Pot support assembly and gas stove

By designing the support structure of the pot support assembly and forming a liquid-holding tank with a heat-conducting baffle, the problem of overflowing liquid flowing into the burner is solved, making it easy to clean and efficiently utilizing high-temperature flue gas, thereby improving the thermal efficiency of the gas stove.

CN223596003UActive Publication Date: 2025-11-25VATTI CORP LTD
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Patent Information

Application Number
CN202422768540.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-13
Publication Date
2025-11-25
Estimated Expiration
2034-11-13

AI Technical Summary

Technical Problem

The existing burner caps are exposed, and spilled liquid can easily flow into the burner, extinguishing the flame and making it difficult to clean.

Method used

Design a pot support assembly, including a support structure and a heat-conducting baffle to form a liquid-holding tank to receive overflow, and set a smoke exhaust channel between the support structure and the heat-conducting baffle. The heat-conducting baffle transfers heat to the bottom of the pot, and the bottom of the pot is heated by high-temperature flue gas.

Benefits of technology

It effectively prevents spillage from extinguishing the flame, is easy to clean, improves the thermal efficiency of the gas stove, and exhausts high-temperature flue gas through the smoke exhaust channel.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a pot support assembly and a gas stove, the pot support assembly comprises a supporting structure, the supporting structure comprises a support and a plurality of supporting blocks, a heat conduction cavity is arranged in the support, the plurality of supporting blocks are all arranged on the support and protrude upwards out of the support, and the plurality of supporting blocks are arranged along the peripheral side of the support at intervals; and the heat conduction baffle is installed on the support and shields the heat conduction cavity, a liquid containing groove with an upward opening is defined between the heat conduction baffle and the support, a smoke exhaust channel is arranged between the heat conduction baffle and the support, and the exterior of the supporting structure communicates with the lower portion of the heat conduction baffle through the smoke exhaust channel. The utility model provides a pot support assembly which can receive overflowing liquid in the cooking process and is simple and compact in structure.
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Description

Technical Field

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

[0002] The burner caps of existing burners are generally exposed, and overflow liquid can easily flow into the burner through the flame holes on the burner cap. This can easily extinguish the flame and make the burner difficult to clean.

[0003] Therefore, there is an urgent need for a pot support assembly to solve the above problems. Utility Model Content

[0004] The present invention aims to at least partially solve one of the problems existing in the prior art. To this end, the present invention proposes a pot support assembly that can catch spills during cooking and has a simple and compact structure.

[0005] The above objectives are achieved through the following technical solutions:

[0006] A pot support assembly, comprising:

[0007] The support structure includes a support and multiple support blocks. A heat-conducting cavity is provided in the support. The multiple support blocks are all disposed on the support and protrude upward from the support. The multiple support blocks are spaced apart along the periphery of the support.

[0008] A heat-conducting baffle is installed on the support and covers the heat-conducting cavity. The heat-conducting baffle and the support form an upward-facing liquid-holding tank. A smoke exhaust channel is provided between the heat-conducting baffle and the support. The outside of the support structure is connected to the bottom of the heat-conducting baffle through the smoke exhaust channel.

[0009] Optionally, the support structure also includes a snap-fit ​​ring, and the support structure further includes a connecting ring disposed inside the support. The smoke exhaust channel is provided between the support and the connecting ring. The snap-fit ​​ring is disposed on the upper or lower side of the connecting ring and connected to the connecting ring. The outer end of the heat-conducting baffle is located between the snap-fit ​​ring and the connecting ring.

[0010] Optionally, the snap-fit ​​ring is disposed on the lower side of the connecting ring. The snap-fit ​​ring includes a first snap-fit ​​portion, a second snap-fit ​​portion, and a connecting portion connected sequentially from the inside to the outside. The connecting ring body, the first snap-fit ​​portion, and the connecting portion all extend horizontally. The connecting portion is disposed on the lower side of the outer end of the connecting ring and connected to the connecting ring. The second snap-fit ​​portion extends downward vertically. The second snap-fit ​​portion and the first snap-fit ​​portion are both located on the lower side of the inner end of the connecting ring. The inner end of the connecting ring and the heat-conducting baffle form the liquid-holding groove. The first snap-fit ​​portion, the second snap-fit ​​portion, and the inner end of the connecting ring form an inward-opening slot. The outer end of the heat-conducting baffle is engaged in the slot.

