Rapid cleaning device for stoma skin
Through the design of protective cleaning components and auxiliary occlusion components, the problems of infection risk and low cleaning efficiency of existing stoma skin cleaners are solved, and rapid and safe stoma cleaning and disinfection effects are achieved.
Patent Information
- Application Number
- CN202510502546.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-21
- Publication Date
- 2025-07-08
AI Technical Summary
Existing stoma skin cleaners are prone to infections caused by cleaning water flowing out from the stoma position, which has a small cleaning range, slow cleaning speed, many disinfection tools and time-consuming, and low cleaning efficiency.
A quick cleaner including protective cleaning components and auxiliary shading components is designed to achieve rapid disinfection, cleaning and stoma powder spraying through a combination of annular flushing tube, atomization spray head, disinfection tube, cleaning cotton ring and shading tube to reduce the risk of sewage overflow and infection.
It improves disinfection efficiency, expands the cleaning range, simplifies the operating process, reduces the overall operating time, and improves the efficiency and safety of stoma cleaning.
Smart Images

Figure CN120267919A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of medical devices, and particularly to a rapid cleaner for stoma skin. Background Art
[0002] A stoma is not a disease, but an artificial opening for discharging body wastes. A stoma is an artificial opening made by a surgeon on the abdominal wall of a patient. After pulling out a section of the patient's intestinal tube and opening it outside the abdominal cavity, it is turned over and sewn to the abdominal wall for excreting feces or urine. When the stoma skin needs to be cleaned, after removing the stoma chassis, it is necessary to clean and wipe with warm water, dry with a dry towel, disinfect, and spray stoma skin care powder, etc.
[0003] The patent with the application number CN202410091346.0 mentions a "stoma skin cleaner". The nozzle of this device is connected to the stoma peripheral care system through a nursing pipeline. It uses a nursing nozzle and a stoma suction head to adsorb and seal and isolate the patient's stoma and the surrounding skin, so that the cleaning and nursing process of the patient's stoma is carried out in a relatively sealed state, simplifying the cleaning process, ensuring the cleaning quality, and improving the patient's quality of life. However, when the above device is used, the cleaning water is likely to flow out and contact the stoma position, causing infection. Moreover, the cleaning range is small, the cleaning speed is slow, and the disinfection appliances, disinfecting the skin around the stoma, and the nursing operations after cleaning are numerous and time-consuming. The stoma cleaning takes a long time and the stoma cleaning efficiency is relatively low. Summary of the Invention
[0004] The present invention provides a rapid cleaner for stoma skin, which can effectively solve the problems mentioned in the above background art, such as the cleaning water is likely to flow out and contact the stoma position, causing infection, the cleaning range is small, the cleaning speed is slow, the disinfection appliances, disinfecting the skin around the stoma, and the nursing operations after cleaning are numerous and time-consuming, the stoma cleaning takes a long time, and the stoma cleaning efficiency is relatively low.
[0005] To achieve the above object, the present invention provides the following technical solution: A rapid cleaner for stoma skin, including a fixed cleaning ring, and a protective cleaning component is installed outside the fixed cleaning ring, and the protective cleaning component includes an annular flushing pipe;
[0006] An annular flushing pipe is fixedly sleeved at the bottom end outside the fixed cleaning ring, a movable cleaning ring is slidably sleeved outside the annular flushing pipe, adhesive rings are slidably installed inside the fixed cleaning ring and the movable cleaning ring, a cleaning cotton ring is connected to the bottom surface of the adhesive ring through a magic tape, and extrusion springs are evenly distributed on the top surface of the adhesive ring;
[0007] The top surfaces of the fixed cleaning ring and the movable cleaning ring are both evenly distributed with support rods. The top ends of the support rods located on the top surface of the fixed cleaning ring are connected to a fixed top ring, and the top ends of the support rods located on the top surface of the movable cleaning ring are connected to a movable top ring. Tooth grooves are evenly formed on the edge of the top surface of the movable top ring. A motor bracket is installed on one side of the fixed top ring, a driving motor is installed inside the motor bracket, a gear is installed at the output shaft end of the driving motor, and the gear meshes with the tooth grooves.
