CN212245339U - Bottom sucker separating machine - Google Patents

Bottom sucker separating machine Download PDF

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Publication number
CN212245339U
CN212245339U CN202020977517.7U CN202020977517U CN212245339U CN 212245339 U CN212245339 U CN 212245339U CN 202020977517 U CN202020977517 U CN 202020977517U CN 212245339 U CN212245339 U CN 212245339U
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China
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plate
gear
raw material
lifting
material storage
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戴震班
隋会超
张俊
应成浩
郑晨行
陈志瑶
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Wenling Vocational & Technical School
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Wenling Vocational & Technical School
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Abstract

The utility model provides a bottom sucking disc divides a machine belongs to mechanical technical field. It has solved the not high, the low problem that leads to production efficiency low of branch of current branch machine degree of automation, branch efficiency. This bottom sucking disc divides a machine, include the workstation and set up in the crane of workstation top liftable, the crane top is installed and is supplied many the material pile mounting panel that holds that mutual superimposed former material board was placed, it is provided with a plurality of gag lever posts that encircle each other and form each other to hold material pile mounting panel top, the crane internal bit is held one side of material pile mounting panel and is equipped with the belt pulley conveying mechanism who is used for transporting former material board, be provided with the connecting plate between elevating platform and the workstation, still be provided with between connecting plate and the material pile mounting panel and be used for dividing a sucking disc feed mechanism who draws each other superimposed former material board. The utility model has the advantages of improved production efficiency and stability, by a wide margin reduced the automatic application cost of enterprise, simple structure, divide and open efficiently.

Description

Bottom sucker separating machine
Technical Field
The utility model belongs to the technical field of machinery, a bottom sucking disc divides a machine is related to.
Background
In the stamping automation industry, a robot or a manipulator is generally adopted to grab a raw material plate and send the raw material plate to the next working procedure for forming. Because there is certain vacuum adsorption power or viscidity between the pile up neatly raw material board, can grab two or more raw material boards when leading to snatching raw material board, cause the shut down of production line, reduced work efficiency, still can cause the press mould to damage when serious, so just must use the branch ware to divide the piece to raw material board, the common use is magnetism branch ware and tooth-like branch ware.
The magnetic tension divider can manually adjust the length of the telescopic arm and adjust the tension height, but the tension raw material plate can only be a steel plate and cannot divide stainless steel, nonferrous metal or nonmetal; the tooth-type separating device effectively solves the problem of separating the non-ferrous metal raw material plate by using the tooth-shaped shifting fork and by means of the air pressure blowing function, but the device has a complex mechanism and relatively higher manufacturing cost, and is not suitable for high-frequency separating (fast abrasion) of small raw material plates.
Therefore, a bottom suction cup separating machine is designed to solve the problems.
Disclosure of Invention
The utility model aims at the above-mentioned problem that exists among the prior art, provide one kind and improved production efficiency and stability, by a wide margin reduced the automatic application cost of enterprise, simple structure, divide the efficient bottom sucking disc branch machine of opening.
The purpose of the utility model can be realized by the following technical proposal: a bottom sucker separating machine is characterized by comprising a workbench and a lifting frame arranged above the workbench and capable of rising and falling, wherein the lifting frame is in a rectangular frame shape and is connected with the workbench in a matching way through a plurality of guide posts, a material storage stacking mounting plate for placing a plurality of raw material plates overlapped with each other is arranged at the top of the lifting frame in the rectangular frame shape, a plurality of limiting rods which are mutually surrounded to form a containing limit for the raw material plates overlapped with each other are arranged at the top of the material storage stacking mounting plate, a belt pulley conveying mechanism for conveying the raw material plates is arranged at one side of the material storage stacking mounting plate in the lifting frame, a rectangular notch is inwards formed in the middle of the side end of the material storage stacking mounting plate close to the belt pulley conveying mechanism, a connecting plate is arranged between the lifting table and the workbench, and the connecting plate and the material storage stacking mounting plate are fixedly connected through a plurality of fixing posts, the connecting plate still be provided with between with holding the material pile buttress mounting panel and be used for carrying out the sucking disc feed mechanism that opens one's piece and absorb with the raw material board of stacking each other, workstation side be provided with the control hand wheel that is used for controlling the elevating platform and goes up and down, hold the both sides that material pile buttress mounting panel top is located raw material board still be provided with stop gear.
