CN211027699U - Multi-station rotary feeding top-breaking waste discharge machine - Google Patents

Multi-station rotary feeding top-breaking waste discharge machine Download PDF

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Publication number
CN211027699U
CN211027699U CN201921555083.5U CN201921555083U CN211027699U CN 211027699 U CN211027699 U CN 211027699U CN 201921555083 U CN201921555083 U CN 201921555083U CN 211027699 U CN211027699 U CN 211027699U
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hole
fixed
jig
roller
waste
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张宁宁
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Suzhou Lingyu Electronic Technology Co Ltd
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Suzhou Lingyu Electronic Technology Co Ltd
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Abstract

The utility model discloses a disconnected machine of wasting discharge in top of rotatory material loading of multistation. This disconnected waste discharging machine in top includes base plate and carousel, fixed two go up the module on the base plate, circumference array a plurality of moves the module down on the carousel, it is located the carousel top to go up the module, it includes the last tool that can sharp lift to go up the module, go up tool lower surface mounting has on a plurality of material sword and go up the locating piece, lower movable module includes down the tool and can the unsteady board that straight line goes up and down, unsteady board is located under the tool, install a plurality of top useless sword on the unsteady board, lower tool is equipped with a plurality of and dodges hole and locating piece down, the carousel can the circumferential rotation make down the tool get into in proper order under the tool, go up the fixed tablet of locating piece and lower locating piece, go up the processing downwards of material sword, top useless sword is gone up the. The utility model discloses have automatic waste discharge unloading down, practice thrift the manual work, production efficiency is high, the effect that the security performance is high.

Description

Multi-station rotary feeding top-breaking waste discharge machine
Technical Field
The utility model relates to a 3C parts machining device, in particular to disconnected machine of wasting discharge in top of rotatory material loading of multistation.
Background
Each corner of life production is applied to the 3C product, and the 3C product contains a large amount of little and thin, special-shaped 3C parts, and the 3C part has the process of tablet, lower tablet in blanking, welding, and tablet is opened for processing tool about the current, especially at many disjunctor weldments, and the workman need will weld the back and manually get the material, shakes the waste material of breaking and arrange useless with the hand, and its defect lies in: the safety device has the advantages of large labor requirement, low production efficiency, poor placement position degree and easy damage to the arms of workers.
SUMMERY OF THE UTILITY MODEL
In order to solve one or more of the above-mentioned problems, the utility model provides a disconnected machine of wasting discharge in top of rotatory material loading of multistation.
According to one aspect of the utility model, the multi-station rotary feeding top-breaking waste discharge machine comprises a base plate and a rotary table, a plurality of roller assemblies are fixed on the base plate in a circumferential array manner, the rotary table is placed on the roller assemblies, the base plate is connected with a driving part which is rotationally connected with the rotary table, two upper modules are fixed on the base plate, a plurality of lower moving modules are arranged on the rotary table in a circumferential array manner, the upper modules are positioned above the rotary table, a rotary joint is fixed on the base plate, the upper end of the rotary joint passes through the rotary table and is connected with the lower moving modules through a pipeline,
the upper die set comprises an upper jig which can be lifted linearly, the lower surface of the upper jig is provided with a plurality of upper punching knives and upper positioning blocks,
the lower movable die set comprises a lower jig and a floating plate capable of lifting linearly, the floating plate is positioned under the lower jig, a plurality of top waste cutters are arranged on the floating plate, the lower jig is provided with a plurality of avoiding holes and a lower positioning block, the lower positioning block is matched with the upper positioning block, the upper material cutters are positioned above the avoiding holes, the top waste cutters are positioned below the avoiding holes,
the carousel can the circumferential rotation make down the tool get into in proper order under the tool, goes up the fixed tablet of locating piece and lower locating piece, goes up the processing of stamping knife downwards, and the top is useless the sword and is pushed up the waste discharge. The beneficial effects are as follows: firstly, the device realizes automatic waste discharge and blanking, saves labor, has high production efficiency, can effectively protect products and avoids human factor errors; secondly, the turntable rotates to enable the lower movable module to be switched among the material placing station, the processing station and the material placing station, only the upper module performs blanking, the lower movable module performs top breaking, waste is automatically discharged, and meanwhile, the safety performance of material feeding and discharging is high; thirdly, a plurality of working procedures of discharging, processing, waste discharging, material taking and the like can be carried out simultaneously, so that the production efficiency of the product is greatly improved; fourthly, an upper positioning block and a lower positioning block are arranged, and products are positioned up and down, so that the position precision and the processing precision are high; fifthly, the hollow rotary platform is adopted to drive the rotary table to rotate, the rotation is stable, the rotation power is large, and meanwhile, the rotary joint is arranged, so that the electric and gas connecting lines are integrally connected, and the connection safety performance is improved.
