Medical glove assisted donning device

By designing a medical glove-wearing aid device that uses a vacuum pump to inflate the gloves, the problem of high friction during the wearing of medical gloves is solved. This device is suitable for all medical staff and eliminates the need for talcum powder, thus improving the ease of wearing and the disinfection effect.

CN115957012BActive Publication Date: 2026-04-10THE FIRST AFFILIATED HOSPITAL OF ARMY MEDICAL UNIV
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
THE FIRST AFFILIATED HOSPITAL OF ARMY MEDICAL UNIV
Filing Date
2023-01-05
Publication Date
2026-04-10

AI Technical Summary

Technical Problem

Existing medical gloves are inconvenient to wear due to high friction, and gloves containing powder can easily cause allergies, making it difficult to meet the needs of all medical staff.

Method used

A medical glove-wearing aid device was designed. The air inside the vacuum cylinder is extracted by a vacuum pump, causing the glove to expand and reducing the friction between the glove and the hand. The device can be equipped with a limiting block and an ultraviolet disinfection lamp to improve the ease of wearing and the disinfection effect.

Benefits of technology

It enables the convenient wearing of medical gloves without the need for talcum powder, and is suitable for both healthy individuals and those with allergies, improving ease of wear and enhancing disinfection effectiveness.

✦ Generated by Eureka AI based on patent content.

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    Figure CN115957012B_ABST
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Abstract

The application discloses a medical glove auxiliary wearing device, which comprises a base, a vacuum cylinder, a glove ring and a vacuum air pump. The vacuum cylinder is fixed horizontally on the base, and the air suction end of the vacuum air pump is communicated with the vacuum cylinder. The glove ring is clamped on the cylinder opening of the vacuum cylinder. When wearing the glove, the sleeve opening of the medical glove is sleeved on the glove ring, the glove ring is clamped on the cylinder opening of the vacuum cylinder, the vacuum air pump is started, the air between the medical glove and the bottom of the vacuum cylinder is sucked out, the air pressure between the medical glove and the bottom of the vacuum cylinder is reduced, under the action of the atmospheric pressure, the air outside can be injected into the medical glove along the sleeve opening of the medical glove, the medical glove in the vacuum cylinder is inflated, the hand is conveniently inserted into the medical glove, and the auxiliary wearing device can be used for assisting the wearing of the medical glove by normal people or allergic people.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of equipment for wearing gloves, in particular to a medical glove auxiliary wearing device. BACKGROUND

[0002] Most of the medical gloves are made of latex or rubber, which have high elasticity and can meet the needs of medical staff of different body types. However, during wearing, the medical gloves will tightly adhere to the skin of the hands, which will generate a large friction force, bringing great inconvenience to wearing. In order to facilitate wearing, the commonly used method is to add talcum powder or cornstarch into the gloves, so as to reduce the friction between the hands and the medical gloves. However, the medical gloves with powder are easy to cause allergy and are not suitable for allergic people. Therefore, there is an urgent need for a technology suitable for assisting all medical staff to wear medical gloves. SUMMARY

[0003] In view of the deficiencies of the prior art, the present application provides a medical glove auxiliary wearing device suitable for assisting all medical staff to wear medical gloves, and the specific technical solutions are as follows:

[0004] In the first aspect, a medical glove auxiliary wearing device is provided, comprising:

[0005] A vacuum cylinder with one end open and the other end sealed;

[0006] A glove ring clamped at the cylinder opening of the vacuum cylinder, and the sleeve opening of the medical glove can be sleeved on the glove ring;

[0007] A vacuum air pump with an air suction end communicating with the cylinder body of the vacuum cylinder.

[0008] In combination with the first aspect, in the first implementation manner of the first aspect, a limiting block is arranged on the inner wall surface of the cylinder body close to the cylinder opening.

[0009] In combination with the first aspect, in the second implementation manner of the first aspect, the vacuum cylinder is provided with an air vent valve.