[0008] According to the above technical solution, the bottom surface of the annular flushing pipe is evenly distributed with first atomizing nozzles. One end of a water inlet pipe penetrates through and is connected to one side of the top surface of the annular flushing pipe. The other end of the water inlet pipe is connected to the water outlet end of a water pump, and the water inlet end of the water pump is connected to a water delivery pipe, and the water delivery pipe penetrates through and is connected to the top end of a flushing box.
[0009] According to the above technical solution, a top bracket is rotatably installed inside the fixed top ring. One end of the top surface of the top bracket is welded with a limit block, and a positioning screw is installed through a screw hole in the middle of the limit block.
[0010] According to the above technical solution, a support ring is welded on the inner top surface of the fixed cleaning ring, an annular hollow disinfection ring is installed on the top surface of the support ring, disinfection spray holes are evenly formed inside the annular hollow disinfection ring, a butt joint pipe penetrates through and is installed on one side of the top surface of the annular hollow disinfection ring, one end of a disinfection pipe is clamped and installed inside the butt joint pipe, and the other end of the disinfection pipe is connected to a flexible disinfection water bag.
[0011] According to the above technical solution, a protective bottom box is sleeved outside the movable cleaning ring, a protective sleeve is slidably installed inside the protective bottom box, an extrusion hole is formed at the bottom end of the protective sleeve corresponding to the disinfection pipe, a protective rubber film is bonded inside the extrusion hole, and an end cover is movably clamped at the top end of the protective sleeve.
[0012] According to the above technical solution, the input ends of the driving motor and the water pump are respectively electrically connected to the output end of an external power supply, and the water pump is connected to one side of the top bracket through screws.
[0013] According to the above technical solution, the top bracket is provided with an auxiliary shielding assembly, and the auxiliary shielding assembly includes a sliding sleeve;
[0014] A sliding sleeve is slidably installed inside the top bracket, a shielding pipe is slidably installed inside the sliding sleeve, a powder box is sleeved at the bottom end of the shielding pipe, spraying holes are evenly formed on the outer side of the bottom end of the powder box, a baffle is hinged at the bottom end of the spraying hole, a counterweight bar is bonded at the bottom end of the baffle, an annular pressure box is movably embedded at the top end of the powder box, air spraying holes are evenly formed on the bottom surface of the annular pressure box, one end of an air delivery pipe is connected to the top surface of the annular pressure box, the other end of the air delivery pipe is connected to the air outlet end of an air pump, and a silica gel anti-slip gasket is bonded to the bottom surface of the powder box.
[0015] According to the above technical solution, an alcohol box is movably inlaid at the top end of the shielding tube. A rubber top cover is bonded to the top end of the alcohol box. The bottom end of the alcohol box is connected with a bottom cover through a thread. The middle part of the bottom surface of the bottom cover is penetrated and inlaid with a second atomizing nozzle.
[0016] According to the above technical solution, a pin hole is formed in one side of the top end of the sliding sleeve. A pin is slidably installed inside the pin hole. One end of the pin is bonded with a suction cup.
[0017] According to the above technical solution, the input end of the air pump is electrically connected to the output end of an external power supply. The air pump is connected to the middle part of the top frame far away from the water pump through a screw.
