Oven glove
By setting up a connecting cylinder and V-shaped pleat design at the entrance of the oven gloves and combining the triple insulation structure, the problem of heat entering the oven gloves in high temperature environments is solved, achieving better thermal insulation and hand protection.
Patent Information
- Application Number
- CN202422272724.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-18
- Publication Date
- 2025-07-22
- Estimated Expiration
- 2034-09-18
AI Technical Summary
Existing oven gloves are prone to heat entering through the entrance in high temperature environments, resulting in hand discomfort and potential scalds.
The connecting tube is set at the entrance of the glove body, and a connecting tube made of polyester fabric and coated with thermal insulation coating. Combined with the V-shaped pleated design, the elastic band tightly shrinks to the wrist or arms after wearing. At the same time, the glove is equipped with a triple thermal insulation structure: the outer layer is a thermal insulation cotton cloth, the first thermal insulation layer is a thermal insulation air bag, the second thermal insulation layer is a thermal insulation cotton, and the inner layer is a graphene-containing chemical fiber cloth, which is fixed by acrylic acid.
Effectively block heat from entering the gloves, improving the thermal insulation performance of gloves, suitable for use in high-temperature environments to prevent scalding.
Smart Images

Figure CN223125906U_ABST
Abstract
Description
Technical Field
[0001] This application belongs to the technical field of gloves, and particularly relates to an oven glove. Background Art
[0002] The statements in this part only provide background technical information related to this application and do not necessarily constitute prior art.
[0003] An oven glove is a protective article designed specifically to protect hands when using heating devices such as ovens and microwave ovens.
[0004] Patent Publication (Announcement) No.: CN207531936U discloses an oven heat-insulating glove. By arranging a first heat-insulating layer inside the glove body and a second heat-insulating layer outside the thumb web, the high-temperature durability at the thumb web position of the glove body is effectively increased, and the friction at the palm of the existing glove and the abrasion resistance at the back of the hand are effectively increased. However, the inlet of the glove body is designed as a conventional large-opening design. Although this is convenient for wearing, when the temperature in the oven is relatively high, wearing this oven glove to operate, the heat in the oven easily enters from the inlet of the glove body, affecting the temperature inside the glove body and easily causing discomfort to the hand. Therefore, it is necessary to design an oven glove that can prevent heat from entering the glove body from the inlet, to prevent the hand from being harmed by high temperature. Summary of the Utility Model
[0005] To solve the above problems, this application proposes an oven glove.
[0006] The purpose of this application is to provide an oven glove. By arranging a connecting cylinder at the inlet of the glove body, after wearing, the elastic band tightly contracts at the wrist or the arm, so that heat can be prevented from entering the glove from the inlet of the glove body. At the same time, the V-shaped fold of the connecting cylinder can have a V-shaped buffer space to block heat from entering the glove body from the connection between the inlet and the V-shaped fold, achieving a heat-insulating effect, and thus being suitable for use in a high-heat environment such as an oven.
[0007] To achieve the above purpose, this application adopts the following technical solutions:
[0008] An oven glove, comprising: a glove body. The glove body is a mitten. A connecting cylinder is provided at the inlet of the glove body. The connecting cylinder is a closed cylindrical shape. An elastic band is provided at one end of the connecting cylinder. A V-shaped fold is provided at the end of the connecting cylinder away from the elastic band. The V-shaped fold is concave towards the inlet of the glove. One end of the V-shaped fold is fixedly connected to the inlet of the glove body. The connecting cylinder is made of polyester fabric. Heat-insulating paint is coated on the surfaces of the connecting cylinder and the elastic band.
[0009] Furthermore, the glove body is divided from outside to inside into an outer layer, a first heat insulation layer, a second heat insulation layer and an inner layer. The outer layer is a protective layer, which is made of heat-insulating cotton cloth. The first heat insulation layer is a heat-insulating air bag. The second heat insulation layer is heat-insulating cotton. The heat-insulating air bag is adhered to the second heat insulation layer by acrylate. The outer layer is sewn to the second heat insulation layer through the boundary of the heat-insulating air bag. The inner layer is made of chemical fiber cloth containing graphene. The inner layer and the second heat insulation layer are adhered and fixed by acrylate.