[0011] Optionally, the connecting ring includes a connecting ring body and a periphery disposed on the outer or inner periphery of the connecting ring body. The periphery protrudes upward from the connecting ring body. The inner end of the connecting ring body forms the slot with the first snap-fit ​​portion and the second snap-fit ​​portion. The outer end of the connecting ring body is connected to the connecting portion.

[0012] Optionally, the support includes a base plate, a top enclosure plate disposed on the upper side of the base plate, and a bottom enclosure plate disposed on the lower side of the base plate. The top enclosure plate and the bottom enclosure plate both extend inward in a horizontal direction, and the base plate extends in a vertical direction. The connecting ring is disposed on the inner side of the base plate and located between the top enclosure plate and the bottom enclosure plate. A first smoke exhaust channel is provided between the connecting ring and the base plate. A second smoke exhaust channel is provided between the snap ring and the bottom enclosure plate. A third smoke exhaust channel is provided between the upper side of the connecting ring and the top enclosure plate. The third smoke exhaust channel, the first smoke exhaust channel, and the second smoke exhaust channel are sequentially connected to form the smoke exhaust channel.

[0013] Optionally, the support block is disposed on the top plate and connected to the connecting ring.

[0014] Optionally, a fourth smoke exhaust channel is provided on the substrate, the fourth smoke exhaust channel connects the first smoke exhaust channel and the outside of the substrate, and the fourth smoke exhaust channel, the third smoke exhaust channel, the first smoke exhaust channel and the second smoke exhaust channel are connected to form the smoke exhaust channel.

[0015] Optionally, the support further includes an inner connecting plate, which is disposed on the inner side of the top plate and extends downward. The lower end of the inner connecting plate is connected to the inner end of the connecting ring. A fifth smoke exhaust channel communicating with the third smoke exhaust channel is opened in the upper or middle part of the inner connecting plate. The fifth smoke exhaust channel, the fourth smoke exhaust channel, the third smoke exhaust channel, the first smoke exhaust channel, and the second smoke exhaust channel communicate to form the smoke exhaust channel.

[0016] Optionally, the support further includes a reinforcing plate, the base plate is a curved panel bent outward from the center, the reinforcing plate is disposed on the inner side of the base plate, the bottom end of the reinforcing plate is connected to the bottom surrounding plate, the top end of the reinforcing plate is connected to the upper part of the base plate or the top surrounding plate, the first smoke exhaust channel is formed between the reinforcing plate and the connecting ring at an interval, and the third smoke exhaust channel is formed between the reinforcing plate and the snap-fit ​​ring at an interval.

[0017] Optionally, the heat-conducting baffle is a microcrystalline glass plate.

[0018] In another aspect, this utility model provides a gas stove, including a burner and the aforementioned pot support assembly, wherein the pot support assembly is installed on the upper side of the burner, and the burner is installed at the opening of the stove.

[0019] Optionally, the burner includes a burner body and a first heat insulation structure disposed on the outer periphery and / or bottom side of the burner body.

[0020] Optionally, the first heat insulation structure includes a first heat insulation ring and a first heat insulation cover with an upward opening, the burner body is disposed inside the first heat insulation cover, and the first heat insulation ring is disposed between the burner body and the first heat insulation cover.

[0021] Optionally, a first heat insulation cavity is provided between the periphery of the first heat insulation cover and the periphery of the burner body, and the first heat insulation ring is disposed in the first heat insulation cavity.

[0022] Optionally, it also includes a second heat insulation structure disposed between the stove and the pot support assembly.

[0023] Optionally, the second heat insulation structure includes a second heat insulation cover and a second heat insulation ring. The second heat insulation cover is disposed on the periphery of the upper end of the burner body and located between the support and the stove. The second heat insulation cover has a second heat insulation cavity with its opening facing downward, and the second heat insulation ring is disposed in the second heat insulation cavity.

[0024] Optionally, it also includes a heat-insulating connecting plate. The burner body includes a flame distributor and an infrared combustion cap disposed on the upper side of the flame distributor. The flame distributor is provided with a first secondary air passage, an inner ring gas chamber, an outer ring gas chamber, and a second secondary air passage in sequence from the inside to the outside. The infrared combustion cap covers the inner ring gas chamber and the outer ring gas chamber. The flame distributor has an inner flame hole and an outer flame hole located outside the inner flame hole. The inner flame hole communicates with the inner ring gas chamber, and the outer flame hole communicates with the outer ring gas chamber. A first air passage hole is provided on the outer wall of the second secondary air passage. A second air passage hole corresponding to the first air passage hole is provided on the first heat insulation cover. One end of the heat-insulating connecting plate is connected to the upper end of the outer wall of the second secondary air passage, and the other end of the heat-insulating connecting plate is connected to the inner side of the second heat insulation cover. The outer wall of the second secondary air passage, the heat-insulating connecting plate, and the second heat insulation cover are integrally formed.

