Auxiliary device for installing monitoring equipment of hydropower station

By designing supporting components and transverse driving components for hydropower station monitoring equipment installation auxiliary devices, the problems of applicability and convenience of existing devices are solved, stable fixation and convenient installation of equipment of different specifications are achieved, and installation efficiency is improved.

CN115594114BActive Publication Date: 2025-08-22HUANENG GANSU HYDROPOWER DEV CO LTD
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Patent Information

Application Number
CN202211211799.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-09-30
Publication Date
2025-08-22
Estimated Expiration
2042-09-30

AI Technical Summary

Technical Problem

The installation auxiliary devices for existing hydropower station monitoring equipment cannot be suitable for monitoring equipment of different specifications, and it is not convenient to carry or fix on uneven road sections, which affects installation efficiency.

Method used

A device including a support member, a transverse driving member and a reinforcement member is designed. The support member is composed of a movable lifting plate and a lifting drive assembly. The device is easily moved and fixed through a universal wheel and a reinforcement member. The transverse driving member adjusts the size of the lifting plate to adapt to the installation of equipment of different specifications.

Benefits of technology

It realizes stable fixation and convenient installation of monitoring equipment of different specifications, improves installation efficiency, and is convenient for handling and fixing, especially in uneven road sections.

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Abstract

The present invention discloses an auxiliary device for installing monitoring equipment of a hydropower station, which belongs to the technical field of monitoring equipment installation and comprises: a supporting member, a transverse driving member and two reinforcing members. The supporting member comprises two supporting parts capable of relative movement, each supporting part comprising a bracket, a lifting driving assembly and a lifting plate, the lifting plate being arranged above the bracket and forming a storage station for placing the equipment to be installed between the tops of the two lifting plates; the two ends of the transverse driving member are respectively connected to the two supporting parts, and can drive the two supporting parts to move relative to each other to accommodate the supporting parts and adjust the size of the storage station; each reinforcing member comprises at least one reinforcing part, the driving end of the driving member is connected to a fixing nail and can drive the fixing nail into the ground to fix the supporting member; the device can be applied to various types of monitoring equipment, and is also highly convenient and easy to carry, move or fix even when the road section is uneven.
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Description

Technical Field

[0001] The present invention relates to the technical field of monitoring equipment installation, in particular to an auxiliary device for installing monitoring equipment of a hydropower station. Background Art

[0002] The monitoring equipment and monitoring data are becoming more and more massive as the monitoring scope expands. The system mainly consists of automated measuring stations, data acquisition and control systems, and is connected to the data management center station.

[0003] The automated measuring station integrates an automatic measuring robot, a thermometer and hygrometer, a wind sensor, a rain sensor, a barometer, automated burglar-proof windows, a temperature control system, a fiber optic communication module, and a UPS power supply. The measuring robot is responsible for calibrating and collecting automated data from clicked measuring points; the wind sensor, rain sensor, thermometer and hygrometer, and barometer collect environmental information; the automated burglar-proof windows open and close during observation; and the temperature control system ensures the optimal operating environment for key instruments and equipment even in extreme weather conditions. Collected information is transmitted via fiber optic cable to a central station for storage and analysis. The automated measuring station is powered by an external power supply, equipped with a UPS to ensure stable and reliable system operation during construction.

[0004] Generally, monitoring equipment needs to be installed on a high platform or side wall. Publication No. CN212601682U provides a hydropower station equipment maintenance auxiliary device. When installing the detection equipment, the auxiliary device cannot be used for auxiliary fixation of monitoring equipment of different specifications. In addition, the auxiliary device is large in size. When the auxiliary device is on an uneven road section, it is not convenient to carry or fix it, and the auxiliary effect is poor, which in turn affects the installation efficiency of the electrical equipment. Summary of the Invention

[0005] The purpose of the present invention is to overcome the above technical deficiencies and propose an auxiliary device for installing hydropower station monitoring equipment to solve the technical problems in the prior art that the auxiliary device cannot be applied to monitoring equipment of different specifications, is inconvenient to carry or fix, and has poor auxiliary effect.

