Disinfection device for burn wound repair in burn and plastic surgery

By designing a disinfection device for burn wound repair in burn and plastic surgery, which uses a flipping seat and spray ring to support the patient's limbs, effective disinfection and rinsing and automatic drug immersion and wrapping are achieved. This solves the problems of patient limb swaying and resource waste, and improves the efficiency of rescue at fire scenes.

CN120899471AInactive Publication Date: 2025-11-07THE FIRST PEOPLES HOSPITAL OF NANTONG
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Patent Information

Application Number
CN202511450303.8
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-10-11
Publication Date
2025-11-07
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

When providing emergency treatment to patients with burns to their limbs at a fire scene, medical staff often struggle to stabilize the patient's limbs, causing them to sway during treatment, increasing the patient's pain, affecting the treatment's effectiveness, and making it difficult to accurately control the amount of gauze and bandages used, resulting in a waste of medical resources and subsequent inability to provide effective rescue to other injured individuals.

Method used

A disinfection device for burn wound repair in burn and plastic surgery was designed, including a burn first aid kit. The device uses a flip-up seat and a soft pad to form a V-shaped support for the limb, and combines a spray ring and a nozzle for rinsing. It automatically soaks gauze in medicine and wraps bandages, achieving effective support and simultaneous cleaning for the patient.

Benefits of technology

It effectively supports the patient's limbs, prevents shaking, saves on the amount of gauze and bandages used, improves rescue efficiency, reduces waste of medical resources, and ensures that subsequent injured people receive timely rescue.

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Abstract

The invention relates to the technical field of burn first-aid cases, in particular to a disinfection device for burn wound repair in the burn and plastic surgery department, the disinfection device comprises a burn first-aid case, the burn first-aid case comprises a shell and a soft collection pool, the two sides of the upper end of the shell are rotatably connected with turnover seats, and an iodophor storage box is placed on the rear portion of the inner right side of the shell; the middle of the upper end of the overturning base is rotationally connected with a soft cushion base through a hinge, and the upper portions of the two ends of the soft collecting pool are fixedly connected to the middle of the inner upper end of the overturning base. By arranging the turnover base capable of being opened and arranging the soft cushion base capable of being turned over at the upper end of the turnover base, a V-shaped support is formed, in the flushing process, the upper limbs or the lower limbs of a wounded person can be effectively supported, in the flushing process, gauze is subjected to medicine soaking treatment, and therefore the flushing efficiency is improved. The gauze soaked with the medicine can just be applied to the burn part of the patient, the rescue efficiency is improved, and the using amount of the gauze and the liquid medicine is reduced.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of burn first-aid kit, in particular to a disinfection device for burn wound repair in burn plastic surgery. BACKGROUND

[0002] When a large area of fire occurs in a region, medical staff in the burn department needs to quickly rush to the fire scene to perform timely and effective burn emergency treatment on the patients with minor burns after receiving the rescue task by carrying the burn first-aid kit. Since in the emergency situation of fire outbreak, people will instinctively respond through body movements, such as pushing away the burning object and running, etc. When fighting the flames, the flames may spread to the arms due to air flow disturbance, resulting in large area burns of the upper limbs. At the same time, when escaping from the fire scene, the legs need to be constantly moved, and the contact opportunity with the hot ground or burning objects is increased, such as scalding ground, burning obstacles, etc., thereby causing burns of the lower limbs. Therefore, when facing some patients with minor burns, the limbs of the patients often need to be treated in an emergency.

[0003] However, when facing patients with burns of the limbs, it is difficult for medical staff to stabilize the limbs of the patients, so that the limbs of the patients are easy to sway during the treatment process, not only increasing the pain of the patients, but also affecting the treatment effect. After cleaning the burn position, the medical staff needs to cover the burn position of the patient with the gauze soaked with medicine, and then fix the gauze with the bandage. However, when facing a large number of patients, it is difficult for the medical staff to accurately control the amount of gauze and bandage, not only causing waste of medical resources, but also causing the subsequent patients to be unable to receive effective rescue, thereby affecting the rescue task. SUMMARY

[0004] In view of the deficiencies of the prior art, the present application provides a disinfection device for burn wound repair in burn plastic surgery to solve the problems in the background art.