In the bottom sucker separating machine, the sucker separating mechanism consists of a lifting transverse plate which is arranged below the material storage stacking mounting plate and can be lifted, a pneumatic sucker which is arranged at the top of the lifting transverse plate and is used for sucking single raw material plates and a thin cylinder for controlling the lifting transverse plate to lift, the pneumatic sucker is driven by the lifting transverse plate to lift so as to enter a rectangular slot in the material storage stacking mounting plate and contact with the bottom surfaces of the raw material plates stacked at the top of the material storage stacking mounting plate, a transverse supporting plate for enabling a piston rod of the thin cylinder to extend into the cylinder is arranged below the lifting transverse plate, the piston rod of the thin cylinder penetrates out of the transverse supporting plate and is fixedly connected with the lifting transverse plate through a fixing bolt, a transverse bottom plate is also arranged below the thin cylinder, and the transverse bottom plate and the transverse supporting plate are connected together through a plurality of connecting columns, the transverse supporting plate is connected with the lifting transverse plate through a plurality of guide posts for guiding, each guide post is connected with the transverse supporting plate in a sliding way through a linear bearing, the rear end part of the lifting transverse plate is connected with a fixed tailstock, the top of the fixed tailstock is provided with a movable back push block, the position of the movable back push block is higher than that of the pneumatic sucker, and the difference between the top of the movable back push block and the top of the pneumatic suction cup is less than the distance of the thickness of one raw material plate, the sucking disc material distributing mechanism can transversely move left and right, a linear module which can transversely move left and right is arranged on the connecting plate and between the connecting plate and the transverse bottom plate, the end part of the linear module is provided with a motor part for controlling the sucking disc material distributing mechanism to move transversely left and right, thereby be provided with the slip table that is controlled by motor portion and drives horizontal bottom plate along the horizontal migration about sharp module between sharp module and the horizontal bottom plate.
In a foretell bottom sucking disc branch machine, the workstation in be equipped with and be connected with the control hand wheel and drive pivoted connecting rod by this control hand wheel, the connecting rod both ends all be provided with the lead screw lift module that can drive the elevating platform and go up and down, lead screw lift module in all wear out a guide arm, and the upper end of this guide arm all wear out the workstation and with elevating platform fixed connection.
In the above-mentioned bottom suction cup separating machine, the material storage stacking mounting plate is provided with a fixed front seat between the raw material plate and the belt pulley conveying mechanism, the fixed front seat is provided with an adjusting slot, the number of the limiting rods is four, the bottom ends of the four limiting rods are fixedly provided with mounting blocks, the mounting blocks are internally provided with strip slots, two limiting rods are arranged between the raw material plate and the fixed front seat, the mounting blocks at the bottom ends of the two limiting rods between the raw material plate and the fixed front seat extend into the adjusting slot and are fixedly connected with the adjusting slot through adjusting bolts, the material storage stacking mounting plate is also provided with adjusting slots at positions close to the bottom ends of the other two limiting rods, and the strip slots in the mounting blocks at the bottom ends of the two limiting rods are fixedly connected with the adjusting slots in the material storage stacking mounting plate stack through adjusting bolts, and a fixed front stop block is arranged at the bottom of the fixed front seat.
In the above-mentioned bottom suction cup separating machine, the limiting mechanism is composed of a fixed seat and a driving motor arranged in the fixed seat, a clapboard is arranged above the driving motor in the fixed seat, three gears which are meshed with each other are arranged at the top of the clapboard in the fixed seat, the three gears are respectively a gear I, a gear II and a gear III, the gear I is positioned at the middle position of the gear II and the gear III and is respectively meshed with the gear II and the gear III, a motor shaft of the driving motor penetrates through the partition plate and extends into the first gear to be in transmission connection with the first gear, rotatable limiting rotating cylinders are respectively arranged at the positions, corresponding to the second gear and the third gear, on the top of the fixed seat, and the two limiting rotating cylinders are respectively connected with the second gear and the third gear through rotating shafts, and the limiting rotating cylinders are provided with external threads.
