Intelligent electricity utilization safety protection device for electric energy curing barn
By setting up guide rail components and H-frames in the distribution cabinet of the electric energy baking room, the circuit board and main control switch are driven to move, and the automatic power outage function is realized, which solves the risk of electric shock during maintenance and improves the safety protection effect of electricity use.
Patent Information
- Application Number
- CN202510291567.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-12
- Publication Date
- 2025-05-06
- Estimated Expiration
- 2045-03-12
AI Technical Summary
During maintenance, the existing power supply system of the electric energy baking room is prone to electric shock hazard and lacks automatic power outage function, resulting in poor power safety protection effect.
By setting up two sets of guide rail components in the distribution cabinet, the front and back movement of the circuit board is driven to form a stretching movement, which is convenient for maintenance or maintenance. At the same time, through the fan-shaped movement of the H-frame and the connector, the switch button of the main control switch is driven to flip up and down, and automatic power-on or power-off is achieved.
It realizes good electrical safety protection function during maintenance, avoids the danger of electric shock, and improves the convenience and safety of operation.
Smart Images

Figure CN119944463A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of electricity use in baking rooms, and in particular to an intelligent electricity safety protection device for an electric baking room. Background Art
[0002] Since the power supply of the electric oven is very important to its operation, a corresponding power distribution cabinet needs to be set up next to the electric oven to control the power supply of the electric oven. After searching, the Chinese invention patent with the publication number CN116111490B discloses a power distribution cabinet with an emergency power-off function. When the temperature inside the shell is abnormally high during use, the fan can be started to dissipate the heat inside the shell, so that the high-temperature components inside the shell can dissipate the heat quickly, so that the temperature will not continue to rise and cause a fire.
[0003] In the related art, in order to improve the power consumption efficiency and safety of the power distribution cabinet for the electric baking room, it is generally necessary to set a corresponding protective mechanism on the power distribution cabinet; since the electrical components inside the cabinet are prone to aging and burning when the power supply system is working for a long time, it is generally necessary to regularly inspect and maintain the power supply system. However, during the inspection and maintenance process, since some electrical components in the power supply system are located deep inside the cabinet, it is necessary to insert the entire hand or even the upper body into the cabinet to carry out the inspection and maintenance work during the inspection and maintenance process. The limbs are easy to touch some electrical components, resulting in the risk of electric shock. In addition, during the inspection and maintenance, there is a lack of automatic power-off function during inspection, and the power safety protection effect is poor. Summary of the invention
[0004] 1. Technical issues to be resolved In view of the deficiencies in the prior art, the present invention provides an intelligent electricity safety protection device for an electric baking room, which drives the sliding ends of the two sets of guide rail assemblies to move forward and backward by opening or closing the two cabinet doors, and then drives the circuit board to move forward and backward to form an extension movement, which is convenient for staff to inspect or maintain the electrical components on the circuit board, and when the circuit board moves forward and backward, it can synchronously drive the H-shaped frame and the connecting piece to move in a fan shape, and then drive the switch button of the main control switch to flip up and down, so as to realize automatic power on or off operation. It has good electricity safety protection function, and solves the problem in the prior art that the power supply system of the electric baking room is located deep in the cabinet, so that during inspection and maintenance, the limbs are easy to touch some electrical components, resulting in the risk of electric shock, and during inspection and maintenance, the power is easily forgotten to cut off the power, thereby causing the risk of electric shock.
[0005] (II) Technical solution To achieve the above-mentioned purpose, the present invention provides the following technical solutions: an intelligent power safety protection device for an electric energy baking room, comprising a power distribution cabinet for intelligently supplying power to the electric energy baking room, the power distribution cabinet comprising a cabinet body fixed on the electric energy baking room, cabinet doors are hinged on both sides of the front of the cabinet body, a circuit board is arranged inside the cabinet body, a master switch for controlling electrical components on the circuit board and a detection module for detecting the intelligent power consumption of the electric energy baking room are installed on the top of the front of the circuit board, and an Internet of Things communication module for remotely transmitting data detected by the detection module in real time to a background management system; A heat dissipation mechanism is provided on the back of the cabinet, two sets of guide rail assemblies are provided inside the cabinet, the circuit boards are connected to the sliding ends of the two sets of guide rail assemblies, and the sliding ends of the two sets of guide rail assemblies are respectively connected to the two cabinet doors, and a power-off assembly for controlling the master switch during forward and backward movement is provided on the top of the inner wall of the cabinet.
