Automatic glove lining wearing device

By designing the automatic wear device for glove lining, using components such as frames, slide chutes, fixing plates and translation mechanisms, the automatic wear of insulated glove lining is realized, solving the problem of cumbersome operation in the prior art, improving efficiency and ensuring hygiene and safety.

CN223275249UActive Publication Date: 2025-08-29CHUXIONG POWER SUPPLY BUREAU OF YUNNAN POWER GRID CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202422859594.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-22
Publication Date
2025-08-29
Estimated Expiration
2034-11-22

AI Technical Summary

Technical Problem

The existing insulated glove lining requires people to wear it themselves, resulting in inefficient operation, cumbersome operation and inconvenient operation.

Method used

An automatic wear device for glove lining is designed, including a frame, a slide chute, a fixing plate, a finger sleeve rod, a moving ring and a translation mechanism. The position of the glove lining is identified through sensors, and the translation mechanism is used to automatically reverse the glove lining to the user's hand.

Benefits of technology

It improves the wear efficiency of glove lining, solves hygiene and safety issues, provides convenience, and is suitable for use in public gloves in power systems.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223275249U_ABST
    Figure CN223275249U_ABST
Patent Text Reader

Abstract

The utility model relates to an automatic glove lining wearing device which comprises a machine frame, the machine frame is provided with a left sliding groove and a right sliding groove, the outer ends of the left sliding groove and the right sliding groove are provided with groove openings matched with the hand, the inner ends of the left sliding groove and the right sliding groove are provided with a fixing plate, five finger sleeve rods matched with fingers are arranged on the fixing plate at intervals, and the fixing plate is movably sleeved with a moving ring capable of moving in the sliding grooves. The outer edge of the moving ring is connected with a translation mechanism arranged on the rack, and a plurality of tooth hooks are arranged on the inner edge of the moving ring. A plurality of glove linings are reversely sleeved on the fixing plate and the finger sleeve rods one by one, five finger parts of the glove linings are reversely sleeved on the corresponding finger sleeve rods, a user only needs to insert a hand into the left sliding groove and the right sliding groove from the groove opening, and the fingers are opposite to the finger sleeve rods. The movable ring and the tooth hooks on the movable ring move along with the translation mechanism to hook the opening ring of the glove lining on the outermost layer, so that the two glove linings on the outermost layer are reversely sleeved on the two hands of a user, the glove linings can be automatically worn on the two hands of a plurality of persons respectively, the wearing efficiency is improved, and meanwhile the wearing efficiency is improved. And convenience is provided for a user.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model relates to a wearing device, in particular to an automatic wearing device for a glove liner, and belongs to the technical field of mechanical design and manufacturing. Background Art

[0002] The primary function of insulating gloves is to prevent electric shock and protect hands and the human body. Insulating gloves are typically made of materials such as rubber, latex, or plastic and offer electrical, water, acid, alkali, chemical, and oil resistance. Insulating gloves are particularly important in electrical work, especially when operating high-voltage equipment such as disconnectors and fuses. They are also essential safety equipment for live work on low-voltage equipment, making them essential safety and protective equipment in power systems. However, when using public gloves for field work, visits, exchanges, or inspections, the inside of the gloves inevitably becomes contaminated by sweat. This not only causes discomfort for many wearers, but prolonged sweat can corrode the glove lining, shortening its lifespan and even compromising its insulating properties, posing a threat to the wearer's safety. Furthermore, public gloves are classified as secondary protective equipment for hands and feet. If not properly disinfected, they can easily spread skin diseases. To address this issue, power plants have begun using insulating gloves with disposable liners. Users simply replace the lining with a new one, effectively eliminating the problem. Currently, disposable glove liners are mainly put on by people themselves, which is not only inefficient but also cumbersome. Therefore, it is necessary to improve the existing technology. Summary of the Invention

[0003] In order to solve the problems that the existing insulating glove lining needs to be put on by personnel themselves, which leads to low operating efficiency, high operating complexity, and inconvenience in use, the utility model provides an automatic glove lining donning device.

