵌设于污水箱盖33内部的容纳腔时,所述环形喷洒口的最底端要低于污水箱盖33的底端,从而避免污水箱盖33的底端对环形发射状消毒水流的喷出造成干涉;且环形喷洒口要低于污水罐32的罐口底端,避免环形发射状消毒水流从环形喷洒口喷出后直接喷在污水罐32的罐口内壁上,从而减少了环形发射状消毒水流的水压,使环形发射状消毒水流在从环形喷洒口喷出后喷向罐口的底端以下部位,从而确保消毒水流从污水罐32的内壁最上端开始冲洗,实现对污水罐32内壁的全部清洗,避免存在清洗死角。
在本实施例中,消毒水接口331可以为螺栓孔,第一消毒水接头34通过螺纹方式安装于为螺栓孔的消毒水接口331内,结合图5所示;消毒水接口331还可以为通孔,第一消毒水接头34可直接插入为通孔的消毒水接口 331内。
在本发明的实施例中,可以在导流座31的内部设置消毒水流道结构317,也可以在导流座31的外侧壁上设置消毒水流道结构317,还可以在污水罐32的内侧壁上设置消毒水流道结构317,还可以在导流座31和污水罐32的罐口相对侧壁上均设置消毒水流道结构317。
其中,图13为在导流座31内部设置消毒水流道结构的剖面图,在该实施例中,导流座31包括外导流座和内导流座,外导流座的内部设有腔室,内导流座嵌设于外导流座内,在外导流座和内导流座的顶端连接处设有入液口,且入液口适于与第一消毒水接头连通,在外导流座的内壁和内导流座的外壁之间预设间隔,此时所述间隔为消毒水流道结构317,外导流座的底端与内导流座的底端之间预设所述环形喷洒口,首先消毒水经第一消毒水接头(图中未示出)从入液口进入为间隔的所述消毒水流道结构317,最后从环形喷洒口喷出环形发射状消毒水流,图13中虚线上箭头为消毒水的流向。
与上述实施例不同的是,图14为在导流座31的外侧壁设置消毒水流道结构的剖面图,在该实施例中,在导流座31的外侧壁上设置消毒水流道结构317,当导流座31直接嵌设于污水罐32的罐口内或导流座31嵌设于污水箱盖33内时,此时消毒水流道结构317为环形凹槽,在导流座31外侧壁上设置的环形凹槽与污水罐32的罐口内壁或污水箱盖33的内壁之间配合形成完整的消毒水流道,在污水罐32的罐口或污水箱盖33的侧壁上开设至少一个入液口,第一消毒水接头34与所述入液口连通,在导流座31外侧壁上设置的消毒水流道结构317与污水罐32的罐口内壁或污水箱盖33的内壁底端之间设置环形喷洒口,消毒水经第一消毒水接头(图中未示出)从入液口进入为环形凹槽的所述消毒水流道结构317,最后从环形喷洒口喷出环形发射状消毒水流,图14中虚线上箭头为消毒水的流向。
与上述实施例不同的是,图15为在污水罐32的罐口或污水箱盖33的内侧壁设置消毒水流道结构的剖面图,在该实施例中,在污水罐32的罐口或污水箱盖33的内侧壁设置消毒水流道结构317,当导流座31直接嵌设于污水罐32的罐口内或导流座31嵌设于污水箱盖33内时,此时消毒水流道结构317为环形凹槽,在污水罐32的罐口或污水箱盖33的内侧壁开设的环 形凹槽与导流座31的外侧壁配合形成完整的消毒水流道,在污水罐32的罐口或污水箱盖33的侧壁上开设至少一个入液口,第一消毒水接头34与所述入液口连通,在污水罐32的罐口或污水箱盖33的内侧壁设置消毒水流道结构317与导流座31的外侧壁底端之间设置环形喷洒口,消毒水经第一消毒水接头(图中未示出)从入液口进入为环形凹槽的所述消毒水流道结构317,最后从环形喷洒口喷出环形发射状消毒水流,图15中虚线上箭头为消毒水的流向。
