Thermal insulation glove
By designing multiple cavities and a rotatable connection, the problem of poor flexibility in the use of existing thermal gloves has been solved, resulting in thermal gloves that are flexible to operate and highly efficient in insulation, suitable for home kitchens and the baking industry.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-02
- Publication Date
- 2026-04-10
AI Technical Summary
Existing thermal gloves have a simple structure, poor flexibility in use, and are difficult to adapt to different hand shapes and operational needs, especially when grasping kitchen utensils of different sizes.
A heat-insulating glove has been designed, comprising a front panel, a back panel, and a connecting part. The first accommodating cavity is for the thumb, and the second accommodating cavity is for the other fingers. The connecting part allows the thumb to twist left and right. The outer side of the back panel has a protrusion to enhance anti-slip and heat insulation performance. The connecting part has an elastic structure to adapt to different hand shapes and has a hanging design for easy storage.
It improves the flexibility and ease of use of gloves, allowing them to open and close at multiple angles to accommodate the gripping of kitchen utensils of different sizes. It also enhances heat insulation and anti-slip properties, while being simple in structure, low in cost, and aesthetically pleasing.
Smart Images

Figure CN224098809U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a glove technical field especially, relate to a temperature insulation glove. BACKGROUND
[0002] The temperature insulation glove is suitable for family kitchen and baking industry, can be heat insulation, prevent scalding.
[0003] Patent CN208957045U a silica gel glove, the palm-shaped silica gel glove, the whole palm is covered, only two hands can be matched to take things, the thumb and other fingers cannot be flexibly matched, the finger flexibility is poor when using. Patent CN217791574U a novel silica gel anti-scald glove, the duckbill-shaped silica gel anti-scald glove, the opening angle between the two clamping parts is limited, the thumb and four fingers are opened at a large angle, the fingers are easily tired, and the clamping angle of the two clamping surfaces is not maintained when the fingers are pulled, so it can only be used to grasp small-thickness objects such as baking trays, dishes, etc., and is not suitable for large-thickness objects such as soup bowls, etc. When grasping the dishes, the opening angle is small, and the food in the dishes is easily contacted, so the hygiene cannot be guaranteed. SUMMARY
[0004] The utility model aims at providing a temperature insulation glove to solve the problems of poor flexibility and inconvenient operation of the existing gloves.
[0005] To solve the above problems, the utility model adopts the following technical scheme:
[0006] The utility model discloses a temperature insulation glove, including front piece, back piece and connecting portion, the back piece is set in two sides of the connecting portion in a continuous mode, the front piece is set on the back piece and forms first accommodating cavity and second accommodating cavity, the back piece and the front piece form the insertion port to one end close to the connecting portion, the width of the insertion port of the first accommodating cavity is less than the width of the insertion port of the second accommodating cavity.
[0007] Further, the first accommodating cavity is a thumb accommodating cavity, and the second accommodating cavity is an other-finger accommodating cavity.
[0008] Further, the center width of the connecting portion is less than or equal to the width of the insertion port of the first accommodating cavity, and after wearing the temperature insulation glove, the thumb can be twisted left and right within a certain range relative to other fingers, so that the flexibility of finger operation is increased.
[0009] Further, the outer side of the back piece is provided with a protrusion, which not only plays a role of anti-skid, but also increases the heat conduction path and improves the heat insulation effect of the glove.
[0010] Further, the protrusions are in a meander shape.
[0011] Further, the connecting part comprises a middle part and protruding parts, the middle part facilitates the thumb to twist left and right relative to the fingers, and the protruding parts can increase the temperature insulation area and effectively prevent the palm from contacting the tableware.
[0012] Further, the connecting part is in an elastic structure or a pleated structure, and can be stretched or contracted to adjust the length and adapt to different sizes of hands.
[0013] Further, the temperature insulation glove is made of a silica gel material.
[0014] Further, the front sheet, the back sheet and the connecting part are integrally formed.
[0015] Further, the temperature insulation glove further comprises a hanging part, which facilitates storage of the temperature insulation glove.
