一种供气组件及燃气灶
By designing a gas supply component in the gas stove and utilizing the structure of the air supply component and the connecting component, air and gas are mixed in intersecting directions inside the connecting component. Through the cooperation of the diverting component and the guide shaft, multiple mixing is achieved, which solves the problem of low thermal efficiency of gas stoves, improves the uniformity and stability of combustion, and meets the new energy efficiency standards.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- GREE ELECTRIC APPLIANCE INC OF ZHUHAI
- Filing Date
- 2025-08-14
- Publication Date
- 2026-07-17
AI Technical Summary
Existing gas stoves have low thermal efficiency and cannot meet the requirements of the new energy efficiency standards.
By designing a gas supply component in a gas stove, the structure of the air supply component and the connecting component allows air and gas to mix in intersecting directions inside the connecting component. Through the cooperation of the diverting component and the guide shaft, multiple mixing is achieved to improve the uniformity and thoroughness of the mixing.
It improves the thermal efficiency of the gas stove, making combustion more even and stable, and meets the new energy efficiency standards.
Smart Images

Figure CN224516781U_ABST
Abstract
Claims
1. A gas supply assembly, comprising: include: Nozzle assembly; A connecting member has an inner cavity and a first connecting port, a second connecting port and a third connecting port respectively communicating with the inner cavity. The first connecting port is connected to the nozzle assembly, and the second connecting port is used to introduce a combustion medium into the nozzle assembly. and An air supply component has an air outlet communicating with the third communication port. The air supply component is used to supply air into the inner cavity and to mix the air with the combustion medium inside the communication component. The opening direction of the second connecting port intersects with the opening direction of the third connecting port.
2. The gas supply assembly of claim 1, wherein, The nozzle assembly includes a first nozzle and a second nozzle that are independent of each other. The connecting member includes a body, a first branch pipe and a second branch pipe. The inner cavity is formed inside the body. One end of the first branch pipe is connected to the inner cavity, and the other end is configured as a first communication port connected to the first nozzle. One end of the second branch pipe is connected to the inner cavity, and the other end is configured as a first communication port connected to the second nozzle. The third connecting port is located on the main body, and the second connecting port is located on the first branch pipe and the second branch pipe respectively.
3. The gas supply assembly of claim 2, wherein, The gas supply assembly further includes a flow divider, which is disposed inside the first branch pipe and / or the second branch pipe and is located between the corresponding second communication port and the nozzle group along the flow direction of the air and the combustion medium. The flow divider is used to disperse the mixed air and the combustion medium.
4. The gas supply assembly of claim 3, wherein, The flow divider includes a flow divider plate fixed inside the first branch pipe and / or the second branch pipe. Along the flow direction of the air and the combustion medium, the flow divider plate has a plurality of through holes, and the through holes are spaced apart from each other.
5. The gas supply assembly of claim 4, wherein, All the through holes include a main hole and multiple secondary holes. The main hole is coaxially arranged with the flow divider plate, and each of the secondary holes surrounds the outer periphery of the main hole. The flow divider also includes a flow guide shaft coaxial with the main hole. The flow guide shaft has a first end and a second end that are arranged opposite to each other along its own axial direction. The first end passes through the main hole. The diameter of the guide shaft gradually increases from the first end to the second end.
6. The gas supply assembly of claim 5, wherein, The diameters of the various secondary holes are not equal.
7. The gas supply assembly of claim 6, wherein, The diameter of each of the secondary holes gradually decreases in a clockwise or counterclockwise direction.
8. The gas supply assembly of claim 5, wherein, The flow divider also includes a fan blade rotatably connected to the second end of the flow guide shaft, the fan blade being configured to rotate around the flow guide shaft under the influence of the air passing through the flow divider and the combustion medium.
9. The gas supply assembly of claim 2, wherein, The second nozzle is disposed around the outer periphery of the first nozzle.
10. A gas hob, characterized in that Includes the gas supply assembly as described in any one of claims 1-9.