A multi-dimensional intelligent terminal equipment comprehensive positioning device for a wind farm
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- GUODIAN GUANGXI NEW ENERGY DEV CO LTD
- Filing Date
- 2026-05-08
- Publication Date
- 2026-08-07
AI Technical Summary
[0004]上述专利,固定板对装置内部的安装空间进行合理规划使用,拉出第二滑板和固定板,方便工作人员对装置内部的部件进行检修和更换,增强装置的使用便捷性,降低维护难度,节省时间和精力,但是在智能终端设备工作时难以对整体的设备进行有效防护和稳定,这使得设备在工作时容易受到外界环境的干扰,导致设备在工作时出现损坏
1、该发明中,通过支撑板向下移动与支撑面接触并将整体的装载箱撑起使万向轮与支撑面脱离接触,确保万向轮悬空,可以消除因轮子滚动而引起的位移,从而保持设备在预定位置上,减少了因振动、风力或其他外界因素导致的倾斜或翻倒风险,使装置在风电场的暴露环境中更为可靠,同时将装置高出支撑面,可以为风电场的运维人员提供更便捷的操作空间,更容易进行装置检查与维护,通过护板移动向外延伸出一段距离对整体的装载箱以及内部的智能终端装置进行防护,能够有效避免外部物体对整体的装载箱以及内部的智能终端装置直接碰撞和挤压,可以减少因装置受损引发的安全隐患,确保装置在运行过程中能更安全地进行数据采集与处理,同时使用护板,能够形成更显著的装置边界,增强装置的可见性,便于现场工作人员识别,从而避免意外接触和碰撞。
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Figure CN122534796A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of intelligent terminal technology, specifically to a comprehensive positioning device for multi-dimensional intelligent terminal equipment in wind farms. Background Technology
[0002] The multi-dimensional intelligent terminal equipment integrated positioning device for wind farms is an advanced technological device used for wind farm management and monitoring, designed to improve the operational efficiency, reliability, and safety of wind farms. This device typically combines multiple sensors, positioning systems, and data processing technologies to provide comprehensive monitoring and analysis of wind power equipment and its operating environment.
[0003] Patent publication number CN217769606U relates to the field of intelligent terminal technology, including a mounting plate, a housing, a second sliding plate, a sleeve, and a connecting rod. The housing is fixedly mounted on the top surface of the mounting plate, and the second sliding plate is slidably connected to the top of the inner wall of the housing. A temperature and humidity sensor monitors the internal temperature and humidity environment of the device in real time, and a temperature-regulating dehumidifier adjusts the internal temperature and humidity of the device to ensure the stability of the internal environment, extend the service life and maintenance cycle of the device, and enhance the safety and practicality of the device. By unscrewing the bolts and pulling the fixing plate and connecting rod, the connecting rod moves to a designated position within the sleeve. The fixing plate rationally plans and utilizes the installation space inside the device. Pulling out the second sliding plate and fixing plate facilitates the inspection and replacement of internal components by staff, enhancing the ease of use of the device, reducing maintenance difficulty, and saving time and effort.
[0004] The aforementioned patent allows for the rational planning and use of the installation space inside the device by fixing the plate. Pulling out the second sliding plate and fixing plate facilitates the maintenance and replacement of internal components by staff, enhancing the ease of use of the device, reducing maintenance difficulty, and saving time and effort. However, it is difficult to effectively protect and stabilize the entire device when the smart terminal device is working, which makes the device susceptible to interference from the external environment during operation, leading to damage during operation. Summary of the Invention
[0005] To address the shortcomings of existing technologies, this invention provides a comprehensive positioning device for multi-dimensional intelligent terminal equipment in wind farms, which solves the problems mentioned in the background section.
[0006] To achieve the above objectives, the present invention provides the following technical solution: a comprehensive positioning device for multi-dimensional intelligent terminal equipment in a wind farm, comprising a loading box, universal wheels rotatably mounted on the bottom of the loading box, a closed door rotatably mounted on the front of the loading box, a display screen disposed on the front of the closed door, a signal receiving device disposed on the top of the loading box, and an intelligent terminal device disposed inside the loading box; the comprehensive positioning device for multi-dimensional intelligent terminal equipment in a wind farm further comprises: A protective device used to stabilize and effectively protect the entire device when the integrated positioning device of the intelligent terminal equipment is working, and is installed on the surface of the loading box. A base plate is fixedly installed on the side of the loading box, and a fixed end of an electric telescopic rod is fixedly installed at the bottom of the base plate. A support plate is fixedly installed at the output end of the electric telescopic rod. A clamping device used to stabilize and protect the internal components of a smart terminal device when it is subjected to collision or compression during operation is installed inside the loading box. A sealing device is installed inside the loading box to seal the device when it is subjected to collision or compression during operation of the integrated positioning device of the smart terminal equipment.
