Clean heat insulation pad for kitchen gas cooking bench

By designing a kitchen gas stove cleaning and heat insulation pad that includes fiberglass cloth, a heat insulation layer, and a cleaning layer, the problem of difficult-to-clean stains and high-temperature transmission on kitchen gas stoves has been solved, achieving rapid cleaning and effective heat insulation.

CN224230106UActive Publication Date: 2026-05-12ANHUI MEIKAIAO NEW MATERIAL CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ANHUI MEIKAIAO NEW MATERIAL CO LTD
Filing Date
2025-04-14
Publication Date
2026-05-12

AI Technical Summary

Technical Problem

Kitchen gas stoves are prone to getting stained and are difficult to clean during use, and the high temperature heat can easily transfer to the surrounding area, causing damage to items.

Method used

Design a cleaning and heat-insulating mat for kitchen gas stoves, including a mat body composed of fiberglass cloth, a heat-insulating layer, a cleaning layer, and a composite bottom layer. The mat body has round holes and a composite edge layer, and has self-cleaning and heat-insulating functions.

Benefits of technology

It achieves rapid stain removal and effective heat isolation, reducing cleaning time and the risk of item damage, keeping the stovetop clean, tidy, and safe.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN224230106U_ABST
    Figure CN224230106U_ABST
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Abstract

A circular hole matched with a burner of a gas stove is formed in a pad body, the pad body comprises glass fiber cloth, a heat insulation layer and a cleaning layer are sequentially arranged above the glass fiber cloth layer, a composite bottom layer is arranged at the bottom of the glass fiber cloth, and composite edge layers are arranged on the periphery of the pad body and the circumferential direction of the circular hole. According to the cleaning heat insulation pad for the kitchen gas cooking bench, the pad body comprises the cleaning layer, the heat insulation layer, the glass fabric and the composite bottom layer which are sequentially arranged from top to bottom, the cleaning work becomes easy and simple through the self-cleaning function of the cleaning layer and the protection function of the composite bottom layer, the cooking bench can be kept clean and tidy only through simple washing, and the service life of the cooking bench is prolonged. And the heat insulation layer enables the pad body to effectively prevent heat generated by the cooking range from being transmitted to the periphery, so that articles around the cooking range are protected from being damaged by high temperature.
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Description

Technical Field

[0001] This utility model relates to the field of kitchenware technology, and in particular to a cleaning and heat-insulating mat for kitchen gas stoves. Background Technology

[0002] In everyday kitchen settings, gas stovetops easily accumulate food scraps, grease, and oily residue during use. Grease adheres to the surface, forming a sticky film that ordinary cleaners struggle to penetrate and break down quickly, often requiring repeated wiping and soaking—a time-consuming and laborious process. Over time, these accumulated stains not only form a thick layer of grime on the stovetop, severely affecting its appearance, making it dull and stained, but also become a breeding ground for bacteria. Furthermore, during cooking, the high temperature of the flame continuously spreads, causing the stovetop itself to heat up rapidly, and the heat also spreads to surrounding areas. Items such as spice containers and plastic tableware placed on the stovetop are prone to deformation and aging, leading to damage. Utility Model Content

[0003] The purpose of this invention is to provide a cleaning and heat-insulating pad for kitchen gas stoves to address the aforementioned shortcomings in the prior art.

[0004] To achieve the above objectives, this utility model provides the following technical solution:

[0005] A cleaning and heat-insulating mat for kitchen gas stoves includes a mat body with a circular hole that mates with the burner of the gas stove. The mat body includes fiberglass cloth, and a heat-insulating layer and a cleaning layer are sequentially arranged on top of the fiberglass cloth layer. A composite bottom layer is arranged at the bottom of the fiberglass cloth, and composite edge layers are arranged around the mat body and around the circular hole.

[0006] The aforementioned kitchen gas stove cleaning and heat insulation pad has mounting holes on the pad body corresponding to the knob.

[0007] The aforementioned kitchen gas stove cleaning and heat insulation mat includes a connecting side, on which a connecting structure is provided, allowing two mats to be combined and connected for use.

[0008] The aforementioned kitchen gas stove cleaning and heat insulation pad also includes an annular sleeve, which is detachably connected to the circular hole.

[0009] The aforementioned kitchen gas stove cleaning and heat insulation pad has an annular side on the annular sleeve, and multiple mounting posts are arranged at intervals along the circumference of the annular side.

[0010] The aforementioned kitchen gas stove cleaning and heat insulation pad has multiple mounting grooves on the composite edge layer of the circular hole. The multiple mounting grooves are arranged sequentially at intervals along the circumference of the circular hole, and the mounting posts can be embedded and fixed in the mounting grooves one by one.