[0006] In order to achieve the above technical objectives, the technical solution of the present invention provides a hydropower station monitoring equipment installation auxiliary device, comprising:

[0007] The support member includes two supporting parts capable of relative movement, each supporting part including a bracket, a lifting drive assembly and a lifting plate. The two brackets are arranged side by side, and universal wheels are provided at both ends of the bottom of each bracket. The lifting plate is arranged above the bracket, and a storage station for placing equipment to be installed is formed between the tops of the two lifting plates. The driving end of the lifting drive assembly is connected to the lifting plate to drive the lifting plate to move up and down.

[0008] A transverse driving member, whose two ends are respectively connected to the two supporting parts, can drive the two supporting parts to move relative to each other to store the supporting parts and adjust the size of the storage station;

[0009] Two reinforcing members are connected to the brackets one by one, each reinforcing member includes at least one reinforcing part, each reinforcing part includes a fixing member, a driving member and a fixing nail, the fixing member is connected to the bracket, the driving member is connected to the fixing member, the driving end of the driving member is connected to the fixing nail and can drive the fixing nail into the ground to fix the supporting member.

[0010] In some embodiments, the lifting drive assembly includes a screw, a connecting rod and a first motor. The screw is provided on the bracket. A first bevel gear is rotatably connected to a position corresponding to the screw on the bracket. The screw is threadedly connected to the first bevel gear. The first motor is provided on the bracket, and the driving end of the first motor is connected to the second bevel gear. The connecting rod is horizontally provided between the screw and the driving member, and third bevel gears are respectively provided at both ends of the connecting rod. One of the third bevel gears is meshed and rotatably connected to the first bevel gear, and the other third bevel gear is meshed and rotatably connected to the second bevel gear.

[0011] In some embodiments, two sets of screw rods and connecting rods are provided, and the two screw rods are respectively provided at two ends of the bracket.

[0012] In some embodiments, the bracket includes multiple horizontal plates and two vertical plates. The multiple horizontal plates are arranged horizontally and side by side. The two vertical plates are respectively arranged at both ends of the multiple horizontal plates and are respectively connected to the two ends of the horizontal plates. The interior of the vertical plates is a hollow structure, and the lifting drive assembly is arranged in the vertical plates.

[0013] In some embodiments, the transverse driving member includes two I-frames, a connecting plate and a cylinder. The two I-frames are respectively connected to the two ends of the connecting plate and are located between the two brackets. The protruding parts at both ends of the I-frame are rotatably connected to a connecting rod, and the other end of the connecting rod is rotatably connected to the bracket. The cylinder is rotatably arranged on the bracket, and the driving end of the cylinder is rotatably connected to the connecting plate to drive the connecting plate to rise and fall so as to adjust the relative position of the two brackets through the I-frame and the connecting rod.

[0014] In some embodiments, the fixing member includes a fixing plate, a slide plate and a mounting plate. The fixing plate is connected to the bracket. The slide plate is slidably arranged at one end of the fixing plate. The mounting plate is connected to the slide plate. The driving member is a driving motor. The driving motor is arranged on the mounting plate. A threaded groove is provided on the outside of the fixing nail. The fixing nail is threadedly connected to the fixing plate. The top end of the fixing nail passes through the mounting plate and is connected to the output shaft of the driving motor.

[0015] In some embodiments, the support part also includes a clamping plate, which is arranged above the lifting plate and corresponds to the side of the placement station. The two clamping plates can approach each other with the relative movement of the support part to clamp the equipment to be installed in the placement station.

[0016] In some embodiments, an elastic member is provided on the side of the clamping plate close to the placement station, and the elastic member includes a spring, a telescopic rod and a splint. The splint and the clamping plate are arranged side by side, one end of the spring is connected to the clamping plate, and the other end of the spring is connected to the splint. One end of the telescopic rod is connected to the clamping plate, and the other end of the telescopic rod is connected to the splint.

[0017] In some embodiments, a gap for accommodating the installation platform is formed below the two lifting plates at a position corresponding to the placement station.

[0018] In some embodiments, a plurality of mounting slots are provided on the top of each lifting plate, the plurality of mounting slots are arranged in parallel, and one end of the mounting slot close to the middle of the placement station passes through the lifting plate.

