Anti-skid integrated cooker knob

By designing anti-slip textures and a hollow cavity structure on the integrated stove knobs, the problem of knob slippage has been solved, resulting in a more stable and accurate operating experience and better aesthetics.

CN223967148UActive Publication Date: 2026-03-03ZHEJIANG SENG SMART KITCHEN APPLIANCE CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-06
Publication Date
2026-03-03

AI Technical Summary

Technical Problem

The knobs on existing integrated cooktops are prone to slipping during use, affecting the user experience.

Method used

A non-slip integrated stove knob was designed, which uses a non-slip layer composed of non-slip textures. The non-slip textures are evenly and parallelly distributed and inclined relative to the knob axis to increase surface roughness and improve friction. The connection stability is improved through hollow cavity and positioning structure.

Benefits of technology

It effectively prevents the knob from slipping, improves operational stability and accuracy, enhances the grip experience, and improves aesthetics and texture.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223967148U_ABST
    Figure CN223967148U_ABST
Patent Text Reader

Abstract

The utility model discloses an anti-skidding integrated cooker knob which comprises a knob shell, a hollow cavity is arranged on the knob shell, an anti-skidding layer is arranged on the outer ring wall of the knob shell, the anti-skidding layer is composed of a plurality of anti-skidding grains, the anti-skidding grains are evenly distributed on the outer ring wall of the knob shell in parallel, and the anti-skidding grains are obliquely arranged relative to the axial direction of the knob shell. The anti-skid knob is reasonable in design and high in practicability, the anti-skid performance is improved through the design of the anti-skid layer, the anti-skid phenomenon in the use process of the knob is effectively prevented, the anti-skid layer is composed of anti-skid lines, the surface roughness of the knob is increased through the anti-skid lines, friction force between fingers and the knob is improved, and the anti-skid lines are evenly distributed in parallel, so that the uniformity of the anti-skid effect is ensured; and the anti-skid lines are designed to be inclined relative to the axial direction of the knob, so that the anti-skid performance is further enhanced, fingers can be more naturally attached to the anti-skid lines when rotating the knob, and the stability and accuracy of operation are improved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model belongs to the field of knob technology, specifically relating to the knob of an anti-slip integrated stove. Background Technology

[0002] Integrated cooktops, also known in the industry as eco-friendly cooktops or integrated eco-friendly cooktops, are kitchen appliances that combine multiple functions such as a range hood, gas stove, disinfection cabinet, and storage cabinet into one unit. They offer advantages such as space saving, excellent fume extraction, energy efficiency, and environmental friendliness. Integrated cooktops are internationally leading kitchen appliances developed to solve the problem of traditional range hoods' inability to completely eliminate cooking fumes, thus improving the kitchen and home environment. This product organically combines a range hood, cooktop, disinfection cabinet, and storage cabinet to completely eliminate kitchen fumes. Existing integrated cooktops are generally equipped with knobs for turning on / off and adjusting the stove's heat, which are manual controls. These knobs are prone to slipping during use, affecting the user experience. Utility Model Content

[0003] The purpose of this utility model is to solve the above-mentioned technical problems existing in the prior art and to provide an anti-slip integrated stove knob. The knob is reasonably designed and highly practical. The anti-slip layer design improves the anti-slip performance and effectively prevents the knob from slipping during use. The anti-slip layer is composed of anti-slip textures, which increase the surface roughness of the knob and improve the friction between the finger and the knob. The anti-slip textures are evenly and parallelly distributed to ensure the uniformity of the anti-slip effect. Furthermore, the anti-slip textures are designed to be inclined relative to the knob axis to further enhance the anti-slip performance, allowing the finger to more naturally conform to the anti-slip textures when rotating the knob, thereby improving the stability and accuracy of operation.

