Waterproof heat-insulating PU (polyurethane) insulating impregnated glove
By introducing a reinforced wearing mechanism and anti-slip and wear-resistant components into the dipped gloves, the problem of reduced fixation caused by elastic band tension deformation is solved, achieving stable reinforcement and wear-resistant and anti-slip effects for the gloves, and extending their service life.
Patent Information
- Application Number
- CN202423320375.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-31
- Publication Date
- 2026-03-03
- Estimated Expiration
- 2034-12-31
AI Technical Summary
When existing rubber-coated gloves are worn for extended periods, the elastic bands deform and weaken, resulting in reduced stability and affecting the wearing experience.
A reinforced wearing mechanism was designed, including through holes, through-connecting components, elastic reinforcing components, and limiting sliding components. Through the cooperation of reinforcing connecting ropes, fixed connecting posts, and teeth biting plates, the glove can be stably and reinforced for wearing. At the same time, anti-slip and wear-resistant components are set on the surface of polyurethane waterproof insulating colloid to improve wear resistance.
It effectively improves the long-term wear stability and anti-slip and wear-resistant properties of the dipped gloves, extending their service life.
Smart Images

Figure CN223958367U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of dipped glove technology, specifically relating to a waterproof and heat-insulating PU insulating dipped glove. Background Technology
[0002] The term "dipping gloves" is a dialect name for rubber gloves. Dipping gloves are made by briefly immersing a glove mold in a vulcanized rubber solution, then drying it to form a rubber glove. This production process is called dipping gloves. When in use, dipping gloves are protected by a polyurethane waterproof and insulating colloid for waterproof and insulating purposes, and are also protected by a heat-insulating protective sleeve for heat insulation.
[0003] Existing dipped gloves are directly slipped onto the hand and secured by elastic bands. Therefore, prolonged use of dipped gloves can easily cause deformation of the elastic bands, weakening the compression effect. This results in reduced stability and effectiveness of the gloves after extended use, thus affecting their ability to provide enhanced stability during use. To address this issue, this invention proposes a waterproof and heat-insulating PU insulating dipped glove. Utility Model Content
[0004] The purpose of this utility model is to provide a waterproof and heat-insulating PU insulating dipped glove to solve the problem mentioned in the background art that when dipped gloves are worn for a long time, the tension of the elastic band is easily deformed, weakening the compression effect. As a result, the fixedness of the dipped gloves is reduced when worn again after a long period of use, thus reducing the wearing effect and affecting the strengthening and fixing of the dipped gloves during wearing.
[0005] To achieve the above objectives, this utility model provides the following technical solution: a waterproof and heat-insulating PU insulating dipped glove, comprising a dipped glove body, the dipped glove body including a main glove body, a connecting sleeve integrally provided at the bottom end of the main glove body, an elastic band provided on the surface of the connecting sleeve, a heat-insulating protective sleeve provided inside the main glove body, and a polyurethane waterproof insulating gel provided on the outer surface of the main glove body. The dipped glove body also includes:
[0006] A reinforced wearing mechanism is provided, which includes two wearing reinforcement components disposed at the bottom of the inner end of the connecting sleeve. A through-connecting component is provided at the end connection of the two wearing reinforcement components. Elastic reinforcement components are provided on both sides of the inner side of the through-connecting component. Limiting sliding components are provided at both ends of the elastic reinforcement component.
[0007] The anti-slip and wear-resistant mechanism includes an anti-slip and wear-resistant component disposed on the surface of a polyurethane waterproof insulating colloid.
[0008] Preferably, the wearing reinforcement component includes two through holes formed at the bottom of the inner side of the connecting sleeve, and a reinforcement connecting rope is disposed inside the through holes. The end of the reinforcement connecting rope is connected to the top of the through hole by stitching.
[0009] Preferably, the through-connection assembly includes a fixed connecting post disposed at the connection point of the two reinforcing connecting ropes, the fixed connecting post having two through holes inside, and the reinforcing connecting rope passing through the through holes.
[0010] Preferably, the elastic reinforcement component includes a mounting groove located inside the fixed connecting post on the side of the through hole. A tooth bite plate is provided inside the mounting groove. The surface of the tooth bite plate is in contact with the surface of the reinforcement connecting rope. A compression spring is glued and fixed at both ends of the inner surface of the tooth bite plate and the inner bottom end of the mounting groove.
[0011] Preferably, both sides of the fixed connecting column are slidably equipped with tie rods, and the ends of the tie rods are fixed to the middle position of one side of the tooth occlusal plate by threaded rotation.