[0006] Preferably, the power-off assembly comprises an H-shaped frame hinged to the top of the inner wall of the cabinet, the bottom end of the H-shaped frame is hinged with a connecting piece, and the connecting piece is detachably connected to the switch button of the master control switch; The connecting member comprises a movable block hinged to the bottom end of the H-shaped frame, and the bottom of the movable block is fixedly connected with a convex sliding bar, and the bottom of the convex sliding bar is slidably connected with a U-shaped connecting block.
[0007] Preferably, the guide rail assembly includes a U-shaped guide rail fixedly connected to the top and bottom of the inner wall of the cabinet, and the two U-shaped guide rails are slidably connected to the inside of sliding blocks, and the two sliding blocks are respectively fixedly connected to the top and bottom of the circuit board. The two sliding blocks are rotatably connected to drive rods, and the other ends of the two drive rods are connected to the inner side surface of one of the cabinet doors.
[0008] Preferably, the two sliding blocks are fixedly connected with a rotating shaft, and one end of the two driving rods are rotatably connected to the outer surface of the two rotating shafts respectively, the rotating ends of the two driving rods are installed with torsion springs, and one end of the two U-shaped guide rails is fixedly connected to a limiting block.
[0009] Preferably, the tops of the two sliding blocks are fixedly connected with tension springs via brackets, and one end of the two tension springs is fixedly connected to the front side of the inner wall of the cabinet.
[0010] Preferably, both cabinet doors are provided with connecting components, and the cabinet doors are connected to the driving rod in the guide rail assembly through the connecting components; The connection assembly comprises two T-shaped latches which are slidably connected to the inner side of the cabinet door, and the other ends of the two driving rods are provided with latch holes for inserting the T-shaped latches.
[0011] Preferably, a cavity is provided inside the cabinet door, and two movable plates are slidably connected inside the cavity, two T-shaped latches are fixedly connected to the two movable plates respectively, two sliding grooves for the T-shaped latches to slide up and down are provided on the inner side surface of the cabinet door, and a driving member for driving the two movable plates up and down is provided inside the cavity.
[0012] Preferably, the driving member includes a control shaft rotatably connected to the inside of the cavity, the outer surface of the control shaft is fixedly connected to an inclined driving frame, the two ends of the driving frame are respectively hinged to two movable plates, one end of the control shaft passes through the cabinet door and extends to the outside of the cabinet door, and one end of the control shaft is fixedly connected to a driving handle.
[0013] Preferably, the detection module includes a data acquisition unit, a positioning unit, an early warning unit, and a detection unit; The data acquisition unit is used to collect power consumption data, voltage and current data, equipment operation status data, energy consumption analysis data, safety warning data and carbon emission data; The positioning unit is used to locate the main power terminal; The early warning unit is used to warn of power safety risks, identify potential safety hazards, handle safety accidents, and provide suggestions for identifying potential safety hazards; The detection unit is used to detect leakage and overload of the electric baking room to form power-off protection and self-recovery.
[0014] (III) Beneficial effects Compared with the prior art, the present invention provides an intelligent electricity safety protection device for an electric baking room, which has the following beneficial effects: 1. The present invention provides two sets of guide rail assemblies, so that the circuit board can be installed inside the cabinet in a forward and backward sliding manner. The sliding ends of the two guide rail assemblies are respectively connected to the two cabinet doors, so that the sliding ends of the two sets of guide rail assemblies can be driven to move forward and backward by driving the two cabinet doors to expand or close, thereby driving the circuit board to move forward and backward to form an extension movement, which is convenient for the staff to inspect or maintain the electrical components on the circuit board. Moreover, when the circuit board moves toward the cabinet port, the H-shaped frame and the connecting piece can be driven to move in a fan shape synchronously, thereby driving the switch button of the master control switch to flip up and down, forming an opening and closing drive of the master control switch, realizing its automatic power-on or power-off operation, having good power safety protection function, and solving the problem that in the prior art, the power supply system of the electric energy baking room is located deep in the cabinet, so that during inspection and maintenance, the limbs of the limbs are easily touched by some electrical components, resulting in the risk of electric shock, and during inspection and maintenance, the power-off operation is easily forgotten, thereby causing the risk of electric shock.
