A new energy storage transformer inductance adjusting device
By introducing an adjustment and cleaning mechanism into the transformer inductance adjustment device, and utilizing the cooperation of a motor-driven screw and a sponge block, the automatic cleaning of dust on the surface of the inductor coil is achieved, solving the problem of reduced insulation performance caused by dust adhesion on the coil surface, and improving the stability and electrical performance of the equipment.
Patent Information
- Application Number
- CN202411259310.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-09
- Publication Date
- 2025-11-28
- Estimated Expiration
- 2044-09-09
AI Technical Summary
In the operation of existing transformer inductance adjustment devices, dust easily accumulates on the coil surface, leading to a decrease in insulation performance, an increase in the risk of electrical faults, and difficulty in effective cleaning.
A transformer inductance adjustment device for new energy storage was designed. By setting up an adjustment mechanism and a cleaning mechanism, a motor-driven screw drives a contact block and a sponge block to move on the surface of the inductor coil to achieve automatic dust removal, and an electrical contact cleaner is used for wiping.
Effective cleaning of dust from the surface of the inductor coil improves insulation performance, reduces the risk of electrical faults, and enhances the operational stability of the equipment.
Smart Images

Figure CN119008198B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of transformer inductance regulation, and particularly relates to a new energy storage transformer inductance regulation device. BACKGROUND
[0002] In a transformer, an inductor is a magical electromagnetic component, and its core function is to convert and store electrical energy into magnetic energy. This energy conversion process is achieved through the coil inside the inductor. When current flows through the coil, it generates a magnetic field around it. This characteristic of the inductor makes it play a crucial role in circuit design. The key role of the inductor here is to hinder the change of current, i.e., the so-called inductance effect. When the circuit of the transformer is turned on, the magnetic field inside the inductor begins to establish. At this time, the inductor will generate an electromotive force opposite to the direction of current change, trying to hinder the increase of current. Conversely, if the current in the inductor has been established and the circuit is suddenly turned off, the inductor will use its stored magnetic energy to generate an electromotive force through induction. The direction of this electromotive force will try to maintain the continuous flow of current, even if the original power source has been turned off.
[0003] The existing Chinese patent with the publication number CN118197776A includes a box body, support plates fixed at both ends inside the box body, a magnetic core arranged between the two support plates, and an inductor coil wound around the magnetic core. A guide rod is installed between the two support plates, and a screw rod is installed between the two support plates. The guide rod and the screw rod are arranged in front and back, and a heat dissipation space is formed between the guide rod and the screw rod. An adjusting seat is installed on the screw rod, and the other end of the adjusting seat slides on the guide rod. The top end of the adjusting seat contacts the inductor coil. When the screw rod rotates forward and backward, it drives the adjusting seat to move back and forth along the guide rod in the length direction of the inductor coil, so that the contact position of the adjusting seat on the inductor coil changes back and forth, thereby adjusting the size of the inductor. The bottom of the adjusting seat is hinged with a connecting rod structure, and the other end of the connecting rod structure is hinged to one of the support plates. The connecting rod structure is located below the heat dissipation space, and a heat dissipation fan is arranged on part of the connecting rod of the connecting rod structure.
[0004] In use, when the adjusting seat is adjusted to the left, fewer inductance coils are involved in current delivery, so less current heat is generated, the linkage structure is in a folded state, and the cooling fan only needs to move at a low speed to cool the left part of the inductance coil; when the adjusting seat is adjusted to the right, more inductance coils are involved in current delivery, so more current heat is generated, the linkage structure is gradually stretched from the folded state, and the cooling fan reduces the inclination angle to cool more coil parts involved in current delivery; however, in actual use, since current flows through the coil and an electromagnetic field is generated around the coil, dust particles in the air are attracted to the coil surface, which may cause the insulation performance of the coil to decrease and increase the risk of electrical failure, so it is difficult to clean the dust particles attached to the coil surface.
[0005] Therefore, the application provides a new energy storage transformer inductance adjusting device. SUMMARY
[0006] The application provides a new energy storage transformer inductance adjusting device, which has the advantage of cleaning dust particles attached to the coil surface and solves the problems in the background art.
