A pot support assembly and gas stove thereof

By designing a structure in the pot support assembly that connects the heat-conducting plate to the support body, the problem of spilled liquid contaminating the burner is solved, resulting in an aesthetically pleasing and highly efficient pot support assembly that improves the appearance and user experience of the gas stove.

CN224302153UActive Publication Date: 2026-05-29VATTI CORP LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
VATTI CORP LTD
Filing Date
2025-04-30
Publication Date
2026-05-29

AI Technical Summary

Technical Problem

The open design of conventional gas stove pot supports leads to overflowing liquids that contaminate the burner components, resulting in an unsightly appearance and difficulty in cleaning.

Method used

Design a pot support assembly including a heat-conducting plate and multiple supports. The heat-conducting plate is connected to the base through the supports. The orthographic projection of the heat-conducting plate covers the central hole of the base. A channel is provided between the heat-conducting plate and the base to exhaust smoke and prevent overflow liquid from flowing to the burner assembly.

Benefits of technology

The design of the pot support assembly is aesthetically pleasing, preventing spilled liquid from contaminating the burner assembly and improving cleaning convenience and thermal efficiency.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224302153U_ABST
    Figure CN224302153U_ABST
Patent Text Reader

Abstract

The utility model discloses a kind of pot support assembly and gas stove, pot support assembly includes: base, with the center hole of upper and lower two ends opening;Heat conduction plate, set in the top of the base;Multiple support body, circumferentially between the base and the heat conduction plate, the heat conduction plate is connected with the base by multiple support body;First channel is equipped on the support body or between the support body and the base, and / or second channel is equipped between two adjacent support bodies.The pot support assembly of the utility model is beautiful in appearance, can prevent the overflow liquid of pot to flow to burner assembly, so that the area is not easy to be contaminated.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the field of stove technology, and in particular to a pot support assembly and its gas stove. Background Technology

[0002] Conventional gas stoves typically have open pot supports. During cooking, overflowing liquids flow from the edge of the pot down onto the pot supports, drip tray, and burner assembly, making cleaning difficult. Furthermore, the burner assembly and pot supports are relatively high, resulting in an unattractive appearance. Summary of the Invention

[0003] This utility model aims to at least partially solve one of the problems existing in the prior art. To this end, this utility model proposes a pot support assembly that is aesthetically pleasing and prevents overflowing liquid from flowing into the burner assembly, making that area less prone to contamination. This utility model also provides a gas stove.

[0004] The pot support assembly provided above is achieved through the following technical solution:

[0005] A pot support assembly includes: a base having a central hole with openings at both the top and bottom; a heat-conducting plate disposed above the base, with its orthographic projection completely covering the central hole; a plurality of supports circumferentially disposed between the base and the heat-conducting plate, the heat-conducting plate being connected to the base via the plurality of supports; a first channel provided on the supports or between the supports and the base, the radially inner and outer ends of the first channel respectively connecting to the central hole and the external atmosphere; and / or a second channel provided between two adjacent supports, the radially inner and outer ends of the second channel respectively connecting to the central hole and the external atmosphere.

[0006] In some embodiments, the horizontal cross-sectional area of ​​the heat-conducting plate is larger than the horizontal cross-sectional area of ​​the base, and the orthographic projection of the heat-conducting plate completely covers the base.

[0007] In some embodiments, the support body includes an upper support plate and a lower support foot, the upper support plate is connected to the base through the lower support foot, the radial outer side of the heat-conducting plate is disposed on the top of the heat-conducting plate, and the first channel is provided on the lower support foot.

[0008] In some embodiments, the lower support foot includes at least two legs arranged circumferentially spaced apart. The upper end of the legs is integrally formed with the bottom of the upper support plate, and the lower end is detachably connected to the base. A first channel is formed between two adjacent legs, located between the upper support plate and the base. Alternatively, the lower support foot is an elongated arc-shaped protrusion with a transverse channel extending through its inner and outer side walls. The transverse channel constitutes the first channel.

