Zero-carbon-hydrogen-energy power generation device

By designing structures such as moving rails, mobile seats and support springs in hydrogen-energy power generation devices, real-time weight monitoring and replacement reminder of hydrogen cylinders is achieved, solving the problem of timely detection of insufficient hydrogen in traditional devices, and improving the efficiency and safety of equipment.

CN120043035APending Publication Date: 2025-05-27ACRE COKING & REFRACTORY ENG CONSULTING CORP DALIAN MCC
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Patent Information

Application Number
CN202510230761.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-02-28
Publication Date
2025-05-27

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Abstract

The invention relates to the technical field of hydrogen energy power generation devices, and discloses a zero-carbon hydrogen energy power generation device which comprises an equipment body, a side door is rotatably connected to the outer wall of the equipment body, an audible and visual alarm is fixedly assembled on the outer wall of the equipment body, and a controller is fixedly assembled on the outer wall of the equipment body. A moving rail is fixedly assembled at the bottom of an inner cavity of the equipment body, and a tooth groove is formed in the outer wall of the moving rail. According to the zero-carbon-hydrogen-energy power generation device, the moving rail is arranged in the inner cavity of the equipment body, the moving base is arranged on the outer wall of the moving rail, the driving motor is arranged in the inner cavity of the moving base, the moving base can be driven to move along the outer wall of the moving rail under the action of the driving motor, and therefore movement of the mounting bin is achieved; and the mounting bin can move outwards from the inner cavity of the equipment, and in the outward movement process, the hydrogen cylinder moves to the outer side from the inner cavity of the equipment body.
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Description

Technical Field

[0001] The present invention relates to the technical field of hydrogen energy power generation devices, and specifically to a zero-carbon hydrogen energy power generation device. Background Technique

[0002] Hydrogen energy power generation refers to a hydrogen-oxygen generator set composed of the combustion of hydrogen and oxygen. Hydrogen energy is a secondary energy source, which is produced by using other energy sources through certain methods, unlike coal, oil, and natural gas that can be directly mined. Among them, the hydrogen energy power generation device includes a hydrogen cylinder storing hydrogen fuel in the form of compressed hydrogen or liquefied hydrogen. The hydrogen cylinder transports hydrogen to the hydrogen energy generator, and the hydrogen energy generator converts hydrogen energy into electrical energy.

[0003] When the traditional hydrogen energy power generation device is in use, a hydrogen cylinder is often installed in the inner cavity of the power generation device. The hydrogen in the hydrogen cylinder will continuously supply to the combustion chamber. As the hydrogen is supplied, the hydrogen in the hydrogen cylinder will become less and less. The traditional equipment lacks the detection of the hydrogen content in the hydrogen cylinder, and the operator needs to continuously judge the hydrogen content in the hydrogen cylinder according to the combustion situation in the combustion chamber, resulting in the operator being unable to discover in time when the hydrogen in the hydrogen cylinder is lacking. Summary of the Invention

[0004] Aiming at the deficiencies of the prior art, the present invention provides a zero-carbon hydrogen energy power generation device, which has the advantages of monitoring the weight of the hydrogen cylinder and facilitating the replacement of the hydrogen cylinder, and solves the problems raised in the above background technique.

[0005] The present invention provides the following technical solutions: A zero-carbon hydrogen energy power generation device includes a device body. A side door is rotatably connected to the outer wall of the device body. An audible and visual alarm is fixedly assembled on the outer wall of the device body. A controller is fixedly assembled on the outer wall of the device body. A moving rail is fixedly assembled at the bottom of the inner cavity of the device body. A tooth groove is opened on the outer wall of the moving rail. A moving seat is movably sleeved on the outer wall of the moving rail. A driving motor is fixedly assembled in the inner cavity of the moving seat. A driving gear is fixedly assembled on the power output shaft of the driving motor. A support platform is fixedly assembled on the top of the moving seat. A support rod is fixedly assembled on the top of the support platform. A support spring is movably sleeved on the outer wall of the support rod. A moving plate is movably sleeved on the outer wall of the support rod. An installation plate is fixedly assembled on the inner wall of the device body. A trigger plate is fixedly assembled on the outer wall of the installation plate. An installation bin is fixedly assembled on the outer wall of the moving plate. A hydrogen cylinder is installed in the inner cavity of the installation bin.