[0007] The protective device also includes a sliding column, a protective plate, an inclined block, a long rod, and a pressure block. The sliding column slides through the loading box. The protective plate is fixedly installed at the end of the sliding column away from the inside of the loading box. The inclined block is fixedly installed on the side of the protective plate near the sliding column. The long rod is fixedly installed on the surface of the support plate. The pressure block is fixedly installed at the end of the long rod away from the support plate. When the support plate is pushed downward by the electric telescopic rod, the support plate drives the long rod to move downward. The movement of the long rod drives the pressure block to move downward. The pressure block contacts and pushes the inclined block to move. The movement of the inclined block drives the protective plate to move. The protective plate extends outward a certain distance to protect the entire loading box and the internal intelligent terminal device.
[0008] The surfaces of the pressure block and the inclined block are both inclined. The back of the loading box has heat dissipation holes. A spring is provided between the guard plate and the loading box. The inclined surfaces ensure that the pressure block can smoothly push the inclined block when moving. The heat dissipation holes ensure effective heat dissipation. The spring ensures that the guard plate can achieve self-reset.
[0009] The clamping device includes a crossbar, a clamping plate, two rotating columns, a transmission belt, and a connecting rod. The crossbar is fixedly installed on the circumferential surface of the sliding column near the inside of the loading box. The clamping plate is fixedly installed at the bottom of the crossbar. The two rotating columns are rotatably installed on the inner wall of the loading box and are connected by the transmission belt. One end of the connecting rod is fixedly installed on the top of the clamping plate, and the other end is fixedly installed on the surface of the transmission belt. When the intelligent terminal device is subjected to collision and compression by an external object during operation, the guard plate begins to move towards the loading box. The movement of the guard plate causes the sliding column to move, which in turn causes the crossbar to move towards the intelligent terminal device. The movement of the crossbar causes the clamping plate to move towards the intelligent terminal device, and the clamping plate contacts and clamps the intelligent terminal device.
[0010] The clamping device also includes a slide rail, a closing plate, a fixing block, a fixing plate, a fixing column, a sliding plate, a second inclined block, and a push rod. The slide rail is fixedly installed on the inner wall of the loading box. The closing plate is slidably installed inside the slide rail. The fixing block is fixedly installed on the side of the closing plate away from the inner wall of the loading box. The fixing plate is fixedly installed on the inner wall of the loading box. The fixing column is fixedly installed on the top of the fixing plate. The sliding plate is slidably installed on the circumferential surface of the fixing column. The second inclined block is fixedly installed on the surface of the sliding plate. The push rod is fixedly installed on the top of the clamping plate. When the clamping plate moves to contact and clamp the smart terminal device, it drives the push rod to start moving. The push rod moves to contact and the second inclined block starts to move downward. The movement of the second inclined block drives the sliding plate to start moving downward. The sliding plate moves and disengages from the fixing block, releasing its restriction. Then, the closing plate starts to move and reset under the action of the third spring. The resetting of the closing plate closes the heat dissipation holes opened on the loading box.
[0011] The clamping plate contacts the bottom of the inner wall of the loading box, and a second spring is provided between the clamping plate and the inner wall of the loading box. The contact ensures that the clamping plate can move normally, and the second spring ensures that the clamping plate can achieve self-reset.
[0012] The sealing plate contacts the inner wall of the loading box, the sliding plate contacts the fixed block, and the push rod and the inclined block two are both set as inclined surfaces on their respective sides. A spring three is set between the sealing plate and the inner wall of the loading box, and a spring four is set between the sliding plate and the fixed plate. The contact ensures that the sealing plate can control the opening and closing of the heat dissipation holes, the contact ensures that the sliding plate can restrict the movement of the fixed block, the inclined surface ensures that the push rod can smoothly push the inclined block two when moving, the spring three ensures that the sealing plate can achieve self-reset, and the spring four ensures that the sliding plate can achieve self-reset.