与上述实施例不同的是,图16为在污水罐32的罐口或污水箱盖33和导流座31的相对侧壁上均设置消毒水流道结构的剖面图,在该实施例中,污水罐32的罐口或污水箱盖33和导流座31的相对侧壁分别设置第一消毒水流道和第二消毒水流道,且第一消毒水流道和第二消毒水流道相连通,当导流座31直接嵌设于污水罐32的罐口内或导流座31嵌设于污水箱盖33内时,此时第一消毒水流道和第二消毒水流道均为环形凹槽,在污水罐32的罐口或污水箱盖33的内侧壁开设的第一消毒水流道与导流座31的外侧壁开设的第二消毒水流道合围并配合形成完整的消毒水流道,在污水罐32的罐口或污水箱盖33的侧壁上开设至少一个入液口,第一消毒水接头34与所述入液口连通,污水罐32的罐口内或污水箱盖33的内侧壁设置的消毒水流道结构317与导流座31的外侧壁底端之间设置环形喷洒口,消毒水经第一消毒水接头(图中未示出)从入液口进入为环形凹槽的所述消毒水流道结构317,最后从环形喷洒口喷出环形发射状消毒水流,图16中虚线上箭头为消毒水的流向。
在本发明的一个实施例中,结合图1和图5所示,所述导流座31上还设有抽污接口315和抽真空接口316,所述抽污接口315适于连接于安装在患者裆部处的穿戴装置,所述抽真空接口316适于连接于抽真空组件41。
需要说明的是,在导流座31上开设排污接口和抽真空接口316,且抽污接口315和抽真空接口316都与污水罐32的内部连通,抽真空接口316适于连接抽真空组件41,利用抽真空组件41对污水罐32的内部进行抽气以使污水罐32内部产生负压,以及抽污接口315适于连接于穿戴装置,从而使安装在患者裆部处的穿戴装置的尿便被抽取并从抽污接口315进入污 水罐32内,从而实现将穿戴装置内的尿便的自动吸取存储。
在实施例中,集成接头组件还包括第一密封圈35和第二密封圈36,第一密封圈35设置于污水箱盖33与污水罐32的罐口之间处,从而实现污水箱盖33与污水罐32之间的密封;第二密封圈36设置于导流座31的外壁顶端与污水箱盖33的内壁之间处,从而实现导流座31与污水箱盖33之间的密封。
在本发明的一个实施例中,所述消毒水流道结构317为环形流道结构,所述环形流道结构沿所述消毒水的流向逐渐收缩。
需要说明的是,结合图13至图16所示,通过将消毒水流道结构317设置为环形流道结构,且环形流道结构沿所述消毒水的流向逐渐收缩,从而使消毒水在环形流道结构内流动过程中因环形流道结构的尺寸逐渐变小而使水压增大,使得从环形喷洒口喷出的环形发射状消毒水流以一定水压喷向污水罐32的内壁,进而实现对污水罐32的内壁进行冲洗,从而保证污水罐32内壁的清洁卫生,减少异味。
在本发明的一个实施例中,结合图1、图3和图5所示,所述消毒水流道结构317包括第一流道311、多个第二流道312、蓄水凹槽313和环形凸台314,所述第一流道311适于连接所述第一消毒水接头34,多个所述第二流道312的顶端分别与所述第一流道311连通,所述蓄水凹槽313设置于所述第二流道312的下侧且两者相连通,所述环形凸台314承接于所述蓄水凹槽313,所述环形凸台314与所述罐口内壁底端或污水箱盖33之间预设所述环形喷洒口,所述第一消毒水接头34进入的消毒水依次经所述第一流道311、多个所述第二流道312后在所述蓄水凹槽313内汇集,再经所述环形凸台314从所述环形喷洒口向所述污水罐32的内壁喷出所述环形发射状消毒水流。
需要说明的是,在导流座31嵌设于污水罐32的罐口时,第一流道311适于连接第一消毒水接头34,从而使从第一消毒水接头34进入的消毒水依次经第一流道311、多个第二流道312后在蓄水凹槽313内进行汇集,蓄水凹槽313内汇集的消毒水向下流动经过环形凸台314并从环形喷洒口处向污水罐32的内壁喷出环形消毒水流,从而利用高压环形消毒水流对污水罐32 的内壁进行冲洗,保持污水罐32内壁的清洁卫生,减少污水罐32的异味,保证污水罐32的正常使用。