[0015] 2. The present invention can move the sliding block deep inside the cabinet through the tension of the tension spring itself, which not only improves the tightness of the cabinet door after closing, prevents the cabinet door from opening freely, and enhances the safety protection performance when the device is using electricity, but also facilitates the circuit board to be smoothly reset during the closing process of the cabinet door, further improving the orderliness of the operation.
[0016] 3. The present invention is used to drive the two movable plates to move relative to or apart from each other through the setting of the driving member, forming the relative or apart movement of the two T-shaped latches, so that the cabinet door is connected to the guide rail assembly. The two T-shaped latches move relative to or apart, thereby facilitating the synchronous insertion of the two T-shaped latches into the two latch holes, thereby connecting the cabinet door to the driving rod, or synchronously moving out of the two latch holes, thereby losing the connection between the cabinet door and the driving rod. The present invention has a good control function, which is convenient for the staff to operate according to actual needs, improves the convenience of operation, satisfies the normal opening operation of the cabinet door, and facilitates the use of the driving force of the cabinet door to drive the movement of the circuit board back and forth, and has a good selective control function. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 It is a structural schematic diagram of the present invention; Figure 2 This is a schematic diagram of the cabinet door of the present invention being unfolded; Figure 3 For the present invention Figure 1 A cross-sectional side view of the middle cabinet; Figure 4 For the present invention Figure 3 Schematic diagram of the combination of the middle circuit board and two sets of guide rail components; Figure 5 For the present invention Figure 4 Schematic diagram of the coordination between the central control switch and the power-off component; Figure 6 For the present invention Figure 5 A schematic diagram of the structure of the power-off component; Figure 7 For the present invention Figure 2 Schematic diagram of the connection between the middle rail assembly and the cabinet door; Figure 8 For the present invention Figure 7 Schematic diagram of the structure of the middle guide rail assembly Fig. 9 For the present invention Figure 7 Schematic diagram of the inside cross section of the center cabinet door.
[0018] In the figure: 1. Cabinet; 2. Cabinet door; 3. Circuit board; 4. Master control switch; 5. Heat dissipation mechanism; 6. Guide rail assembly; 61. U-shaped guide rail; 62. Sliding block; 63. Driving rod; 64. Rotating shaft; 65. Torsion spring; 66. Limit block; 67. Tension spring; 68. Pin hole; 7. Power-off assembly; 71. H-shaped frame; 72. Movable block; 73. Convex slide bar; 74. U-shaped connecting block; 8. Connecting assembly; 81. T-type latch; 82. Moving plate; 83. Control shaft; 84. Driving frame; 85. Driving handle. DETAILED DESCRIPTION
[0019] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0020] Embodiment 1: See attached Figure 1-9 , an intelligent power safety protection device for an electric energy baking room, comprising a power distribution cabinet for intelligently supplying power to the electric energy baking room, the power distribution cabinet comprising a cabinet body 1 fixed on the electric energy baking room, cabinet doors 2 are hinged on both sides of the front of the cabinet body 1, a circuit board 3 is arranged inside the cabinet body 1, a master switch 4 for controlling the electrical components on the circuit board 3 and a detection module for detecting the intelligent power consumption of the electric energy baking room are installed on the top of the front of the circuit board 3, and an Internet of Things communication module for remotely transmitting the data detected by the detection module in real time to the background management system; A heat dissipation mechanism 5 is provided on the back of the cabinet 1, two sets of guide rail assemblies 6 are provided inside the cabinet 1, the circuit boards 3 are connected to the sliding ends of the two sets of guide rail assemblies 6, and the sliding ends of the two sets of guide rail assemblies 6 are respectively connected to the two cabinet doors 2, and a power-off assembly 7 for controlling the master switch 4 when moving forward and backward is provided on the top of the inner wall of the cabinet 1; The master control switch 4 adopts the control switch in the existing power distribution cabinet, which is used to control the opening and closing of the power supply of the power distribution cabinet; By setting up two sets of guide rail assemblies 6, the circuit board 3 can be installed inside the cabinet 1 by sliding back and forth. The sliding ends of the two guide rail assemblies 6 are respectively connected to the two cabinet doors 2, so that the sliding ends of the two sets of guide rail assemblies 6 can be driven to move back and forth by opening or closing the two cabinet doors 2, thereby driving the circuit board 3 to move back and forth, forming an extension movement, which is convenient for the staff to inspect or maintain the electrical components on the circuit board 3.