[0010] In combination with the first aspect, in the third implementation manner of the first aspect, an ultraviolet disinfection lamp is arranged in the vacuum cylinder, and the ultraviolet disinfection lamp is embedded on the inner wall surface of the cylinder body.

[0011] In the second aspect, a medical glove auxiliary wearing device is provided, comprising:

[0012] A storage box for storing the glove ring with the medical gloves, and a throwing opening is formed in the bottom of the box body;

[0013] A pushing mechanism arranged in the storage box for pushing the glove ring to the throwing opening;

[0014] A vacuum cylinder, one end of which is open and the other end of which is sealed, is provided with a pushing piston inside the vacuum cylinder, and a side wall of the cylinder is provided with an inlet port, which is communicated with the inlet port;

[0015] An electric push rod is arranged along an axial direction of the vacuum cylinder, and a rod body of the electric push rod is connected with the pushing piston after penetrating through a bottom of the vacuum cylinder;

[0016] A vacuum air pump is arranged at an air outlet end of the vacuum air pump, and the air outlet end is communicated with a cylinder body between the inlet port and a cylinder port of the vacuum cylinder.

[0017] In combination with the second aspect, in a first implementation manner of the second aspect, a spring limiting block is arranged on an inner wall surface of the cylinder body close to the cylinder port.

[0018] In combination with the second aspect, in a second implementation manner of the second aspect, an ultraviolet disinfection lamp is arranged between the inlet port and the cylinder port of the vacuum cylinder, and the ultraviolet disinfection lamp is embedded on the inner wall surface of the cylinder body.

[0019] In combination with the second aspect, in a third implementation manner of the second aspect, the vacuum cylinder is provided with a ventilation valve.

[0020] In combination with the second aspect, in a fourth implementation manner of the second aspect, an axial length of the pushing piston is greater than a distance between the inlet port and the cylinder port of the vacuum cylinder.

[0021] In combination with the second aspect, in a fifth implementation manner of the second aspect, a plurality of storage cavities are arranged in the storage box, the storage cavities are matched with the glove ring, and each of the storage cavities is provided with the pushing mechanism.

[0022] Beneficial effects: By using the medical glove auxiliary wearing device, the vacuum air pump can extract air in the vacuum cylinder in which the glove ring is clamped, so that the vacuum cylinder is converted into a vacuum state. Under the action of external atmospheric pressure, air in the outside world can be injected into the medical glove from a sleeve port of the medical glove sleeved on the glove ring, so that the entire medical glove is inflated, and medical staff can put their hands into the inflated medical glove, thereby facilitating the medical staff to wear the medical glove. BRIEF DESCRIPTION OF DRAWINGS

[0023] In order to more clearly illustrate the specific embodiments of the present application, the following will briefly introduce the drawings needed to be used in the specific embodiments. In all the drawings, the elements or parts are not necessarily drawn according to the actual proportion.

[0024] Figure 1 A structure schematic view of a medical glove auxiliary wearing device provided by an embodiment of the present application;

[0025] Figure 2A structure schematic view of a medical glove auxiliary wearing device provided by another embodiment of the present application is shown in the figure;

[0026] Figure 3 For Figure 2 A structure schematic view of a medical glove auxiliary wearing device is shown in the figure;

[0027] Reference signs:

[0028] 1-vacuum cylinder, 2-glove ring, 3-vacuum air pump, 4-base, 5-limiting block, 6-vent valve, 7-storage box, 8-pushing piston, 9-electric push rod, 10-spring limiting block, 11-storage cavity, 12-electric push rod, 13-piston plate. DETAILED DESCRIPTION

[0029] The embodiments of the technical solutions of the present application will be described in detail below with reference to the accompanying drawings. The following embodiments are only used to more clearly illustrate the technical solutions of the present application, and therefore only serve as examples, and cannot limit the protection scope of the present application.

