Cutting adjusting device of back cutting machine
Technical Field
The utility model relates to the technical field of cutting adjustment, in particular to a cutting adjustment device of a back cutting machine.
Background
The feeding shaft is added left and right on the square rod cutting platform of the equipment, so that the feeding shaft can be adjusted according to the size of the crystal rod, the plane is improved on the feeding shaft to ensure the level, the vertical backboard is welded again to ensure the verticality, and the backboard is provided with a crank in a centering way, so that the cutting position and the clamping force can be further adjusted.
Among the prior publications, patent publication No. CN215824401U discloses a hardware product cutting device convenient for angle adjustment, and the cutting adjusting device is connected with a cutting knife through the center inside the hollow plate. This hardware product cutting device convenient to angle regulation has the function of fixing the five metals when using the device, and can adjust the height of cutting knife, can carry out angle adjustment to the cutting knife according to the angle that needs simultaneously. However, this adjustment device has the following drawbacks;
When the adjusting device adjusts and cuts square bars cut by the back cutting machine, cutting needs to be achieved on square bars of different sizes, but in the cutting process, although the size can be adjusted, bidirectional clamping adjustment is difficult to achieve according to square bars of different sizes, the adjusting device is not only difficult to be suitable for clamping square bars of different sizes, but also poor in clamping firmness, and therefore the back cutting machine cutting adjusting device is needed.
Disclosure of utility model
In order to overcome the defects in the prior art, the utility model provides a cutting adjusting device of a back cutting machine.
The cutting adjusting device of the counter cutting machine comprises a cutting table, a linkage screw and a speed reducing motor, wherein the linkage screw is rotationally connected to the inner wall of the cutting table, the speed reducing motor is fixed on one side of the cutting table, the speed reducing motor is used for driving the linkage screw to rotate, an adjusting multidirectional clamping mechanism is arranged on the outer wall of the linkage screw, the adjusting multidirectional clamping mechanism comprises a sleeved sliding block which is arranged on the outer wall of the linkage screw in a threaded mode, a sleeve plate which is in sliding connection with the cutting table is arranged at the top end of the sleeved sliding block, the sleeve plate is in sliding connection with the cutting table, a supporting rod is welded on the inner wall of the sleeve plate, a vertical pressing plate is fixedly arranged at one end of the supporting rod, a threaded sleeve block which is in threaded connection with the linkage screw is arranged on one side of the sleeved sliding block, a sleeved supporting plate is welded on the top end of the threaded sleeve block, a reinforcing strut is welded on the inner wall of the sleeved supporting plate, and a transverse pressing plate is fixedly arranged at one end of the reinforcing strut.
Preferably, the sleeve-connecting sliding block and the thread sleeve block are both in sliding connection with the cutting table, the sleeve-connecting sliding block and the thread sleeve block are symmetrically arranged in the middle of the linkage screw, the center point of the supporting rod and the center point of the reinforcing supporting rod are positioned on the same horizontal line, the supporting rod and the reinforcing supporting rod are both made of stainless steel materials, the front and the rear of the cutting table are both rotationally connected with a plurality of connecting shafts, the outer wall of each connecting shaft is provided with a shaft collar fixedly connected with the cutting table, the shaft collar is rotationally connected with the connecting shafts, a roller in rotational connection is arranged on the outer wall of each connecting shaft and above the shaft collar, the diameter of the inner wall of each shaft collar is larger than that of the outer wall of each connecting shaft, and the connecting shafts and the shaft collars are both made of stainless steel materials.
In this technical scheme, place the square rod of equidimension in the space between vertical clamp plate and horizontal clamp plate, gear motor drive linkage screw rod is at the inside rotation of cutting bench. The linkage screw rod carries and cup joints the slider and moves along cutting bench inner wall right side under the effect of screw thread, and the cover board drives branch and makes vertical clamp plate right side move, and vertical clamp plate vertical extrusion is in the left side of square rod. The linkage screw rod drives the thread sleeve block to move left under the action of the thread transmission force, the thread sleeve block drives the sleeve support plate to enable the reinforcing support column to move left, and the reinforcing support column drives the transverse pressing plate to move left, so that the transverse pressing plate is extruded to the left on the right side of the square rod.