[0004] To solve the above-mentioned technical problems, the present invention adopts the following technical solution:

[0005] This anti-slip integrated stove knob includes a knob shell with a hollow cavity. An anti-slip layer, composed of several anti-slip patterns, is provided on the outer ring wall of the knob shell. These patterns are evenly and parallelly distributed on the outer ring wall of the knob shell, and are inclined relative to the axial direction of the knob shell. This invention is reasonably designed and highly practical. The anti-slip layer design improves anti-slip performance, effectively preventing the knob from slipping during use. The anti-slip patterns increase the surface roughness of the knob, improving the friction between the finger and the knob. The even and parallel distribution of the anti-slip patterns ensures uniformity of the anti-slip effect. Furthermore, the inclined design of the anti-slip patterns relative to the axial direction of the knob further enhances the anti-slip performance, allowing the finger to more naturally conform to the anti-slip pattern when rotating the knob, improving the stability and accuracy of operation.

[0006] Furthermore, a positioning boss is provided at the center of the hollow cavity, and a mounting hole is provided on the positioning boss. The positioning boss and the mounting hole can facilitate the connection and assembly between the knob and the equipment. Moreover, the combination of the two can increase the contact area between the components and improve the stability and reliability of the connection.

[0007] Furthermore, a positioning groove is provided inside the hollow cavity. The positioning groove is evenly distributed around the outer circumference of the positioning boss. The positioning groove is a fan-shaped groove with a clever and reasonable structural design. The positioning groove, together with the positioning boss and the mounting hole, is more conducive to the accuracy and precision of the knob during installation, and enhances the contact area and connection strength between the components.

[0008] Furthermore, the anti-slip texture is a long strip structure, formed by the indentation of the outer ring wall of the knob shell inward. The long strip structure of the anti-slip texture can enhance the contact area and friction between the knob shell surface and the fingers, effectively preventing the knob from slipping during use. The design of the anti-slip texture being formed by the indentation of the outer ring wall of the knob shell inward can also achieve the weight reduction of the knob and improve the overall performance.

[0009] Furthermore, the axial angle of the anti-slip texture and the knob shell is 8 to 30 degrees. The angle design is ingenious and reasonable. The design of the angle α allows the anti-slip texture to effectively contact the fingers when the knob is rotated, and to fit the anti-slip texture more naturally, thereby improving the anti-slip performance and grip experience.

[0010] Furthermore, a positioning ring groove is provided at the port of the hollow cavity. The positioning ring groove and the positioning boss are concentrically arranged. The positioning ring groove and the positioning boss make it easy for the knob to be accurately aligned and fixed with other components, ensuring the stability and reliability of the knob after assembly. The concentric design of the positioning ring groove and the positioning boss can further improve the connection accuracy between the knob and other components and avoid assembly errors.

[0011] Furthermore, indicator marks are provided on the end face of the knob housing. These marks allow users to intuitively know the current status of the knob or the target position it has been rotated to, making the operation more intuitive and easy to understand, reducing misoperation, improving operating efficiency, and enhancing user experience and satisfaction.

[0012] Furthermore, a protrusion is provided on the end face of the knob housing. The protrusion is connected to the end face of the knob housing by an arc-shaped transition. The indicator is set on the protrusion. The protrusion can enhance the structural stability of the knob housing. The design of the protrusion makes the indicator more prominent, making it easier to identify and operate the knob. The transition design of the arc-shaped section makes the lines at the connection more smooth and natural, and the knob has a more three-dimensional and beautiful appearance.

[0013] Furthermore, the edges of the knob housing are chamfered, which optimizes the edge structure and makes the knob more aesthetically pleasing.

[0014] Furthermore, the outer periphery of the end face of the knob housing is provided with an annular cut surface, and the anti-slip layer is provided near the annular cut surface.