[0030] Embodiment one

[0031] A structure schematic view of a medical glove auxiliary wearing device is shown in the figure, and the auxiliary wearing device comprises: Figure 1

[0032] A vacuum cylinder 1, one end is open, and the other end is sealed;

[0033] A glove ring 2 is clamped at the cylinder opening of the vacuum cylinder 1, and the sleeve opening of the medical glove can be sleeved on the glove ring 2;

[0034] A vacuum air pump 3, the air suction end communicates with the cylinder body of the vacuum cylinder 1.

[0035] Specifically, the auxiliary wearing device is composed of a base 4, a vacuum cylinder 1, a glove ring 2 and a vacuum air pump 3. Among them, the vacuum cylinder 1 can be a cylindrical cylinder with a sealed bottom, which can be fixed transversely on the base 4. The vacuum air pump 3 can be installed on the base 4, and the air suction end can be communicated with the cylinder body of the vacuum cylinder 1 through a hose. The diameter of the glove ring 2 is the same as the diameter of the cylinder opening of the vacuum cylinder 1, which can be clamped at the cylinder opening of the vacuum cylinder 1.

[0036] When wearing gloves, medical staff can first sleeve the sleeve opening of the medical glove on the glove ring 2, and then clamp the glove ring 2 at the cylinder opening of the vacuum cylinder 1. When clamping the glove ring 2, the sleeve opening of the medical glove needs to be directed outward from the vacuum cylinder 1. After clamping the glove ring 2 and the vacuum cylinder 1, the vacuum air pump 3 can be started.

[0037] ​The vacuum pump 3 can extract the air between the medical gloves and the bottom of the vacuum cylinder 1, so that the air pressure between the medical gloves and the bottom of the vacuum cylinder 1 is reduced. Under the action of atmospheric pressure, the air outside can enter the medical gloves along the sleeve opening of the medical gloves, so that the medical gloves in the vacuum cylinder 1 are inflated, the distance between the medical gloves and the human hand is increased, and the friction is greatly reduced. The medical staff can very conveniently put their hands into the medical gloves without using talcum powder and the like. Therefore, whether it is normal people or allergic people, they can use the auxiliary wearing device to wear medical gloves.

[0038] In this embodiment, optionally, a limiting block 5 is arranged on the inner wall surface of the cylinder body near the cylinder opening. Because under the action of atmospheric pressure, the glove ring 2 may move towards the bottom of the vacuum cylinder 1 during the process of extracting the air in the vacuum cylinder 1, which brings inconvenience to the medical staff wearing medical gloves. Therefore, the limiting block 5 can be arranged on the inner wall surface of the vacuum cylinder 1. The limiting block 5 can be arranged at a position away from the cylinder opening by a certain distance. In this way, during the process of extracting the air in the vacuum cylinder 1, the limiting block 5 can limit the movement of the glove ring 2 towards the bottom of the vacuum cylinder 1, so as to facilitate the medical staff to wear medical gloves.

[0039] In this embodiment, the distance between the limiting block 5 and the cylinder opening can be slightly greater than the axial length of the glove ring 2, so as to limit the glove ring 2 at a position close to the cylinder opening, and limit the sleeve opening of the medical gloves at a position close to the cylinder opening, so as to facilitate the medical staff to wear medical gloves.

[0040] In this embodiment, optionally, the vacuum cylinder 1 is provided with a ventilation valve 6. The ventilation valve 6 communicates the inside of the vacuum cylinder 1 with the outside. After the medical staff put their hands into the inflated medical gloves, the ventilation valve 6 can be opened, so that the air outside enters the sealed space between the medical gloves and the bottom of the vacuum cylinder 1, so as to increase the air pressure in the sealed space, and the inflated medical gloves can be reduced and attached to the surface of the hand. The medical staff can take out the hand wearing the medical gloves from the vacuum cylinder 1. The diameter of the glove ring 2 can be greater than the width of the human hand, so as to take off the glove ring 2 from the hand.

