Medical glove wearing auxiliary device and use method

By designing an auxiliary device for wearing medical gloves, the problems of inconvenience and infection risk for medical staff in wearing medical gloves were solved, enabling quick and convenient glove wearing and disinfection, reducing the risk of infection, and improving wearing efficiency.

CN121818124APending Publication Date: 2026-04-10920TH HOSPITAL OF THE JOINT LOGISTIC SUPPORT FORCE OF THE CHINESE PEOPLES LIBERATION ARMY
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
920TH HOSPITAL OF THE JOINT LOGISTIC SUPPORT FORCE OF THE CHINESE PEOPLES LIBERATION ARMY
Filing Date
2026-01-22
Publication Date
2026-04-10

AI Technical Summary

Technical Problem

Healthcare workers face challenges in wearing medical gloves, including inconvenience, inefficiency, and increased risk of infection, particularly due to the elasticity of the glove material, which makes them difficult to put on quickly and the potential for contamination during the dressing process.

Method used

A medical glove-wearing aid device was designed, comprising a wearing device, a disinfection device, and a recycling device. Utilizing components such as a glove storage mechanism, a glove gripping mechanism, a wearing mechanism, an ultraviolet lamp, and a blower, it enables the rapid storage, disinfection, unfolding, and wearing of gloves. Combined with hand disinfection and waste liquid recycling, it ensures a sterile environment.

Benefits of technology

This enabled the gloves to be put on quickly and easily, reducing the risk of contamination, minimizing the waste of human resources, improving wearing efficiency, and reducing the risk of infection for patients and healthcare workers.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a medical glove wearing auxiliary device which comprises a wearing device, a disinfection device and a recovery device. The equipment is characterized in that the wearing device comprises a wearing bin, a partition plate arranged in the middle of the wearing bin, wearing openings symmetrically formed in the two sides of the interior of the wearing bin, a glove storage mechanism, a glove grabbing mechanism, a wearing mechanism, a sealing cover rotationally connected with the outer sides of the wearing openings, a control panel fixedly installed on the front face of the wearing bin and a first air blower; the disinfection device comprises a second air blower and a hand disinfection mechanism which are fixedly mounted at the side end of the wearing bin, and ultraviolet lamp tubes which are symmetrically mounted on the two sides of the interior of the wearing bin; the recycling device comprises a recycling bin installed at the bottom of the wearing bin and a waste liquid box installed in the recycling bin. A plurality of gloves can be stored at the same time, the gloves can be rapidly and conveniently worn, meanwhile, hands of a wearer before the wearer wears the gloves can be disinfected, sterilized and air-dried, and waste liquid generated by cleaning can be collected.
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Description

Technical Field

[0001] This invention relates to the field of glove wearing equipment technology, and specifically to a medical glove wearing assistance device and its usage method. Background Technology

[0002] Currently, doctors, nurses, and other related personnel in hospitals are required to wear medical gloves when performing surgery or examinations on patients. The main purpose of medical gloves is to prevent hands from becoming dirty or infected with microorganisms when examining patients, handling frequently touched items, or using instruments. They also prevent damage from chemicals or sharp objects and can prevent the spread of microorganisms already present on the skin or hands. The use of medical gloves in hospitals, clinics, and other similar fields not only protects medical staff but also ensures the safety of patients, effectively reducing cross-infection between doctors and patients.

[0003] When medical staff put on medical gloves, they need to disinfect their hands first. This process presents several problems. First, since most medical gloves are made of rubber or PE film, which has some elasticity, doctors need to widen the opening of the glove each time they change gloves or put on a new one, and then slowly squeeze their palm inside. This process is very cumbersome and inconvenient. Therefore, a nurse usually assists the attending physician with the donning process, creating unnecessary manpower. Furthermore, during the donning process, the hands of the person assisting inevitably come into contact with the outer wall of the glove, potentially contaminating it with germs. The gloves are also prone to tearing during donning, making quick and complete donning difficult. For medical staff who need to perform numerous examinations and operate many instruments throughout the day, this inefficient donning process increases the risk of infection for both patients and medical staff.