In some embodiments, the driving part comprises a hollow rotating platform and a driving motor, the hollow rotating platform comprises a housing, an input end and a rotating end, the input end is connected to one side of the housing, a driving gear is centrally installed on the input end, the rotating end is installed in a central hole of the housing, a driven gear is arranged below the circumferential surface of the rotating end, the driving gear is meshed with the driven gear,
the rotating end is fixed below the edge of a center hole of the rotating disc, the shell is fixed on a height-increasing table of the base plate, and the driving motor penetrates through a motor hole of the base plate and is connected with the input end.
In some embodiments, the roller assembly comprises a roller, a roller seat and a roller shaft, the lower end of the roller seat extends towards two sides and is respectively formed into an ear plate, the middle section of the upper end of the roller seat is inwards concave to form a rectangular groove, two upper end plates of the rectangular groove are respectively formed with a shaft hole,
the through-hole connection base plate that the screw passed the otic placode, the roller passes the shaft hole and fixes at the upper end plate, and the roller is located the rectangular channel, and the roller is connected through the bearing at the roller both ends.
In some embodiments, a baffle is screwed on an upper end plate, the baffle is positioned at the lower end of the shaft hole, one end of the roller shaft forms a large-diameter baffle shoulder, the circumferential surface of the other end forms a notch groove, and the upper end of the baffle is positioned in the notch groove.
In some embodiments, a heightening table is fixed on the base plate, a threading hole is arranged in the center of the heightening table, a abdicating hole is arranged on the base plate right below the threading hole,
the connecting seat passes first through-hole and cavity rotary platform's centre bore, and the connecting seat lower extreme is fixed on the high platform of pad, and the cover is worn to overlap on the centre bore of connecting seat and is connected with rotary joint, and lower movable mould group passes through rotary joint connection control assembly, and pneumatic component and the electric control spare of lower movable mould group are connected respectively to rotary joint's a plurality of output, and the input line of rotary joint lower extreme passes first through-hole connection control assembly.
In some embodiments, the rotary joint is an integrated gas-electric adapter, the rotary joint includes a moving shaft and a stationary main pipe, the moving shaft is rotatably connected to the stationary main pipe through a bearing, an electric output end is provided at the center of the upper surface of the moving shaft, a plurality of pneumatic joints are provided on the circumferential surface of the moving shaft, a plurality of pneumatic input ends are provided on the circumferential surface of the stationary main pipe, an electric input end is provided on the lower surface of the stationary main pipe, and the stationary main pipe penetrates through the central hole of the connecting base and is fixed at.
In some embodiments, a plurality of solenoid valve circumferential arrays are fixed on the upper surface of the turntable, a top exhaust cylinder of the lower moving module is connected with the solenoid valves through air pipes,
the turntable is also provided with a cylinder hole, the top exhaust gas cylinder penetrates through the cylinder hole, the two ends of the cylinder hole are provided with process through holes, and an air pipe or an electric wire penetrates through the process through holes.
In some embodiments, the upper module further comprises an upper air cylinder fixed on the side top plate of the side frame, the upper fixture is connected with the telescopic end of the upper air cylinder,
the lower moving die set also comprises a top waste gas cylinder, the lower jig is fixed on the lower frame, the top waste gas cylinder is fixed below the turntable, the telescopic end of the top waste gas cylinder is connected with the floating plate,
the first guide pillar is fixed on the upper jig, the upper guide sleeves are respectively installed at four corners of the side top plate, the lower guide sleeves are respectively installed at four corners of the lower jig, the upper end of the first guide pillar is connected with the upper guide sleeves in a sliding mode, and the rotary table can rotate circumferentially to enable the lower end of the first guide pillar to enter the position right above the lower guide sleeves.