[0041] In this embodiment, optionally, an ultraviolet disinfection lamp is arranged in the vacuum cylinder 1, and the ultraviolet disinfection lamp is embedded on the inner wall surface of the cylinder body. Because the medical staff may contaminate the surface of the medical gloves when they put the medical gloves on the glove ring 2. Therefore, the ultraviolet disinfection lamp can be embedded on the inner wall surface of the vacuum cylinder 1, and the ultraviolet disinfection lamp can irradiate the inflated medical gloves to disinfect the outer surface of the medical gloves.

[0042] Embodiment two

[0043] As Figure 2The structure diagram of the medical glove auxiliary wearing device is shown. The auxiliary wearing device comprises:

[0044] The storage box 7 is used for storing the glove ring 2 with the medical gloves, and the bottom of the box is provided with a throwing opening.

[0045] The pushing mechanism is arranged in the storage box 7 and is used for pushing the glove ring 2 to the throwing opening.

[0046] The vacuum cylinder 1 is open at one end and sealed at the other end. The pushing piston 8 is arranged in the vacuum cylinder 1, and the side wall of the cylinder is provided with an inlet opening which is communicated with the throwing opening.

[0047] The electric push rod 9 is arranged in the axial direction of the vacuum cylinder 1, and the rod body penetrates the bottom of the vacuum cylinder 1 and is connected with the pushing piston 8.

[0048] The vacuum air pump 3 is arranged in the axial direction of the vacuum cylinder 1, and the rod body penetrates the bottom of the vacuum cylinder 1 and is connected with the pushing piston 8.

[0049] Specifically, as shown in Figure 2 , Figure 3 The auxiliary wearing device is composed of the base 4, the storage box 7, the pushing mechanism, the vacuum cylinder 1, the vacuum air pump 3 and the electric push rod 9. The storage box 7 is a box body used for storing the glove ring 2. A plurality of glove rings 2 with medical gloves can be stored in the storage box 7. The sleeve opening edge of the medical gloves can be adhered to the inner side of the glove ring 2. The glove rings 2 can be vertically placed in the storage box 7 in sequence.

[0050] The pushing mechanism is arranged in the storage box 7 and is used for pushing the glove ring 2 to the throwing opening, in the pushing direction of the pushing mechanism, the bottom of the storage box 7 is provided with a throwing opening which is corresponding to the size of the glove ring 2. The pushing mechanism can push the glove ring 2 to the throwing opening and throw it out of the storage box 7.

[0051] The vacuum cylinder 1 can be a cylindrical cylinder with a sealed bottom, which can be fixed horizontally on the base 4. The storage box 7 can be fixed on the top of the vacuum cylinder 1. The inlet opening is arranged on the top of the vacuum cylinder 1, which is communicated with the throwing opening. The glove ring 2 thrown out of the throwing opening can be thrown into the vacuum cylinder 1 through the inlet opening. The inner diameter of the vacuum cylinder 1 is the same as the diameter of the glove ring 2. When the glove ring 2 falls into the vacuum cylinder 1, the outer wall of the glove ring 2 can be attached to the inner wall of the vacuum cylinder 1.

[0052] The electric push rod 9 is arranged at the bottom of the vacuum cylinder 1 and penetrates the bottom of the vacuum cylinder 1 to be fixedly connected with the pushing piston 8 in the vacuum cylinder 1. The electric push rod 9 can drive the pushing piston 8 to move in the axial direction of the vacuum cylinder 1, so as to push the glove ring 2 falling into the vacuum cylinder 1 to the cylinder opening of the vacuum cylinder 1.

