Chamfer processing equipment with adjustable polisher angle
Technical Field
The utility model belongs to the technical field of magnet machining, and particularly relates to chamfer machining equipment with an adjustable grinding machine angle.
Background
In the field of magnet machining, angle-adjustable chamfering equipment is commonly used to chamfer the magnet to improve its appearance and performance. This kind of equipment has the function of adjusting chamfer angle, help satisfying different demands, when carrying out magnet raw materials chamfer work of polishing, magnet raw materials probably have various complicated shapes and structures, this just needs to be higher to grinding machanism's angle modulation requirement, thereby can cover a plurality of positions that need chamfer to magnet raw materials completely, with the precision that improves chamfer and polish, thereby guarantee the quality that magnet raw materials chamfer was polished, secondly, the grinding machanism angle adjustable range who uses in the traditional magnet processing field is limited, this can not only lead to magnet raw materials to process out the finished product quality and can not reach the requirement, simultaneously reduced work efficiency, therefore hope to propose a new structure for solve above problem.
Disclosure of utility model
Aiming at the defects in the prior art, the utility model aims to provide chamfering processing equipment with an adjustable angle of a grinding machine.
The utility model is realized by the following technical scheme: a chamfer machining apparatus with an adjustable grinding angle, comprising: the device comprises a main control box, an auxiliary control box and a fixed plate, wherein a workbench is arranged at the top of the main control box, a transmission box is arranged in front of the workbench, the fixed plate is arranged at the rear side of the top of the transmission box, and an unlocking push button is arranged at the front side of the fixed plate;
A transmission gear is arranged in the transmission box, a first rotating wheel is arranged in front of the transmission box, a fixed groove is formed below the fixed plate, fixed clamping teeth are respectively arranged at left and right positions of the bottom of the fixed plate, a locking clamping groove is formed on the left side of the front surface of the fixed plate, and a group of unlocking grooves are formed below the unlocking push button in a penetrating manner;
the telescopic cavity is arranged below the unlocking groove, the reset spring is arranged in front of the telescopic cavity, the locking clamping head is arranged on the rear side of the reset spring, the auxiliary control box is arranged on the rear side of the workbench, the supporting base is arranged in front of the auxiliary control box, the chamfering polishing mechanism is arranged in front of the supporting base, and the rotating wheel II is arranged on the right side of the auxiliary control box.
As a preferred implementation mode, the main control box is internally provided with an electric power mechanism and an electric connection mechanism, the auxiliary control box is internally provided with an intelligent self-locking mechanism, the chamfering polishing mechanism consists of a polishing head and a connecting plate, and the top of the connecting plate is annularly provided with a plurality of groups of self-locking clamping grooves.
As a preferred embodiment, the front surface of the supporting base is recessed backwards to form a rotating cavity, a fixed shaft is arranged in the rotating cavity, the inside of the supporting base is movably connected with the rear side of the connecting plate through the fixed shaft, a self-locking boss is arranged at the top of the rotating cavity, and the self-locking boss is opposite to the self-locking clamping groove in position.
As a preferred embodiment, the left side of the top of the fixed plate is provided with a handle, the right side of the fixed plate is movably connected with the right side of the fixed groove through a hinge post, the bottom of the fixed groove is in through connection with the top inside the transmission case, and the distance length between two groups of fixed latches is larger than the width of a single tooth of the transmission gear.
As a preferred embodiment, the bottom of the unlocking groove is connected with the top of the telescopic cavity in a penetrating way, the left side of the locking clamp is provided with a push plate, the push plate and the locking clamp are of an integrated structure, and the top of the push plate is connected with the bottom of the unlocking push button through a connecting rod;
the rear side of the locking clamping head penetrates through the rear side of the telescopic cavity and stretches into the fixing groove, the locking clamping head is of a cylindrical structure, the front side of the push plate is glued with the rear side of the return spring, and the radius length of the locking clamping head is smaller than that of the locking clamping groove;
when in actual use, the unlocking push button is pushed forward, so that the unlocking push button moves forward along the unlocking groove, and meanwhile, the locking clamp head is driven to move forward in the telescopic cavity and extrude the reset spring, so that the rear side of the locking clamp head is pulled out from the locking clamp groove, and the locking relation between the locking clamp head and the fixed plate is released.