[0005] In order to achieve the above object, the present application is realized by the following technical scheme: a disinfection device for burn wound repair in burn plastic surgery, comprising a burn first-aid kit, the burn first-aid kit comprises a shell and a soft collecting pool, the upper end of the shell is rotatably connected with a turnover seat on both sides, the right rear part of the inner side of the shell is placed with an iodophor storage box, the upper end of the turnover seat is rotatably connected with a soft pad seat through a hinge in the middle, the upper end of both sides of the soft collecting pool is fixedly connected with the inner upper end of the turnover seat, the left front part of the inner side of the shell is placed with a physiological saline storage box, the inner bottom wall of the physiological saline storage box is placed with a water pump, the upper end of the water pump is fixedly connected with a catheter one through a water outlet, the right end of the catheter one is communicated with a driving water chamber one, the upper end of the driving water chamber one is communicated with a catheter two, the right end of the catheter two is communicated with a venturi tube, the upper end of the venturi tube is communicated with a catheter three, the right end of the catheter three is communicated with the inside of the iodophor storage box, the rear end of the venturi tube is communicated with a catheter four, the upper end of the catheter four is communicated with a catheter torsional spring collecting disc, the middle part of the catheter torsional spring collecting disc is communicated with a catheter five, the upper end of the catheter five is communicated with a spray head.

[0006] Preferably, the upper end of the catheter two is communicated with a spray ring, the lower end of the spray ring is fixedly connected with the upper end of the soft collecting pool, the left rear part of the inner side of the shell is placed with a sewage storage box, the lower end opening of the soft collecting pool is fixedly connected with a sewage discharge pipe, the lower end of the sewage discharge pipe is communicated with the inside of the sewage storage box, the lower end of the catheter torsional spring collecting disc is rotatably connected with the middle part of the inner bottom wall of the left turnover seat.

[0007] Preferably, the lower end of the shell is fixedly connected with a mobile base, the left side of the inner side of the mobile base is fixedly connected with a storage battery, the storage battery is electrically connected with the water pump through a wire, the right side of the inner side of the mobile base is slidably connected with a solid medicine storage box, the left side of the shell is rotatably connected with a door plate one through a hinge, the upper right side of the rear end of the shell is rotatably connected with a door plate two through a hinge, the lower right side of the shell is rotatably connected with a door plate three through a hinge, the middle part of the front end of the left turnover seat is fixedly connected with a protective cover, the spray head is arranged in the inside of the protective cover.

[0008] Preferably, the lower end of the shell is fixedly connected with a mobile base, the left side of the inner side of the mobile base is fixedly connected with a storage battery, the storage battery is electrically connected with the water pump through a wire, the right side of the inner side of the mobile base is slidably connected with a solid medicine storage box, the left side of the shell is rotatably connected with a door plate one through a hinge, the upper right side of the rear end of the shell is rotatably connected with a door plate two through a hinge, the lower right side of the shell is rotatably connected with a door plate three through a hinge, the middle part of the front end of the left turnover seat is fixedly connected with a protective cover, the spray head is arranged in the inside of the protective cover.

[0009] Preferably, the outer periphery of the water wheel two is rotationally connected in the inside of the driving water chamber two, the left end of the driving water chamber two is fixedly connected to the front lower end of the right side of the middle partition of the shell, and the right end of the driving water chamber one is fixedly connected to the front lower end of the left side of the middle partition of the shell.

[0010] Preferably, the right end of the driving shaft is fixedly connected with a belt pulley one, the belt pulley one is connected with a belt pulley two and a belt pulley three through a transmission belt, the middle part of the belt pulley two is fixedly connected with a reciprocating screw rod, and the outer periphery of the reciprocating screw rod is threadedly connected with a driving seat.

[0011] Preferably, the right end of the reciprocating screw rod is rotationally connected to the front upper end of the right side in the shell, the middle part of the spraying pipe is fixedly connected to the outer periphery of the driving seat, and the upper end of the driving seat is slidingly connected to the front upper side of the right end of the inner top wall of the shell.

[0012] Preferably, the middle part of the belt pulley three is fixedly connected with a worm, the worm is meshingly connected with a worm wheel, the upper end of the worm wheel is fixedly connected with a gear one, the middle part of the gear one is fixedly connected with a spline shaft one, the spline shaft one is sleeved with a bandage winding seat at the upper end, the gear one is meshingly connected with a gear two, the middle part of the gear two is fixedly connected with a spline shaft two, the spline shaft two is sleeved with a bandage winding column at the upper end, and the middle part of the spline shaft two is rotationally connected with a bandage drawer.