[0012] Preferably, the limiting sliding assembly includes limiting sliding grooves formed at both ends of the mounting groove, and both ends of the tooth occlusal plate are integrally provided with limiting sliders, the limiting sliders being slidably connected to the interior of the limiting sliding grooves.
[0013] Preferably, the anti-slip and wear-resistant component includes an integrally formed wear-resistant and anti-slip protrusion on the outer surface of a polyurethane waterproof insulating adhesive, and the surface of the wear-resistant and anti-slip protrusion has an arc-shaped structure.
[0014] Compared with the prior art, the beneficial effects of this utility model are:
[0015] By designing a reinforced wearing mechanism, after wearing, the reinforcing connecting rope can slide inside the through hole to close the fixing connecting post on the surface of the connecting sleeve. Until the reinforcing connecting rope is inside the through hole, it is pulled and pressed tightly against the wrist. The deformation of the compression spring causes the dental occlusal plate to slide within the mounting groove, stably pressing the dental occlusal plate against the surface of the reinforcing connecting rope for reinforcement and installation. After fixing the two reinforcing connecting ropes, the main body of the rubber-impregnated glove is reinforced for wearing and use. Even after long-term use, it remains stably fitted and worn, improving the reinforcement and fixation of the main body of the rubber-impregnated glove during wear. Attached Figure Description
[0016] Figure 1 This is a schematic diagram of the structure of this utility model;
[0017] Figure 2 This is a cross-sectional view of the main glove body and the heat-insulating protective sleeve of this utility model;
[0018] Figure 3This utility model Figure 1 Enlarged structural diagram of section A;
[0019] Figure 4 This is a partial cross-sectional view of the elastic band, reinforcing connecting rope, and connecting sleeve of this utility model.
[0020] Figure 5 This utility model Figure 4 Enlarged structural diagram of section C;
[0021] Figure 6 This utility model Figure 5 Enlarged structural diagram of section D in the middle;
[0022] Figure 7 This utility model Figure 1 Enlarged structural diagram of section B;
[0023] In the diagram: 100, main body of the dipped glove; 101, main glove body; 102, connecting sleeve; 1021, through hole; 1022, reinforcing connecting rope; 1023, fixing connecting post; 1024, pull rod; 1025, through hole; 1026, mounting groove; 1027, tooth bite plate; 1028, limiting slider; 1029, limiting slide groove; 1020, compression spring; 103, polyurethane waterproof insulating colloid; 1031, wear-resistant and anti-slip protrusion; 104, elastic band; 105, heat-insulating protective sleeve. Detailed Implementation
[0024] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0025] Please see Figures 1 to 7 This utility model provides a technical solution: a waterproof and heat-insulating PU insulating dipped glove, including a dipped glove body 100, the dipped glove body 100 including a main glove body 101, a connecting sleeve 102 integrally provided at the bottom end of the main glove body 101, an elastic band 104 provided on the surface of the connecting sleeve 102, a heat-insulating protective sleeve 105 provided inside the main glove body 101, and a polyurethane waterproof insulating gel 103 provided on the outer surface of the main glove body 101. When in use, the dipped glove body 100 is protected by waterproof insulation through the polyurethane waterproof insulating gel 103, and by heat insulation through the heat-insulating protective sleeve 105. The dipped glove body 100 also includes:
[0026] The reinforced wearing mechanism includes two wearing reinforcement components disposed at the bottom of the connecting sleeve 102. A through-connecting component is provided at the end connection of the two wearing reinforcement components. Elastic reinforcement components are provided on both sides inside the through-connecting component. Limiting sliding components are provided at both ends of the elastic reinforcement components. When the dipped glove body 100 is installed and used after wearing, the reinforced wearing mechanism can reinforce the dipped glove body 100, and it can still be stably fitted and worn for a long time, thereby improving the reinforcement and fixation of the dipped glove body 100 during wearing and use.
[0027] To facilitate the reinforced wearing of the dipped glove body 100 by wearing the reinforcement component, in this embodiment, preferably, the reinforcement component includes two through holes 1021 formed at the bottom of the connecting sleeve 102. A reinforcement connecting rope 1022 is provided inside the through hole 1021. The end of the reinforcement connecting rope 1022 is connected to the top of the through hole 1021 by stitching. After the dipped glove body 100 is worn, it is inside the through hole 1021. Pulling the reinforcement connecting rope 1022 can reinforce the dipped glove body 100 when wearing it.