In some embodiments, the lower jig fixes four second guide pillars near four corners, four second guide sleeves are fixed at four corners of the floating plate, and the second guide pillars are sleeved in the second guide sleeves.
In some embodiments, the upper module further comprises an upper backing plate, the upper backing plate is fixed on the upper jig, a guide screw is fixed in the middle of two ends of the upper backing plate, the upper end of the guide screw slides in the guide hole of the side top plate,
the lower moving module also comprises a lower backing plate which is fixed on the lower frame and connected below the lower jig, the lower backing plate is provided with through holes which are the same as the avoidance holes,
the telescopic links of the upper air cylinder and the top waste air cylinder are provided with quick connectors, each quick connector is matched with a fixed block, the end part of each quick connector is a large-diameter sliding ring, each fixed block is provided with a C-shaped track, and the sliding rings can slide in the C-shaped tracks.
Drawings
Fig. 1 is a three-dimensional schematic view of a multi-station rotary feeding top-breaking waste discharge machine according to an embodiment of the present invention;
FIG. 2 is a schematic top view of the multi-station rotary-loading top-breaking waste-discharging machine shown in FIG. 1;
FIG. 3 is a schematic cross-sectional view A-A of the multi-station rotary-loading top-breaking waste discharge machine shown in FIG. 2;
fig. 4 is a three-dimensional schematic view of the idler assembly shown in fig. 1;
FIG. 5 is a three-dimensional schematic view of the sideframe of FIG. 1;
FIG. 6 is a three-dimensional schematic view of the upper die set shown in FIG. 1;
FIG. 7 is a three-dimensional schematic view of the lower moving die set shown in FIG. 1;
FIG. 8 is a three-dimensional exploded view of the lower moving die set shown in FIG. 7;
FIG. 9 is a three-dimensional schematic view of the driving portion shown in FIG. 1;
FIG. 10 is a three-dimensional schematic view of the hollow rotating platform of FIG. 9;
FIG. 11 is a three-dimensional schematic view of the rotary joint of FIG. 1;
a base plate 1, a relief hole 101, a motor hole 102, a heightening table 11, a connecting seat 12, a U-shaped hole 121, a round hole 122, a fixing ring 123, a quick coupler 13, a fixing block 14,
the rotary table 2, the first through hole 21, the cylinder hole 22, the process through hole 23,
an upper die set 3, an upper jig 31, an upper pressure cylinder 32, an upper punching knife 33, an upper positioning block 34, a first guide post 35, an upper guide sleeve 36, an upper backing plate 37, a guide screw 38,
the idler assembly 4, the roller 41, the roller seat 42, the lug plate 421, the rectangular groove 422, the shaft hole 423, the upper end plate 424, the roller shaft 43, the shoulder 431, the notch groove 432, the baffle 44,
a driving part 5, a hollow rotary platform 51, a shell 511, an input end 512, a rotating end 513, a driving gear 514, a driven gear 515, a driving motor 52,
a rotary joint 6, a moving shaft 61, a static main pipe 62, an electric output end 63, a pneumatic joint 64, a pneumatic input end 65, an electric input end 66,
side frames 7, side top plates 71, main wall plates 72, lower bottom plates 73, side wall plates 74, lower frames 8,
the device comprises a lower moving die set 9, a lower jig 91, an avoidance hole 911, a waste gas ejection cylinder 92, a floating plate 93, a waste gas ejection cutter 94, a lower positioning block 95, a lower guide sleeve 96, a lower backing plate 97, a second guide pillar 98, a second guide sleeve 99 and an electromagnetic valve 10.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings. It should be noted that the terms "front," "back," "left," "right," "upper" and "lower" used in the following description refer to directions in the drawings, and the terms "inner" and "outer" refer to directions toward and away from, respectively, the geometric center of a particular component.