[0025] Compared with the prior art, the present invention has at least the following beneficial effects:

[0026] The pot support assembly provided by this utility model features a heat-conducting baffle inside the heat-conducting cavity of the support structure, forming a liquid-collecting tank between the baffle and the support structure. This allows for the collection of spilled liquid during cooking, preventing it from flowing into the burner below the pot support assembly and extinguishing the flame. Users can easily remove the pot support assembly to empty the spilled liquid from the tank for cleaning. The heat-conducting baffle also transfers heat from the burner below to the bottom of the pot, without affecting the heating of the cooking pot. It boasts advantages such as simple structure and ease of cleaning. Furthermore, a smoke exhaust channel is provided between the heat-conducting baffle and the support, allowing the high-temperature flue gas generated by the burner below the pot support to be smoothly discharged into the liquid-collecting tank. This gas then acts on the bottom of the cooking pot, further heating it before being discharged outside the pot support through the gap between adjacent support blocks. This facilitates the discharge of high-temperature flue gas and also allows for its utilization, thereby improving the thermal efficiency of the gas stove. Attached Figure Description

[0027] Figure 1 This is a three-dimensional structural diagram of the pot support assembly for a gas stove provided in a specific embodiment of this utility model;

[0028] Figure 2 yes Figure 1 Top view;

[0029] Figure 3 It is a picture Figure 2 Sectional view at point AA;

[0030] Figure 4 yes Figure 3Enlarged view at point E in the middle;

[0031] Figure 5 yes Figure 1 Exploded view;

[0032] Figure 6 This is a three-dimensional structural diagram of the pot support assembly for a gas stove provided in a specific embodiment two of this utility model;

[0033] Figure 7 yes Figure 6 Top view;

[0034] Figure 8 yes Figure 7 Sectional view at FF;

[0035] Figure 9 yes Figure 8 Enlarged view of point C in the middle;

[0036] Figure 10 yes Figure 6 Exploded view;

[0037] Figure 11 This is a three-dimensional structural diagram of a gas stove provided in a specific embodiment of this utility model;

[0038] Figure 12 yes Figure 11 Top view;

[0039] Figure 13 yes Figure 12 Sectional view at point BB;

[0040] Figure 14 yes Figure 13 Enlarged view at point D;

[0041] Figure 15 yes Figure 11 The main view;

[0042] Figure 16 yes Figure 15 Sectional view at CC;

[0043] Figure 17 This is a three-dimensional structural diagram of the gas stove after the pot support assembly has been removed, according to a specific embodiment of this utility model.

[0044] In the picture:

[0045] 1. Support structure; 10. Heat conduction cavity; 11. Support; 111. Base plate; 112. Top enclosure plate; 113. Bottom enclosure plate; 114. Reinforcing plate; 115. Inner connecting plate; 12. Support block; 13. Connecting ring; 131. Connecting ring body; 132. Surrounding edge;

[0046] 2. Heat-conducting baffle;

[0047] 3. Snap-fit ​​ring; 31. Connecting part; 32. Second snap-fit ​​part; 33. First snap-fit ​​part;

[0048] 4. Outer shell;

[0049] 5. Burner; 51. Flame distributor; 52. Infrared combustion flame cap; 53. First heat insulation structure; 531. First heat insulation cover; 532. First heat insulation ring; 5311. Second air vent; 5312. Clearance vent; 54. Injector assembly; 541. Outer ring injector; 542. Inner ring injector; 55. Second heat insulation structure; 551. Second heat insulation cover; 552. Second heat insulation ring; 56. Heat insulation connecting plate; 501. First and secondary air passages; 502. Inner ring combustion chamber; 503. Outer ring combustion chamber; 504. Second and secondary air passages; 5040. First air vent; 505. First heat insulation chamber; 506. Second heat insulation chamber;

[0050] 6. Stove;

[0051] 7. Ignition needle;

[0052] 100. Smoke exhaust duct; 101. First smoke exhaust duct; 102. Third smoke exhaust duct; 103. Second smoke exhaust duct; 104. Fourth smoke exhaust duct; 105. Fifth smoke exhaust duct;

[0053] 200. Liquid holding tank;

[0054] 300. Card slot. Detailed Implementation

[0055] 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.

