Hollow energy-gathering pot rack
By designing a hollow energy-concentrating pot rack, using the bending structure and integrated support protrusions and convex feet, the existing pot racks are solved by unstable support and poor insulation effect, and higher support strength and thermal efficiency are achieved.
Patent Information
- Application Number
- CN202421380453.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-17
- Publication Date
- 2025-05-30
- Estimated Expiration
- 2034-06-17
AI Technical Summary
The supporting feet of the existing pot holder are inconvenient to be inserted and installed, easy to loosen, poor insulation effect, and low thermal efficiency.
A hollow energy-concentrating pot rack is designed, the pot rack body is formed by bent relative to each other, and an integrally formed support protrusion is provided on the inclined surface, and a supporting protrusion formed by integral stamping is provided on the lower end surface. The supporting protrusion and protrusion are staggered in the circumference of the annular body of the pot rack to form a convection gap to improve thermal efficiency.
Through integrated design, it improves support strength, simplifies production processes, reduces production costs, disperses support force, and improves the stability and thermal efficiency of the pot rack.
Smart Images

Figure CN222925542U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to a pot rack for a cooking appliance.
Background Art
[0002] The pot rack is placed on the cooking appliance to support the pot. Later, in order to block the wind, the main body of the pot rack is designed to be annular and approximately bowl-shaped. For example, in a pot rack with the patent number 201910781005.5 and the name of "a pot rack", its energy-gathering disk is a single-layer structure, the support feet are inserted through and pass through the energy-gathering disk, and the upper and lower ends of the support feet protrude. The upper end of the support foot is used to support the cooking pot, and the lower end is used to support the entire pot rack. In this way, the installation and positioning of the support feet by insertion are inconvenient, easy to loosen, the support is unstable, and the single-layer energy-gathering disk has poor heat preservation effect and low thermal efficiency. Although some double-layer pot racks have appeared on the market later, their support feet are still installed in an inserted manner.
Content of the Utility Model
[0003] The purpose of the utility model is to overcome the deficiencies of the prior art and provide a hollow energy-gathering pot rack with a simple structure, convenient production and stable support.
[0004] To solve the above problems, the utility model adopts the following technical solutions:
[0005] A hollow energy-gathering pot rack, characterized in that: it includes a pot rack body, the pot rack body is surrounded by a connected upper end surface and a lower end surface to form an annular body, the outer side edges of the upper end surface and the lower end surface are bent and connected relatively, and the inner side edges are adjacent to form a cavity. The upper end surface includes an inclined surface that is inclined downward from the outside to the inside and an annular protrusion that is connected to the inclined surface and is close to the inner side edge of the upper end surface. A groove is provided between the inclined surface and the annular protrusion. A plurality of support protrusions formed by integral stamping are provided on the inclined surface, and a plurality of support convex feet formed by integral stamping are provided on the lower end surface.
[0006] As described above, a hollow energy-gathering pot rack, characterized in that: the support protrusions and the support convex feet are staggered in the circumferential direction of the annular body of the pot rack body.
[0007] As described above, a hollow energy-gathering pot rack, characterized in that: the inner side edge of the upper end surface and the inner side edge of the lower end surface are relatively spaced apart to form a convection gap.
[0008] As described above, a hollow energy-gathering pot rack, characterized in that: the bottom surface of the support convex foot is a kidney-shaped horizontal surface.
[0009] As described above, a hollow energy-gathering pot rack, characterized in that: the inner side edge of the lower end surface is provided with an upper extension edge that bends upward, and the inner side edge of the upper end surface is provided with a lower extension edge that bends downward, and the lower extension edge surrounds the outside of the upper extension edge.
[0010] A hollow energy - concentrating pot rack as described above, characterized in that: a plug - in hole formed by etching is provided at the bottom end of the supporting convex foot, a foot pad with one end inserted into the plug - in hole is detachably connected to the supporting convex foot, a convex head capable of being press - fitted into the plug - in hole is provided at the upper end of the foot pad, and an annular positioning groove is provided between the foot pad and the convex head.
[0011] A hollow energy - concentrating pot rack as described above, characterized in that: the supporting protrusion is a square body.
[0012] The beneficial effects of the present utility model are as follows: The pot rack body is formed by bending the upper end face and the lower end face relatively. Support protrusions integrally formed are arranged on the inclined surface, and the support protrusions are used to support the cookware. Support convex feet formed by integral stamping are arranged on the lower end face, and the support convex feet are used to support the pot rack body. In this way, there is no need to insert support feet. Through such an integrated design, the support strength is improved, the manufacturing process is simplified, and the production cost is reduced; the support protrusions and the support convex feet are circumferentially staggered, so as to disperse the support force and improve the support strength of the pot rack body.
BRIEF DESCRIPTION OF THE DRAWINGS
[0013] Figure 1 Is a three - dimensional view of Embodiment 1 of the present utility model
[0014] Figure 2 Is a cross - sectional view of Embodiment 1 of the present utility model;
[0015] Figure 3 Is a bottom three - dimensional view of Embodiment 1 of the present utility model;
[0016] Figure 4 Is a three - dimensional view of Embodiment 2 of the present utility model
[0017] Figure 5 Is a cross - sectional view of Embodiment 2 of the present utility model;
[0018] Figure 6 Is an exploded view of Embodiment 2 of the present utility model.
