Urine receiving device for urinary surgery nursing
By using a damping shaft and magnet structure to control the opening and closing of the closure plate in a urological nursing urine collection device, and combining it with an electric nozzle for disinfection and scraping, the problem of patient injury and hygiene caused by the automatic rebound of the closure plate is solved, and the stability of the device and the disinfection effect are achieved.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- TIANJIN HAIHE HOSPITAL
- Filing Date
- 2026-02-10
- Publication Date
- 2026-05-12
AI Technical Summary
Existing urinary collection devices for urology surgery are prone to trapping patients during the automatic rebound of the sealing plate, causing injury and embarrassment. At the same time, hygiene conditions are poor and there is a lack of effective disinfection measures.
The opening and closing of the sealing plate is controlled by a damping shaft and a magnet structure, combined with an electric spray nozzle for disinfection and scraping, to ensure the stability of the sealing plate and the disinfection effect.
To prevent the sealing strip from pinching the patient when it automatically rebounds, improve the stability of the sealing strip, achieve effective disinfection of the urine collection device, maintain hygiene, and prevent bacterial growth.
Smart Images

Figure CN122005250A_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the field of urological equipment technology, specifically relating to a urological nursing urine collection device. Background Technology
[0002] Urological nursing is a specialized nursing service focused on patients with diseases of the urinary and male reproductive systems. Its core purpose is to promote patient recovery, prevent complications, and improve patients' disease awareness and quality of life through professional care. In urological clinical nursing, urinary collection devices are crucial auxiliary tools for ensuring patients' quality of life and maintaining hygiene, especially for those with postoperative mobility issues, urinary incontinence, prolonged bed rest, or those unable to urinate independently due to illness.
[0003] A search revealed Chinese patent CN201420778326.2, which discloses a urological nursing device. When the urine collection cup is near the urinary tract, a sealing plate can be placed under the buttocks. Once urine collection is complete, the collection cup is moved back a short distance, and the sealing plate automatically closes the opening of the collection cup under the action of a flexible rotating pin, thus preventing urine leakage onto the sheets. By incorporating a flexible sealing plate on the urine collection cup and an automatic flushing and opening device within the urine collection container, the device solves the problems of urine leakage and inconvenience in handling urine found in previous urological nursing devices.
[0004] However, when the urinary collection cup is close to the urination site, the sealing plate can be placed under the buttocks. Once urination is complete, the cup should be moved back a short distance, and the sealing plate will automatically close the opening under the action of the elastic rotating pin. However, during the automatic rebound of the sealing plate, it often pinches or bumps the patient's urination site, causing not only injury but also potentially embarrassing situations. Furthermore, the lack of sterilization measures for the urinary collection cup leads to a large amount of dirt and bacteria adhering to the inside, resulting in poor hygiene. Summary of the Invention
[0005] The purpose of this invention is to address the deficiencies and shortcomings of existing technologies by providing a urological nursing urine collection device.
[0006] The technical problem solved by this invention is achieved through the following technical solution: A urological nursing urine collection device includes: a base, a flexible tube, and a urine collection cup. The urine collection cup is rotatably connected to a sealing plate via a damping shaft. A pressure strip is fixed to the inner side of the sealing plate and a No. 1 magnet is embedded therein. A moisture-absorbing sponge is attached to the bottom of the base and the sealing plate via Velcro. A frame plate is fixed inside the urine collection cup. An iron sheet is embedded in the top of the frame plate. The frame plate has a groove that mates with the pressure strip. A flexible sponge is placed inside the groove. The damping shaft is linked to a sealing structure. The iron sheet is attracted to the No. 1 magnet, which can improve the stability of the sealing plate after it is closed.
[0007] As a further embodiment of the present invention, the closed structure includes a damping shaft with movable rods fixed at both ends, the movable rods being provided with movable grooves, an iron plate being slidably connected to the top of the inner cavity of the urine collection box, the iron plate being provided with a hollow groove, a closing plate being slidably connected inside the hollow groove, and the top of the closing plate being connected to the top of the hollow groove by a return spring.