[0019] Compared with the prior art, the beneficial effects of the present invention include: through the provision of support members, the two lifting plates can be used to assist in lifting the equipment, and the lifting drive assembly can be used to drive the lifting plates up and down to adjust the height of the equipment for subsequent installation of the monitoring equipment; in conjunction with the provision of a transverse driving member, a universal wheel and a reinforcement member, the transverse driving member can be used to drive the two supporting parts to move closer or farther away, and the size of the storage station can be adjusted, so that the device can be suitable for auxiliary fixation of monitoring equipment of different specifications, and the overall volume of the supporting member can be reduced when driving the two supporting parts closer, so that the device can walk and move through the universal wheel. Each supporting part is equipped with a reinforcement member, and the driving member can be used to drive the fixing nails to be quickly nailed into the ground to achieve fixation of the supporting member to the ground, so that the device has high convenience and is still easy to carry, move or fix when the road section is uneven. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 This is a schematic diagram of the overall three-dimensional structure of an embodiment of the auxiliary device for installing monitoring equipment of a hydropower station according to the present invention;

[0021] Figure 2 This is a schematic diagram of the overall front view structure of an embodiment of the auxiliary device for installing monitoring equipment of a hydropower station according to the present invention;

[0022] Figure 3 This is a schematic diagram of the overall front cross-sectional structure of an embodiment of the auxiliary device for installing monitoring equipment of a hydropower station according to the present invention;

[0023] Figure 4 This is a schematic diagram of the overall right side structure of an embodiment of the auxiliary device for installing monitoring equipment of a hydropower station according to the present invention;

[0024] Figure 5 This is a schematic diagram of the right side cross-sectional structure of the installation of the lifting drive assembly of one embodiment of the auxiliary device for installing hydropower station monitoring equipment of the present invention;

[0025] Figure 6 This is a schematic diagram of a partial structure of a right side cross-section of the installation of a lifting drive assembly of an embodiment of the auxiliary device for installing hydropower station monitoring equipment of the present invention;

[0026] Figure 7 It is a schematic diagram of the three-dimensional structure of the lifting plate installation of one embodiment of the auxiliary device for installing hydropower station monitoring equipment of the present invention.

[0027] In the figure: 1. Support member; 11. Bracket; 111. Universal wheel; 112. Horizontal plate; 113. Vertical plate; 12. Lifting drive assembly; 121. Screw; 122. Connecting rod; 123. First motor; 124. First bevel gear; 125. Second bevel gear; 126. Third bevel gear; 13. Lifting plate; 131. Storage station; 132. Mounting groove; 14. Clamping plate; 15. Elastic member; 151. Spring; 152. Telescopic rod; 153. Clamping plate; 2. Horizontal driving member; 21. I-beam; 22. Connecting plate; 23. Cylinder; 24. Connecting rod; 3. Reinforcement member; 31. Fixing member; 311. Fixing plate; 312. Slide plate; 313. Mounting plate; 32. Driving member; 33. Fixing nail. DETAILED DESCRIPTION

[0028] In order to make the purpose, technical solutions and advantages of the present invention more clearly understood, the present invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not intended to limit the present invention.

[0029] like Figure 1 As shown, the present invention provides an auxiliary device for installing monitoring equipment of a hydropower station, comprising: a supporting member 1, a transverse driving member 2 and two reinforcing members 3.

[0030] like Figures 1 to 2 As shown, the support structure 1 includes two supporting parts that can move relative to each other, each supporting part includes a bracket 11, a lifting drive assembly 12 and a lifting plate 13, the two brackets 11 are arranged side by side, and universal wheels 111 are provided at both ends of the bottom of each bracket 11, the lifting plate 13 is arranged above the bracket 11, and a storage station 131 for placing the equipment to be installed is formed between the tops of the two lifting plates 13, and the driving end of the lifting drive assembly 12 is connected to the lifting plate 13 to drive the lifting plate 13 to perform lifting movement.

[0031] Both ends of the transverse driving member 2 are respectively connected to the two supporting parts, and can drive the two supporting parts to move relative to each other to accommodate the supporting parts and adjust the size of the storage station 131.

[0032] The two reinforcing members 3 are respectively connected to the bracket 11, and each reinforcing member 3 includes at least one reinforcing part. Each reinforcing part includes a fixing member 31, a driving member 32 and a fixing nail 33. The fixing member 31 is connected to the bracket 11, and the driving member 32 is connected to the fixing member 31. The driving end of the driving member 32 is connected to the fixing nail 33 and can drive the fixing nail 33 into the ground to fix the support member 1.

