Clamp for stacked continuous machining for diamond mechanical clamping blade
Technical Field
The utility model relates to the technical field of diamond-shaped mechanical clamping blade processing clamps, in particular to a stacked continuous processing clamp for a diamond-shaped mechanical clamping blade.
Background
The mechanical blade is a mechanical device such as milling and the like, the mechanical device mainly performs turning on materials through the mechanical blade, the types of the mechanical blade are various, the diamond-shaped mechanical blade is one of the mechanical blade, and for the processing of the diamond-shaped mechanical blade, in order to facilitate clamping and fixing the diamond-shaped mechanical blade, a stacked continuous processing clamp for clamping the diamond-shaped mechanical blade is required to be matched.
The sizes of clamping grooves of the existing stacked continuous type processing clamp for diamond mechanical clamping blades are generally fixed, so that clamping and fixing of diamond mechanical blades with different sizes are inconvenient, and practical limitation is large.
Disclosure of utility model
The utility model aims to overcome the defects of the prior art, adapt to the actual needs, and provide a stacked continuous processing clamp for diamond mechanical clamping blades, so as to solve the technical problem that the stacked continuous processing clamp for the diamond mechanical clamping blades is inconvenient to clamp and fix diamond mechanical blades with different sizes.
The technical scheme includes that the stacked continuous processing clamp for the diamond-shaped mechanical clamping blade comprises a base, wherein a rectangular notch is formed in the top of the base, two groups of main clamping pieces are slidably arranged in the notch, a plurality of groups of matched clamping pieces are slidably arranged between the two groups of main clamping pieces in the notch, second electric push rods are arranged in the centers of two sides of the base, and piston ends of the second electric push rods are fixedly connected with the corresponding main clamping pieces;
Two symmetrical clamping plates are hinged to the two sides of the matched clamping piece and the main clamping piece towards one side of the matched clamping piece by taking the center as a boundary line, first electric push rods are hinged to four corners of the two sides of the matched clamping piece and four corners of the main clamping piece towards one side of the matched clamping piece, and piston ends of the first electric push rods are hinged to side corners of the corresponding clamping plates;
the clamping plate surface is slidably provided with a limiting plate, a rectangular open slot is formed in the center of the clamping plate surface, and an adjusting structure is arranged in the open slot.
Preferably, a first sliding groove is formed in the front side and the rear side of the notch, a first sliding block corresponding to the main clamping piece and the matched clamping piece is arranged in the first sliding groove in a sliding mode, and the first sliding block is correspondingly connected with the main clamping piece and the matched clamping piece.
Preferably, second sliding grooves are formed in two sides of the surface of the clamping plate, second sliding blocks are arranged in the second sliding grooves in a sliding mode, and the second sliding blocks are fixedly connected with the limiting plates.
Preferably, the adjusting structure comprises a screw rod and a sleeve block, the screw rod is rotationally arranged in the open slot, the top end of the screw rod penetrates through the open slot, the sleeve block is arranged on the screw rod, and the sleeve block is fixedly connected with the limiting plate.
Preferably, a threaded hole is arranged on the sleeve block, and the screw rod penetrates through the threaded hole in a threaded fit mode.
Preferably, a limit bolt is screwed at the top end of the screw rod, and a limit block corresponding to the limit bolt is arranged at the top of the clamping plate.
Compared with the prior art, the utility model has the beneficial effects that:
1. The clamping plates are movably arranged on the main clamping piece and the matched clamping piece, when the diamond-shaped mechanical blade is clamped by the main clamping piece and the matched clamping piece, the first electric push rod can be controlled to stretch and retract according to the model size of the diamond-shaped mechanical blade, and the clamping plates are driven to rotate, so that the two groups of clamping plates on the sides of the main clamping piece and the matched clamping piece form V-shaped structures with different angles, and the clamping plates can be attached and clamped with diamond-shaped mechanical blades with different models.