[0004] Therefore, in order to solve the above problems, this paper proposes a medical glove wearing assistance device and its usage method. Summary of the Invention

[0005] The purpose of this invention is to design a medical glove-wearing aid that can store multiple pairs of gloves at the same time, allow for quick and convenient glove wearing, disinfect and sterilize the wearer's hands before wearing the gloves, air dry them, and collect the waste liquid generated during the washing process.

[0006] To achieve the above-mentioned technical effects, the present invention is implemented through the following technical solution: a medical glove wearing assistance device, including a wearing device, a disinfection device and a recycling device, characterized in that: the wearing device includes a wearing compartment, a partition disposed in the middle of the wearing compartment, wearing openings symmetrically disposed on both sides inside the wearing compartment, a glove storage mechanism, a glove grasping mechanism and a wearing mechanism, a sealing cover rotatably connected to the outside of the wearing opening, a control panel and a first blower fixedly installed on the front of the wearing compartment.

[0007] The disinfection device includes a second blower and a hand disinfection mechanism fixedly installed on the side of the wearable compartment, and ultraviolet lamps symmetrically installed on both sides inside the wearable compartment.

[0008] The recycling device includes a recycling bin installed at the bottom of the wearable compartment and a waste liquid tank installed inside the recycling bin.

[0009] Furthermore, a battery is fixedly installed at the bottom of the wearable compartment, and a power cord is fixedly attached to the outer wall of the wearable compartment; both the battery and the power cord are electrically connected to the control panel.

[0010] Furthermore, the glove storage mechanism includes storage boxes symmetrically arranged on both sides inside the wearing compartment, a sealing door rotatably connected to the outer end of the storage box, a lifting mechanism fixedly installed at the bottom of the storage box, a lifting plate fixedly connected to the output end of the lifting mechanism, gloves installed on the upper surface of the lifting plate, and an ejection port located at the top of the storage box; the lifting mechanism is electrically connected to the control panel.

[0011] Furthermore, the glove gripping mechanism includes symmetrically arranged sliding rods on both sides of the top of the wearing compartment, a sliding rod with toothed grooves on both sides, a slider meshing with the toothed grooves inside the sliding rods, a moving motor fixedly installed on the side of the slider, an electric push rod fixedly connected to the lower end of the slider, a gripping plate fixedly connected to the output end of the electric push rod, a gripping air pump fixedly installed on the side of the gripping plate, gripping suction cups arranged in a hand shape at the bottom of the gripping plate, and a first air pipe fixedly connected to the gripping air pump and the gripping suction cups; the moving motor, the electric push rod, and the gripping air pump are all electrically connected to the control panel.

[0012] Furthermore, the wearable mechanism includes support plates symmetrically arranged on both sides inside the wearable compartment, a hand-shaped groove inside the support plate, a wearable suction cup inside the hand-shaped groove, an air pump compartment at the lower end of the support plate, a wearable air pump installed inside the air pump compartment, a wearable air pipe fixedly connecting the wearable air pump and the wearable suction cup, a mounting block fixedly installed on the inner wall of the wearable opening, inclined air jets circumferentially distributed on the outer wall of the mounting block, and an air inlet pipe fixedly connecting the air jets and the first blower; the wearable air pump and the first blower are both electrically connected to the control panel.

[0013] Furthermore, a sealing ring is provided on the inner wall of the sealing cover.

[0014] Furthermore, the hand disinfection mechanism includes a disinfection chamber and a liquid storage tank located on the side of the wearing compartment, a disinfection nozzle and an air-drying port installed on the top of the disinfection chamber, a liquid collection port located at the bottom of the disinfection chamber, a liquid level sensor and a liquid pump located inside the liquid storage tank, and an infusion pipe fixedly connected to the liquid pump and the disinfection nozzle; the air-drying port is fixedly connected to the output end of a second blower; the end of the liquid collection port is fixedly connected to the inside of a waste liquid tank; the liquid level sensor and the liquid pump are both electrically connected to the control panel.

[0015] Furthermore, both the first blower and the second blower are equipped with disinfection cores at their air inlets.

[0016] Furthermore, the control panel is equipped with a control unit, a timer, and an alarm, but does not include a display screen or control buttons; the second blower and the ultraviolet lamp are both electrically connected to the control panel.