[0013] The sealing device includes a sealing strip, an inclined rod, and an inclined block three. The sealing strip is slidably installed on the inner wall of the loading box. The inclined rod is fixedly installed on the side of the clamping plate near the sealing strip. The inclined block three is fixedly installed on the side of the sealing strip near the inclined rod. When the clamping plate moves to contact and clamp the smart terminal device, it drives the inclined rod to start moving. The inclined rod moves to contact and push the inclined block three to start moving. The movement of the inclined block three drives the sealing strip to start moving towards the closed door. The sealing strip moves to contact the closed door and seals the gap between the closed door and the loading box.
[0014] The sealing device also includes a handle, a gear, a balance tube, a sliding sleeve, a fixing rod, and a rack. The handle is rotatably mounted on the front of the closed door. The gear is fixedly mounted on the circumferential surface of the handle. The balance tube is fixedly mounted inside the closed door. The sliding sleeve is slidably mounted on the circumferential surface of the balance tube. The fixing rod is fixedly mounted on the circumferential surface of the sliding sleeve. The rack is fixedly mounted at the bottom of the fixing rod. When the operator manually rotates the handle, the gear rotates, which in turn moves the rack. The rack moves, which in turn moves the fixing rod. The fixing rod moves, which in turn moves the sliding sleeve, opening the passage between the sliding sleeve and the air inlet on the balance tube.
[0015] The inclined rod and the inclined block three are both inclined on their adjacent sides. The rack meshes with the gear. An air inlet is provided between the balance tube and the sliding sleeve. A spring five is provided between the sealing strip and the inner wall of the loading box. A spring six is provided between the sliding sleeve and the closing door. The inclined surfaces ensure that the inclined rod can smoothly push the inclined block three when it moves. The meshing ensures that the gear can drive the rack to move when it rotates. The air inlet ensures normal air intake. The spring five ensures that the sealing strip can achieve self-reset. The spring six ensures that the sliding sleeve can achieve self-reset.
[0016] Compared with the prior art, the beneficial effects of the present invention are as follows: 1. In this invention, by moving the support plate downwards to contact the support surface and lifting the entire loading box, the casters are disengaged from the support surface, ensuring the casters are suspended in the air. This eliminates displacement caused by wheel rolling, thus keeping the equipment in a predetermined position and reducing the risk of tilting or overturning due to vibration, wind, or other external factors. This makes the device more reliable in the exposed environment of a wind farm. Raising the device above the support surface provides wind farm maintenance personnel with more convenient operating space, making it easier to inspect and maintain the device. The protective plate extends outwards to protect the entire loading box and the internal intelligent terminal device, effectively preventing direct collisions and compression from external objects. This reduces safety hazards caused by device damage and ensures safer data acquisition and processing during operation. Furthermore, the protective plate creates a more prominent device boundary, enhancing device visibility and facilitating identification by on-site personnel, thereby preventing accidental contact and collisions.
[0017] 2. In this invention, the smart terminal device is fixed in a specific position by moving and clamping the clamping plate, preventing displacement or tilting of the device due to squeezing and collision, thereby maintaining its normal working state. This reduces the direct impact of external impacts on the device, thereby reducing the probability of device damage and extending the service life of the equipment. By moving and resetting the sealing plate to seal the heat dissipation holes on the loading box, it is possible to prevent external objects, such as rainwater, dust, and debris, from entering the device, thereby protecting the internal electronic components and circuits and reducing the risk of failure caused by the external environment. At the same time, the sealing plate can effectively absorb some of the impact force, reduce the probability of device damage, and improve the overall durability and long-term stability of the device.
[0018] 3. In this invention, the sealing strip moves to contact the closed door and seals the gap between the closed door and the loading box, effectively preventing external substances such as rainwater, moisture, and dust from entering the device. This protects electronic components and mechanical parts, reduces the risk of corrosion and malfunction, and enhances the overall system's reliability and durability. It also effectively protects the device from external influences, improving its safety and stability, extending its service life, and reducing maintenance costs. The sliding sleeve opens the channel between itself and the air inlet on the balance pipe, allowing external air to enter the loading box through the air inlet, thus aligning the internal air pressure with the external pressure. This allows the operator to open the closed door normally. The balance pipe connects the outside and inside of the device, reducing the opening resistance of the closed door and ensuring smooth opening. It also reduces the risk of accidents or malfunctions caused by pressure imbalance, improving the overall safety of the device and extending its service life. Attached Figure Description
[0019] Figure 1 This is a schematic diagram of the overall structure of the present invention; Figure 2 This is a schematic diagram showing the position and structure of the loading box and the intelligent terminal device of the present invention; Figure 3 This is a cross-sectional view of the location and structure of the protective device of the present invention; Figure 4 This is a cross-sectional view of the position and structure of the electric telescopic rod and support plate of the present invention; Figure 5 This is a cross-sectional view of the clamping device of the present invention. Figure 6 This is a cross-sectional view of the positional structure of the slide rail and the sealing plate of the present invention; Figure 7 This is a cross-sectional view of the sealing device structure of the present invention; Figure 8 For the present invention Figure 7 Enlarged schematic diagram of the structure of part A in the middle; Figure 9 This is a schematic diagram of the gear and rack position structure of the present invention; Figure 10 This is a cross-sectional schematic diagram of the position structure of the balance tube and the sliding sleeve of the present invention.
