Quick adjustment processing platform of multiaxis drilling machine
Technical Field
The utility model relates to the technical field of drilling machine clamps, in particular to a rapid adjusting machining table of a multi-spindle drilling machine.
Background
The traditional quick positioning fixture for the numerical control multi-spindle drilling machine is inconvenient to manually rotate and adjust the fixture, the direction of the fixture is inconvenient to adjust according to requirements, the fixing effect on a machined part is poor, and certain using defects exist.
The prior publication No. CN216398833U discloses a quick positioning fixture for a numerical control multi-spindle drilling machine, which comprises a drilling machine installation table surface, an installation component, a clamping component and a pressing rod, wherein the installation component is installed on the upper end surface of the drilling machine installation table surface, the installation component is arranged on the upper end surface of the installation component, the clamping component is fixedly installed on the upper end surface of the installation board, the upper end surface of the clamping component is connected with a second pressing plate, the rear end of the clamping component is connected with a rotating rod in a penetrating manner, the pressing rod is connected in the installation board in a penetrating manner and is positioned on the right side of the clamping component, the lower end of the pressing rod is connected with a hard rubber block arranged in the installation component, the quick positioning fixture for the numerical control multi-spindle drilling machine is convenient for manually rotating the adjustment fixture, the direction of the fixture is convenient to adjust according to requirements, and meanwhile, the problem that the fixing effect of the positioning fixture for the current numerical control multi-spindle drilling machine on a machined piece is poor is solved.
However, when the quick positioning clamp for the numerical control multi-spindle drilling machine is used, the corners of a machined part are not convenient to fix, the machined part is easy to deviate during machining, deviation of drilling positions is caused, and machining cost is increased.
Disclosure of utility model
The utility model aims to provide a rapid adjustment processing table of a multi-spindle drilling machine, which solves the problems that when the rapid positioning clamp for the numerical control multi-spindle drilling machine is used, the corners of a machined part are inconvenient to fix, the machined part is easy to deviate during processing, the drilling position is deviated, and the processing cost is increased.
The utility model provides a rapid adjustment processing table of a multi-spindle drilling machine, which comprises a processing table, a connecting assembly, a fixing assembly and a transmission assembly, wherein the connecting assembly comprises two movable seats, two connecting seats, a fixed shaft and fixed sheets, the two movable seats are respectively connected with the processing table in a sliding manner and are respectively positioned in the processing table, the plurality of connecting seats are respectively fixedly connected with the movable seats and are respectively positioned on the outer sides of the movable seats, the plurality of fixed shafts are respectively connected with the connecting seats in a rotating manner and pass through the connecting seats, the plurality of fixed sheets are respectively connected with the fixed shaft in a disassembling manner and are respectively positioned on the outer sides of the fixed shaft, and the fixed assembly and the transmission assembly are respectively connected with the processing table.
The connecting assembly further comprises a plurality of sliding seats, a plurality of connecting rods and supporting seats, the sliding seats are respectively connected with the processing table in a sliding mode and are respectively located in the processing table, the connecting rods are respectively connected with the fixing shafts in a rotating mode, the other ends of the connecting rods are respectively connected with the sliding seats in a rotating mode, the supporting seats are respectively connected with the sliding seats in a fixed mode, and the supporting seats are respectively located at the tops of the sliding seats.
The fixing assembly comprises a plurality of guide strips, rotating seats, fixing seats and fixing bolts, wherein the guide strips are respectively connected with the supporting seats in a rotating mode and are respectively located at the tops of the supporting seats, the rotating seats are respectively connected with the guide strips in a fixed mode and are respectively located at the tops of the guide strips, the fixing seats are respectively connected with the rotating seats in a fixed mode and are respectively located at the tops of the processing tables in a fixed mode, the fixing seats are respectively connected with the rotating seats in a fixed mode and are respectively located at the tops of the processing tables, and the fixing bolts are respectively connected with the supporting seats in a threaded mode and respectively penetrate through the rotating seats.
The transmission assembly comprises a screw rod, a rotary table and a rotating handle, wherein the screw rod is rotationally connected with the processing table and penetrates through the processing table, the rotary table is fixedly connected with the screw rod and is positioned at the outer side of the screw rod, and the rotating handle is rotationally connected with the rotary table and is positioned at the outer side of the rotary table.