Fig. 1 to 11 schematically show a multi-station rotary feeding ejection and waste discharge machine according to an embodiment of the present invention. As shown in the figure, the device comprises a substrate 1 and a turntable 2, a plurality of carrier roller assemblies 4 are fixed on the substrate 1 in a circumferential array manner, the turntable 2 is placed on the carrier roller assemblies 4, the substrate 1 is connected with a driving part 5, the driving part 5 is rotationally connected with the turntable 2, two upper die sets 3 are fixed on the substrate 1, a plurality of lower moving die sets 9 are arranged on the turntable 2 in a circumferential array manner, the upper die sets 3 are positioned above the turntable 2, a rotary joint 6 is fixed on the substrate 1, the upper end of the rotary joint 6 penetrates through the turntable 2 and is connected with the lower moving die sets 9 through a pipeline,
the upper die set 3 comprises an upper jig 31 capable of lifting linearly, a plurality of upper punching knives 33 and upper positioning blocks 34 are arranged on the lower surface of the upper jig 31,
the lower moving die set 9 comprises a lower jig 91 and a floating plate 93 capable of lifting linearly, the floating plate 93 is positioned under the lower jig 91, a plurality of top waste cutters 94 are arranged on the floating plate 93, the lower jig 91 is provided with a plurality of avoiding holes 911 and a lower positioning block 95, the lower positioning block 95 is matched with the upper positioning block 34, the upper punch 33 is positioned above the avoiding holes 911, the top waste cutters 94 are positioned below the avoiding holes 911,
the turntable 2 can rotate circumferentially to enable the lower jig 91 to enter the position under the upper jig 31 in sequence, the upper positioning block 34 and the lower positioning block 95 fix the material piece, the upper punching knife 33 processes downwards, and the waste pushing knife 94 pushes upwards to discharge waste. The beneficial effects are as follows: firstly, the device realizes automatic waste discharge and blanking, saves labor, has high production efficiency, can effectively protect products and avoids human factor errors; secondly, the turntable 2 rotates to enable the lower movable die set 4 to be switched among the discharging station, the processing station and the discharging station, only the upper die set 3 performs blanking, the lower movable die set 4 is broken, waste is automatically discharged, and meanwhile, the safety performance of charging and discharging is high; thirdly, a plurality of working procedures of discharging, processing, waste discharging, material taking and the like can be carried out simultaneously, so that the production efficiency of the product is greatly improved; fourthly, an upper positioning block 34 and a lower positioning block 95 are arranged to position the product up and down, so that the position precision and the processing precision are high; fifthly, the hollow rotary platform 51 is adopted to drive the rotary table 2 to rotate, the rotation is stable, the rotation power is large, and meanwhile, the rotary joint 6 is arranged, so that the electric and gas connecting lines are integrally connected, and the connection safety performance is improved.
Preferably, the driving part 5 comprises a hollow rotating platform 51 and a driving motor 52, the hollow rotating platform 51 comprises a housing 511, an input end 512 and a rotating end 513, the input end 512 is connected to the lower side of the housing 511, a driving gear 514 is installed at the center of the input end 512, the rotating end 513 is installed in the central hole of the housing 511, a driven gear 515 is installed below the circumferential surface of the rotating end 513, the driving gear 514 is engaged with the driven gear 515,
the rotating end 513 is fixed below the edge of the central hole of the turntable 2, the housing 511 is fixed on the elevating platform 11 of the substrate 1, and the driving motor 52 passes through the motor hole 102 of the substrate 1 to be connected with the input end 512. The beneficial effects are as follows: the hollow rotary platform 51 of the arrangement can output larger torque and has accurate transmission.
Preferably, the driving gear 514 and the driven gear 515 are helical gears. The beneficial effects are as follows: helical gears can have a greater output torque.
