Special intelligent cabinet body structure of condenser
Technical Field
The utility model relates to the technical field of capacitor cabinets, in particular to an intelligent cabinet body structure special for a capacitor.
Background
The layout of reactive power, the transmission of reactive power and the management of reactive power directly affect the loss of the line and the economic operation of the power system. The reactive compensation device plays a role in improving the power factor of a power grid in a power system, reduces the loss of a power supply transformer and a transmission line, improves the power supply efficiency and improves the power supply environment. In an indispensable very important location in the power system. The reasonable selection of the compensation device can reduce the loss of the network and improve the power supply quality of the power grid. Conversely, if the power supply system is selected and used improperly, various factors such as voltage fluctuation, harmonic wave increase and the like of the power supply system may be caused. In recent years, in the implementation process of urban and rural power grid transformation, the design scheme of the low-voltage parallel capacitor reactive compensation device has been significantly improved and broken through, and satisfactory operation effects are obtained. The intelligent low-voltage reactive compensation device can be directly used as a new product, a new technology and development dynamics of the intelligent low-voltage reactive compensation device in China, and has positive effects on improving the quality of power supply voltage, excavating the potential of power supply equipment, reducing line loss and saving energy.
With respect to the related art in the above, the inventors consider that there are the following drawbacks: most of the existing capacitor cabinets are fixed through screws, a plurality of screws are often needed for fixing a capacitor during installation in the process, before the screws are used for fixing, workers need to tap firstly, and then the screws are installed for fixing, so that the working difficulty of the workers is improved.
Disclosure of utility model
In order to solve the problems, the utility model provides a special intelligent cabinet structure for a capacitor.
The technical aim of the utility model is realized by the following technical scheme: the utility model provides a special intelligent cabinet body structure of condenser, includes inside hollow installing cabinet, it is provided with the cabinet door to rotate on the installing cabinet, the thermovent has all been seted up on two relative lateral walls of installing cabinet, the common fixed mounting panel that is provided with on two relative inner walls of installing cabinet, a plurality of vents have been run through to the upper surface of mounting panel, the upper surface array of mounting panel distributes and has first installation pole, the array distributes on the first installation pole has a plurality of second installation pole, a plurality of mounting grooves have been cut apart to equidistant with the second installation pole to first installation pole, and is a plurality of all install the fan in the mounting groove, a plurality of fan and a plurality of vents one-to-one, install the installation component that is used for installing the condenser on first installation pole and the second installation pole jointly.
Through adopting above-mentioned technical scheme, when the staff need use the installation cabinet, the staff need install the condenser to the installation cabinet in through the installation component, at this in-process, the probability that the too high condenser of temperature took place to damage in the installation cabinet can be guaranteed to the thermovent. In addition, the mounting assembly reduces the difficulty of a worker in mounting the capacitor, thereby reducing the work difficulty of the worker.
Further, the installation component includes a plurality of equidistant fixed plates that distribute at first installation pole upper surface, fixed first baffle and the fixed second baffle that sets up at the fixed plate upper surface, the mounting groove has been seted up to the upper surface of fixed plate, the lateral wall of first baffle and second baffle and the lateral wall parallel and level of fixed plate, install the fixing device who is used for fixed condenser on the first baffle.
Through adopting above-mentioned technical scheme, when the staff need install the condenser, the staff need install the condenser to the mounting groove in. Subsequently, the staff starts fixing device to make fixing device fix the condenser, and then has reduced the probability that the condenser takes place to rock in the course of the work to the probability that the condenser takes place to drop has been reduced, and then the stability of device has been improved.
Further, the spout has been seted up on the lateral wall of first baffle, the baffle has been seted up on the inner wall of spout and has been blocked the groove, and the symmetry runs through on the inner wall of spacing groove and has been seted up two limit grooves of mutual symmetry, fixing device includes two stop bars that slide respectively set up in two limit grooves, the cover is established stop plate on two stop bar lateral walls, the fixed butt plate that sets up on the stop bar lateral wall and the slide that slides and set up in the spout, butt plate and stop plate are located the both ends of first baffle respectively, stop plate and baffle groove mutually support.
Through adopting above-mentioned technical scheme, when the staff need fix the condenser, the staff need to be to the direction slip gag lever post that is close to the second baffle, and then makes stop plate and butt plate follow the gag lever post and remove to the direction that is close to the second baffle under the effect of gag lever post to make butt plate butt tightly the lateral wall of condenser, and then make butt plate butt tightly the condenser, thereby fix the condenser. At this time, the blocking plate slides into the blocking groove. Subsequently, the staff needs to slide the slide downwards, and then makes the slide to the spout in, and then makes the slide block the barrier plate to reduce the gag lever post and take place gliding probability, and then improved the stability of device.