[0020] The meanings of the labels in the diagram are as follows: 1. Loading box; 2. Casters; 3. Enclosed door; 4. Display; 5. Signal receiving device; 6. Intelligent terminal device; 7. Base plate; 8. Electric telescopic rod; 9. Support plate; 10. Sliding column; 11. Guard plate; 12. Inclined block one; 13. Long rod; 14. Pressure block; 151. Crossbar; 152. Clamping plate; 153. Rotating column; 154. Drive belt; 155. Connecting rod; 156. Slide rail; 157. Enclosed plate; 158. Fixing block; 159. Fixing plate; 1510. Fixing column; 1511. Slide plate; 1512. Inclined block two; 1513. Push rod; 161. Sealing strip; 162. Inclined rod; 163. Inclined block three; 164. Handle; 165. Gear; 166. Balance tube; 167. Sliding sleeve; 168. Fixing rod; 169. Rack. Detailed Implementation
[0021] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0022] Please see Figures 1-10 One embodiment of the present invention is a comprehensive positioning device for a multi-dimensional intelligent terminal equipment in a wind farm, comprising a loading box 1, universal wheels 2 rotatably mounted on the bottom of the loading box 1, a closed door 3 rotatably mounted on the front of the loading box 1, a display 4 disposed on the front of the closed door 3, a signal receiving device 5 disposed on the top of the loading box 1, and an intelligent terminal device 6 disposed inside the loading box 1. A power connection hole is provided on the back of the loading box 1, and the intelligent terminal device 6 is electrically connected to a power line entering through the power connection hole.
[0023] The integrated positioning device for the multi-dimensional intelligent terminal equipment of this wind farm also includes: A protective device for stabilizing and effectively protecting the entire device when the integrated positioning device for intelligent terminal equipment is working, which is installed on the surface of the loading box 1; A base plate 7 is fixedly installed on the side of the loading box 1. The fixed end of the electric telescopic rod 8 is fixedly installed at the bottom of the base plate 7. A support plate 9 is fixedly installed at the output end of the electric telescopic rod 8. A clamping device for stabilizing and protecting the internal components of the intelligent terminal device when it is subjected to collision or compression during operation is installed inside the loading box 1. A sealing device is installed inside the loading box 1 to seal the device when it is subjected to collision or compression during operation of the integrated positioning device of the smart terminal equipment.
[0024] The protective device also includes a sliding column 10, a guard plate 11, an inclined block 12, a long rod 13, and a pressure block 14. The sliding column 10 slides through the loading box 1. The guard plate 11 is fixedly installed at the end of the sliding column 10 away from the inside of the loading box 1. The inclined block 12 is fixedly installed on the side of the guard plate 11 close to the sliding column 10. The long rod 13 is fixedly installed on the surface of the support plate 9. The pressure block 14 is fixedly installed at the end of the long rod 13 away from the support plate 9. The guard plate 11 moves outward to extend a certain distance to protect the entire loading box 1 and the internal intelligent terminal device 6. This can effectively prevent external objects from directly colliding with and squeezing the entire loading box 1 and the internal intelligent terminal device 6, reducing safety hazards caused by device damage, and ensuring that the device can collect and process data more safely during operation. At the same time, the use of the guard plate 11 can form a more obvious device boundary, enhance the visibility of the device, and facilitate identification by on-site personnel, thereby avoiding accidental contact and collision.
[0025] The surfaces of the pressure block 14 and the inclined block 12 that come into contact with each other are both set as inclined surfaces. The back of the loading box 1 is provided with heat dissipation holes. A spring is provided between the guard plate 11 and the loading box 1. By setting the inclined surfaces, it is ensured that the pressure block 14 can smoothly push the inclined block 12 when moving. By setting the heat dissipation holes, it is ensured that heat dissipation can be effectively carried out. By setting the spring, it is ensured that the guard plate 11 can achieve self-reset.