Preferably, two reinforcing strips are fixedly connected to opposite sides of the vertical pressing plate and the transverse pressing plate, and supporting strips are welded to the inner wall of each reinforcing strip; the corner positions of the sleeve plate and the sleeve support plate are fixedly connected with two connecting blocks, a reinforcing column is welded between the two connecting blocks, a supporting sleeve block is welded on the outer wall of the reinforcing column, a connecting sleeve is fixedly arranged at the bottom end of the outer wall of the supporting sleeve block, and a supporting column is fixedly connected with the inner wall of the connecting sleeve at the same center;
The two connecting blocks are welded with the support columns, the two connecting blocks are symmetrically arranged about the reinforcing column, the center point of the reinforcing column and the center point of the inner wall of the support sleeve block are positioned on the same horizontal line, the two connecting blocks are symmetrically arranged about the support columns, and the vertical section shape of the support columns is circular.
In this technical scheme, the sleeve plate supports two and consolidates the strip to the support bar supports the strip, and the adapter sleeve supports the support column, and the support column provides transverse support power to two connecting blocks, and the support sleeve piece provides the holding power to consolidating the post, consolidates two connecting blocks of post, and two connecting blocks realize consolidating the corner position of sleeve plate.
The utility model has the technical effects and advantages that:
1. According to the utility model, the multidirectional clamping mechanism is adopted, square rods with different sizes are placed in a gap between the vertical pressing plate and the transverse pressing plate, the gear motor drives the linkage screw rod to rotate in the cutting table, the vertical pressing plate is vertically extruded on the left side of the square rod, the transverse pressing plate is leftwards extruded on the right side of the square rod, so that the square rods with different sizes can be vertically and transversely locked, the square rods with different sizes can be clamped, and the clamping firmness is better;
2. According to the utility model, the support rods are used for supporting the vertical pressing plates, the sleeve plate supports the two reinforcing strips, the two reinforcing strips provide a firm supporting force for the vertical pressing plates, the support columns provide a transverse supporting force for the two connecting blocks, the two connecting blocks are used for reinforcing the corner positions of the sleeve plate, a firm supporting force can be provided for the sleeve plate, and stable clamping adjustment is realized.
Drawings
Fig. 1 is a schematic diagram of the overall structure of the cutting and adjusting device of the back-cutting machine.
Fig. 2 is a schematic bottom view of the cutting adjustment device of the back-cutting machine according to the present utility model.
Fig. 3 is a schematic view showing a cut-off partial structure of the cutting table of the present utility model.
FIG. 4 is a schematic view of a cut-away partial structure of the junction of the cutting table and the collar of the present utility model.
Fig. 5 is a schematic view of a partial structure of a joint between a connecting block and a reinforcing column according to the present utility model.
The device comprises a cutting table, a linkage screw rod, a speed reducing motor, a sleeve slider, a sleeve plate, a support rod, a vertical pressing plate, a threaded sleeve block, a sleeve support plate, a reinforcing support column, a transverse pressing plate, a connecting shaft, a shaft collar, a roller, a reinforcing bar, a reinforcing support bar, a supporting bar, a connecting block, a connecting bar, a reinforcing column, a connecting sleeve, a supporting sleeve block, a supporting column and a supporting column.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
The cutting adjusting device of the back cutting machine is provided with the adjusting multi-direction clamping mechanism, and the adjusting multi-direction clamping mechanism can vertically and transversely lock square bars with different sizes, so that the cutting adjusting device can be suitable for clamping square bars with different sizes, the clamping firmness is better, and the specific structure of the adjusting multi-direction clamping mechanism is as follows.
In the technical scheme, as shown in figures 1-3, the adjusting multidirectional clamping mechanism comprises a sleeving sliding block 4 which is arranged on the outer wall of a linkage screw 2 in a threaded mode, a sleeving plate 5 which is connected with a cutting table 1 in a sliding mode is arranged at the top end of the sleeving sliding block 4, the sleeving plate 5 is connected with the cutting table 1 in a sliding mode, a supporting rod 6 is welded on the inner wall of the sleeving plate 5, a vertical pressing plate 7 is fixedly arranged at one end portion of the supporting rod 6, a threaded sleeving block 8 which is connected with the linkage screw 2 in a threaded mode is arranged on one side of the sleeving sliding block 4, a sleeving supporting plate 9 is welded at the top end of the threaded sleeving block 8, a reinforcing strut 10 is welded on the inner wall of the sleeving supporting plate 9, and a transverse pressing plate 11 is fixedly arranged at one end portion of the reinforcing strut 10.