[0017] Another object of the present invention is to provide a method of using a medical glove wearing aid device, characterized in that:

[0018] S1. Before using this device, medical staff first need to connect the power cord to an external power source, and then operate the control panel to start the device; then open the storage tank and inject disinfectant into the storage tank. The amount added is monitored in real time under the combined action of the liquid level sensor and the control panel. When the liquid level is reached, the addition is stopped and the storage tank is sealed; at this time, open the sealed door, separate the left and right gloves separately, and place them into the storage tanks on the corresponding sides, and close the sealed door to complete the disinfectant installation and glove placement.

[0019] S2. At this time, turn on the ultraviolet lamp on the control panel to sterilize the inside of the wearable chamber, preventing the gloves from being contaminated by germs brought in. At this time, set the working speed of the lifting mechanism, moving motor, electric push rod, grabbing air pump, wearable air pump, first blower, second blower and liquid pump, as well as the liquid level sensor alarm liquid level height on the control panel. This completes the disinfection and sterilization of the inside of the wearable chamber before use, as well as the parameter settings of each component.

[0020] S3. In use, first move the calibrated device to the desired position and connect the power cord to an external power source or enable battery power. When medical personnel need to put on gloves, operate the control panel to activate the wearing button and simultaneously turn off the ultraviolet lamp. At this time, the control panel automatically controls the lifting mechanism to push the top glove out of the storage box. Then, the control panel automatically controls the glove gripping mechanism to grab the glove and place it into the groove of the wearing mechanism. At this time, the control panel automatically controls the wearing air pump to adhere the lower surface of the glove to the groove through the wearing suction cup located inside the groove. At the same time, the gripping suction cup of the glove gripping mechanism adheres the upper surface of the glove to the lower surface of the gripping plate without releasing it. After the wearing air pump has been running for a period of time, the control panel automatically controls the electric push rod to separate the upper and lower parts of the glove. At this time, the first blower operates, causing the inclined air nozzle to spray sterile gas, filling the inside of the glove with gas and thus opening the glove. The glove opening process is completed.

[0021] S4. After the gloves are fully extended, the wearer needs to spray disinfectant onto their hands through the disinfection nozzle in the disinfection chamber for cleaning and disinfection, and then dry their hands through the air drying vent under the action of the second blower. Next, open the sealing cover and insert the hands into the corresponding wearing mechanism, placing them inside the extended gloves. At this point, the gripping and wearing suction cups firmly adhere the gloves to a fixed position, providing some resistance and preventing the gloves from moving with the hands during wear. After a period of wear, the gripping and wearing air pumps stop working, causing the gripping and wearing suction cups to no longer adhere to the gloves. The gloved hands can then be removed, completing the glove-wearing process. At this point, other medical staff help close the sealing cover and operate the control panel to turn on the ultraviolet lamps to disinfect and sterilize the wearing chamber. Simultaneously, the first blower is turned off, restoring the device to its pre-wearing state.

[0022] S5. When it is time to put on gloves again, repeat steps S3 and S4 above.

[0023] The beneficial effects of this invention are:

[0024] (1) By setting up a sealing cover, a glove storage mechanism, a glove grabbing mechanism, a wearing mechanism and an ultraviolet lamp, the present invention can realize the simultaneous loading of multiple pairs of gloves at one time, and keep the wearing compartment sealed when not wearing, and always disinfected by ultraviolet light to avoid contamination. At the same time, the combination of a moving motor, an electric push rod and a grabbing air pump enables the rapid and autonomous replacement of gloves. With the synergistic effect of the wearing air pump and the air jet, the gloves can be put on quickly and conveniently, which not only reduces the risk of contamination, but also greatly reduces the waste of human resources.

[0025] (2) By setting up a hand disinfection mechanism and a second blower, the present invention can disinfect and dry the hands of medical personnel who need to wear the gloves before wearing them, so as to avoid bringing bacteria and liquid from the hands into the wearing compartment 11 and contaminating the gloves; at the same time, by setting up a liquid level sensor 226 inside the liquid storage tank, the remaining amount of disinfectant can be monitored in real time and the medical personnel can be reminded to add more in time.