[0018] Compared with the prior art, the beneficial effects of the present invention are as follows:
[0019] 1. A protection and cleaning assembly is provided. When the device needs to be used, open the end cover, take out the flexible disinfection water bag, and reinstall the end cover. The disinfection tube passes through the extrusion hole and is extruded by the deformed protective rubber membrane, squeezing the flexible disinfection water bag. The disinfectant flows from the disinfection tube into the disinfection tube and sprays out from the disinfection spray holes. Part of the atomized disinfectant is in the relatively closed space composed of the protective bottom box, the protective sleeve and the end cover for disinfection. After standing for a period of time, take it out for use after disinfection. Perform a quick disinfection operation before use to reduce the subsequent preparation time and improve the operation efficiency;
[0020] When cleaning is required, squeeze the flexible disinfection water bag again to quickly disinfect the skin. Compared with manually wiping with an alcohol cotton ball, the disinfection efficiency is higher. Start the water pump. The water pump pumps out the warm water in the flushing box through the water delivery pipe, enters the annular flushing pipe through the water inlet pipe, and then sprays out from the first atomizing nozzle. The water mist is between the two cleaning cotton rings, and the excess water is absorbed by the cleaning cotton rings to prevent the sewage from flowing wantonly and infecting the stoma;
[0021] The driving motor drives the movable cleaning ring to rotate. The cleaning cotton rings corresponding to the movable cleaning ring rotate and scrub. Then, the sliding sleeve remains stationary, and the top frame moves relative to the sliding sleeve, pulling the fixed cleaning ring and the movable cleaning ring. The cleaning cotton rings at the bottom are squeezed by the compression spring while scrubbing the skin around the stoma. The wiping range is large and fast, improving the cleaning efficiency.
[0022] 2. An auxiliary shielding assembly is provided. Take out the alcohol box at the top end of the shielding tube, pour the disinfectant into the alcohol box, squeeze the rubber top cover, and the disinfectant sprays out from the second atomizing nozzle. The atomized disinfectant sprays out from the shielding tube and diffuses to the outside of the powder box to disinfect the inside of the shielding tube and the silica gel anti-slip gasket to prevent the stoma from being contaminated during cleaning and improve the safety of the operation;
[0023] Before cleaning is required, the powder box covering the bottom end of the shielding tube is sleeved outside the stoma to prevent sewage and dust from contacting the stoma during cleaning and causing infection. After cleaning with warm water wipe, the air pump sends air into the annular pressure box through the air supply pipe, and then evenly sprays the air into the powder box through the air spraying holes. The air pressure in the powder box increases, pushing open the baffle in the spraying hole, and the stoma powder is also sprayed out accordingly. Due to the blocking of the inclined baffle, the stoma powder falls on the skin around the stoma, quickly completing the spraying of the stoma powder.
[0024] In summary, the atomized water of the protection and cleaning component is limited between the two cleaning cotton rings, reducing the infection of the stoma caused by sewage overflow. And one of the two cleaning cotton rings only moves, while the other moves and rotates, improving the cleaning effect. Moreover, the shielding tube of the auxiliary shielding component closes the stoma position, further preventing the infection of the stoma and improving the operation safety. The two components cooperate with each other to complete the continuous operations of disinfection, cleaning, and stoma powder spraying. Multiple steps save time, greatly reducing the overall operation time and improving the cleaning efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0025] The drawings are used to provide a further understanding of the present invention, and constitute a part of the specification. Together with the embodiments of the present invention, they are used to explain the present invention, and do not constitute a limitation to the present invention.
[0026] In the drawings:
[0027] Figure 1 is the structural schematic diagram of the present invention;
[0028] Figure 2 is the structural schematic diagram of the protection and cleaning component of the present invention;
[0029] Figure 3 is the structural schematic diagram of the moxa stick of the movable top ring of the present invention;
[0030] Figure 4 is the present invention Figure 3 structural schematic diagram of area A;
[0031] Figure 5 is the installation structural schematic diagram of the docking pipe of the present invention;
[0032] Figure 6 is the installation structural schematic diagram of the powder box of the present invention;
[0033] Figure 7 is the installation structural schematic diagram of the baffle of the present invention;
[0034] Figure 8 is the installation structural schematic diagram of the pin of the present invention;
[0035] Reference numerals in the figure: 1, fixed cleaning ring;
[0036] 2. Protective cleaning assembly; 201. Annular flushing pipe; 202. First atomizing nozzle; 203. Water inlet pipe; 204. Water pump; 205. Water delivery pipe; 206. Flushing box; 207. Movable cleaning ring; 208. Adhesive ring; 209. Cleaning cotton ring; 210. Extrusion spring; 211. Support rod; 212. Fixed top ring; 213. Movable top ring; 214. Tooth groove; 215. Motor bracket; 216. Driving motor; 217. Gear; 218. Top bracket; 219. Limit block; 220. Positioning screw; 221. Support ring; 222. Annular hollow disinfection ring; 223. Disinfection spray hole; 224. Docking pipe; 225. Disinfection pipe; 226. Flexible disinfection water bag; 227. Protective bottom box; 228. Protective sleeve; 229. Extrusion hole; 230. Protective rubber membrane; 231. End cover.