[0004] The utility model is completed by the following technical solutions: a device for automatically donning a glove liner, comprising a frame, characterized in that a left and a right slide groove are provided on the frame, the outer ends of the left and right slide grooves are provided with notches matched with the hands, the inner ends are provided with a fixed plate, the fixed plate is provided with five finger sleeve rods matched with the fingers at intervals, and the fixed plate is movably provided with a movable ring that can move in the slide groove, the outer edge of the movable ring is connected to a translation mechanism provided on the frame, and the inner edge is provided with a plurality of tooth hooks, so that a plurality of glove liners can be reversely put on the fixed plate and the finger sleeve rods one by one, so that the five finger parts of the glove liners are also reversely put on the corresponding finger sleeve rods, the user only needs to insert the hands into the left and right slide grooves through the notches and make the fingers face the finger sleeve rods, then the movable ring and the tooth hooks thereon can move with the translation mechanism to hook the sleeve ring of the outermost glove liner, so that the outermost pair of glove liners can be reversely put on the hands of a user, so that the outermost pair of glove liners can be automatically put on the hands of multiple people respectively, while improving the donning efficiency and providing convenience for the users.

[0005] The left and right slides are arranged horizontally and in parallel on the frame. The length and width of the slides are respectively adapted to the length and width of the human palm, so that the user's hands can be placed in the slides more comfortably to wear the gloves.

[0006] The fixing plate is configured as a rectangular plate adapted to the shape of the chute, the rectangular plate being vertically suspended at the inner end of the chute, the back of the rectangular plate being connected to the inner end of the chute via a horizontal connecting plate, and the front of the rectangular plate being connected to the inner end of the fingertip rod, the outer end of the fingertip rod being connected to the fingertip expansion block and extending horizontally to the notch, so that when the glove liner is put on reversely, the glove opening of the glove liner is placed on the fixing plate, and the five finger parts are also put on the corresponding fingertip rods reversely, and the fingertip expansion block at the end of the fingertip rod is used to expand the fingertip part of the glove liner, so that the glove can be put on the user's hand quickly and accurately.

[0007] The shape of the movable ring is adapted to the shape of the fixed plate. A plurality of tooth hooks are evenly and spaced apart along the inner edge of the movable ring. The tail end of each tooth hook is vertically connected to the inner edge of the movable ring. The hook tip extends into the fixed plate and then bends outward to be suspended in the air, so that the tooth hooks on the movable ring can hook the collar ring of the outermost glove liner, and the glove liner can be reversely put on the user's hand during the movement of the translation mechanism.

[0008] The translation mechanism includes a horizontal screw rod on the frame between the left and right slide grooves, the inner end of the horizontal screw rod is connected to the main shaft of the power machine on the frame, and the outer end is rotatably matched with the seat bearing provided at the slot, the horizontal screw rod is screwed with the screw hole on the connecting block on the inner side of the movable ring in the left and right slide grooves, and the frame outside the left and right slide grooves is respectively provided with left and right horizontal sliding rods parallel to the horizontal screw rod, and the left and right horizontal sliding rods are respectively slidably connected with the slider with through holes on the outer side of the movable ring in the left and right slide grooves, so that the horizontal screw rod is rotated under the drive of the power machine, and then the two movable rings are driven by the connecting block to slide back and forth along the horizontal sliding rod in the left and right slide grooves, so that the glove lining is worn on the user's hand.

[0009] A sensor that matches the glove liner collar is provided on the inner edge of the movable ring, so that the collar position of the glove liner on the fixed plate can be identified by the sensor, thereby moving the movable ring to the position, so that the claws can be accurately matched with the collar ring of the glove liner.

[0010] The present invention has the following advantages and effects: the above-mentioned solution can effectively solve the health and safety issues of workers cross-using public insulating gloves, and the occupational health protection benefits are considerable. It can be used in any place where public insulating gloves are placed in the power system. The glove liner only needs to be reversed and put on the fixed plate and the fingertip rod. The fingertip rod is matched with the finger portion of the glove liner. The user only needs to insert the hand from the slot into the left and right slide grooves and align the fingers with the fingertip rod. The claws on the movable ring can be driven by the translation mechanism to hook the glove liner ring, thereby reversely putting the glove liner on the user's hand, improving the wearing efficiency and providing convenience for the user. BRIEF DESCRIPTION OF THE DRAWINGS

[0011] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, for ordinary technicians in this field, other drawings can be obtained based on these drawings without any creative work.