[0013] Preferably, the bandage winding seat is arranged at the inner upper right rear end of the shell, and the outer periphery of the bandage drawer is slidingly connected in the opening of the inner upper right rear end of the shell.

[0014] Preferably, the upper end of the gear two is rotationally connected to the middle part of the lower end of the bandage drawer, and the lower end of the bandage winding column is rotationally connected to the middle part of the upper end of the bandage drawer.

[0015] The application provides a disinfection device for burn wound repair in burn plastic surgery. The application has the following beneficial effects:

[0016] The application realizes that the soft collecting pool can be cleaned synchronously during the flushing process, and the soft collecting pool does not need to be cleaned by medical staff after treating one wounded person, which is beneficial to improve the efficiency of first aid.

[0017] The application realizes that the degree and area of the burn of the wounded person can be reflected according to the flushing condition of the patient by the medical staff, and the gauze soaked with medicine is just enough for the patient to apply, which not only improves the efficiency of rescue, but also saves the amount of gauze and liquid medicine.

[0018] The application realizes that the degree and area of the burn of the wounded person can be reflected according to the flushing condition of the patient by the medical staff, and the gauze soaked with medicine is just enough for the patient to apply, which not only improves the efficiency of rescue, but also saves the amount of gauze and liquid medicine. BRIEF DESCRIPTION OF DRAWINGS

[0019] Figure 1 It is a front view perspective schematic diagram of a half-expanded state of the application; Figure 2 It is a left view perspective schematic diagram of a fully expanded state of the application; Figure 3 It is a right view perspective schematic diagram of a fully expanded state of the application; Figure 4 It is a front view perspective schematic diagram of a half-expanded state of the application; Figure 5 It is a front view perspective schematic diagram of a half-expanded state of the application; Figure 6 It is a front view perspective schematic diagram of a half-expanded state of the application; Figure 7 It is a front view perspective schematic diagram of a half-expanded state of the application; Figure 8 It is a rear view perspective schematic diagram of a half-expanded state of the application; Figure 9 It is a rear view perspective schematic diagram of a half-expanded state of the application;

[0020] 1, burn first-aid kit; 101, mobile base; 102, battery; 103, solid medicine storage box; 104, shell; 105, turnover seat; 106, soft cushion seat; 107, protective cover; 108, physiological saline storage box; 109, water pump; 1010, conduit one; 1011, drive water chamber one; 1012, conduit two; 1013, spraying ring; 1014, soft collection pool; 1015, venturi; 1016, conduit three; 1017, iodophor storage box; 1018, conduit four; 1019, conduit torsional spring collection disc; 1020, conduit five; 1021, spray head; 1022, water wheel one; 1023, drive shaft; 1024, drive water chamber two; 1025, water wheel two; 1026, conduit six; 1027, liquid medicine storage box; 1028, conduit seven; 1029, spraying pipe; 1030, pulley one; 1031, transmission belt; 1032, pulley two; 1033, reciprocating screw rod; 1034, drive seat; 1035, pulley three; 1036, worm; 1037, worm wheel; 1038, gear one; 1039, spline shaft one; 1040, bandage winding seat; 1041, gear two; 1042, spline shaft two; 1043, bandage winding column; 1044, bandage drawer; 1045, gauze storage drawer; 1046, door panel one; 1047, door panel two; 1048, door panel three; 1049, blowdown pipe; 1050, storage tank. DETAILED DESCRIPTION

[0021] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work fall within the protection scope of the present application.

