Change machining dress clamping structure
Technical Field
The utility model relates to the technical field of machining auxiliary tools for upper yoke plates, in particular to a clamping structure for changing machining equipment.
Background
The upper yoke plate is an important part on the motorcycle body, after the casting of the upper yoke plate is finished, the upper yoke plate needs to be further processed, and when the upper yoke plate is processed, the mounting holes on the upper yoke plate are generally fixed on a special clamp, so that the upper yoke plate is fixed, but the existing fixing clamp is generally fixed manually through bolts, so that the operation is inconvenient, and a large amount of labor is consumed.
Based on the structure, the machining installation clamping structure is changed, and the defects of the existing device can be overcome.
Disclosure of utility model
The utility model aims to provide a machining installation clamping structure to solve the problems in the background technology.
In order to achieve the above purpose, the present utility model provides the following technical solutions:
The utility model provides a change machining dress clamping structure, includes the base of clamping structure, be equipped with the pneumatic clamping mechanism that is used for the centre gripping to go up the yoke plate on the base, it fixes in pneumatic clamping mechanism both sides to go up the yoke plate.
Based on the technical scheme, the utility model also provides the following optional technical schemes:
In an alternative scheme, a first mounting groove is formed in the middle of the base, and two second mounting grooves are symmetrically formed in two sides of the first mounting groove.
In an alternative scheme, the pneumatic clamping mechanism comprises a mounting seat, a clamping seat and a driving assembly, wherein the mounting seat is arranged above the base, the clamping seat is arranged on two sides of the mounting seat, and the driving assembly is arranged at the bottom end of the mounting seat.
In an alternative scheme, the bottom end of the mounting seat is provided with a mounting block, the mounting block is arranged in the first mounting groove, the two ends of the mounting seat are provided with third mounting grooves, the bottom end of each third mounting groove is provided with a groove, the bottom of each groove is provided with a first through hole, and the top end of each third mounting groove is provided with a second through hole.
In an alternative scheme, the clamping seat is of a cylindrical structure, a fourth mounting groove is formed in the lower portion of the clamping seat, and a limiting ring is arranged on the clamping seat.
In an alternative scheme, the driving assembly comprises an air cylinder, the air cylinder is arranged in the second mounting groove, a movable rod is arranged at the upper end of the air cylinder, a movable block is sleeved on the movable rod, and a fixing nut is arranged at the top end of the movable rod.
In an alternative scheme, the upper connecting plate is provided with a mounting hole, and the position and the size of the mounting hole are consistent with those of the clamping seat.
In an alternative scheme, one end of the clamping seat is arranged in the third mounting groove, the movable block is arranged in the fourth mounting groove, and the movable rod penetrates through the first through hole to extend into the third mounting groove and is connected with the movable block.
Compared with the prior art, the utility model has the following beneficial effects:
the pneumatic clamping mechanism is arranged on the utility model, the movable rod and the movable block are driven to move by the air cylinder, and the upper yoke plate is clamped by the reverse movement of the movable block and the clamping seat, so that the problem that the original clamping mechanism needs to be manually fixed by bolts and is inconvenient to operate is solved, the labor cost is effectively reduced, and the processing efficiency is improved.
Drawings
FIG. 1 is a schematic view of the structure of one side of the present utility model.
Fig. 2 is a schematic structural diagram of the other side of the present utility model.
Fig. 3 is a schematic structural view of the pneumatic clamping mechanism in the present utility model.
Reference numerals are annotated as 100, a base, 101, a first mounting groove, 103, a second mounting groove, 200, a pneumatic clamping mechanism, 201, a mounting seat, 202, a mounting block, 203, a third mounting groove, 204, a first through hole, 205, a second through hole, 206, a groove, 207, a clamping seat, 208, a fourth mounting groove, 209, a limiting ring, 210, a cylinder, 211, a movable rod, 212, a movable block, 213, a fixed nut, 300, an upper connecting plate and 301, and a mounting hole.
Detailed Description
The present utility model will be described in further detail with reference to the drawings and examples, in order to make the objects, technical solutions and advantages of the present utility model more apparent.
In one embodiment, as shown in fig. 1 and 2, a modified machining fixture structure comprises a base 100 and a pneumatic clamping mechanism 200, wherein the pneumatic clamping mechanism 200 for clamping an upper link plate 300 is arranged on the base 100, the upper link plate 300 is fixed on two sides of the pneumatic clamping mechanism 200, and when in use, the upper link plate 300 is fixed through the pneumatic clamping mechanism 200 and then is subjected to the next machining process.