[0056] Example 1

[0057] Please refer to Figures 1-5 This utility model provides a pot support assembly, including a support structure 1 and a heat-conducting baffle 2. The support structure 1 includes a support 11 and a plurality of support blocks 12. A heat-conducting cavity 10 is formed inside the support 11. The plurality of support blocks 12 are all disposed on the support 11 and protrude upward from the support 11. The plurality of support blocks 12 are spaced apart along the periphery of the support 11. The heat-conducting baffle 2 is installed on top and covers the heat-conducting cavity 10. The heat-conducting baffle 2 and the support 11 enclose a liquid-holding tank 200 with the opening facing upward. A smoke exhaust channel 100 is provided between the heat-conducting baffle 2 and the support 11. The outside of the support structure 1 and the bottom of the heat-conducting baffle 2 are connected through the smoke exhaust channel 100.

[0058] The pot support assembly provided by this utility model, by setting a heat-conducting baffle 2 in the heat-conducting cavity 10 inside the support structure 1, forms a liquid-collecting tank 200 between the heat-conducting baffle 2 and the support structure 1, thereby catching the overflow during the cooking process and preventing the overflow from flowing into the burner 5 located below the pot support assembly, thus preventing the burner 5 from extinguishing the flame. Users can directly remove the pot support assembly to pour out the overflow in the liquid-collecting tank 200 for cleaning. In addition, the heat-conducting baffle 2 can also transfer the heat from the burner 5 below to the bottom of the pot without affecting the cooking process. The heating of the cooking pot has the advantages of simple structure and easy cleaning. At the same time, by setting a smoke exhaust channel 100 between the heat-conducting baffle 2 and the support 11, the high-temperature flue gas generated by the burner 5 located below the pot support can be smoothly discharged to the liquid tank 200, and then act on the bottom of the cooking pot to further heat the bottom of the cooking pot before being discharged outside the pot support through the gap between two adjacent support blocks 12. On the one hand, it facilitates the discharge of high-temperature flue gas, and on the other hand, it can also utilize the high-temperature flue gas, thereby improving the thermal efficiency of the gas stove.

[0059] Optionally, it also includes a snap-fit ​​ring 3. The support structure 1 also includes a connecting ring 13 disposed inside the support 11. A smoke exhaust channel 100 is provided between the support 11 and the connecting ring 13. The snap-fit ​​ring 3 is disposed on the upper or lower side of the connecting ring 13 and connected to the connecting ring 13. The outer end of the heat-conducting baffle 2 is located between the snap-fit ​​ring 3 and the connecting ring 13, thereby realizing the stable installation of the heat-conducting baffle 2 on the support structure 1.

[0060] Optionally, the snap-fit ​​ring 3 is disposed on the lower side of the connecting ring 13. The snap-fit ​​ring 3 includes a first snap-fit ​​portion 33, a second snap-fit ​​portion 32, and a connecting portion 31 connected sequentially from the inside to the outside. The connecting ring body 131, the first snap-fit ​​portion 33, and the connecting portion 31 all extend horizontally. The connecting portion 31 is disposed on the lower side of the outer end of the connecting ring 13 and is connected to the connecting ring 13. The second snap-fit ​​portion 32 extends downward vertically. Both the second snap-fit ​​portion 32 and the first snap-fit ​​portion 33 are located on the lower side of the inner end of the connecting ring 13. The inner end of the connecting ring 13 and the heat-conducting baffle 2 form a liquid-holding groove 200. The first snap-fit ​​part 33, the second snap-fit ​​part 32 and the inner end of the connecting ring 13 form an inward-facing snap-fit ​​groove 300. The outer end of the heat-conducting baffle 2 is snapped into the snap-fit ​​groove 300, thereby realizing the installation of the heat-conducting baffle 2 on the connecting ring 13. At the same time, since the connecting ring 13 is located on the upper side of the outer end of the heat-conducting baffle 2, the connecting ring 13 and the heat-conducting baffle 2 can form a liquid-holding groove 200 to facilitate liquid holding, which has the advantages of simple and compact structure.