[0008] As a further embodiment of the present invention, the closed structure includes a wedge-shaped block at the bottom of the urine collection funnel, and a second magnet is slidably connected to the outer wall of the urine collection funnel along the first groove, and the second magnet is magnetically attracted to the iron plate.
[0009] As a further embodiment of the present invention, an extension rod is fixed to the outside of the second magnet, and a protrusion is fixed to the extension rod, the protrusion penetrating the movable groove.
[0010] As a further embodiment of the present invention, the urine collection bucket is equipped with a disinfection structure, the disinfection structure including a box at the top of the urine collection bucket, the inside of the box storing disinfectant, a groove provided at the top of the inner cavity of the urine collection bucket, an electric nozzle embedded in the groove, and the box and the electric nozzle being connected by a pipeline.
[0011] As a further embodiment of the present invention, the iron plate is linked to a sealing component, the sealing component including a sealing plate slidably connected to the top of the urine collection cup through a second groove, the sealing plate closing the sealing plate when the sealing piece is opened.
[0012] As a further embodiment of the present invention, the enclosed assembly further includes a first rack and a second rack that are slidably disposed on the top of the urine collection funnel via two third slots. A gear is rotatably connected between the first rack and the second rack on the top of the urine collection funnel. The first rack and the second rack mesh with the gear simultaneously. One end of the first rack is fixedly connected to an iron plate.
[0013] As a further embodiment of the present invention, the housing is equipped with a push-button switch, which is connected to two electric nozzles via wires, and a pressure block is fixed to the top of the second magnet.
[0014] As a further embodiment of the present invention, the inside of the pipeline is provided with a scraping structure, the scraping structure includes a groove provided at the top of the pipeline, a scraper is slidably connected inside the pipeline, the scraper passes through a first liquid passage groove, a pusher is fixed at the top of the scraper, the pusher passes through the groove to the outside of the pipeline, and a metal sheet with creases and capable of being stretched and unfolded is provided inside the groove.
[0015] As a further embodiment of the present invention, the scraping structure also includes a collection box inserted into the bottom of the pipeline, a baffle fixed inside the pipeline and on the left side of the collection box, the baffle having a second liquid passage groove through it, and a rod fixed to the baffle.
[0016] The advantages and beneficial effects of this invention are as follows: 1. When the urinary collection cup is close to the urination site, manually open the sealing plate. Then, rotate the sealing plate to open as shown in the figure. Place the sealing plate under the buttocks. It should be noted that in the initial state, when not collecting urine, the bottom of the sealing plate is in contact with the bottom of the urinary collection cup, thus preventing the flow of urine. This is to prevent residual urine in the flexible tube from flowing back into the urinary collection cup after collection. When the sealing plate is closed, the pressure strip on the sealing plate enters the slot of the frame plate. The pressure strip then squeezes the flexible sponge in the slot, thereby sealing the connection between the sealing plate and the urinary collection cup through the flexible sponge. This helps prevent the pungent smell of urine from leaking out of the urinary collection cup when not collecting urine. When the sealing plate is opened, it will rotate with the damping shaft. Since this design uses a damping shaft instead of an elastic rotating pin, manual reset is required after collecting urine instead of automatic rebound. This solves the problem that the sealing plate often pinches or hits the patient's urination site during automatic rebound, causing not only injury to the patient but also embarrassment.
[0017] 2. After each urine collection, the sealing plate closes, which activates the electric nozzle for disinfection. Specifically, the closing of the sealing plate causes the damping shaft to rotate in the opposite direction. Then, the second magnet moves the pressure block in the opposite direction to press the switch, thereby activating the electric nozzle. The activation time is set to 30 seconds or other times. Then, the disinfectant inside the box enters the electric nozzle and is atomized and sprayed out, thus disinfecting the urine collection container and preventing the adhesion of a large amount of dirt and the growth of a large number of bacteria.