[0009] In some embodiments, the radially inner end of the upper support plate is flush with the inner sidewall of the lower support foot, and the radially outer end of the upper support plate protrudes from the outer sidewall of the base and the outer sidewall of the lower support foot.

[0010] In some embodiments, a guide surface is provided on the outer periphery of the heat-conducting plate, and an outwardly turned flange is provided on the radial outer end of the upper support plate, which is turned upward and cooperates with the guide surface. The outwardly turned flange covers a portion of the guide surface and limits and fixes the heat-conducting plate on the upper support plate.

[0011] In some embodiments, the top surface of the heat-conducting plate is higher than the top of the outward flange.

[0012] In some embodiments, two adjacent supports are fitted with a gap, and a second channel is provided between the base and the heat-conducting plate between two adjacent supports; or two adjacent supports abut against each other.

[0013] In some embodiments, a first protruding edge and a second protruding edge extending outward are respectively provided at opposite ends in the circumferential direction of the support body. The first protruding edge abuts against the second protruding edge of the adjacent support body to form a support edge. A second channel is formed between the support edge and the base. The bottom of the heat-conducting plate abuts against the top of the support edge. Alternatively, a first U-shaped groove and a second U-shaped groove extending outward and opening in the circumferential direction are respectively provided at opposite ends in the circumferential direction of the support body. The first U-shaped groove abuts against the second U-shaped groove of the adjacent support body and together encloses the second channel. The bottom of the heat-conducting plate abuts against the top of the first U-shaped groove and the top of the second U-shaped groove, respectively.

[0014] In some embodiments, the base includes an annular vertical segment and an annular horizontal segment, the upper end of the annular vertical segment being fixedly connected to the radial inner end of the annular horizontal segment, and the annular horizontal segment being connected to a plurality of the supports respectively.

[0015] In some embodiments, the base further includes an annular flared section, the diameter of which gradually increases from bottom to top, and the upper end of the annular vertical section is integrally formed with the radial inner end of the annular horizontal section through the annular flared section.

[0016] In some embodiments, a plurality of foot pads are provided at circumferential intervals at the bottom of the annular transverse segment and located on the periphery of the annular vertical segment.

[0017] The gas stove described above is achieved through the following technical solution:

[0018] A gas stove includes: a housing assembly with an installation opening at the top; a burner assembly disposed within the housing assembly with its upper end extending through the installation opening; a liquid collection tray disposed at the installation opening and located around the burner assembly; and a pot support assembly as described above, wherein the base is mounted on the liquid collection tray and located around the upper end of the burner assembly, and a heat-conducting plate is located above the burner assembly, the orthographic projection of the heat-conducting plate completely covering the liquid collection tray and the upper end of the burner assembly.

[0019] In some embodiments, an airflow channel communicating with the central hole is formed between the base and the liquid tray.

[0020] Compared with the prior art, the present invention has at least the following beneficial effects:

[0021] 1. The pot support assembly of this utility model has a heat-conducting plate connected to the base through multiple supports. The orthographic projection of the heat-conducting plate covers the center hole of the base. A first channel and / or a second channel for smoke exhaust are provided between the heat-conducting plate and the base. Compared with the existing open pot support, it is more aesthetically pleasing and can prevent overflow liquid from flowing to the burner assembly, making the area less susceptible to contamination.

[0022] 2. By designing the front projection of the heat-conducting plate to completely cover the base and the liquid collection tray of the gas stove, the heat-conducting plate can effectively block the overflow liquid from flowing into the base, liquid collection tray and burner assembly area, making cleaning easier and increasing thermal efficiency. Attached Figure Description

[0023] Figure 1 This is an exploded view of the pot support assembly in Embodiment 1 of this utility model;

[0024] Figure 2 This is a schematic diagram of the pot support assembly in Embodiment 1 of this utility model;

[0025] Figure 3 This is a cross-sectional view of the pot support assembly in Embodiment 1 of this utility model;

[0026] Figure 4 This is a schematic diagram of the base structure in Embodiment 1 of this utility model;