[0061] Optionally, the connecting ring body 131 and the connecting part 31 are detachably connected by screws, thereby achieving simple and stable installation of the heat conduction baffle 2.

[0062] Optionally, the connecting ring 13 also includes a perimeter 132 disposed on the outer or inner perimeter of the connecting ring body 131. The perimeter 132 protrudes upward from the connecting ring body 131. By providing the perimeter 132, the depth of the liquid holding tank 200 is further increased, so that the liquid holding tank 200 can hold more overflow liquid.

[0063] Optionally, the support 11 includes a base plate 111, a top enclosure plate 112 disposed on the upper side of the base plate 111, and a bottom enclosure plate 113 disposed on the lower side of the base plate 111. The top enclosure plate 112 and the bottom enclosure plate 113 both extend inward in the horizontal direction, and the base plate 111 extends in the vertical direction. The connecting ring 13 is disposed on the inner side of the base plate 111 and located between the top enclosure plate 112 and the bottom enclosure plate 113. A first smoke exhaust channel 101 is provided between the connecting ring 13 and the base plate 111. A second smoke exhaust channel 103 is provided between the snap ring 3 and the bottom enclosure plate 113. A third smoke exhaust channel 102 is provided between the upper side of the connecting ring 13 and the top enclosure plate 112. The third smoke exhaust channel 102, the first smoke exhaust channel 101, and the second smoke exhaust channel 103 are sequentially connected to form a smoke exhaust channel 100.

[0064] Optionally, the support block 12 is disposed on the top plate 112 and connected to the connecting ring 13, thereby achieving a fixed connection between the connecting ring 13 and the support 11, resulting in a simple structure. Of course, in other embodiments, the support block 12 may not be connected to the connecting ring 13, and the connecting ring 13 may be connected to the inner side of the base plate 111 through spaced connecting blocks, provided that the spaced connecting blocks can form a first smoke exhaust channel 101.

[0065] Optionally, the support 11 further includes a reinforcing plate 114. The base plate 111 is a curved panel that is bent outward from the center. The reinforcing plate 114 is disposed on the inner side of the base plate 111. The bottom end of the reinforcing plate 114 is connected to the bottom surrounding plate 113. The top end of the reinforcing plate 114 is connected to the upper part of the base plate 111 or the top surrounding plate 112. A first smoke exhaust channel 101 is formed between the reinforcing plate 114 and the connecting ring 13 at intervals. A third smoke exhaust channel 102 is formed between the reinforcing plate 114 and the snap-fit ​​ring 3 at intervals.

[0066] Optionally, the heat-conducting baffle 2 is a microcrystalline glass plate, which has a good thermal conductivity. In other embodiments, the heat-conducting baffle 2 can also be other materials that are easy to conduct heat, which is not limited here.

[0067] Example 2

[0068] Please refer to Figures 6-10The difference between Embodiment 2 and Embodiment 1 is that a fourth exhaust channel 104 is provided on the substrate 111. The fourth exhaust channel 104 connects the first exhaust channel 101 and the outside of the substrate 111. The fourth exhaust channel 104, the third exhaust channel 102, the first exhaust channel 101 and the second exhaust channel 103 are connected to form an exhaust channel 100. In this way, high-temperature flue gas can also be discharged to the outside of the pot support through the fourth exhaust channel 104, and can also heat the cooking pot. By setting the fourth exhaust channel 104, the rapid flow of high-temperature flue gas is facilitated, and the accumulation of high-temperature flue gas in the pot support is avoided.

[0069] Optionally, the support 11 also includes an inner connecting plate 115, which is disposed inside the top plate 112 and extends downward. The lower end of the inner connecting plate 115 is connected to the inner end of the connecting ring 13. A fifth smoke exhaust channel 105 communicating with the third smoke exhaust channel 102 is formed in the upper or middle part of the inner connecting plate 115. The fifth smoke exhaust channel 105, the fourth smoke exhaust channel 104, the third smoke exhaust channel 102, the first smoke exhaust channel 101, and the second smoke exhaust channel 103 communicate to form a smoke exhaust channel 100. By setting the inner connecting plate 115, it is convenient to set the connecting ring 13. At the same time, a liquid-holding tank 200 is formed between the lower end of the inner connecting plate 115 and the heat-conducting baffle 2. In this structure, the support 11 and the connecting ring 13 can be integrally formed, which has the advantages of simple and compact structure and high strength.