[0018] 3. Due to long-term use, impurities may adhere to the inner wall of the pipeline, affecting the flow of disinfectant or contaminating subsequent disinfectant. In this case, manually move the scraper along the inner wall of the pipeline using a push plate. This causes the scraper to push the impurities towards the baffle. As the pusher moves, the metal plates connected to it are compressed and stretched, preventing the disinfectant from flowing out of the pipeline. As the tube plate moves, the insert rod will be inserted into the first liquid passage groove on the scraper, thus sealing the scraper. Then, open the electric valve at the connection between the pipeline and the tank. At this time, some of the liquid released from the tank will rush towards the scraper. Immediately afterward, close the electric valve. When the liquid rushes towards the scraper, it washes the impurities down and they fall into the collection box. Then, remove the collection box and pour out the liquid and impurities, thus completing the pipeline cleaning operation. Attached Figure Description
[0019] Figure 1 This is an external view of the urine collection device proposed in this invention; Figure 2 This is a schematic diagram of the structure of the urine collection funnel after the sealing plate of the present invention is opened; Figure 3 The present invention proposes Figure 2 Schematic diagram of the internal structure of the urine collection funnel; Figure 4 This is a schematic diagram of the top structure of the urine collection funnel proposed in this invention; Figure 5 The present invention proposes Figure 4 A schematic diagram of the structure obscured by the sealing plate; Figure 6 The present invention proposes Figure 3 Local structural separation diagram; Figure 7 This is a side view of the iron plate and the enclosing plate proposed in this invention; Figure 8 This is a schematic diagram of the pipeline structure proposed in this invention; Figure 9 This is an enlarged view of point A proposed in this invention; Figure 10 The present invention proposes Figure 8 Schematic diagram of partial cross-section structure; Figure 11 This is an enlarged view of point B proposed in this invention; Figure 12 This is a schematic diagram of the scraper, baffle, and collection box structure proposed in this invention; Figure 13 for Figure 12 A schematic diagram of the structure after the middle insertion rod is inserted into the No. 1 liquid passage tank.
[0020] In the diagram: 1. Base; 2. Flexible tube; 3. Urine collection cup; 4. Damping pivot; 5. Sealing plate; 6. Pressure strip; 7. Magnet No. 1; 8. Absorbent sponge; 9. Frame plate; 10. Slot; 11. Iron sheet; 12. Movable rod; 13. Movable groove; 14. Iron plate; 15. Hollow groove; 16. Sealing plate; 17. Return spring; 18. Wedge block; 19. Slot No. 1; 20. Magnet No. 2; 21. Extension rod; 22. Protrusion. 23. Box body; 24. Groove; 25. Electric nozzle; 26. Pipeline; 27. Second groove; 28. Sealing plate; 29. Third groove; 30. First rack; 31. Second rack; 32. Gear; 34. Switch; 35. Pressure block; 36. Groove opening; 37. Scraper; 38. First liquid passage groove; 39. Push plate; 40. Metal sheet; 41. Collection box; 42. Baffle; 43. Second liquid passage groove; 44. Insert rod. Detailed Implementation
[0021] The present invention will be further described in detail below through specific embodiments. The following embodiments are merely descriptive and not limiting, and should not be used to limit the scope of protection of the present invention.