在本实施例中,结合图1所示,第一流道311环绕导流座31的外侧壁径向设置,且第一流道311为凹槽结构,其中,第一流道311可以为弧形流道,也可为圆形流道,第一流道311可以与水平面平行,也可以与水平面之间保持一定夹角,故第一流道311的长度以及与水平面之间的夹角在此不做具体限定;多个第二流道312均处于第一流道311的下侧,第二流道312的数量可以为两个、三个、四个等,第二流道312的数量在此不做具体限定,多个第二流道312环绕导流座31的外侧壁并间隔设置,第二流道312也为凹槽结构,每个第二流道312的端部或两端之间某个位置向上延伸并与第一流道311连通,每个第二流道312的两端或两端之间至少一个部位向下延伸并与蓄水凹槽313连通,蓄水凹槽313为环形凹槽,且环形凹槽与导流座31的中心轴线垂直;当导流座31嵌设于污水罐32的罐口内壁时,导流座31的周向外壁与罐口的内壁相抵,从而保证导流座31与罐口之间的密封性;当消毒水从第一消毒水接头34进入后先经过第一流道311,然后再进行分流至多个第二流道312,随后多个第二流道312内的消毒水从导流座31的周向侧壁进入蓄水凹槽313内进行汇集,而环形凸台314一体或可拆卸设置于导流座31的外壁,且环形凸台314位于蓄水凹槽313的下侧,环形凸台314的底端与罐口内壁之间预设环形喷洒口,环形喷洒口可以为连续的环形喷洒口,也可以为断续的环形喷洒口,而环形凸台314的上表面高度从中心向外逐渐降低,此时环形凸台314的上表面具有一定的坡度,从而使环形凸台314的上端至罐口内壁之间的喷洒流道尺寸与环形凸台314下端至罐口内壁之间的喷洒流道尺寸逐渐变小,从而使蓄水凹槽313内的消毒水经过喷洒流道后以一定水压呈环形发射状消毒水流喷向污水罐32的内壁,从而对污水罐的内壁进行冲洗,进而保证污水罐32的内壁清洁卫生,减少异味。
本发明的另一实施例中提供一种集便排污护理装置,包括污水罐32以及如上述实施例中所述的集成接头组件,所述集成接头组件中的导流座31适于嵌设于所述污水罐32的罐口处,所述集便排污护理装置的有益效果同集成接头组件的有益效果,在此不再赘述。
在本发明的一个实施例中,集便排污护理装置还包括阀门结构6,所述污水罐32上设有排泄口,所述阀门结构6设置于所述排泄口处。
需要说明的是,相对现有技术中需要将盛装尿便的容器取出再拿到卫生间倒出而言,本发明通过在在污水罐32的底端或侧壁下端设有排泄口,阀门结构6安装于排泄口处,从而在污水罐32内的尿便混合成的污水快满时,无需取出污水罐32,只需在阀门结构6处连接排污管,打开阀门结构6,即可将污水罐32内的尿便经排泄口和排污管排出,使用方便,实用性强。其中,阀门结构6可采用手动阀门或电动阀门,只要能够将污水罐32内的尿便污水排出的阀门结构6均适用于本技术方案,阀门结构6的具体结构类型在此不做限定。
在本发明的一个实施例中,结合图6、图8和图9所示,集便排污护理装置还包括抽真空组件41,所述抽真空组件41包括泵盒411、设置于所述泵盒411内的真空泵412、消音过滤盒413以及设置于所述消音过滤盒413内的臭味消除结构414和消音管415,所述真空泵412的抽气口适于与所述污水罐32的罐口连通,所述真空泵412的出气口与所述消音管415的一端连通,所述消音过滤盒413的侧壁上设有排气口,所述臭味消除结构414与所述消音过滤盒413的所述排气口相对设置,所述消音管415上设有多个消音孔。
需要说明的是,抽真空组件41不仅对污水罐32内进行抽气以使污水罐32内产生负压,使穿戴装置内的尿便被抽取后经导流座31的抽污接口315进入污水罐32内,而且还可以对从污水罐32内抽取的气体进行过滤和降噪;结合图8和图9所示,泵盒411为内部空心的壳体结构,将真空泵412安装于泵盒411内,由于真空泵412产生的噪音有两种,一种是真空泵412在工作运转时产生的声音,另一种噪音是真空泵412工作时抽取的气体的流声,从而利用泵盒411将真空泵412正常工作以及抽气产生的噪音封闭在泵盒411内,起到降低一定噪声的作用;通过真空泵412的抽气口适于与所述污水罐32的罐口连通,真空泵412的出气口与所述消音管415的一端连通,以及消音管415的周向侧壁设有多个消音孔,从而利用消音管415可以对真空泵412从污水罐32内抽取的气体进行消音,进一步提高对真空泵412的 