[0016] The temperature insulation glove can improve the flexibility of use, is convenient to operate, can adapt to the multi-angle free opening and closing between the thumb and other fingers, and the fingers are not prone to fatigue. The temperature insulation glove can not only grasp a baking tray, but also can hold a soup bowl, and the application scenarios of the temperature insulation glove are enriched. The temperature insulation glove can be horizontally unfolded, the fingers are convenient to insert into the glove and easy to put on and take off. The protrusion design of the temperature insulation glove can increase the friction and enhance the temperature insulation performance. The temperature insulation glove is simple in structure and low in manufacturing cost, and the appearance design is combined with the structural characteristics of the temperature insulation glove, and the ornamental property is improved. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1 Fig. 1 is a front view of an unfolded state of a temperature insulation glove according to an embodiment of the present application.
[0018] Figure 2 Fig. 2 is a back view of the unfolded state of the temperature insulation glove according to the embodiment of the present application.
[0019] Figure 3 Fig. 3 is a left view of the unfolded state of the temperature insulation glove according to the embodiment of the present application.
[0020] Figure 4 Fig. 4 is a front view of a bent state of the temperature insulation glove according to the embodiment of the present application.
[0021] Figure 5 Fig. 5 is a back view of the bent state of the temperature insulation glove according to the embodiment of the present application.
[0022] Figure 6 Fig. 6 is a back view of another bent state of the temperature insulation glove according to the embodiment of the present application.
[0023] Figure 7 Fig. 7 is a state view of using the temperature insulation glove according to the embodiment of the present application.
[0024] Figure 8 Left view of a state of using an embodiment of the thermal insulation glove of this utility model.
[0025] Figure 9 This is a schematic diagram illustrating another state of the thermal insulation gloves according to an embodiment of the present invention.
[0026] In the figure: 1. First accommodating cavity; 101, 201. Back panel; 102, 202. Front panel; 103, 203. Protrusion; 2. Second accommodating cavity; 3. Connecting part; 301. Middle part; 302. Protrusion; 4. Suspension part. Detailed Implementation
[0027] The following description is intended to disclose the present invention so that those skilled in the art can implement it. The preferred embodiments described below are merely examples, and other obvious variations will occur to those skilled in the art. The basic principles of the present invention defined in the following description can be applied to other embodiments, variations, improvements, equivalents, and other technical solutions that do not depart from the spirit and scope of the present invention.
[0028] Those skilled in the art should understand that, in the disclosure of this utility model, the terms "longitudinal," "lateral," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," and "outer," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, the above terms should not be construed as limitations on this utility model.
[0029] It is understood that the term "a" should be understood as "at least one" or "one or more", that is, in one embodiment, the number of an element can be one, while in another embodiment, the number of the element can be multiple, and the term "a" should not be understood as a limitation on the number.
[0030] A type of heat-insulating glove, such as Figures 1-3 As shown, the device includes front panels 102 and 202, back panels 101 and 201, and a connecting portion 3. The back panels 101 and 201 are continuously arranged on both sides of the connecting portion 3. The front panels 102 and 202 are disposed on the back panels 101 and 201 to form a first receiving cavity 1 and a second receiving cavity 2. An insertion port is formed at one end of the back panels 101 and 201 and the front panels 102 and 202 near the connecting portion 3. The width of the insertion port of the first receiving cavity 1 is smaller than the width of the insertion port of the second receiving cavity 2.
[0031] The front sheet 102, 202 is arranged to overlap the back sheet 101, 201, and can cover the back sheet 101, 201 entirely or partially. The back sheet 101, 201 and the front sheet 102, 202 are connected at one end and both sides of the connecting part 3 to form a sealed end, and are connected at the other end of the connecting part 3 to form a finger insertion port. When the connecting part 3 is in a flat state without bending, the first accommodating cavity 1 and the second accommodating cavity 2 are respectively arranged at both sides of the connecting part 3, and the two finger insertion ports are opposite each other across the connecting part 3.
