Emergency patient debridement and disinfection device
By designing a wound cleaning and disinfection device for emergency patients, the problem of wastewater and waste disposal has been solved, achieving environmental cleanliness and patient safety, and simplifying the wound cleaning operation.
Patent Information
- Application Number
- CN202520148589.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-22
- Publication Date
- 2026-01-27
- Estimated Expiration
- 2035-01-22
AI Technical Summary
In the process of debridement in emergency trauma surgery, it is difficult to collect the rinsing wastewater, which leads to environmental pollution and cross-infection risks, and the waste is difficult to dispose of.
An emergency patient debridement and disinfection device was designed, comprising a bed, a first debridement mechanism, and a second debridement mechanism, for debridement of the patient's legs and arms, respectively. The collection tank is connected to a water tank to collect rinsing wastewater, and the diversion component collects waste. The disinfection mechanism treats the wound by heating and disinfecting with disinfectant.
Effective collection and treatment of rinsing wastewater and wound cleaning waste reduces environmental pollution, improves patient safety, simplifies procedures, and reduces the risk of wound cleaning interference.
Smart Images

Figure CN223831321U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of medical device technology, and in particular to an emergency patient wound cleaning and disinfection device. Background Technology
[0002] In emergency trauma surgery, wound cleaning requires rinsing and disinfection, generating wastewater. If this wastewater isn't collected promptly, it can spill onto the floor and contaminate the emergency room, or remain on the emergency bed, posing a risk of cross-infection to other patients. Especially during debridement, tissues, foreign objects, and other waste are removed; the flow rate of the wastewater may not be sufficient to remove these, creating a persistent hygiene hazard in the emergency room. Utility Model Content
[0003] In view of the shortcomings of the prior art, the technical problem to be solved by this utility model is to provide an emergency patient wound cleaning and disinfection device that is convenient for collecting both wound cleaning waste and rinsing wastewater.
[0004] To solve the above-mentioned technical problems, the present invention provides a wound cleaning and disinfection device for emergency patients, comprising a bed, a first wound cleaning mechanism disposed on one side of the bed, a second wound cleaning mechanism disposed on the other side of the bed, and a disinfection mechanism disposed on the bed; the first wound cleaning mechanism includes a collection tank disposed on the bed and a first support plate detachably disposed at the location of the collection tank for wound cleaning of the patient's leg; the second wound cleaning mechanism includes a second support plate movably disposed on the bed and a flow guiding component communicating with the second support plate for wound cleaning of the patient's arm; both the flow guiding component and the collection tank are connected to a water tank disposed on the bed.
[0005] Using the above structure, a first debridement mechanism is set up for debridement of the patient's leg. A collection tank set on the bed is used to collect irrigation wastewater. The detachable first support plate is used to support the patient's leg and to remove debridement waste that has fallen into the collection tank. A second debridement mechanism is set up for debridement of the patient's arm. The movable second support plate is easy to fold and clean. A guide component connected to the second support plate is used to collect irrigation wastewater. Irrigation wastewater from both debridement mechanisms flows into a connected water tank, which greatly reduces the pollution of the emergency room environment and improves the safety of patients.
[0006] To simplify the mechanism and avoid interference with patient movement, the first debridement mechanism preferably includes symmetrically arranged through holes on the bed. The first support plate is fixed in the middle of the through hole opening along the length of the bed. A pivot pin is provided on the bed at a position corresponding to the first support plate. The pivot pin is connected to one end of the first support plate. A limiting hole is provided at the other end of the first support plate. A positioning hole is provided on the bed at a position corresponding to the limiting hole. A positioning pin passes through the limiting hole from top to bottom and extends into the positioning hole to position the first support plate.
[0007] To prevent the overflow of flushing wastewater, preferably, a first leakage hole is provided on the outer side of the through hole opening on the bed body; a collection tank is connected to the lower end of the through hole opening, and the lower part of the first leakage hole is connected to the collection tank.
[0008] To facilitate the rapid collection of flushing wastewater and the collection of wound cleaning waste that falls into the collection tank, the collection tank is preferably a conical structure that is wider at the top and narrower at the bottom. A filter pad is provided inside the collection tank, and a central through hole is provided in the middle of the filter pad. A first guide pipe is connected to the lower end of the collection tank, and the first guide pipe is connected to a water tank.