Preferably, the idler assembly 4 comprises a roller 41, a roller seat 42 and a roller shaft 43, the lower end of the roller seat 42 extends towards two sides to form lug plates 421, the middle section of the upper end of the roller seat 42 is concave inwards to form a rectangular groove 422, two upper end plates 424 of the rectangular groove 422 are respectively provided with a shaft hole 423,
the screw member passes through the through hole of the ear plate 421 to connect the base plate 1, the roller shaft 43 passes through the shaft hole 423 and is fixed on the upper end plate 424, the roller 41 is located in the rectangular groove 422, and the two ends of the roller 41 are connected with the roller shaft 43 through bearings. The beneficial effects are as follows: the idler roller assembly 4 of this setting rotates in a flexible way, and support intensity is high.
Preferably, a stopper 44 is threadedly coupled to an upper end plate 424, the stopper 44 is positioned at a lower end of the shaft hole 423, a large-diameter stopper 431 is formed at one end of the roller shaft 43, a cut groove 432 is formed at a circumferential surface of the other end, and an upper end of the stopper 44 is positioned in the cut groove 432. The beneficial effects are as follows: the connection mode of this setting, it is fixed firm, simple to operate.
Preferably, a heightening table 11 is fixed on the base plate 1, a threading hole is arranged at the center of the heightening table 11, a abdicating hole 101 is arranged on the base plate 1 under the threading hole,
connecting seat 12 passes first through-hole 21 and cavity rotary platform 51's centre bore, connecting seat 12 lower extreme is fixed on bed hedgehopping platform 11, the cover is worn to be connected with rotary joint 6 in the centre bore upper end of connecting seat 12, lower movable mould group 9 passes through rotary joint 6 connection control subassembly, pneumatic component and the electric control spare of lower movable mould group 9 are connected respectively to a plurality of output of rotary joint 6, the input line of rotary joint 6 lower extreme passes first through-hole 21 connection control subassembly. The beneficial effects are as follows: the rotary joint 6 is flexible in rotation and suitable for gas and electricity input of a rotating occasion.
Preferably, the rotary joint 6 is an integrated gas-electric adapter, the rotary joint 6 includes a moving shaft 61 and a static main pipe 62, the moving shaft 61 is rotatably connected to the static main pipe 62 through a bearing, an electric output end 63 is arranged at the center of the upper surface of the moving shaft 61, a plurality of pneumatic joints 64 are arranged on the circumferential surface of the moving shaft 61, a plurality of pneumatic input ends 65 are arranged on the circumferential surface of the static main pipe 62, an electric input end 66 is arranged on the lower surface of the static main pipe 62, and the static main pipe 62 penetrates through the central hole of the connecting base 12 and is fixed at the upper.
Preferably, a plurality of electromagnetic valves 10 are circumferentially arrayed and fixed on the upper surface of the turntable 2, the top waste gas cylinder 92 of the lower movable die set 9 is connected with the electromagnetic valves 10 through air pipes, each electromagnetic valve 10 is connected with one pneumatic connector 64 through an air pipe, the electric output end 63 is connected with the magnetic ring of the top waste gas cylinder 92 or the electromagnetic valve 10,
preferably, the turntable 2 is further provided with a cylinder hole 22, the top exhaust cylinder 92 penetrates through the cylinder hole 22, the two ends of the cylinder hole 22 are provided with process through holes 23, and an air pipe or an electric wire penetrates through the process through holes 23. The beneficial effects are as follows: this setting has improved the security performance of connecting wire greatly, reduces equipment volume simultaneously.
Preferably, the upper end of the connecting base 12 is provided with a U-shaped hole 121, the screw member passes through the U-shaped hole 121 to fix the stationary main pipe 62, the circumferential surface of the connecting base 12 is provided with two oblong holes 122, the air pipe passes through the oblong holes 122 to be connected with the pneumatic input end 65,
the lower end of the connecting base 12 extends outwards to form a fixing ring 123, and the screw thread passes through the through hole of the fixing ring 123 to connect the pad elevation 11. The beneficial effects are as follows: the connecting seat 12 is simple in structure, compact in size and firm in connection.