Further, a limit spring is fixedly arranged on the side wall, far away from the blocking plate, of the abutting plate, and a limit plate is fixedly arranged at the other end of the limit spring.
Through adopting above-mentioned technical scheme, when the butt plate removed, spacing spring and limiting plate moved with the butt plate under the effect of butt plate, at this in-process, the limiting plate supports tightly the condenser under the effect of spacing spring, and then has further reduced the probability that the condenser took place to drop to the stability of device has been improved.
Furthermore, two through grooves are formed in the side wall of the sliding plate in a penetrating mode, and the limiting rod is matched with the through grooves.
Through adopting above-mentioned technical scheme, lead to the groove and reduced the staff and slide the slide gag lever post downwards and caused the probability that blocks to the slide to the stability of device has been improved.
Further, the one end that the gag lever post was kept away from the butt board is fixed to be provided with and holds the board.
Through adopting above-mentioned technical scheme, handheld board has reduced the probability of gag lever post and first baffle mutual separation to the stability of device has been improved. In addition, the handheld board has still reduced the degree of difficulty of staff's slip gag lever post.
Further, the side wall of the limiting plate far away from the abutting plate is fixedly provided with a rubber gasket.
Through adopting above-mentioned technical scheme, rubber has good elasticity, and the rubber gasket that adopts the rubber material to make has improved the biggest stiction upper limit between limiting plate and the condenser, and then has reduced the probability that the condenser takes place to drop to the stability of device has been improved.
Further, a temperature sensor is installed in the placement groove, and an intelligent screen is installed on the cabinet door.
Through adopting above-mentioned technical scheme, temperature sensor monitors the real-time temperature of condenser in the course of the work, shows through the intelligent screen, and when the temperature of condenser was too high, the intelligent screen control fan began to rotate, and then cools down the condenser to the probability that the condenser took place to damage has been reduced.
In summary, the utility model has the following beneficial effects:
1. According to the application, when a worker needs to use the installation cabinet, the worker needs to install the capacitor into the installation cabinet through the installation component, and in the process, the radiating port can ensure the probability of damage of the capacitor with overhigh temperature in the installation cabinet. In addition, the mounting assembly reduces the difficulty of a worker in mounting the capacitor, so that the working difficulty of the worker is reduced;
2. In the application, when the staff needs to install the capacitor, the staff needs to install the capacitor into the installation groove. Then, a worker starts the fixing device to fix the capacitor, so that the probability of shaking the capacitor in the working process is reduced, the probability of falling off of the capacitor is reduced, and the stability of the device is improved;
3. In the application, when a worker needs to fix the capacitor, the worker needs to slide the limiting rod towards the direction close to the second baffle plate, so that the blocking plate and the abutting plate move towards the direction close to the second baffle plate along with the limiting rod under the action of the limiting rod, and the abutting plate abuts against the side wall of the capacitor, and the abutting plate abuts against the capacitor, so that the capacitor is fixed. At this time, the blocking plate slides into the blocking groove. Subsequently, the staff needs to slide the slide downwards, and then makes the slide to the spout in, and then makes the slide block the barrier plate to reduce the gag lever post and take place gliding probability, and then improved the stability of device.
Drawings
FIG. 1 is a schematic overall structure of an embodiment of the present utility model;
FIG. 2 is a schematic view of the internal structure of the installation cabinet according to the embodiment of the utility model;
FIG. 3 is a schematic view of a heat dissipating device in an installation cabinet according to an embodiment of the present utility model;
FIG. 4 is a schematic view of the structure of a mounting assembly in an embodiment of the utility model;
fig. 5 is a schematic structural view of a fixing device according to an embodiment of the present utility model.
In the figure: 1. installing a cabinet; 11. a cabinet door; 12. a heat radiation port; 13. a mounting plate; 14. a vent; 15. a first mounting bar; 16. a second mounting bar; 17. a mounting groove; 18. a fan; 2. a chute; 21. a blocking groove; 22. a limit groove; 23. a through groove; 3. a mounting assembly; 31. a fixing plate; 32. a first baffle; 33. a second baffle; 34. a placement groove; 4. a fixing device; 41. a limit rod; 42. a blocking plate; 43. an abutting plate; 44. a slide plate; 5. a limit spring; 51. a limiting plate; 6. a hand-held plate; 7. a rubber gasket; 8. a temperature sensor; 81. an intelligent screen.