In foretell bottom sucking disc divides piece machine, belt pulley conveying mechanism be two sets of and be located respectively and hold the grooved both sides of material pile mounting panel rectangle, two belt pulley conveying mechanism's one end links to each other through a connecting axle, and this connecting axle one end is worn out the crane external connection and is used for controlling the driven actuating mechanism of this belt pulley conveying mechanism.
Compared with the prior art, the pneumatic sucking disc replaces a robot in the bottom sucking disc separating machine, so that the application cost is greatly reduced; the sucking disc material distributing mechanism is simple in structure, the single raw material plate is transported by mutually matching and applying all parts, the cost is low, and the cost performance is high; the sucker material distributing mechanism has hundred percent of working stability, high-frequency working beat and ultimate working life; the pneumatic sucker, the movable rear push block and all the parts are greatly matched with each other in a high quality manner, so that the problem of non-ferrous metal and non-metal separation is solved; the bottom sucker separating machine solves the problem of comprehensive application of robots or manipulators in enterprises, improves the production efficiency and stability, and greatly reduces the automation application cost of the enterprises.
Drawings
Fig. 1 is a schematic perspective view of a bottom suction cup separating machine.
Fig. 2 is a schematic view of the structure in the bottom suction cup separating machine.
In the figure, 1, a workbench; 2. a lifting frame; 3. a guide post; 4. a material storage pile mounting plate; 5. a limiting rod; 6. a belt pulley conveying mechanism; 7. slotting in a rectangular shape; 8. a connecting plate; 9. fixing a column; 10. a control hand wheel; 11. lifting the transverse plate; 12. a pneumatic suction cup; 13. a thin cylinder; 14. a transverse supporting plate; 15. a transverse floor; 16. connecting columns; 17. a guide post; 18. a linear bearing; 19. moving the rear push block; 20. a linear module; 21. a motor section; 22. a sliding table; 23. a connecting rod; 24. a screw rod lifting module; 25. a guide bar; 26. fixing a front stop block; 27. adjusting slotting; 28. mounting blocks; 29. grooving the long strip; 30. a fixed seat; 31. a drive motor; 32. a partition plate; 33. a first gear; 34. a second gear; 35. a third gear; 36. a limiting rotating cylinder; 37. a rotating shaft; 38. an external thread; 39. a connecting shaft; 40. a drive mechanism; 41. fixing the tailstock; 42. and fixing the front seat.
Detailed Description
The following are specific embodiments of the present invention and the accompanying drawings are used to further describe the technical solution of the present invention, but the present invention is not limited to these embodiments.
As shown in fig. 1 and 2, the bottom suction cup separating machine comprises a workbench 1 and a lifting frame 2 which is arranged above the workbench 1 and can be lifted, wherein the lifting frame 2 is in a rectangular frame shape and is connected with the workbench 1 in a matching way through a plurality of guide posts 3, a material storage stacking mounting plate 4 for placing a plurality of stacked raw material plates is arranged at the top of the lifting frame 2 in the rectangular frame shape, a plurality of limiting rods 5 which are mutually surrounded and used for containing and limiting the stacked raw material plates are arranged at the top of the material storage stacking mounting plate 4, a belt pulley conveying mechanism 6 for conveying the raw material plates is arranged at one side of the material storage stacking mounting plate 4 in the lifting frame 2, a rectangular slot 7 is inwards arranged in the middle part of the side end of the material storage stacking mounting plate 4 close to the belt pulley conveying mechanism 6, the width of the rectangular slot 7 is smaller than that of the raw material plates, a connecting plate 8 is arranged between the, and this connecting plate 8 links firmly through many fixed columns 9 mutually with holding between the material pile buttress mounting panel 4, still is provided with the sucking disc feed mechanism that is used for carrying out the piece absorption with the raw material board that superposes each other between connecting plate 8 and the material pile buttress mounting panel 4, and the offering of rectangle fluting 7 provides operating space for sucking disc feed mechanism, and 1 lateral part of workstation is provided with the control hand wheel 10 that is used for controlling the elevating platform to go up and down, and the both sides that hold material pile buttress mounting panel 4 top and lie in raw material board still are provided with stop gear.