[0007] To achieve the above object, the application provides the following technical scheme: a new energy storage transformer inductance adjusting device, comprising a box body, fixed plates are fixedly connected to both ends of the inner wall of the box body, magnetic cores that concentrate the surrounding magnetic field are fixedly connected to the opposite surfaces of the two fixed plates, inductance coils that convert electric energy are wound on the outer profiles of the magnetic cores, a first connecting end connected to a transformer is fixedly connected to one end of the inductance coil, a guide rod that moves horizontally and reciprocally is through-penetrated and movably connected to the fixed plate away from the first connecting end, the guide rod is through-penetrated to the outer shell of the box body and fixedly connected to a second connecting end connected to the transformer, a contact block that conducts current away from the first connecting end of the inductance coil is fixedly connected to the end of the guide rod away from the second connecting end, and the arc surface of the contact block is in close contact with and movably connected to the surface of the inductance coil, and an adjusting mechanism that adjusts the inductance and a cleaning mechanism that cleans dust on the surface of the inductance coil are arranged on the fixed plate.
[0008] Preferably, the adjusting mechanism comprises first screw rods that are through-penetrated and fixed-axle rotatably connected to the opposite surfaces of one side of the two fixed plates and driven to rotate by a power mechanism, the outer profiles of the first screw rods are screwed with sleeve blocks that move horizontally and reciprocally, the end of the sleeve block away from the first screw rod is fixedly connected with a U-shaped seat, the two ends of the U-shaped seat are fixedly connected with arc-shaped housings, and one side of the contact block is fixedly connected with the adjacent arc-shaped housing, and the power mechanism is an electric motor after being electrified.
[0009] Preferably, the cleaning mechanism comprises two arc-shaped housing inner walls movably connected with a circular ring, the inner wall of the circular ring is fixedly connected with a sponge block for wiping and cleaning the surface dust of the inductance coil, and the sponge block is attached to the surface of the inductance coil, the outer contour of the circular ring is fixedly connected with a gear ring, and the U-shaped seat is provided with an auxiliary mechanism for driving the circular ring and the sponge block to rotate to comprehensively clean the surface of the inductance coil.
[0010] Preferably, the auxiliary mechanism comprises a threaded sleeve penetratingly and rotatably connected to the U-shaped seat, and the threaded sleeve outer contour of the U-shaped seat interior is fixedly connected with a transmission gear meshing with the gear ring.
[0011] Preferably, the opposite surfaces of the two fixed plates corresponding to the threaded sleeve are fixedly connected with second screws for driving the threaded sleeve to rotate on the U-shaped seat, and the second screws penetrate into the inner wall of the threaded sleeve and are screwed.
[0012] Preferably, the end of the sleeve block away from the U-shaped seat is fixedly connected with a liquid storage tank for storing maintenance liquid, the liquid storage tank is fixedly connected with a cylindrical shell, the end of the cylindrical shell away from the second screw is penetrated and fixedly connected with a liquid inlet pipe, and the end of the liquid inlet pipe away from the cylindrical shell penetrates into the inner wall of the liquid storage tank and is fixedly connected, the outer contour of the end of the cylindrical shell close to the liquid inlet pipe is penetrated and fixedly connected with a liquid outlet pipe, the arc-shaped shell close to the liquid outlet pipe side is fixedly connected with a supporting block supporting the liquid outlet pipe, and the supporting block is penetrated and fixedly connected with the liquid outlet pipe, and the threaded sleeve is provided with a liquid pumping mechanism for pumping and discharging the maintenance liquid in the liquid storage tank.
[0013] Preferably, the liquid pumping mechanism comprises an oval block fixedly connected to the outer contour of the end of the threaded sleeve close to the cylindrical shell, an oval slot is formed in the oval block, a cylindrical rod is movably connected to the inner wall of the oval slot close to the cylindrical shell, and the end of the cylindrical rod away from the oval block penetrates into the inner wall of the cylindrical shell and is fixedly connected with a piston plate for pumping and discharging the maintenance liquid in the liquid storage tank, and the piston plate is attached to the inner wall of the cylindrical shell and movably connected.
[0014] Preferably, the inner wall of the end of the liquid inlet pipe close to the cylindrical shell is fixedly connected with a one-way liquid inlet valve for quantitatively pumping the maintenance liquid in the liquid storage tank into the cylindrical shell, and the inner wall of the end of the liquid outlet pipe close to the cylindrical shell is fixedly connected with a one-way liquid outlet valve for quantitatively discharging the maintenance liquid in the cylindrical shell.