When the cutting adjusting device of the counter cutting machine is used, square bars with different sizes are placed in a gap between the vertical pressing plate 7 and the horizontal pressing plate 11, and the gear motor 3 is started to drive the linkage screw 2 to rotate inside the cutting table 1. The linkage screw rod 2 carries and cup joints slider 4 and moves along cutting table 1 inner wall right side under the effect of screw thread, cup joints slider 4 and drives the sleeve board 5 and move right side, and sleeve board 5 drives branch 6 and makes vertical clamp plate 7 move right side to vertical clamp plate 7 vertical extrusion is in the left side of square rod. The linkage screw rod 2 drives the thread bushing block 8 to move left under the action of the thread transmission force, the thread bushing block 8 moves left along the inner wall of the cutting table 1, meanwhile, the thread bushing block 8 drives the sleeve support plate 9 to enable the reinforcing support post 10 to move left, the reinforcing support post 10 drives the transverse pressing plate 11 to move left, and therefore the transverse pressing plate 11 extrudes left on the right side of the square rod, vertical and transverse locking can be achieved on the square rods with different sizes, and after the locking of the square rods is completed, the square rods are cut by the back cutting machine.
In the technical scheme, as shown in figures 1-4, a plurality of connecting shafts 12 are rotatably connected to the front and rear sides of a cutting table 1, a shaft collar 13 fixedly connected with the cutting table 1 is arranged on the outer wall of each connecting shaft 12, the shaft collar 13 is rotatably connected with the connecting shafts 12, and a roller 14 rotatably connected with the outer wall of each connecting shaft 12 and positioned above the shaft collar 13 is arranged. So as to support a plurality of collars 13 by the cutting table 1, the collars 13 supporting the connecting shaft 12, the connecting shaft 12 driving the rollers 14 to press against the inclined sides, thus providing a sideways inclined supporting force
In the technical scheme, as shown in figures 3-5, two reinforcing strips 15 are fixedly connected to opposite sides of a vertical pressing plate 7 and a horizontal pressing plate 11, and supporting strips 16 are welded to the inner wall of each reinforcing strip 15, two connecting blocks 17 are fixedly connected to corner positions of a sleeve plate 5 and a sleeve support plate 9, a reinforcing column 18 is welded between the two connecting blocks 17, a supporting sleeve block 19 is welded to the outer wall of the reinforcing column 18, a connecting sleeve 20 is fixedly arranged at the bottom end of the outer wall of the supporting sleeve block 19, a supporting column 21 is fixedly connected to the concentric center of the inner wall of the connecting sleeve 20, two connecting blocks 17 are welded to the supporting column 21, the two connecting blocks 17 are symmetrically arranged about the reinforcing column 18, the center point of the reinforcing column 18 and the center point of the inner wall of the supporting sleeve block 19 are positioned on the same horizontal line, the two connecting blocks 17 are symmetrically arranged about the supporting column 21, and the vertical section of the supporting column 21 is circular;
According to the upper structure, in use, the support rods 6 support the vertical pressing plates 7, the sleeve plate 5 supports two reinforcing strips 15, and the support strips 16 support the reinforcing strips 15, the two reinforcing strips 15 providing a firm supporting force for the vertical pressing plates 7. The adapter sleeve 20 is supporting the support column 21, and the support column 21 is providing horizontal holding power to two connecting blocks 17 to the adapter sleeve 20 is supporting the support sleeve piece 19, and the support sleeve piece 19 is providing holding power to the reinforcement post 18, and the reinforcement post 18 consolidates two connecting blocks 17, and two connecting blocks 17 consolidate the corner position of sleeve plate 5, can provide firm holding power to sleeve plate 5, can realize stable centre gripping adjustment when the centre gripping square rod cuts.
The foregoing is only illustrative of the preferred embodiments of the present utility model and is not to be construed as limiting the utility model, but rather as various modifications, equivalent arrangements, improvements, etc., within the spirit and principles of the present utility model.