The sucking disc material distributing mechanism consists of a lifting transverse plate 11 which is arranged below the material storage stacking mounting plate 4 and can be lifted, a pneumatic sucking disc 12 which is arranged at the top of the lifting transverse plate 11 and is used for sucking single raw material plates and a thin air cylinder 13 used for controlling the lifting transverse plate 11 to lift, the pneumatic sucking disc 12 is driven by the lifting transverse plate 11 to lift so as to enter a rectangular slot 7 in the material storage stacking mounting plate 4 and contact with the bottom surfaces of the raw material plates stacked on the top of the material storage stacking mounting plate 4, a transverse supporting plate 14 which is used for enabling a piston rod of the thin air cylinder 13 to extend into and be connected with the lower part of the lifting transverse plate 11 is arranged below the lifting transverse plate 11, the piston rod of the thin air cylinder 13 penetrates out of the transverse supporting plate 14 and is fixedly connected with the lifting transverse plate 11 through a fixing bolt, a transverse bottom plate 15 is also arranged below the thin air cylinder 13, the transverse bottom, each guide post 17 is connected with the transverse supporting plate 14 in a sliding manner through a linear bearing 18, the rear end part of the lifting transverse plate 11 is connected with a fixed tailstock 41, a movable rear push block 19 is installed at the top of the fixed tailstock 41, the position of the movable rear push block 19 is higher than that of the pneumatic suction cup 12, the difference between the top of the movable rear push block 19 and the top of the pneumatic suction cup 12 is smaller than the thickness of one raw material plate, if the thickness of one raw material plate is 1, the distance between the top of the movable rear push block 19 and the top of the pneumatic suction cup 12 is about 0.8, the suction cup material distribution mechanism can transversely move left and right, a linear module 20 which can be used for the suction cup material distribution mechanism to transversely move left and right is arranged on the connecting plate 8 and between the transverse bottom plates 15, the end part of the linear module 20 is provided with a motor part 21 which controls the suction cup material distribution mechanism to transversely move left and right, and a motor part 21 which controls the transverse bottom plates 15 to drive The linear module 20 is provided with a sliding table 22 which moves transversely left and right.
Further saying, be equipped with in the workstation 1 and be connected with control hand wheel 10 and drive pivoted connecting rod 23 by this control hand wheel 10, connecting rod 23 both ends all are provided with the lead screw lift module 24 that can drive the elevating platform and go up and down, a guide arm 25 all wears out in the lead screw lift module 24, and the upper end of this guide arm 25 all wears out workstation 1 and with elevating platform fixed connection, control hand wheel 10 rotates and drives connecting rod 23 and rotate, it goes up and down to drive the lead screw in the lead screw lift module 24 through "lead screw transmission principle", the lift of elevating platform is realized to guide effect through guide arm 25, the elevating platform of liftable makes its whole minute machine's the working height match the processing platform height of processing equipment.
In more detail, a fixed front seat 42 is arranged on the material storage stacking mounting plate 4 and between the raw material plate and the belt pulley conveying mechanism 6, an adjusting slot 27 is arranged in the fixed front seat 42, the number of the limiting rods 5 is four, the bottom ends of the four limiting rods 5 are all fixedly provided with mounting blocks 28, strip slots 29 are arranged in the mounting blocks 28, wherein two limiting rods 5 are arranged between the raw material plate and the fixed front seat 42, the mounting blocks 28 at the bottom ends of the two limiting rods 5 between the raw material plate and the fixed front seat 42 extend into the adjusting slot 27 and are fixedly connected with the adjusting slot 27 through adjusting bolts, the top of the fixed front seat 42 is provided with a plurality of screw holes, the adjusting bolts are in threaded connection with the screw holes, the adjusting bolts after threaded connection extend into the strip slots 29 of the mounting blocks 28 to play a limiting role, if the position of the limiting rods 5 needs to be adjusted, the adjusting bolts are detached to adjust the position of the mounting blocks 28, it has also seted up the regulation fluting 27 to hold the position department that is close to two other gag lever post 5 bottom on the material pile buttress mounting panel 4, and rectangular fluting 29 in the installation piece 28 of these two gag lever posts 5 bottom also links firmly mutually with the regulation fluting 27 that holds in the material pile buttress mounting panel 4 through adjusting bolt, fixed positive stop 26 is installed to fixed front stall 42 bottom, fixed positive stop 26 is used for suppressing the top surface with former material board, but this former material board is not the former material board that is located the bottommost, but be located the former material board of the former material board upper end of bottommost, it guarantees that this former material board can not remove to push down it, just can play the effect of branch, make the single former material board that is located the bottom shift out. The position of installing block 28 is adjusted according to the former material board of different diameters size, then utilizes adjusting bolt to lock, makes things convenient for accomodating of different diameters former material board to place. The fixed front stop block 26 and the movable rear push block 19 have height difference on the same horizontal reference line, the large-stroke horizontal reciprocating motion of the linear module 20 and the short-stroke vertical up-and-down motion of the thin cylinder 13 and the height difference of the fixed front stop block 26 and the movable rear push block 19 can solve the problem of bottom tension separation of the stamping raw material plate storage table with different diameters and different thicknesses, and the fixed front stop block 26 and the movable rear push block 19 are made of hard alloy, so that the fixed front stop block 26 and the movable rear push block 19 are not easy to wear and prolong the service life.