As a preferred implementation mode, the auxiliary control box is internally provided with an adjusting slide plate, the left side and the right side of the adjusting slide plate are provided with slide bars, the left side and the right side of the auxiliary control box are provided with slide grooves, the slide bars are positioned in the slide grooves, and the back of the supporting base is welded and fixed with the front of the adjusting slide plate.
As a preferred implementation mode, a movable plate is arranged in the workbench, a magnet raw material clamping mechanism is arranged at the top of the movable plate, a rack is arranged at the bottom of the movable plate, and the front surface of the workbench is in through connection with the back surface of the transmission case;
The transmission gear penetrates through the back surface of the transmission box and the front surface of the workbench, the bottom of the moving plate is meshed with the top of the transmission gear, the first rotating wheel is connected with the transmission gear through the first transmission mechanism, and the second rotating wheel is connected with the adjusting slide plate through the second transmission mechanism;
When the movable plate is in actual use, the handle is pinched to open the fixed plate upwards, so that the two groups of fixed clamping teeth are upwards moved away from the two sides of the single tooth of the transmission gear, the fixed plate is released from fixing the transmission gear, the first rotating wheel is rotated clockwise at the moment, the transmission gear is driven to rotate clockwise through the first transmission mechanism, and the movable plate is driven to move rightwards in the workbench.
After the technical scheme is adopted, the utility model has the beneficial effects that: through setting up workstation, movable plate and transmission case, accessible rotates runner one and drives the drive gear rotation, thereby drive movable plate and move about the workstation is inside, but then control the position of adjusting magnet raw materials fixture in chamfer grinding machanism below, and then the scope of chamfer polishing has been improved, improve the precision of polishing, through setting up the fixed plate, unblock push button and locking chuck, but flexible positioning movable plate's position makes it be difficult for appearing becoming flexible in the chamfer polishing process, through setting up auxiliary control box, chamfer grinding machanism, even board and supporting base, rotatable runner two control chamfer grinding machanism's upper and lower position, through the flexible angle of adjusting chamfer grinding machanism of auto-lock boss and auto-lock draw-in groove, improve the chamfer quality of polishing, improve work efficiency.
Drawings
In order to more clearly illustrate the embodiments of the utility model or the technical solutions of the prior art, the drawings which are used in the description of the embodiments or the prior art will be briefly described, it being obvious that the drawings in the description below are only some embodiments of the utility model, and that other drawings can be obtained according to these drawings without inventive faculty for a person skilled in the art.
Fig. 1 is a schematic view of a chamfering machine with an adjustable grinding angle according to the present utility model.
Fig. 2 is a schematic diagram at a in fig. 1.
Fig. 3 is a schematic structural view of a fixing plate and a locking chuck in a chamfering processing apparatus with an adjustable angle of a grinding machine according to the present utility model.
Fig. 4 is a schematic connection diagram of a supporting base and a chamfering polishing mechanism in the chamfering processing apparatus with an adjustable angle of the polisher according to the present utility model.
Fig. 5 is a schematic view showing the structure of a transmission gear and a moving plate in a chamfering machine with an adjustable angle of a grinding machine according to the present utility model.
In the figure, 100-main control box, 110-workbench, 120-movable plate, 130-auxiliary control box, 140-supporting base, 150-chamfering polishing mechanism, 160-transmission box, 170-fixed plate, 180-unlocking push button, 190-unlocking groove, 200-fixed latch, 210-transmission gear, 220-reset spring, 230-locking chuck, 240-locking clamping groove, 250-self-locking boss and 260-self-locking clamping groove.
Detailed Description
The technical solutions in the embodiments of the present utility model will be clearly and completely described below with reference to the drawings in the embodiments of the present utility model, and it is apparent that the described embodiments are only one end embodiment of the present utility model, not the all-end embodiment. 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.