[0011] The aforementioned kitchen gas stove cleaning and heat insulation pad has a mounting groove comprising a connected hemispherical portion and a cylindrical portion, wherein the size of the cylindrical portion is smaller than the size of the hemispherical portion.

[0012] The aforementioned kitchen gas stove cleaning and heat insulation pad has a deformable spherical head at the lower end of the mounting column, which can be inserted from the column part into the hemispherical part.

[0013] In the above technical solution, the kitchen gas stove cleaning and heat insulation pad provided by this utility model has a round hole on the pad body that matches the burner of the gas stove. The pad body includes fiberglass cloth, and a heat insulation layer and a cleaning layer are arranged sequentially on top of the fiberglass cloth layer. A composite bottom layer is arranged at the bottom of the fiberglass cloth. Composite edge layers are arranged around the pad body and around the round hole. Thus, the pad body includes a cleaning layer, a heat insulation layer, fiberglass cloth and a composite bottom layer arranged sequentially from top to bottom. The self-cleaning function of the cleaning layer and the protective function of the composite edge layer make cleaning easy and simple. A simple rinse is all that is needed to keep the stove clean and tidy, greatly saving cleaning time and effort. The heat insulation layer allows the pad body to effectively block the heat generated by the stove from being transferred to the surrounding area, protecting items around the stove from high temperature damage. Attached Figure Description

[0014] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments recorded in this utility model. For those skilled in the art, other drawings can be obtained based on these drawings.

[0015] Figure 1 One of the installation diagrams for a kitchen gas stove cleaning and heat insulation pad provided in this utility model embodiment;

[0016] Figure 2 The second schematic diagram of the installation of the cleaning and heat-insulating pad for kitchen gas stove provided in this embodiment of the utility model;

[0017] Figure 3 This is a schematic diagram of the structure of the pad provided in an embodiment of the present utility model;

[0018] Figure 4 A schematic diagram of the structure of the annular sleeve provided in an embodiment of this utility model;

[0019] Figure 5This is a schematic diagram of the internal structure of the pad provided in an embodiment of the present utility model;

[0020] Figure 6 This is a schematic diagram of the installation of the mounting column provided in an embodiment of the present utility model.

[0021] Explanation of reference numerals in the attached figures:

[0022] 1. Pad; 11. Round hole; 12. Cleaning layer; 13. Insulation layer; 14. Fiberglass cloth; 15. Composite bottom layer; 16. Composite side layer; 17. Mounting hole; 18. Connecting side; 181. Connecting structure; 19. Mounting groove; 191. Hemispherical part; 192. Columnar part; 2. Annular sleeve; 21. Annular side; 22. Mounting column; 221. Spherical head; 3. Gas stove; 31. Burner head. Detailed Implementation

[0023] To enable those skilled in the art to better understand the technical solution of this utility model, the present utility model will be further described in detail below with reference to the accompanying drawings.

[0024] like Figure 1-6 As shown, this utility model provides a cleaning and heat-insulating mat for kitchen gas stoves, including a mat body 1. The mat body 1 has a round hole 11 that mates with the burner head 31 of the gas stove 3. The mat body 1 includes a fiberglass cloth 14. A heat-insulating layer 13 and a cleaning layer 12 are sequentially arranged on the top of the fiberglass cloth 14. A composite bottom layer 15 is arranged at the bottom of the fiberglass cloth 14. Composite edge layers 16 are arranged around the mat body 1 and around the round hole 11.

[0025] Specifically, the shape of the pad 1 can be designed as a rectangle, square, or circle, or other common geometric shapes, to fit different styles and sizes of gas stoves 3. A circular hole 11 is provided on the pad 1. The size of the circular hole 11 matches the burner head 31 and burner head 31 seat of the gas stove 3. When the pad 1 is laid on the gas stove 3, the burner head 31 seat on the gas stove 3 can be located in the circular hole 11. This not only ensures the stability of the stove installation, but also ensures that during the cooking process, the heat can be relatively concentrated and blocked and handled by the pad 1, avoiding the disorderly diffusion of heat and causing adverse effects on the surrounding area of ​​the stove.

[0026] In this embodiment, the pad 1 includes a cleaning layer 12, a heat insulation layer 13, a fiberglass cloth 14 and a composite bottom layer 15 arranged sequentially from top to bottom. The cleaning layer 12, the heat insulation layer 13, the fiberglass cloth 14 and the composite bottom layer 15 can be connected by means of hot pressing or bonding to ensure that the layers are firmly bonded together and that no delamination will occur during long-term use.