[0026] In this embodiment, before using the integrated positioning device of the multi-dimensional intelligent terminal equipment for the wind farm, a professional staff member needs to inspect the entire intelligent terminal device 6. After the staff member confirms that everything is correct, the staff member uses the casters 2 to move the loading box 1 and the entire intelligent terminal device 6 to the designated working position. After reaching the designated position, the staff member connects the power supply to the entire intelligent terminal device 6. Subsequently, the intelligent terminal device 6 can effectively monitor the status and position of the wind turbine through various internal sensors, such as wind speed sensors, temperature and humidity sensors, vibration sensors, etc., and through the signal receiving device 5. The system ensures that the equipment operates in optimal condition, and the received data is processed by the central processing unit of the intelligent terminal device 6. The processed data is displayed to the management personnel through the display 4 set on the closed door 3, including status monitoring dashboards, trend charts, and reports, allowing users to intuitively understand the overall operating efficiency of the wind farm and the status of each piece of equipment. Simultaneously, as the intelligent terminal device 6 moves to the designated working position via the casters 2 and is powered on, the electric telescopic pole 8 starts synchronously with the intelligent terminal device 6. The electric telescopic pole 8 pushes the support plate 9 downwards, and the support plate 9 moves downwards to contact the support surface and... Raising the entire loading box 1 disengages the casters 2 from the support surface, ensuring the casters 2 are suspended in the air. This eliminates displacement caused by wheel rolling, keeping the equipment in the predetermined position and reducing the risk of tilting or overturning due to vibration, wind, or other external factors. This makes the device more reliable in the exposed environment of the wind farm. Raising the device above the support surface also provides wind farm maintenance personnel with more convenient operating space, making device inspection and maintenance easier. As the electric telescopic rod 8 pushes the support plate 9 downwards, the support plate 9 drives the long rod 13 downwards. The movement of the long rod 13 drives the pressure block 14 downwards. 4. The moving contact pushes the inclined block 12 to start moving. The movement of the inclined block 12 causes the guard plate 11 to start moving. The guard plate 11 moves and extends outward a certain distance to protect the entire loading box 1 and the internal intelligent terminal device 6. It can effectively prevent external objects from directly colliding and squeezing the entire loading box 1 and the internal intelligent terminal device 6, which can reduce the safety hazards caused by damage to the device and ensure that the device can collect and process data more safely during operation. At the same time, the use of the guard plate 11 can form a more obvious device boundary, enhance the visibility of the device, and make it easier for on-site personnel to identify, thereby avoiding accidental contact and collision.
[0027] Please see Figures 1-10Based on the above embodiments, in another embodiment of the present invention, the clamping device includes a crossbar 151, a clamping plate 152, two rotating columns 153, a transmission belt 154, and a connecting rod 155. The crossbar 151 is fixedly installed on the circumferential surface of the sliding column 10 near the inside of the loading box 1. The clamping plate 152 is fixedly installed at the bottom of the crossbar 151. The two rotating columns 153 are rotatably installed on the inner wall of the loading box 1 and are connected by transmission belt 154. One end of the connecting rod 155 is fixedly installed on the top of the clamping plate 152, and the other end of the connecting rod 155 is fixedly installed on the surface of the transmission belt 154. The clamping plate 152 moves to contact and clamp the intelligent terminal device 6, fixing the intelligent terminal device 6 in a specific position to prevent displacement or tilting of the device due to squeezing and collision, thereby maintaining its normal working state. This can reduce the direct impact of external impacts on the device, thereby reducing the probability of device damage and extending the service life of the equipment.
[0028] The clamping device also includes a slide rail 156, a closing plate 157, a fixing block 158, a fixing plate 159, a fixing post 1510, a sliding plate 1511, an inclined block 1512, and a push rod 1513. The slide rail 156 is fixedly installed on the inner wall of the loading box 1, the closing plate 157 is slidably installed inside the slide rail 156, the fixing block 158 is fixedly installed on the side of the closing plate 157 away from the inner wall of the loading box 1, the fixing plate 159 is fixedly installed on the inner wall of the loading box 1, the fixing post 1510 is fixedly installed on the top of the fixing plate 159, and the sliding plate 1511 is slidably installed on the fixed plate 1513. The circumferential surface of column 1510, inclined block 2 1512 is fixedly installed on the surface of slide plate 1511, and push rod 1513 is fixedly installed on the top of clamping plate 152. The heat dissipation holes opened on loading box 1 are sealed by moving and resetting the sealing plate 157. This can prevent external objects, such as rainwater, dust, and debris, from entering the equipment, thereby protecting the internal electronic components and circuits and reducing the risk of failure caused by the external environment. At the same time, the sealing plate 157 can effectively absorb some of the impact force, reduce the probability of device damage, and improve the overall durability and long-term stability of the device.