[0021] See attached Figure 5 and Figure 6 The power-off assembly 7 includes an H-shaped frame 71 hinged to the top of the inner wall of the cabinet 1, and a connecting piece is hinged at the bottom end of the H-shaped frame 71, and the connecting piece is detachably connected to the switch button of the master switch 4; The H-shaped frame 71 is hinged to the top of the inner wall of the cabinet 1 through the connecting piece, and the connecting piece is connected to the switch button of the master switch 4, so that when the circuit board 3 moves forward and backward, the H-shaped frame 71 and the connecting piece can be driven to move in a fan shape, and then the switch button of the master switch 4 can be driven to flip up and down, forming the opening and closing drive of the master switch 4, realizing its automatic power on or power off operation; The connecting member includes a movable block 72 hinged to the bottom end of the H-shaped frame 71, and a convex slide bar 73 is fixedly connected to the bottom of the movable block 72, and a U-shaped connecting block 74 is slidably connected to the bottom of the convex slide bar 73; The movable block 72 is hinged to the top of the inner wall of the cabinet 1 by using an H-shaped frame 71, so that the movable block 72 can be rotated at different angles. The U-shaped connecting block 74 slides on the convex slide bar 73, so that the U-shaped connecting block 74 can slide horizontally to make the U-shaped connecting block 74 lose the connection with the switch button of the master switch 4, so that when the circuit board 3 moves forward and backward, its power-off component 7 will not control the master switch 4, thereby forming a convex movement of the circuit board 3 with power on, which satisfies the staff's different methods of inspection and maintenance of the circuit board 3.
[0022] See attached Figure 7 and Figure 8 The guide rail assembly 6 includes a U-shaped guide rail 61 fixedly connected to the top and bottom of the inner wall of the cabinet 1, and the insides of the two U-shaped guide rails 61 are slidably connected with sliding blocks 62, and the two sliding blocks 62 are respectively fixedly connected to the top and bottom of the circuit board 3, and the two sliding blocks 62 are rotatably connected to the driving rod 63, and the other ends of the two driving rods 63 are connected to the inner side surface of one of the cabinet doors 2; The U-shaped guide rail 61 is provided to facilitate the sliding block 62 to slide back and forth inside the cabinet 1. The sliding block 62 is fixedly connected to the circuit board 3 so that when the sliding block 62 moves back and forth, the circuit board 3 can be driven to move back and forth. The circuit board 3 is removed from the interior of the cabinet 1, which not only facilitates the staff to inspect and repair the electrical components on the circuit board 3, but also prevents the circuit board 3 from being located deep inside the cabinet 1, so that during inspection and maintenance, the limbs of the staff may easily touch some electrical components, resulting in the risk of electric shock.
[0023] See attached Figure 7 and Figure 8 , the two sliding blocks 62 are fixedly connected with a rotating shaft 64, and one end of the two driving rods 63 is rotatably connected to the outer surface of the two rotating shafts 64 respectively, the rotating ends of the two driving rods 63 are installed with a torsion spring 65, and one end of the two U-shaped guide rails 61 is fixedly connected to a limit block 66; The torsion spring 65 is provided to drive the driving rod 63 to reset after the fan-shaped movement, and the limit block 66 is provided to limit the driving rod 63 to ensure the positioning of the reset of the driving rod 63 and improve the smoothness of the subsequent driving of the cabinet door 2.
[0024] See attached Figure 1 and Figure 8 , a connecting assembly 8 is provided on each of the two cabinet doors 2, and the cabinet doors 2 are connected to the driving rod 63 in the guide rail assembly 6 through the connecting assembly 8; The designer of the connection assembly 8 facilitates the selective connection between the cabinet door 2 and the guide rail assembly 6, and facilitates the staff to selectively control the movement of the circuit board 3 according to actual needs, thereby improving the convenience of its operation; The connecting assembly 8 includes two T-shaped latches 81 slidably connected to the inner side of the cabinet door 2, and the other ends of the two driving rods 63 are provided with latch holes 68 for inserting the T-shaped latches 81; By inserting the T-shaped latch 81 into the latch hole 68 at the corresponding position, the cabinet door 2 can be hinged to the other end of the driving rod 63, so that when the cabinet door 2 is fan-shaped opened, its movement force can drive the driving rod 63 to pull, and then drive the sliding block 62 at the corresponding position to move forward, and finally drive the circuit board 3 to move forward, so that the staff can inspect or connect the electrical components on the circuit board 3.