[0027] Figure 5 This is a schematic diagram of the structure of the support body in Embodiment 1 of this utility model;

[0028] Figure 6 This is a front view of another support in Embodiment 1 of this utility model;

[0029] Figure 7 This is a top view of the first pot support assembly in Embodiment 2 of this utility model after omitting the heat-conducting plate;

[0030] Figure 8 This is a left view of the second type of pot support assembly in Embodiment 2 of this utility model after omitting the heat-conducting plate;

[0031] Figure 9 This is a left view of the third type of pot support assembly in Embodiment 2 of this utility model after omitting the heat-conducting plate;

[0032] Figure 10 This is a schematic diagram of the gas stove in Embodiment 3 of this utility model;

[0033] Figure 11 This is a cross-sectional view of the gas stove in Embodiment 3 of this utility model.

[0034] In the diagram: 1-base, 11-center hole, 12-annular vertical section, 13-annular horizontal section, 131-step hole, 132-mounting hole, 14-annular flared section; 2-heat-conducting plate, 21-guide surface; 3-support body, 31-upper support plate, 311-outer flange, 312-first convex edge, 313-second convex edge, 32-lower support foot, 320-screw hole, 321-foot, 322-horizontal channel, 331-first U-shaped groove, 332-second U-shaped groove; 41-first channel, 42-second channel, 43-fastener, 44-foot pad, 441-anti-slip part, 442-positioning part;

[0035] 5-Outer shell assembly, 51-Bottom shell, 52-Panel, 521-Mounting port; 6-Burner assembly, 61-Burner body; 7-Liquid tray; 8-Cookware. Detailed Implementation

[0036] The following embodiments illustrate the present invention, but the present invention is not limited to these embodiments. Modifications to the specific implementation of the present invention or equivalent substitutions for some technical features, without departing from the spirit of the present invention, should all be covered within the scope of the technical solution claimed by the present invention.

[0037] Example 1

[0038] refer to Figure 1-3 This embodiment provides a pot support assembly, including a base 1, a heat-conducting plate 2, and multiple support bodies 3. The base 1, heat-conducting plate 2, and support bodies 3 are all integrally formed components. In other embodiments, the support bodies 3 can be separate components. The heat-conducting plate 2 is made of metal or non-metal high-temperature resistant material.

[0039] The base 1 has a central hole 11 with openings at both the top and bottom. The central hole 11 is configured to accommodate the burner body of the burner assembly. A heat-conducting plate 2 is disposed above the base 1, and its orthographic projection completely covers the central hole 11. Multiple supports 3 are circumferentially disposed between the base 1 and the heat-conducting plate 2. The heat-conducting plate 2 is connected to the base 1 through the multiple supports 3 to form a whole. At this time, the heat-conducting plate 2 is fixed by the multiple supports 3 and cannot be removed. The heat-conducting plate 2 has a heat transfer function, which can transfer part of the heat generated by the burner assembly to the pot placed on top of the heat-conducting plate.

[0040] The pot support assembly also includes a first channel 41 and / or a second channel 42 for exhaust. The first channel 41 is disposed on the support body 3 or between the support body 3 and the base 1. The radial inner and outer ends of the first channel 41 are respectively connected to the central hole 11 and the external atmosphere outside the side wall of the pot support assembly. The second channel 42 is disposed between two adjacent supports 3. The radial inner and outer ends of the second channel 42 are respectively connected to the central hole 11 and the external atmosphere outside the side wall of the pot support assembly. In this way, the high-temperature flue gas generated by the burner assembly can be discharged outward through the channels and heat the pot sitting on the top of the heat-conducting plate 2.

[0041] As can be seen, the heat-conducting plate 2 is connected to the base 1 through multiple supports 3. The orthographic projection of the heat-conducting plate 2 covers the central hole 11 of the base 1. A first channel 41 and / or a second channel 42 for smoke exhaust are provided between the heat-conducting plate 2 and the base 1. Compared with the existing open pot support, the pot support assembly of this application has a more aesthetically pleasing appearance. The heat-conducting plate 2 not only has a heat transfer function, which is conducive to improving the thermal efficiency of the gas stove, but also prevents the overflow liquid from flowing to the burner assembly located below it, making the area less prone to contamination, easier to clean, and improving the user experience.