Detailed Description
The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present application; it is apparent that the described embodiments are only some embodiments of the present application, not all embodiments, and that all other embodiments obtained by persons of ordinary skill in the art without making creative efforts based on the embodiments in the present application are within the protection scope of the present application.
As shown in fig. 1-5, the embodiment of the application discloses a special intelligent cabinet body structure for a capacitor, which comprises an installation cabinet 1, a cabinet door 11, a heat dissipation port 12, an installation plate 13, a ventilation opening 14, a first installation rod 15, a second installation rod 16, a fan 18, an installation assembly 3, a fixing device 4, a limit spring 5, a limit plate 51 and a handheld plate 6. The installation cabinet 1 is of a cuboid structure with a hollow inside, and two opposite side walls of the installation cabinet 1 are provided with heat dissipation openings 12. The cabinet door 11 is of a rectangular plate-shaped structure, and the cabinet door 11 is rotatably arranged on the installation cabinet 1. The mounting plate 13 is of a rectangular plate-shaped structure, the mounting plate 13 is fixedly arranged on two opposite inner walls of the mounting cabinet 1, and a plurality of ventilation openings 14 are formed in the upper surface of the mounting plate 13 in a penetrating manner. The first mounting rod 15 has a rectangular rod-shaped structure, and the first mounting rod 15 is provided with a plurality of mounting plates 13 distributed in an array on the upper surface thereof. The second mounting rod 16 is of a rectangular rod-shaped structure, the second mounting rod 16 is provided with a plurality of mounting grooves 17 which are distributed on the first mounting rod 15 in an array mode, and the first mounting rod 15 and the second mounting rod 16 are equally spaced apart. The fans 18 are provided in plural and are respectively installed in the plural installation grooves 17, and the plural fans 18 are in one-to-one correspondence with the plural ventilation openings 14.
When the staff needs to use the installation cabinet 1, the staff needs to install the capacitor into the installation cabinet 1 through the installation component 3, and in the process, the probability that the capacitor with the too high temperature in the installation cabinet 1 is damaged can be guaranteed through the cooling port 12. In addition, the mounting assembly 3 reduces the difficulty of the workers in mounting the capacitor, thereby reducing the work difficulty of the workers.
The mounting assembly 3 is mounted on the first and second mounting bars 15 and 16 for mounting the capacitor, and the mounting assembly 3 includes a fixing plate 31, a first barrier 32, and a second barrier 33. The fixing plate 31 has a rectangular plate-like structure, the fixing plate 31 is provided with a plurality of mounting grooves 34 which are distributed on the upper surface of the first mounting rod 15 at equal intervals, and the upper surface of the fixing plate 31 is provided with the mounting grooves. The first baffle 32 has a rectangular plate-like structure, and the first baffle 32 is fixedly disposed on the surface of the fixing plate 31. The second baffle 33 has a rectangular plate structure, the second baffle 33 is fixedly arranged on the surface of the fixed plate 31, and the side walls of the first baffle 32 and the second baffle 33 are flush with the side wall of the fixed plate 31.
When a worker needs to install the capacitor, the worker needs to install the capacitor into the seating groove 34. Subsequently, the staff starts the fixing device 4 to enable the fixing device 4 to fix the capacitor, and then the probability of shaking the capacitor in the working process is reduced, so that the probability of falling off of the capacitor is reduced, and the stability of the device is improved.
The side wall of the first baffle 32 is provided with a chute 2, the inner wall of the chute 2 is provided with a blocking groove 21, and the inner wall of the chute 2 is symmetrically provided with two mutually symmetrical limit grooves 22 in a penetrating way. The fixing device 4 is mounted on the first barrier 32 for fixing the capacitor, and the fixing device 4 includes a stopper rod 41, a blocking plate 42, an abutting plate 43, and a sliding plate 44. The limiting rod 41 is of a round rod-shaped structure, the axis of the limiting rod 41 is horizontal, and the limiting rod 41 is provided with two limiting grooves 22 and is respectively arranged in a sliding manner. The blocking plate 42 is in a rectangular plate structure, the blocking plate 42 is sleeved on the side walls of the two limiting rods 41, and the blocking plate 42 is matched with the blocking groove 21. The abutting plate 43 has a rectangular plate-like structure, the abutting plate 43 is fixedly arranged on the side wall of the limiting rod 41, and the abutting plate 43 and the blocking plate 42 are respectively positioned at two ends of the first baffle 32. The sliding plate 44 has a rectangular plate-like structure, and the sliding plate 44 is slidably disposed in the chute 2.