[0015] Compared with the prior art, the beneficial effects of the present application are as follows:
[0016] One, through the first screw rod arranged on the fixed plate, and the first screw rod is driven to rotate by the motor, the motor can drive the first screw rod to rotate reciprocatingly on the fixed plate, through the sleeve block arranged on the first screw rod, and the U-shaped seat arranged on the sleeve block, the U-shaped seat is fixed and supported on the sleeve block, and the arc-shaped shell arranged on the U-shaped seat is fixed and supported on the arc-shaped shell, and the sleeve block is sleeved on the outer contour of the first screw rod and is screwed, and the sleeve block can drive the contact block to move horizontally reciprocatingly on the inductor coil through the U-shaped seat and the arc-shaped shell, when the sleeve block drives the contact block to move horizontally away from one end of the first connecting end, the number of turns of the inductor coil is increased at this time, and the magnetic flux inside the coil is increased, so that the inductance value is increased, when the sleeve block drives the contact block to move horizontally to the end close to the first connecting end, the number of turns of the inductor coil is reduced, and the magnetic flux inside the coil is reduced, so that the inductance value is reduced, and the inductance value is proportional to the square of the number of turns of the coil.
[0017] Two, reciprocatingly move the U-shaped seat, so that the circular ring can drive the sponge block to reciprocatingly wipe the dust on the surface of the inductor coil along with the arc-shaped shell, and the threaded sleeve drives the threaded sleeve to rotate reciprocatingly on the second screw rod, and the transmission gear and the teeth on the tooth ring are engaged with each other, so that the tooth ring drives the circular ring to rotate on the arc-shaped shell under the action of the transmission gear, and the sponge block reciprocatingly rotates and cleans the dust on the surface of the inductor coil along with the circular ring, and the rotating direction of the magnetic core is the same as the winding direction of the inductor coil, which further improves the cleaning effect of the dust on the surface of the inductor coil.
[0018] Three, reciprocatingly rotate the threaded sleeve, and the threaded sleeve drives the oval block to rotate reciprocatingly at the same time, which can drive the piston plate to move axially reciprocatingly on the inner wall of the cylindrical shell under the action of the cylindrical rod in the oval groove, when the cylindrical rod pulls the piston plate to move away from the liquid inlet pipe, the internal pressure of the cylindrical shell close to the liquid inlet pipe is negative pressure, and the one-way liquid inlet valve and the one-way liquid outlet valve arranged on the liquid inlet pipe and the liquid outlet pipe, at this time, the one-way liquid inlet valve is in the open state, and the one-way liquid outlet valve is in the closed state, so that the liquid inlet pipe can quantitatively extract the electric contact cleaner in the liquid storage tank to the inner wall of the cylindrical shell, when the cylindrical rod pushes the piston plate to move close to the liquid inlet pipe, and the internal pressure of the cylindrical shell close to the liquid inlet pipe is positive pressure, at this time, the one-way liquid inlet valve is in the closed state, and the one-way liquid outlet valve is in the open state, so that the liquid outlet pipe can discharge the electric contact cleaner in the cylindrical shell to the sponge block, so that the sponge block can absorb the electric contact cleaner and wipe the surface of the inductor coil, improve the cleaning effect of the dust on the surface of the inductor coil, and enhance the electrical performance of the inductor coil.
[0019] The cooperation of the above structure solves the problem that, in the actual use process of the existing device, due to the current flowing through the coil and the electromagnetic field generated around, attraction force is generated with the charged dust particles in the air, thereby causing the dust to adhere to the surface of the coil, which easily leads to the decrease of the insulation performance of the coil and increases the risk of electrical failure, so that it is difficult to clean the dust particles adhered to the surface of the coil. BRIEF DESCRIPTION OF DRAWINGS
[0020] Figure 1 It is a schematic diagram of the three-dimensional structure of the fixed plate of the application;
[0021] Figure 2 It is a schematic diagram of the three-dimensional structure of the fixed plate of the application;
[0022] Figure 3 It is a schematic diagram of the three-dimensional structure of the fixed plate of the application;
[0023] Figure 4 It is a schematic diagram of the three-dimensional structure of the fixed plate of the application;
[0024] Figure 5 It is a schematic diagram of the three-dimensional structure of the fixed plate of the application;
[0025] Figure 6 It is a schematic diagram of the three-dimensional structure of the fixed plate of the application;
[0026] Figure 7 It is a schematic diagram of the three-dimensional structure of the fixed plate of the application; Figure 3
[0027] It is a schematic diagram of the three-dimensional structure of the fixed plate of the application; Figure 8 Figure 6 It is a schematic diagram of the three-dimensional structure of the fixed plate of the application;
[0028] Figure 9 It is a schematic diagram of the three-dimensional structure of the fixed plate of the application.
