CN217291891U - Stone plate polishing machine - Google Patents

Stone plate polishing machine Download PDF

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Publication number
CN217291891U
CN217291891U CN202220196132.6U CN202220196132U CN217291891U CN 217291891 U CN217291891 U CN 217291891U CN 202220196132 U CN202220196132 U CN 202220196132U CN 217291891 U CN217291891 U CN 217291891U
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ring
polishing
support
upset
suction
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CN202220196132.6U
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Chinese (zh)
Inventor
杨应春
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Fujian Yang Cheng Machinery Co ltd
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Fujian Yang Cheng Machinery Co ltd
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Abstract

The utility model relates to a slabstone burnishing machine, including burnishing device and turn-over device, the input of turn-over device is connected to burnishing device's one end, burnishing device includes positive reverse conveying mechanism and polishing mechanism, polishing mechanism installs the top at positive reverse conveying mechanism. The stone plate polishing machine can polish two sides of a stone plate.

Description

Stone plate polishing machine
Technical Field
The utility model particularly relates to a slabstone burnishing machine.
Background
In the stone material course of working, need carry out various processing to slabstone, in the various processing lines on the existing market, can polish the surface of slabstone and handle, the operation of turn-over can not be carried out to slabstone to burnishing machine all usually, and need carry out the turn-over through the manual work to slabstone, the extravagant manpower resources that this kind of turn-over mode is very, and because slabstone itself has weight, the manual work also causes the damage of slabstone easily at the turn-over in-process.
SUMMERY OF THE UTILITY MODEL
In view of the deficiencies of the prior art, the technical problem to be solved by the present invention is to provide a stone slab polishing machine capable of polishing both sides of a stone slab.
In order to solve the technical problem, the utility model discloses a technical scheme is: the utility model provides a slabstone polishing machine, includes burnishing device and turn-over device, the input of turn-over device is connected to burnishing device's one end, burnishing device includes forward and reverse conveying mechanism and polishing mechanism, polishing mechanism installs the top at forward and reverse conveying mechanism.
Further, turn-over device includes base, first support ring, second support ring, supporting seat, elevating system, actuating mechanism and splint mechanism, the both sides at the supporting seat are installed to first support ring and second support ring symmetry, rotate the cover on the first support ring and establish by first upset ring, it is equipped with second upset ring to rotate the cover on the second support ring, the supporting seat is installed between first upset ring and second upset ring, elevating system installs between first upset ring and second upset ring, elevating system is located the top of supporting seat, actuating mechanism installs and is used for driving first upset ring and second upset ring rotation on the base, splint mechanism installs between first support ring and second support ring.
Further, elevating system includes support frame, support cylinder and lift clamp plate, the support frame is installed between first upset ring and second upset ring, support cylinder installs on the support frame, the piston end at support cylinder is installed to the lift clamp plate, the lift clamp plate is towards the supporting seat.
Furthermore, the opposite end surfaces of the pressure rising and reducing plate and the supporting seat are covered with elastic cushions.
Further, the splint mechanism includes first lift cylinder and second lift cylinder, the cylinder body of first lift cylinder is installed on first support ring, the cylinder body of second lift cylinder is installed on the second support ring, first suction frame is installed to the piston end of first lift cylinder, the piston end of second lift cylinder is installed the second and is inhaled the frame, slidable mounting has first suction claw on the first suction frame, a plurality of first negative-pressure suction cups are installed to the bottom of first suction claw, slidable mounting has the second suction claw on the second suction frame, a plurality of second negative-pressure suction cups are installed to the bottom that the second suction claw.