[0032] When the front sheet 102, 202 is arranged to overlap the back sheet 101, 201, the front sheet 102, 202 is formed to have an arc shape at one end and both sides away from the connecting part 3, and the size of the accommodating cavity is designed to allow corresponding fingers to be inserted with a margin. The first accommodating cavity 1 is arranged as a thumb accommodating cavity to allow a thumb to be inserted with a margin, and the second accommodating cavity 2 is arranged as a finger accommodating cavity other than the thumb to allow a finger other than the thumb to be inserted with a margin. The width of the insertion port of the first accommodating cavity 1 is 2.5-4 cm, and the width of the insertion port of the second accommodating cavity 2 is 4-8.5 cm. Preferably, the width of the insertion port of the first accommodating cavity 1 is 2.5 cm, and the width of the insertion port of the second accommodating cavity 2 is 4 cm.
[0033] The length direction is orthogonal to the width direction, that is, the direction in which the back sheet 101, 201 is connected to the connecting part 3 is the length direction, as shown in the schematic view. Figures 7-8 As shown in the schematic view, the length of the first accommodating cavity 1 is one to two lengths of a thumb, and the length of the second accommodating cavity 2 is two to three lengths of a middle finger. When a thumb is worn in the first accommodating cavity 1 and four fingers are worn in the second accommodating cavity 2 and contact each other, the connecting part 3 can approximately fit the web space. The length of the first accommodating cavity 1 is 2.5-4.5 cm, the length of the second accommodating cavity 2 is 3.5-10 cm, and the length of the connecting part 3 is 6-8 cm. Preferably, the length of the first accommodating cavity 1 is 2.5 cm, the length of the second accommodating cavity 2 is 3.5 cm, and the length of the connecting part 3 is 5 cm. The connecting part 3 can also be an elastic member or a pleated member, which can be stretched or contracted to adjust the length to adapt to different sizes of hands.
[0034] The connecting part 3 can include a middle part 301, which can be rectangular in shape. The width of the rectangle is less than the width of the insertion port of the second accommodating cavity 2, and the width of the rectangle is less than or equal to the width of the insertion port of the first accommodating cavity 1. The middle part 301 can also be other shapes such as trapezoidal or hourglass-shaped, and the central width of the middle part 301 is less than the width of the insertion port of the second accommodating cavity 2, and the central width of the middle part 301 is less than or equal to the width of the insertion port of the first accommodating cavity 1. After wearing the temperature-insulating gloves, the thumb can be twisted left and right within a certain range relative to other fingers, increasing the flexibility of finger operation.
[0035] The connecting part 3 can further comprise a protruding part 302, i.e. the protruding part 302 is arranged on both sides of the middle part 301, for example in a fishbone shape, as shown in Figure 2 The fishbone-shaped middle part 301 has a width smaller than that of the second accommodating cavity 2, and the middle part 301 facilitates the left and right twisting of the thumb relative to the fingers, while the two side protruding parts 302 can increase the temperature insulation area and effectively prevent the palm from contacting the tableware.
[0036] As shown in Figures 4-9 The glove can be freely bent, allowing multi-angle free opening and closing between the thumb and the remaining fingers. Not only can it hold a baking tray, but also can hold a soup bowl, enriching the application scenarios of the temperature insulation glove.
[0037] The outer surface of the back sheet 101, 201 is formed with a protrusion 103, 203, which can be a Huazi shape or a mosquito coil type. The width of the protrusion 103, 203 is substantially uniform, and the length of the protrusion 103, 203 is longer when the area is the same. Through the design of the protrusion 103, 203, not only can the anti-slip effect be achieved, but also the heat conduction path is increased, improving the heat insulation effect of the glove.
[0038] The temperature insulation glove only puts the fingers into the accommodating cavity and leaves a margin for wearing, so it is very easy to put on and take off, and usually it can be done with one hand.
[0039] The temperature insulation glove can be designed in a fish shape, the first accommodating cavity 1 is a fish tail, the second accommodating cavity 2 is a fish head, and the connecting part 3 is a fish bone, which has a more ornamental appearance.