降噪效果;其中,消音管415可以为管状结构或长方体结构等,其具体形状在此不做具体限定;通过将臭味消除结构414设置于消音过滤盒413内且与排气口相对,从而在消音管415对真空泵412排出的气体进行降噪之后,利用臭味消除结构414对消音管415消音后的气体再进行吸附,最后将干净的气体从消音过滤盒413的排气口排出,从而对从真空泵412抽取的气体先进行降噪消音,再进行过滤吸附,进而保证从消音过滤盒413的排气口排出气体的清洁,减少噪音,提高使用者的体验感。
在本实施例中,臭味消除结构414与消音过滤盒413的内部尺寸以及排气口尺寸相匹配,从而使消音过滤盒413内的气体中的臭味完全被吸附,提高排出气体的清洁度;臭味消除结构414可以为活性炭和HEPA高效空气过滤器组成的过滤网结构,利用活性炭和HEPA高效空气过滤器可以对从污水罐32内抽取的气体中的臭味进行完全吸附,提高从消音过滤盒413的排气口排出气体的干净清洁度。在泵盒411的内壁还设置减震隔音层,如减震隔音层为减震隔音板,可采用隔音毡(卷材)、隔音板(板材)或其他材料制成的减震隔音板,只要能够起到对真空泵412进行减震隔音效果的减震隔音层结构均适用于本技术方案,在此不做具体限定。
在本发明的一个实施例中,集便排污护理装置还包括抽真空接头37、抽污接头38以及设置于所述真空泵412的抽气口与所述污水罐32的罐口之间管路上的水汽过滤组件42,所述抽真空接头37的一端穿设于所述集成接头组件中的污水箱盖33并与所述导流座31的抽真空接口316连通,所述抽真空接头37的另一端与所述真空泵412连通,所述抽污接头38穿设于所述污水箱盖33并与所述导流座31的抽污接口315连通,所述水汽过滤组件42适于对所述真空泵412工作时从所述污水罐32内抽取的空气进行过滤。
需要说明的是,结合图3、图4和图5所示,在污水箱盖33上开设两个竖直通孔,且两个竖直通孔分别与抽真空接头37和抽污接头38的外径相匹配,在导流座31嵌设于污水箱盖33的容纳腔内后,抽真空接头37的一端穿设于污水箱盖33的一竖直通孔后并与导流座31上的抽真空接口316连通,从而使抽真空接头37通过导流座31的抽真空接口316与污水罐32内部连通,抽真空接头37的另一端可以与真空泵412连通,从而利用真空 泵412对污水罐32的内部进行抽气,不仅使污水罐32内产生负压,而且还可以将污水罐32内的污气抽出,减少污水罐32内的异味;抽污接头38的一端穿设于污水箱盖33的另一竖直通孔并与导流座31的抽污接口315连通,且抽污接头38的另一端适于连接安装在患者裆部处的穿戴装置,从而利用抽真空组件41工作时使污水罐32内产生的负压作用将穿戴装置内的尿便抽取并依次经抽污接头38和导流座31的抽污接口315后进入污水罐32内,实现对穿戴装置内尿便的自动抽取存储。
其中,结合图8所示的虚线,水汽过滤组件42安装在真空泵412的抽气口与污水罐32的罐口之间的连接管路上,利用水汽过滤组件42可以对真空泵412工作时从所述污水罐32内抽取的空气进行过滤,从而避免污水罐32内抽取的空气内的水汽进入真空泵412,而影响到真空泵412的正常使用。
在本发明的一个实施例中,结合图10、图11和图12所示,所述水汽过滤组件42包括水汽接头板421、水汽过滤结构422和所述水汽集渣杯423,所述水汽接头板421上设有进气接口4211和出气接口4212,所述水汽过滤结构422设置于所述水汽集渣杯423内,所述水汽接头板421盖设于所述水汽集渣杯423的开口处;所述进气接口4211与所述抽真空接头37连通,所述出气接口4212与所述真空泵412连通。