Furthermore, a first ball screw mechanism for controlling the transverse movement of the first suction claw is arranged on the first suction frame, and a second ball screw mechanism for controlling the transverse movement of the second suction claw is arranged on the second suction frame.
Further, actuating mechanism includes gear motor, axis of rotation, first runner and second runner, gear motor installs and is used for driving the axis of rotation to rotate on the base, the both ends at the axis of rotation are installed respectively to first runner and second runner, install the first chain with first runner meshing in the periphery of first upset ring, install the second chain with second runner meshing in the periphery of second upset ring.
Further, it has a plurality of first balls to distribute annularly between the contact surface of first upset ring and first support ring, the annular that is used for holding first ball is offered respectively to the contact surface between first upset ring and the first support ring, it has a plurality of second balls to distribute annularly between the contact surface of second upset ring and second support ring, the annular that is used for holding the second ball is offered respectively to the contact surface between second upset ring and the second support ring.
Further, the polishing mechanism comprises a polishing rack, a polishing motor is arranged on the polishing rack, the end part of an output shaft of the polishing motor faces to the forward and reverse conveying mechanism and is provided with a polishing rotary drum, a polishing support is arranged below the bottom of the polishing rotary drum in a liftable manner, a polishing rotary shaft is rotatably arranged in the middle of the polishing support, the upper part of the polishing rotary shaft is arranged in the polishing rotary drum in a penetrating manner in a liftable manner, and a polishing grinding disc is fixed at the bottom of the polishing rotary shaft.
Compared with the prior art, the utility model discloses following beneficial effect has: this slabstone burnishing machine carries out the polishing through burnishing device to one of them terminal surface of slabstone and handles the back, burnishing device carries the slabstone to turn-over device's output, then turn back the turn-over device and carry out the polishing of another terminal surface on the burnishing device and handle, the slabstone that needs processing is carried to the supporting seat through splint mechanism, the supporting seat unites elevating system again and presss from both sides tight slabstone, then it is rotatory simultaneously through the first upset ring of actuating mechanism drive and second upset ring, make the upper and lower position of supporting seat and elevating system change each other, can accomplish the turn-over of slabstone, then export is carried with the slabstone to rethread splint mechanism, and structural design is reasonable, effectively improve the machining efficiency of slabstone.
Drawings
Fig. 1 is a schematic structural diagram of an embodiment of the present invention.
Fig. 2 is a front view of a turn-over apparatus according to an embodiment of the present invention.
Fig. 3 is a side view of a turn-over apparatus according to an embodiment of the present invention.
Fig. 4 is a schematic structural diagram of a polishing apparatus according to an embodiment of the present invention.
The labels in the figure are: 1. a base; 2. a first support ring; 3. a second support ring; 4. a supporting seat; 5. a lifting mechanism; 6. a drive mechanism; 7. a clamping plate mechanism; 8. a first inversion ring; 9. a second inversion ring; 10. a support frame; 11. a support cylinder; 12. a voltage rising and reducing plate; 13. a first lifting cylinder; 14. a first suction frame; 15. a first suction claw; 16. a first negative pressure suction cup; 17. a reduction motor; 18. a rotating shaft; 19. a first runner; 20. a second runner; 100. a polishing device; 200. a turn-over device; 300. a forward and reverse conveying mechanism; 400. a polishing mechanism; 21. polishing the motor; 22. polishing the rotary drum; 23. polishing the support; 24. polishing the rotating shaft; 25. polishing the grinding disc; 26. and a polishing machine frame.
Detailed Description
In order to make the aforementioned and other features and advantages of the present invention comprehensible, embodiments accompanied with figures are described in detail below.
As shown in fig. 1 to 4, a stone slab polishing machine includes a polishing device 100 and a turn-over device 200, one end of the polishing device 100 is connected to an input end of the turn-over device 200, the polishing device 100 includes a forward and reverse conveying mechanism 300 and a polishing mechanism 400, the polishing mechanism 400 is installed on a top of the forward and reverse conveying mechanism 300, and the forward and reverse conveying mechanism 300 is a belt conveying mechanism.