[0070] Please refer to Figures 11-17 In another aspect, this utility model provides a gas stove, including a burner 5 and the aforementioned pot support assembly. The pot support assembly is installed on the upper side of the burner 5, and the burner 5 is installed at the opening of the stove 6.

[0071] Optionally, the burner 5 includes a burner body and a first heat insulation structure 53 disposed on the outer periphery and / or bottom side of the burner body. By providing the first heat insulation structure 53, the interior and exterior of the burner 5 are isolated, preventing most of the heat inside the burner 5 from being lost. On the one hand, this can prevent the exterior of the burner 5 from becoming too hot and affecting the lifespan of other components of the burner 5. On the other hand, it can allow more of the heat generated by the combustion of the burner 5 to be concentrated at the bottom of the pot, thereby improving the heating efficiency.

[0072] Optionally, the first heat insulation structure 53 includes a first heat insulation ring 532 and a first heat insulation cover 531 with the opening facing upward. The burner body is disposed inside the first heat insulation cover 531, and the first heat insulation ring 532 is disposed between the burner body and the first heat insulation cover 531, thereby achieving heat insulation of the periphery and bottom of the burner body.

[0073] Optionally, a first heat insulation cavity 505 is provided between the periphery of the first heat insulation cover 531 and the periphery of the burner body, and a first heat insulation ring 532 is disposed in the first heat insulation cavity 505. Since the periphery of the first heat insulation cover 531 and the periphery of the burner body are closer to the combustion flame, a first heat insulation cavity 505 is provided between the periphery of the first heat insulation cover 531 and the periphery of the burner body, and a first heat insulation ring 532 is disposed in the first heat insulation cavity 505 to achieve targeted further heat insulation at this location, thereby improving the heat insulation effect.

[0074] Optionally, it also includes a second heat insulation structure 55, which is disposed between the stove 6 and the pot support assembly to reduce heat loss between the stove 6 and the pot support assembly.

[0075] Optionally, the second heat insulation structure 55 includes a second heat insulation cover 551 and a second heat insulation ring 552. The second heat insulation cover 551 is disposed on the periphery of the upper end of the burner body and located between the support 11 and the stove 6. A second heat insulation cavity 506 with the opening facing downward is provided inside the second heat insulation cover 551, and the second heat insulation ring 552 is disposed inside the second heat insulation cavity 506.

[0076] Optionally, it also includes a heat-insulating connecting plate 56. The burner body includes a flame spreader 51 and an infrared combustion cap 52 disposed on the upper side of the flame spreader 51. The flame spreader 51 is provided with a first and second secondary air passage 501, an inner ring gas chamber 502, an outer ring gas chamber 503, and a second and second secondary air passage 504 in sequence from the inside to the outside. The infrared combustion cap 52 covers the inner ring gas chamber 502 and the outer ring gas chamber 503. The flame spreader 51 has an inner flame hole and an outer flame hole located outside the inner flame hole. The inner flame port communicates with the inner annular combustion chamber 502, and the outer flame port communicates with the outer annular combustion chamber 503. A first air passage 5040 is provided on the outer wall of the second secondary air passage 504, and a second air passage 5311 corresponding to the first air passage 5040 is provided on the first heat insulation cover 531, allowing secondary air to enter the second secondary air passage 504 sequentially from outside the first heat insulation cover 531 through the second air passage 5311 and the first air passage 5040. One end of the heat insulation connecting plate 56 is connected to the upper end of the outer wall of the second secondary air passage 504, and the other end of the heat insulation connecting plate 56 is connected to the inner side of the second heat insulation cover 551. The outer wall of the second secondary air passage 504, the heat insulation connecting plate 56, and the second heat insulation cover 551 are integrally formed, resulting in a simple and compact structure with good heat insulation performance. By setting the first secondary air passage 501 and the second secondary air passage 504, sufficient secondary air is ensured during combustion, thereby improving combustion efficiency.

[0077] Optionally, it also includes an ejector tube assembly 54, with a clearance through hole 5312 at the bottom of the first heat shield 531, through which the ejector tube assembly 54 communicates with the burner body.

[0078] The ejector assembly 54 includes an outer ejector and an inner ejector. The outer ejector is connected to the outer annular gas chamber 503, and the inner annular ejector 542 is connected to the inner annular gas chamber 502.

[0079] Optionally, it also includes an ignition needle 7, which is installed in the first and second air channels 501. The ignition nozzle of the ignition needle 7 extends to the upper side of the inner flame hole. When igniting, the inner flame hole is ignited first, and then the ignition is transmitted from the inner flame hole to the outer flame hole, thereby realizing ignition.

