Gas energy-saving and environment-friendly heating equipment

By introducing mixing and gas delivery regulation mechanisms into gas-fired energy-saving and environmentally friendly heating equipment, the problems of insufficient gas ratio regulation and mixing are solved, achieving a more efficient and safer combustion process.

CN224302189UActive Publication Date: 2026-05-29WUXI HUAAO TECH CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
WUXI HUAAO TECH CO LTD
Filing Date
2025-06-20
Publication Date
2026-05-29

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  • Figure CN224302189U_ABST
    Figure CN224302189U_ABST
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Abstract

The utility model relates to the technical field of heat supply equipment, concretely to a gas energy -conserving environmental protection heat supply equipment, it includes the heater, the mixed gas pipe of setting in the top of heater, the mounting plate of setting in the side of heater, mixed mechanism, gas transmission adjusting mechanism and rotating plate, mixed mechanism sets up in the top of mixed gas pipe, gas transmission adjusting mechanism sets up in the side of mixed mechanism, rotating plate rotates and sets up in the inside of gas transmission adjusting mechanism. The utility model discloses through the setting of gas transmission adjusting mechanism, and the closed rotating block is driven to rotate to adjust the gas transmission mouth of gas supply pipe, and the proportion of gas delivery is controlled, so can ensure that fuel burns completely, avoid the problem of insufficient combustion due to air shortage or excess, not only improve the thermal efficiency, but also reduce the waste of unburnt gas, thereby reduce overall energy consumption, and significantly reduce the generation of nitrogen oxides, carbon monoxide and other pollutants, reduce the particulate matter content in flue gas, help to improve air quality.
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Description

Technical Field

[0001] This utility model relates to the field of heating equipment technology, and in particular to a gas-fired energy-saving and environmentally friendly heating equipment. Background Technology

[0002] Gas-fired energy-saving and environmentally friendly heating equipment is a technology that uses clean energy sources such as natural gas and liquefied petroleum gas for efficient heating. It combines energy-saving and environmental protection design and is suitable for residential, commercial or industrial applications.

[0003] Chinese Patent CN213334561U discloses a gas-fired energy-saving and environmentally friendly heating device, including a protective cover, a support ring, a support base, a rack, a gear, an internal gear ring, and an adjusting component. The protective cover and the support ring are integrally formed, with the protective cover located above the support ring. The support ring has a gear groove, and a gear shaft is disposed within the gear groove. The support base is slidably disposed on the support ring. The rack is disposed at the bottom of the support base and is slidably connected to the support ring. The gear is rotatably disposed on the gear shaft, and the gear meshes with the rack. The internal gear ring is rotatably disposed within the gear groove, and the internal gear ring meshes with the gear. The adjusting component is disposed on the gear, and the adjusting component passes through the protective cover and is rotatably connected to the protective cover. This utility model, by providing a limiting block on the support base, can ensure that a frying pan will not slip off when placed on this utility model; by sliding the support base on the support ring, the position of the support base can be adjusted, making it suitable for frying pans of different sizes.

[0004] However, the aforementioned publicly available solutions have the following shortcomings: existing gas-fired energy-saving and environmentally friendly heating equipment cannot adjust the proportion of various gases during use, and cannot fully mix the prepared gases, resulting in incomplete combustion of the heating equipment and thus poor heating effect. Utility Model Content

[0005] The purpose of this invention is to address the problems in the prior art where the proportion of gas delivery cannot be adjusted and various gases cannot be fully mixed, and to propose a gas-fired energy-saving and environmentally friendly heating device.

[0006] The technical solution of this utility model: A gas-fired energy-saving and environmentally friendly heating device, including a heater, a mixing pipe disposed on the top of the heater, and a mounting plate disposed on the side of the heater; further comprising:

[0007] The mixing mechanism is located at the top of the mixing pipe and is used to mix several gases delivered inside through multiple stirring processes before delivering them into the mixing pipe.

[0008] A gas delivery regulating mechanism is located on the side of the mixing mechanism and is used to regulate the delivery speed of each gas, thereby controlling the proportion of gas delivered into the mixing mechanism.