[0012] Figure 1 It is a structural diagram of the utility model;

[0013] Figure 2 This is a structural diagram of the mobile ring of the present utility model;

[0014] Figure 3 This is a cross-sectional view of the fixed plate and movable ring of the present utility model.

[0015] In the figure, 1, frame, 2, left and right slide grooves, 3, horizontal slide bar, 4, fingertip expansion block, 5, finger sleeve rod, 6, movable ring, 7, fixed plate, 8, horizontal connecting plate, 9, power machine, 10, connecting block, 11, slider, 12, horizontal screw rod, 13, notch, 14, tooth hook, 15, through hole, 16, glove lining, 17, sensor, 18, glove liner sleeve ring. DETAILED DESCRIPTION

[0016] The following will be combined with the accompanying drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention. Example

[0017] The utility model provides an automatic donning device for glove liners, comprising a frame 1, the frame 1 being provided with left and right chutes 2, the outer ends of the left and right chutes 2 being provided with notches 13 for engaging with the hands, the inner ends being provided with a fixing plate 7, the fixing plate 7 being provided with five finger sleeve rods 5 for engaging with the fingers at intervals, and the fixing plate 7 being provided with a movable ring 6 movable within the chutes 2, the outer edge of the movable ring 6 being connected to a translation mechanism provided on the frame 1, and the inner edge being provided with a plurality of tooth hooks 14, so as to enable a plurality of glove liners 16 to be respectively put on the fixing plate 7 and the finger sleeve rods 5. The five finger portions of the glove 16 liner are also reversely put on the corresponding finger sleeve rods 5. The user only needs to insert his hands through the notches 13 into the left and right slide grooves 2 and place his fingers opposite to the finger sleeve rods 5. Then, the movable ring 6 and the toothed hook 14 thereon can hook the sleeve ring 18 of the outermost glove liner 16 as the translation mechanism moves, thereby reversely putting the outermost pair of glove liners 16 on the hands of a user. In this way, multiple glove liners 16 can be automatically put on the hands of multiple people, improving the putting-on efficiency and providing convenience for the users.

[0018] The left and right chutes 2 are arranged horizontally and side by side on the frame 1. The length and width of the chutes 2 are adapted to the length and width of the human palm, so that the user's hand can be comfortably placed in the chutes 2 to put on the gloves.

[0019] The fixing plate 7 is a rectangular plate adapted to the shape of the chute 2. The rectangular plate is vertically suspended at the inner end of the chute 2. The back of the rectangular plate is connected to the inner end of the chute 2 via a horizontal connecting plate 8, and the front is connected to the inner end of the fingertip rod 5. The outer end of the fingertip rod 5 is connected to the fingertip expansion block 4 and extends horizontally toward the notch 13. When the glove liner 16 is reversed, the cuff of the glove liner 16 is placed on the fixing plate 7, and the five fingers are also reversed on the corresponding fingertip rods 5. The fingertip expansion block 4 at the end of the fingertip rod 5 is used to expand the fingertip portion of the glove liner 16, so that the glove can be quickly and accurately put on the user's hand.

[0020] The shape of the movable ring 6 is adapted to that of the fixed plate 7. A plurality of tooth hooks 14 are evenly and spaced apart along the inner edge of the movable ring 6. The tail end of each tooth hook 14 is perpendicularly connected to the inner edge of the movable ring. The hook tip extends into the fixed plate 7, bends outward, and is suspended in the air. This allows the tooth hooks 14 on the movable ring 6 to hook onto the collar ring 18 of the outermost glove liner 16. As the translation mechanism moves, the glove liner is reversely put onto the user's hand.