Please refer to fig. 1 to 5: a chamfer machining apparatus with an adjustable grinding angle, comprising: the device comprises a main control box 100, a secondary control box 130 and a fixed plate 170, wherein a workbench 110 is arranged at the top of the main control box 100, a transmission box 160 is arranged in front of the workbench 110, the fixed plate 170 is arranged at the rear side of the top of the transmission box 160, and an unlocking push button 180 is arranged at the front side of the fixed plate 170;
A transmission gear 210 is arranged in the transmission case 160, a first rotating wheel is arranged in front of the transmission case 160, a fixed groove is formed below the fixed plate 170, fixed latches 200 are respectively arranged at left and right positions of the bottom of the fixed plate 170, a locking clamping groove 240 is formed on the left side of the front surface of the fixed plate 170, and a group of unlocking grooves 190 are formed below the unlocking push button 180 in a penetrating manner;
The telescopic cavity is formed below the unlocking groove 190, the reset spring 220 is arranged in front of the inner part of the telescopic cavity, the locking clamp 230 is arranged on the rear side of the reset spring 220, the auxiliary control box 130 is arranged on the rear side of the workbench 110, the supporting base 140 is arranged in front of the auxiliary control box 130, the chamfering polishing mechanism 150 is arranged in front of the supporting base 140, and the second rotating wheel is arranged on the right side of the auxiliary control box 130.
The main control box 100 is internally provided with an electric power mechanism and an electric connection mechanism, the auxiliary control box 130 is internally provided with an intelligent self-locking mechanism, the chamfering polishing mechanism 150 consists of a polishing head and a connecting plate, and the top of the connecting plate is annularly provided with a plurality of groups of self-locking clamping grooves 260.
The supporting base 140 is recessed backwards from the front to form a rotating cavity, a fixed shaft is arranged in the rotating cavity, the supporting base 140 is movably connected with the rear side of the connecting plate through the fixed shaft, a self-locking boss 250 is arranged at the top of the rotating cavity, and the self-locking boss 250 is opposite to the self-locking clamping groove 260.
The left side of the top of the fixed plate 170 is provided with a handle, the right side of the fixed plate 170 is movably connected with the right side of the fixed groove through a hinge post, the bottom of the fixed groove is in through connection with the top inside the transmission case 160, and the distance length of the two groups of fixed latches 200 is larger than the single tooth width of the transmission gear 210.
The bottom of the unlocking groove 190 is connected with the top of the telescopic cavity in a penetrating way, a push plate is arranged on the left side of the locking clamp 230, the push plate and the locking clamp 230 are of an integrated structure, and the top of the push plate is connected with the bottom of the unlocking push button 180 through a connecting rod;
The rear side of the locking clamp 230 penetrates through the rear side of the telescopic cavity and stretches into the fixing groove, the locking clamp 230 is of a cylindrical structure, the front side of the push plate is glued with the rear side of the return spring 220, and the radius length of the locking clamp 230 is smaller than that of the locking clamp groove 240;
In actual use, the unlocking push button 180 is pushed forward, so that the unlocking push button 180 moves forward along the unlocking groove 190, and meanwhile, the locking chuck 230 is driven to move forward in the telescopic cavity and press the return spring 220, so that the rear side of the locking chuck 230 is pulled out from the locking chuck groove 240, and the locking relation between the locking chuck 230 and the fixing plate 170 is released.
The inside regulation slide that is equipped with of auxiliary control box 130, regulation slide left and right sides are equipped with the draw runner, and inside the inside left and right sides of auxiliary control box 130 was equipped with the spout, and the draw runner is in the spout inside, and support base 140 back and regulation slide openly welded fastening.