[0027] The cleaning layer 12 is located at the top and is made of hydrophobic, oleophobic, and high-temperature resistant polytetrafluoroethylene coating material, preferably with a thickness of 0.05-0.08 mm. During daily cooking, food scraps, oil stains, and grease come into contact with the cleaning layer 12, but due to its hydrophobic and oleophobic properties, it is difficult for these contaminants to adhere to the surface. When cleaning is needed, simply rinsing with water will quickly and thoroughly remove these contaminants, greatly reducing the burden of kitchen cleaning and keeping the stovetop clean and hygienic for a long time.

[0028] The heat insulation layer 13 is disposed below the cleaning layer 12. The heat insulation layer 13 is made of inorganic nanomaterials, preferably with a thickness between 0.03-0.05mm, and has heat insulation and fire-retardant properties. During cooking, the large amount of heat generated by the stove is effectively blocked by the heat insulation layer 13, greatly reducing the transfer of heat to the surrounding area of ​​the stove and reducing the risk of damage to surrounding items due to heat.

[0029] The fiberglass cloth 14 is located below the heat insulation layer 13. As the main supporting structural layer of the pad 1, the fiberglass cloth 14 has a moderate thickness. Preferably, the thickness of the fiberglass cloth 14 is 0.15-0.25mm. The fiberglass cloth 14 has good flexibility and high strength, which allows the cleaning heat insulation pad to fit various stove surfaces when laid. Even if the surface is slightly uneven, it can fit tightly. The high strength ensures that the pad 1 is not easily damaged during long-term use, which greatly extends the service life of the product.

[0030] A composite underlayer 15 is provided at the bottom of the fiberglass cloth 14. The composite underlayer 15 is a polytetrafluoroethylene composite coating filled with inorganic nanomaterials. Preferably, the thickness of the composite underlayer 15 is 0.06-0.1mm. The composite underlayer 15 not only further enhances the heat insulation effect, but also protects the fiberglass cloth 14 from wear and corrosion by the stove surface. Composite edge layers 16 are provided around the pad 1 and around the circular holes 11. The material of the composite edge layers 16 is the same as that of the composite underlayer 15. The composite edge layers 16 protect the edges of the pad 1, preventing the layers from falling apart or being damaged during use due to friction, collision, etc.

[0031] The present invention provides a cleaning and heat insulation pad for three kitchen gas stoves. The pad body 1 has a round hole 11 that mates with the burner 31 of the gas stove 3. The pad body 1 includes a fiberglass cloth 14. A heat insulation layer 13 and a cleaning layer 12 are arranged sequentially on the top of the fiberglass cloth 14. A composite bottom layer 15 is arranged at the bottom of the fiberglass cloth 14. Composite edge layers 16 are arranged around the pad body 1 and around the round hole 11. Thus, the pad body 1 includes a cleaning layer 12, a heat insulation layer 13, a fiberglass cloth 14 and a composite bottom layer 15 arranged sequentially from top to bottom. The self-cleaning function of the cleaning layer 12 and the protective function of the composite edge layer 16 make cleaning easy and simple. A simple rinse is all that is needed to keep the stove clean and tidy, greatly saving cleaning time and effort. The heat insulation layer 13 allows the pad body 1 to effectively block the heat generated by the stove from being transferred to the surrounding area, protecting items around the stove from high temperature damage.

[0032] In this embodiment, preferably, the pad 1 is provided with mounting holes 17 corresponding to the knob. The knob on the gas stove 3 panel is used to control the opening of the gas valve and adjust the firepower. The position and size of the mounting holes 17 are designed according to the position and size of the knobs on common gas stoves 3 to ensure that they can be matched with the knobs. This ensures that the pad 1 covers and protects the stove without interfering with the normal use of the knobs.

[0033] In this embodiment, preferably, the pad 1 includes a connecting side 18, and a connecting structure 181 is provided on the connecting side 18. The connecting structure 181 can realize the combined connection of two pads 1. The connecting structure 181 can be a buckle, Velcro, etc. In this way, the user can combine multiple pads 1 according to the actual size and shape of the gas stove 3 to cover a larger area or adapt to the stove with a special shape, so as to meet the diverse needs of different users. For example, for a gas stove 3 with two burners 31, two pads 1 can be selected and laid on the gas stove 3. The two pads 1 are connected to each other through the connecting structure 181. In this way, when one of them is damaged during use, only one of them needs to be replaced, without replacing both of them.

[0034] In this embodiment, preferably, it also includes an annular sleeve 2, which is detachably connected to the circular hole 11. The annular sleeve 2 is provided with an annular side 21, and a plurality of mounting posts 22 are arranged sequentially along the circumference of the annular side 21. A plurality of mounting grooves 19 are provided on the composite variable layer on the circular hole 11. The plurality of mounting grooves 19 are arranged sequentially at intervals along the circumference of the circular hole 11, and the mounting posts 22 can be embedded and fixed in the mounting grooves 19 one by one.