[0029] In the figure: 1, box body; 2, fixed plate; 3, magnetic core; 4, inductance coil; 5, first connecting end; 6, guide rod; 7, second connecting end; 8, contact block; 9, first screw rod; 10, sleeve block; 11, U-shaped seat; 12, arc-shaped shell; 13, circular ring; 14, sponge block; 15, tooth ring; 16, threaded sleeve; 17, transmission gear; 18, second screw rod; 19, liquid storage tank; 20, cylindrical shell; 21, liquid inlet pipe; 211, one-way liquid inlet valve; 22, liquid outlet pipe; 221, one-way liquid outlet valve; 23, support block; 24, oval block; 241, oval slot; 25, cylindrical rod; 26, piston plate. DETAILED DESCRIPTION
[0030] With reference to the accompanying drawings, the technical solutions in the embodiments of the present application will be described clearly and completely. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all the other embodiments obtained by those skilled in the art without creative work fall within the scope of the present application.
[0031] Embodiment one:
[0032] Please refer to Figures 1 to 9 The present application provides a technical solution: a new energy storage transformer inductance adjusting device, including box 1, the two ends of the inner wall of the box 1 symmetry position are all fixedly connected with fixed plate 2, the opposite surface of two fixed plates 2 is fixedly connected with the magnetic core 3 which concentrates the surrounding magnetic field, the outer contour of the magnetic core 3 is wound with the inductance coil 4 which converts electric energy, one end of the inductance coil 4 is fixedly connected with the first connecting end 5 connected with the transformer, the fixed plate 2 away from the first connecting end 5 end is penetrated and movably connected with the guide rod 6 which moves horizontally reciprocating, and the guide rod 6 end penetrates the box 1 shell and is fixedly connected with the second connecting end 7 connected with the transformer, the end of the guide rod 6 away from the second connecting end 7 is fixedly connected with the contact block 8 which conducts the current of the inductance coil 4 away from the first connecting end 5, and the contact block 8 is movably connected with the surface of the inductance coil 4, the fixed plate 2 is provided with adjusting mechanism for adjusting inductance and cleaning mechanism for cleaning the surface of the inductance coil 4.
[0033] The adjusting mechanism includes two fixed plates 2 on the opposite side of the relative surface are all penetrated and fixedly connected with the first screw rod 9 which is driven to rotate by the power mechanism, the outer contour of the first screw rod 9 is screwed with the sleeve block 10 which moves horizontally reciprocating, the end of the sleeve block 10 away from the first screw rod 9 is fixedly connected with the U-shaped seat 11, the two ends of the U-shaped seat 11 symmetry position are all fixedly connected with the arc-shaped shell 12, and one side of the contact block 8 is fixedly connected with the adjacent arc-shaped shell 12, and the above-mentioned power mechanism is the motor after being electrified.
[0034] In use, the fixed plate 2 is fixedly connected to the two end symmetrical positions inside the box body 1, the magnetic core 3 is fixedly supported on the fixed plate 2 through the magnetic core 3 arranged on the fixed plate 2, the inductor coil 4 is rolled and wound on the outer contour of the magnetic core 3 through the magnetic core 3 arranged on the fixed plate 2, the guide rod 6 is arranged on the fixed plate 2 and penetrates through the adjacent side box body 1, so that the guide rod 6 can be horizontally reciprocatingly connected on the fixed plate 2 and the box body 1, the contact block 8 is arranged on the guide rod 6, and the arc surface of the contact block 8 is in contact with the surface of the inductor coil 4, so as to facilitate subsequent adjustment of the inductance value, the first connecting end 5 is arranged at the current input end of the inductor coil 4, and the second connecting end 7 is arranged at the current output end of the inductor coil 4 and connected to the end of the guide rod 6 away from the contact block 8, the first connecting end 5 and the second connecting end 7 are connected to the voltage transformation system, and the adjusting mechanism and the cleaning mechanism are arranged on the fixed plate 2, so that the adjusting mechanism drives the contact block 8 to horizontally reciprocate on the surface of the inductor coil 4, because current flows in the coil, the electromagnetic field generated will have an attractive force to the charged dust particles in the air, so that the dust is attached to the surface of the coil, which easily affects the electromagnetic field distribution of the coil, causes electromagnetic interference, and affects the normal work of the equipment, so that the cleaning mechanism can clean the dust attached to the surface of the inductor coil 4.