[0006] As a preferred technical solution of the present invention: The outer wall of the driving gear meshes with the inner wall of the tooth groove, and the inner wall shape of the moving seat matches the outer wall shape and size of the moving rail.

[0007] As a preferred technical solution of the present invention: the top and bottom of the support spring are respectively connected to the bottom of the moving plate and the top of the support platform, and the support spring is made of high carbon steel.

[0008] As a preferred technical solution of the present invention: the outer wall of the moving plate is in contact with the outer wall of the mounting plate, and the controller is electrically connected between the sound and light alarm and the mounting plate.

[0009] As a preferred technical solution of the present invention: the number of the support rods is two, and the two support rods are respectively installed on the tops of the two side support platforms.

[0010] As a preferred technical solution of the present invention: the controller is electrically connected to the drive motor, and the drive motor is a low-speed high-torque motor.

[0011] Compared with the prior art, the present invention has the following beneficial effects:

[0012] 1. For this zero-carbon hydrogen energy power generation device, through the moving track arranged in the inner cavity of the device body, the moving seat arranged on the outer wall of the moving track, and the drive motor arranged in the inner cavity of the moving seat, the drive motor can drive the moving seat to move along the outer wall of the moving track, so as to realize the movement of the installation bin, so that the installation bin can move out from the inner cavity of the device. During the outward movement, the hydrogen cylinder moves from the inner cavity of the device body to the outside.

[0013] 2. For this zero-carbon hydrogen energy power generation device, through the support rods installed on the top of the support platform and the support springs arranged on the outer walls of the support rods, the support springs can support the moving plate and the installation bin. When the hydrogen cylinder is placed in the installation bin, as the gas in the hydrogen cylinder is used, its weight will also continuously decrease. At this time, the support springs can push the moving plate and the installation bin upward. When the outer wall of the moving plate touches the trigger plate, it can indicate that the weight of the hydrogen cylinder is small, so as to timely detect that there is a lack of hydrogen in the hydrogen cylinder and the hydrogen cylinder needs to be replaced. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 is a three-dimensional structural schematic diagram of the present invention;

[0015] Figure 2 is a cross-sectional structural schematic diagram of the device body of the present invention;

[0016] Figure 3 is a structural schematic diagram of the moving track of the present invention;

[0017] Figure 4 is a structural schematic diagram of the installation bin of the present invention;

[0018] Figure 5 is a structural schematic diagram of the moving seat of the present invention.

[0019] In the figure: 1, equipment body; 2, side door; 3, audible and visual alarm; 4, moving rail; 5, tooth groove; 6, moving seat; 7, driving motor; 8, driving gear; 9, support platform; 10, support rod; 11, support spring; 12, moving plate; 13, mounting plate; 14, trigger plate; 15, mounting bin; 16, hydrogen cylinder; 17, controller. Specific embodiments

[0020] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0021] Please refer to Figure 1 - Figure 5 , a zero-carbon hydrogen energy power generation device, including an equipment body 1, a side door 2 is rotatably connected to the outer wall of the equipment body 1, an audible and visual alarm 3 is fixedly assembled on the outer wall of the equipment body 1, a controller 17 is fixedly assembled on the outer wall of the equipment body 1, a moving rail 4 is fixedly assembled at the bottom of the inner cavity of the equipment body 1, a tooth groove 5 is formed on the outer wall of the moving rail 4, a moving seat 6 is movably sleeved on the outer wall of the moving rail 4, a driving motor 7 is fixedly assembled in the inner cavity of the moving seat 6, a driving gear 8 is fixedly assembled on the power output shaft of the driving motor 7, a support platform 9 is fixedly assembled on the top of the moving seat 6, a support rod 10 is fixedly assembled on the top of the support platform 9, a support spring 11 is movably sleeved on the outer wall of the support rod 10, a moving plate 12 is movably sleeved on the outer wall of the support rod 10, a mounting plate 13 is fixedly assembled on the inner wall of the equipment body 1, a trigger plate 14 is fixedly assembled on the outer wall of the mounting plate 13, a mounting bin 15 is fixedly assembled on the outer wall of the moving plate 12, and a hydrogen cylinder 16 is installed in the inner cavity of the mounting bin 15.