[0009] The rotating plate is rotatably mounted inside the gas delivery regulating mechanism. The rotating plate has a rotating groove, which is hexagonal. A sealing rotating block is slidably mounted inside the rotating groove. Six sealing rotating blocks are arranged in a ring around the rotating groove. The gas delivery regulating mechanism controls the rotation of the rotating plate, thereby controlling the rotation of the sealing rotating blocks. The six sealing rotating blocks completely block the gas delivery channel. When rotating, the gas delivery port is opened, thereby controlling the gas delivery volume.

[0010] Preferably, the mixing mechanism includes a mixing cylinder, a stirring assembly, and a deflection assembly;

[0011] The mixing cylinder is located at the top of the mixing pipe and is used to store and mix the incoming gas.

[0012] The stirring component is located inside the mixing drum and is used to stir the materials inside the mixing drum;

[0013] The deflection component is mounted on the stirring component to drive the stirring component to rotate at a certain angle while stirring.

[0014] Preferably, the stirring assembly includes a motor, a rotating shaft, and a connecting plate;

[0015] The motor is located at the end of the mixing drum, the rotating shaft is located at the output end of the motor, the outer side of the rotating shaft is provided with a sliding groove, the connecting plate is located on the outer side of the rotating shaft, the side of the connecting plate away from the rotating shaft is rotatably provided with a fixed shaft, and the outer side of the fixed shaft is provided with stirring blades.

[0016] Preferably, the deflection assembly includes a cylinder, a push rod, a moving ring, and a fixed block.

[0017] The cylinder is located at the end of the mixing drum away from the motor. The push rod is located at the output end of the cylinder. The moving ring is located on the outside of the push rod. The second fixed block is located on the top of the moving ring. A rotating rod is rotatably mounted on the side of the second fixed block. The first fixed block is rotatably mounted at the end of the rotating rod away from the second fixed block. The mounting plate is located at the end of the first fixed block away from the rotating rod.

[0018] Preferably, the gas supply regulating mechanism includes a gas storage tank, a gas supply pipe, and a regulating component;

[0019] The gas storage box is located on the side of the mounting plate, and a gas supply pipe is installed at the bottom of the gas storage box;

[0020] The regulating component is located inside the gas supply pipe and is used to adjust the gas delivery volume to control the proportion of various gases.

[0021] Preferably, the adjusting assembly includes a sliding shaft, a connecting bracket, a connecting plate, and a threaded rod;

[0022] The sliding shaft is located on the side of the closed rotating block, the connecting bracket is located on the inside of the air supply pipe, the connecting plate is located on the top of the rotating plate, the threaded rod is rotatably located on the side of the connecting plate, and a fixing plate is threaded on the outer side of the threaded rod.

[0023] Compared with the prior art, the present invention has the following beneficial technical effects:

[0024] By adjusting the gas supply mechanism, rotating the threaded rod drives the closed rotating block to rotate, thereby adjusting the gas supply port of the gas supply pipe and controlling the proportion of gas delivery. This ensures complete combustion of fuel and avoids incomplete combustion caused by insufficient or excessive air. This not only improves thermal efficiency but also reduces the waste of unburned gas, thereby reducing overall energy consumption. Furthermore, it significantly reduces the generation of pollutants such as nitrogen oxides and carbon monoxide, and reduces the particulate matter content in flue gas, which helps improve air quality.

[0025] By setting up a mixing mechanism, the motor drives the stirring blades to rotate, and the cylinder drives the stirring blades to deflect. This deflection of the stirring blades during rotation and mixing allows for more thorough mixing, forming a uniform gas mixture. This helps ensure a stable ratio of fuel gas to air during combustion, avoiding localized rich or lean combustion, thereby improving combustion efficiency. At the same time, it helps reduce fluctuations during combustion, avoiding unstable phenomena such as deflagration and flameout, and ensuring safe and reliable equipment operation. Attached Figure Description

[0026] Figure 1 This is a schematic diagram of the structure of one embodiment of the present utility model;

[0027] Figure 2 This is a schematic diagram of the internal structure of the hybrid mechanism;

[0028] Figure 3 for Figure 2 Enlarged diagram of A in the middle;

[0029] Figure 4 This is a schematic diagram of the gas supply regulation mechanism.

