Transposition frame for motor machining
Technical Field
The utility model relates to the technical field of motor machining, in particular to a transposition frame for motor machining.
Background
In the motor processing process, in order to facilitate the observation of the surface of the motor by workers, the motor processing transposition bracket is required to be used for lifting and adjusting the angle, so that the processing efficiency is greatly improved.
Through retrieving, the motor processing in the prior art is used to clamp the motor through adopting two mobilizable splint, but because the position that the motor was clamped by splint has been blocked by splint on the contrary, in order to process this region, need put down the motor earlier, then clamp the motor in other regions again, then rise it, comparatively consuming time, machining efficiency is low.
Disclosure of utility model
The utility model aims to solve the technical problem of providing a transposition frame for machining a motor, which is high in machining efficiency.
The utility model aims to solve the problems, and the technical scheme is that the transposition frame for motor processing comprises a base, wherein the top end of the base is provided with a fixing component, the base is connected with a lifting component, the lifting component comprises a first guide rail and a second guide rail which are connected with the base, a first sliding block which is connected with the first guide rail in a sliding manner, a second sliding block which is connected with the second guide rail in a sliding manner, a first screw rod which is connected with the first sliding block in a threaded manner, a second screw rod which is connected with the second sliding block in a threaded manner, the base is connected with a driving component which is connected with the first screw rod and the second screw rod in a driving manner, the fixing component comprises a second motor which is connected with the first sliding block, an outer frame which is connected with the second motor in a driving manner, an inner frame which is connected with the outer frame in a rotating manner, and two groups of telescopic components which are positioned on the inner side of the inner frame are arranged, one end of the outer frame is provided with a third motor which is connected with the inner frame in a driving manner, and the two groups of telescopic components comprise two hydraulic cylinders which are symmetrically arranged, and one end of each hydraulic cylinder is provided with clamping plates.
As an improvement, the driving assembly comprises a first sprocket connected with the first screw, a second sprocket connected with the second screw and a first motor connected with the base, wherein the first motor is connected with a third sprocket in a driving manner, and the third sprocket, the first sprocket and the second sprocket are connected through a chain.
As an improvement, the first screw rod penetrates through the first guide rail and the base and is rotationally connected with the first guide rail and the base, and the second screw rod penetrates through the second guide rail and the base and is rotationally connected with the second guide rail and the base.
As an improvement, the first motor, the second motor, the third motor and the hydraulic cylinder are all electrically connected with a controller, and the first motor, the second motor and the third motor are all brake motors.
As an improvement, the surface of the inner frame is provided with a second rotating shaft which is rotationally connected with the outer frame.
As an improvement, the two groups of telescopic components are mutually perpendicular.
As an improvement, one end of the clamping plate is provided with a rubber pad.
The utility model has the beneficial effects that the lifting assembly can drive the fixing assembly to move upwards, so that the bottom of the motor is suspended, the motor can be fixed and transposed through the fixing assembly, meanwhile, the motor is alternately fixed by controlling the alternate expansion of the two groups of expansion assemblies, the partial area on the surface of the motor is prevented from being blocked, the motor is not required to be put down, the time required by adjustment is greatly reduced, and the processing efficiency is high.
Drawings
FIG. 1 is a schematic perspective view of the present utility model;
FIG. 2 is a schematic side view of the present utility model;
FIG. 3 is a schematic view of the bottom view of the present utility model;
Fig. 4 is a schematic top view of the present utility model.
1. A base; 2, a first guide rail, 3, a first screw rod, 4, a first sliding block, 5, an outer frame, 6, an inner frame, 7, a second guide rail, 8, a hydraulic cylinder, 9, a third motor, 10, a chain, 11, a first motor, 12, a second motor, 13, a first rotating shaft, 14 and a second rotating shaft.
Detailed Description
Preferred embodiments of the present utility model will be described in detail below with reference to the accompanying drawings.
The utility model provides a transposition frame for motor processing, including the base 1 that the top is equipped with fixed subassembly, fixed subassembly includes the second motor 12 that is connected with first slider 4, the frame 5 that is connected with the drive of second motor 12, be connected with frame 5 and with the first pivot 13 of second slider rotation connection, the inside casing 6 of being connected with frame 5 rotation and two sets of telescopic components that are located inside casing 6, frame 5 one end is equipped with the third motor 9 that is connected with inside casing 6 drive, the inside casing 6 surface is equipped with the second pivot 14 of being connected with frame 5 rotation, guarantee pivoted stability, two sets of telescopic components mutually perpendicular sets up, splint one end is equipped with the rubber pad, increase the frictional force with the motor between, two sets of telescopic components all include two pneumatic cylinders 8 of symmetry setting, pneumatic cylinder 8 one end is equipped with splint;
The base 1 is connected with a lifting assembly, the lifting assembly comprises a first guide rail 2 and a second guide rail 7 which are connected with the base 1, a first sliding block 4 which is in sliding connection with the first guide rail 2, a second sliding block which is in sliding connection with the second guide rail 7, a first screw rod 3 which is in threaded connection with the first sliding block 4, and a second screw rod which is in threaded connection with the second sliding block;
The base 1 is connected with a driving assembly which is in driving connection with the first screw 3 and the second screw, the driving assembly comprises a first sprocket which is connected with the first screw 3, a second sprocket which is connected with the second screw, and a first motor 11 which is connected with the base 1, wherein the first motor 11 is in driving connection with a third sprocket, the first sprocket and the second sprocket are connected through a chain 10, the first screw 3 penetrates through the first guide rail 2 and the base 1 and is in rotating connection with the first guide rail 2 and the base 1, the second screw penetrates through the second guide rail 7 and the base 1 and is in rotating connection with the second guide rail 7 and the base 1, and the first motor 11, the second motor 12, the third motor 9 and the hydraulic cylinder 8 are all electrically connected with a controller, and the first motor 11, the second motor 12 and the third motor 9 are all brake motors.
The working principle is that as shown in figure 1, a motor is arranged between four clamping plates, a group of hydraulic cylinders 8 are controlled to extend until a rubber pad abuts against the motor, so that the motor is fixed;
As shown in fig. 2, the first motor 11 drives the third sprocket to rotate, the third sprocket drives the first sprocket and the second sprocket to rotate through the chain 10, so as to drive the first screw rod 3 and the second screw rod to rotate, and the first screw rod 3 and the second screw rod respectively enable the first sliding block 4 and the second sliding block to move upwards, so that the fixing assembly is driven to move upwards until the motor is at a proper height;
Through the rotation of control second motor 12, third motor 9 makes the motor rotate around first pivot 13, second pivot 14 to replace, make things convenient for the motor to hover with different angles, conveniently process it, when the region that needs processing to be sheltered from by the baffle, control another group of pneumatic cylinders 8 extends until the rubber pad offsets with the motor, then control shortens with a set of pneumatic cylinders 8 that shelter from this regional splint connection, thereby make this region expose, conveniently process, need not to put down the motor, the required time of adjustment has significantly reduced, machining efficiency is high.
The utility model and its embodiments have been described above with no limitation, and the actual construction is not limited to the embodiments of the utility model as shown in the drawings. In summary, if one of ordinary skill in the art is informed by this disclosure, a structural manner and an embodiment similar to the technical solution should not be creatively devised without departing from the gist of the present utility model.