[0026] (3) The present invention provides a disinfection core at the air inlet of the first blower and the second blower; it can disinfect and sterilize the air drawn in by the first blower and the second blower, and avoid the blown air containing germs, which would contaminate the gloves; at the same time, the waste liquid generated during the cleaning and disinfection process can be collected through the recycling device, which can prevent the waste liquid from being exposed to the air for a long time and causing infection to medical staff and patients. Attached Figure Description

[0027] To more clearly illustrate the technical solutions of the embodiments of the present invention, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0028] Figure 1 This is a schematic diagram of the overall structure of the present invention;

[0029] Figure 2 This is a front view of the present invention;

[0030] Figure 3 This is a schematic diagram on the right side of the present invention;

[0031] Figure 4 This is the present invention. Figure 2 Schematic diagram of the cross section along line AA in the middle;

[0032] Figure 5 This is a top view of the present invention;

[0033] Figure 6 This is the present invention. Figure 5 Schematic diagram of the cross section along the BB line;

[0034] Figure 7 This is a schematic diagram of the glove gripping mechanism of the present invention;

[0035] Figure 8 This is a schematic diagram of the glove gripping mechanism of the present invention from another direction;

[0036] The attached diagram lists the components represented by each number as follows:

[0037] 1. Wearing device; 11. Wearing compartment; 111. Battery; 112. Power cord; 12. Divider; 13. Wearing port; 14. Glove storage mechanism; 141. Storage box; 142. Sealing door; 143. Lifting mechanism; 144. Lifting plate; 145. Glove; 146. Push-out port; 15. Glove gripping mechanism; 151. Slide bar; 152. Slide bar; 153. Slider; 154. Moving motor; 155. Electric push rod; 156. Gripping plate; 157. Gripping air pump; 158. Gripping suction cup; 159. First air tube; 16. Wearing mechanism; 161. Support plate; 162. Groove 163. Wearable suction cup; 164. Air pump chamber; 165. Wearable air pump; 166. Wearable air tube; 167. Mounting block; 168. Air nozzle; 169. Air inlet pipe; 17. Sealing cover; 18. Control panel; 19. First blower; 2. Disinfection device; 21. Second blower; 22. Hand disinfection mechanism; 221. Disinfection chamber; 222. Liquid storage tank; 223. Disinfection nozzle; 224. Air drying port; 225. Liquid collection port; 226. Liquid level sensor; 227. Liquid pump; 228. Infusion tube; 23. Ultraviolet lamp tube; 3. Recovery device; 31. Recovery chamber; 32. Waste liquid tank. Detailed Implementation

[0038] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0039] Example 1

[0040] See Figures 1 to 8 As shown, a medical glove wearing assistance device includes a wearing device 1, a disinfection device 2, and a recycling device 3. The wearing device 1 includes a wearing compartment 11, a partition 12 located in the middle of the wearing compartment 11, wearing openings 13 symmetrically arranged on both sides inside the wearing compartment 11, a glove storage mechanism 14, a glove grasping mechanism 15, and a wearing mechanism 16, a sealing cover 17 rotatably connected to the outside of the wearing opening 12, a control panel 18 fixedly installed on the front of the wearing compartment 11, and a first blower 19.

[0041] The disinfection device 2 includes a second blower 21 fixedly installed on the side of the wearable compartment 11, a hand disinfection mechanism 22, and ultraviolet lamps 23 symmetrically installed on both sides inside the wearable compartment 11.

[0042] The recycling device 3 includes a recycling bin 31 installed at the bottom of the wearable bin 11 and a waste liquid tank 32 installed inside the recycling bin 31.

[0043] A battery 111 is fixedly installed at the bottom of the wearable compartment 11, and a power cord 112 is fixedly attached to the outer wall of the wearable compartment 11. Both the battery 111 and the power cord 112 are electrically connected to the control panel 18. The power cord 112 can be connected to an external power source to provide power to the device; the battery 111 can provide power to the device when an external power source cannot be connected or during a power outage.