[0035] The first screw rod 9 is arranged on the fixed plate 2 and driven to rotate by the motor, so that the motor drives the first screw rod 9 to rotate reciprocatingly on the fixed plate 2, the sleeve block 10 is arranged on the first screw rod 9, the U-shaped seat 11 is arranged on the sleeve block 10 and fixedly supported on the sleeve block 10, the arc-shaped shell 12 is arranged on the U-shaped seat 11, the contact block 8 is fixedly supported on the arc-shaped shell 12, and the sleeve block 10 is sleeved on the outer contour of the first screw rod 9 and screwed, so that the sleeve block 10 can drive the contact block 8 to horizontally reciprocate on the inductor coil 4 through the U-shaped seat 11 and the arc-shaped shell 12 when the first screw rod 9 rotates reciprocatingly, and the number of turns of the inductor coil 4 is increased or decreased to change the inductance value, and the inductance value is proportional to the square of the number of turns of the coil.
[0036] When the sleeve block 10 drives the contact block 8 to move horizontally away from the end away from the first connecting end 5, the number of turns of the inductor coil 4 is increased, the magnetic flux inside the coil is increased, and the inductance value is increased accordingly, when the sleeve block 10 drives the contact block 8 to move horizontally towards the end close to the first connecting end 5, the number of turns of the inductor coil 4 is reduced, the magnetic flux inside the coil is reduced, and the inductance value is reduced accordingly.
[0037] Embodiment two:
[0038] On the basis of embodiment one, further more is:
[0039] The cleaning mechanism comprises two arc-shaped housings 12, the inner wall of the arc-shaped housing 12 is movably connected with a circular ring 13, the inner wall of the circular ring 13 is fixedly connected with a sponge block 14 for wiping and cleaning the surface of the inductance coil 4, the sponge block 14 is attached to the surface of the inductance coil 4, the outer contour of the circular ring 13 is fixedly connected with a tooth ring 15, and the U-shaped seat 11 is provided with an auxiliary mechanism for driving the circular ring 13 and the sponge block 14 to rotate and comprehensively clean the surface of the inductance coil 4.
[0040] In use, the circular ring 13 is arranged on the arc-shaped housing 12 and movably connected to the inner wall of the arc-shaped housing 12, the sponge block 14 is arranged on the arc-shaped housing 12 and attached to the surface of the inductance coil 4, the U-shaped seat 11 and the arc-shaped housing 12 are driven by the sleeve block 10 to move horizontally and reciprocally, so that the circular ring 13 can drive the sponge block 14 to reciprocally wipe the dust on the surface of the inductance coil 4, thereby improving the stability of the transformer operation, the arc-shaped housing 12 and the circular ring 13 are both made of insulating material, the tooth ring 15 is arranged on the circular ring 13, and the auxiliary mechanism is arranged on the U-shaped seat 11, so that the auxiliary mechanism can drive the circular ring 13 to rotate on the inner wall of the arc-shaped housing 12.
[0041] Example three:
[0042] Based on example two, further improvements are made:
[0043] The auxiliary mechanism comprises a threaded sleeve 16 movably connected to the U-shaped seat 11, and a transmission gear 17 fixedly connected to the outer contour of the threaded sleeve 16 in the U-shaped seat 11 and engaged with the tooth ring 15.
[0044] The second screw rod 18 is fixedly connected to the opposite surface of the corresponding position of the two fixed plates 2 and the threaded sleeve 16, and drives the threaded sleeve 16 to rotate on the U-shaped seat 11, and the second screw rod 18 penetrates the inner wall of the threaded sleeve 16 and is screwed.