[0037] 3. Auxiliary shielding assembly; 301. Sliding sleeve; 302. Shielding pipe; 303. Powder box; 304. Ejection hole; 305. Flap; 306. Counterweight bar; 307. Annular pressure box; 308. Air injection hole; 309. Air delivery pipe; 310. Air pump; 311. Alcohol box; 312. Rubber top cover; 313. Bottom cover; 314. Second atomizing nozzle; 315. Pin hole; 316. Pin; 317. Suction cup; 318. Silicone anti-slip washer. Detailed implementation mode
[0038] The preferred embodiments of the present invention will be described below with reference to the accompanying drawings. It should be understood that the preferred embodiments described herein are only used to illustrate and explain the present invention, and are not used to limit the present invention.
[0039] Embodiment: As Figure 1-8 shown, the present invention provides a technical solution for a rapid cleaner for stoma skin, including a fixed cleaning ring 1. A protective cleaning assembly 2 is installed outside the fixed cleaning ring 1. The protective cleaning assembly 2 includes an annular flushing pipe 201, a first atomizing nozzle 202, a water inlet pipe 203, a water pump 204, a water delivery pipe 205, a flushing box 206, a movable cleaning ring 207, an adhesive ring 208, a cleaning cotton ring 209, an extrusion spring 210, a support rod 211, a fixed top ring 212, a movable top ring 213, a tooth groove 214, a motor bracket 215, a driving motor 216, a gear 217, a top bracket 218, a limit block 219, a positioning screw 220, a support ring 221, an annular hollow disinfection ring 222, a disinfection spray hole 223, a docking pipe 224, a disinfection pipe 225, a flexible disinfection water bag 226, a protective bottom box 227, a protective sleeve 228, an extrusion hole 229, a protective rubber membrane 230 and an end cover 231;
[0040] A fixed cleaning ring 1 is fixedly sleeved with an annular flushing pipe 201 at the outer bottom end. An active cleaning ring 207 is slidably sleeved on the outer side of the annular flushing pipe 201. Bonding rings 208 are slidably installed inside both the fixed cleaning ring 1 and the active cleaning ring 207. A cleaning cotton ring 209 is connected to the bottom surface of the bonding ring 208 through a magic tape. Extrusion springs 210 are evenly distributed on the top surface of the bonding ring 208.
[0041] Support rods 211 are evenly distributed on the top surfaces of both the fixed cleaning ring 1 and the active cleaning ring 207. The top end of the support rod 211 located on the top surface of the fixed cleaning ring 1 is connected and fixed to a fixed top ring 212. The top end of the support rod 211 located on the top surface of the active cleaning ring 207 is connected to an active top ring 213. Tooth grooves 214 are evenly formed on the edge of the top surface of the active top ring 213. A motor bracket 215 is installed on one side of the fixed top ring 212. A driving motor 216 is installed inside the motor bracket 215. The input ends of the driving motor 216 and the water pump 204 are respectively electrically connected to the output end of an external power supply. The water pump 204 is connected to one side of a top bracket 218 through screws to ensure the normal operation of the driving motor 216 and the water pump 204. A gear 217 is installed at the output shaft end of the driving motor 216. The gear 217 meshes with the tooth grooves 214. First atomizing nozzles 202 are evenly distributed on the bottom surface of the annular flushing pipe 201. One end of a water inlet pipe 203 penetrates and is connected to the top surface of one side of the annular flushing pipe 201. The other end of the water inlet pipe 203 is connected to the water outlet end of the water pump 204. The water inlet end of the water pump 204 is connected to a water delivery pipe 205. The water delivery pipe 205 penetrates and is connected to the top end of a flushing box 206. A top bracket 218 is rotatably installed inside the fixed