When the thin cylinder 13 is ventilated by inputting gas from an external ventilation source, a piston rod of the thin cylinder 13 rises to drive the lifting transverse plate 11, the pneumatic suction cup 12 rises to contact with a raw material plate at the bottom of the material storage pile mounting plate 4, then the linear module 20 drives the whole body to move, when the movable rear pushing block 19 contacts with the side surface of the raw material plate, the suction cup adsorbs the raw material plate, the front and rear positions of the adsorbed raw material plate are close to the positions of the fixed front stop block 26 and the movable rear pushing block 19, then the linear module 20 continues to move to the end position, at the moment, the thin cylinder 13 moves downwards in a short stroke to reset so that one separated raw material plate contacts with the belt pulley conveying mechanism 6, the pneumatic suction cup 12 stops ventilating, the belt pulley conveying mechanism 6 works to convey the single raw material plate, the linear module 20 drives the whole.
In more detail, the limiting mechanism is composed of a fixed seat 30 and a driving motor 31 arranged in the fixed seat 30, a partition plate 32 is further arranged above the driving motor 31 in the fixed seat 30, three gears which are meshed with each other are arranged at the top of the partition plate 32 in the fixed seat 30, the three gears are a first gear 33, a second gear 34 and a third gear 35 respectively, the first gear 33 is arranged at the middle position of the second gear 34 and the third gear 35 and is meshed with the second gear 34 and the third gear 35 respectively, the second gear 34 and the third gear 35 are not meshed, a motor shaft of the driving motor 31 penetrates through the partition plate 32 and extends into the first gear 33 to be in transmission connection with the first gear 33, rotatable limiting rotary cylinders 36 are respectively arranged at positions corresponding to the second gear 34 and the third gear 35 at the top of the fixed seat 30, and the two limiting rotary cylinders 36 are respectively connected with the second gear 34 and the third gear 35 through a rotating shaft 37, the limiting rotary cylinders 36 are provided with external threads 38, and the limiting mechanisms on the two sides of the original material plate have the same structure. The raw material plates are divided into two layers, one layer is formed by overlapping a plurality of raw material plates and is placed at the top of the material storage stacking mounting plate 4, the other layer is formed by overlapping a plurality of raw material plates and is placed between two limiting mechanisms and is limited between four limiting rotating cylinders 36, when the plurality of raw material plates placed at the top of the material storage stacking mounting plate 4 are slowly transported out and the overlapping height is reduced to a certain degree, the raw material plates limited between the four limiting rotating cylinders 36 are sent into the top of the material storage stacking mounting plate 4 as prepared materials, then the transportation process can be realized, a first gear 33 is driven to rotate by a driving motor 31, a second gear 34 and a third gear 35 which are meshed with the first gear 33 are oppositely meshed to drive a corresponding rotating shaft 37 and the limiting rotating cylinders 36 to rotate, the raw material plates are moved downwards and are sent to corresponding positions by a spiral principle, therefore, the purpose of discharging materials without man-hour from time to time can be achieved, and the transportation efficiency is improved.