The transmission assembly further comprises a fixed disc and a limiting strip, the fixed disc is fixedly connected with the screw rod and located on the outer side of the screw rod, and one limiting strip is arranged between the fixed disc and the processing table.
According to the rapid adjustment processing table of the multi-spindle drilling machine, the processing table provides a supporting effect for a workpiece, the movable seat provides a supporting effect for the connecting seat, the connecting seat provides a supporting effect for the fixed shaft, the fixed shaft provides a supporting and linkage effect for the connecting rod, the fixed plate provides a fixing effect for the fixed shaft, when the rapid adjustment processing table is used by equipment, the transmission assembly rotates to drive the movable seat to move, meanwhile, the connecting rod, the sliding seat and the supporting seat are driven to move, meanwhile, the fixing assembly is driven to synchronously move, the corners of the workpiece are conveniently fixed, and the problems that when the rapid positioning clamp for the numerical control multi-spindle drilling machine is used, the corners of the workpiece are inconvenient to fix, the workpiece is easy to deviate in processing, deviation of drilling positions is caused, and the processing cost is increased are solved.
Drawings
In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below.
Fig. 1 is a schematic view showing the overall structure of a quick adjustment table of a multi-spindle drilling machine according to a first embodiment of the present utility model.
Fig. 2 is a schematic structural view of a connection assembly according to a first embodiment of the present utility model.
Fig. 3 is a schematic structural view of a fixing assembly according to a first embodiment of the present utility model.
Fig. 4 is a schematic structural view of a transmission assembly according to a first embodiment of the present utility model.
In the figure, a 101-processing table, a 102-moving seat, a 103-connecting seat, a 104-fixed shaft, a 105-fixed seat, a 106-sliding seat, a 107-connecting rod, a 108-supporting seat, a 109-guide strip, a 110-rotating seat, a 111-fixed seat, a 112-fixed bolt, a 113-screw rod, a 114-turntable, a 115-rotating handle, a 116-fixed disc and a 117-limit strip are arranged.
Detailed Description
The following detailed description of embodiments of the utility model, examples of which are illustrated in the accompanying drawings and, by way of example, are intended to be illustrative, and not to be construed as limiting, of the utility model.
The first embodiment of the application is as follows:
Referring to fig. 1 to 4, fig. 1 is a schematic overall structure of a rapid adjustment processing table for a multi-spindle drilling machine according to a first embodiment of the present utility model, fig. 2 is a schematic structural diagram of a connection assembly according to a first embodiment of the present utility model, fig. 3 is a schematic structural diagram of a fixing assembly according to a first embodiment of the present utility model, and fig. 4 is a schematic structural diagram of a transmission assembly according to a first embodiment of the present utility model, the present utility model provides a rapid adjustment processing table for a multi-spindle drilling machine, which includes a moving group 102, a connection base 103, a fixed shaft 104, a fixing piece 105, a sliding base 106, a connecting rod 107 and a supporting base 108, the fixing assembly includes a guide bar 109, a rotating base 110, a fixing base 111 and a fixing bolt 112, and the transmission assembly includes a screw 113, a turntable 114, a rotating handle 115, a fixing disc 116 and a limiting bar 117.
For this embodiment, the number of moving groups 102 is two, two moving groups 102 are respectively connected with the processing table 101 in a sliding manner, and are respectively located in the processing table 101, the number of connecting seats 103 is a plurality of, a plurality of connecting seats 103 are respectively connected with the moving groups 102 in a fixed manner, and are respectively located on the outer sides of the moving groups 102, the number of fixing shafts 104 is a plurality of, a plurality of fixing shafts 104 are respectively connected with the connecting seats 103 in a rotating manner, and pass through the connecting seats 103, the number of fixing plates 105 is a plurality of, a plurality of fixing plates 105 are respectively connected with the fixing shafts 104 in a detachable manner, and are respectively located on the outer sides of the fixing shafts 104, the fixing assemblies and the transmission assemblies are respectively connected with the processing table 101, the processing table 101 provides a supporting effect for workpieces, the moving groups 102 are respectively connected with the connecting seats 103, the connecting seats 103 provide a supporting effect for the fixing shafts 104, the fixing shafts 104 provide a supporting and a linkage effect for the connecting rods 107, the fixing shafts 105 are respectively connected with the connecting seats 103, and the connecting rods 104 are simultaneously driven by the fixing shafts 104 to rotate, and the connecting rods 108 are simultaneously driven by the fixing assemblies and the connecting rods 106 to move synchronously.