[0042] refer to Figure 2-3 Furthermore, the horizontal cross-sectional area of ​​the heat-conducting plate 2 is larger than that of the base 1, and the orthographic projection of the heat-conducting plate 2 completely covers the base 1, thereby hiding the base 1 under the heat-conducting plate 2, effectively blocking the overflow liquid from flowing to the base 1 and the burner assembly area, making cleaning convenient.

[0043] refer to Figure 1-4The base 1 includes an annular vertical section 12 and an annular horizontal section 13. The upper end of the annular vertical section 12 is fixedly connected to the radially inner end of the annular horizontal section 13. The annular horizontal section 13 is connected to multiple supports 3. The central hole 11 is formed by the central through hole of the annular vertical section 12 and the central through hole of the annular horizontal section 13. Furthermore, the base 1 also includes an annular flared section 14. The diameter of the annular flared section 14 gradually increases from bottom to top. The upper end of the annular vertical section 12 is integrally formed with the radially inner end of the annular horizontal section 13 through the annular flared section 14, thereby facilitating the rapid flow of flue gas to the channel through the annular flared section 14 for rapid smoke exhaust.

[0044] Specifically, multiple stepped holes 131 are provided at the position of the support body 3 corresponding to the position of the annular transverse section 13. The support body 3 is provided with downward-facing screw holes 320 at the position of the stepped holes 131. Fasteners 43 are sequentially inserted into the stepped holes 131 and screw holes 320 from bottom to top and are fastened to the support body 3, thereby realizing the reliable connection and fixation of the support body 3 to the top of the base 1 by the fasteners 43.

[0045] refer to Figure 3 Multiple foot pads 44, circumferentially spaced and located around the periphery of the annular vertical section 12, are provided at the bottom of the annular horizontal section 13. These foot pads 44 abut against the top of the gas stove's liquid collection tray, ensuring the base 1 is securely and reliably mounted on the tray and creating an airflow channel between the base 1 and the tray. Specifically, a downward-opening mounting hole 132 is recessed at the bottom of the annular horizontal section 13 corresponding to the foot pad 44. An upward-extending positioning part 442 protrudes from the top of the foot pad 44, inserting into the mounting hole 132 and press-fitting it against the hole wall. An anti-slip part 441 is provided at the bottom of the foot pad 44 to increase the contact friction between the foot pad and the liquid collection tray. It should be noted that the foot pads 44 can be mounted on the liquid collection tray instead.

[0046] refer to Figure 1-5 The support body 3 includes an integrally formed upper support plate 31 and a lower support foot 32. The upper support plate 31 is disposed between the base 1 and the heat-conducting plate 2, and is connected to the base 1 through the lower support foot 32. The radially outer side of the heat-conducting plate 2 is disposed on the top of the heat-conducting plate 2, and a first channel 41 is provided on the lower support foot 32.

[0047] Specifically, the radial inner end of the upper support plate 31 is flush with the inner sidewall of the lower support foot 32 to improve aesthetics. Alternatively, the radial inner end of the upper support plate 31 can protrude from the inner sidewall of the lower support foot 32. The radial outer ends of the upper support plate 31 protrude from the outer sidewall of the base 1 and the outer sidewall of the lower support foot 32, thereby ensuring that the upper support plate 31 can reliably support the heat-conducting plate while hiding the base 1 and the lower support foot 32 below the upper support plate 31.