Preferably, the upper module 3 further comprises an upper air cylinder 32, the upper air cylinder 32 is fixed on the side top plate 71 of the side frame 7, the upper fixture 31 is connected with the telescopic end of the upper air cylinder 32,
the lower moving die set 9 further comprises a top waste cylinder 92, the lower jig 91 is fixed on the lower frame 8, the top waste cylinder 92 is fixed under the turntable 2, the telescopic end of the top waste cylinder 92 is connected with a floating plate 93,
the first guide pillar 35 is fixed on the upper jig 31, the upper guide sleeves 36 are respectively installed at four corners of the side top plate 71, the lower guide sleeves 96 are respectively installed at four corners of the lower jig 91, the upper end of the first guide pillar 35 is slidably connected with the upper guide sleeves 36, and the turntable 2 can rotate circumferentially to enable the lower end of the first guide pillar 35 to enter the position right above the lower guide sleeves 96.
Preferably, the lower jig 91 fixes four second guide posts 98 near four corners, four second guide sleeves 99 are fixed at four corners of the floating plate 93, and the second guide posts 98 are inserted in the second guide sleeves 99.
Preferably, go up module 3 and still include upper padding plate 37, upper padding plate 37 is fixed on last tool 31, and upper padding plate 37 four corners is equipped with the recess respectively, and first guide pillar 35 is equipped with the holding ring, and the holding ring clamping is in the recess, and its beneficial effect is: the upper backing plate 37 is arranged, so that the upper jig 31 can be effectively protected, and a good mounting platform is provided.
The middle of the two ends of the upper backing plate 37 is fixed with a guide screw 38, the upper end of the guide screw 38 slides in the guide hole of the side top plate 71, and the beneficial effects are that: the guide screw 38 is provided to further increase the straightness of the vertical movement.
Lower movable mould group 9 still includes lower bolster 97, and lower bolster 97 is fixed on undercarriage 8 and is connected under tool 91, and lower bolster 97 is equipped with and dodges the same through-hole of hole 911, and its beneficial effect is: the lower backing plate 97 is arranged, so that the lower jig 91 can be effectively protected, and a good mounting platform is provided.
Preferably, the telescopic rods of the upper pressure cylinder 32 and the top waste cylinder 92 are provided with a quick connector 13, each quick connector 13 is matched with a fixed block 14, the fixed blocks 14 are respectively fixed on the upper backing plate 37 or below the lower backing plate 97, the end parts of the quick connectors 13 are provided with large-diameter sliding rings, and each fixed block 14 is provided with a C-shaped track in which the sliding rings can slide. The beneficial effects are as follows: the installation is convenient, and the adjustment and maintenance are convenient.
Preferably, the carousel 2 has a plurality of lower shelves 8 arranged in a circumferential array above it,
the lower frame 8 is two rectangular frames, a rectangular through hole is arranged in the middle of each rectangular frame, the upper hole wall of each rectangular through hole is connected with the lower backing plate 97, and the lower hole wall of each rectangular through hole is connected with the rotary table 2; the beneficial effects are as follows: the installation is convenient, and the adjustment and maintenance are convenient.
Preferably, the side frame 7 includes a lower bottom plate 73, two ends of the main wall 72 are respectively and vertically connected with one end of the side top plate 71 and one end of the lower bottom plate 73, two side walls 74 are respectively and vertically connected between two sides of the side top plate 71 and the lower bottom plate 73, and the lower bottom plate 73 is connected with the base plate 1. The beneficial effects are as follows: the side frame 7 has high strength and high stability, and has no vibration phenomenon in the processing process.
What has been described above are only some embodiments of the invention. For those skilled in the art, without departing from the inventive concept, several modifications and improvements can be made, which are within the scope of the invention.