[0022] As Figures 1-9As shown, the embodiment of the present application provides a disinfection device for burn plastic surgery burn wound repair, which comprises a burn first-aid kit 1, the burn first-aid kit 1 comprises a shell 104 and a soft collecting pool 1014, both sides of the upper end of the shell 104 are rotationally connected with turnover seats 105, the right rear part of the inner side of the shell 104 is placed with an iodophor storage box 1017, the upper end of the middle part of the turnover seat 105 is rotationally connected with soft pad seats 106 through hinges, both ends of the upper part of the soft collecting pool 1014 are fixedly connected with the inner upper end of the middle part of the turnover seat 105, the left front part of the inner side of the shell 104 is placed with a physiological saline storage box 108, the inner bottom wall of the physiological saline storage box 108 is placed with a water pump 109, the water outlet end of the upper end of the water pump 109 is fixedly connected with a conduit one 1010, the right end of the conduit one 1010 is communicated with a driving water chamber one 1011, the upper end of the driving water chamber one 1011 is communicated with a conduit two 1012, the right end of the conduit two 1012 is communicated with a venturi tube 1015, the upper end of the venturi tube 1015 is communicated with a conduit three 1016, the right end of the conduit three 1016 is communicated with the inside of the iodophor storage box 1017, the rear end of the venturi tube 1015 is communicated with a conduit four 1018, the upper end of the conduit four 1018 is communicated with a conduit torsional spring collecting disc 1019, the middle part of the conduit torsional spring collecting disc 1019 is communicated with a conduit five 1020, the upper end of the conduit five 1020 is communicated with a spray head 1021.

[0023] In the embodiment, the lower end of the shell 104 is fixedly connected with a mobile base 101, the inner left side of the mobile base 101 is fixedly connected with a storage battery 102, the storage battery 102 is electrically connected with the water pump 109 through wires, the inner right side of the mobile base 101 is slidingly connected with a solid medicine storage box 103, the left side of the shell 104 is rotationally connected with door plates one 1046 through hinges, the right upper end of the rear end of the shell 104 is rotationally connected with a door plate two 1047 through a hinge, the right lower end of the shell 104 is rotationally connected with door plates three 1048 through hinges, the front end of the middle part of the left turnover seat 105 is fixedly connected with a protective cover 107, and the spray head 1021 is arranged in the inside of the protective cover 107.

[0024] Specifically, when the limbs of the injured person need to be disinfected, the two side flip seats 105 are opened, the soft collecting pool 1014 is unfolded, the soft cushion seat 106 is opened, the upper limbs or lower limbs of the injured person are placed on the upper end of the soft cushion seat 106, the position to be treated is located at the upper end of the soft collecting pool 1014, the protective cover 107 is opened to take out the spray head 1021, the water pump 109 in the physiological saline storage tank 108 is started, the physiological saline in the physiological saline storage tank 108 enters the inside of the driving water chamber 1011 through the conduit 1010, and then enters the Venturi tube 1015 through the conduit 1012. Due to the Venturi effect, the iodophor in the iodophor storage tank 1017 is mixed with the physiological saline and then enters the inside of the spray head 1021 through the inside of the conduit 1018, the inside of the conduit 1019, and the inside of the conduit 1020, so as to flush and disinfect the burn site of the injured person. The sewage is stored in the sewage storage tank 1050 through the sewage pipe 1049 at the lower end of the soft collecting pool 1014. By arranging the flip seat 105 that can be opened and the soft cushion seat 106 that can be flipped at the upper end of the flip seat 105, a V-shaped support is formed to support the upper limbs or lower limbs of the injured person. While the physiological saline in the physiological saline storage tank 108 is extracted, the iodophor in the iodophor storage tank 1017 is extracted and mixed. The burn site of the patient is flushed to achieve effective support for the upper limbs or lower limbs of the injured person during flushing, avoid the limbs of the injured person from shaking during disinfection treatment, and reduce the pain of the patient.

[0025] In the embodiment, the upper end of the conduit 1012 is communicated with the spray ring 1013, the lower end of the spray ring 1013 is fixedly connected to the upper end of the soft collecting pool 1014, the sewage storage tank 1050 is arranged at the left rear inner side of the shell 104, the sewage pipe 1049 is fixedly connected in the opening at the lower end of the soft collecting pool 1014, the lower end of the sewage pipe 1049 is communicated with the inside of the sewage storage tank 1050, and the lower end of the conduit 1019 is rotationally connected to the middle part of the inner bottom wall of the left flip seat 105.

[0026] Specifically, during the flushing process, part of the physiological saline enters the spray ring 1013 through the conduit 1012, flows out through the uniformly distributed small holes at the lower end of the spray ring 1013, and realizes synchronous cleaning of the soft collecting pool 1014 during the flushing process. After treating one injured person, the soft collecting pool 1014 does not need to be cleaned by medical staff, which is beneficial to improving the efficiency of first aid.