[0030] Reference numerals: 1. Heater; 2. Mixing gas pipe; 3. Mounting plate; 401. Gas storage tank; 402. Gas supply pipe; 403. Rotating plate; 404. Rotating groove; 405. Enclosed rotating block; 406. Sliding shaft; 407. Connecting frame; 408. Connecting plate; 409. Threaded rod; 410. Fixing plate; 501. Cylinder; 502. Mixing cylinder; 503. Motor; 504. Rotating shaft one; 505. Connecting piece; 506. Fixing shaft; 507. Stirring blade; 508. Mounting plate; 509. Fixing block one; 510. Rotating rod; 511. Slide groove; 512. Push rod; 513. Moving ring; 514. Fixing block two. Detailed Implementation

[0031] Example

[0032] like Figures 1-3 As shown, the present invention proposes a gas-fired energy-saving and environmentally friendly heating device, including a heater 1, a mixing pipe 2 set on the top of the heater 1, a mounting plate 3 set on the side of the heater 1, a mixing mechanism, a gas supply regulating mechanism, and a rotating plate 403. The mounting plate 3 is provided with screw holes for mounting the mounting plate 3 on the wall, thereby fixing the position of the heater 1.

[0033] The mixing mechanism is located at the top of the mixing pipe 2 and is used to mix several gases delivered inside through multiple stirring processes before delivering them into the mixing pipe 2.

[0034] The gas delivery regulating mechanism is located on the side of the mixing mechanism and is used to regulate the delivery speed of each gas, thereby controlling the proportion of gas delivered into the mixing mechanism.

[0035] The rotating plate 403 is rotatably mounted inside the gas delivery regulating mechanism. The rotating plate 403 is provided with a rotating groove 404, which is hexagonal. A sealing rotating block 405 is slidably mounted inside the rotating groove 404. Six sealing rotating blocks 405 are arranged in a ring around the rotating groove 404. The gas delivery regulating mechanism controls the rotation of the rotating plate 403, thereby controlling the rotation of the sealing rotating blocks 405. The six sealing rotating blocks 405 completely block the gas delivery channel. When rotating, they open the gas delivery port, thereby controlling the gas delivery volume.

[0036] The mixing mechanism includes a mixing cylinder 502, a stirring assembly, and a deflection assembly. The mixing cylinder 502 is located at the top of the mixing gas pipe 2 and is used to store and mix the incoming gas. The stirring assembly is located inside the mixing cylinder 502 and is used to stir the materials inside the mixing cylinder 502. The deflection assembly is located on the stirring assembly and is used to drive the stirring assembly to rotate while stirring, and to rotate at a certain angle. The stirring assembly includes a motor 503, a rotating shaft 504, and a connecting plate 505. The motor 503 is located at the end of the mixing cylinder 502, the rotating shaft 504 is located at the output end of the motor 503, a sliding groove 511 is provided on the outer side of the rotating shaft 504, the connecting plate 505 is located on the outer side of the rotating shaft 504, a fixed shaft 506 is rotatably mounted on the side of the connecting plate 505 away from the rotating shaft 504, and a stirring blade 507 is provided on the outer side of the fixed shaft 506. The deflection assembly includes a cylinder 501, a push rod 512, a moving ring 513, and a second fixed block 514. The cylinder 501 is located at the end of the mixing cylinder 502 furthest from the motor 503. The push rod 512 is located at the output end of the cylinder 501. The moving ring 513 is located outside the push rod 512. The second fixed block 514 is located on top of the moving ring 513. A rotating rod 510 is rotatably mounted on the side of the second fixed block 514. A first fixed block 509 is rotatably mounted on the end of the rotating rod 510 furthest from the second fixed block 514. The first fixed block 509 is located on the end of the first fixed block 509 furthest from the rotating rod 510. The installation plate 508 is provided. Electricity drives the stirring blade 507 to rotate through the rotating shaft 504 and the fixed shaft 506, thereby stirring the gas in the mixing cylinder 502. The cylinder 501 drives the push rod 512 to move up and down slightly. When the push rod 512 moves, it drives the moving ring 513 to move. The moving ring 513 drives the second fixed block 514 to move. When the second fixed block 514 moves up and down, it drives the first fixed block 509 and the installation plate 508 to rotate through the rotating rod 510. The installation plate 508 drives the fixed shaft 506 and the stirring blade 507 to rotate on the connecting plate 505.