The fixing seat 30 in the limiting mechanism can also be used for adjusting the position, and the principle of the fixing seat is the same as that of the limiting rod 5, so the description is omitted here.
In more detail, the two groups of belt pulley conveying mechanisms 6 are respectively positioned on two sides of the rectangular slot 7 in the material storage stacking mounting plate 4, one ends of the two belt pulley conveying mechanisms 6 are connected through a connecting shaft 39, one end of the connecting shaft 39 penetrates out of the lifting frame 2 and is connected with a driving mechanism 40 used for controlling the transmission of the belt pulley conveying mechanisms 6, and a single raw material plate is conveyed into the matching and processing equipment of the separating machine through the conveying principle of the belt pulley conveying mechanisms 6.
The specific embodiments described herein are merely illustrative of the spirit of the invention. Various modifications, additions and substitutions for the specific embodiments described herein may be made by those skilled in the art without departing from the spirit of the invention or exceeding the scope of the invention as defined in the accompanying claims.

Claims (6)

1. The bottom sucker separating machine is characterized by comprising a workbench (1) and a lifting frame (2) arranged above the workbench (1) and capable of rising and falling, wherein the lifting frame (2) is in a rectangular frame shape and is connected with the workbench (1) in a matching way through a plurality of guide posts (3), a material storage stacking mounting plate (4) for placing a plurality of stacked raw material plates is arranged at the top of the lifting frame (2) in the rectangular frame shape, a plurality of limiting rods (5) which are mutually wound to form a containing limit for the stacked raw material plates are arranged at the top of the material storage stacking mounting plate (4), a belt pulley conveying mechanism (6) for conveying the raw material plates is arranged at one side of the material storage stacking mounting plate (4) in the material storage stacking mounting plate (2), a rectangular groove (7) is inwards formed in the middle part of the material storage stacking mounting plate (4) close to the belt pulley conveying mechanism (6), crane and workstation (1) between be provided with connecting plate (8), and this connecting plate (8) link firmly mutually through many fixed columns (9) with holding between the material pile mounting panel (4), connecting plate (8) and hold and still be provided with between the material pile mounting panel (4) and be used for carrying out the sucking disc feed mechanism that divides a absorption with the raw material board of superpose each other, workstation (1) lateral part be provided with control hand wheel (10) that are used for controlling the elevating platform to go up and down, the both sides that hold material pile mounting panel (4) top and be located raw material board still be provided with stop gear.
2. The bottom sucker separating machine according to claim 1, wherein the sucker separating mechanism comprises a lifting transverse plate (11) which is arranged below the material storage stacking mounting plate (4) and can lift, a pneumatic sucker (12) which is arranged at the top of the lifting transverse plate (11) and is used for sucking single raw material plates and a thin air cylinder (13) which is used for controlling the lifting transverse plate (11) to lift, the pneumatic sucker (12) is driven by the lifting transverse plate (11) to lift and enter a rectangular slot (7) in the material storage stacking mounting plate (4) to be contacted with the bottom surfaces of the raw material plates stacked at the top of the material storage stacking mounting plate (4), a transverse supporting plate (14) for the piston rod of the thin air cylinder (13) to extend into and be connected is arranged below the lifting transverse plate (11), and the piston rod of the thin air cylinder (13) penetrates through the transverse supporting plate (14) to be fixedly connected with the lifting transverse plate (11) through a fixing bolt, a transverse bottom plate (15) is arranged below the thin cylinder (13), the transverse bottom plate (15) is connected with a transverse supporting plate (14) through a plurality of connecting columns (16), the transverse supporting plate (14) is connected with a lifting transverse plate (11) through a plurality of guide posts (17) with guiding function, each guide post (17) is in sliding connection with the transverse supporting plate (14) through a linear bearing (18), the rear end part of the lifting transverse plate (11) is connected with a fixed tailstock (41), a movable back push block (19) is arranged at the top part of the fixed tailstock (41), the position of the movable back push block (19) is higher than that of the pneumatic suction disc (12), the difference between the top part of the movable back push block (19) and the top part of the pneumatic suction disc (12) is smaller than the thickness of a raw material plate, and the suction disc distributing mechanism can transversely move left and right, connecting plate (8) on and with horizontal bottom plate (15) between be equipped with straight line module (20) that can supply horizontal migration about the sucking disc feed mechanism, the tip of this straight line module (20) be provided with control this sucking disc feed mechanism about horizontal migration's motor portion (21), straight line module (20) and horizontal bottom plate (15) between be provided with thereby drive horizontal bottom plate (15) along horizontal migration's about straight line module (20) slip table (22) by motor portion (21) control.