DETAILED DESCRIPTION OF THE INVENTION
[0019] The present utility model will be further described in detail below in conjunction with the drawings and the specific embodiments:
[0020] Such as Figures 1 to 3As shown in the figure, a hollow energy-gathering pot rack includes a pot rack body 1. The pot rack body 1 is formed into an annular body by the connected upper end face 11 and the lower end face 12. The upper end face 11 and the lower end face 12 are formed by an integral stamping process. The outer sides of the upper end face 11 and the lower end face 12 are bent and connected relatively, and the inner side edges are adjacent to form a cavity 2. "Adjacent" means that the inner side edges of the upper end face 11 and the lower end face 12 are close or adjacent, and the two are close or adjacent up and down or left and right. "Inner side" means close to the middle of the pot rack body 1, and "outer side" means close to the outer edge of the pot rack body 1. In this embodiment, the inner side edge of the upper end face 11 and the inner side edge of the lower end face 12 are arranged relatively separated up and down to form a convection gap 16. The width of the convection gap 16 is about 0.5-2 cm. The convection gap 16 can allow the heat absorbed by the pot rack body 1 to convect out, heat the cookware, and improve the combustion rate. By separating the pot rack body 1 into two layers by the upper end face 11 and the lower end face 12, heat loss can be reduced. The upper end face 11 includes an inclined surface 13 that is inclined downward from the outside to the inside and an annular protrusion 14 that is connected to the inclined surface 13 and is close to the inner side edge of the upper end face 11. A groove 15 is arranged between the inclined surface 13 and the annular protrusion 14. The groove 15 can be used to hold the flowing soup, etc., and can prevent sundries such as soup from falling onto the panel. A plurality of support protrusions 3 formed by integral stamping are arranged on the inclined surface 13. The support protrusions 3 protrude upward to support the cookware. A plurality of support feet 4 formed by integral stamping are arranged on the lower end face 12. The support feet 4 protrude downward to be placed on the stove to support the pot rack body 1. In this embodiment, the support protrusions 3 are square bodies, which increase the support area and the contact surface with the cookware, making the cookware more stable. The bottom surface of the support feet 4 is a kidney-shaped horizontal plane, which increases the support area and makes the pot rack body 1 placed stably. In order to improve the support strength, the support protrusions 3 and the support feet 4 are staggered in the circumferential direction of the annular body of the pot rack body 1. The pot rack body 1 is a circular ring body. Staggering in the circumferential direction like this makes the support protrusions 3 and the support feet 4 not on the same vertical line. In this way, the support force of the pot rack body 1 and the support force of the cookware are not on the same straight line, and the support strength can be provided.
[0021] Embodiment 2, as Figures 4 - 6 shown, the difference from Embodiment 1 is that there is no convection gap 16 and foot pads are provided. Specifically, the inner side edge of the upper end face 11 and the inner side edge of the lower end face 12 are wrapped. The inner side edge of the lower end face 12 is provided with an upper extension edge 17 that bends upward. The inner side edge of the upper end face 11 is provided with a lower extension edge 18 that bends downward. The lower extension edge 18 surrounds the outside of the upper extension edge 17, and the lower extension edge 18 can be attached to the outside of the upper extension edge 17. The bottom end of the support foot 4 is provided with a plug hole 41 formed by etching. A foot pad 5 with one end inserted into the plug hole 41 is detachably connected to the support foot 4. The upper end of the foot pad 5 is provided with a convex head 51 that can be press-fitted into the plug hole 41. The edge of the convex head 51 has an arc transition. An annular positioning groove 52 is arranged between the foot pad 5 and the convex head 51. The edge of the plug hole 41 is stuck in the annular positioning groove 52.
Claims
1. A hollow energy-gathering pot stand, characterized in that: The invention comprises a pot rack body (1), wherein the pot rack body (1) is formed into an annular body by a connected upper end face (11) and a lower end face (12), wherein the outer sides of the upper end face (11) and the lower end face (12) are relatively bent and connected, and the inner sides are adjacent to each other to form a cavity (2), wherein the upper end face (11) comprises an inclined surface (13) arranged to be inclined downward from the outer side to the inner side and an annular protrusion (14) connected to the inclined surface (13) and close to the inner side of the upper end face (11), wherein a groove (15) is arranged between the inclined surface (13) and the annular protrusion (14), wherein the inclined surface (13) is provided with a plurality of integrally stamped supporting protrusions (3), and wherein the lower end face (12) is provided with a plurality of integrally stamped supporting protrusions (4).
2. The hollow energy-gathering pot stand according to claim 1, characterized in that: The supporting protrusion (3) and the supporting protruding foot (4) are staggered in the circumferential direction of the annular body of the pot rack body (1).
3. The hollow energy-gathering pot stand according to claim 1, characterized in that: The inner side edge of the upper end surface (11) and the inner side edge of the lower end surface (12) are arranged relatively spaced apart to form a convection gap (16).
4. The hollow energy-gathering pot stand according to claim 1, characterized in that: The bottom surface of the supporting protruding foot (4) is a waist-shaped horizontal surface.
5. The hollow energy-gathering pot stand according to claim 1, characterized in that: The inner side edge of the lower end surface (12) is provided with an upper extension edge (17) that is bent and extends upward, and the inner side edge of the upper end surface (11) is provided with a lower extension edge (18) that is bent downward, and the lower extension edge (18) surrounds the outer side of the upper extension edge (17).
6. A hollow energy-gathering pot stand according to claim 1 or 5, characterized in that: The bottom end of the supporting protrusion (4) is provided with a plug-in hole (41) formed by etching, and the supporting protrusion (4) is detachably connected to a foot pad (5) with one end plugged into the plug-in hole (41), and the upper end of the foot pad (5) is provided with a convex head (51) that can be squeezed into the plug-in hole (41) through interference fit, and an annular positioning groove (52) is provided between the foot pad (5) and the convex head (51).
7. The hollow energy-gathering pot stand according to claim 1, characterized in that: The supporting protrusion (3) is a square body.
Citation Information
Patent Citations
Pot rack and gas stove
CN110345524B