top ring 212. A limiting block 219 is welded to one end of the top surface of the top bracket 218. A positioning screw 220 is installed through a screw hole in the middle of the limiting block 219. A support ring 221 is welded to the inner top surface of the fixed cleaning ring 1. An annular hollow disinfection ring 222 is installed on the top surface of the support ring 221. Disinfection spray holes 223 are evenly formed inside the annular hollow disinfection ring 222. One side of the top surface of the annular hollow disinfection ring 222 penetrates and installs one end of a docking pipe 224. One end of a disinfection pipe 225 is clamped and installed inside the docking pipe 224. The other end of the disinfection pipe 225 is connected to a flexible disinfection water bag 226, which is convenient for disinfecting the device and improving safety. A protective bottom box 227 is sleeved on the outer side of the active cleaning ring 207. A protective sleeve 228 is slidably installed inside the protective bottom box 227. An extrusion hole 229 is formed at the bottom end of the protective sleeve 228 corresponding to the disinfection pipe 225. A protective rubber membrane 230 is bonded inside the extrusion hole 229. An end cover 231 is movably clamped at the top end of the protective sleeve 228. The protective bottom box 227, the protective sleeve 228 and the end cover 231 form a relatively closed space, reducing the probability of the device being contaminated with dust and infected by bacteria.
[0042] The top frame 218 is installed with an auxiliary shielding component 3, and the auxiliary shielding component 3 includes a sliding sleeve 301, a shielding tube 302, a powder box 303, ejection holes 304, a baffle 305, a counterweight strip 306, an annular pressure box 307, air ejection holes 308, an air supply pipe 309, an air pump 310, an alcohol box 311, a rubber top cover 312, a bottom cover 313, a second atomizing nozzle 314, a pin hole 315, a pin 316, a suction cup 317, and a silica gel anti-slip gasket 318;
[0043] The sliding sleeve 301 is slidably installed inside the top frame 218, the shielding tube 302 is slidably installed inside the sliding sleeve 301, the bottom end of the shielding tube 302 is sleeved with the powder box 303, the outer side of the bottom end of the powder box 303 is evenly provided with the ejection holes 304, the bottom end of the ejection hole 304 is hinged with the baffle 305, the bottom end of the baffle 305 is adhered with the counterweight strip 306, the top end of the powder box 303 is movably inlaid with the annular pressure box 307, the bottom surface of the annular pressure box 307 is evenly provided with the air ejection holes 308, the top surface of the annular pressure box 307 is connected to one end of the air supply pipe 309, the other end of the air supply pipe 309 is connected to the air outlet end of the air pump 310, the input end of the air pump 310 is electrically connected to the output end of the external power supply, the air pump 310 is connected to the middle of the side of the top frame 218 far from the water pump 204 by screws to ensure the normal operation of the air pump 310, the bottom surface of the powder box 303 is adhered with the silica gel anti-slip gasket 318, the top end of the shielding tube 302 is movably inlaid with the alcohol box 311, the top end of the alcohol box 311 is adhered with the rubber top cover 312, the bottom end of the alcohol box 311 is connected with the bottom cover 313 by threads, and the middle of the bottom surface of the bottom cover 313 is penetrated and inlaid with the second atomizing nozzle 314 to facilitate the disinfection operation of the shielding tube 302. A pin hole 315 is opened on one side of the top end of the sliding sleeve 301, a pin 316 is slidably installed inside the pin hole 315, and one end of the pin 316 is adhered with the suction cup 317 to facilitate the fixation of the pin 316.