[0048] Furthermore, a guide surface 21 is provided on the outer periphery of the heat-conducting plate 2. The guide surface 21 is a sloping or arc-shaped surface with a lower radial outer end and a higher radial inner end. An outwardly turned flange 311 is provided on the radial outer end of the upper support plate 31, which mates with the guide surface 21. The outwardly turned flange 311 covers a portion of the guide surface 21 and limits and fixes the heat-conducting plate 2 to the upper support plate 31. Thus, when the heat-conducting plate 2 is connected to the base 1 via multiple supports 3, the outwardly turned flanges 311 of the multiple supports 3 collectively limit and fix the outer periphery of the heat-conducting plate 2, ensuring that the heat-conducting plate 2 cannot be removed after being fixed by the multiple supports 3. In this embodiment, the top surface of the heat-conducting plate 2 is higher than the top of the outwardly turned flange 311, so that after the pot is placed on the table, the bottom of the pot is in close contact with the heat-conducting plate 2, and there is a gap between the bottom of the pot and the outwardly turned flange 311.

[0049] Specifically, the structure of the lower support leg 32 includes, but is not limited to, any of the following:

[0050] The first type, see [link / reference] Figure 5 The lower support leg 32 includes at least two legs 321 arranged circumferentially. The upper end of the legs 321 is integrally formed with the bottom of the upper support plate 31, and the lower end is detachably connected to the base 1 by fasteners 43 or a snap-fit ​​structure. A first channel 41 is formed between two adjacent legs 321, located between the upper support plate 31 and the base 1.

[0051] The second type, see [link] Figure 6 The lower support foot 32 is a long arc-shaped protrusion. The circumference of the long arc-shaped protrusion is the same as or similar to the circumference of the upper support plate 31. A transverse channel 322 is provided on the long arc-shaped protrusion, which runs through its inner and outer side walls. The transverse channel 322 constitutes the first channel 41.

[0052] refer to Figure 1-6 In this embodiment, there are two supports 3, which are circumferentially spaced between the heat-conducting plate 2 and the base 1, forming a second channel 42 between the two supports 3. During installation, the first support 3 is first fixed to the top of the base 1 using fasteners 43, and then the heat-conducting plate 2 is placed on the installed first support 3. Then, the second support is installed between the base 1 and the heat-conducting plate 2 from the side of the base 1 away from the first support, and fixed to the base 1 using fasteners 43. At this time, under the combined limiting effect of the outward flanges 311 of the two supports, the heat-conducting plate 2 is fixed by multiple supports and cannot be removed. It can also be noted that the outward flanges 311 can be designed to only limit the heat-conducting plate 2, in which case the heat-conducting plate 2 will not be fixed by multiple supports, and the heat-conducting plate 2 can still be removed individually.

[0053] Example 2

[0054] The difference between this embodiment and Embodiment 1 is that the adjacent support bodies 3 are changed from intermittent engagement to abutting contact. When two adjacent support bodies 3 abut each other, the implementation includes, but is not limited to, any of the following:

[0055] The first type, see [link / reference] Figure 7 The number of support bodies 3 is three or more, and all support bodies 3 are arranged circumferentially between the heat-conducting plate 2 and the base 1. Two adjacent support bodies 3 abut against each other. At this time, only the first channel is formed on the support body 3, or only the first channel is formed between the support body 3 and the base 1. That is, this type of pot support assembly does not have a second channel.

[0056] The second type, see [link] Figure 8 The number of supports 3 is two or more. At opposite ends of the support 3 in the circumferential direction, there are outwardly extending first protrusions 312 and second protrusions 313. The first protrusions 312 abut against the second protrusions 313 of the adjacent support 3 to form a support edge (not shown in the figure). A second channel 42 is formed between the support edge and the base 1. The bottom of the heat-conducting plate 2 abuts against the top of the support edge.

[0057] The third type, see [link] Figure 9 The number of support bodies 3 is two or more. At opposite ends of the support body 3 in the circumferential direction, there are a first U-shaped groove 331 and a second U-shaped groove 332 extending outward and opening in the circumferential direction. The first U-shaped groove 331 abuts against the second U-shaped groove 332 of the adjacent support body 3 and together encloses the second channel 42. The bottom of the heat-conducting plate 2 abuts against the top of the first U-shaped groove 331 and the top of the second U-shaped groove 332 respectively.