需要说明的是,通过将水汽过滤结构422设置于水汽集渣杯423内,以及所述水汽接头板421盖设于所述水汽集渣杯423的开口处,从而利用水汽过滤结构422对从进气接口4211进入水汽集渣杯423内的污水罐32气体进行过滤,以去除污水罐32气体中的水汽,防止水汽进入真空泵412内,从而保证真空泵412的正常工作;在水汽接头板421上设置进气接口4211和出气接口4212,其中,进气接口4211与穿设在污水箱盖33上的抽真空接头37连通,出气接口4212与真空泵412的抽气口连通,利用真空泵412将污水罐32内的气体先抽入水汽集渣杯423内并通过水汽过滤结构422进行过滤,最后使干燥的气体从出气接口4212进入真空泵412内;水汽过滤结构422可以为吸水纸制成的过滤网,还可以为其他种类的过滤网,只要能够吸附过滤污水罐32内的气体中水汽的水汽过滤结构422均适用于本技术方案,在此不在做出具体限定。
其中,结合图11和图12所示,所述水汽过滤组件42还包括接头板座427、导风结构426、第三密封圈425和排污盖424,水汽接头板421安装在接头板座427上,接头板座427为内部空心且上端开口的壳体结构,接头板座427的下端套设在水汽集渣杯423的上端,第三密封圈425设置在接头板座427与水汽集渣杯423之间的连接处,从而实现对接头板座427与水汽集渣杯423之间的密封;所述水汽过滤结构422设有进气孔、空气流道和出气孔,所述空气流道的两端分别与所述进气孔和所述出气孔连通,所述进气接口4211与所述水汽过滤结构422的进气孔连通,所述水汽过滤结构422的出气孔与所述出气接口4212连通,从进气接口4211进入的带水汽等杂质的气体经进气孔进入空气流道内,此时水汽等杂质会附着在水汽过滤结构422的侧壁上或掉落在水汽集渣杯423的底部,然后干净的空气从水汽过滤结构422的出气孔排出,便于后期拆下水汽集渣杯423对其内部进行清洗;其中,水汽过滤结构422可为圆筒结构的水汽过滤器,在圆筒结构的水汽过滤器的周向侧壁上开设多个所述进气孔,圆筒结构的内部为空气流道,圆筒结构的顶端开口为出气孔。
通过水汽集渣杯423可以收集水汽过滤结构422过滤后的杂质,排污盖424包括圆盘、设置在圆盘上表面的上支架和设置在圆盘下侧的下支架,在所述圆盘的周向外壁还设有成环形排列的多个凸起,水汽过滤结构422通过排污盖424安装于水汽集渣杯423内,上支架可为圆筒结构,从而与水汽过滤结构422的形状和大小相匹配,其中,多个所述凸起与所述水汽集渣杯423的内侧壁相抵,此时排污盖424不仅起到对水汽过滤结构422的支撑作用,在气体进入水汽集渣杯423内时,被水汽过滤结构422吸附过滤后的杂质滞留在水汽集渣杯423的内底部,这时排污盖424可以对水汽集渣杯423的底部的杂质进行遮挡,防止杂质随着水汽集渣杯423内的气流经水汽过滤结构422的空气流道或出气孔、水汽接头板421的出气接口4212进入真空泵412;其中,圆盘的周向侧壁上凸起的其他部位与水汽集渣杯423的侧壁之间预设间隔,所述间隔为杂质掉落至水汽集渣杯423底部的间隙;导风结构426设置于水汽过滤结构422与接头板座427之间处,导风结构426不仅用于使进入水汽集渣杯423内的空气变成螺旋气流,加快空气的流速,而且 还提高对水汽集渣杯423内的空气中杂质的过滤效率,导风结构426为内部设有竖直通孔的圆柱结构,在圆柱结构的周向侧壁设有成环形排列的多个螺旋叶片,利用圆柱结构外侧壁上的螺旋叶片,可以使水汽集渣杯423内的空气中变成螺旋气流。
在本发明的一个实施例中,结合图6所示,集便排污护理装置还包括第二消毒水接头51,所述第二消毒水接头51的一端与所述集成接头组件中的第一消毒水接头34连通,所述第二消毒水接头51的另一端适于连接消毒水混合装置,所述消毒水混合装置适于依次通过所述第二消毒水接头51和所述第一消毒水接头34与所述导流座31连通。