[0044] The working principle and usage process of the present invention: Before use, each component is placed in the protective bottom box 227. Pull the protective sleeve 228 until the top end of the protective sleeve 228 is higher than the top surface of the rubber top cover 312, and install the end cover 231 at the top end of the protective sleeve 228. The device is in a relatively enclosed space composed of the protective bottom box 227, the protective sleeve 228, and the end cover 231 to avoid contamination of the device by external bacteria, dust, etc.;
[0045] When the device needs to be used, open the end cover 231, take out the flexible disinfection water bag 226, and reinstall the end cover 231. The disinfection tube 225 passes through the extrusion hole 229 and is extruded by the deformed protective rubber membrane 230. As described above, Figure 1As shown, the flexible disinfection water bag 226 is filled with disinfectant solution. By squeezing the flexible disinfection water bag 226, the disinfectant solution flows from the disinfection tube 225 into the annular hollow disinfection ring 222 and sprays out from the disinfection spray holes 223. Part of the atomized disinfectant solution is in the relatively enclosed space composed of the protective bottom box 227, the protective sleeve 228 and the end cover 231 for disinfection. After standing for a period of time, it is taken out for use after disinfection is completed. Before use, a quick disinfection operation is carried out, which is more time-saving and labor-saving compared with preparing various utensils and carrying out disinfection operations before cleaning in the prior art, reducing the subsequent preparation time and improving the operation efficiency;
[0046] After the above disinfection is completed, take out the operating component. As described above Figure 2 Pull the shielding tube 302 along the sliding sleeve 301, take out the alcohol box 311 at the top of the shielding tube 302, remove the bottom cover 313, pour the disinfectant solution into the alcohol box 311, install the bottom cover 313 to prevent the disinfectant solution in the alcohol box 311 from leaking out, put the alcohol box 311 back to the top of the shielding tube 302, squeeze the rubber top cover 312, the internal pressure increases, and the disinfectant solution sprays out from the second atomizing nozzle 314. The atomized disinfectant solution sprays out from the shielding tube 302 and diffuses to the outside of the powder box 303 to disinfect the inside of the shielding tube 302 and the silicone anti-slip gasket 318 to prevent contamination of the stoma during cleaning and improve the safety of the operation. Remove the annular pressure box 307 at the top of the powder box 303, fill the powder box 303 with stoma powder, reinstall the annular pressure box 307 on the top of the powder box 303, bond the cleaning cotton ring 209 to the bottom surface of the bonding ring 208, pour warm water into the rinsing box 206, and loosen the positioning screw 220 in the limit block 219 to complete the preparation operation;
[0047] Before cleaning is required, the powder box 303 at the bottom of the shielding tube 302 is sleeved outside the stoma, and the silicone anti-slip gasket 318 contacts the skin of the outer circle of the stoma and makes full contact to prevent sewage and dust from contacting the stoma during cleaning and causing infection. Subsequently, the shielding tube 302 slides in the sliding sleeve 301, and both the fixed cleaning ring 1 and the movable cleaning ring 207 contact the skin. The pin 316 is placed in the pin hole 315, and the suction cup 317 adsorbs the outside of the shielding tube 302. The sliding sleeve 301 and the shielding tube 302 are relatively fixed to prevent the shielding tube 302 from slipping during cleaning and causing gaps in the contact position of the silicone anti-slip gasket 318 to ensure prevention of infection and complete the positioning operation for convenient subsequent operations;
[0048] When cleaning is required, the flexible disinfection water bag 226 is squeezed again, and the annular hollow disinfection ring 222 sprays disinfectant solution onto the skin around the stoma for disinfection, quickly disinfecting the skin. Compared with manually wiping with an alcohol cotton swab, the disinfection efficiency is higher. Then, the disinfection tube 225 in the docking tube 224 is removed to prevent the flexible disinfection water bag 226 from affecting subsequent operations. The water pump 204 is started, and the water pump 204 pumps out the warm water in the flushing box 206 through the water supply pipe 205, enters the annular flushing tube 201 through the water inlet pipe 203, and then sprays out from the first atomizing nozzle 202. The water mist is between the two cleaning cotton rings 209, and the excess water is absorbed by the cleaning cotton rings 209. The excess water will not flow along the skin, and the subsequent manual drying step is omitted, reducing the wanton flow of sewage, preventing infection and saving operation time while improving the cleaning efficiency;