In this embodiment, the turn-over device includes base 1, first support ring 2, second support ring 3, supporting seat 4, elevating system 5, actuating mechanism 6 and splint mechanism 7, the both sides at supporting seat 4 are installed to first support ring 2 and the 3 symmetry of second support ring, it establishes by first upset ring 8 to rotate the cover on the first support ring 2, it is equipped with second upset ring 9 to rotate the cover on the second support ring 3, supporting seat 4 is installed between first upset ring 8 and second upset ring 9, elevating system 5 is located the top of supporting seat 4, actuating mechanism 6 installs and is used for driving first upset ring 8 and second upset ring 9 to rotate on base 1, splint mechanism 7 installs between first support ring 2 and second support ring 3.
In this embodiment, the lifting mechanism 5 includes a support frame 10, a support cylinder 11 and a lifting pressure plate 12, the support frame 10 is installed between the first overturning ring 8 and the second overturning ring 9, the support cylinder 11 is installed on the support frame 10, the lifting pressure plate 12 is installed at a piston end of the support cylinder 11, and the lifting pressure plate 12 faces the support seat 4.
In this embodiment, the opposite end surfaces of the pressure rising and reducing plate 12 and the supporting seat 4 are covered with elastic pads.
In this embodiment, splint mechanism 7 includes first lift cylinder 13 and second lift cylinder, the cylinder body of first lift cylinder 13 is installed on first support ring 2, the cylinder body of second lift cylinder is installed on second support ring 3, first suction cup 14 is installed to the piston end of first lift cylinder 13, the second is installed to the piston end of second lift cylinder and is inhaled the frame, slidable mounting has first sucking disc 15 on first suction cup 14, a plurality of first suction cups 16 are installed to the bottom of first sucking disc 15, slidable mounting has the second to inhale the claw on the frame, a plurality of second suction cups are installed to the bottom of second sucking disc, adsorb slabstone on the sucking disc through the suction cup.
In this embodiment, the first suction frame 14 is provided with a first ball screw mechanism for controlling the lateral movement of the first suction claw 15, and the second suction frame is provided with a second ball screw mechanism for controlling the lateral movement of the second suction claw.
In this embodiment, actuating mechanism 6 includes gear motor 17, axis of rotation 18, first runner 19 and second runner 20, gear motor 17 installs and is used for driving axis of rotation 18 to rotate on base 1, the both ends at axis of rotation 18 are installed respectively to first runner 19 and second runner 20, install the first chain with first runner 19 meshing in the periphery of first upset ring 8, install the second chain with second runner 20 meshing in the periphery of second upset ring 9.
In this embodiment, the annular distribution has a plurality of first balls between the contact surface of first upset ring 8 and first support ring 2, the annular that is used for holding first ball is offered respectively to the contact surface between first upset ring 8 and the first support ring 2, annular distribution has a plurality of second balls between the contact surface of second upset ring 9 and second support ring 3, the annular that is used for holding the second ball is offered respectively to the contact surface between second upset ring 9 and the second support ring 3, can improve the rotation efficiency between support ring and the upset ring through the ball.
In this embodiment, the polishing mechanism 400 includes a polishing machine frame 26, a polishing motor 21 is installed on the polishing machine frame 26, an end portion of an output shaft of the polishing motor 21 faces the forward and reverse conveying mechanism 300 and is installed with a polishing drum 22, a polishing support 23 is installed below a bottom of the polishing drum 22 in a liftable manner, a polishing rotating shaft 24 is installed in a middle portion of the polishing support 23 in a rotatable manner, an upper portion of the polishing rotating shaft 24 is arranged in the polishing drum 22 in a liftable manner in a penetrating manner, and a polishing abrasive disc 25 is fixed at a bottom of the polishing rotating shaft 24.
The above description is only for the preferred embodiment of the present invention, and is not intended to limit the present invention in any way, and any person skilled in the art should not depart from the technical scope of the present invention, and any simple modification, equivalent change and modification made to the above embodiments according to the technical spirit of the present invention should fall within the scope of the present invention.