[0044] The glove storage mechanism 14 includes storage boxes 141 symmetrically arranged on both sides inside the wearing compartment 11, a sealing door 142 rotatably connected to the outer end of the storage boxes 141, a lifting mechanism 143 fixedly installed at the bottom of the storage boxes 141, a lifting plate 144 fixedly connected to the output end of the lifting mechanism 143, gloves 145 installed on the upper surface of the lifting plate 144, and an ejection port 146 located at the top of the storage boxes 141; the lifting mechanism 143 is electrically connected to the control panel 18. Gloves can be neatly stacked inside the storage boxes 141, and under the coordinated action of the lifting mechanism 143 and the lifting plate 144, the gloves are sequentially ejected from the storage boxes 141, automatically replenishing the gloves at the position grasped by the gripping mechanism 15.

[0045] The glove gripping mechanism 15 includes symmetrically arranged sliding rods 151 on both sides of the top of the wearing compartment 11, toothed sliding grooves 152 on both sides of the sliding rods 151, a slider 153 meshing with the toothed rack inside the sliding groove 152, a moving motor 154 fixedly installed on the side of the slider 153, an electric push rod 155 fixedly connected to the lower end of the slider 153, a gripping plate 156 fixedly connected to the output end of the electric push rod 155, a gripping air pump 157 fixedly installed on the side of the gripping plate 156, gripping suction cups 158 arranged in a hand shape at the bottom of the gripping plate 156, and a first air pipe 159 fixedly connected to the gripping air pump 157 and the gripping suction cups 158; the moving motor 154, the electric push rod 155, and the gripping air pump 157 are all electrically connected to the control panel 18. When gloves need to be put on, the gloves located on top of the storage box 141 can be attached to the gloves by the gripping suction cup 158, thereby moving the gloves to the wearing mechanism 16, and putting on the gloves in cooperation with the wearing mechanism 16.

[0046] The wearable mechanism 16 includes a support plate 161 symmetrically arranged on both sides inside the wearable compartment 11, a hand-shaped groove 162 arranged inside the support plate 161, a wearable suction cup 163 arranged inside the hand-shaped groove 162, an air pump compartment 164 arranged at the lower end of the support plate 161, a wearable air pump 165 installed inside the air pump compartment 164, a wearable air pipe 166 fixedly connecting the wearable air pump 165 and the wearable suction cup 163, a mounting block 167 fixedly installed on the inner wall of the wearable opening 13, inclined air nozzles 168 circumferentially distributed on the outer wall of the mounting block 167, and an air inlet pipe 169 fixedly connecting the air nozzles 168 and the first blower 19; the wearable air pump 165 and the first blower 19 are both electrically connected to the control panel 18. When wearing the gloves, the upper and lower surfaces are gripped by the gripping suction cup 158 and the wearing suction cup 163 respectively. Then, the gloves are separated by the action of the electric push rod 155. At the same time, the first blower 19 blows gas out from the jet nozzle 168 to further inflate the gloves for easy wearing.

[0047] The inner wall of the sealing cover 17 is provided with a sealing ring. This prevents external germs from entering the wear compartment and contaminating the gloves when not in use.

[0048] The hand disinfection mechanism 22 includes a disinfection chamber 221 and a storage tank 222 located on the side of the wearing chamber 11, a disinfection nozzle 223 and a drying port 224 installed on the top of the disinfection chamber 221, a collection port 225 located at the bottom of the disinfection chamber 221, a liquid level sensor 226 and a pump 227 located inside the storage tank 222, and an infusion tube 228 fixedly connecting the pump 227 and the disinfection nozzle 223; the drying port 223 is fixedly connected to the output end of the second blower 21; the end of the collection port 224 is fixedly connected to the inside of the waste liquid tank 32; the liquid level sensor 226 and the pump 227 are both electrically connected to the control panel 18. This mechanism allows medical personnel to disinfect and dry their hands before wearing the gloves, preventing bacteria and liquid from entering the wearing chamber 11 and contaminating the gloves; simultaneously, the liquid level sensor 226 can monitor the remaining disinfectant in real time and promptly remind medical personnel to add more.

[0049] Both the first blower 19 and the second blower 21 are equipped with disinfection cores at their air inlets. This disinfects and sterilizes the intake air, preventing the blown-out air from containing germs and contaminating the gloves.