[0029] The clamping plate 152 contacts the bottom of the inner wall of the loading box 1. A second spring is provided between the clamping plate 152 and the inner wall of the loading box 1. The contact ensures that the clamping plate 152 can move normally, and the second spring ensures that the clamping plate 152 can achieve self-reset.
[0030] The sealing plate 157 contacts the inner wall of the loading box 1, the sliding plate 1511 contacts the fixing block 158, and the push rod 1513 and the inclined block 1512 are both set as inclined surfaces on their respective sides. A spring 3 is set between the sealing plate 157 and the inner wall of the loading box 1, and a spring 4 is set between the sliding plate 1511 and the fixing plate 159. The contact ensures that the sealing plate 157 can control the opening and closing of the heat dissipation holes, the contact ensures that the sliding plate 1511 can restrict the movement of the fixing block 158, the inclined surface ensures that the push rod 1513 can smoothly push the inclined block 1512 when moving, the spring 3 ensures that the sealing plate 157 can achieve self-reset, and the spring 4 ensures that the sliding plate 1511 can achieve self-reset.
[0031] The sealing device includes a sealing strip 161, an inclined rod 162, and an inclined block 163. The sealing strip 161 is slidably installed on the inner wall of the loading box 1. The inclined rod 162 is fixedly installed on the side of the clamping plate 152 near the sealing strip 161. The inclined block 163 is fixedly installed on the side of the sealing strip 161 near the inclined rod 162. The sealing strip 161 moves to contact the sealing door 3 and seals the gap between the sealing door 3 and the loading box 1. This effectively prevents external substances such as rainwater, moisture, and dust from entering the device, thereby protecting electronic components and mechanical parts, reducing the risk of corrosion and failure, enhancing the reliability and durability of the overall system, effectively protecting the device from external factors, improving the safety and stability of the device, extending the service life of the device, and reducing maintenance costs.
[0032] The sealing device also includes a handle 164, a gear 165, a balance tube 166, a sliding sleeve 167, a fixing rod 168, and a rack 169. The handle 164 is rotatably mounted on the front of the closed door 3. The gear 165 is fixedly mounted on the circumferential surface of the handle 164. The balance tube 166 is fixedly mounted inside the closed door 3. The sliding sleeve 167 is slidably mounted on the circumferential surface of the balance tube 166. The fixing rod 168 is fixedly mounted on the circumferential surface of the sliding sleeve 167. The rack 169 is fixedly mounted at the bottom of the fixing rod 168. The sliding sleeve 167 moves to open the channel between itself and the air inlet on the balance tube 166. Then, external air enters the loading box 1 through the air inlet on the balance tube 166, thereby making the internal air pressure of the device consistent with the external air pressure. At this time, the operator can open the closed door 3 normally. The balance tube 166 connects the outside and inside of the device, which can reduce the opening resistance of the closed door 3, ensure that the door can be opened smoothly, and at the same time reduce the risk of accidents or malfunctions caused by pressure imbalance, improve the overall safety of the device, and extend the service life of the device.
[0033] The inclined rod 162 and the inclined block 163 are both inclined on the side that are close to each other. The rack 169 meshes with the gear 165. An air inlet is provided between the balance tube 166 and the sliding sleeve 167. A spring five is provided between the sealing strip 161 and the inner wall of the loading box 1. A spring six is provided between the sliding sleeve 167 and the closed door 3. The inclined surfaces ensure that the inclined rod 162 can smoothly push the inclined block 163 when it moves. The meshing ensures that the gear 165 can drive the rack 169 to move when it rotates. The air inlet ensures that normal air intake is possible. The spring five ensures that the sealing strip 161 can achieve self-reset. The spring six ensures that the sliding sleeve 167 can achieve self-reset.