[0053] Afterwards, the electric push rod 9 can drive the push piston 8 to retract to the inlet port, and the push piston 8 can seal the inlet port, so that a sealed space can be formed between the push piston 8 and the glove ring 2, and the air in the sealed space can be extracted by the vacuum air pump 3, so that the air pressure in the sealed space is reduced, and the air outside can enter the medical glove along the sleeve port of the medical glove under the action of the atmospheric pressure, so that the medical glove in the vacuum cylinder 1 is inflated, the distance between the medical glove and the human hand is increased, and the friction is greatly reduced. Medical staff can easily put their hands into the medical glove without using talcum powder and the like. Therefore, whether it is normal people or allergic people, they can use the auxiliary wearing device to wear medical gloves.

[0054] In the embodiment, optionally, a spring limiting block 10 is arranged on the inner wall surface of the cylinder body near the cylinder port. Specifically, two installation grooves are arranged on the inner wall surface of the vacuum cylinder 1 near the cylinder port, and the spring limiting block 10 is arranged in the installation grooves. The spring limiting block 10 includes a limiting block 5 and a spring, the limiting block 5 is embedded in the installation groove, and the side of the limiting block 5 facing the bottom of the vacuum cylinder 1 is a bevel, and the bottom is connected with the groove bottom through the spring.

[0055] When the push piston 8 pushes the glove ring 2 to move to the spring limiting block 10, the glove ring 2 can press the limiting block 5 into the installation groove under the action of the push force of the push piston 8, so that the glove ring 2 can continue to move to the cylinder port through the limiting block 5. After the push piston 8 retracts, the limiting block 5 can protrude from the installation groove under the action of the spring, so as to limit the movement of the glove ring 2 to the bottom of the vacuum cylinder 1 during the process of extracting the air in the vacuum cylinder 1, so as to facilitate the medical staff to wear the medical glove.

[0056] In the embodiment, optionally, the vacuum cylinder 1 is provided with an air vent valve 6. The air vent valve 6 communicates the inside of the vacuum cylinder 1 with the outside, and after the medical staff puts their hands into the inflated medical glove, the air vent valve 6 is opened, so that the air outside enters the sealed space between the medical glove and the bottom of the vacuum cylinder 1, so that the air pressure in the sealed space is increased, and the inflated medical glove is attached to the surface of the hand. The medical staff can take the hand wearing the medical glove out of the vacuum cylinder 1, and the diameter of the glove ring 2 can be greater than the width of the hand, so as to take the glove ring 2 off the hand.

[0057] In the embodiment, optionally, an ultraviolet disinfection lamp is arranged between the inlet port and the cylinder port of the vacuum cylinder 1, and the ultraviolet disinfection lamp is embedded on the inner wall surface of the cylinder body. The ultraviolet disinfection lamp can irradiate the inflated medical glove to disinfect the outer surface of the medical glove.

[0058] In the embodiment, the axial length of the pushing piston 8 is greater than the distance between the inlet and the barrel mouth of the vacuum barrel 1. Because the axial length of the pushing piston 8 is greater than the distance between the inlet and the barrel mouth of the vacuum barrel 1, the vacuum piston can always block the inlet when the pushing piston 8 pushes the glove ring 2 to the barrel mouth, so as to prevent the glove ring 2 stored in the storage box 7 from falling into the vacuum barrel 1. Thus, during the pushing process of the pushing piston 8, the pushing mechanism can continue to push the glove ring 2 to the inlet, so as to save the time for the pushing mechanism to push the glove ring 2 and improve the efficiency of the auxiliary wearing.

[0059] In the embodiment, the storage box 7 is provided with multiple storage cavities 11, the storage cavities 11 are matched with the glove rings 2, and the pushing mechanism is arranged in each storage cavity 11. Specifically, the storage box 7 can be provided with multiple storage cavities 11, and the top of the storage cavity 11 can be circular. When the glove ring 2 is stored in the storage cavity 11, the top of the glove ring 2 can be attached to the top of the storage cavity 11, so as to limit the glove ring 2, and the pushing mechanism can push the glove ring 2 to the inlet.