[0009] To simplify the structure and facilitate quick positioning and use, preferably, the second debridement mechanism further includes a guide groove fixed to the bed, the second support plate is hinged to the guide groove, a rotating shaft is provided at the lower end of the guide groove, a horizontally extending connecting rod is provided on the rotating shaft, an upwardly protruding boss is provided at the protruding end of the connecting rod, and a limiting groove is provided on the second support plate at the position corresponding to the boss. When the second support plate is flipped to be flush with the guide groove, the connecting rod is rotated so that the boss extends into the limiting groove and supports the second support plate to maintain a horizontal state.
[0010] To facilitate the collection of wound cleaning waste and rinsing wastewater, preferably, a baffle is provided on the edge of the second support plate, and two strip-shaped through holes are symmetrically provided on the second support plate along the width direction of the second support plate. A filter plate is fixed at the lower end of each of the two strip-shaped through holes, and a second leakage hole is provided on the second support plate at the outer position of the opening of each of the two strip-shaped through holes. A flow guiding component is connected to the lower end of the second leakage hole.
[0011] To simplify the installation structure, preferably, the flow guiding assembly includes a liquid-gathering cylinder fixedly connected to the second support plate, the upper end of the liquid-gathering cylinder having an opening that communicates with a second leakage hole; and a second flow guiding pipe connected to the lower end of the liquid-gathering cylinder, the second flow guiding pipe communicating with a water tank.
[0012] To simplify the structure and facilitate heating of the saline solution to reduce patient discomfort, the disinfection mechanism preferably includes a saline tank and a disinfectant tank mounted on the bed. A first water pump is connected to the saline tank, and a first drain pipe is connected to one side of the first water pump. The outlet end of the first drain pipe is connected to a heater fixed on the bed, and the outlet end of the heater is provided with a first outlet pipe. A first throttling valve is connected to the first outlet pipe.
[0013] To simplify the structure, preferably, a second drain pipe is connected to the disinfectant tank, a second water pump is connected to one side of the second drain pipe, the outlet of the second water pump is connected to the second outlet pipe, and a second throttle valve is connected to the second outlet pipe.
[0014] To facilitate turning and easy folding, it is preferable that both the first and second water outlet pipes are threaded hoses, each with a hook, and a hanging ring is provided at the position of the hook on the edge of the bed, with the hook and hanging ring connected together.
[0015] Beneficial effects: This utility model has two debridement mechanisms, which facilitate the collection of debridement waste and rinsing wastewater when debridement of the patient's legs and arms, and also avoid interference. The disinfection mechanism facilitates timely rinsing and disinfection of the wound. The structure is simple and compact and easy to operate. Attached Figure Description
[0016] The accompanying drawings, which are included to provide a further understanding of this application and form part of this application, illustrate exemplary embodiments and are used to explain this application, but do not constitute an undue limitation of this application. In the drawings:
[0017] Figure 1 This is a schematic diagram of the structure of this utility model.
[0018] Figure 2 for Figure 1 Top view.
[0019] Figure 3 This is a schematic diagram of the second support plate.
[0020] Figure 4 This is a diagram showing the usage status of the connecting rod.
[0021] Figure 5 This is a diagram showing the usage state of this utility model.
[0022] The meanings of the labels in the attached diagram are as follows:
[0023] Bed body-1; Liquid collection tank-10; Water tank-100; Filter pad-101; Central through hole-102; First guide pipe-103; Transfer pin-104;
[0024] First support plate-11; Second support plate-12; Through hole-13; First leakage hole-14; Limiting hole-15; Positioning hole-16; Positioning pin-17; Hanging ring-18;
[0025] Baffle-120; Limiting groove-121; Strip-shaped through hole-122; Second leakage hole-123; Filter plate-124;
[0026] Guide groove-2; Rotating shaft-20; Connecting rod-21; Boss-22; Liquid collection cylinder-3; Second guide tube-30;
[0027] Salt water tank - 41; Disinfectant tank - 42; First drain pipe - 43; Second drain pipe - 44;
[0028] First water pump - 51; heater - 52; first outlet pipe - 53; first throttle valve - 54; second water pump - 55; second outlet pipe - 56; second throttle valve - 57; hook - 6. Detailed Implementation
[0029] Depend on Figure 1 , Figure 2 , Figure 3 , Figure 4 and Figure 5 As shown, this utility model includes a bed body 1, a first debridement mechanism disposed on one side of the bed body 1, a second debridement mechanism disposed on the other side of the bed body 1, and a disinfection mechanism disposed on the bed body 1; the first debridement mechanism includes a collection tank 10 disposed on the bed body 1 and a first support plate 11 detachably disposed at the position of the collection tank 10 for debridement of the patient's leg; the second debridement mechanism includes a second support plate 12 movably disposed on the bed body 1 and a flow guiding component communicating with the second support plate 12 for debridement of the patient's arm; both the flow guiding component and the collection tank 10 are communicating with a water tank 100 disposed on the bed body 1.