[0022] In the above structure, by providing the moving rail 4 in the inner cavity of the equipment body 1 and the tooth groove 5 on the outer wall of the moving rail 4, when it is necessary to replace the hydrogen cylinder 16 in the inner cavity of the mounting bin 15, the driving gear 8 can be driven by the driving motor 7, so that the driving gear 8 drives the moving seat 6 to move along the outer wall of the moving rail 4 during rotation, thereby realizing the overall movement of the moving plate 12 and the mounting bin 15.

[0023] In a preferred embodiment: the outer wall of the driving gear 8 meshes with the inner wall of the tooth groove 5, and the inner wall shape of the moving seat 6 matches the outer wall shape and size of the moving rail 4.

[0024] In the above structure, through the driving motor 7 installed in the inner cavity of the moving seat 6 and the driving gear 8 arranged on the power output shaft of the driving motor 7, the driving gear 8 can be driven to rotate under the action of the driving motor 7. When the driving gear 8 rotates, the overall driving of the moving seat 6 is realized, so that the moving seat 6 moves along the outer wall of the moving rail 4.

[0025] In a preferred embodiment: The top and bottom of the support spring 11 are respectively connected to the bottom of the moving plate 12 and the top of the support platform 9, and the support spring 11 is made of high-carbon steel.

[0026] In the above structure, through the support spring 11 arranged on the outer wall of the support rod 10, the bottom of the moving plate 12 can be supported under the action of the support spring 11, so that the moving plate 12 and the installation bin 15 can be integrally installed on the outer wall of the support rod 10 under the action of the support spring 11. When the hydrogen cylinder 16 is placed in the inner cavity of the installation bin 15, the moving plate 12 will move downward along the outer wall of the support rod 10.

[0027] In a preferred embodiment: The outer wall of the moving plate 12 is in contact with the outer wall of the mounting plate 13, and the controller 17 is electrically connected between the sound and light alarm 3 and the mounting plate 13 respectively.

[0028] In the above structure, through the mounting plate 13 and the trigger plate 14 arranged on the inner wall of the equipment body 1, as the hydrogen cylinder 16 is used, its weight will gradually decrease, so that the moving plate 12 moves upward along the outer wall of the support rod 10 under the action of the support spring 11, so that the outer wall of the moving plate 12 contacts the trigger plate 14, realizing the triggering of the trigger plate 14, and then the sound and light alarm 3 is lit under the action of the controller 17, so as to remind the user that there is less hydrogen remaining in the inner cavity of the hydrogen cylinder 16 and the hydrogen cylinder 16 needs to be replaced in time.

[0029] In a preferred embodiment: The number of the support rods 10 is two, and the two support rods 10 are respectively installed on the tops of the two side support platforms 9.

[0030] In the above structure, through the support rods 10 installed on the tops of the two side support platforms 9, the moving plate 12 can be restricted under the action of the support rods 10, so that the moving plate 12 can only move up and down along the outer wall of the support rod 10, so that the weight of the hydrogen cylinder 16 can be stably pressed on the outer wall of the support spring 11.

[0031] In a preferred embodiment: The controller 17 is electrically connected to the driving motor 7, and the driving motor 7 is a low-speed high-torque motor.

[0032] In the above structure, by installing a driving motor 7 in the inner cavity of the moving seat 6 and connecting the driving motors 7 on both sides to the controller 17, the driving motors 7 on both sides are simultaneously started under the action of the controller 17, so that the driving motors 7 on both sides can drive the driving gears 8 to rotate, and then the moving seat 6 is driven under the action of the rotation of the driving gears 8.