[0033] When the present device is in use, the transverse driving member 2 can drive the relative movement of the two supporting parts, and can drive the two supporting parts to move closer together, thereby reducing the overall volume of the supporting member 1. In conjunction with the universal wheels 111 and the reinforcement member 3 provided at the bottom of each bracket 11, the universal wheels 111 can support the device to facilitate the walking and movement of the device. Each supporting part is equipped with a reinforcement member 3. The driving member 32 can drive the fixing nails 33 to be quickly nailed into the ground to fix the supporting member 1 to the ground, so that the device has high convenience and is still easy to carry, move or fix when the road section is uneven. The transverse driving member 2 can also drive the two supporting parts to move away from each other, and then can adjust the distance between the two lifting plates 13 to adjust the size of the storage station 131, so that the device can achieve auxiliary fixation of monitoring equipment of different specifications. The lifting driving assembly 12 provided can drive the lifting plate 13 to perform lifting and lowering movements, and can move the monitoring equipment to the installation height for subsequent installation of the monitoring equipment.

[0034] like Figure 2 As shown, in some embodiments, a gap is formed below the two lifting plates 13 at a position corresponding to the placement station 131 for accommodating the installation platform. When in use, the installation platform can pass through the gap at the bottom of the lifting plates 13, so that the installation position can correspond to the auxiliary fixed equipment. After the two brackets 11 move away from each other until the lifting plates 13 move to both sides of the installation platform, the equipment can automatically fall onto the installation platform, thereby achieving stable placement of the equipment to be installed.

[0035] like Figures 2 to 3 As shown, in some embodiments, the transverse driving member 2 includes two I-frames 21, a connecting plate 22 and a cylinder 23. The two I-frames 21 are respectively connected to the two ends of the connecting plate 22 and are located between the two brackets 11. The two I-frames 21 are arranged side by side and vertically. The left and right sides of the upper and lower ends of the I-frame 21 are hinged with connecting rods 24. The other end of each connecting rod 24 is hinged and fixed to the hinge seat on the bracket 11, and the multiple connecting rods 24 are parallel; there are two cylinders 23, and the two cylinders 23 are symmetrically arranged. One end of the cylinder 23 is hinged and fixed to the hinge seat on the bracket 11, and the driving end of the cylinder 23 is hinged and fixed to the connecting plate 22. The two cylinders 23 can simultaneously and stably drive the connecting plate 22 to rise and fall, thereby adjusting the height of the two I-frames 21; as shown Figure 3When the I-frame 21 moves up, one end of each connecting rod 24 connected to the I-frame 21 rotates upward with the other end as the center of the circle, so that the vertical distance between the vertical planes at both ends of the connecting rod 24 is reduced, thereby driving the two brackets 11 to move closer to each other. When the I-frame 21 moves down, one end of each connecting rod 24 connected to the I-frame 21 rotates downward with the other end as the center of the circle. At this time, the vertical distance between the vertical planes at both ends of the connecting rod 24 increases, thereby driving the two brackets 11 to move in the direction away from the other bracket 11, thereby realizing the relative position adjustment of the two brackets 11 through the I-frame 21 and the connecting rod 24.

[0036] Furthermore, in some embodiments, the fixing member 31 includes a fixing plate 311, a slide plate 312 and a mounting plate 313. One end of the fixing plate 311 is connected to the bracket 11. The slide plate 312 is provided at the other end of the fixing plate 311, and this end of the fixing plate 311 extends into the slide plate 312 and is slidably connected to the slide plate 312. The mounting plate 313 is arranged in parallel on the top of the fixing plate 311 and the mounting plate 313 is connected to the slide plate 312. The driving member 32 is a driving motor, which is installed on the top of the mounting plate 313. The outer side of the fixing nail 33 is provided with a thread. The top of the fixing nail 33 passes through the mounting plate 313 and is connected to the output shaft of the driving motor. When in use, the fixing nail 33 can be driven to rotate by using the driving motor. Since the fixing nail 33 is threadedly connected to the fixing plate 311, the fixing nail 33 will move upward or downward when rotating, thereby driving the slide plate 312 and the mounting plate 313 to slide upward or downward. When the fixing nail 33 moves downward, it can rotate and drill into the ground, thereby achieving the fixation of the support member 1 to the ground.

[0037] Furthermore, in order to improve the stability of the mounting plate 313 , the mounting plate 313 is slidably connected to the bracket 11 .