[0030] Specifically, the first debridement mechanism also includes through holes 13 symmetrically arranged on the bed body 1. The first support plate 11 is fixed in the middle of the opening of the through hole 13 along the length direction of the bed body 1. A pivot pin 104 is provided on the bed body 1 at the position corresponding to the first support plate 11. The pivot pin 104 is connected to one end of the first support plate 11. The other end of the first support plate 11 is provided with a limiting hole 15. A positioning hole 16 is provided on the bed body 1 at the position corresponding to the limiting hole 15. A positioning pin 17 passes through the limiting hole 15 from top to bottom and extends into the positioning hole 16 to position the first support plate 11.
[0031] A first leakage hole 14 is provided on the outer side of the opening of the through hole 13 on the bed body 1; a liquid collection tank 10 is connected to the lower end of the opening of the through hole 13, and the lower part of the first leakage hole 14 is connected to the liquid collection tank 10; the liquid collection tank 10 has a tapered structure that is wider at the top and narrower at the bottom, and a filter pad 101 is provided in the liquid collection tank 10, with a central through hole 102 in the middle of the filter pad 101; a first guide pipe 103 is connected to the lower end of the liquid collection tank 10, and the first guide pipe 103 is connected to the water tank 100.
[0032] The second debridement mechanism also includes a guide groove 2 that is fixed to the bed body 1. The second support plate 12 is hinged to the guide groove 2. A rotating shaft 20 is provided at the lower end of the guide groove 2. A horizontally extending connecting rod 21 is provided on the rotating shaft 20. An upwardly protruding boss 22 is provided at the protruding end of the connecting rod 21. A limiting groove 121 is provided on the second support plate 12 at the position corresponding to the boss 22. When the second support plate 12 is flipped to be flush with the guide groove 2, the connecting rod 21 is rotated so that the boss 22 extends into the limiting groove 121 and supports the second support plate 12 to maintain a horizontal state.
[0033] A baffle 120 is provided on the edge of the second support plate 12. Two strip-shaped through holes 122 are symmetrically provided on the second support plate 12 along the width direction of the second support plate 12. A filter plate 124 is fixedly provided at the lower end of each of the two strip-shaped through holes 122. A second leakage hole 123 is provided on the second support plate 12 at the outer position of the opening of each of the two strip-shaped through holes 122. A flow guiding component is connected to the lower end of the second leakage hole 123.
[0034] The flow guiding assembly includes a liquid-gathering cylinder 3 fixedly connected to the second support plate 12. The upper end of the liquid-gathering cylinder 3 is provided with an opening that is connected to the second leakage hole 123. A second flow guiding pipe 30 is connected to the lower end of the liquid-gathering cylinder 3 and is connected to the water tank 100.
[0035] The disinfection mechanism includes a saline tank 41 and a disinfectant tank 42 mounted on the bed 1. A first water pump 51 is connected to the saline tank 41, and a first drain pipe 43 is connected to one side of the first water pump 51. A heater 52 fixed to the bed 1 is connected to the outlet end of the first drain pipe 43, and a first outlet pipe 53 is provided at the outlet end of the heater 52. A first throttle valve 54 is connected to the first outlet pipe 53. A second drain pipe 44 is connected to the disinfectant tank 42, and a second water pump 55 is connected to one side of the second drain pipe 44. The outlet end of the second water pump 55 is connected to a second outlet pipe 56, and a second throttle valve 57 is connected to the second outlet pipe 56.
[0036] Both the first water outlet pipe 53 and the second water outlet pipe 56 are configured as threaded hoses. Hooks 6 are provided on both water outlet pipes. Hanging rings 18 are provided on the edge of the bed body 1 at the positions corresponding to the hooks 6. The hooks 6 and hanging rings 18 are connected to each other.
[0037] The working principle of this utility model is as follows:
[0038] like Figures 1 to 5 As shown, when not in use, a sheet (not marked) is laid at the positions of the bed body 1 and the first support plate 11. In addition to covering the position of the first support plate 11, it is also convenient for other emergency patients who do not require debridement to receive treatment. Physiological saline is injected into the saline tank 41 and hydrogen peroxide is poured into the disinfectant tank 42 for later use.