[0058] Example 3

[0059] refer to Figure 10-11 This embodiment provides a gas stove, which includes a housing assembly 5, a burner assembly 6, and a liquid collection tray 7. An installation opening 521 is provided on the top of the housing assembly 5. Specifically, the housing assembly 5 includes a bottom shell 51 and a panel 52, with the panel 52 covering the top of the bottom shell 51. The installation opening 521 is provided on the panel 52. The burner assembly 6 is disposed inside the housing assembly 5, with its upper end passing through the installation opening 521. A burner body 61 is located at the upper end of the burner assembly 6. The liquid collection tray 7 is disposed at the installation opening 521 and located around the burner assembly 6. Specifically, the liquid collection tray 7 is preferably a recessed liquid collection tray, with its upper end abutting against the top of the panel 52 of the housing assembly 5, and its lower end connected to the burner assembly 6. An annular liquid collection groove (not shown in the figure) is formed at the lower end of the liquid collection tray 7, and this annular liquid collection groove is lower than the installation opening 521 and the top of the burner body 61.

[0060] The gas stove also includes a pot support assembly as described in Embodiment 1 or 2. The base 1 is mounted on the liquid collection tray 7 and located on the outer periphery of the upper end of the burner assembly 6. The heat-conducting plate 2 is located above the burner assembly 6, and its orthographic projection completely covers the upper ends of both the liquid collection tray 7 and the burner assembly 6. It is evident that, compared to existing gas stoves, the gas stove of this application has a flatter overall design and a more aesthetically pleasing appearance. Furthermore, the heat-conducting plate 2 effectively prevents overflowing liquid from flowing towards the base 1 and the burner assembly area, facilitating cleaning and resulting in higher thermal efficiency.

[0061] Furthermore, multiple foot pads 44 are circumferentially spaced between the base 1 and the top of the liquid tray 7. The foot pads 44 connect the base 1 or the liquid tray 7, so that the base 1 or the pot support assembly is placed stably and reliably on the liquid tray. In addition, due to the arrangement of multiple foot pads 44, an airflow channel (not shown in the figure) can be formed between the base 1 and the liquid tray 7. The two ends of the airflow channel are respectively connected to the central hole 11 and the atmosphere outside the side wall of the pot support assembly, thereby enabling the secondary air required for combustion of the burner assembly to be supplied through the airflow channel, while also facilitating the dissipation of heat inside the gas stove through the airflow channel.

[0062] The above descriptions are merely some embodiments of this utility model. For those skilled in the art, various modifications and improvements can be made without departing from the inventive concept of this utility model, and all such modifications and improvements fall within the protection scope of this utility model.

Claims

1. A pot support assembly, characterized in that, include: The base (1) has a central hole (11) with openings at both the top and bottom ends; A heat-conducting plate (2) is disposed above the base (1), and its orthographic projection completely covers the central hole (11); Multiple supports (3) are circumferentially arranged between the base (1) and the heat-conducting plate (2), and the heat-conducting plate (2) is connected to the base (1) through the multiple supports (3); A first channel (41) is provided on the support (3) or between the support (3) and the base (1), the inner and outer ends of the first channel (41) being connected to the central hole (11) and the external atmosphere respectively; and / or a second channel (42) is provided between two adjacent supports (3), the inner and outer ends of the second channel (42) being connected to the central hole (11) and the external atmosphere respectively.

2. The pot support assembly according to claim 1, characterized in that, The horizontal cross-sectional area of ​​the heat-conducting plate (2) is larger than that of the base (1), and the orthographic projection of the heat-conducting plate (2) completely covers the base (1).

3. A pot support assembly according to claim 1, characterized in that, The support body (3) includes an upper support plate (31) and a lower support foot (32). The upper support plate (31) is connected to the base (1) through the lower support foot (32). The radial outer side of the heat-conducting plate (2) is disposed on the top of the heat-conducting plate (2). The first channel (41) is provided on the lower support foot (32).