[0045] In use, as Figure 2 、 Figure 3 、 Figure 5 、 Figure 7As shown, the threaded sleeve 16 is connected to the U-shaped seat 11 through the transmission gear 17 arranged on the threaded sleeve 16, and the second screw rod 18 arranged on the fixed plate 2 penetrates the inner wall of the threaded sleeve 16 and is screwed, so that the threaded sleeve 16 drives the transmission gear 17 to rotate on the U-shaped seat 11, and the threaded sleeve 16 drives the threaded sleeve 16 to rotate reciprocatingly along the second screw rod 18, and the transmission gear 17 is engaged with the teeth of the gear ring 15, so that the gear ring 15 drives the circular ring 13 to rotate on the arc-shaped shell 12 under the action of the transmission gear 17, and the sponge block 14 rotates reciprocatingly on the surface of the inductor coil 4 along with the circular ring 13, and the rotation direction of the magnetic core 3 is the same as the winding direction of the inductor coil 4, thereby further improving the cleaning effect of the dust on the surface of the inductor coil 4.
[0046] Embodiment four:
[0047] On the basis of embodiment three, further more:
[0048] The end of the sleeve block 10 away from the U-shaped seat 11 is fixedly connected with a liquid storage tank 19 for storing curing liquid, the liquid storage tank 19 is fixedly connected with a cylindrical shell 20, the end of the cylindrical shell 20 away from the second screw rod 18 is penetrated and fixedly connected with a liquid inlet pipe 21, and the end of the liquid inlet pipe 21 away from the cylindrical shell 20 penetrates the inner wall of the liquid storage tank 19 and is fixedly connected, the outer contour of the end of the cylindrical shell 20 close to the liquid inlet pipe 21 is penetrated and fixedly connected with a liquid outlet pipe 22, the arc-shaped shell 12 close to the side of the liquid outlet pipe 22 is fixedly connected with a support block 23 for supporting the liquid outlet pipe 22, and the support block 23 is penetrated and fixedly connected by the liquid outlet pipe 22, and the threaded sleeve 16 is provided with a liquid pumping mechanism for pumping and discharging the curing liquid in the liquid storage tank 19.
[0049] In use, the above-mentioned curing liquid is an electrical contact cleaner, which is an existing product, so it will not be described in detail here. The liquid storage tank 19 is arranged on the sleeve block 10 and fixedly supported on the liquid storage tank 19, and the electrical contact cleaner is stored in the liquid storage tank 19. The cylindrical shell 20 is arranged on the liquid storage tank 19 and fixedly supported on the liquid storage tank 19. The liquid inlet pipe 21 is arranged on the cylindrical shell 20, so that the liquid inlet pipe 21 can communicate the cylindrical shell 20 and the liquid storage tank 19. The liquid outlet pipe 22 arranged on the cylindrical shell 20 penetrates the inner wall of the cylindrical shell 20 and communicates. The support block 23 arranged on the arc-shaped shell 12 can fix the outlet end of the liquid outlet pipe 22 on the corresponding position of the sponge block 14. The liquid pumping mechanism arranged on the threaded sleeve 16 can pump and discharge the electrical contact cleaner in the liquid storage tank 19.
[0050] Example Five:
[0051] On the basis of example four, further is:
[0052] The liquid pumping mechanism includes that the outer contour of the threaded sleeve 16 close to one end of the cylindrical shell 20 is fixedly connected with the oval block 24, the oval slot 241 is opened on the oval block 24, the cylindrical rod 25 is movably connected to the inner wall of the oval slot 241 close to one side of the cylindrical shell 20, and the end of the cylindrical rod 25 away from the oval block 24 penetrates to the inner wall of the cylindrical shell 20 and is fixedly connected with the piston plate 26 for pumping and discharging the curing liquid in the liquid storage tank 19, and the piston plate 26 is in close contact with the inner wall of the cylindrical shell 20 and is movably connected.
[0053] The inner wall of the liquid inlet pipe 21 close to one end of the cylindrical shell 20 is fixedly connected with the one-way liquid inlet valve 211 for pumping the curing liquid in the liquid storage tank 19 into the cylindrical shell 20, and the inner wall of the liquid outlet pipe 22 close to one end of the cylindrical shell 20 is fixedly connected with the one-way liquid outlet valve 221 for discharging the curing liquid in the cylindrical shell 20.