[0039] The first leakage hole 14 and the second leakage hole 123 are both arranged in multiple rows with staggered spacing. The arrangement in this embodiment is as follows: Figure 2 , Figure 3 and Figure 5 As shown.
[0040] When an emergency patient requires wound cleaning, such as when only the leg needs cleaning, quickly remove the sheet from the position of the first support plate 11. Once the patient lies down with both legs positioned on the corresponding ends of the first support plate 11, remove the hooks 6 from the hanging rings 18 on the first and second water outlet pipes 53 and 56, according to the location of the affected area. First, turn on the first water pump 51 and heater 52, and open the first throttle valve 54 to draw saline solution from the saline tank 41 and heat it. The warm saline solution flows out through the first drain pipe 43 and first rinses the wound to reduce patient discomfort. After initial rinsing, turn off the first water pump 51 and the first throttle valve 54. Next, turn on the second water pump 55 and the second throttle valve 57 to draw hydrogen peroxide from the disinfectant tank 42. The solution flows out through the second drain pipe 44 to disinfect the patient's wound. Then, the second throttle valve 57 is closed, and the first water pump 51 and the first throttle valve 54 are turned on to rinse off the foam produced by the hydrogen peroxide disinfection with saline solution. After rinsing, the first throttle valve 54 is closed, and the second throttle valve 57 is turned on again to continue disinfecting the wound with hydrogen peroxide. When the foam produced covers the wound again, the second throttle valve 57 is closed and the first throttle valve 54 is turned on again. This process is repeated until the foam produced by the hydrogen peroxide is significantly reduced. Then, the wound is rinsed with saline solution, and the wound can be cleaned. During the cleaning process, saline solution can still be used to rinse off any blood produced during cleaning, and the affected area should be dried with a cotton ball in time.
[0041] During this process, the saline solution used for rinsing flows down the patient's legs and becomes rinsing wastewater. Most of the rinsing wastewater flows into the collection tank 10 through the through hole 13, and then into the water tank 100 through the first guide pipe 103. A small portion of the rinsing wastewater flows out through the connection between the first support plate 11 and the bed 1. Part of this outflowing rinsing wastewater flows into the collection tank 10 through the first leakage hole 14, and the other part remains in the gap between two adjacent first leakage holes 14. Impurities carried in the rinsing wastewater are filtered out at the filter pad 101.
[0042] After the patient's wound cleaning is completed, the hooks 6 on the first water outlet pipe 53 and the second water outlet pipe 56 are connected to the hanging rings 18. The first support plate 11 and the gap between the two adjacent first leakage holes 14 on the bed body 1 are wiped dry. Then, the positioning pin 17 is pulled out from the limiting hole 15 and the positioning hole 16, so that the first support plate 11 rotates upward with the center of the pivot pin 104 as the center and moves away from the opening of the through hole 13. At this time, the upper opening of the collection tank 10 is exposed. Reach into the collection tank 10, grab the central through hole 102 with your fingers and take out the filter pad 101 to clean the filtered debris. After cleaning, put the filter pad 101 back into the collection tank 10, rotate the first support plate 11 downward and move it back. The positioning pin 17 passes through the limiting hole 15 from top to bottom and extends into the positioning hole 16 to position the first support plate 11. Finally, cover the position of the first support plate 11 with a sheet.
[0043] If the patient only needs debridement of the arm, after the patient lies down, quickly flip and lift the second support plate 12 until it is flush with the guide groove 2, then push the connecting rod 21 horizontally. The connected rotating shaft 20 will rotate synchronously, and the boss 22 will extend into the limiting groove 121 and support the second support plate 12 to maintain a horizontal state (e.g. Figure 4 and Figure 5(As shown in the diagram), at this time, move the patient's upper arm into the guide groove 2, and place the patient's forearm in the middle position of the second support plate 12 along the extension direction of the second support plate 12. At this time, according to the position of the affected area, remove the hooks 6 on the first water outlet pipe 53 and the second water outlet pipe 56 from the hanging ring 18. First, turn on the first water pump 51 and the heater 52, and open the first throttle valve 54 to draw out physiological saline from the saline tank 41 and heat it. Use the warm physiological saline to rinse the wound first to reduce the patient's discomfort. After the initial rinsing, turn off the first water pump 51 and the first throttle valve 54. Then, turn on the second water pump 55 and the second throttle valve 57 to draw out hydrogen peroxide from the disinfectant tank 42 to treat the patient. After disinfecting the wound site, close the second throttle valve 57, then turn on the first water pump 51 and the first throttle valve 54. Rinse the wound site with saline solution to remove the foam produced by the hydrogen peroxide disinfection. After rinsing, close the first throttle valve 54, then open the second throttle valve 57, and continue to disinfect the wound site with hydrogen peroxide. When the foam produced covers the wound site again, close the second throttle valve 57 and open the first throttle valve 54 again. Repeat this process until the foam produced by the hydrogen peroxide is significantly reduced. Then rinse the wound site with saline solution. The wound site can then be cleaned. During the cleaning process, saline solution can still be used to rinse away any blood produced during cleaning, and the affected area should be dried with a cotton ball in a timely manner.