[0060] All the storage cavities 11 can be arranged in the storage box 7 from top to bottom in sequence in the transverse direction, each storage cavity 11 is communicated with the inlet, and the pushing mechanism is arranged in each storage cavity 11. Thus, more medical gloves can be stored, so as to be used for a long time.

[0061] In the embodiment, the pushing mechanism includes an electric pushing rod 12 and a piston plate 13. The piston plate 13 is embedded in the storage cavity 11, and the side wall of the piston plate 13 is attached to the inner top surface of the storage cavity 11. The electric pushing rod 12 is arranged on the outer wall of the storage box 7, and the rod body of the electric pushing rod 12 extends into the storage cavity 11 and is connected with the piston plate 13. In the embodiment, the electric pushing rod 9 and the electric pushing rod 12 are both servo pushing rods, so as to control the moving distance of the pushing piston 8 and the piston plate 13.

[0062] The above embodiments are only used to illustrate the technical solutions of the present application, but not limit the present application; although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that: the technical solutions recorded in the foregoing embodiments can be modified, or some or all of the technical features can be replaced by equivalents; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the scope of the technical solutions of the embodiments of the present application, and they should be covered in the scope of the claims and the description of the present application.

Claims

1. A medical glove donning aid device, characterized by, The utility model relates to a glove ring conveying device, which comprises: a storage box for storing glove rings with medical gloves, and a throwing opening is formed in the bottom of the box; a pushing mechanism arranged in the storage box for pushing the glove rings to the throwing opening; a vacuum cylinder with one end open and the other end sealed, wherein a pushing piston is arranged in the vacuum cylinder, and a material inlet is formed in the side wall of the cylinder, which is connected to the throwing opening; an electric push rod arranged along the axial direction of the vacuum cylinder, and the rod body is connected to the pushing piston after penetrating through the bottom of the cylinder; the pushing piston is driven by the electric push rod to move along the axial direction of the vacuum cylinder, and after the glove ring is pushed to the cylinder opening of the vacuum cylinder, the pushing piston is retracted to the material inlet by the electric push rod, the material inlet is sealed by the pushing piston, and a sealed space is formed between the pushing piston and the glove ring; a vacuum air pump with an air outlet connected to the cylinder between the material inlet and the cylinder opening; a spring limiting block is arranged on the inner wall surface of the cylinder near the cylinder opening, two installation grooves are formed near the cylinder opening of the vacuum cylinder, the two installation grooves are symmetrically arranged on the inner wall surface of the vacuum cylinder, the spring limiting block is installed in the installation groove, the spring limiting block comprises a limiting block and a spring, the limiting block is embedded in the installation groove, and the side facing the bottom of the vacuum cylinder is a slope, and the bottom is connected to the bottom of the installation groove through the spring; under the action of the pushing force of the pushing piston, the limiting block is pressed into the installation groove, and after the pushing piston is retracted, the limiting block protrudes from the installation groove under the action of the spring, so as to limit the movement of the glove ring towards the bottom of the vacuum cylinder during the process of extracting air from the vacuum cylinder; the axial length of the pushing piston is greater than the distance between the material inlet and the cylinder opening of the vacuum cylinder.

2. The medical glove donning aid device of claim 1, wherein, The vacuum cylinder is provided with an air vent valve.

3. The medical glove donning aid device of claim 1, wherein, An ultraviolet disinfection lamp is arranged between the material inlet and the cylinder opening of the vacuum cylinder, and the ultraviolet disinfection lamp is embedded in the inner wall surface of the cylinder.

4. The medical glove donning aid device of claim 1, wherein, The storage box is provided with multiple storage cavities, which are matched with the glove rings, and each storage cavity is provided with the pushing mechanism.

Citation Information

Patent Citations

  • Medical automatic glove wearing machine

    CN215130053U

  • Glove-dispensing means

    WO2022164794A1