[0050] The control panel 18 is equipped with a control unit, a timer, and an alarm, but does not include a display screen or control buttons. The second blower 21 and the ultraviolet lamp 23 are electrically connected to the control panel 18. The time required for each step during the glove-wearing process 145 is controlled.

[0051] Example 2

[0052] The lifting mechanism 143, which is fixedly installed at the bottom of the storage box 141 according to the present invention, adopts a push rod motor mechanism or a common motor plus screw mechanism.

[0053] Example 3

[0054] Instructions for use: Before using this device, medical personnel should first connect the power cord 112 to an external power source, and then operate the control panel 18 to start the device; then open the storage tank 222 and inject disinfectant into the storage tank 222. The amount added will be monitored in real time under the combined action of the liquid level sensor 226 and the control panel 18. Once a certain liquid level is reached, the addition will stop, and the storage tank 222 will be sealed. At this point, open the sealing door 142, separate the left and right gloves, and place them into the corresponding storage tank 141. Close the sealing door 142 to complete the disinfectant installation and glove placement. Then, operate the control panel 18 to turn on the ultraviolet lamp 23 to sterilize the inside of the wearing chamber 11, preventing the use of gloves during storage. The gloves are contaminated with pathogens. At this time, the control panel 18 is used to set the operating rates of the lifting mechanism 143, moving motor 154, electric push rod 155, gripping air pump 157, wearing air pump 165, first blower 19, second blower 21, and liquid pump 227, as well as the liquid level sensor 226 to alarm the liquid level height. Before use, the inside of the wearing chamber 11 is disinfected and sterilized, and the parameters of each component are set. When using the gloves, the adjusted device is first moved to the desired position, and the power cord 112 is connected to an external power source or the battery 111 is used for power supply. When medical personnel need to put on the gloves, the control panel 18 is activated by pressing the wearing button, and the ultraviolet lamp 23 is turned off. At this time, the control panel 18 automatically controls... The lifting mechanism 143 actuates, pushing the uppermost glove 145 out of the storage box 141. Then, the control panel 18 automatically controls the glove gripping mechanism 15 to grip the glove 145 and place it into the groove 162 of the wearing mechanism 16. At this time, the control panel automatically controls the wearing air pump 165 to actuate, using the wearing suction cup 163 located inside the groove 162 to adhere the lower surface of the glove to the groove 162. Simultaneously, the gripping suction cup 158 of the glove gripping mechanism 15 adheres the upper surface of the glove 145 to the lower surface of the gripping plate 156 without releasing it. After the wearing air pump 165 has been actuating for a period of time, the control panel 18 automatically controls the electric push rod 155 to actuate, separating the upper and lower parts of the glove 145. At this time, the first blower 19 actuates, causing the tilting spray... Sterile gas is ejected from the air vent 168, filling the inside of the glove 145 with gas and thus opening the glove 145; this completes the opening of the glove 145. After the glove is opened, the wearer needs to place their hands in the disinfection chamber 221 and spray disinfectant onto their hands through the disinfection nozzle 222 for cleaning and disinfection, and then dry their hands through the air drying vent 224 under the action of the second blower 21. Then, the sealing cover 17 is opened, and the hands are inserted into the corresponding wearing mechanism 16 and into the already opened glove 145. At this time, the gripping suction cup 158 and the wearing suction cup 163 firmly adhere the glove 145 to a fixed position, providing a certain resistance, which can prevent the glove 145 from moving with the hand during the wearing process.After a period of wearing, the gripping air pump 157 and the wearing air pump 165 stop working, causing the gripping suction cup 158 and the wearing suction cup 163 to no longer adhere to the gloves 145. The gloved hands can then be removed, completing the glove-wearing process. At this time, other medical personnel help close the sealing cover 17 and then operate the control panel 18 to turn on the ultraviolet lamp 23 to disinfect and sterilize the wearing chamber 11. Simultaneously, the first blower 19 is turned off, restoring the device to its pre-wearing state. When the next glove-wearing operation is needed, repeat steps S3 and S4.