[0054] In use, the oval block 24 is fixedly connected to the threaded sleeve 16, and the threaded sleeve 16 is reciprocatingly rotated along the axis, so that the oval block 24 is synchronously rotated along the axis with the threaded sleeve 16, the oval slot 241 is opened on the oval block 24, the cylindrical rod 25 is arranged on the oval slot 241, the oval slot 241 supports and limits the cylindrical rod 25, the piston plate 26 is arranged on the cylindrical rod 25 and penetrates to the inner wall of the cylindrical shell 20 and is movably connected, the threaded sleeve 16 drives the oval block 24 to reciprocatingly rotate along the axis, and the cylindrical rod 25 pushes the piston plate 26 to axially reciprocatingly move along the inner wall of the cylindrical shell 20 under the action of the oval slot 241.
[0055] As Figure 4 , Figure 6 , Figure 8When the cylindrical rod 25 pulls the piston plate 26 to move away from the end of the liquid inlet pipe 21, the internal air pressure of the cylindrical shell 20 near the end of the liquid inlet pipe 21 is negative pressure, and the one-way liquid inlet valve 211 and the one-way liquid outlet valve 221 arranged on the liquid inlet pipe 21 and the liquid outlet pipe 22, at this time the one-way liquid inlet valve 211 is in the open state, and the one-way liquid outlet valve 221 is in the closed state, so that the liquid inlet pipe 21 can quantitatively extract the electric contact cleaner in the storage tank 19 to the inner wall of the cylindrical shell 20, when the cylindrical rod 25 pushes the piston plate 26 to move close to the end of the liquid inlet pipe 21, and the internal air pressure of the cylindrical shell 20 near the end of the liquid inlet pipe 21 is positive pressure, at this time the one-way liquid inlet valve 211 is in the closed state, and the one-way liquid outlet valve 221 is in the open state, and then the liquid outlet pipe 22 can discharge the electric contact cleaner in the cylindrical shell 20 to the sponge block 14, so that the sponge block 14 can absorb the electric contact cleaner and wipe the surface of the inductor coil 4, thereby improving the cleaning effect of the dust on the surface of the inductor coil 4 and enhancing the electrical performance of the inductor coil 4.
[0056] Further, the existing device can clean the dust particles attached to the surface of the coil during actual use, thereby enhancing the electrical performance of the inductor coil.
[0057] The standard parts used in the embodiment can be directly purchased from the market, and the non-standard structural parts according to the description and drawings can also be directly processed according to the existing technical knowledge without doubt, and the connection mode of each part adopts the mature conventional means in the existing technology, and the machinery, parts and equipment adopt the conventional models in the existing technology, so the specific description is not made here.
[0058] Although the embodiments of the present application have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present application, and the scope of the present application is defined by the appended claims and their equivalents.
Claims
1. A transformer inductance regulating device for new energy storage, characterized in that: The utility model provides a box (1), the both ends symmetry position of the inner wall of box (1) are all fixedly connected with fixed plate (2), the opposite surface of two fixed plate (2) is fixedly connected with the magnetic core (3) that will concentrate the surrounding magnetic field, the outer contour of magnetic core (3) is wound with the inductance coil (4) that carries out electric energy conversion, one end of inductance coil (4) is fixedly connected with the first connecting end (5) that is connected with transformer, the fixed plate (2) of the one end away from first connecting end (5) is through and movably connected with the guide rod (6) that carries out horizontal reciprocating movement, and the guide rod (6) one end passes through the shell of box (1) and is fixedly connected with the second connecting end (7) that is connected with transformer, the one end away from second connecting end (7) of guide rod (6) is fixedly connected with the contact block (8) that carries out the conduction of the current of the one end away from first connecting end (5) of inductance coil (4), and the contact block (8) upper arc surface is in contact with the surface of inductance coil (4) and movably connected, the fixed plate (2) is equipped with the adjusting mechanism that adjusts inductance and the cleaning mechanism that carries out the cleaning of inductance coil (4) surface dust, The adjusting mechanism includes the opposite surface of one side of two fixed plate (2) is all through and fixed axle rotationally connected with the first screw rod (9) that is rotated by power mechanism, the outer contour of first screw rod (9) is screwed with the sleeve block (10) that carries out horizontal reciprocating movement, the one end away from first screw rod (9) of sleeve block (10) is fixedly connected with U-shaped seat (11), the both ends symmetry position of U-shaped seat (11) are all fixedly connected with arc shell (12), and one side of contact block (8) is fixedly connected with the adjacent one side arc shell (12), and the above-mentioned power mechanism is the motor after electrification; The cleaning mechanism includes the inner wall of two arc shells (12) movably connected with circular ring (13), the inner wall of circular ring (13) is fixedly connected with sponge block (14) that carries out the wiping cleaning of inductance coil (4) surface dust, and sponge block (14) is in contact with the surface of inductance coil (4), the outer contour of circular ring (13) is fixedly connected with gear ring (15), the U-shaped seat (11) is equipped with the auxiliary mechanism that rotates circular ring (13) and sponge block (14) and carries out the overall cleaning of inductance coil (4) surface.