[0027] The inner front right end lower part of the shell 104 is provided with a liquid medicine storage tank 1027, the inside of the drive water chamber one 1011 is rotatably connected with a water wheel one 1022, the inside of the water wheel one 1022 is fixedly connected with a drive shaft 1023, the right side of the drive water chamber one 1011 is provided with a drive water chamber two 1024, the middle part of the drive shaft 1023 is fixedly connected with a water wheel two 1025, the front end of the drive water chamber two 1024 is communicated with a catheter six 1026, the right end of the catheter six 1026 is communicated with the inside of the liquid medicine storage tank 1027, the upper end of the water wheel two 1025 is communicated with a catheter seven 1028, the upper end of the catheter seven 1028 is communicated with a spray pipe 1029, the right side front upper end of the shell 104 is slidably connected with a gauze storage drawer 1045.

[0028] In the embodiment, the outer periphery of the water wheel two 1025 is rotatably connected in the inside of the drive water chamber two 1024, the left end of the drive water chamber two 1024 is fixedly connected in the middle part partition right side lower end front part of the shell 104, the right end of the drive water chamber one 1011 is fixedly connected in the middle part partition left side lower end front part of the shell 104.

[0029] In the embodiment, the right end of the drive shaft 1023 is fixedly connected with a belt pulley one 1030, the belt pulley one 1030 is connected with a belt pulley two 1032 and a belt pulley three 1035 through a transmission belt 1031, the middle part of the belt pulley two 1032 is fixedly connected with a reciprocating screw rod 1033, the outer periphery of the reciprocating screw rod 1033 is threadedly connected with a drive seat 1034.

[0030] In the embodiment, the right end of the reciprocating screw rod 1033 is rotatably connected in the inner right side upper end front part of the shell 104, the middle part of the spray pipe 1029 is fixedly connected in the outer periphery of the drive seat 1034, the upper end of the drive seat 1034 is slidably connected in the inner top wall right end upper part front side of the shell 104.

[0031] Specifically, when the physiological saline passes through the inside of the driving water tank 1011, the water wheel 1022 is driven to rotate, thereby synchronously driving the water wheel 1025 and the belt pulley 1030 to rotate, and then pumping the liquid medicine in the liquid medicine storage tank 1027 into the water wheel 1025 through the catheter 1026, and then delivering the liquid medicine to the spray pipe 1029 through the catheter 1028, and spraying the gauze stored in the gauze storage drawer 1045, at the same time, the belt pulley 1030 drives the belt pulley 1032 to rotate through the transmission belt 1031, thereby driving the driving seat 1034 to rotate through the reciprocating wire rod 1033, and then driving the spray pipe 1029 to reciprocate on the gauze in the gauze storage drawer 1045, and the gauze is treated by the medicine, when the upper layer of gauze is wet, the medicine will flow down to continue to dye the lower layer of gauze, until the medical staff stops flushing the burn site of the wounded, and stops the medicine, at this time, the gauze soaked with medicine is just enough to cover the burn site of the wounded, through the process of flushing, the gauze is treated by the medicine, and the medicine is stopped after the flushing is completed, the burn degree and the burn area of the wounded can be reflected according to the situation of the patient treated by the medical staff, and then the gauze soaked with medicine is just enough to cover the burn site of the patient, which not only improves the efficiency of rescue, but also saves the amount of gauze and liquid medicine.

[0032] In the embodiment, the middle part of the belt pulley three 1035 is fixedly connected with the worm 1036, the worm 1036 is meshingly connected with the worm gear 1037, the upper end of the worm gear 1037 is fixedly connected with the gear one 1038, the middle part of the gear one 1038 is fixedly connected with the spline shaft one 1039, the upper end of the spline shaft one 1039 is sleeved with the bandage winding seat 1040, the gear one 1038 is meshingly connected with the gear two 1041, the middle part of the gear two 1041 is fixedly connected with the spline shaft two 1042, the upper end of the spline shaft two 1042 is sleeved with the bandage winding column 1043, and the middle part of the spline shaft two 1042 is rotatably connected with the bandage drawer 1044.

[0033] In the embodiment, the bandage winding seat 1040 is arranged at the inner upper right rear end of the shell 104, and the outer periphery of the bandage drawer 1044 is slidably connected in the opening at the inner upper right rear end of the shell 104.