[0037] Example

[0038] like Figures 1-4 As shown, this utility model proposes a gas-fired energy-saving and environmentally friendly heating device. Compared with Embodiment 1, this embodiment details the structure of the gas supply regulating mechanism.

[0039] The gas supply regulating mechanism includes a gas storage tank 401, a gas supply pipe 402, and a regulating component. The gas storage tank 401 is located on the side of the mounting plate 3, and the gas supply pipe 402 is located at the bottom of the gas storage tank 401. There are two gas supply pipes 402 symmetrically arranged about the mixing cylinder 502, and each gas storage tank 401 stores different gases. The regulating component is located inside the gas supply pipe 402 and is used to adjust the amount of gas supplied to control the proportion of various gases. The adjusting assembly includes a sliding shaft 406, a connecting frame 407, a connecting plate 408, and a threaded rod 409. The sliding shaft 406 is located on the side of the enclosed rotating block 405. The connecting frame 407 is located inside the air supply pipe 402. The connecting frame 407 has six slots arranged around it, and the inner side of the slots is slidably connected to the outer side of the sliding shaft 406. The connecting plate 408 is located on the top of the rotating plate 403. The threaded rod 409 is rotatably mounted on the side of the connecting plate 408, and the outer side of the threaded rod 409 is threaded. A fixed plate 410 is provided, and the bottom of the fixed plate 410 is connected to the outside of the air supply pipe 402. When the threaded rod 409 is rotated, the threaded rod 409 moves on the fixed plate 410, thereby driving the connecting plate 408 to move. The connecting plate 408 drives the rotating plate 403 to rotate. When the rotating plate 403 rotates, it drives the closing rotating block 405 to rotate. When the closing rotating block 405 rotates, it moves synchronously through the restriction of the sliding shaft 406 and the connecting frame 407, thereby controlling the opening size of the air supply pipe 402 and thus controlling the air supply ratio.

[0040] In summary, when using this utility model, the two gas storage boxes 401 are opened, and gas is supplied to the gas supply pipe 402 through the gas storage boxes 401. The threaded rod 409 is rotated, and the threaded rod 409 moves on the fixed plate 410, thereby driving the connecting plate 408 to move. The connecting plate 408 drives the rotating plate 403 to rotate, and when the rotating plate 403 rotates, it drives the closed rotating block 405 to rotate, thereby controlling the opening size of the gas supply pipe 402 and thus controlling the gas supply ratio. The two gases flow into the mixing cylinder 502 in an appropriate ratio. The motor 503 and the cylinder 501 are started. The motor 503 drives the rotating shaft 504 to rotate, and the rotating shaft 504 drives the fixed shaft 506 to rotate through the connecting piece 505. 506 drives the stirring blade 507 to rotate, thereby stirring the gas in the mixing cylinder 502. The cylinder 501 drives the push rod 512 to move up and down slightly. When the push rod 512 moves, it drives the moving ring 513 to move. The moving ring 513 drives the fixed block 2 514 to move. When the fixed block 2 514 moves up and down, it drives the fixed block 1 509 and the mounting plate 508 to rotate through the rotating rod 510. The mounting plate 508 drives the fixed shaft 506 and the stirring blade 507 to rotate on the connecting plate 505, so that the stirring blade 507 can deflect, enhance the stirring effect and fully mix the combustion gas. After mixing, it is discharged into the heater 1 through the mixing gas pipe 2 for combustion and heating.

[0041] The embodiments of the present invention have been described in detail above with reference to the accompanying drawings. However, the present invention is not limited thereto. Various changes can be made within the scope of knowledge possessed by those skilled in the art without departing from the spirit of the present invention.