Claims (10)

1. The utility model provides a multistation rotatory material loading's disconnected machine of wasting discharge in top, its characterized in that includes base plate (1) and carousel (2), a plurality of bearing roller subassembly (4) are fixed to circumference array on base plate (1), place carousel (2) on bearing roller subassembly (4), drive division (5) are connected to base plate (1), drive division (5) rotate to be connected carousel (2), two upper die sets (3) are fixed on base plate (1), a plurality of lower movable die set (9) of circumference array on carousel (2), upper die set (3) are located carousel (2) top, a rotary joint (6) is fixed on base plate (1), rotary joint (6) upper end is passed carousel (2) and is through the pipeline connection lower movable die set (9),
the upper die set (3) comprises an upper jig (31) capable of lifting linearly, a plurality of upper punching knives (33) and upper positioning blocks (34) are arranged on the lower surface of the upper jig (31),
the lower moving module (9) comprises a lower jig (91) and a floating plate (93) capable of lifting linearly, the floating plate (93) is located under the lower jig (91), a plurality of top waste cutters (94) are installed on the floating plate (93), a plurality of avoiding holes (911) and lower positioning blocks (95) are arranged on the lower jig (91), the lower positioning blocks (95) are matched with the upper positioning blocks (34), the upper punching cutters (33) are located above the avoiding holes (911), the top waste cutters (94) are located below the avoiding holes (911),
the rotary table (2) can rotate circumferentially to enable the lower jig (91) to sequentially enter the position under the upper jig (31), the upper positioning block (34) and the lower positioning block (95) fix material pieces, the upper punching cutter (33) processes downwards, and the top waste-discharging cutter (94) ejects waste upwards.
2. The multi-station rotary feeding ejection-breaking waste discharge machine as claimed in claim 1, wherein the driving part (5) comprises a hollow rotary platform (51) and a driving motor (52), the hollow rotary platform (51) comprises a housing (511), an input end (512) and a rotating end (513), the input end (512) is connected to one side of the housing (511), a driving gear (514) is centrally installed on the input end (512), the rotating end (513) is installed in a central hole of the housing (511), a driven gear (515) is arranged below the circumferential surface of the rotating end (513), the driving gear (514) is meshed with the driven gear (515),
the rotating end (513) is fixed below the edge of a central hole of the rotary disc (2), the shell (511) is fixed on the heightening table (11) of the substrate (1), and the driving motor (52) penetrates through a motor hole (102) of the substrate (1) and is connected with the input end (512).
3. The multi-station rotary feeding top-breaking waste discharge machine according to claim 1, wherein the carrier roller assembly (4) comprises a roller (41), a roller seat (42) and a roller shaft (43), the lower end of the roller seat (42) extends towards two sides to form lug plates (421), the middle section of the upper end of the roller seat (42) is inwards concave to form a rectangular groove (422), two upper end plates (424) of the rectangular groove (422) are respectively provided with a shaft hole (423),
the screw passes the through-hole of otic placode (421) is connected base plate (1), roller (43) pass shaft hole (423) and fix upper end plate (424), roller (41) are located in rectangular channel (422), roller (41) both ends are passed through the bearing and are connected roller (43).
4. A multi-station rotary-feeding top-breaking waste discharge machine according to claim 3, characterized in that a baffle (44) is connected to one of the upper end plates (424) in a threaded manner, the baffle (44) is located at the lower end of the shaft hole (423), one end of the roller shaft (43) forms a large-diameter retaining shoulder (431) and the circumferential surface of the other end forms a notch groove (432), and the upper end of the baffle (44) is located in the notch groove (432).
5. The multi-station rotary feeding top breaking waste discharging machine as claimed in claim 2, wherein the base plate (1) is fixed with the heightening table (11), a threading hole is arranged at the center of the heightening table (11), a yielding hole (101) is arranged on the base plate (1) under the threading hole,
the connecting seat (12) penetrates through a first through hole (21) and a center hole of the hollow rotating platform (51), the lower end of the connecting seat (12) is fixed on the heightening platform (11), the upper end of the center hole of the connecting seat (12) is connected with the rotating joint (6) in a penetrating and sleeving manner, the lower moving module (9) is connected with a control component through the rotating joint (6), a plurality of output ends of the rotating joint (6) are respectively connected with a pneumatic piece and an electric control piece of the lower moving module (9), and an input line at the lower end of the rotating joint (6) penetrates through the first through hole (21) and the control component.