[0034] In the embodiment, the upper end of the gear two 1041 is rotatably connected to the middle part of the lower end of the bandage drawer 1044, and the lower end of the bandage winding column 1043 is rotatably connected to the middle part of the upper end of the bandage drawer 1044.

[0035] Specifically, when the pulley one 1030 drives the pulley two 1032 to rotate through the transmission belt 1031, it drives the pulley three 1035 to rotate, thereby driving the worm wheel 1037 to rotate through the worm 1036, and further driving the bandage winding seat 1040 to rotate through the gear one 1038 and the spline shaft one 1039, and the gear one 1038 drives the bandage winding column 1043 to rotate through the gear two 1041 and the spline shaft two 1042, so that the bandage outside the bandage winding seat 1040 is wound to the outside of the bandage winding column 1043. When the flushing is completed, the bandage drawer 1044 is pulled out, the bandage is cut, the bandage winding column 1043 and the wound bandage are taken off, and the outer end of the bandage on the bandage winding seat 1040 is inserted into the slot in the middle of the new bandage winding column 1043, the new bandage winding column 1043 is placed on the upper end of the spline shaft two 1042, and the bandage drawer 1044 is closed. In subsequent flushing, the bandage can be continuously wound, and through the process of flushing, the degree and area of the burn of the injured person can be reflected according to the situation of the medical staff to the patient, and the length of the bandage required for use can be automatically wound. Not only the efficiency of rescue is improved, but also the amount of bandage is saved, and the treatment of subsequent patients is facilitated.

[0036] Working principle: first, when the limbs of the wounded need to be disinfected, open the two sides of the turnover seat 105, so that the soft collection pool 1014 is unfolded, and the soft pad seat 106 is opened, the upper limbs or lower limbs of the wounded are placed on the upper end of the soft pad seat 106 on both sides, so that the position needing treatment is located at the upper end of the soft collection pool 1014, the protective cover 107 is opened to take out the spray head 1021, and the water pump 109 in the physiological saline storage tank 108 is started. The physiological saline in the physiological saline storage tank 108 enters the inside of the driven water chamber one 1011 through the conduit one 1010, and then enters the venturi tube 1015 through the conduit two 1012. Due to the venturi effect, the iodophor in the iodophor storage tank 1017 is mixed with the physiological saline and then extracted through the conduit three 1016, enters the inside of the conduit four 1018, and then enters the inside of the spray head 1021 through the conduit spring collection disc 1019 and the conduit five 1020, to flush and disinfect the burn site of the wounded. The sewage is stored in the sewage storage tank 1050 through the sewage pipe 1049 at the lower end of the soft collection pool 1014. By setting the turnover seat 105 which can be opened, and the soft pad seat 106 which can be turned over at the upper end of the turnover seat 105, a V-shaped support is formed to support the upper limbs or lower limbs of the wounded. While the physiological saline in the physiological saline storage tank 108 is extracted, the iodophor in the iodophor storage tank 1017 is also extracted and mixed, to flush the burn site of the patient. During the flushing process, the upper limbs or lower limbs of the wounded can be effectively supported, avoiding the shaking of the limbs of the wounded during the disinfection process, which affects the treatment effect and reduces the pain of the patient. During the flushing process, part of the physiological saline enters the spray ring 1013 through the conduit two 1012, flows out through the uniformly distributed small holes at the lower end of the spray ring 1013, to realize the synchronous cleaning of the soft collection pool 1014 during the flushing process. After treating one wounded, the soft collection pool 1014 does not need to be cleaned by medical staff, which is conducive to improving the efficiency of first aid. When the physiological saline passes through the inside of the driven water chamber one 1011, the water wheel one 1022 drives the driven shaft 1023 to rotate, synchronously driving the water wheel two 1025 and the belt pulley one 1030 to rotate, and then pumping the liquid medicine in the liquid medicine storage tank 1027 into the water wheel two 1025 through the conduit six 1026, and then conveying it to the spray pipe 1029 through the conduit seven 1028, to spray the surface of the gauze stored in the gauze storage drawer 1045. At the same time, the belt pulley one 1030 drives the belt pulley two 1032 to rotate through the transmission belt 1031, thereby driving the driven seat 1034 to rotate through the reciprocating wire rod 1033, and then driving the spray pipe 1029 to move left and right on the gauze in the gauze storage drawer 1045, to treat the gauze. When the upper layer of gauze is wet, the medicine will flow down to continue to soak the lower layer of gauze, until the medical staff stop flushing the burn site of the wounded, and stop soaking the medicine. At this time, the number of layers of gauze soaked with medicine is just enough for the wounded to apply to the burn site. By soaking the gauze during the flushing process,And after the end of the flushing, stop the medicine immersion, realize that the medical staff can reflect the burn degree and burn area of the injured person according to the patient's flushing situation, and then make the gauze immersed with medicine just enough for the patient to apply to the burn site, not only improve the efficiency of rescue, but also save the amount of gauze and liquid medicine. When the pulley one 1030 drives the pulley two 1032 to rotate through the transmission belt 1031, it drives the pulley three 1035 to rotate, thereby driving the worm wheel 1037 to rotate through the worm 1036, and then driving the bandage winding seat 1040 to rotate through the gear one 1038 and the spline shaft one 1039. The gear one 1038 drives the bandage winding column 1043 to rotate through the gear two 1041 and the spline shaft two 1042, so that the bandage outside the bandage winding seat 1040 is wound to the outside of the bandage winding column 1043. When the flushing is completed, pull open the bandage drawer 1044, cut off the bandage, take out the bandage winding column 1043 and the wound bandage, and put the outer end of the bandage on the bandage winding seat 1040 into the slot in the middle of the new bandage winding column 1043. Place the new bandage winding column 1043 on the upper end of the spline shaft two 1042, close the bandage drawer 1044, and continue to wind the bandage during subsequent flushing. Through the process of flushing, the medical staff can reflect the burn degree and burn area of the injured person according to the patient's flushing situation, and automatically wind the required length of bandage, not only improving the efficiency of rescue, but also saving the amount of bandage, facilitating the subsequent treatment of patients.