[0034] In this embodiment, during operation: when the smart terminal device 6 is impacted or squeezed by an external object, the protective plate 11 begins to move towards the loading box 1. The movement of the protective plate 11 causes the sliding column 10 to move, which in turn causes the crossbar 151 to move towards the smart terminal device 6. The crossbar 151 then causes the clamping plate 152 to move towards the smart terminal device 6. The clamping plate 152 then contacts and clamps the smart terminal device 6, fixing it in a specific position. This prevents displacement or tilting due to squeezing or impact, thus maintaining its normal operating state. This reduces the direct impact of external impacts on the device, thereby reducing the probability of damage and extending the device's lifespan. The clamping plate 152 then contacts and clamps the smart terminal device. Simultaneously, device 6 drives push rod 1513 to move. Push rod 1513 moves and contacts inclined block 1512, which begins to move downward. The movement of inclined block 1512 drives slide plate 1511 to move downward. Slide plate 1511 moves and disengages from fixed block 158, releasing its restriction. Subsequently, sealing plate 157 moves and resets under the action of spring 3. Sealing plate 157 moves and resets to seal the heat dissipation holes on loading box 1, preventing external objects such as rainwater, dust, and debris from entering the equipment, thereby protecting internal electronic components and circuits and reducing the risk of failure caused by the external environment. At the same time, sealing plate 157 can effectively absorb some impact force, reduce the probability of device damage, and improve the overall durability and long-term stability of the device.
[0035] As the clamping plate 152 moves to contact and clamp the intelligent terminal device 6, it drives the inclined rod 162 to move. The inclined rod 162 then contacts and pushes the inclined block 163 to move. The movement of the inclined block 163 causes the sealing strip 161 to move towards the closed door 3. The sealing strip 161 then contacts the closed door 3 and seals the gap between the closed door 3 and the loading box 1. This effectively prevents external substances such as rainwater, moisture, and dust from entering the device, thereby protecting electronic components and mechanical parts, reducing the risk of corrosion and malfunction, and enhancing the reliability and durability of the overall system. It also effectively protects the device from external factors, improving its safety and stability, extending its service life, and reducing maintenance costs. However, after the device is completely sealed due to external pressure or impact, the internal air pressure may differ from the external air pressure. This could lead to a situation where personnel are unable to work safely after an accident. If the operator has difficulty opening the closed door 3 to inspect the inside of the device, the operator can manually turn the handle 164. This turns the handle 164, causing the gear 165 to rotate. The gear 165 then moves the rack 169, which in turn moves the fixed rod 168. The fixed rod 168 then moves the sliding sleeve 167, opening the passage between the sliding sleeve 167 and the air inlet on the balance pipe 166. External air then enters the loading box 1 through the air inlet on the balance pipe 166, thus equalizing the internal air pressure with the external air pressure. At this point, the operator can open the closed door 3 normally. The balance pipe 166 connects the outside and inside of the device, reducing the opening resistance of the closed door 3 and ensuring smooth opening. It also reduces the risk of accidents or malfunctions caused by pressure imbalance, improving the overall safety of the device and extending its service life.
[0036] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus.
[0037] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A comprehensive positioning device for a multi-dimensional intelligent terminal equipment in a wind farm, comprising a loading box (1), wherein casters (2) are rotatably mounted on the bottom of the loading box (1), a closed door (3) is rotatably mounted on the front of the loading box (1), a display (4) is provided on the front of the closed door (3), a signal receiving device (5) is provided on the top of the loading box (1), and an intelligent terminal device (6) is provided inside the loading box (1), characterized in that, The integrated positioning device for the multi-dimensional intelligent terminal equipment in the wind farm also includes: A protective device for stabilizing and effectively protecting the entire device when the integrated positioning device of the smart terminal equipment is working, which is installed on the surface of the loading box (1); The loading box (1) is fixedly installed with a base plate (7) on its side. The bottom of the base plate (7) is fixedly installed with the fixed end of an electric telescopic rod (8). The output end of the electric telescopic rod (8) is fixedly installed with a support plate (9). A clamping device for stabilizing and protecting the internal components of a smart terminal device when it is subjected to collision or compression during operation is installed inside the loading box (1). A sealing device for sealing the device when it is subjected to collision or compression during the operation of the integrated positioning device of the smart terminal equipment, is installed inside the loading box (1).
2. The integrated positioning device for multi-dimensional intelligent terminal equipment in wind farms according to claim 1, characterized in that: The protective device also includes a sliding column (10), a guard plate (11), an inclined block (12), a long rod (13), and a pressure block (14). The sliding column (10) slides through the loading box (1). The guard plate (11) is fixedly installed at one end of the sliding column (10) away from the inside of the loading box (1). The inclined block (12) is fixedly installed on the side of the guard plate (11) near the sliding column (10). The long rod (13) is fixedly installed on the surface of the support plate (9). The pressure block (14) is fixedly installed at one end of the long rod (13) away from the support plate (9).