[0028] In order to facilitate the tightening and secure pressing of the reinforcing connecting rope 1022 by means of the through-connecting assembly, in this embodiment, preferably, the through-connecting assembly includes a fixed connecting post 1023 disposed at the connection point of the two reinforcing connecting ropes 1022. The fixed connecting post 1023 has two through holes 1025 inside, and the reinforcing connecting rope 1022 passes through the through holes 1025. The reinforcing connecting rope 1022 can be pulled and slid and secured inside the through holes 1025, which facilitates the reinforcement installation and use.
[0029] To facilitate the tightening and securing of the reinforcing connecting rope 1022 within the through hole 1025 using an elastic reinforcing component, in this embodiment, preferably, the elastic reinforcing component includes a mounting groove 1026 located inside the fixed connecting post 1023 on the side of the through hole 1025. A dental occlusal plate 1027 is disposed inside the mounting groove 1026, with its surface in contact with the surface of the reinforcing connecting rope 1022. A compression spring 1020 is adhesively bonded to the connection points between the inner ends of the dental occlusal plate 1027 and the bottom of the mounting groove 1026, thereby tightening the reinforcing rope. After the connecting rope 1022 is tightened inside the through hole 1025, the deformation of the compression spring 1020 causes the tooth occlusal plate 1027 to be pressed tightly inside the mounting groove 1026 until the tooth occlusal plate 1027 is firmly pressed and engaged on the surface of the reinforcing connecting rope 1022 for reinforcement. Pull rods 1024 slide on both sides of the fixed connecting post 1023. The end of the pull rod 1024 is fixed to the middle position of one side of the tooth occlusal plate 1027 by thread rotation, so that the tooth occlusal plate 1027 can be opened by pulling the pull rod 1024 during disassembly, thereby opening the reinforcing connecting rope 1022.
[0030] In order to facilitate the stable and elastic compression of the dental occlusal plate 1027 by means of the limiting sliding assembly, in this embodiment, preferably, the limiting sliding assembly includes limiting sliding grooves 1029 formed at both ends of the mounting groove 1026, and limiting sliders 1028 are integrally provided at both ends of the dental occlusal plate 1027. The limiting sliders 1028 are slidably connected to the inside of the limiting sliding grooves 1029, so that when the dental occlusal plate 1027 moves elastically inside the mounting groove 1026, it can drive the limiting sliders 1028 to slide within the limiting sliding grooves 1029, making it easy to move and compress the dental occlusal plate 1027 stably.
[0031] The anti-slip and wear-resistant mechanism includes anti-slip and wear-resistant components disposed on the surface of the polyurethane waterproof insulating colloid 103. When the dipped glove body 100 is worn, the wear-resistant and anti-slip protrusions 1031 provide anti-slip and wear-resistant treatment, which reduces the surface friction damage to the polyurethane waterproof insulating colloid 103, improves the anti-slip and wear-resistant protection effect of the dipped glove body 100 after wearing, and extends the service life of the dipped glove body 100.
[0032] To facilitate wear-resistant protection of the polyurethane waterproof insulating gel 103 surface during use using the anti-slip and wear-resistant component, and to provide effective waterproof and insulating protection, in this embodiment, preferably, the anti-slip and wear-resistant component includes an integrally formed wear-resistant and anti-slip protrusion 1031 on the outer surface of the polyurethane waterproof insulating gel 103. The surface of the wear-resistant and anti-slip protrusion 1031 has an arc-shaped structure, which prevents the surface of the dipped glove body 100 from being worn and handled by the wear-resistant and anti-slip protrusion 1031 when it comes into contact with the object, thus reducing the risk of friction damage to the polyurethane waterproof insulating gel 103, providing effective waterproof and insulating protection, and extending its service life.
[0033] The working principle and usage process of this utility model: When using this waterproof and heat-insulating PU insulating dipped glove, the hand is directly put through the connecting sleeve 102 and the main glove body 101 is worn on the hand. After wearing, it is pressed tightly by the elastic band 104. During use, the polyurethane waterproof insulating gel 103 facilitates waterproof and insulating protection, while the heat-insulating protective sleeve 105 facilitates heat insulation protection. When wearing and using it, the wear-resistant and anti-slip protrusions 1031 on the surface of the main glove body 101 come into contact with the surface of the object. This makes it easy for the wear-resistant and anti-slip protrusions 1031 to effectively protect the surface of the polyurethane waterproof insulating gel 103 from wear, and it is not easy for the polyurethane waterproof insulating gel 103 to be directly contacted and rubbed and damaged. At the same time, it facilitates effective anti-slip use, improves the anti-slip and wear-resistant protection effect of the dipped glove body 100 after wearing, and extends the service life of the dipped glove body 100.