[0037] Although embodiments of the present application have been shown and described, it is to be understood that various modifications, substitutions, replacements and changes can be made to these embodiments without departing from the principles and spirit of the present application, and the scope of the present application is defined by the appended claims and their equivalents.

Claims

1. A sterilization device for burn plastic surgery burn wound repair, comprising a burn first-aid kit (1), characterized in that, The burn first-aid kit (1) comprises a shell (104) and a soft collecting pool (1014), both sides of the upper end of the shell (104) are rotationally connected with turnover seats (105), the right rear part of the inner side of the shell (104) is placed with an iodophor storage box (1017), the upper end of the turnover seat (105) is rotationally connected with a soft pad seat (106) through a hinge, the upper end of both ends of the soft collecting pool (1014) is fixedly connected with the inner upper end of the turnover seat (105), the left front part of the inner side of the shell (104) is placed with a physiological saline storage box (108), the inner bottom wall of the physiological saline storage box (108) is placed with a water pump (109), the upper end of the water pump (109) is fixedly connected with a catheter (1010), the right end of the catheter (1010) is communicated with a driving water chamber (1011), the upper end of the driving water chamber (1011) is communicated with a catheter (1012), the right end of the catheter (1012) is communicated with a venturi tube (1015), the upper end of the venturi tube (1015) is communicated with a catheter (1016), the right end of the catheter (1016) is communicated with the inside of the iodophor storage box (1017), the rear end of the venturi tube (1015) is communicated with a catheter (1018), the upper end of the catheter (1018) is communicated with a catheter spring collecting disc (1019), the middle part of the catheter spring collecting disc (1019) is communicated with a catheter (1020), the upper end of the catheter (1020) is communicated with a spray head (1021).

2. The sterilization device for plastic and burn surgery burn wound repair according to claim 1, characterized in that, The upper end of the catheter (1012) is communicated with a spraying ring (1013), the lower end of the spraying ring (1013) is fixedly connected with the upper end of the soft collecting pool (1014), the left rear part of the inner side of the shell (104) is placed with a sewage storage box (1050), the lower end opening of the soft collecting pool (1014) is fixedly connected with a sewage discharge pipe (1049), the lower end of the sewage discharge pipe (1049) is communicated with the inside of the sewage storage box (1050), the lower end of the catheter spring collecting disc (1019) is rotationally connected with the middle part of the inner bottom wall of the left turnover seat (105).