4. A pot support assembly according to claim 3, characterized in that, The lower support leg (32) includes at least two legs (321) arranged circumferentially spaced apart. The upper end of each leg (321) is integrally formed with the bottom of the upper support plate (31), and the lower end is detachably connected to the base (1). A first channel (41) is formed between two adjacent legs (321) and between the upper support plate (31) and the base (1); or The lower support foot (32) is a long arc-shaped protrusion. A transverse channel (322) is provided on the long arc-shaped protrusion, which runs through its inner and outer side walls. The transverse channel (322) constitutes the first channel (41).

5. A pot support assembly according to claim 3, characterized in that, The radial inner end of the upper support plate (31) is flush with the inner sidewall of the lower support foot (32), and the radial outer end of the upper support plate (31) protrudes from the outer sidewall of the base (1) and the outer sidewall of the lower support foot (32).

6. A pot support assembly according to any one of claims 3-5, characterized in that, A guide surface (21) is provided on the outer periphery of the heat-conducting plate (2), and an outer flange (311) is provided on the radial outer end of the upper support plate (31) and is turned upward and cooperates with the guide surface (21). The outer flange (311) covers part of the guide surface (21) and limits and fixes the heat-conducting plate (2) on the upper support plate (31).

7. A pot support assembly according to claim 6, characterized in that, The top surface of the heat-conducting plate (2) is higher than the top of the outer flange (311).

8. A pot support assembly according to claim 3, characterized in that, The two adjacent supports (3) are fitted with a gap, and a second channel (42) is provided between the base (1) and the heat-conducting plate (2) between the two adjacent supports (3); or the two adjacent supports (3) abut against each other.

9. A pot support assembly according to claim 8, characterized in that, At opposite ends of the support body (3) in the circumferential direction, there are respectively an outwardly extending first protruding edge (312) and a second protruding edge (313). The first protruding edge (312) abuts against the second protruding edge (313) of the adjacent support body (3) to form a support edge. A second channel (42) is formed between the support edge and the base (1). The bottom of the heat-conducting plate (2) abuts against the top of the support edge; or At opposite ends of the support body (3) in the circumferential direction, there are respectively a first U-shaped groove (331) and a second U-shaped groove (332) extending outward and opening in the circumferential direction. The first U-shaped groove (331) abuts against the second U-shaped groove (332) of the adjacent support body (3) and together encloses the second channel (42). The bottom of the heat-conducting plate (2) abuts against the top of the first U-shaped groove (331) and the top of the second U-shaped groove (332).

10. A pot support assembly according to claim 1, characterized in that, The base (1) includes an annular vertical section (12) and an annular horizontal section (13). The upper end of the annular vertical section (12) is fixedly connected to the radial inner end of the annular horizontal section (13). The annular horizontal section (13) is connected to a plurality of the supports (3).

11. A pot support assembly according to claim 10, characterized in that, The base (1) also includes an annular flared section (14), the diameter of which gradually increases from bottom to top, and the upper end of the annular vertical section (12) is integrally formed with the radial inner end of the annular horizontal section (13) through the annular flared section (14).

12. A pot support assembly according to claim 10, characterized in that, Multiple foot pads (44) are provided at the bottom of the annular transverse section (13) and are located around the annular vertical section (12).

13. A gas stove, characterized in that, include: The housing assembly (5) has a mounting port (521) on its top; The burner assembly (6) is disposed inside the housing assembly (5) and its upper end passes through the mounting port (521); A liquid collection tray (7) is disposed at the mounting port (521) and located around the burner assembly (6); According to any one of claims 1-12, the base (1) is mounted on the liquid tray (7) and located on the periphery of the upper end of the burner assembly (6), the heat-conducting plate (2) is located above the burner assembly (6), and the orthographic projection of the heat-conducting plate (2) completely covers the upper ends of the liquid tray (7) and the burner assembly (6).

14. A gas stove according to claim 13, characterized in that, An airflow channel communicating with the central hole (11) is formed between the base (1) and the liquid tray (7).