Claims

1. A gas-fired energy-saving and environmentally friendly heating device, comprising a heater (1), a mixing gas pipe (2) disposed on the top of the heater (1), and a mounting plate (3) disposed on the side of the heater (1); characterized in that, Also includes: The mixing mechanism is located at the top of the mixing pipe (2) and is used to mix several gases delivered to the inside through multiple stirrings before delivering them into the mixing pipe (2). A gas delivery regulating mechanism is located on the side of the mixing mechanism and is used to regulate the delivery speed of each gas, thereby controlling the proportion of gas delivered into the mixing mechanism. And a rotating plate (403), which is rotatably disposed inside the gas delivery regulating mechanism. A rotating groove (404) is provided on the rotating plate (403). The rotating groove (404) is hexagonal. A sealing rotating block (405) is slidably disposed inside the rotating groove (404). Six sealing rotating blocks (405) are arranged in a ring around the rotating groove (404). The gas delivery regulating mechanism controls the rotating plate (403) to rotate, thereby controlling the rotation of the sealing rotating blocks (405). The six sealing rotating blocks (405) completely block the gas delivery channel. When rotating, the gas delivery port is opened, thereby controlling the gas delivery volume.

2. The gas-fired energy-saving and environmentally friendly heating equipment according to claim 1, characterized in that, The mixing mechanism includes a mixing cylinder (502), a stirring assembly, and a deflection assembly; A mixing cylinder (502) is located at the top of the mixing gas pipe (2) and is used to store and mix the incoming gas. The stirring assembly is located inside the mixing cylinder (502) and is used to stir the materials inside the mixing cylinder (502); The deflection component is mounted on the stirring component to drive the stirring component to rotate at a certain angle while stirring.

3. The gas-fired energy-saving and environmentally friendly heating equipment according to claim 2, characterized in that, The stirring assembly includes a motor (503), a rotating shaft (504), and a connecting plate (505); The motor (503) is located at the end of the mixing drum (502), the rotating shaft (504) is located at the output end of the motor (503), the outer side of the rotating shaft (504) is provided with a sliding groove (511), the connecting piece (505) is located on the outer side of the rotating shaft (504), the side of the connecting piece (505) away from the rotating shaft (504) is rotatably provided with a fixed shaft (506), and the outer side of the fixed shaft (506) is provided with a stirring blade (507).

4. The gas-fired energy-saving and environmentally friendly heating equipment according to claim 3, characterized in that, The deflection assembly includes a cylinder (501), a push rod (512), a moving ring (513), and a fixed block two (514). The cylinder (501) is located at the end of the mixing cylinder (502) away from the motor (503). The push rod (512) is located at the output end of the cylinder (501). The moving ring (513) is located on the outside of the push rod (512). The second fixed block (514) is located on the top of the moving ring (513). The side of the second fixed block (514) is rotatably provided with a rotating rod (510). The end of the rotating rod (510) away from the second fixed block (514) is rotatably provided with a first fixed block (509). The end of the first fixed block (509) away from the rotating rod (510) is provided with a mounting plate (508).

5. The gas-fired energy-saving and environmentally friendly heating equipment according to claim 2, characterized in that, The gas supply regulating mechanism includes a gas storage tank (401), a gas supply pipe (402), and regulating components; The gas storage box (401) is located on the side of the mounting plate (3), and the bottom of the gas storage box (401) is provided with a gas supply pipe (402). The regulating component is located inside the gas supply pipe (402) and is used to regulate the amount of gas supplied to control the proportion of various gases.

6. The gas-fired energy-saving and environmentally friendly heating equipment according to claim 5, characterized in that, The adjustment assembly includes a sliding shaft (406), a connecting bracket (407), a connecting plate (408), and a threaded rod (409). The sliding shaft (406) is located on the side of the closed rotating block (405), the connecting frame (407) is located on the inside of the air supply pipe (402), the connecting plate (408) is located on the top of the rotating plate (403), the threaded rod (409) is rotatably located on the side of the connecting plate (408), and the outer thread of the threaded rod (409) is provided with a fixing plate (410).