6. The top of rotatory material loading of multistation cuts off waste discharge machine according to claim 5, characterized in that, rotary joint (6) are the integrative adapter of pneumoelectricity, rotary joint (6) are responsible for (62) including moving axis (61) and quiet, moving axis (61) rotate through the bearing and connect quiet person in charge (62), moving axis (61) upper surface center is equipped with electric output end (63), the periphery of moving axis (61) is equipped with a plurality of pneumatic joint (64), the periphery of quiet person in charge (62) is equipped with a plurality of pneumatic input (65), the lower surface of quiet person in charge (62) is equipped with electric input (66), quiet person in charge (62) wear the cover the centre bore of connecting seat (12) and fix the upper end of connecting seat (12).
7. A multi-station rotary feeding top-breaking waste discharge machine according to claim 1, characterized in that a plurality of solenoid valves (10) are fixed on the upper surface of the turntable (2) in a circumferential array, a top waste cylinder (92) of the lower moving module (9) is connected with the solenoid valves (10) through air pipes,
the rotary table (2) is further provided with a cylinder hole (22), the top waste cylinder (92) penetrates through the cylinder hole (22), process through holes (23) are formed in two ends of the cylinder hole (22), and air pipes or electric wires penetrate through the process through holes (23).
8. The multi-station rotary feeding ejection scrap discharge machine according to claim 1, wherein the upper die set (3) further comprises an upper air cylinder (32), the upper air cylinder (32) is fixed on a side top plate (71) of the side frame (7), the upper jig (31) is connected with a telescopic end of the upper air cylinder (32),
the lower moving module (9) further comprises a top waste cylinder (92), the lower jig (91) is fixed on the lower frame (8), the top waste cylinder (92) is fixed below the turntable (2), the telescopic end of the top waste cylinder (92) is connected with the floating plate (93),
the first guide pillar (35) is fixed on the upper jig (31), the upper guide sleeves (36) are respectively installed at four corners of the side top plate (71), the lower guide sleeves (96) are respectively installed at four corners of the lower jig (91), the upper end of the first guide pillar (35) is connected with the upper guide sleeves (36) in a sliding mode, and the rotary table (2) can rotate circumferentially to enable the lower end of the first guide pillar (35) to enter the position right above the lower guide sleeves (96).
9. The multi-station rotary feeding ejection-cutting waste discharge machine as claimed in claim 8, wherein the lower jig (91) is fixed with four second guide posts (98) near four corners, four second guide sleeves (99) are fixed at four corners of the floating plate (93), and the second guide posts (98) are sleeved in the second guide sleeves (99).
10. The multi-station rotary feeding ejection-breaking waste discharge machine as claimed in claim 8, wherein the upper die set (3) further comprises an upper backing plate (37), the upper backing plate (37) is fixed on the upper jig (31), a guide screw (38) is fixed in the middle of each of two ends of the upper backing plate (37), the upper end of the guide screw (38) slides in a guide hole of the side top plate (71),
the lower moving module (9) further comprises a lower backing plate (97), the lower backing plate (97) is fixed on the lower frame (8) and connected below the lower jig (91), the lower backing plate (97) is provided with a through hole which is the same as the avoiding hole (911),
the telescopic rods of the upper air cylinder (32) and the top waste air cylinder (92) are provided with quick connectors (13), each quick connector (13) is matched with a fixed block (14), the end part of each quick connector (13) is a large-diameter sliding ring, each fixed block (14) is provided with a C-shaped track, and each sliding ring can slide in the C-shaped track.
CN201921555083.5U 2019-09-18 2019-09-18 Multi-station rotary feeding top-breaking waste discharge machine Active CN211027699U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921555083.5U CN211027699U (en) 2019-09-18 2019-09-18 Multi-station rotary feeding top-breaking waste discharge machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921555083.5U CN211027699U (en) 2019-09-18 2019-09-18 Multi-station rotary feeding top-breaking waste discharge machine

Publications (1)

Publication Number Publication Date
CN211027699U true CN211027699U (en) 2020-07-17

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921555083.5U Active CN211027699U (en) 2019-09-18 2019-09-18 Multi-station rotary feeding top-breaking waste discharge machine

Country Status (1)

Country Link
CN (1) CN211027699U (en)

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