[0022] A urological nursing urine collection device includes: a base 1, a flexible tube 2, and a urine collection cup 3. The urine collection cup 3 is rotatably connected to a sealing plate 5 via a damping shaft 4. A pressure strip 6 is fixed to the inner side of the sealing plate 5 and a magnet 7 is embedded therein. A moisture-absorbing sponge 8 is attached to the bottom of the urine collection cup 3 and the sealing plate 5 via Velcro to prevent urine from accidentally leaking out from the connection between the urine collection cup 3 and the sealing plate 5 during urine collection. A frame plate 9 is fixed inside the urine collection cup 3. An iron plate 11 is embedded in the top of the frame plate 9. The frame plate 9 has a groove 10 that mates with the pressure strip 6. A flexible sponge is placed inside the groove 10. The damping shaft 4 is linked to a sealing structure. When the urine collection cup 3 is close to the urinary tract, the sealing plate 5 is manually opened, and then the sealing plate 5 rotates to open as shown in the image. Figure 2 As shown, the sealing plate 5 is then placed under the buttocks of the human body. It should be noted that in the initial state, that is, when not collecting urine, the bottom of the sealing plate 16 is in contact with the bottom of the urine collection cup 3, thereby preventing the flow of urine. The purpose is to prevent the urine remaining in the flexible tube 2 after collecting urine from returning to the inside of the urine collection cup 3. At the same time, when the sealing plate 5 is closed, the pressure strip 6 on the sealing plate 5 enters the slot 10 of the frame plate 9. Then the pressure strip 6 squeezes the flexible sponge in the slot 10, thereby sealing the connection between the sealing plate 5 and the urine collection cup 3 through the flexible sponge. This helps to prevent the pungent urine smell from leaking out of the urine collection cup 3 when not collecting urine. At the same time, the iron plate 11 is attracted to the first magnet 7, which can improve the stability of the sealing plate 5 after it is closed.
[0023] Furthermore, the closed structure includes a damping shaft 4 with movable rods 12 fixed at both ends. The movable rods 12 are provided with movable grooves 13. An iron plate 14 is slidably connected to the top of the inner cavity of the urine collection funnel 3. The iron plate 14 is provided with a hollow groove 15. A closing plate 16 is slidably connected inside the hollow groove 15. The top of the closing plate 16 is connected to the top of the hollow groove 15 via a return spring 17. The closed structure includes a wedge-shaped block 18 at the bottom of the urine collection funnel 3. A second magnet 20 is slidably connected to the outer wall of the urine collection funnel 3 along a first groove 19. The second magnet 20 magnetically engages with the iron plate 14. An extension rod 21 is fixed to the outside of the second magnet 20. A protrusion 22 is fixed to the extension rod 21, and the protrusion 22 penetrates the movable groove 13, providing damping. When the damping shaft 4 rotates, it drives the movable rod 12 to rotate. Then, the movable groove 13 on the movable rod 12 moves outside the protrusion 22, and then moves the second magnet 20 towards the sealing plate 5 through the extension rod 21. Since the second magnet 20 and the two sides of the iron plate 14 are strongly magnetically attracted, the movement of the second magnet 20 moves the iron plate 14. When the iron plate 14 moves, the sealing plate 16 at its bottom moves along the wedge block 18. Then, as the iron plate 14 moves, the sealing plate 16 rises in the hollow groove 15 and compresses the return spring 17. In summary, the urine flow path in the urine collection cup 3 is opened by the force of the damping shaft 4 rotating when the sealing plate 5 opens, so as to realize the subsequent urine collection. After urine collection, the sealing plate 16 descends and automatically closes the urine flow path.
[0024] Furthermore, the urine collection cup 3 is equipped with a disinfection structure, which includes a box 23 at the top of the urine collection cup 3. The box 23 stores disinfectant inside. A groove 24 is provided at the top of the inner cavity of the urine collection cup 3. An electric nozzle 25 is embedded inside the groove 24. The box 23 and the electric nozzle 25 are connected through a pipe 26. The iron plate 14 is linked to a sealing assembly. The sealing assembly includes a sealing plate 28 that is slidably connected to the top of the urine collection cup 3 through a second groove 27. The sealing plate 28 closes when the sealing plate 5 is opened.
[0025] In addition, the enclosed assembly also includes a first rack 30 and a second rack 31 that are slidably disposed on the top of the urine collection bucket 3 via two third slots 29. A gear 32 is rotatably connected between the first rack 30 and the second rack 31 at the top of the urine collection bucket 3. The first rack 30 and the second rack 31 mesh with the gear 32 simultaneously. One end of the first rack 30 is fixedly connected to the iron plate 14. A push-button switch 34 is installed on the housing 23. The switch 34 is connected to the electric nozzle 25 via a wire. A pressure block 35 is fixed to the top of the second magnet 20.
