Rotor assembly wire support
Technical Field
The utility model relates to the technical field of rotor assemblies, in particular to a rotor assembly wire support.
Background
Motors, pumps and various other components are currently employing rotor components in a variety of environments and applications, additional rotor components are required to enhance or enhance the capability of the motors, pumps and various other components employing rotor components, such as motors or generators, for energy conversion, and when the rotor components are used for rotational driving, it is generally necessary to wind copper wires inside the device, and thus the rotor can be rotated by driving wires, but due to the different roles between each rotor component, and thus the different standards required when the wires are wound, the number of turns of the rotor components is different when the wires are wound, but the size of the wire support of the rotor components in the prior art is fixed, and once the whole device is subjected to multi-winding wires, the number of turns of winding cannot be flexibly changed, thus resulting in the rotor components not being used and reducing the whole processing efficiency.
To this end, we have devised a rotor assembly wire support.
Disclosure of utility model
The utility model aims to solve the problem that more wires cannot be wound when the wires are wound.
In order to achieve the above purpose, the present utility model adopts the following technical scheme:
The utility model provides a rotor subassembly wire support piece, includes the box, be equipped with the roller bearing that is used for carrying out the auxiliary rotation to the wire in the box, the roller bearing lateral wall is equipped with a plurality of winding pieces that are used for carrying out winding to the wire, and is a plurality of winding piece top all is equipped with the flexible piece that is used for carrying out nimble regulation to the wire, roller bearing lateral wall symmetry is equipped with two fixed orificess, two in the fixed orificess all symmetry be equipped with be used for carrying out the splint that fix to the both ends of wire.
Preferably, a transmission shaft is arranged in the box body, and the rolling shaft rotates in the box body through the transmission shaft.
Preferably, a plurality of winding piece is all fixed to be set up at the roller bearing lateral wall, and is a plurality of all be equipped with the cavity in the winding piece, a plurality of flexible piece is all slided from top to bottom in the cavity, a plurality of all be equipped with the gear in the cavity and erect the tooth, a plurality of it all is fixed to set up in flexible piece bottom to erect the tooth, a plurality of winding piece one side all is equipped with the knob, a plurality of the knob all runs through the winding piece and links to each other with the gear, a plurality of the gear all with erect tooth meshing transmission.
Preferably, two fixing rods and springs are arranged in the fixing holes, sliding grooves are symmetrically arranged in the fixing holes, a plurality of fixing rods slide in the sliding grooves, a plurality of springs are sleeved on the outer side walls of the fixing rods, and two ends of each spring are connected with the fixing holes through clamping plates respectively.
Preferably, a plurality of clamping plates are fixedly arranged at the top ends of the fixing rods, and rubber pads are arranged at the top ends of the clamping plates.
Preferably, a plurality of sliding rails are arranged on one side of the rolling shaft, a plurality of shifting rods are arranged in the sliding rails, and the shifting rods are connected with the fixing rods through the sliding rails.
The beneficial effects of the utility model are as follows:
According to the utility model, when more wires need to be wound through parts such as the knob, the telescopic block and the like, the knob on one side is rotated, and then the telescopic block is driven to flexibly adjust up and down through the internal vertical teeth and the gears, so that the problem that the number of winding turns cannot be flexibly changed once the whole device is subjected to multi-winding wires in the prior art is avoided, the rotor assembly cannot be used, and the whole processing efficiency is reduced.
According to the utility model, when the wire is required to be wound through the parts such as the fixing holes, one end of the wire is placed in the fixing holes, and then the wire is clamped through the two symmetrically arranged clamping plates in the fixing holes, so that the wire is prevented from being inconvenient to fix in the winding process through the wire, the winding speed is further reduced, and the overall construction efficiency is reduced.
Drawings
FIG. 1 is a pair of isometric views of a rotor assembly wire support according to the present utility model;
FIG. 2 is a front view of a rotor assembly lead support according to the present utility model;
FIG. 3 is a schematic view of a rotor assembly wire support according to the present utility model;
Fig. 4 is a detailed schematic diagram of a rotor assembly wire support according to the present utility model.
In the figure, 1, a box body; 2, a rolling shaft, 3, a transmission shaft, 4, a winding block, 5, a knob, 6, a telescopic block, 7, a fixing hole, 8, a sliding rail, 9, a deflector rod, 10, a fixing rod, 11, a spring, 12, a clamping plate, 13, a rubber pad, 14, a gear, 15 and a vertical tooth.
Detailed Description
Referring to fig. 1-4, the rotor assembly wire support comprises a case 1, and the case 1 is cylindrical, so that auxiliary rotation of subsequent parts inside the case 1 is facilitated.