In one embodiment, as shown in fig. 2 and 3, a first mounting groove 101 is provided in the middle of the base 100, two second mounting grooves 103 are symmetrically provided on two sides of the first mounting groove 101, the first mounting groove 101 is used for mounting the pneumatic clamping mechanism 200, and the second mounting groove 103 is used for mounting the air cylinder 210.
In one embodiment, as shown in fig. 3, the pneumatic clamping mechanism 200 includes a mounting seat 201, a clamping seat 207 and a driving assembly, the mounting seat 201 is arranged above the base 100, the clamping seat 207 is arranged at two sides of the mounting seat 201, the driving assembly is arranged at the bottom end of the mounting seat 201, and in use, the upper yoke plate 300 is mounted on the clamping seat 207, and then the driving assembly drives the movable block 212 to fix the upper yoke plate 300 on the clamping seat 207.
In one embodiment, as shown in fig. 3, a mounting block 202 is arranged at the bottom end of a mounting seat 201, the mounting block 202 is arranged in a first mounting groove 101, a third mounting groove 203 is arranged at two ends of the mounting seat 201, a groove 206 is arranged at the bottom end of the third mounting groove 203, a first through hole 204 is arranged at the bottom of the groove 206, a second through hole 205 is arranged at the top end of the third mounting groove 203, and when the mounting seat is assembled, the mounting block 202 is mounted in the first mounting groove 101, and a clamping seat 207 is mounted in the third mounting groove 203.
In one embodiment, as shown in fig. 3, the clamping seat 207 has a cylindrical structure, a fourth mounting groove 208 is formed at the lower part of the clamping seat 207, and a limiting ring 209 is formed on the clamping seat 207, and when the clamping seat is installed, the movable block 212 is installed in the fourth mounting groove 208, and the movable block 212 is connected with the movable rod 211 through the first through hole 204.
In one embodiment, as shown in fig. 3, the driving assembly includes a cylinder 210, the cylinder 210 is disposed in the second mounting groove 103, a movable rod 211 is disposed at an upper end of the cylinder 210, a movable block 212 is sleeved on the movable rod 211, a fixing nut 213 is disposed at a top end of the movable rod 211, and when in use, the movable rod 211 is controlled to move up and down by inflating and exhausting the cylinder 210, when inflating the cylinder 210, the movable rod 211 moves down while driving the movable block 212 to move down, and when exhausting the cylinder 210, the movable rod 211 moves up while driving the movable block 212 to move up.
In one embodiment, as shown in fig. 2, the upper yoke plate 300 is provided with mounting holes 301, the mounting holes 301 are positioned and sized to correspond to the clamping holders 207, and in use, the mounting holes 301 on the upper yoke plate 300 are sleeved on the clamping holders 207.
In one embodiment, as shown in fig. 2 and 3, one end of the clamping seat 207 is disposed in the third mounting groove 203, the movable block 212 is disposed in the fourth mounting groove 208, the movable rod 211 penetrates the first through hole 204 to extend into the third mounting groove 203 and is connected with the movable block 212, when the movable block 212 is assembled, one end of the clamping seat 207 is mounted in the third mounting groove 203, the movable block 212 is mounted in the fourth mounting groove 208, and the movable rod 211 penetrates the first through hole 204 from bottom to top to extend into the third mounting groove 203 to be fixedly connected with the movable block 212.
The above embodiment discloses a structure for changing machining and assembling, when assembling, the mounting block 202 at the bottom end of the mounting seat 201 is mounted in the first mounting groove 101, then one end of the clamping seat 207 is mounted in the third mounting groove 203, then the movable block 212 is mounted in the fourth mounting groove 208, then the air cylinder 210 is mounted in the second mounting groove 103, meanwhile, the movable rod 211 at the upper end of the air cylinder 210 extends into the third mounting groove 203 from the first through hole 204 and passes through the movable block 212, then the fixing nut 213 is mounted at the top end of the movable rod 211 from the second through hole 205 and screwed tightly, so that the movable block 212 is fixed on the movable rod 211.
The foregoing is merely illustrative of the present application, and the present application is not limited thereto, and any person skilled in the art will readily recognize that variations or substitutions are within the scope of the present application. Therefore, the protection scope of the application is subject to the protection scope of the claims.