[0026] It can be concluded that the sealing plate 28 is open when not collecting urine. Since the sealing plate 28 is fixedly connected to the second rack 31, when collecting urine, the movement of the aforementioned iron plate 14 will move the first rack 30 forward, and then move the second rack 31 backward through the gear 32. The backward movement of the second rack 31 will move the sealing plate 28 backward, closing the groove 24 and protecting the electric nozzle 25. In summary, this prevents urine from affecting the electric nozzle 25 when collecting urine, thus protecting the electric nozzle 25. After each urine collection, the closing of the sealing plate 5 will activate the electric nozzle 25 for disinfection. Specifically, the closing of the sealing plate 5 causes the damping shaft 4 to rotate in the direction of rotation. Then, the second magnet 20 moves the pressure block 35 in the opposite direction to press the switch 34, thereby activating the electric nozzle 25. The activation time is set to 30 seconds or other times. Then, the disinfectant in the box 23 enters the interior of the electric nozzle 25 and is atomized and sprayed out, thereby disinfecting the urine collection container 3 and preventing the adhesion of a large amount of dirt and the growth of a large number of bacteria.
[0027] Furthermore, the pipe 26 is internally equipped with a scraping structure, which includes a slot 36 at the top of the pipe 26, a scraper 37 slidably connected inside the pipe 26, the scraper 37 passing through a first liquid passage 38, a pusher 39 fixed to the top of the scraper 37, and the pusher 39 passing through the slot 36 to the outside of the pipe 26. The slot 36 contains a creased, stretchable, and expandable metal sheet 40. The scraping structure also includes a collection box 41 inserted into the bottom of the pipe 26. A baffle 42 is fixed inside the pipe 26 and to the left of the collection box 41. The baffle 42 passes through a second liquid passage 43 and is fixed with a rod 44. Due to long-term use, impurities may adhere to the inner wall of the pipe 26, affecting the flow of disinfectant. If the contaminant contaminates the disinfectant solution that subsequently passes through, the scraper 37 is manually moved along the inner wall of the pipe 26 by the pusher plate 39. This causes the scraper 37 to push the impurities toward the baffle 42. As the pusher 39 moves, the metal sheet 40 connected to it is compressed and stretched. The metal sheet 40 also prevents the disinfectant solution passing through the pipe 26 from flowing out. As the scraper 37 moves, the insert rod 44 is inserted into the first liquid passage groove on the scraper 37, thus sealing the scraper 37. Then, the electric valve at the connection between the pipe 26 and the box 23 is opened. At this time, a portion of the liquid released from the box 23 rushes toward the scraper 37. Then, the electric valve is closed. When the liquid rushes toward the scraper 37, it washes the impurities down and they fall into the collection box 41. After that, the collection box 41 is pulled out and the liquid and impurities that entered are poured out.