The box 1 is internally provided with a roller 2 for assisting in rotating the lead, the box 1 is internally provided with a transmission shaft 3 for driving through the rotating force of the roller 2 of the rotating shaft 3, the roller 2 rotates in the box 1 through the transmission shaft 3, and the outer side wall of the transmission shaft 3 rotates when the lead inside the transmission shaft 3 receives the force of the electromagnet.
The roller bearing 2 lateral wall is equipped with a plurality of winding piece 4 that are used for carrying out winding to the wire, a plurality of winding piece 4 are all fixed to be set up at roller bearing 2 lateral wall, be used for carrying out supplementary rotation to the wire through winding piece 4, all be equipped with the cavity in a plurality of winding piece 4, a plurality of flexible piece 6 all slide from top to bottom in the cavity, be used for carrying out nimble vertical slip regulation through the cavity, a plurality of winding piece 4 tops all are equipped with the flexible piece 6 that are used for carrying out nimble regulation to the wire, all be equipped with gear 14 and perpendicular tooth 15 in a plurality of cavities, a plurality of perpendicular tooth 15 all fix the setting in flexible piece 6 bottom, be used for carrying out vertical slip regulation to flexible piece 6 through perpendicular tooth 15, a plurality of winding piece 4 one side all are equipped with knob 5, be used for controlling gear 14 through knob 5, a plurality of gears 14 all mesh the transmission with perpendicular tooth 15, be used for carrying out more winding to the wire when carrying out winding through rotatory one side, and then drive flexible piece 6 through inside perpendicular tooth 15 and gear 14 and carry out nimble regulation from top to bottom, can't reduce the whole processing efficiency and can't be used for avoiding the whole to change the winding to the wire to the whole device when carrying out winding to the whole and can't be used for avoiding the whole to reduce the whole processing efficiency.
The roller bearing 2 lateral wall symmetry is equipped with two fixed orifices 7, equal symmetry is equipped with the splint 12 that are used for fixing the both ends of wire in two fixed orifices 7, all be equipped with two dead levers 10 and spring 11 in two fixed orifices 7, the symmetry is equipped with the spout in two fixed orifices 7, be used for carrying out the auxiliary slip through the spout, a plurality of dead levers 10 all slide in the spout, be used for carrying out the auxiliary clamp to the wire in the fixed orifice 7 through dead lever 10 and fix, a plurality of springs 11 all overlap and establish at dead lever 10 lateral wall, splint 12 and fixed orifices 7 link to each other respectively in a plurality of spring 11 both ends, be used for fixing the wire through the power of spring 11.
The clamping plates 12 are fixedly arranged at the top end of the fixing rod 10 and used for clamping and fixing the wires through the clamping plates 12, the rubber pads 13 are arranged at the top ends of the clamping plates 12 and used for reinforcing the clamping force of the clamping plates 12 through the rubber pads 13, when the wires need to be wound, one ends of the wires are placed in the fixing holes 7, the clamping plates 12 which are symmetrically arranged in the fixing holes 7 are used for clamping, the wires are prevented from being fixed inconveniently in the winding process through the wires, the winding speed is further reduced, and the overall construction efficiency is reduced.
One side of the rolling shaft 2 is provided with a plurality of sliding rails 8, a plurality of shifting levers 9 are arranged in the sliding rails 8, and the shifting levers 9 are connected with a fixed rod 10 through the sliding rails 8 and used for releasing the clamping and fixing state of the conducting wires through the shifting levers 9 when the conducting wires are required to be disassembled.
The utility model has the following working principle that when more wires need to be wound, the knob 5 on one side is rotated, and then the telescopic block 6 is driven by the vertical teeth 15 and the gear 14 in the knob to flexibly adjust up and down, so that the problem that the number of winding turns cannot be flexibly changed once the whole device is wound with multiple wires is avoided, the rotor assembly cannot be used, the whole processing efficiency is reduced, and when the whole device needs to be wound with the wires, one end of each wire is placed in the corresponding fixing hole 7 through the fixing hole 7, and then the two symmetrically arranged clamping plates 12 in the corresponding fixing hole 7 are used for clamping, so that the wires are prevented from being inconvenient to fix in the winding process through the wires, the winding speed is further reduced, and the whole construction efficiency is reduced.
The foregoing is only a preferred embodiment of the present utility model, but the scope of the present utility model is not limited thereto, and any person skilled in the art, who is within the scope of the present utility model, should make equivalent substitutions or modifications according to the technical scheme of the present utility model and the inventive concept thereof, and should be covered by the scope of the present utility model.