[0044] During this process, the saline solution used for rinsing flows down the patient's arm and becomes rinsing wastewater. The baffle 120 prevents the rinsing wastewater from flowing out of the second support plate 12. Most of the rinsing wastewater flows into the collection cylinder 3 through the two strip-shaped through holes 122, and then into the water tank 100 through the second guide pipe 30. A small portion of the rinsing wastewater will remain on the second support plate 12. Part of this retained rinsing wastewater flows into the collection cylinder 3 through the second leakage hole 123, and the other part remains in the gap between two adjacent second leakage holes 123. Most of the impurities carried in the rinsing wastewater are filtered out at the filter plate 124. The waste liquid remaining in the guide groove 2 can also be cleaned to the second leakage hole 123 and flow into the collection cylinder 3.
[0045] After the patient's wound is cleaned, the hooks 6 on the first water outlet pipe 53 and the second water outlet pipe 56 are connected to the hanging ring 18. The second support plate 12 is dried, and then the connecting rod 21 is rotated horizontally to move the boss 22 out of the limiting groove 121. The second support plate 12 is flipped downwards for use. At this time, the strip-shaped through hole 122 is placed vertically, which makes it easy to clean the debris filtered out on the filter plate 124.
[0046] For ease of operation, the first water pump 51, heater 52, first throttle valve 54, second water pump 55, and second throttle valve 57 are all connected to a PLC controller (not shown). The PLC controller is also connected to a control panel (not shown) to facilitate quick switching between components and improve the efficiency of emergency treatment.
[0047] If the patient's legs and arms need to be cleaned at the same time, the corresponding procedures described above can be followed. In this case, since the extension of the second support plate 12 forms an angle with the bed 1, the gap formed at this angle makes it easy for emergency medical staff to move between the patient's legs and arms, which facilitates simultaneous cleaning and reduces the chance of interference during the cleaning operation.
[0048] It should be noted that there is one guide groove 2 and one second support plate 12 on the left and right sides of the bed body 1, and the two second support plates 12 are set in the same way. The difference is that, since there is a connection between the limiting groove 121 and the boss 22, the limiting groove 121 is set as an arc structure, and it is adapted to the arc position of the horizontal rotation of the connecting rod 21 at the corresponding end. Figure 3 Only the structure of the second support plate 12 on the right side is shown in the image. Figure 3 The display position follows the same principle; the limiting groove 121 on the second support plate 12 on the left should be located on the left side, and the arc-shaped protrusion should face the position of the second leakage hole 14, that is, with... Figure 3 The limiting groove 121 in the middle is set in a mirror-symmetrical configuration.
[0049] The number and form of the first leakage hole 14 and the second leakage hole 123 are not unique in this embodiment and should be set according to the specific usage state to achieve the purpose of rapid drainage. In addition, the PLC controller used in this embodiment only involves the application of controlling the components to open and close in sequence, and does not involve program protection. Therefore, the connection between the PLC controller and related components will not be described here.
[0050] This invention is mainly intended for use in cases where the wound is small and bleeding can be controlled. It is not suitable for open wounds or wounds with significant bleeding. For the latter, surgery should be performed as soon as possible while administering saline solution (infusion form) to stop the bleeding and clean the wound.
Claims
1. An emergency patient wound cleaning and disinfection device, characterized in that: The device includes a bed frame (1), a first debridement mechanism disposed on one side of the bed frame (1), a second debridement mechanism disposed on the other side of the bed frame (1), and a disinfection mechanism disposed on the bed frame (1). The first debridement mechanism includes a collection tank (10) disposed on the bed frame (1) and a first support plate (11) detachably disposed on the collection tank (10) for debridement of the patient's leg. The second debridement mechanism includes a second support plate (12) movably disposed on the bed frame (1) and a flow guiding component connected to the second support plate (12) for debridement of the patient's arm. Both the flow guiding component and the collection tank (10) are connected to a water tank (100) disposed on the bed frame (1).