[0049] Then, the driving motor 216 is started. The driving motor 216 drives the movable top ring 213 to rotate through the tooth grooves 214 engaged with the gears 217, and then drives the movable cleaning ring 207 connected to the support rod 211 to rotate. The cleaning cotton rings 209 corresponding to the movable cleaning ring 207 rotate and scrub. Then, one hand holds the sliding sleeve 301 stationary, and the other hand pulls the top frame 218 to move relative to the sliding sleeve 301, pulling the fixed cleaning ring 1 and the movable cleaning ring 207 to move. The cleaning cotton rings 209 at the bottom scrub the skin around the stoma while being squeezed by the compression spring 210. If the skin is not cleaned thoroughly in one wiping during the above movement process, the top frame 218 is rotated around the shielding tube 302, and the fixed cleaning ring 1 and the movable cleaning ring 207 are moved again in a different direction until the cleaning operation is completed. Through the cooperation of the fixed shielding tube 302 and the movement of the fixed cleaning ring 1 and the movable cleaning ring 207, the wiping range is large and the wiping operation is rapid, improving the cleaning efficiency;
[0050] After the warm water wiping and cleaning are completed and the skin is relatively dry, the air pump 310 is started. The air pump 310 sends air into the annular pressure box 307 through the air supply pipe 309, and then evenly sprays it into the powder box 303 through the air spraying holes 308. The air pressure in the powder box 303 increases, pushing open the baffle 305 in the spraying hole 304, and the stoma powder is also sprayed out accordingly. Due to the blocking of the inclined baffle 305, the stoma powder falls on the skin around the stoma. The spraying of the stoma powder is quickly completed. During the above process, the power of the air pump 310 should be controlled to prevent the spraying range of the stoma powder from being too large due to too fast air flow speed, resulting in waste. Compared with the existing operation of manually spraying stoma powder and using a cotton swab to smear it evenly, the operation time and complexity are reduced again, further improving the cleaning efficiency;
[0051] The atomized water of the protection and cleaning component 2 is restricted between the two cleaning cotton rings 209, reducing the infection of the stoma caused by sewage overflow. One of the two cleaning cotton rings 209 only moves, while the other moves and rotates, improving the cleaning effect. Moreover, the shielding tube 302 of the auxiliary shielding component 3 closes the stoma position, further preventing the infection of the stoma and improving the operation safety. The two components cooperate with each other to complete the continuous operations of disinfection, cleaning, and stoma powder spraying. Multiple steps save time, greatly reducing the overall operation time and improving the cleaning efficiency.
[0052] Finally, it should be noted that the above are only preferred examples of the present invention and are not used to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.
Claims
1. A rapid cleaner for stoma skin, comprising a fixed cleaning ring (1), characterized in that: A protective cleaning assembly (2) is installed on the outer side of the fixed cleaning ring (1), and the protective cleaning assembly (2) includes an annular flushing pipe (201). An annular flushing pipe (201) is fixedly sleeved at the bottom end of the outer side of the fixed cleaning ring (1). An active cleaning ring (207) is slidably sleeved on the outer side of the annular flushing pipe (201). Bonding rings (208) are slidably installed inside both the fixed cleaning ring (1) and the active cleaning ring (207). A cleaning cotton ring (209) is connected to the bottom surface of the bonding ring (208) through a magic tape. Extrusion springs (210) are evenly distributed on the top surface of the bonding ring (208). Support rods (211) are evenly distributed on the top surfaces of both the fixed cleaning ring (1) and the active cleaning ring (207). The top ends of the support rods (211) located on the top surface of the fixed cleaning ring (1) are connected to a fixed top ring (212). The top ends of the support rods (211) located on the top surface of the active cleaning ring (207) are connected to a movable top ring (213). Tooth grooves (214) are evenly formed on the edge of the top surface of the movable top ring (213). A motor bracket (215) is installed on one side of the fixed top ring (212). A driving motor (216) is installed inside the motor bracket (215). A gear (217) is installed at the output shaft end of the driving motor (216). The gear (217) meshes with the tooth grooves (214).