[0035] The annular sleeve 2 is sized to correspond to the circular hole 11 on the cleaning pad. The annular sleeve 2 possesses a certain degree of flexibility and strength. Its flexibility allows it to adapt to slight shape differences around the circular hole 11 during installation, while its strength ensures that it will not easily break during daily use. An annular side 21 extends outward from the edge of the annular sleeve 2, and multiple mounting posts 22 are distributed sequentially along the circumference of the annular side 21 of the annular sleeve 2. Multiple mounting grooves 19 are provided on the composite edge layer 16 around the circular hole 11. The multiple mounting grooves 19 are sequentially spaced along the circumference of the circular hole 11. During installation, the annular sleeve 2 is brought close to the circular hole 11 of the cleaning pad, and the lower ends of the mounting posts 22 are aligned and inserted into the mounting grooves 19 one by one, thereby fixing the annular sleeve 2 to the composite edge layer of the circular hole 11.

[0036] In this embodiment, preferably, the mounting groove 19 includes a hemispherical portion 191 and a cylindrical portion 192 connected to each other. That is, the connected hemispherical portion 191 and cylindrical portion 192 form the mounting groove 19. The cylindrical portion 192 is located above the hemispherical portion 191. The size of the cylindrical portion 192 is smaller than the size of the hemispherical portion 191. The hemispherical portion 191 presents a hemispherical space with a larger internal size, while the cylindrical portion 192 is a slightly smaller cylindrical channel.

[0037] The lower end of the mounting column 22 is specially provided with a deformable spherical head 221. The spherical head 221 is made of an elastic material and maintains a spherical shape under normal conditions. When subjected to external force, the spherical head 221 can deform, for example, be squeezed into an ellipse or other shapes, and can return to its original spherical shape after the external force is removed.

[0038] When connecting the mounting post 22 to the mounting groove 19, first align the spherical head 221 at the lower end of the mounting post 22 with the cylindrical portion 192 of the mounting groove 19. Since the size of the cylindrical portion 192 is smaller than the size of the spherical head 221 in its normal state, when the spherical head 221 is pressed into the cylindrical portion 192, it will deform due to the pressure from the inner wall of the cylindrical portion 192. With the applied pressure, the spherical head 221 gradually passes through the cylindrical portion 192 and enters the hemispherical portion 191. Once inside the hemispherical portion 191, due to the larger space in the hemispherical portion 191, the pressure on the spherical head 221 disappears, and it returns to its original spherical shape. At this time, since the size of the spherical head 221 is larger than the size of the cylindrical portion 192, the spherical head 221 is stuck inside the hemispherical portion 191 and cannot easily exit from the cylindrical portion 192, thus achieving a tight connection between the mounting post 22 and the mounting groove 19. This connection method ensures the strength of the connection, and the deformable nature of the spherical head 221 makes the installation process relatively easy. When disassembly is required, as long as sufficient external force is applied to deform the spherical head 221 again, the mounting post 22 can be removed from the mounting slot 19.

[0039] The foregoing description only illustrates certain exemplary embodiments of the present invention. Undoubtedly, those skilled in the art can modify the described embodiments in various ways without departing from the spirit and scope of the present invention. Therefore, the above drawings and descriptions are illustrative in nature and should not be construed as limiting the scope of protection of the claims of the present invention.

Claims

1. A cleaning and heat-insulating mat for kitchen gas stove countertops, comprising a mat body, characterized in that, The pad has a circular hole that mates with the burner of the gas stove. The pad includes fiberglass cloth. A heat insulation layer and a cleaning layer are sequentially arranged on top of the fiberglass cloth. A composite bottom layer is arranged at the bottom of the fiberglass cloth. Composite edge layers are arranged around the pad and around the circular hole. It also includes an annular sleeve, which is detachably connected to the circular hole. The annular sleeve has an annular side, and multiple mounting posts are arranged at intervals along the circumference of the annular side. Multiple mounting grooves are arranged on the composite edge layer of the circular hole, and the multiple mounting grooves are arranged at intervals along the circumference of the circular hole. The mounting posts can be embedded and fixed in the mounting grooves one by one. The mounting groove includes a hemispherical part and a cylindrical part connected to each other. The size of the cylindrical part is smaller than the size of the hemispherical part. The lower end of the mounting post is provided with a deformable spherical head, which can be embedded from the cylindrical part into the hemispherical part.

2. The cleaning and heat-insulating mat for kitchen gas stoves according to claim 1, characterized in that, The pad is provided with mounting holes corresponding to the knob.

3. The cleaning and heat-insulating mat for kitchen gas stoves according to claim 1, characterized in that, The pad includes a connecting side, on which a connecting structure is provided, and the connecting structure enables two pads to be combined and connected for use.