2. The adjusting structure and the limiting plate are arranged on the surface of the clamping plate, and when the diamond-shaped mechanical blade is clamped, the height of the limiting plate can be adjusted through the adjusting structure according to processing requirements, so that the clamping plate can clamp the side edges of the diamond-shaped mechanical blade in different depths, and the periphery of the diamond-shaped mechanical blade can be processed by an external processing machine conveniently.
Drawings
FIG. 1 is a schematic diagram of the overall structure of the present utility model;
FIG. 2 is a schematic view of a base structure of the present utility model;
FIG. 3 is a schematic view of a mating clip of the present utility model;
FIG. 4 is a schematic view of a main clamping member according to the present utility model;
FIG. 5 is a schematic view of a splint according to the present utility model;
fig. 6 is an enlarged schematic view of the utility model at a in fig. 5.
In the figure, 1, a base, 2, a notch, 201, a first chute, 202, a first sliding block, 3, a main clamping piece, 4, a matched clamping piece, 5, a clamping plate, 501, a second chute, 502, a second sliding block, 503, an open slot, 6, a first electric push rod, 7, a limiting plate, 8, an adjusting structure, 801, a screw rod, 802, a sleeve block, 803, a limiting bolt, 804, a limiting block, 9 and a second electric push rod.
Detailed Description
The utility model is further illustrated by the following examples in conjunction with the accompanying drawings:
In the embodiment, referring to fig. 1 to 6, the clamp for stacked continuous machining for the diamond mechanical clamping blade comprises a base 1, wherein a rectangular notch 2 is formed in the top of the base 1, two groups of main clamping pieces 3 are arranged in the notch 2 in a sliding manner, a plurality of groups of matched clamping pieces 4 are arranged in the notch 2 in a sliding manner between the two groups of main clamping pieces 3, a second electric push rod 9 is arranged in the center of two sides of the base 1, the piston end of the second electric push rod 9 is fixedly connected with the corresponding main clamping piece 3, when the diamond mechanical blade is clamped, the diamond mechanical blade is placed between the main clamping piece 3 and the matched clamping piece 4, the matched clamping piece 4 and the matched clamping piece 4, then the two groups of main clamping pieces 3 are driven to relatively move through the second electric push rod 9, so that the main clamping piece 3 and the matched clamping piece 4 can directly perform stacked continuous clamping on the plurality of groups of diamond mechanical blades, specifically, a first sliding groove 201 is formed in the front side and the rear side of the notch 2, a first sliding block 202 corresponding to the main clamping piece 3 and the matched clamping piece 4 is arranged in the sliding manner in the first sliding groove 201, and the first sliding block 202 corresponding to the main clamping piece 3 and the matched clamping piece 4 is arranged in the sliding manner in the first sliding groove 201, and the first sliding block 202 is matched with the first sliding block 202 and the first sliding block 202 is matched with the main clamping piece 3 and the first sliding piece 4, and the first sliding block 202 is matched with the first sliding piece 3 and the first sliding piece 4.
In a specific embodiment, two symmetrical clamping plates 5 are hinged to two sides of the matched clamping piece 4 and one side of the main clamping piece 3 facing the matched clamping piece 4 by taking the center as a boundary line, the four corners of the two sides of the matched clamping piece 4 and the four corners of the side of the main clamping piece 3 facing the matched clamping piece 4 are hinged with first electric push rods 6, the piston ends of the first electric push rods 6 are hinged with the corresponding clamping plates 5, when the main clamping piece 3 and the matched clamping piece 4 clamp the diamond-shaped mechanical blade, the first electric push rods 6 can be controlled to stretch and retract according to the model size of the diamond-shaped mechanical blade, the clamping plates 5 are driven to rotate, so that the two groups of clamping plates 5 on the side surfaces of the main clamping piece 3 and the matched clamping piece 4 form V-shaped structures with different angles, and the diamond-shaped mechanical blade can be clamped in a fitting manner;
According to the utility model, the limiting plate 7 is slidably arranged on the surface of the clamping plate 5, the rectangular open slot 503 is formed in the center of the surface of the clamping plate 5, the adjusting structure 8 is arranged in the open slot 503, when the diamond-shaped mechanical blade is clamped, the height of the limiting plate 7 can be adjusted through the adjusting structure 8 according to processing requirements, the limiting plate 7 carries out limiting support on the bottom surface of the diamond-shaped mechanical blade, so that the clamping plate 5 can clamp the side edges of the diamond-shaped mechanical blade in different depths, and the periphery of the diamond-shaped mechanical blade can be processed by an external processing machine conveniently.