[0038] Furthermore, the fixing member 31 may include a fixing plate 311, the driving member 32 is an electric telescopic rod, the fixing plate 311 is connected to the bracket 11, the electric telescopic rod is installed on the fixing plate 311, and the telescopic end of the electric telescopic rod is connected to the fixing nail 33. The fixing nail 33 can be driven downward by the electric telescopic rod. The lower part of the fixing nail 33 is a pointed end, which can be inserted into the ground for fixation.

[0039] like Figures 4 to 6As shown, in some embodiments, the lifting drive assembly 12 includes a screw 121, a connecting rod 122 and a first motor 123. The position corresponding to the screw 121 on the bracket 11 is rotatably connected to the first bevel gear 124. The screw 121 passes through the first bevel gear 124 and is threadedly connected to the first bevel gear 124. The screw 121 is vertically arranged on the bracket 11. There are two groups of screws 121 and connecting rods 122. The two screws 121 are respectively provided at both ends of the bracket 11, so that the two The screw rods 121 support the lifting plate 13 on both sides of the bottom of the lifting plate 13, ensuring the stability of the lifting plate 13; the first motor 123 is arranged on the bracket 11, and the driving end of the first motor 123 is connected to the second bevel gear 125, and the positions corresponding to the first bevel gear 124 and the second bevel gear 125 on the bracket 11 are provided with mounting covers, which are respectively covered on the outside of the first bevel gear 124 and the second bevel gear 125, and the connecting rod 122 is horizontally arranged on the screw rod 1 21 and the driving member 32, and both ends of the connecting rod 122 are rotatably connected to the mounting cover, and the mounting cover is used to limit and fix the connecting rod 122; and both ends of the connecting rod 122 are provided with a third bevel gear 126 that is respectively meshed with the first bevel gear 124 and the second bevel gear 125 and is rotatably connected. When in use, the first motor 123 can drive the second bevel gear 125 to rotate, thereby driving the third bevel gear 126 and the connecting rod 122 to rotate. Since the third bevel gear 126 is also meshed and rotatably connected with the first bevel gear 124, it can drive the rotation of the first bevel gear 124. Since the first bevel gear 124 is rotatably fixed on the bracket 11, the two screws 121 are connected to the lifting plate 13, so that the screw 121 cannot rotate with the drive of the first bevel gear 124, and then when the first bevel gear 124 rotates, it can drive the two screws 121 to move upward or downward at the same time to adjust the height of the lifting plate 13.

[0040] Furthermore, the lifting drive assembly 12 may also include a hydraulic cylinder or an electric telescopic rod, etc., and the hydraulic cylinder or the electric telescopic rod is installed on the bracket 11. The height of the lifting plate 13 can also be adjusted by utilizing the extension and retraction of the hydraulic cylinder or the electric telescopic rod.

[0041] Furthermore, in some embodiments, the bracket 11 includes multiple horizontal plates 112 and two vertical plates 113. Three horizontal plates 112 are preferably provided, and the three horizontal plates 112 are arranged in parallel horizontally. The two vertical plates 113 are respectively arranged at both ends of the three horizontal plates 112 and are respectively connected to the two ends of the horizontal plates 112. The three horizontal plates 112 and the two vertical plates 113 are fixed by welding to form a stable bracket 11, and the interior of the vertical plate 113 is a hollow structure. The screw 121 is vertically arranged inside the vertical plate 113. The screw 121 has the same height as the vertical plate 113, so that in addition to its own height, the support member 1 can also be adjusted upward to a height close to that of a screw 121, and the overall height adjustment range of the support member 1 is large.

[0042] like Figure 1 、 Figure 7 As shown, in some embodiments, the supporting part also includes a clamping plate 14, which is arranged above the lifting plate 13 and corresponds to the side of the placement station 131. By arranging the clamping plate 14 on the lifting plate 13, the two clamping plates 14 can approach or move away from each other with the relative movement of the supporting part. When the two clamping plates 14 are close to each other, they can clamp the equipment to be installed in the placement station 131, thereby improving the stability of the equipment to be installed.

[0043] Furthermore, in some embodiments, a plurality of mounting slots 132 are provided on the top of each lifting plate 13, and the plurality of mounting slots 132 are arranged in parallel and one end of the mounting slot 132 close to the middle of the placement station 131 passes through the lifting plate 13. When in use, after the two lifting plates 13 are opened to a certain distance, the equipment can be pre-fixed on the installation platform through the mounting slot 132. After the mounting bolts on the equipment are connected to the platform, the bolts can pass through the mounting slot 132, so that the lifting plate 13 can be moved out of the installation platform, and then the equipment is reinforced, so that the device can pre-fix the equipment when placing the equipment, and can prevent the equipment from falling off the installation platform during subsequent movement; at the same time, there is no need to manually hold the equipment, and the device is easy to use.