Claims

1. A medical glove donning aid device comprising a donning device (1), a disinfecting device (2) and a recycling device (3), characterized in that: The wearing device (1) comprises a wearing bin (11), a partition (12) arranged at a middle position of the wearing bin (11), wearing openings (13) symmetrically arranged at two sides inside the wearing bin (11), a glove storage mechanism (14), a glove grabbing mechanism (15) and a wearing mechanism (16), a sealing cover (17) rotationally connected outside the wearing opening (12), a control panel (18) fixedly installed on a front surface of the wearing bin (11) and a first air blower (19). The disinfection device (2) comprises a second air blower (21) and a hand disinfection mechanism (22) fixedly installed at side ends of the wearing bin (11), and ultraviolet lamp tubes (23) symmetrically installed at two sides inside the wearing bin (11). The recycling device (3) comprises a recycling bin (31) installed at a bottom of the wearing bin (11) and a waste liquid tank (32) installed inside the recycling bin (31).

2. The medical glove donning aid of claim 1, wherein: A battery (111) is fixedly installed at a bottom of the wearing bin (11), and a power line (112) is fixedly pressed on an outer wall of the wearing bin (11).

3. The medical glove donning aid of claim 1, wherein: The glove storage mechanism (14) comprises storage boxes (141) symmetrically arranged at two sides inside the wearing bin (11), sealing doors (142) rotationally connected at outer ends of the storage boxes (141), lifting mechanisms (143) fixedly installed at bottom ends of the storage boxes (141), lifting plates (144) fixedly connected to output ends of the lifting mechanisms (143), gloves (145) installed on upper surfaces of the lifting plates (144), and push-out openings (146) arranged at top portions of the storage boxes (141); and the lifting mechanisms (143) are electrically connected to the control panel (18).

4. The medical glove donning aid of claim 1, wherein: The glove grabbing mechanism (15) comprises chute rods (151) symmetrically arranged at two sides of top ends inside the wearing bin (11), toothed chute grooves (152) arranged at two sides of the chute rods (151), sliding blocks (153) engagedly connected to toothed grooves inside the chute grooves (152), moving motors (154) fixedly installed at side ends of the sliding blocks (153), electric push rods (155) fixedly connected to lower ends of the sliding blocks (153), grabbing plates (156) fixedly connected to output ends of the electric push rods (155), grabbing air pumps (157) fixedly installed at side ends of the grabbing plates (156), grabbing suction cups (158) in a hand shape arranged at a bottom end of the grabbing plate (156), and a first air pipe (159) fixedly connected to the grabbing air pump (157) and the grabbing suction cup (158); and the moving motor (154), the electric push rod (155) and the grabbing air pump (157) are electrically connected to the control panel (18).

5. The medical glove donning aid of claim 1, wherein: The wearing mechanism (16) comprises support plates (161) symmetrically arranged inside both sides of the wearing bin (11), a hand-shaped groove (162) arranged inside the support plates (161), a wearing suction disc (163) arranged inside the hand-shaped groove (162), a gas pump bin (164) arranged at the lower end of the support plates (161), a wearing gas pump (165) installed inside the gas pump bin (164), a wearing gas pipe (166) fixedly connected with the wearing gas pump (165) and the wearing suction disc (163), a mounting block (167) fixedly installed on the inner wall of the wearing port (13), oblique air outlets (168) circumferentially arranged on the outer wall of the mounting block (167), and an air inlet pipe (169) fixedly connected with the air outlets (168) and the first air blower (19); the wearing gas pump (165) and the first air blower (19) are electrically connected to the control panel (18).

6. The medical glove donning aid of claim 1, wherein: The inner wall of the sealing cover (17) is provided with a sealing ring.

7. The medical glove donning aid of claim 1, wherein: The hand disinfection mechanism (22) comprises a disinfection bin (221) and a liquid storage tank (222) arranged at the side end of the wearing bin (11), a disinfection nozzle (223) and an air-drying port (224) installed at the top of the disinfection bin (221), a liquid collecting port (225) arranged at the bottom of the disinfection bin (221), a liquid level sensor (226) and a liquid pumping pump (227) arranged inside the liquid storage tank (222), and a liquid conveying pipe (228) fixedly connected with the liquid pumping pump (227) and the disinfection nozzle (223); the air-drying port (223) is fixedly connected with the output end of the second air blower (21); the liquid collecting port (224) is fixedly connected with the inside of the waste liquid tank (32) at the end; and the liquid level sensor (226) and the liquid pumping pump (227) are electrically connected to the control panel (18).