[0015] This utility model, by adopting the above-mentioned technical solution, has the following beneficial effects:

[0016] This utility model is reasonably designed and highly practical. The anti-slip layer design improves anti-slip performance and effectively prevents the knob from slipping during use. The anti-slip layer consists of anti-slip textures, which increase the surface roughness of the knob, thereby increasing the friction between the finger and the knob. The anti-slip textures are evenly and parallelly distributed, ensuring uniform anti-slip effect. Furthermore, the anti-slip textures are designed to be inclined relative to the knob's axis, further enhancing anti-slip performance. This allows the finger to more naturally conform to the anti-slip texture when rotating the knob, improving operational stability and accuracy. In addition, the anti-slip textures also have a decorative function; through reasonable layout and texture design, the anti-slip textures can become part of the knob's appearance, enhancing the overall aesthetics and texture. Attached Figure Description

[0017] The present invention will be further described below with reference to the accompanying drawings:

[0018] Figure 1 This is a perspective view of the anti-slip integrated stove knob of this utility model;

[0019] Figure 2 for Figure 1 A structural diagram from another perspective;

[0020] Figure 3 for Figure 1 Front plan view;

[0021] Figure 4 for Figure 3 A schematic diagram of the structure viewed from below;

[0022] Figure 5 for Figure 3 A schematic diagram of the structure on the right side;

[0023] Figure 6 for Figure 3 A schematic diagram of the back structure.

[0024] In the diagram, 1-knob housing; 2-hollow cavity; 3-anti-slip layer; 4-anti-slip texture; 5-positioning boss; 6-mounting hole; 7-positioning ring groove; 8-indicator mark; 9-protrusion; 10-arc segment; 11-chamfer; 12-positioning groove; 13-annular cut surface. Detailed Implementation

[0025] like Figures 1 to 6As shown, this utility model relates to an anti-slip integrated stove knob, comprising a knob housing 1 with a hollow cavity 2. An anti-slip layer 3 is provided on the outer ring wall of the knob housing 1, consisting of several anti-slip patterns 4 evenly and parallelly distributed on the outer ring wall of the knob housing 1, with the anti-slip patterns 4 inclined relative to the axial direction of the knob housing 1. This utility model has a reasonable design and strong practicality. The design of the anti-slip layer 3 improves the anti-slip performance, effectively preventing the knob from slipping during use. The anti-slip layer 3, composed of anti-slip patterns 4, increases the surface roughness of the knob, improving the friction between the finger and the knob. The even and parallel distribution of the anti-slip patterns 4 ensures the uniformity of the anti-slip effect. Furthermore, the inclined design of the anti-slip patterns 4 relative to the axial direction of the knob further enhances the anti-slip performance, allowing the finger to more naturally conform to the anti-slip patterns 4 when rotating the knob, improving the stability and accuracy of operation. Furthermore, the anti-slip texture 4 is also decorative. Through reasonable layout and texture design, the anti-slip texture 4 can become part of the knob's appearance, enhancing the overall aesthetics and texture.

[0026] A positioning boss 5 is provided at the center of the hollow cavity 2, and a mounting hole 6 is provided on the positioning boss 5. The positioning boss 5 and the mounting hole 6 facilitate the connection and assembly between the knob and the equipment, and the cooperation between the two increases the contact area between the components, improving the stability and reliability of the connection. A positioning groove 12 is provided inside the hollow cavity 2. The positioning groove 12 is evenly distributed around the outer circumference of the positioning boss 5. The positioning groove 12 is a fan-shaped groove with a clever and reasonable structural design. The positioning groove 12, together with the positioning boss 5 and the mounting hole 6, is more conducive to the accuracy and precision of the knob during installation, and enhances the contact area and connection strength between the components.

[0027] The anti-slip texture 4 is a long strip structure, formed by the inward indentation of the outer ring wall of the knob housing 1. This long strip structure enhances the contact area and friction between the knob housing 1 surface and the fingers, effectively preventing slippage during use. The inward indentation of the outer ring wall of the knob housing 1 also contributes to the knob's lightweight design and improves overall performance. The axial clamping angle α between the anti-slip texture 4 and the knob housing 1 is 8–30°, a cleverly designed angle that allows the anti-slip texture 4 to effectively contact the fingers during knob rotation, resulting in a more natural fit and improved anti-slip performance and grip.