The number of the sliding seats 106 is multiple, the sliding seats 106 are respectively connected with the processing table 101 in a sliding manner and are respectively located in the processing table 101, the number of the connecting rods 107 is multiple, one ends of the connecting rods 107 are respectively connected with the fixing shafts 104 in a rotating manner, the other ends of the connecting rods 107 are respectively connected with the sliding seats 106 in a rotating manner, the number of the supporting seats 108 is multiple, the supporting seats 108 are respectively fixedly connected with the sliding seats 106 and are respectively located at the tops of the sliding seats 106, the sliding seats 106 provide supporting and sliding functions for the connecting rods 107 and the supporting seats 108, the connecting rods 107 connect the sliding seats 106 with the moving groups 102, the sliding seats 106 are conveniently driven to move when the moving groups 102 move, the supporting seats 108 provide supporting functions for the fixing assemblies, and the sliding seats 106 are conveniently driven to respectively move through transmission of the connecting rods 107 when the moving groups 102 move, so that corners of workpieces are conveniently fixed.
Secondly, the number of the guide bars 109 is a plurality, the guide bars 109 are respectively connected with the supporting seat 108 in a rotating way and are respectively located at the top of the supporting seat 108, the number of the rotating seats 110 is a plurality, the rotating seats 110 are respectively fixedly connected with the guide bars 109 and are respectively located at the top of the guide bars 109, the number of the fixing seats 111 is a plurality, the fixing seats 111 are respectively fixedly connected with the rotating seats 110 and are respectively located at the top of the processing table 101, the number of the fixing bolts 112 is a plurality, the fixing bolts 112 are respectively connected with the supporting seat 108 in a threaded way and respectively penetrate through the rotating seats 110, the guide bars 109 provide a guiding function for the rotating seats 110, the rotating seats 110 provide a supporting function for the fixing seats 111, the fixing seats 110 are conveniently fixed through the fixing bolts 112, and when fixing different workpieces are fixed, the fixing seats 111 are conveniently adjusted by unscrewing the fixing bolts 112.
Again, the screw 113 is rotatably connected to the processing table 101, and passes through the processing table 101, the turntable 114 is fixedly connected to the screw 113, and is located at the outer side of the screw 113, the knob 115 is rotatably connected to the turntable 114, and is located at the outer side of the turntable 114, and the screw 113 is a bidirectional screw, and when the apparatus is in use, the screw 113 is conveniently rotated by the knob 115 and the turntable 114.
Finally, the fixing plate 116 is fixedly connected with the screw 113 and is located at the outer side of the screw 113, a limiting bar 117 is arranged between the fixing plate 116 and the processing table 101, the fixing plate 116 provides a fixing function for the screw 113, and the limiting bar 117 provides a limiting and guiding function for the fixing plate 116.
The quick adjustment processing platform of multiaxis drilling machine of this embodiment is used, processing platform 101 provides the supporting role for the machined part, remove group 102 for connecting seat 103 provides the supporting role, connecting seat 103 does fixed axle 104 provides the supporting role, fixed axle 104 does connecting rod 107 provides support and linkage effect, stationary blade 105 is right fixed axle 104 provides the fixed role, when equipment is used, through drive transmission assembly rotates, drives remove group 102 removes, drives simultaneously connecting rod 107 slide 106 with supporting seat 108 removes, drives simultaneously fixed subassembly synchronous movement is convenient for fix the corner of machined part, has solved quick positioning fixture for numerical control multiaxis drilling machine and has been inconvenient for fixing each corner of machined part when using, leads to the machined part to take place the skew when processing easily, leads to drilling position to take place the deviation, makes the problem that processing cost increases.
The foregoing disclosure is only illustrative of one or more preferred embodiments of the present application, and it is not intended to limit the scope of the claims hereof, as persons of ordinary skill in the art will understand that all or part of the processes for practicing the embodiments described herein may be practiced with equivalent variations in the claims, which are within the scope of the application.