Specifically, the second sliding grooves 501 are formed in two sides of the surface of the clamping plate 5, the second sliding grooves 501 are internally provided with the second sliding blocks 502 in a sliding manner, the second sliding blocks 502 are fixedly connected with the limiting plates 7, the second sliding grooves 501 and the second sliding blocks 502 can be designed in a T-shaped manner, so that the second sliding blocks 502 can stably slide in the second sliding grooves 501, and the limiting plates 7 can slide up and down under the cooperation of the second sliding grooves 501 and the second sliding blocks 502.
Further, the adjusting structure 8 comprises a screw rod 801 and a sleeve block 802, the screw rod 801 is rotatably arranged in the open groove 503, the top end of the screw rod 801 penetrates through the open groove 503, the sleeve block 802 is arranged on the screw rod 801, the sleeve block 802 is fixedly connected with the limiting plate 7, the screw rod 801 is screwed, and the sleeve block 802 on the screw rod 801 can drive the limiting plate 7 to move up and down, so that the position of the limiting plate 7 is adjusted.
Still further, a threaded hole is arranged on the sleeve block 802, and the screw rod 801 penetrates through the threaded hole in a threaded fit mode, and when the sleeve block 802 and the screw rod 801 are screwed under threaded fit, the sleeve block 802 can displace on the screw rod 801.
It is worth to say that a limit bolt 803 is screwed on the top end of a screw rod 801, a limit block 804 corresponding to the limit bolt 803 is arranged on the top of a clamping plate 5, when the height of a limit plate 7 is adjusted, the limit bolt 803 can be screwed on the top end of the screw rod 801, then the limit block 804 can shield and limit the limit bolt 803, so that the screw rod 801 cannot rotate, the effect of locking and positioning the screw rod 801 can be achieved, the phenomenon that the screw rod 801 is driven by pressure in the process of machining is avoided, and the technical problem that a stacked continuous type machining clamp for a current diamond mechanical clamping blade is inconvenient to clamp and fix diamond mechanical blades with different sizes is solved through the cooperation of the clamping plate 5 and a first electric push rod 6.
When clamping the diamond-shaped mechanical blades, firstly, putting the diamond-shaped mechanical blades between the main clamping piece 3 and the matched clamping piece 4, and between the matched clamping piece 4 and the matched clamping piece 4, and then driving the two groups of main clamping pieces 3 to relatively displace through the second electric push rod 9, so that the main clamping pieces 3 and the matched clamping pieces 4 can directly clamp a plurality of groups of diamond-shaped mechanical blades in a stacked manner;
Secondly, when the main clamping piece 3 and the matched clamping piece 4 clamp the diamond-shaped mechanical blade, the first electric push rod 6 can be controlled to stretch and retract according to the model size of the diamond-shaped mechanical blade, and the clamping plates 5 are driven to rotate, so that the main clamping piece 3 and the two groups of clamping plates 5 on the side surface of the matched clamping piece 4 form V-shaped structures with different angles, and the diamond-shaped mechanical blade can be attached and clamped with different models;
Finally, when clamping the diamond-shaped mechanical blade, the height of the limiting plate 7 can be adjusted through the adjusting structure 8 according to processing requirements, the screw rod 801 is locked and positioned by screwing the limiting bolt 803, and then the limiting plate 7 is used for limiting and supporting the bottom surface of the diamond-shaped mechanical blade, so that the clamping plate 5 can clamp the side edges of the diamond-shaped mechanical blade to different depths, and the periphery of the diamond-shaped mechanical blade can be processed by an external processing machine conveniently.
The embodiments of the present utility model are disclosed as preferred embodiments, but not limited thereto, and those skilled in the art will readily appreciate from the foregoing description that various modifications and variations can be made without departing from the spirit of the present utility model.