Claims (9)

1. A slabstone polishing machine which is characterized in that: the polishing device comprises a positive and negative conveying mechanism and a polishing mechanism, wherein the polishing mechanism is arranged at the top of the positive and negative conveying mechanism.
2. A stone slab polisher as defined in claim 1 wherein: turn-over device includes base, first supporting ring, second supporting ring, supporting seat, elevating system, actuating mechanism and splint mechanism, the both sides at the supporting seat are installed to first supporting ring and second supporting ring symmetry, rotate the cover on the first supporting ring and establish by first upset ring, it is equipped with the second upset ring to rotate the cover on the second supporting ring, the supporting seat is installed between first upset ring and second upset ring, elevating system installs between first upset ring and second upset ring, elevating system is located the top of supporting seat, actuating mechanism installs and is used for driving first upset ring and second upset ring rotation on the base, splint mechanism installs between first supporting ring and second supporting ring.
3. Slabstone polishing machine according to claim 2, wherein: the lifting mechanism comprises a support frame, a support cylinder and a lifting pressing plate, the support frame is installed between a first overturning ring and a second overturning ring, the support cylinder is installed on the support frame, the lifting pressing plate is installed at a piston end of the support cylinder, and the lifting pressing plate faces towards the support seat.
4. A stone slab polishing machine as claimed in claim 3, wherein: the opposite end faces of the pressure rising and reducing plate and the supporting seat are covered with elastic cushions.
5. A stone slab polisher as defined in claim 2 wherein: the splint mechanism includes first lift cylinder and second lift cylinder, the cylinder body of first lift cylinder is installed on first support ring, the cylinder body of second lift cylinder is installed on the second support ring, first suction frame is installed to the piston end of first lift cylinder, the piston end of second lift cylinder is installed the second and is inhaled the frame, slidable mounting has first suction claw on the first suction frame, a plurality of first negative-pressure suction cups are installed to the bottom of first suction claw, slidable mounting has the second suction claw on the second suction frame, a plurality of second negative-pressure suction cups are installed to the bottom that the second suction claw.
6. A stone slab polishing machine as claimed in claim 5, wherein: and a first ball screw mechanism for controlling the transverse movement of the first suction claw is arranged on the first suction frame, and a second ball screw mechanism for controlling the transverse movement of the second suction claw is arranged on the second suction frame.
7. A stone slab polisher as defined in claim 2 wherein: actuating mechanism includes gear motor, axis of rotation, first runner and second runner, gear motor installs and is used for driving the axis of rotation to rotate on the base, the both ends at the axis of rotation are installed respectively to first runner and second runner, install the first chain with first runner meshing in the periphery of first upset ring, install the second chain with second runner meshing in the periphery of second upset ring.
8. A stone slab polisher as defined in claim 2 wherein: the annular distribution has a plurality of first balls between the contact surface of first upset ring and first support ring, the annular that is used for holding first ball is offered respectively to the contact surface between first upset ring and the first support ring, annular distribution has a plurality of second balls between the contact surface of second upset ring and second support ring, the annular that is used for holding the second ball is offered respectively to the contact surface between second upset ring and the second support ring.
9. A stone slab polisher as defined in claim 1 wherein: the polishing mechanism comprises a polishing rack, a polishing motor is arranged on the polishing rack, the end part of an output shaft of the polishing motor faces to the forward and reverse conveying mechanism and is provided with a polishing rotary drum, a polishing support is arranged below the bottom of the polishing rotary drum in a liftable mode, a polishing rotary shaft is rotatably arranged in the middle of the polishing support, the upper part of the polishing rotary shaft penetrates through the polishing rotary drum in a liftable mode, and a polishing abrasive disc is fixed at the bottom of the polishing rotary shaft.
CN202220196132.6U 2022-01-25 2022-01-25 Stone plate polishing machine Active CN217291891U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202220196132.6U CN217291891U (en) 2022-01-25 2022-01-25 Stone plate polishing machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202220196132.6U CN217291891U (en) 2022-01-25 2022-01-25 Stone plate polishing machine

Publications (1)

Publication Number Publication Date
CN217291891U true CN217291891U (en) 2022-08-26

Family

ID=82926724

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202220196132.6U Active CN217291891U (en) 2022-01-25 2022-01-25 Stone plate polishing machine

Country Status (1)

Country Link
CN (1) CN217291891U (en)

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