[0025] The working principle of the intelligent electricity safety protection device for an electric energy baking room of the present invention is as follows: When the electrical system of the baking room is inspected and maintained, the two cabinet doors 2 are opened manually. When the two cabinet doors 2 move in a fan shape, the cabinet doors 2 can pull the driving rods 63 in the two sets of guide rail assemblies 6, thereby driving the sliding blocks 62 connected thereto to move toward the ports of the cabinet body 1, and finally driving the circuit board 3 connected thereto to move from the inner depth of the cabinet body 1 to the ports, thereby facilitating the inspection and maintenance work of the staff; When the circuit board 3 moves toward the port of the cabinet 1, it can drive the main control switch 4 fixed thereto to move in the same direction. The switch button of the main control switch 4 can be limited by the inclined H-shaped frame 71 with a fixed length. In conjunction with the movement of the main control switch 4, the switch button of the main control switch 4 can be driven downward by the H-shaped frame 71 and the U-shaped connecting block 74 in the connecting piece, forming a circuit breaker and power-off drive to prevent the problem of live maintenance.
[0026] Embodiment 2: Based on embodiment 1, the difference is that; See attached Figure 8 The tops of the two sliding blocks 62 are fixedly connected with tension springs 67 through brackets, and one end of the two tension springs 67 is fixedly connected to the front of the inner wall of the cabinet 1; Through the tension of the tension spring 67 itself, the sliding block 62 can be moved deep into the cabinet body 1, which not only improves the tightness of the cabinet door 2 after closing, prevents the cabinet door 2 from opening freely, and enhances the safety protection performance when the device is using electricity, but also facilitates the circuit board 3 to be smoothly reset during the closing process of the cabinet door 2, further improving the orderliness of the operation.
[0027] Embodiment 3: Based on embodiment 1, the difference is that; See attached Figure 1 and Figure 8 The cabinet door 2 has a cavity inside, and two movable plates 82 are slidably connected inside the cavity, and two T-shaped latches 81 are fixedly connected to the two movable plates 82 respectively. Two sliding grooves for the T-shaped latches 81 to slide up and down are provided on the inner side of the cabinet door 2, and a driving member for driving the two movable plates 82 up and down is provided inside the cavity; The driving member can be an electric cylinder for driving the two movable plates 82 relative to or apart from each other, and is used to electrically drive the two movable plates 82 to move relative to or apart from each other, forming the relative or separate movement of the two T-shaped latches 81, so that the cabinet door 2 is connected to the guide rail assembly 6.
[0028] The driving member includes a control shaft 83 rotatably connected to the inside of the cavity, an outer surface of the control shaft 83 is fixedly connected to an inclined driving frame 84, two ends of the driving frame 84 are respectively hinged to the two moving plates 82, one end of the control shaft 83 passes through the cabinet door 2 and extends to the outside of the cabinet door 2, and one end of the control shaft 83 is fixedly connected to a driving handle 85; By setting the driving handle 85, it is convenient for the staff to manually rotate the control shaft 83. By rotating the control shaft 83, the inclined driving frame 84 can be driven to move in a fan shape, and then the two movable plates 82 can be driven to move relative to or apart, and then the two T-shaped latches 81 can be driven to move relative to or apart, so that the two T-shaped latches 81 can be synchronously inserted into the two latch holes 68, so that the cabinet door 2 is connected to the driving rod 63, or synchronously moved out of the two latch holes 68, losing the connection between the cabinet door 2 and the driving rod 63. It has good control function, which is convenient for the staff to selectively control according to actual needs, thereby improving the convenience of its operation.