2. The new energy storage transformer inductance adjusting device according to claim 1, characterized in that: The auxiliary mechanism includes the screw sleeve (16) that is through and rotationally connected on U-shaped seat (11), the outer contour of screw sleeve (16) inside U-shaped seat (11) is fixedly connected with transmission gear (17) that is engaged transmission with gear ring (15).
3. The new energy storage transformer inductance adjusting device according to claim 2, characterized in that: The opposite surface of the corresponding position of two fixed plate (2) and screw sleeve (16) is fixedly connected with the second screw rod (18) that rotates the fixed axle of screw sleeve (16) on U-shaped seat (11), and the second screw rod (18) passes through to the inner wall of screw sleeve (16) and is screwed.
4. The new energy storage transformer inductance adjusting device according to claim 3, characterized in that: The sleeve block (10) is fixedly connected with a liquid storage tank (19) for storing maintenance liquid at one end away from the U-shaped seat (11), the liquid storage tank (19) is fixedly connected with a cylindrical shell (20), the cylindrical shell (20) is penetrated and fixedly connected with a liquid inlet pipe (21) at one end away from the second screw rod (18), and the liquid inlet pipe (21) is penetrated to the inner wall of the liquid storage tank (19) and fixedly connected at one end away from the cylindrical shell (20), the cylindrical shell (20) is penetrated and fixedly connected with a liquid outlet pipe (22) on the outer contour close to one end of the liquid inlet pipe (21), the arc-shaped shell (12) close to one side of the liquid outlet pipe (22) is fixedly connected with a support block (23) for supporting the liquid outlet pipe (22), and the support block (23) is penetrated and fixedly connected with the liquid outlet pipe (22), the threaded sleeve (16) is provided with a liquid pumping mechanism for pumping and discharging the maintenance liquid in the liquid storage tank (19).
5. The new energy storage transformer inductance adjusting device according to claim 4, characterized in that: The liquid pumping mechanism comprises an oval block (24) fixedly connected on the outer contour of the threaded sleeve (16) close to one end of the cylindrical shell (20), an oval slot (241) is formed in the oval block (24), a cylindrical rod (25) is movably connected in the oval slot (241) close to one side of the cylindrical shell (20), one end of the cylindrical rod (25) away from the oval block (24) is penetrated to the inner wall of the cylindrical shell (20) and fixedly connected with a piston plate (26) for pumping and discharging the maintenance liquid in the liquid storage tank (19), and the piston plate (26) is in close contact with and movably connected with the inner wall of the cylindrical shell (20).
6. The new energy storage transformer inductance adjusting device according to claim 5, characterized in that: The liquid inlet pipe (21) is fixedly connected with a one-way liquid inlet valve (211) for quantitatively pumping the maintenance liquid in the liquid storage tank (19) into the cylindrical shell (20) at the inner wall close to one end of the cylindrical shell (20), and the liquid outlet pipe (22) is fixedly connected with a one-way liquid outlet valve (221) for quantitatively discharging the maintenance liquid in the cylindrical shell (20) at the inner wall close to one end of the cylindrical shell (20).
Citation Information
Patent Citations
Transformer inductance adjusting device based on new energy storage
CN118197776A
Combined connected box-type resistance furnace
CN211147315U