2. The rapid cleaner for stoma skin according to claim 1, characterized in that, First atomizing nozzles (202) are evenly distributed on the bottom surface of the annular flushing pipe (201). One end of a water inlet pipe (203) penetrates and is connected to the top surface of one side of the annular flushing pipe (201). The other end of the water inlet pipe (203) is connected to the water outlet end of a water pump (204). The water inlet end of the water pump (204) is connected to a water delivery pipe (205). The water delivery pipe (205) penetrates and is connected to the top end of a flushing box (206).
3. The quick cleaner for stoma skin according to claim 2, characterized in that, A top bracket (218) is rotatably installed inside the fixed top ring (212). A limiting block (219) is welded to one end of the top surface of the top bracket (218). A positioning screw (220) is installed through a screw hole in the middle of the limiting block (219).
4. The rapid cleaner for stoma skin according to claim 1, wherein A support ring (221) is welded to the top surface of the inner side of the fixed cleaning ring (1). An annular hollow disinfection ring (222) is installed on the top surface of the support ring (221). Disinfection spray holes (223) are evenly formed on the inner side of the annular hollow disinfection ring (222). One side of the top surface of the annular hollow disinfection ring (222) penetrates and installs one end of a docking pipe (224). One end of a disinfection pipe (225) is clamped and installed inside the docking pipe (224). The other end of the disinfection pipe (225) is connected to a flexible disinfection water bag (226).
5. The rapid cleaner for stoma skin according to claim 4, characterized in that, A protective bottom box (227) is sleeved on the outer side of the active cleaning ring (207). A protective sleeve (228) is slidably installed inside the protective bottom box (227). An extrusion hole (229) is formed at the bottom end of the protective sleeve (228) corresponding to the disinfection pipe (225). A protective rubber film (230) is bonded inside the extrusion hole (229). An end cover (231) is movably clamped at the top end of the protective sleeve (228).
6. The rapid cleaner for stoma skin according to claim 3, characterized in that, The input ends of the driving motor (216) and the water pump (204) are electrically connected to the output end of an external power supply respectively, and the water pump (204) is connected to one side of the top frame (218) by screws.
7. The rapid cleaner for stoma skin according to claim 3, characterized in that, An auxiliary shielding assembly (3) is installed on the top frame (218), and the auxiliary shielding assembly (3) includes a sliding sleeve (301); A sliding sleeve (301) is slidably installed inside the top frame (218), a shielding tube (302) is slidably installed inside the sliding sleeve (301), a powder box (303) is sleeved at the bottom end of the shielding tube (302), spray holes (304) are evenly formed in the outer side of the bottom end of the powder box (303), a baffle (305) is hinged to the bottom end of the spray hole (304), a counterweight bar (306) is bonded to the bottom end of the baffle (305), an annular pressure box (307) is movably embedded at the top end of the powder box (303), air spray holes (308) are evenly formed in the bottom surface of the annular pressure box (307), one end of an air delivery pipe (309) is connected to the top surface of the annular pressure box (307), the other end of the air delivery pipe (309) is connected to the air outlet end of an air pump (310), and a silica gel anti-slip gasket (318) is bonded to the bottom surface of the powder box (303).
8. The rapid cleaner for stoma skin according to claim 7, characterized in that, An alcohol box (311) is movably embedded at the top end of the shielding tube (302), a rubber top cover (312) is bonded to the top end of the alcohol box (311), a bottom cover (313) is connected to the bottom end of the alcohol box (311) by threads, and a second atomizing nozzle (314) is embedded through the middle of the bottom surface of the bottom cover (313).
9. The rapid cleaner for stoma skin according to claim 7, characterized in that, A pin hole (315) is formed in one side of the top end of the sliding sleeve (301), a pin (316) is slidably installed inside the pin hole (315), and a suction cup (317) is bonded to one end of the pin (316).
10. A rapid cleaner for stoma skin according to claim 7, characterized in that, The input end of the air pump (310) is electrically connected to the output end of an external power supply, and the air pump (310) is connected to the middle of the side of the top frame (218) far away from the water pump (204) by screws.
Citation Information
Patent Citations
Stoma skin cleaner
CN117815478A