[0080] Optionally, it also includes a housing 4, which covers the outside of the burner 5.

[0081] Optionally, both the burner 5 and the boiler support assembly are provided in two sets, with the boiler support assembly and the burner 5 being provided in a one-to-one correspondence.

[0082] 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 support structure (1) includes a support (11) and a plurality of support blocks (12). A heat-conducting cavity (10) is provided in the support (11). The plurality of support blocks (12) are all disposed on the support (11) and protrude upward from the support (11). The plurality of support blocks (12) are spaced apart along the periphery of the support (11). A heat-conducting baffle (2) is installed on the (11) and covers the heat-conducting cavity (10). The heat-conducting baffle (2) and the support (11) enclose a liquid-holding tank (200) with the opening facing upward. A smoke exhaust channel (100) is provided between the heat-conducting baffle (2) and the support (11). The outside of the support structure (1) is connected to the bottom of the heat-conducting baffle (2) through the smoke exhaust channel (100).

2. The pot support assembly according to claim 1, characterized in that, It also includes a snap ring (3), and the support structure (1) also includes a connecting ring (13) disposed inside the support (11). The smoke exhaust channel (100) is disposed between the support (11) and the connecting ring (13). The snap ring (3) is disposed on the upper or lower side of the connecting ring (13) and connected to the connecting ring (13). The outer end of the heat-conducting baffle (2) is located between the snap ring (3) and the connecting ring (13).

3. The pot support assembly according to claim 2, characterized in that, The snap-fit ​​ring (3) is disposed on the lower side of the connecting ring (13). The snap-fit ​​ring (3) includes a first snap-fit ​​part (33), a second snap-fit ​​part (32), and a connecting part (31) connected sequentially from the inside to the outside. The connecting ring (13), the first snap-fit ​​part (33), and the connecting part (31) all extend horizontally. The connecting part (31) is disposed on the lower side of the outer end of the connecting ring (13) and connected to the connecting ring (13). The second snap-fit ​​part (32) extends vertically. Extending downwards in a straight direction, the second snap-fit ​​portion (32) and the first snap-fit ​​portion (33) are both located below the inner end of the connecting ring (13). The inner end of the connecting ring (13) and the heat-conducting baffle (2) enclose to form a liquid-holding groove. The first snap-fit ​​portion (33), the second snap-fit ​​portion (32) and the inner end of the connecting ring (13) enclose to form an inwardly opening slot (300). The outer end of the heat-conducting baffle (2) is engaged in the slot (300).

4. The pot support assembly according to claim 3, characterized in that, The connecting ring (13) includes a connecting ring body (131) and a periphery (132) disposed on the outer or inner periphery of the connecting ring body (131). The periphery (132) protrudes upward from the connecting ring body (131). The inner end of the connecting ring body (131) is surrounded by the first snap-fit ​​part (33) and the second snap-fit ​​part (32) to form the snap groove (300). The outer end of the connecting ring body (131) is connected to the connecting part (31).

5. The pot support assembly according to claim 2, characterized in that, The support (11) includes a base plate (111), a top enclosure plate (112) disposed on the upper side of the base plate (111), and a bottom enclosure plate (113) disposed on the lower side of the base plate (111). The top enclosure plate (112) and the bottom enclosure plate (113) both extend inward in the horizontal direction, and the base plate (111) extends in the vertical direction. The connecting ring (13) is disposed on the inner side of the base plate (111) and located between the top enclosure plate (112) and the bottom enclosure plate (113). A first smoke exhaust channel (101) is provided between the connecting ring (13) and the base plate (111), a second smoke exhaust channel (103) is provided between the snap ring (3) and the bottom plate (113), and a third smoke exhaust channel (102) is provided between the upper side of the connecting ring (13) and the top plate (112). The third smoke exhaust channel (102), the first smoke exhaust channel (101) and the second smoke exhaust channel (103) are sequentially connected to form the smoke exhaust channel (100).

6. The pot support assembly according to claim 5, characterized in that, The support block (12) is disposed on the top plate (112) and connected to the connecting ring (13).