When the worker needs to fix the capacitor, the worker needs to slide the limit rod 41 in the direction close to the second baffle 33, and then the blocking plate 42 and the abutting plate 43 move along the limit rod 41 in the direction close to the second baffle 33 under the action of the limit rod 41, so that the abutting plate 43 abuts against the side wall of the capacitor, and then the abutting plate 43 abuts against the capacitor, and the capacitor is fixed. At this time, the blocking plate 42 slides into the blocking groove 21. Subsequently, the worker needs to slide the sliding plate 44 downwards, so that the sliding plate 44 slides into the sliding groove 2, and the sliding plate 44 blocks the blocking plate 42, so that the sliding probability of the limiting rod 41 is reduced, and the stability of the device is improved.
One end of the limiting spring 5 is fixedly arranged on the side wall, far away from the blocking plate 42, of the abutting plate 43, the limiting plate 51 is of a rectangular plate-shaped structure, and the limiting plate 51 is fixedly arranged at the other end of the limiting spring 5.
When the abutting plate 43 moves, the limiting spring 5 and the limiting plate 51 move along with the abutting plate 43 under the action of the abutting plate 43, and in the process, the limiting plate 51 abuts against the capacitor under the action of the limiting spring 5, so that the falling probability of the capacitor is further reduced, and the stability of the device is improved.
In order to improve the stability of the device, two through grooves 23 are formed in the side wall of the sliding plate 44 in a penetrating manner, and the limiting rod 41 is matched with the through grooves 23. The through groove 23 reduces the probability of blocking the slide plate 44 by a worker sliding the slide plate 44 downward and the limit bar 41, thereby improving the stability of the device.
The handheld plate 6 is of a rectangular plate-shaped structure, and the handheld plate 6 is fixedly arranged at one end of the limiting rod 41 away from the abutting plate 43.
The hand-held plate 6 reduces the probability of the stop lever 41 and the first shutter 32 being separated from each other, thereby improving the stability of the device. In addition, the hand-held plate 6 also reduces the difficulty of the staff sliding the limit lever 41.
In order to improve the stability of the device, a rubber gasket 7 is fixedly arranged on the side wall of the limiting plate 51 away from the abutting plate 43. Rubber has good elasticity, and the rubber gasket 7 made of rubber material improves the maximum upper limit of static friction force between the limiting plate 51 and the capacitor, so that the probability of falling off of the capacitor is reduced, and the stability of the device is improved.
In order to reduce the probability of damage to the capacitor, the temperature sensor 8 is installed in the installation groove 34, and the intelligent screen 81 is installed on the cabinet door 11. In the working process, the temperature sensor 8 monitors the real-time temperature of the capacitor, the temperature is displayed through the intelligent screen 81, when the temperature of the capacitor is too high, the intelligent screen 81 controls the fan 18 to start rotating, and then the capacitor is cooled, so that the probability of damage to the capacitor is reduced.
The application principle of the intelligent cabinet structure special for the capacitor in the embodiment is as follows: when a worker needs to use the installation cabinet 1, the worker needs to install the capacitor into the installation cabinet 1 through the installation assembly 3. At this time, the worker needs to install the capacitor into the seating groove 34. Then, the worker slides the stop lever 41 in a direction approaching the second baffle 33, so that the blocking plate 42 and the abutting plate 43 move along the stop lever 41 in a direction approaching the second baffle 33 under the action of the stop lever 41, and the abutting plate 43 abuts against the side wall of the capacitor, and the abutting plate 43 abuts against the capacitor, so that the capacitor is fixed. At this time, the blocking plate 42 slides into the blocking groove 21. Subsequently, the worker needs to slide the sliding plate 44 downwards, so that the sliding plate 44 slides into the sliding groove 2, and the sliding plate 44 blocks the blocking plate 42, so that the sliding probability of the limiting rod 41 is reduced, and the stability of the device is improved.
The above description is only a preferred embodiment of the present utility model, and the protection scope of the present utility model is not limited to the above examples, and all technical solutions belonging to the concept of the present utility model belong to the protection scope of the present utility model. It should be noted that modifications and adaptations to the present utility model may occur to one skilled in the art without departing from the principles of the present utility model and are intended to be within the scope of the present utility model.