3. The integrated positioning device for multi-dimensional intelligent terminal equipment in wind farms according to claim 2, characterized in that: The sides of the pressure block (14) and the inclined block (12) that are in contact with each other are both set as inclined surfaces. The back of the loading box (1) is provided with heat dissipation holes. A spring is provided between the guard plate (11) and the loading box (1).
4. The integrated positioning device for multi-dimensional intelligent terminal equipment in wind farms according to claim 1, characterized in that: The clamping device includes a crossbar (151), a clamping plate (152), two rotating columns (153), a transmission belt (154), and a connecting rod (155). The crossbar (151) is fixedly installed on the circumferential surface of the sliding column (10) near the inside of the loading box (1). The clamping plate (152) is fixedly installed at the bottom of the crossbar (151). The two rotating columns (153) are rotatably installed on the inner wall of the loading box (1). The two rotating columns (153) are connected by transmission through the transmission belt (154). One end of the connecting rod (155) is fixedly installed on the top of the clamping plate (152), and the other end of the connecting rod (155) is fixedly installed on the surface of the transmission belt (154).
5. The integrated positioning device for multi-dimensional intelligent terminal equipment in wind farms according to claim 4, characterized in that: The clamping device further includes a slide rail (156), a closed plate (157), a fixing block (158), a fixing plate (159), a fixing column (1510), a sliding plate (1511), a second inclined block (1512), and a push rod (1513). The slide rail (156) is fixedly installed on the inner wall of the loading box (1). The closed plate (157) is slidably installed inside the slide rail (156). The fixing block (158) is fixedly installed on the side of the closed plate (157) away from the inner wall of the loading box (1). The fixing plate (159) is fixedly installed on the inner wall of the loading box (1). The fixing column (1510) is fixedly installed on the top of the fixing plate (159). The sliding plate (1511) is slidably installed on the circumferential surface of the fixing column (1510). The second inclined block (1512) is fixedly installed on the surface of the sliding plate (1511). The push rod (1513) is fixedly installed on the top of the clamping plate (152).
6. The integrated positioning device for multi-dimensional intelligent terminal equipment in wind farms according to claim 5, characterized in that: The clamping plate (152) contacts the bottom of the inner wall of the loading box (1), and a spring is provided between the clamping plate (152) and the inner wall of the loading box (1).
7. The integrated positioning device for multi-dimensional intelligent terminal equipment in wind farms according to claim 6, characterized in that: The closing plate (157) contacts the inner wall of the loading box (1), the sliding plate (1511) contacts the fixing block (158), the push rod (1513) and the inclined block two (1512) are both set as inclined surfaces, a spring three is provided between the closing plate (157) and the inner wall of the loading box (1), and a spring four is provided between the sliding plate (1511) and the fixing plate (159).
8. The integrated positioning device for multi-dimensional intelligent terminal equipment in wind farms according to claim 1, characterized in that: The sealing device includes a sealing strip (161), a beveled rod (162), and a beveled block (163). The sealing strip (161) is slidably installed on the inner wall of the loading box (1). The beveled rod (162) is fixedly installed on the side of the clamping plate (152) near the sealing strip (161). The beveled block (163) is fixedly installed on the side of the sealing strip (161) near the beveled rod (162).
9. The integrated positioning device for multi-dimensional intelligent terminal equipment in wind farms according to claim 8, characterized in that: The sealing device also includes a handle (164), a gear (165), a balance tube (166), a sliding sleeve (167), a fixing rod (168), and a rack (169). The handle (164) is rotatably mounted on the front of the closed door (3). The gear (165) is fixedly mounted on the circumferential surface of the handle (164). The balance tube (166) is fixedly mounted inside the closed door (3). The sliding sleeve (167) is slidably mounted on the circumferential surface of the balance tube (166). The fixing rod (168) is fixedly mounted on the circumferential surface of the sliding sleeve (167). The rack (169) is fixedly mounted on the bottom of the fixing rod (168).
10. The integrated positioning device for multi-dimensional intelligent terminal equipment in wind farms according to claim 9, characterized in that: The inclined rod (162) and the inclined block three (163) are both set as inclined surfaces on their sides. The rack (169) meshes with the gear (165). An air inlet is provided between the balance tube (166) and the sliding sleeve (167). A spring five is provided between the sealing strip (161) and the inner wall of the loading box (1). A spring six is provided between the sliding sleeve (167) and the closed door (3).
Citation Information
Patent Citations
Power demand response intelligent terminal device
CN217769606U