3. The bottom sucker separating machine according to claim 1, wherein a connecting rod (23) which is connected with a control hand wheel (10) and is driven by the control hand wheel (10) to rotate is arranged in the workbench (1), screw rod lifting modules (24) which can drive the lifting platform to lift are arranged at two ends of the connecting rod (23), a guide rod (25) penetrates through the screw rod lifting modules (24), and the upper end of the guide rod (25) penetrates through the workbench (1) and is fixedly connected with the lifting platform.
4. The bottom suction disc separating machine according to claim 1, wherein a fixed front seat (42) is arranged on the material storage stacking mounting plate (4) and between a raw material plate and the belt pulley conveying mechanism (6), an adjusting slot (27) is formed in the fixed front seat (42), the number of limiting rods (5) is four, mounting blocks (28) are fixedly arranged at the bottom ends of the four limiting rods (5), a long slot (29) is formed in each mounting block (28), the two limiting rods (5) are arranged between the raw material plate and the fixed front seat (42), the mounting blocks (28) at the bottom ends of the two limiting rods (5) between the raw material plate and the fixed front seat (42) extend into the adjusting slot (27) and are fixedly connected with the adjusting slot (27) through adjusting bolts, and an adjusting slot (27) is also formed in the position, close to the bottom ends of the other two limiting rods (5), on the material storage stacking mounting plate (4) The groove (27), the strip groove (29) in the mounting block (28) at the bottom ends of the two limiting rods (5) and the adjusting groove (27) in the material storage stacking mounting plate (4) are also fixedly connected through an adjusting bolt, and the bottom of the fixed front seat (42) is provided with a fixed front stop block (26).
5. The bottom suction cup separating machine according to claim 1, wherein the limiting mechanism is composed of a fixed seat (30) and a driving motor (31) arranged in the fixed seat (30), a partition plate (32) is further arranged above the driving motor (31) in the fixed seat (30), three gears which are meshed with each other are arranged on the top of the partition plate (32) in the fixed seat (30), the three gears are a first gear (33), a second gear (34) and a third gear (35), the first gear (33) is arranged in the middle of the second gear (34) and the third gear (35) and is meshed with the second gear (34) and the third gear (35) respectively, a motor shaft of the driving motor (31) penetrates through the partition plate (32) and extends into the first gear (33) to be in transmission connection with the first gear (33), and rotatable rotating parts corresponding to the second gear (34) and the third gear (35) are arranged on the top of the fixed seat (30) respectively The two limiting rotating cylinders (36) are respectively connected with the second gear (34) and the third gear (35) through rotating shafts (37), and external threads (38) are formed in the limiting rotating cylinders (36).
6. The bottom suction cup sheet separator according to claim 1, wherein the two groups of belt pulley conveying mechanisms (6) are respectively positioned at two sides of the rectangular slot (7) in the material storage stacking mounting plate (4), one ends of the two belt pulley conveying mechanisms (6) are connected through a connecting shaft (39), and one end of the connecting shaft (39) penetrates out of the lifting frame (2) and is connected with a driving mechanism (40) used for controlling the transmission of the belt pulley conveying mechanisms (6).
CN202020977517.7U 2020-06-01 2020-06-01 Bottom sucker separating machine Active CN212245339U (en)

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CN202020977517.7U CN212245339U (en) 2020-06-01 2020-06-01 Bottom sucker separating machine

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Application Number Priority Date Filing Date Title
CN202020977517.7U CN212245339U (en) 2020-06-01 2020-06-01 Bottom sucker separating machine

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111532799A (en) * 2020-06-01 2020-08-14 戴震班 Bottom sucker separating machine

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111532799A (en) * 2020-06-01 2020-08-14 戴震班 Bottom sucker separating machine

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