[0010] Furthermore, the heat-insulating air bag is diamond-shaped.
[0011] Furthermore, the heat-insulating air bag is made of polyester fabric coated with a waterproof coating, and the heat-insulating air bag is filled with argon.
[0012] Furthermore, the thickness of the heat-insulating air bag is greater than the thickness of the outer layer.
[0013] Compared with the prior art, the beneficial effects of the present application are as follows:
[0014] 1. By providing a connecting cylinder at the inlet of the glove body in the present application, after wearing, the elastic band tightly shrinks at the wrist or the arm, so that heat can be prevented from entering the glove through the inlet of the glove body. At the same time, the V-shaped fold of the connecting cylinder can have a V-shaped buffer space to block heat from entering the glove body at the connection between the inlet and the V-shaped fold, achieving a heat-insulating effect, so that it is suitable for use in a high-heat environment such as an oven.
[0015] 2. By reforming the interior of the glove body in the present application, through a triple heat-insulating method, the two layers of heat-insulating cotton of the outer layer and the second heat-insulating layer are used for heat insulation, and the heat-insulating air bag of the first heat-insulating layer further conducts heat insulation, improving the heat-insulating effect of the glove body. The heat-insulating effect is better, and it is suitable for use in a high-temperature environment such as an oven. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 is a three-dimensional schematic diagram of the present application;
[0017] Figure 2 is a schematic diagram of the palm side of the present application;
[0018] Figure 3 is a schematic diagram of the structure at the inlet of the present application;
[0019] Figure 4 is a schematic diagram of the fabric of the present application;
[0020] Among them: 1. Glove body, 2. Connecting cylinder, 3. Elastic band, 4. Inlet, 5. V-shaped fold, 6. Polyester fabric, 7. Heat-insulating coating, 8. Outer layer, 9. First heat-insulating layer, 10. Second heat-insulating layer, 11. Inner layer. Detailed implementation manners
[0021] The present application will be further described below in conjunction with the accompanying drawings and embodiments. Embodiment 1
[0022] An oven glove, as Figures 1-4 shown, includes: a glove body 1. The glove body 1 is a mitten. A connecting cylinder 2 is provided at the inlet 4 of the glove body 1. The connecting cylinder 2 is a cylindrical shape with a closed end. One end of the connecting cylinder 2 is provided with an elastic band 3. By tightening the inlet 4 with the elastic band 3, the elastic band 3 is made to closely adhere to the arm, so that the inlet 4 of the glove will not let hot air in.
[0023] As Figure 3 shown, a V-shaped fold 5 is provided at the end of the connecting cylinder 2 away from the elastic band 3. The V-shaped fold 5 is concave to the inlet 4 of the glove. On the one hand, the V-shaped fold 5 can have a V-shaped buffer space to block heat from entering the glove body 1 at the connection between the inlet 4 and the V-shaped fold 5, achieving an insulating effect and making up for the problem that heat is likely to enter at the connection. On the other hand, it can facilitate the expansion and contraction of the connecting cylinder 2, making it convenient to wear the glove body 1. One end of the V-shaped fold 5 is fixedly connected to the inlet 4 of the glove body 1, and the fixed connection is made by sewing with a sealing stitch to prevent air leakage. The connecting cylinder 2 is made of polyester fabric 6, and the surfaces of the connecting cylinder 2 and the elastic band 3 are coated with heat-insulating paint 7 for heat insulation.
[0024] As Figure 4 shown, the glove body 1 is divided from the outside to the inside into an outer layer 8, a first heat-insulating layer 9, a second heat-insulating layer 10, and an inner layer 11. The outer layer 8 is a protective layer, and the outer layer 8 is made of heat-insulating cotton cloth. The first heat-insulating layer 9 is a heat-insulating air pocket. The second heat-insulating layer 10 is heat-insulating cotton. The heat-insulating air pocket is adhered to the second heat-insulating layer 10 by acrylate. The outer layer 8 is sewn to the second heat-insulating layer 10 along the boundary of the heat-insulating air pocket. In this way, the sewing line of the heat-insulating air pocket will be left on the surface of the outer layer 8, and the anti-slip ability of the outer layer 8 can also be improved through the sewing line of the heat-insulating air pocket. The inner layer 11 is made of chemical fiber cloth containing graphene, and the inner layer 11 and the second heat-insulating layer 10 are adhered and fixed by acrylate. In this way, the glove body 1 can be heat-insulated in a three-layer heat-insulating manner, maximizing the heat-insulating ability of the glove body 1, being suitable for use in an oven. And acrylate has a good high-temperature resistance effect to prevent the adhered fabrics from coming loose. The chemical fiber cloth containing graphene has an antibacterial and odor-proof effect, improving the comfort of the glove body 1.