8. The medical glove donning aid of claim 1, wherein: The first air blower (19) and the second air blower (21) are provided with disinfection cores at the air inlets.

9. The medical glove donning aid of claim 1, wherein: The control panel (18) is provided with a control unit, a timer and an alarm, and is not provided with a display screen and control buttons; the second air blower (21) and the ultraviolet lamp (23) are electrically connected to the control panel (18).

10. The use method of the medical glove wearing auxiliary device according to any one of claims 1-9, characterized in that: S1, before using the device, the medical staff first needs to connect the power cord (112) to the external power supply, then operate the control panel (18) to start the device; then open the liquid storage tank (222) and pour the disinfectant into the inside of the liquid storage tank (222), and monitor the added amount in real time under the cooperation of the liquid level sensor (226) and the control panel (18), stop adding when the liquid level reaches a certain height, and seal the liquid storage tank (222); at this time, open the sealing door (142), separate the left and right gloves, and put them into the corresponding storage tank (141) inside, and close the sealing door (142), complete the disinfectant installation and glove placement; S2, at this time the operation of the control panel (18) open UV lamp tube (23), to wear the inside of the warehouse (11) to sterilization, to avoid in the placement of gloves make the bacteria brought into the pollution gloves; At this time the operation of the control panel (18) setting lifting mechanism (143), moving motor (154), electric push rod (155), grab gas pump (157), wear gas pump (165), the first air blower (19), the second air blower (21) and liquid pump (227) work rate and liquid level sensor (226) alarm liquid level height; Complete the use of the inside of the warehouse (11) before the disinfection and sterilization, and the parameter setting of each component; S3, when using, first move the device to the desired location, and connect the power cord (112) to the external power supply or enable the battery (111) power supply; When the medical staff need to wear gloves, operate the control panel (18) to start the wearing button, and close the UV lamp tube (23) at the same time. At this time, the control panel (18) automatically controls the lifting mechanism (143) to push out the uppermost glove (145) from the storage box (141), and then the control panel (18) automatically controls the glove grabbing mechanism (15) to grab and place the glove (145) into the groove (162) of the wearing mechanism (16). At this time, the control panel automatically controls the wearing gas pump (165) to act through the wearing suction cup (163) inside the groove (162) to adsorb the lower surface of the glove in the groove (162), and the grabbing suction cup (158) of the glove grabbing mechanism (15) adsorbs the upper surface of the glove (145) to the lower surface of the grabbing plate (156) without releasing. After the wearing gas pump (165) acts for a period of time, the control panel (18) automatically controls the electric push rod (155) to act to separate the glove (145) up and down. At this time, the first air blower (19) acts to make the inclined air jet (168) spray sterile gas to fill the glove (145) with gas to expand the glove (145); Complete the expansion work of wearing gloves (145). S4, when the gloves are stretched, the wearer needs to spray disinfectant on the hands through the disinfectant nozzle (222) in the disinfection chamber (221) to clean and disinfect the hands, and then blow dry the hands through the air-drying port (224) under the action of the second air blower (21); then open the sealing cover (17), and extend the hands into the corresponding wearing mechanism (16) respectively, and extend the hands into the already stretched gloves (145); at this time, the grabbing suction cup (158) and the wearing suction cup (163) firmly adsorb the gloves (145) in the fixed position, with a certain resistance, which can avoid the gloves (145) from moving with the hands during wearing; after a period of wearing, the grabbing air pump (157) and the wearing air pump (165) stop working, so that the grabbing suction cup (158) and the wearing suction cup (163) do not adsorb the gloves (145), and the hands wearing the gloves can be taken out, that is, the glove wearing is completed; at this time, other medical staff help to close the sealing cover (17), and then operate the control panel (18) to open the ultraviolet lamp (23) to disinfect and sterilize the wearing chamber (11); at the same time, the first air blower (19) is closed, so that the device returns to the state before wearing; S5, when the next glove wearing is needed, the above S3 and S4 operations can be repeated.