[0044] like Figure 1 、 Figure 2 、 Figure 7As shown, in some embodiments, an elastic member 15 is provided on one side of the clamping plate 14 close to the storage station 131. The elastic member 15 includes a spring 151, a telescopic rod 152 and a splint 153. The splint 153 is arranged in parallel with the clamping plate 14. There are four springs 151, which are respectively arranged at the four corners of one side of the clamping plate 14. One end of each spring 151 is connected to the clamping plate 14, and the other end of each spring 151 is connected to the splint 153. One end of the telescopic rod 152 is connected to the clamping plate 14, and the other end of the telescopic rod 152 is connected to the splint 153. The telescopic rod 152 is used to connect and support the splint 153. When in use, when the two lifting plates 13 move close to each other, the two clamping plates 13 are driven to move. 4 until the two clamping plates 153 respectively reach the two sides of the device to be installed, while ensuring that the spring 151 is in a compressed state. The spring 151 can generate a certain elastic force, which can further improve the stability of the device fixation, so that the support member 1 has a good clamping function. In conjunction with the reinforcement member 3, the support member 1 can be fixed to the ground, so that when it is installed on the side, the device can be placed on one side of the support member 1. Under the clamping of the clamping plate 14 and the elastic member 15, the device can be stably fixed, and under the action of the reinforcement member 3, the device can be prevented from tipping over, so that the overall use effect of the device is better; at the same time, the elastic member 15 is also very elastic, which can effectively reduce the shock of the side of the device and has a certain protective effect.

[0045] Working principle: The support member 1 is in the storage state before use, and the distance between the two brackets 11 is the smallest. At this time, the universal wheel 111 can be used to easily move the device to the installation position, and then the driving member 32 is used to nail the fixing nail 33 into the ground to fix the device. Then, the size of the storage station 131 is adjusted according to the size of the monitoring equipment, and the cylinder 23 is used to drive the connecting plate 22 to move up or down, thereby driving the I-frame 21 to move up and down to adjust the distance between the two brackets 11 and the two lifting plates 13 through the connecting rod 24. Then, the equipment is placed on the two lifting plates 13, and the cylinder 23 is continued to be used to drive the two lifting plates 13 closer until the equipment is clamped between the two clamping plates 153. Then, the driving motor is used to drive the second bevel gear 125 to rotate through the second bevel gear 125, the third bevel gear 126 and the connecting rod 122, thereby driving the screw 121 and the lifting plate 13 to move up and down. The equipment can be installed after it is adjusted to the installation position.

[0046] The present invention provides a support structure 1, and two lifting plates 13 are used to assist in lifting the equipment. The lifting drive assembly 12 is used to drive the lifting plate 13 to rise and fall to adjust the height of the equipment for the subsequent installation of the monitoring equipment. The transverse driving structure 2, universal wheels 111 and reinforcement structure 3 are provided in conjunction with the transverse driving structure 2. The transverse driving structure 2 can drive the two supporting parts to move closer or farther, and the size of the storage station 131 can be adjusted, so that the device can be suitable for auxiliary fixation of monitoring equipment of different specifications. It can also reduce the overall volume of the supporting structure 1 when driving the two supporting parts closer, so that the device can walk and move through the universal wheels 111. Each supporting part is equipped with a reinforcement structure 3, and the driving member 32 can drive the fixing nail 33 to be quickly nailed into the ground to fix the support structure 1 to the ground, so that the device has high convenience and is still easy to carry, move or fix when the road section is uneven.

[0047] The specific embodiments of the present invention described above do not limit the scope of protection of the present invention. Any other corresponding changes and modifications made based on the technical concept of the present invention should be included in the scope of protection of the claims of the present invention.