[0034] Then, after the rubber-coated glove body 100 is worn and tightened by the elastic band 104, the pull rod 1024 is pulled, and the reinforcing connecting rope 1022 slides inside the through hole 1025, closing the fixing connecting post 1023 on the surface of the connecting sleeve 102. This continues until the reinforcing connecting rope 1022 is inside the through hole 1021 and pulled tightly against the wrist. At this time, the pull rod 1024 is released, and the deformation of the compression spring 1020 causes the dental occlusal plate 1027 to slide inside the mounting groove 1026. When the dental occlusal plate 1027 slides, it causes the limiting slider 1028 to slide within the limiting groove 1029, thereby stably pressing the dental occlusal plate 1027 onto the surface of the reinforcing connecting rope 1022 for reinforcement and installation. After the two reinforcing connecting ropes 1022 are fixed, the rubber-coated glove body 100 is reinforced for wearing and use, and it remains stably fitted even after long-term use, improving the reinforcement and fixation of the rubber-coated glove body 100 during wear.
[0035] Although embodiments of the present invention have been shown and described (see the detailed description above), it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A waterproof and heat-insulating PU insulating dipped glove, comprising a dipped glove body (100), wherein the dipped glove body (100) includes a main glove body (101), a connecting sleeve (102) integrally provided at the bottom end of the main glove body (101), an elastic band (104) provided on the surface of the connecting sleeve (102), a heat-insulating protective sleeve (105) provided inside the main glove body (101), and a polyurethane waterproof insulating gel (103) provided on the outer surface of the main glove body (101), characterized in that: The dipping glove body (100) is also provided with The reinforced wearing mechanism comprises two wearing reinforcing components arranged at the inner bottom end of the connecting sleeve (102), and the end connecting portions of the two wearing reinforcing components are provided with a through connecting component, and the two sides of the inner portion of the through connecting component are provided with elastic reinforcing components, and the two ends of the elastic reinforcing components are provided with limiting sliding components. The anti-skid wear-resistant mechanism comprises an anti-skid wear-resistant component arranged on the surface of the polyurethane waterproof insulating rubber (103).
2. The waterproof and heat-insulating PU insulating dipped glove according to claim 1, characterized in that: The wearing reinforcing component comprises two through holes (1021) formed at the inner bottom end of the connecting sleeve (102), and the inner portion of the through hole (1021) is provided with a reinforcing connecting rope (1022), and the end portion of the reinforcing connecting rope (1022) is connected with the top end of the through hole (1021) through thread sewing.
3. The waterproof and thermal insulated PU insulated dipped glove according to claim 2, characterized in that: The through connecting component comprises a fixed connecting column (1023) arranged at the connecting portion of the two reinforcing connecting ropes (1022), and the inner portion of the fixed connecting column (1023) is provided with two through holes (1025), and the reinforcing connecting rope (1022) penetrates into the inner portion of the through hole (1025).
4. The waterproof and thermal insulated PU insulated dipped glove according to claim 3, characterized in that: The elastic reinforcing component comprises a mounting groove (1026) arranged in the inner portion of the fixed connecting column (1023) on the side of the through hole (1025), and the inner portion of the mounting groove (1026) is provided with a tooth clenching plate (1027), and the surface of the tooth clenching plate (1027) is in contact with the surface of the reinforcing connecting rope (1022), and the inner surface of the tooth clenching plate (1027) is connected with the inner bottom end of the mounting groove (1026) through thread sewing.
5. The waterproof and thermal insulated PU insulating dipped glove according to claim 4, characterized in that: The two sides of the fixed connecting column (1023) are slidably provided with a pull rod (1024), and the end portion of the pull rod (1024) is threadedly and rotationally fixed with the middle position of one side of the tooth clenching plate (1027).
6. The waterproof and thermal insulated PU insulating dipped glove according to claim 4, characterized in that: The limiting sliding component comprises a limiting sliding groove (1029) arranged at the two ends of the mounting groove (1026), and the two ends of the tooth clenching plate (1027) are integrally provided with a limiting sliding block (1028), and the limiting sliding block (1028) is slidably connected with the inner portion of the limiting sliding groove (1029).
7. The waterproof and thermal insulated PU insulated dipped glove according to claim 1, characterized in that: The anti-skid wear-resistant component comprises a wear-resistant anti-skid protrusion (1031) integrally arranged on the outer surface of the polyurethane waterproof insulating rubber (103), and the surface of the wear-resistant anti-skid protrusion (1031) is in arc structure.