[0029] Embodiment 4: Based on embodiment 1, the difference is that; The detection module includes a data acquisition unit, a positioning unit, an early warning unit, and a detection unit; The data acquisition unit is used to collect power consumption data, voltage and current data, equipment operation status data, energy consumption analysis data, safety warning data and carbon emission data; The positioning unit is used to locate the main power terminal; The early warning unit is used to warn of power safety risks, identify potential safety hazards, handle safety accidents, and provide suggestions for identifying potential safety hazards; The detection unit includes a device for detecting leakage and overload of the electric energy baking room to form power failure protection and self-recovery; By installing self-developed shared scanning electricity products in each electric drying room, tobacco farmers can rent electric drying rooms by recharging and scanning codes through the WeChat applet, prepaying the rental fee and electricity bill, and enjoy safe, stable and convenient electricity resources; and the IoT smart electric drying room management and control platform can monitor the electricity consumption status of the electric drying room in real time, and provide data support for the quantitative grading of tobacco leaves based on the electricity data; The intelligent and safe shared electricity consumption of electric tobacco flue-cured tobacco adopts a technical architecture that deeply integrates software and hardware. The hardware part adopts leakage protection technology and overload protection technology to ensure the safety of users' electricity consumption and protect the healthy operation of equipment such as lines and transformers. It adopts 4G Internet of Things communication technology to achieve real-time upload of electricity consumption data. It adopts positioning technology, and users can find the nearest electricity terminal at any time. The software adopts big data intelligent management and analysis technology, which can view various data in multiple dimensions and user electricity consumption data in real time; it adopts cross-platform H5 technology, supports mobile phones and PCs to view and manage the operation of power equipment in various regions in real time, and timely warn, troubleshoot, and report equipment abnormalities to prevent problems before they occur; it adopts Internet of Things technology, which can remotely monitor and manage equipment status; Adopt intelligent remote leakage adaptive detection technology to detect leakage location, protect against overload and rapid power failure, and realize self-recovery. It has the characteristics of high sensitivity, high reliability, remote monitoring and management, etc. Through the innovative product + service approach, we provide farmers with stable and convenient electricity services, effectively reducing electricity costs and improving production efficiency. This provides strong support for the development of the flue-cured tobacco industry, ensures the stability of power supply, and effectively avoids production interruptions and losses caused by power fluctuations or failures. Farmers can safely use power equipment to improve the quality and yield of flue-cured tobacco, achieve more efficient production and management, and promote agricultural modernization. It also includes a data acquisition module, which can collect real-time and historical power consumption, power consumption trend analysis, real-time voltage and current data, voltage and current fluctuation analysis, flue-curing room equipment operating status, including temperature, humidity, power and other data, equipment operation failure analysis, energy consumption data in the flue-cured tobacco production process, and energy consumption optimization suggestions, power safety risk warning, safety hazard investigation suggestions, carbon emission data in the flue-cured tobacco production process, and carbon emission reduction measures. The electric flue-cured tobacco smart and safe shared electricity project has a replicable and popularizable solution that uses data elements to empower the industry, including: electricity safety warning, safety hazard inspection, emergency response to safety accidents, etc., to ensure the safety of electricity use for tobacco farmers.
[0030] Through energy consumption monitoring, energy efficiency analysis, electricity optimization and other measures, we help tobacco farmers reduce electricity costs and improve production efficiency. We help tobacco farmers understand carbon emissions from electricity use, develop carbon reduction plans, and achieve green and low-carbon development. Through data collection, analysis, and application, we provide decision-making support for the flue-cured tobacco industry and promote the digital transformation and upgrading of the industry. The electric baking room includes power carrier communication technology, low-power wireless sensor technology, smart meter design, data acquisition terminal design, and cloud platform hardware architecture design; it has software development capabilities: data acquisition and transmission system, data analysis and processing system, electricity safety early warning system, energy consumption management system, carbon emission management system, user management system, and cloud platform management system.
[0031] It should be noted that the term "comprises" or any other variation thereof is intended to cover non-exclusive inclusion, so that a process, method, article, or device that includes a series of elements includes not only those elements, but also includes other elements that are not explicitly listed, or also includes elements inherent to such process, method, article, or device. In the absence of further restrictions, an element defined by the sentence "comprises a ..." does not exclude the presence of other identical elements in the process, method, article, or device that includes the element.
[0032] Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. An intelligent power safety protection device for an electric energy baking room, comprising a power distribution cabinet for intelligently supplying power to the electric energy baking room, the power distribution cabinet comprising a cabinet body (1) fixed to the electric energy baking room, cabinet doors (2) being hinged on both sides of the front of the cabinet body (1), characterized in that: A circuit board (3) is arranged inside the cabinet (1), and a master switch (4) for controlling the electrical components on the circuit board (3), a detection module for detecting the intelligent power usage of the electric energy baking room, and an Internet of Things communication module for remotely transmitting the data detected by the detection module in real time to a background management system are installed on the top of the front of the circuit board (3); A heat dissipation mechanism (5) is arranged on the back of the cabinet (1), two sets of guide rail assemblies (6) are arranged inside the cabinet (1), the circuit boards (3) are connected to the sliding ends of the two sets of guide rail assemblies (6), the sliding ends of the two sets of guide rail assemblies (6) are respectively connected to the two cabinet doors (2), and a power-off assembly (7) for controlling the master switch (4) during forward and backward movement is arranged on the top of the inner wall of the cabinet (1).