[0040] The back sheet 101, 201, the front sheet 102, 202 and the connecting part 3 can be made of silica gel, and can also be made of other temperature insulation materials.
[0041] The back sheet 101, 201, the front sheet 102, 202 and the connecting part 3 can be integrally formed.
[0042] In addition, the temperature insulation glove can also be provided with a hanging part 4 for conveniently storing the temperature insulation glove. The hanging part 4 can be a hanging ring attached to the glove, or a hole provided on the glove for hanging. In the above embodiment, as shown in Figure 2 In combination with the fish-shaped overall design of the temperature insulation glove, the hanging part 4 can be a hole, presenting a fish mouth. When worn on the hand, it can be directly hung on a hook, and then the fingers are pulled out of the accommodating cavity, without the need for other assistance, and the glove can be put on and taken off with one hand. The function and the appearance design are integrated, improving the ornamental appearance of the product.
[0043] The use method of the temperature insulation glove will be described below.
[0044] As shown in Figures 7-9As shown, the thumb is put into the first accommodating cavity 1, and the other fingers are put into the second accommodating cavity 2, the thumb and the other fingers are folded, the connecting part 3 is bent along with the action of the fingers, so that the heat insulation gloves are worn on the hand, when the back sheets 101, 201 of the first accommodating cavity 1 and the second accommodating cavity 2 are abutted together, one side of the connecting part 3 is approximately attached to the web. Then, the user takes the kitchen utensils such as baking tray, soup bowl and the like with the hand wearing the heat insulation gloves. Since the accommodating cavities cover the fingers, the opening and closing of the thumb and the four fingers drives the connecting part 3 to bend and deform, the back sheets 101, 201 contact the kitchen utensils, since the kitchen utensils are clamped between the back sheets 101, 201 as the opposite faces of the accommodating cavities, so the kitchen utensils can be prevented from scalding the hand.
[0045] It should be understood by those skilled in the art that the above description and the embodiments of the present application shown in the drawings are only examples and do not limit the present application. The purpose of the present application has been completely and effectively achieved. The function and structural principle of the present application have been demonstrated and described in the embodiments, and the embodiments of the present application can be any deformation or modification without departing from the described principle.
Claims
1. An insulating glove, characterized by: The glove comprises a front sheet (102, 202), a back sheet (101, 201) and a connecting part (3), the back sheet (101, 201) is arranged on both sides of the connecting part (3) in a continuous manner, the front sheet (102, 202) is arranged on the back sheet (101, 201) to form a first accommodating cavity (1) and a second accommodating cavity (2), the back sheet (101, 201) and the front sheet (102, 202) form an insertion opening at one end close to the connecting part (3), the width of the insertion opening of the first accommodating cavity (1) is smaller than that of the second accommodating cavity (2).
2. The temperature-insulating glove according to claim 1, characterized in that The first accommodating cavity (1) is a thumb accommodating cavity, and the second accommodating cavity (2) is a finger accommodating cavity.
3. The temperature-insulating glove according to claim 1, wherein The central width of the connecting part (3) is less than or equal to the width of the insertion opening of the first accommodating cavity (1).
4. The temperature-insulating glove according to claim 1, wherein The outer side of the back sheet (101, 201) is provided with a protrusion (103, 203).
5. The temperature-insulating glove according to claim 4, characterized in that The protrusion (103, 203) is a zigzag pattern.
6. The temperature-insulating glove according to claim 1, wherein The connecting part (3) comprises a middle part (301) and a protruding part (302).
7. The temperature-insulating glove according to claim 1, wherein The connecting part (3) is an elastic structure or a pleated structure.
8. The temperature-insulating glove according to claim 1, wherein The temperature insulation glove is made of silica gel material.
9. The temperature-insulating glove according to claim 1, wherein The front sheet (102, 202), the back sheet (101, 201) and the connecting part (3) are integrally formed.
10. The temperature-insulating glove of claim 1, wherein Further comprising a hanging part (4). Further comprising a hanging part (4).
Citation Information
Patent Citations
Novel silica gel anti-scalding glove
CN217791574U