需要说明的是,集便排污护理装置还包括接头盒,第二消毒水接头51设置于接头盒内,第二消毒水接头51的一端与设置在污水箱盖33上的第一消毒水接头34连通,第二消毒水接头51的另一端适于连接消毒水混合装置,从而利用消毒水混合装置产生的消毒水依次经第二消毒水接头51、第一消毒水接头34、导流座31后进入污水罐32内,图8中的虚线为清水的流向;其中,消毒水混合装置用于提供消毒水。
在本发明的一个实施例中,结合图6、图7和图8所示,集便排污护理装置还包括箱体以及设置于所述箱体内的温水组件,所述温水组件包括加水管接头52、清水箱53、第一加热结构54和水泵55,所述加水管接头52的一端适于连接于供水端,所述加水管接头52的另一端、所述清水箱53、所述水泵55依次连通,所述水泵55的出水端适于连接穿戴装置,所述第一加热结构54适于设置于所述清水箱53内、所述清水箱53与所述水泵55之间的管路上或所述水泵55与所述穿戴装置之间的水管上。
需要说明的是,所述加水管接头52设置于接头盒内,通过将所述加水管接头52、所述清水箱53、所述水泵55依次连通并适于接入穿戴装置,以及加水管接头52的一端与如水龙头的供水端连通,从而使水龙头提供冷的清水依次经加水管接头52进入清水箱53内,从而利用加水管接头52为清水箱53补充清水;在清水箱53的底端或侧端开设出水口,所述出水口与水泵55连通,从而利用水泵55将清水箱53的水抽出至穿戴装置,通过将第一加热结构54设置于清水箱53内、所述清水箱53与所述水泵55之间的管 路上或所述水泵55与所述穿戴装置之间的水管上,从而利用第一加热结构54对清水进行加热成温水并供给穿戴装置。所述温水组件、污水罐32、抽真空组件41均设置于箱体内,箱体为温水组件、污水罐32、抽真空组件41提供了安装空间,还起到一定的防护作用,提高安全性。
在本实施例中,若第一加热结构54设置于清水箱53内,此时第一加热结构54可为常用的U型或棒状加热管;若第一加热结构54设置于所述清水箱53与所述水泵55之间的管路上或设置于所述水泵55与所述穿戴装置之间的水管上,此时第一加热结构54为瞬热型加热器,可以对流经所述清水箱53与所述水泵55之间的管路上或所述水泵55与所述穿戴装置之间的水管的清水进行加热,从而也可为穿戴装置提供温水,瞬热型加热器可采用市场上的厚膜发热元件,其中厚膜发热元件可以在十几秒、几十秒迅速产生高温以将清水迅速加热,为现有技术,只要能够实现请清水迅速加热的第一加热结构54均适用于本技术方案,在此不做具体限定。
温水组件还包括水阀59,水阀59设置于水泵55的出水口与穿戴装置之间的管路上,用于关闭水泵55的出水口,避免水泵55持续为穿戴装置提供清水;其中,水阀59可以为电磁阀,还可以为旋转阀门,水阀59的具体结构在此不做限定。
在本发明的一个实施例中,结合图6所示,集便排污护理装置还包括吹气泵56和第二加热结构,所述吹气泵56适于连接穿戴装置,所述第二加热结构设置于所述吹气泵56与所述穿戴装置之间的气管上。
需要说明的是,吹气泵56设置于箱体内,且第二加热结构(图中未示出)设置于吹气泵56的出风口与穿戴装置之间的气管上,第二加热结构对吹气泵56产生的风进行加热以形成暖风并输送至穿戴装置处;其中,第二加热结构可以为加热管或其他结构,只要能够将吹气泵56产生的风加热成暖风的第二加热结构均适用于本技术方案,在此不做限定。穿戴装置为集便护罩,集便护罩为弧形结构,且集便护罩上设有卡口,集便护罩通过卡口可拆卸安装于患者的裆部处,且集便护罩的内底壁设有集便槽,用于收集患者的尿便,在集便护罩的内侧壁设有清洗喷头和暖风喷头,温水组件中的水阀59与集便护罩内的清洗喷头连通,从而可以为集便护罩提供温水,从而便 于对患者的裆部进行清洗;吹气泵56与暖风喷头连通,从而在清洗喷头对患者裆部进行清洗完毕之后,利用暖风喷头对患者裆部进行吹风,从而保持患者裆部的清洁卫生。