[0028] A positioning ring groove 7 is provided at the port of the hollow cavity 2. The positioning ring groove 7 and the positioning boss 5 are arranged concentrically. The positioning ring groove 7 and the positioning boss 5 facilitate the precise alignment and fixation of the knob with other components, ensuring the stability and reliability of the knob after assembly. The concentric design of the positioning ring groove 7 and the positioning boss 5 can further improve the connection accuracy of the knob with other components and avoid assembly errors.

[0029] An indicator mark 8 is provided on the end face of the knob housing 1. The indicator mark 8 can intuitively let the user know the current status of the knob or the target position rotated to, making the operation more intuitive and easy to understand, reducing misoperation, improving operating efficiency, and enhancing user experience and satisfaction. A protrusion 9 is provided on the end face of the knob housing 1. The protrusion 9 is connected to the end face of the knob housing 1 by an arc segment 10. The indicator mark 8 is set on the protrusion 9. The protrusion 9 can enhance the structural stability of the knob housing 1, and the design of the protrusion 9 makes the indicator mark 8 more prominent, making it easier to identify and operate the knob. The transition design of the arc segment 10 makes the lines at the connection more smooth and natural, and the appearance of the knob more three-dimensional and beautiful.

[0030] The knob housing 1 has chamfered edges 11, which optimizes the edge structure and makes the knob more aesthetically pleasing. The outer periphery of the knob housing 1's end face has an annular cut surface 13, and the anti-slip layer 3 is located near this cut surface 13. The annular cut surface 13 adds a three-dimensional feel to the knob, further enhancing its overall aesthetics and texture.

[0031] The above are merely specific embodiments of this utility model, but the technical features of this utility model are not limited thereto. Any simple changes, equivalent substitutions, or modifications made based on this utility model to solve essentially the same technical problems and achieve essentially the same technical effects are all covered within the protection scope of this utility model.

Claims

1. An anti-skid integrated kitchen knob, comprising a knob shell, the knob shell being provided with a hollow cavity; Characterized in that: An anti-skid layer is arranged on the outer ring wall of the knob shell, the anti-skid layer is composed of a plurality of anti-skid lines, the plurality of anti-skid lines are uniformly and parallelly distributed on the outer ring wall of the knob shell, and the anti-skid lines are arranged obliquely relative to the axial direction of the knob shell.

2. The anti-slip integrated stove knob according to claim 1, wherein: A positioning boss is arranged at the center of the hollow cavity, and a mounting insertion hole is arranged on the positioning boss.

3. The anti-slip integrated stove knob according to claim 2, wherein: A positioning groove is arranged in the hollow cavity, the positioning groove is uniformly and circumferentially distributed around the outer side of the positioning boss, and the positioning groove is a fan-shaped groove.

4. The integrated anti-slip stove knob of claim 1, wherein: The anti-skid lines are in a long strip structure, and the anti-skid lines are formed by being recessed inward from the outer ring wall of the knob shell.

5. The slip-resistant integrated cooktop knob of claim 1, wherein: The oblique angle α between the anti-skid lines and the axial direction of the knob shell is 8-30°.

6. The integrated anti-slip stove knob of claim 2, wherein: A positioning ring groove is arranged at the port of the hollow cavity, and the positioning ring groove is arranged concentrically with the positioning boss.

7. The slip-resistant integrated cooktop knob of claim 1, wherein: An indication mark is arranged on the end face of the knob shell.

8. The anti-slip integrated stove knob according to claim 7, wherein: A raised portion is arranged on the end face of the knob shell, the raised portion is connected to the end face of the knob shell through an arc-shaped transition connection, and the indication mark is arranged on the raised portion.

9. The slip-resistant integrated cooktop knob of claim 1, wherein: A chamfer is arranged at the edge of the knob shell.

10. The slip-resistant integrated cooktop knob of claim 1, wherein: An annular cutting surface is arranged at the outer periphery of the end face of the knob shell, and the anti-skid layer is arranged close to the annular cutting surface.