[0028] Working principle: When the urinal cassette 3 is close to the urination site, manually open the sealing plate 5, and then rotate the sealing plate 5 to open it as shown. Figure 2As shown, the sealing plate 5 is then placed under the buttocks of the human body. It should be noted that in the initial state, that is, when not collecting urine, the bottom of the sealing plate 16 is in contact with the bottom of the urine collection cup 3, thereby preventing the flow of urine. The purpose is to prevent the urine remaining in the flexible tube 2 after collecting urine from returning to the inside of the urine collection cup 3. At the same time, when the sealing sheet 5 is closed, the pressure strip 6 on the sealing sheet 5 enters the slot 10 of the frame plate 9. Then the pressure strip 6 squeezes the flexible sponge in the slot 10, and then seals the connection between the sealing sheet 5 and the urine collection cup 3 through the flexible sponge, which helps to prevent the pungent urine smell of the urine collection cup 3 from leaking out when not collecting urine. When the closure 5 is opened, it will cause the damping shaft 4 to rotate. Since the damping shaft 4 replaces the elastic rotating pin in this case, manual reset is required after urine collection instead of automatic rebound. This solves the problem that the closure 5 often pinches or hits the patient's urination site during automatic rebound, which not only causes some harm to the patient but also easily leads to embarrassing problems. When the damping shaft 4 rotates, it drives the movable rod 12 to rotate. Then, the movable groove 13 on the movable rod 12 moves outside the protrusion 22, and then moves the second magnet 20 towards the sealing plate 5 through the extension rod 21. Since the second magnet 20 and the two sides of the iron plate 14 are strongly magnetically attracted, the movement of the second magnet 20 drives the iron plate 14 to move. When the iron plate 14 moves, the sealing plate 16 at its bottom moves along the wedge block 18. Then, as the iron plate 14 moves, the sealing plate 16 rises in the hollow groove 15 and compresses the return spring 17. In summary, the urine flow path in the urine collection box 3 is opened by the force of the damping shaft 4 rotating when the sealing plate 5 opens, so as to realize the subsequent urine collection. After urine collection, the sealing plate 16 descends and automatically closes the urine flow path. When not collecting urine, the sealing plate 28 is open. Since the sealing plate 28 is fixedly connected to the second rack 31, when collecting urine, the movement of the aforementioned iron plate 14 will move the first rack 30 forward, and then move the second rack 31 backward through the gear 32. The backward movement of the second rack 31 will move the sealing plate 28 backward, closing the groove 24 and protecting the electric nozzle 25. In summary, this prevents urine from affecting the electric nozzle 25 when collecting urine, thus protecting the electric nozzle 25. Additionally, please refer to Figure 4 , 5 On the left side of the iron plate 14, there is another set of electric nozzles 25, rack 30, rack 31, and gear 32 with the same structure. Only one set of structures is shown in the figure. The two sets of structures are symmetrically arranged through the iron plate 14 and the sealing plate 16, so that the simultaneous disinfection of both sides of the inner cavity of the urinal 3 can be achieved in the future.
[0029] After each urine collection, the closing of the sealing plate 5 will activate the electric nozzle 25 for disinfection. Specifically, the closing of the sealing plate 5 causes the damping shaft 4 to rotate in the direction of rotation. Then, the second magnet 20 moves the pressure block 35 in the opposite direction to press the switch 34, thereby activating the electric nozzle 25. The activation time is set to 30 seconds or other times. Then, the disinfectant in the box 23 enters the interior of the electric nozzle 25 and is atomized and sprayed out, thereby disinfecting the urine collection box 3 and preventing the adhesion of a large amount of dirt and the growth of a large number of bacteria. Because impurities may adhere to the inner wall of pipe 26 after long-term use, affecting the flow of disinfectant or contaminating the disinfectant that passes through it, the scraper 37 can be manually moved along the inner wall of pipe 26 by push plate 39. This causes scraper 37 to push the impurities toward baffle 42. When push plate 39 moves, it causes the metal sheet 40 connected to it to be compressed and stretched. The metal sheet 40 can also prevent the disinfectant passing through pipe 26 from flowing out. As the tube sheet 37 moves, the insertion rod 44 is inserted into the first liquid passage groove on the scraper 37, thereby sealing the scraper 37. Then, the electric valve at the connection between the pipe 26 and the tank 23 is opened. At this time, a portion of the liquid released from the tank 23 rushes towards the scraper 37. Then, the electric valve is closed. When the liquid rushes towards the scraper 37, it washes away the impurities, which then fall into the collection box 41. After that, the collection box 41 is pulled out and the liquid and impurities that entered are poured out, thereby achieving the cleaning operation of the pipe 26.
[0030] Although embodiments and drawings of the present invention have been disclosed for illustrative purposes, those skilled in the art will understand that various substitutions, variations and modifications are possible without departing from the spirit and scope of the present invention and the appended claims. Therefore, the scope of the present invention is not limited to the contents disclosed in the embodiments and drawings.