Claims

1. A hydropower station monitoring equipment installation auxiliary device, characterized in that: include: The support member includes two supporting parts capable of relative movement, each of the supporting parts includes a bracket, a lifting drive assembly and a lifting plate, the two brackets are arranged side by side, and both ends of the bottom of each bracket are provided with universal wheels, the lifting plate is arranged above the bracket, and a storage station for placing the equipment to be installed is formed between the tops of the two lifting plates, and the driving end of the lifting drive assembly is connected to the lifting plate to drive the lifting plate to perform lifting movement; A transverse driving member, the two ends of which are respectively connected to the two supporting parts, capable of driving the two supporting parts to move relative to each other to accommodate the supporting parts and adjust the size of the storage station; Two reinforcing members are connected to the brackets in a one-to-one correspondence, each of the reinforcing members includes at least one reinforcing portion, and each of the reinforcing portions includes a fixing member, a driving member, and a fixing nail, the fixing member is connected to the bracket, the driving member is connected to the fixing member, and the driving end of the driving member is connected to the fixing nail and can drive the fixing nail into the ground to fix the support member; The transverse driving member includes two I-shaped frames, a connecting plate and a cylinder. The two I-shaped frames are respectively connected to the two ends of the connecting plate and are located between the two brackets. The protruding parts at both ends of the I-shaped frame are rotatably connected to a connecting rod, and the other end of the connecting rod is rotatably connected to the bracket. The cylinder is rotatably provided on the bracket, and the driving end of the cylinder is rotatably connected to the connecting plate to drive the connecting plate to rise and fall so as to adjust the relative position of the two brackets through the I-shaped frame and the connecting rod. The support part also includes a clamping plate, which is arranged above the lifting plate and corresponds to the side of the placement station. The two clamping plates can approach each other with the relative movement of the support part to clamp the equipment to be installed in the placement station.

2. The auxiliary device for installing monitoring equipment of a hydropower station according to claim 1, characterized in that: The lifting drive assembly includes a screw, a connecting rod and a first motor. The screw is arranged on the bracket. The first bevel gear is rotatably connected to the position corresponding to the screw on the bracket. The screw is threadedly connected to the first bevel gear. The first motor is arranged on the bracket, and the driving end of the first motor is connected to the second bevel gear. The connecting rod is horizontally arranged between the screw and the driving member, and third bevel gears are respectively provided at both ends of the connecting rod, one of the third bevel gears is meshed and rotatably connected to the first bevel gear, and the other third bevel gear is meshed and rotatably connected to the second bevel gear.

3. The auxiliary device for installing monitoring equipment of a hydropower station according to claim 2, characterized in that: The screw rods and the connecting rods are each provided with two groups, and the two screw rods are respectively provided at the two ends of the bracket.

4. The auxiliary device for installing monitoring equipment of a hydropower station according to claim 1, characterized in that: The bracket includes multiple horizontal plates and two vertical plates. The multiple horizontal plates are arranged in parallel horizontally. The two vertical plates are respectively arranged at both ends of the multiple horizontal plates and are respectively connected to the two ends of the horizontal plates. The interior of the vertical plates is a hollow structure, and the lifting drive assembly is arranged in the vertical plates.

5. The auxiliary device for installing monitoring equipment of a hydropower station according to claim 1, characterized in that: The fixing member includes a fixing plate, a slide plate and a mounting plate. The fixing plate is connected to the bracket. The slide plate is slidably arranged at one end of the fixing plate. The mounting plate is connected to the slide plate. The driving member is a driving motor. The driving motor is arranged on the mounting plate. A threaded groove is provided on the outside of the fixing nail. The fixing nail is threadedly connected to the fixing plate. The top end of the fixing nail passes through the mounting plate and is connected to the output shaft of the driving motor.

6. The auxiliary device for installing monitoring equipment of a hydropower station according to claim 1, characterized in that: An elastic part is provided on the side of the clamping plate close to the placement station, and the elastic part includes a spring, a telescopic rod and a splint. The splint and the clamping plate are arranged side by side, one end of the spring is connected to the clamping plate, and the other end of the spring is connected to the splint. One end of the telescopic rod is connected to the clamping plate, and the other end of the telescopic rod is connected to the splint.

7. The auxiliary device for installing monitoring equipment of a hydropower station according to claim 1, characterized in that: A gap for accommodating the installation platform is formed below the two lifting plates at a position corresponding to the placement station.

8. The auxiliary device for installing monitoring equipment of a hydropower station according to claim 1, characterized in that: A plurality of mounting grooves are provided on the top of each of the lifting plates. The plurality of mounting grooves are arranged in parallel, and one end of the mounting groove close to the middle of the placement station passes through the lifting plate.

Citation Information

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