2. According to claim 1, the intelligent electricity safety protection device for electric energy baking room is characterized in that: The power-off assembly (7) comprises an H-shaped frame (71) hinged to the top of the inner wall of the cabinet (1), a connecting piece being hinged to the bottom end of the H-shaped frame (71), and the connecting piece being detachably connected to the switch button of the master control switch (4); The connecting member comprises a movable block (72) hinged to the bottom end of the H-shaped frame (71), the bottom of the movable block (72) is fixedly connected to a convex sliding bar (73), and the bottom of the convex sliding bar (73) is slidably connected to a U-shaped connecting block (74).
3. According to claim 1, the intelligent electricity safety protection device for electric baking room is characterized in that: The guide rail assembly (6) comprises a U-shaped guide rail (61) fixedly connected to the top and bottom of the inner wall of the cabinet body (1); the interior of the two U-shaped guide rails (61) are slidably connected to sliding blocks (62); the two sliding blocks (62) are respectively fixedly connected to the top and bottom of the circuit board (3); the two sliding blocks (62) are rotatably connected to drive rods (63); the other ends of the two drive rods (63) are connected to the inner side surface of one of the cabinet doors (2).
4. The intelligent electricity safety protection device for an electric baking room according to claim 3 is characterized in that: The two sliding blocks (62) are fixedly connected to a rotating shaft (64), and one end of the two driving rods (63) is rotatably connected to the outer surface of the two rotating shafts (64), respectively. The rotating ends of the two driving rods (63) are both installed with torsion springs (65), and one end of the two U-shaped guide rails (61) is fixedly connected to a limiting block (66).
5. An intelligent electricity safety protection device for an electric baking room according to any one of claims 3-4, characterized in that: The tops of the two sliding blocks (62) are fixedly connected to tension springs (67) via brackets, and one end of the two tension springs (67) is fixedly connected to the front side of the inner wall of the cabinet (1).
6. The intelligent electricity safety protection device for an electric baking room according to claim 5 is characterized in that: The two cabinet doors (2) are each provided with a connecting assembly (8), and the cabinet doors (2) are connected to the driving rod (63) in the guide rail assembly (6) via the connecting assembly (8); The connection assembly (8) comprises two T-shaped latches (81) slidably connected to the inner side of the cabinet door (2), and the other ends of the two driving rods (63) are provided with latch holes (68) for inserting the T-shaped latches (81).
7. The intelligent electricity safety protection device for an electric baking room according to claim 6 is characterized in that: The cabinet door (2) has a cavity formed inside, and two movable plates (82) are slidably connected inside the cavity, and two T-shaped latches (81) are fixedly connected to the two movable plates (82) respectively; two sliding grooves for the T-shaped latches (81) to slide up and down are formed on the inner side surface of the cabinet door (2), and a driving member for driving the two movable plates (82) up and down is provided inside the cavity.
8. The intelligent electricity safety protection device for an electric baking room according to claim 7 is characterized in that: The driving member comprises a control shaft (83) rotatably connected to the interior of the cavity; an outer surface of the control shaft (83) is fixedly connected to an inclined driving frame (84); two ends of the driving frame (84) are respectively hinged to two movable plates (82); one end of the control shaft (83) passes through the cabinet door (2) and extends to the outside of the cabinet door (2); and one end of the control shaft (83) is fixedly connected to a driving handle (85).
9. The intelligent electricity safety protection device for an electric baking room according to claim 1 is characterized in that: The detection module includes a data acquisition unit, a positioning unit, an early warning unit, and a detection unit; The data acquisition unit is used to collect power consumption data, voltage and current data, equipment operation status data, energy consumption analysis data, safety warning data and carbon emission data; The positioning unit is used to locate the main power terminal; The early warning unit is used to warn of power safety risks, identify potential safety hazards, handle safety accidents, and provide suggestions for identifying potential safety hazards; The detection unit is used to detect leakage and overload of the electric baking room to form power-off protection and self-recovery.
Citation Information
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