其中,结合图6、图7和图8所示,集便排污护理装置还包括中间接头组件7、电源组件57和控制面板58,中间接头组件7包括接头安装板以及穿设于接头安装板上的污水接头、清洗接头和暖风接头,穿戴装置中的集便槽通过污水接头与抽污接头38快速连通,使集便槽内的尿便经污水接头和抽污接头38进入污水罐32内,穿戴装置中的清洗喷头通过清洗接头与温水组件中的水阀59快速连通,从而利用温水组件通过清洗接头为穿戴装置的清洗喷头提供温水,便于对患者的裆部进行清洗;穿戴装置中的暖风喷头通过暖风接头与吹气泵56连通,由于第二加热结构设置于所述吹气泵56与所述穿戴装置之间的气管上,便于第二加热结构对吹气泵56产生的冷风进行加热形成暖风并通过暖风接头输送至穿戴装置的暖风喷头,从而对患者的裆部进行吹暖风,保证患者裆部的清洁卫生,即中间接头组件7用于实现穿戴装置中的集便槽、清洗喷头和暖风喷头分别与抽污接头38、温水组件中的水阀59和吹气泵56快速拆装以连通或断开。电源组件57设置于箱体内,从而为真空泵412、第一加热结构54、水泵55、吹气泵56、控制面板58、第二加热结构和阀门结构6提供工作电源;控制面板58可设置于箱体的上表面或侧面,控制面板58与真空泵412、第一加热结构54、水泵55、吹气泵56、控制面板58、第二加热结构和阀门结构6电连接,从而便于对上述电器进行分别控制。
虽然本公开披露如上,但本公开的保护范围并非仅限于此。本领域技术人员在不脱离本公开的精神和范围的前提下,可进行各种变更与修改,这些变更与修改均将落入本发明的保护范围。

Claims (13)

  1. 一种集成接头组件,应用于集便排污护理装置,所述集便排污护理装置包括污水罐(32),其特征在于,所述集成接头组件包括导流座(31),所述导流座(31)适于嵌设于所述污水罐(32)的罐口处,所述导流座(31)和/或所述罐口开设消毒水流道结构(317),所述消毒水流道结构(317)适于连接第一消毒水接头(34),所述导流座(31)与所述罐口内壁底端之间设置与所述消毒水流道结构(317)连通的环形喷洒口,所述第一消毒水接头(34)进入的消毒水经所述消毒水流道结构(317)从所述环形喷洒口向所述污水罐(32)的内壁喷出环形发射状消毒水流。
  2. 根据权利要求1所述的集成接头组件,其特征在于,还包括污水箱盖(33)和第一消毒水接头(34),所述污水箱盖(33)嵌设于所述罐口内,所述污水箱盖(33)的内部设有容纳腔,所述导流座(31)嵌入所述容纳腔内,所述导流座(31)的外壁和/或所述污水箱盖(33)开设所述消毒水流道结构(317),所述导流座(31)与所述污水箱盖(33)内壁底端之间设置所述环形喷洒口;所述污水箱盖(33)上还设有消毒水接口(331),所述第一消毒水接头(34)嵌设于消毒水接口(331)内并与所述消毒水流道结构(317)连通。
  3. 根据权利要求1所述的集成接头组件,其特征在于,所述导流座(31)上还设有抽污接口(315)和抽真空接口(316),所述抽污接口(315)适于连接于安装在患者裆部处的穿戴装置,所述抽真空接口(316)适于连接于抽真空组件(41)。
  4. 根据权利要求1至3任一项所述的集成接头组件,其特征在于,所述消毒水流道结构(317)为环形流道结构,所述环形流道结构沿所述消毒水的流向逐渐收缩。
  5. 根据权利要求4所述的集成接头组件,其特征在于,所述消毒水流道结构(317)包括第一流道(311)、多个第二流道(312)、蓄水凹槽(313)和环形凸台(314),所述第一流道(311)适于连接所述第一消毒水接头(34),多个所述第二流道(312)的顶端分别与所述第一流道(311)连通,所述蓄水凹槽(313)设置于所述第二流道(312)的下侧且两者相连通,所述环形凸台(314)承接于所述蓄水凹槽(313),所述环形凸台(314)与所述罐口内壁底端之间预设所述 环形喷洒口,所述第一消毒水接头(34)进入的消毒水依次经所述第一流道(311)、多个所述第二流道(312)后在所述蓄水凹槽(313)内汇集,再经所述环形凸台(314)从所述环形喷洒口向所述污水罐(32)的内壁喷出所述环形发射状消毒水流。