A movable plate 120 is arranged in the workbench 110, a magnet raw material clamping mechanism is arranged at the top of the movable plate 120, a rack is arranged at the bottom of the movable plate 120, and the front surface of the workbench 110 is in through connection with the back surface of the transmission case 160;
The transmission gear 210 penetrates through the back surface of the transmission box 160 and the front surface of the workbench 110, the bottom of the moving plate 120 is meshed with the top of the transmission gear 210, the first rotating wheel is connected with the transmission gear 210 through a first transmission mechanism, and the second rotating wheel is connected with the adjusting slide plate through a second transmission mechanism;
In actual use, the handle is pinched to open the fixing plate 170 upwards, so that the two groups of fixing latches 200 are moved upwards from two sides of the single tooth of the driving gear 210, and the fixing plate 170 is released from fixing the driving gear 210, and at the moment, the first rotating wheel is rotated clockwise, and the driving gear 210 is driven to rotate clockwise by the first driving mechanism, so that the moving plate 120 is driven to move rightward in the workbench 110.
Example 1: referring to fig. 1, 2, 3 and 5, in actual use, firstly, the magnet raw material is clamped in the magnet raw material clamping mechanism, then the main control box 100 is started, the electric mechanism in the main control box 100 is connected with the intelligent self-locking mechanism and the chamfering polishing mechanism 150 in the auxiliary control box 130 through the electric connection mechanism, the protrusion and retraction of the self-locking boss 250 are controlled, meanwhile, the operation of the chamfering polishing mechanism 150 is controlled, then the unlocking push button 180 is pushed forward, so that the unlocking push button 180 moves forward along the unlocking groove 190, meanwhile, the locking chuck 230 is driven to move forward in the telescopic cavity and the reset spring 220 is extruded, so that the rear side of the locking chuck 230 is pulled out from the locking clamping groove 240, and the locking relation between the locking chuck 230 and the fixed plate 170 is released;
Then, the handle is pinched to open the fixing plate 170 upwards, so that the two groups of fixing latches 200 are moved upwards from two sides of a single tooth of the transmission gear 210, the fixing of the transmission gear 210 by the fixing plate 170 is released, the first rotating wheel is clockwise rotated at this time, the transmission gear 210 is driven to rotate clockwise by the first driving mechanism, the moving plate 120 is driven to move rightwards in the workbench 110, the position of the magnet raw material below the chamfering polishing mechanism 150 can be flexibly adjusted by reversing the above steps, the chamfering polishing precision is improved, after the magnet raw material clamping mechanism is moved to a proper position, the single tooth of the transmission gear 210 can be clamped by the two groups of fixing latches 200, and the transmission gear 210 is locked by the matching of the locking clamp 230 and the locking clamp groove 240, so that the magnet raw material is not easy to loosen in the chamfering polishing process, and the stability of the magnet raw material during polishing is ensured.
Example 2: referring to fig. 1 and 4, after the left and right adjustment of the moving plate 120 is completed, the second rotating wheel is rotated clockwise by the right hand of the operator, the sliding plate is driven to move downwards along the sliding groove by the second driving mechanism, so as to drive the supporting base 140 and the chamfering polishing mechanism 150 to move downwards, when the chamfering polishing mechanism 150 moves downwards to above the magnet raw material clamping mechanism, the right hand is kept stationary by the operator, the chamfering polishing mechanism 150 is held by the left hand to rotate left and right, after the chamfering polishing mechanism rotates to a proper angle and then becomes slightly rotated, the self-locking clamping groove 260 below the self-locking boss 250 is detected by the intelligent self-locking mechanism, the self-locking boss 250 is controlled to protrude and be inserted into the self-locking clamping groove 260, thereby fixing the angle of the chamfering polishing mechanism 150, then the left hand is released, the up and down movement of the second rotating wheel is controlled by the right hand to control the chamfering polishing mechanism 150 to chamfer the magnet raw material, and the polishing angle of the chamfering polishing mechanism 150 can be flexibly adjusted, the polishing quality is improved, and the working efficiency is improved.
The foregoing description of the preferred embodiments of the utility model is not intended to be limiting, but rather is intended to cover all modifications, equivalents, alternatives, and improvements that fall within the spirit and scope of the utility model.