[0033] Working principle: During the use of the above device, when it is necessary to use the device body 1 for hydrogen energy power generation, the hydrogen cylinder 16 is installed in the inner cavity of the device body 1. When installing the hydrogen cylinder 16 into the inner cavity of the device body 1, by starting the driving motor 7, the driving gear 8 is driven to rotate under the action of the driving motor 7. During the rotation of the driving gear 8, the moving seat 6 is driven, so that the moving seats 6 on both sides move outward along the outer wall of the moving track 4, so that the moving plate 12 and the installation bin 15 move outward from the inner cavity of the device body 1. When the moving plate 12 moves to the outermost side, the hydrogen cylinder 16 can be installed in the inner cavity of the installation bin 15 at this time. During the use of the hydrogen cylinder 16, as the hydrogen energy in the inner cavity of the hydrogen cylinder 16 is used, its weight will continuously decrease. At this time, under the action of the support spring 11, the moving plate 12 and the installation bin 15 will move upward, so that the moving plate 12 gradually moves upward along the outer wall of the support rod 10. When the outer wall of the moving plate 12 contacts the trigger plate 14 along the outer wall of the installation plate 13, the trigger plate 14 can be triggered, and then the sound and light alarm 3 can be started under the action of the controller 17, so as to remind the user that the weight of the hydrogen cylinder 16 has decreased, and the remaining hydrogen energy in the inner cavity of the hydrogen cylinder 16 is insufficient, and the hydrogen cylinder 16 needs to be replaced in time. When replacing the hydrogen cylinder 16, the moving seat 6 can be moved outward along the outer wall of the moving track 4 again under the action of the driving motor 7 and the driving gear 8, and the moving plate 12 and the installation bin 15 are moved outward from the inner cavity of the device body 1, so that the empty hydrogen cylinder 16 can be replaced very conveniently, making the use of the device body 1 more convenient.

[0034] Although the embodiments of the present invention have been shown and described, it will be understood by those of ordinary skill in the art that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A zero-carbon hydrogen energy power generation device, comprising a device body (1), characterized in that: The outer wall of the equipment body (1) is rotatably connected to a side door (2); the outer wall of the equipment body (1) is fixedly equipped with an audible and visual alarm (3); the outer wall of the equipment body (1) is fixedly equipped with a controller (17); the bottom of the inner cavity of the equipment body (1) is fixedly equipped with a movable rail (4); the outer wall of the movable rail (4) is provided with a tooth groove (5); the outer wall of the movable rail (4) is movably sleeved with a movable seat (6); the inner cavity of the movable seat (6) is fixedly equipped with a driving motor (7); the power output shaft of the driving motor (7) is fixedly equipped with a driving gear (8); The top of the movable seat (6) is fixedly equipped with a support platform (9), the top of the support platform (9) is fixedly equipped with a support rod (10), the outer wall of the support rod (10) is movably sleeved with a support spring (11), the outer wall of the support rod (10) is movably sleeved with a movable plate (12), the inner wall of the equipment body (1) is fixedly equipped with a mounting plate (13), the outer wall of the mounting plate (13) is fixedly equipped with a trigger plate (14), the outer wall of the movable plate (12) is fixedly equipped with a mounting bin (15), and the inner cavity of the mounting bin (15) is equipped with a hydrogen cylinder (16).

2. A zero-carbon hydrogen energy power generation device according to claim 1, characterized in that: The outer wall of the driving gear (8) and the inner wall of the tooth groove (5) are meshed with each other, and the shape of the inner wall of the moving seat (6) matches the shape and size of the outer wall of the moving rail (4).

3. A zero-carbon hydrogen energy power generation device according to claim 1, characterized in that: The top and bottom of the support spring (11) are respectively connected to the bottom of the moving plate (12) and the top of the support platform (9), and the support spring (11) is made of high carbon steel.

4. A zero-carbon hydrogen energy power generation device according to claim 1, characterized in that: The outer wall of the movable plate (12) and the outer wall of the mounting plate (13) are in contact with each other, and the controller (17) is electrically connected to the sound and light alarm (3) and the mounting plate (13) respectively.

5. A zero-carbon hydrogen energy power generation device according to claim 1, characterized in that: There are two support rods (10), and the two support rods (10) are respectively installed on the top of the support platforms (9) on both sides.

6. A zero-carbon hydrogen energy power generation device according to claim 1, characterized in that: The controller (17) is electrically connected to the drive motor (7), and the drive motor (7) is a low-speed high-torque motor.

Citation Information

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