[0025] The heat-insulating air pocket is diamond-shaped, and the sewing line on the outer layer 8 can be sewn along the diamond edge to form a diamond-shaped anti-slip line, with good anti-slip effect.
[0026] The heat-insulating air bag is made of polyester fabric coated with a waterproof coating, and argon gas is filled in the heat-insulating air bag, and the heat-insulating effect of argon gas is better.
[0027] The thickness of the heat-insulating air bag is greater than that of the outer layer 8, and the heat-insulating effect is better.
[0028] There are multiple heat-insulating air bags, which are evenly distributed on the surface of the third heat-insulating layer.
[0029] In the technical solution of the present application, by providing a connecting cylinder 2 at the inlet 4 of the glove body 1, and through the elastic band 3 of the connecting cylinder 2, after wearing, the elastic band 3 tightly contracts at the wrist or the arm, so as to prevent heat from entering the glove through the inlet 4 of the glove body 1. After high temperature enters, it is easy to affect the safety of the hand, that is, it is easy to scald the hand. At the same time, by transforming the inside of the glove body 1, heat insulation is carried out through the two layers of heat-insulating cotton of the outer layer 8 and the second heat-insulating layer 10. At the same time, the heat-insulating air bag of the first heat-insulating layer 9 is added to further carry out heat insulation, improving the heat-insulating effect of the glove body 1. In this way, the triple heat-insulating method has a better heat-insulating effect and is suitable for use in a high-temperature environment such as an oven.
[0030] Although the specific implementation manners of the present application are described above in conjunction with the accompanying drawings, it is not a limitation to the protection scope of the present application. Those skilled in the art should understand that based on the technical solution of the present application, various modifications or deformations that can be made by those skilled in the art without creative efforts are still within the protection scope of the present application.
Claims
1. An oven glove, characterized in that it comprises: Glove body, the glove body is a mitten, a connecting cylinder is provided at the inlet of the glove body, the connecting cylinder is a closed cylindrical shape, an elastic band is provided at one end of the connecting cylinder, and a V-shaped fold is provided at the end of the connecting cylinder away from the elastic band. The V-shaped fold is recessed to the inlet of the glove, one end of the V-shaped fold is fixedly connected to the inlet of the glove body, the connecting cylinder is made of polyester fabric, and a heat-insulating coating is applied to the surfaces of the connecting cylinder and the elastic band.
2. The oven glove according to claim 1, wherein, The glove body is divided into an outer layer, a first heat-insulating layer, a second heat-insulating layer and an inner layer from outside to inside. The outer layer is a protective layer and is made of heat-insulating cotton cloth. The first heat-insulating layer is a heat-insulating air bag, and the second heat-insulating layer is heat-insulating cotton. The heat-insulating air bag is adhered to the second heat-insulating layer by acrylate. The outer layer is sewn to the second heat-insulating layer through the boundary of the heat-insulating air bag. The inner layer is made of chemical fiber cloth containing graphene, and the inner layer and the second heat-insulating layer are adhered and fixed by acrylate.
3. The oven glove according to claim 2, characterized in that, The heat-insulating air bag is diamond-shaped.
4. The oven glove according to claim 2, characterized in that, The heat-insulating air bag is made of polyester fabric coated with a waterproof coating, and argon is filled in the heat-insulating air bag.
5. The oven glove according to claim 2, characterized in that, The thickness of the heat-insulating air bag is greater than the thickness of the outer layer.
Citation Information
Patent Citations
Oven gloves that insulate against heat
CN207531936U