3. The sterilization device for plastic and burn surgery burn wound repair according to claim 1, characterized in that, The lower end of the shell (104) is fixedly connected with a mobile base (101), the left side of the inner side of the mobile base (101) is fixedly connected with a storage battery (102), the storage battery (102) is electrically connected with the water pump (109) through a wire, the right side of the inner side of the mobile base (101) is slidingly connected with a solid medicine storage box (103), the front and rear parts of the left side of the shell (104) are rotationally connected with door plates (1046) through hinges, the upper right side of the rear end of the shell (104) is rotationally connected with a door plate (1047) through a hinge, the lower right side of the front and rear parts of the shell (104) are rotationally connected with door plates (1048) through hinges, the middle part of the front end of the left turnover seat (105) is fixedly connected with a protective cover (107), the spray head (1021) is arranged in the inside of the protective cover (107).

4. The sterilization device for plastic and burn surgery burn wound repair according to claim 1, characterized in that, The inner front side right end lower part of the shell (104) is provided with a liquid medicine storage tank (1027), the inside of the drive water tank (1011) is rotatably connected with a water wheel (1022), the inside of the water wheel (1022) is fixedly connected with a drive shaft (1023), the right side of the drive water tank (1011) is provided with a drive water tank (1024), the middle part of the drive shaft (1023) is fixedly connected with a water wheel (1025), the front end of the drive water tank (1024) is communicated with a catheter (1026), the right end of the catheter (1026) is communicated with the inside of the liquid medicine storage tank (1027), the upper end of the water wheel (1025) is communicated with a catheter (1028), the upper end of the catheter (1028) is communicated with a spray pipe (1029), the right side front upper end of the shell (104) is slidably connected with a gauze storage drawer (1045).

5. The sterilization device for plastic and burn surgery burn wound repair according to claim 4, characterized in that, The outer periphery of the water wheel (1025) is rotatably connected in the inside of the drive water tank (1024), the left end of the drive water tank (1024) is fixedly connected with the middle partition right side lower end front of the shell (104), the right end of the drive water tank (1011) is fixedly connected with the middle partition left side lower end front of the shell (104).

6. The sterilization device for plastic and burn surgery burn wound repair according to claim 4, characterized in that, The right end of the drive shaft (1023) is fixedly connected with a belt pulley (1030), the belt pulley (1030) is connected with a belt pulley (1032) and a belt pulley (1035) through a transmission belt (1031), the middle part of the belt pulley (1032) is fixedly connected with a reciprocating screw rod (1033), the outer periphery of the reciprocating screw rod (1033) is threadedly connected with a drive seat (1034).

7. The sterilization device for plastic and burn surgery burn wound repair according to claim 6, characterized in that, The right end of the reciprocating screw rod (1033) is rotatably connected with the inner right side upper end front of the shell (104), the middle part of the spray pipe (1029) is fixedly connected with the outer periphery of the drive seat (1034), the upper end of the drive seat (1034) is slidably connected with the inner top wall right end upper part front side of the shell (104).

8. The sterilization device for plastic and burn surgery burn wound repair according to claim 6, characterized in that, The middle part of the belt pulley (1035) is fixedly connected with a worm (1036), the worm (1036) is meshingly connected with a worm wheel (1037), the upper end of the worm wheel (1037) is fixedly connected with a gear (1038), the middle part of the gear (1038) is fixedly connected with a spline shaft (1039), the upper end of the spline shaft (1039) is sleeved with a bandage winding seat (1040), the gear (1038) is meshingly connected with a gear (1041), the middle part of the gear (1041) is fixedly connected with a spline shaft (1042), the upper end of the spline shaft (1042) is sleeved with a bandage winding column (1043), the middle part of the spline shaft (1042) is rotatably connected with a bandage drawer (1044).

9. The sterilization device for plastic and burn surgery burn wound repair according to claim 8, characterized in that, The bandage winding seat (1040) is arranged in the inner upper right side rear end of the shell (104), and the outer periphery of the bandage drawer (1044) is slidably connected in the inner upper right side rear end opening of the shell (104).

10. The sterilization device for plastic and burn surgery burn wound repair according to claim 8, characterized in that, The upper end of the gear two (1041) is rotatably connected in the middle of the lower end of the bandage drawer (1044), and the lower end of the bandage winding column (1043) is rotatably connected in the middle of the upper end of the bandage drawer (1044).