[0021] The translation mechanism includes a horizontal screw rod 12 on the frame 1 between the left and right slide grooves 2, the inner end of the horizontal screw rod 12 is connected to the main shaft of the power machine 9 on the frame 1, and the outer end is rotatably matched with the seat bearing provided at the notch 13, the horizontal screw rod 12 is screwed with the screw hole on the connecting block 10 on the inner side of the moving ring 6 in the left and right slide grooves 2, and the frame 1 outside the left and right slide grooves 2 is respectively provided with a left and right horizontal slide rod 3 parallel to the horizontal screw rod 12, and the left and right horizontal slide rods 3 are respectively slidably sleeved with the slider 11 with a through hole 15 on the outer side of the moving ring 6 in the left and right slide grooves 2, so that the horizontal screw rod 12 is rotated under the drive of the power machine 9, and then the two moving rings 6 are driven to slide back and forth along the horizontal slide rod 3 in the left and right slide grooves 2 through the connecting block 10, so that the glove liner is put on the user's hand;

[0022] A sensor 17 is provided on the inner edge of the movable ring 6, which is matched with the glove liner collar ring 18, so that the collar position of the glove liner 16 on the fixed plate 7 can be identified by the sensor 17, thereby moving the movable ring 6 to this position, so that the tooth hook 14 can be accurately matched with the collar ring 18 of the glove liner 16.

[0023] Throughout this specification, references to terms such as "one embodiment," "example," or "specific example" indicate that a specific feature, structure, material, or characteristic described in conjunction with that embodiment or example is included in at least one embodiment or example of the present invention. In this specification, schematic representations of these terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in any one or more embodiments or examples.

[0024] The above shows and describes the basic principles, main features, and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The above embodiments and descriptions are merely illustrative of the principles of the present invention. Various changes and improvements may be made to the present invention without departing from the spirit and scope of the present invention. Such changes and improvements are intended to fall within the scope of the present invention. The scope of protection claimed in this invention is defined by the appended claims and their equivalents.

Claims

1. A glove liner automatic donning device, comprising a frame, characterized in that The frame is provided with left and right slide grooves, the outer ends of the left and right slide grooves are provided with notches that match the hands, and the inner ends are provided with fixed plates, and five finger sleeve rods that match the fingers are provided at intervals on the fixed plate, and a movable ring that can move in the slide groove is movably sleeved on the fixed plate, the outer edge of the movable ring is connected to the translation mechanism provided on the frame, and the inner edge is provided with a plurality of tooth hooks.

2. The automatic donning device for glove lining according to claim 1, characterized in that The left and right slide grooves are arranged horizontally and in parallel on the frame, and the length and width of the slide grooves are respectively adapted to the length and width of the human palm.

3. The automatic donning device for glove lining according to claim 1, characterized in that The fixed plate is set to be a rectangular plate adapted to the shape of the slide groove. The rectangular plate is vertically suspended at the inner end of the slide groove. The back of the rectangular plate is connected to the inner end of the slide groove through a horizontal connecting plate, and the front is connected to the inner end of the fingertip rod. The outer end of the fingertip rod is connected to the fingertip expansion block and extends horizontally to the slot.

4. The automatic donning device for glove lining according to claim 1, characterized in that The shape of the movable ring sleeve is adapted to the shape of the fixed plate. Several tooth hooks are evenly and spaced apart along the inner edge of the movable ring. The tail end of each tooth hook is vertically connected to the inner edge of the movable ring. The hook tip extends into the fixed plate and then bends outward to be suspended in the air.

5. The automatic donning device for glove lining according to claim 1, characterized in that The translation mechanism includes a horizontal screw rod arranged on the frame between the left and right slide grooves, the inner end of the horizontal screw rod is connected to the main shaft of the power machine on the frame, and the outer end is rotatably matched with the seat bearing arranged at the slot, the horizontal screw rod is screwed with the screw hole on the connecting block on the inner side of the moving ring in the left and right slide grooves, and the left and right horizontal sliding rods parallel to the horizontal screw rod are respectively provided on the frame outside the left and right slide grooves, and the left and right horizontal sliding rods are respectively slidably connected to the slider with through holes on the outer side of the moving ring in the left and right slide grooves.

6. The automatic donning device for glove lining according to claim 1, characterized in that A sensor matched with the glove liner ring is provided on the inner edge of the movable ring.