7. The pot support assembly according to claim 5, characterized in that, A fourth smoke exhaust channel (104) is provided on the substrate (111). The fourth smoke exhaust channel (104) connects the first smoke exhaust channel (101) with the outside of the substrate (111). The fourth smoke exhaust channel (104), the third smoke exhaust channel (102), the first smoke exhaust channel (101) and the second smoke exhaust channel (103) are connected to form the smoke exhaust channel (100).

8. The pot support assembly according to claim 7, characterized in that, The support (11) also includes an inner connecting plate (115), which is disposed on the inner side of the top plate (112) and extends downward. The lower end of the inner connecting plate (115) is connected to the inner end of the connecting ring (13). The upper or middle part of the inner connecting plate (115) is provided with a fifth smoke exhaust channel (105) that communicates with the third smoke exhaust channel (102). The fifth smoke exhaust channel (105), the fourth smoke exhaust channel (104), the third smoke exhaust channel (102), the first smoke exhaust channel (101), and the second smoke exhaust channel (103) communicate to form the smoke exhaust channel (100).

9. The pot support assembly according to claim 5, characterized in that, The support (11) further includes a reinforcing plate (114). The base plate (111) is a curved panel with the middle part bent outward. The reinforcing plate (114) is disposed on the inner side of the base plate (111). The bottom end of the reinforcing plate (114) is connected to the bottom plate (113). The top end of the reinforcing plate (114) is connected to the upper part of the base plate (111) or the top plate (112). The first smoke exhaust channel (101) is formed between the reinforcing plate (114) and the connecting ring (13) at intervals. The third smoke exhaust channel (102) is formed between the reinforcing plate (114) and the snap ring (3) at intervals.

10. The pot support assembly according to any one of claims 1-9, characterized in that, The heat-conducting baffle (2) is a microcrystalline glass plate.

11. A gas stove, characterized in that, Includes a burner (5) and a pot support assembly as described in any one of claims 1-10, the pot support assembly being mounted on the upper side of the burner (5), the burner (5) being mounted at the opening of the stove (6).

12. The gas stove according to claim 11, characterized in that, The burner (5) includes a burner body and a first heat insulation structure (53) disposed on the outer periphery and / or bottom side of the burner body.

13. The gas stove according to claim 12, characterized in that, The first heat insulation structure (53) includes a first heat insulation ring (532) and a first heat insulation cover (531) with the opening facing upward. The burner body is disposed inside the first heat insulation cover (531), and the first heat insulation ring (532) is disposed between the burner body and the first heat insulation cover (531).

14. The gas stove according to claim 13, characterized in that, A first heat insulation cavity (505) is provided between the periphery of the first heat insulation cover (531) and the periphery of the burner body, and the first heat insulation ring (532) is disposed in the first heat insulation cavity (505).

15. The gas stove according to claim 13, characterized in that, It also includes a second heat insulation structure (55), which is disposed between the stove (6) and the pot support assembly.

16. The gas stove according to claim 15, characterized in that, The second heat insulation structure (55) includes a second heat insulation cover (551) and a second heat insulation ring (552). The second heat insulation cover (551) is disposed on the periphery of the upper end of the burner body and located between the support (11) and the stove (6). A second heat insulation cavity (506) with the opening facing downward is provided inside the second heat insulation cover (551), and the second heat insulation ring (552) is disposed inside the second heat insulation cavity (506).

17. The gas stove according to claim 16, characterized in that, It also includes a heat-insulating connecting plate (56). The burner body includes a flame distributor (51) and an infrared combustion cap (52) disposed on the upper side of the flame distributor (51). The flame distributor (51) is provided with a first secondary air passage (501), an inner ring gas chamber (502), an outer ring gas chamber (503), and a second secondary air passage (504) in sequence from the inside to the outside. The infrared combustion cap (52) covers the inner ring gas chamber (502) and the outer ring gas chamber (503). The flame distributor (51) has an inner flame hole and an outer flame hole located outside the inner flame hole. The inner flame hole communicates with the inner ring gas chamber (502). The fire hole is connected to the outer ring gas chamber (503). A first air passage (5040) is provided on the outer side wall of the second secondary air channel (504). A second air passage (5311) corresponding to the first air passage (5040) is provided on the first heat insulation cover (531). One end of the heat insulation connecting plate (56) is connected to the upper end of the outer side wall of the second secondary air channel (504), and the other end of the heat insulation connecting plate (56) is connected to the inner side of the second heat insulation cover (551). The outer side wall of the second secondary air channel (504), the heat insulation connecting plate (56), and the second heat insulation cover (551) are integrally formed.