  6. 一种集便排污护理装置,其特征在于,包括污水罐(32)以及如权利要求1至5中任一项所述的集成接头组件,所述集成接头组件中的导流座(31)适于嵌设于所述污水罐(32)的罐口处。
  7. 根据权利要求6所述的集便排污护理装置,其特征在于,还包括阀门结构(6),所述污水罐(32)上设有排泄口,所述阀门结构(6)设置于所述排泄口处。
  8. 根据权利要求6所述的集便排污护理装置,其特征在于,还包括抽真空组件(41),所述抽真空组件(41)包括泵盒(411)、设置于所述泵盒(411)内的真空泵(412)、消音过滤盒(413)以及设置于所述消音过滤盒(413)内的臭味消除结构(414)和消音管(415),所述真空泵(412)的抽气口适于与所述污水罐(32)的罐口连通,所述真空泵(412)的出气口与所述消音管(415)的一端连通,所述消音过滤盒(413)的侧壁上设有排气口,所述臭味消除结构(414)与所述消音过滤盒(413)的所述排气口相对设置,所述消音管(415)上设有多个消音孔。
  9. 根据权利要求8所述的集便排污护理装置,其特征在于,还包括抽真空接头(37)、抽污接头(38)以及设置于所述真空泵(412)的抽气口与所述污水罐(32)的罐口之间管路上的水汽过滤组件(42),所述抽真空接头(37)的一端穿设于所述集成接头组件中的污水箱盖(33)并与所述导流座(31)的抽真空接口(316)连通,所述抽真空接头(37)的另一端与所述真空泵(412)连通,所述抽污接头(38)穿设于所述污水箱盖(33)并与所述导流座(31)的抽污接口(315)连通,所述水汽过滤组件(42)适于对所述真空泵(412)工作时从所述污水罐(32)内抽取的空气进行过滤。
  10. 根据权利要求9所述的集便排污护理装置,其特征在于,所述水汽过滤组件(42)包括水汽接头板(421)、水汽过滤结构(422)和水汽集渣杯(423),所述水汽接头板(421)上设有进气接口(4211)和出气接口(4212),所述水汽过 滤结构(422)设置于所述水汽集渣杯(423)内,所述水汽接头板(421)盖设于所述水汽集渣杯(423)的开口处,所述进气接口(4211)与所述抽真空接头(37)连通,所述出气接口(4212)与所述真空泵(412)连通。
  11. 根据权利要求7至10中任一项所述的集便排污护理装置,其特征在于,还包括第二消毒水接头(51),所述第二消毒水接头(51)的一端与所述集成接头组件中的第一消毒水接头(34)连通,所述第二消毒水接头(51)的另一端适于连接消毒水混合装置,所述消毒水混合装置适于依次通过所述第二消毒水接头(51)和所述第一消毒水接头(34)与所述导流座(31)连通。
  12. 根据权利要求11所述的集便排污护理装置,其特征在于,还包括箱体以及设置于所述箱体内的温水组件,所述温水组件包括加水管接头(52)、清水箱(53)、第一加热结构(54)和水泵(55),所述加水管接头(52)的一端适于连接于供水端,所述加水管接头(52)的另一端、所述清水箱(53)、所述水泵(55)依次连通,所述水泵(55)的出水端适于连接穿戴装置,所述第一加热结构(54)适于设置于所述清水箱(53)内、所述清水箱(53)与所述水泵(55)之间的管路上或所述水泵(55)与所述穿戴装置之间的水管上。
  13. 根据权利要求11所述的集便排污护理装置,其特征在于,还包括吹气泵(56)和第二加热结构,所述吹气泵(56)适于连接穿戴装置,所述第二加热结构设置于所述吹气泵(56)与所述穿戴装置之间的气管上。
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