2. The emergency patient wound cleaning and disinfection device as described in claim 1, characterized in that: The first debridement mechanism also includes through holes (13) symmetrically arranged on the bed body (1). The first support plate (11) is fixed in the middle of the opening of the through hole (13) along the length direction of the bed body (1). A pivot pin (104) is provided on the bed body (1) at the position corresponding to the first support plate (11). The pivot pin (104) is connected to one end of the first support plate (11). The other end of the first support plate (11) is provided with a limiting hole (15). A positioning hole (16) is provided on the bed body (1) at the position corresponding to the limiting hole (15). A positioning pin (17) passes through the limiting hole (15) from top to bottom and extends into the positioning hole (16) to position the first support plate (11).
3. The emergency patient wound cleaning and disinfection device as described in claim 2, characterized in that: A first leakage hole (14) is provided on the bed body (1) at the outer position of the opening of the through hole (13); a liquid collection tank (10) is connected to the lower end of the opening of the through hole (13), and the lower part of the first leakage hole (14) is connected to the liquid collection tank (10).
4. The emergency patient wound cleaning and disinfection device as described in claim 3, characterized in that: The liquid collection tank (10) has a tapered structure that is wider at the top and narrower at the bottom. A filter pad (101) is provided inside the liquid collection tank (10), and a central through hole (102) is provided in the middle of the filter pad (101). A first guide pipe (103) is connected to the lower end of the liquid collection tank (10), and the first guide pipe (103) is connected to the water tank (100).
5. The emergency patient wound cleaning and disinfection device as described in claim 2, characterized in that: The second debridement mechanism also includes a guide groove (2) that is fixed on the bed (1). The second support plate (12) is hinged to the guide groove (2). A rotating shaft (20) is provided at the lower end of the guide groove (2). A horizontally extending connecting rod (21) is provided on the rotating shaft (20). An upwardly protruding boss (22) is provided at the protruding end of the connecting rod (21). A limiting groove (121) is provided on the second support plate (12) at the position corresponding to the boss (22). When the second support plate (12) is flipped to be flush with the guide groove (2), the connecting rod (21) is rotated so that the boss (22) extends into the limiting groove (121) and supports the second support plate (12) to maintain a horizontal state.
6. The emergency patient wound cleaning and disinfection device as described in claim 5, characterized in that: A baffle (120) is provided on the edge of the second support plate (12). Two strip-shaped through holes (122) are symmetrically provided on the second support plate (12) along the width direction of the second support plate (12). A filter plate (124) is fixedly provided at the lower end of each of the two strip-shaped through holes (122). A second leakage hole (123) is provided on the second support plate (12) at the outer position of the opening of each of the two strip-shaped through holes (122). A flow guiding component is connected to the lower end of the second leakage hole (123).
7. The emergency patient wound cleaning and disinfection device as described in claim 6, characterized in that: The flow guiding assembly includes a liquid-gathering cylinder (3) fixedly connected to the second support plate (12). The upper end of the liquid-gathering cylinder (3) is provided with an opening that is connected to the second leakage hole (123). The lower end of the liquid-gathering cylinder (3) is connected to a second flow guiding pipe (30) that is connected to the water tank (100).
8. The emergency patient wound cleaning and disinfection device as described in claim 1, characterized in that: The disinfection mechanism includes a saline tank (41) and a disinfectant tank (42) installed on the bed (1). A first water pump (51) is connected to the saline tank (41). A first drain pipe (43) is connected to one side of the first water pump (51). A heater (52) fixed on the bed (1) is connected to the outlet end of the first drain pipe (43). A first outlet pipe (53) is provided at the outlet end of the heater (52). A first throttle valve (54) is connected to the first outlet pipe (53).
9. The emergency patient wound cleaning and disinfection device as described in claim 8, characterized in that: A second drain pipe (44) is connected to the disinfectant tank (42), a second water pump (55) is connected to one side of the second drain pipe (44), the outlet end of the second water pump (55) is connected to the second outlet pipe (56), and a second throttle valve (57) is connected to the second outlet pipe (56).
10. The emergency patient wound cleaning and disinfection device as described in claim 9, characterized in that: Both the first water outlet pipe (53) and the second water outlet pipe (56) are configured as threaded hoses. Hooks (6) are provided on both water outlet pipes. Hanging rings (18) are provided on the edge of the bed body (1) at the position corresponding to the hooks (6). The hooks (6) and hanging rings (18) are connected.