Claims
1. A urological nursing urine collection device, comprising: The base (1), flexible tube (2), and urine collection cup (3) are rotatably connected to a sealing plate (5) via a damping shaft (4). The sealing plate (5) is characterized by having a pressure strip (6) fixed on its inner side and a magnet (7) embedded therein. The base (1) and the bottom of the sealing plate (5) are provided with a moisture-absorbing sponge (8) via Velcro. The inside of the urine collection cup (3) is fixed with a frame plate (9). The top of the frame plate (9) is embedded with an iron sheet (11). The frame plate (9) is provided with a slot (10) that cooperates with the pressure strip (6). The inside of the slot (10) is provided with a flexible sponge. The damping shaft (4) is linked to a sealing structure.
2. The urological nursing urine collection device according to claim 1, characterized in that, The closed structure includes a damping shaft (4) with movable rods (12) fixed at both ends. The movable rods (12) are provided with movable grooves (13). An iron plate (14) is slidably connected to the top of the inner cavity of the urine collection box (3). The iron plate (14) is provided with a hollow groove (15). A sealing plate (16) is slidably connected inside the hollow groove (15). The top of the sealing plate (16) is connected to the top of the hollow groove (15) through a return spring (17).
3. A urological nursing urine collection device according to claim 1, characterized in that, The closed structure includes a wedge-shaped block (18) at the bottom of the urine collection bucket (3), and a second magnet (20) is slidably connected to the outer wall of the urine collection bucket (3) along the first groove (19). The second magnet (20) is magnetically attracted to the iron plate (14).
4. A urological nursing urine collection device according to claim 3, characterized in that, An extension rod (21) is fixed to the outside of the second magnet (20), and a protrusion (22) is fixed to the extension rod (21), the protrusion (22) passing through the movable groove (13).
5. A urological nursing urine collection device according to claim 1, characterized in that, The urine collection bucket (3) is equipped with a disinfection structure, which includes a box (23) at the top of the urine collection bucket (3). The box (23) contains disinfectant. A groove (24) is provided at the top of the inner cavity of the urine collection bucket (3). An electric nozzle (25) is embedded in the groove (24). The box (23) and the electric nozzle (25) are connected by a pipe (26).
6. A urological nursing urine collection device according to claim 2, characterized in that, The iron plate (14) is linked to a sealing component, which includes a sealing plate (28) that is slidably connected to the top of the urine collection cup (3) through a second groove (27). The sealing plate (28) closes when the sealing piece (5) is opened.
7. A urological nursing urine collection device according to claim 6, characterized in that, The enclosed assembly also includes a first rack (30) and a second rack (31) slidably disposed on the top of the urine collection bucket (3) through two third grooves (29). A gear (32) is rotatably connected between the first rack (30) and the second rack (31) on the top of the urine collection bucket (3). The first rack (30) and the second rack (31) mesh with the gear (32) at the same time. One end of the first rack (30) is fixedly connected to the iron plate (14).
8. A urological nursing urine collection device according to claim 5, characterized in that, The housing (23) is equipped with a push-button switch (34), which is connected to the electric nozzle (25) via a wire. A pressure block (35) is fixed to the top of the second magnet (20).
9. A urological nursing urine collection device according to claim 5, characterized in that, The inside of the pipe (26) is provided with a scraping structure, the scraping structure includes a groove (36) provided at the top of the pipe (26), a scraper (37) is slidably connected inside the pipe (26), the scraper (37) passes through a first liquid passage groove (38), a pusher (39) is fixed at the top of the scraper (37), the pusher (39) passes through the groove (36) and comes to the outside of the pipe (26), and a metal sheet (40) with creases and can be stretched and unfolded is provided inside the groove (36).
10. A urological nursing urine collection device according to claim 9, characterized in that, The scraping structure also includes a collection box (41) inserted into the bottom of the pipe (26). A baffle (42) is fixed inside the pipe (26) and on the left side of the collection box (41). The baffle (42) has a second liquid channel (43) through it and a rod (44) is fixed to the baffle (42).