CN221418350U - Semi-automatic mill welt transfer device - Google Patents

Semi-automatic mill welt transfer device Download PDF

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Publication number
CN221418350U
CN221418350U CN202420304460.2U CN202420304460U CN221418350U CN 221418350 U CN221418350 U CN 221418350U CN 202420304460 U CN202420304460 U CN 202420304460U CN 221418350 U CN221418350 U CN 221418350U
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China
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fixedly connected
rotating shaft
bevel gear
rack
plate
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CN202420304460.2U
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Chinese (zh)
Inventor
张亚男
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Shandong Jiujiu Machinery Co ltd
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Shandong Jiujiu Machinery Co ltd
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Abstract

The utility model belongs to the technical field of lining board transfer devices, and provides a semi-automatic mill lining board transfer device which comprises a bottom board, wherein a motor I is fixedly connected to the bottom board, a rotating shaft I is fixedly connected to the output end of the motor I, a gear I is fixedly connected to one end, far away from the motor I, of the rotating shaft I, a rack I is connected to the upper end of the gear I in a meshed mode, and a rack II is connected to the lower end of the gear I in a meshed mode. According to the utility model, the first gear drives the first rack and the second rack to move relatively, so that the first fixed plates can clamp and fix the lining plates to be transported, collapse of the lining plates in the transportation process can be prevented, meanwhile, the first fixed plates are provided with the air cylinders, the output ends of the air cylinders can drive the telescopic rods to push the second fixed plates to ascend, the heights of clamping and fixing the lining plates can be improved, more lining plates can be transported at one time, and the transportation efficiency is improved.

Description

Semi-automatic mill welt transfer device
Technical Field
The utility model relates to the technical field of liner plate transfer devices, in particular to a semi-automatic mill liner plate transfer device.
Background
The mode that current mill welt was transported adopts the manual work to promote the dolly generally and carries out the mode of transporting, this kind of mode intensity of labour is big, inefficiency, and when the welt was placed too much at the dolly, the workman is very likely to push away motionless, in addition, the device that transports the welt among the prior art mostly does not have the device of fixed welt, can take place to collapse at the in-process that the welt was transported like this easily, and fixed establishment can not height-adjusting, therefore, can not once only transport more welts, improve transportation efficiency.
Disclosure of utility model
The utility model aims to solve the defects in the prior art and provides a semi-automatic mill lining plate transferring device.
In order to achieve the above purpose, the present utility model adopts the following technical scheme: the utility model provides a semi-automatic mill welt transfer device, includes the bottom plate, fixedly connected with motor one on the bottom plate, the output fixedly connected with pivot one of motor one, the one end fixedly connected with gear one of keeping away from motor one of pivot, gear one upper end meshing is connected with rack one, the lower extreme meshing of gear one is connected with rack two, the one end fixedly connected with fixed plate one that rack one and rack two are opposite each other, fixed plate one sliding connection is on the bottom plate, fixedly connected with cylinder on the fixed plate one, the output fixedly connected with telescopic link of cylinder, the one end fixedly connected with fixed plate two of cylinder is kept away from to the telescopic link.
As a further description of the above technical solution:
The motor is fixedly connected with the bottom plate, the output fixedly connected with pivot two of motor two, the one end fixedly connected with bevel gear two of motor two is kept away from to the pivot two, bevel gear two meshing is connected with bevel gear three, run through fixedly connected with pivot three on the bevel gear three, pivot three runs through the rotation and is connected on the bottom plate, the one end fixedly connected with bevel gear four of keeping away from the bevel gear three in pivot three, bevel gear four meshing is connected with bevel gear five, bevel gear five runs through fixedly connected with pivot four, pivot four runs through the rotation and is connected with the limiting plate, limiting plate fixedly connected with is on the bottom plate, fixedly connected with belt pulley one in pivot four, belt pulley one meshing is connected with belt one, belt pulley one is kept away from one end meshing of belt pulley two, pivot four is equipped with two sets of, belt pulley two run through fixedly connected with a set of pivot four, two sets of the both ends fixedly connected with gyro wheel of pivot four.
As a further description of the above technical solution:
The bottom plate is provided with a sliding groove, the sliding groove is connected with a sliding block in a sliding mode, and one end, away from the sliding groove, of the sliding block is fixedly connected to the second rack.
As a further description of the above technical solution:
The base plate is fixedly connected with a frame, a square groove is formed in the frame, the square groove is slidably connected with a T-shaped block, and one end, far away from the square groove, of the T-shaped block is fixedly connected to the first rack.
As a further description of the above technical solution:
The air cylinders are provided with two groups, and a railing is fixedly connected between the two groups of air cylinders.
As a further description of the above technical solution:
The utility model discloses a lifter, including bottom plate, riser, fixed connection, pole, the one end fixedly connected with push rod that the riser was kept away from to the pole, fixedly connected with riser on the bottom plate.
As a further description of the above technical solution:
The telescopic rod pushes the second fixing plate to rise to a height higher than that of the vertical plate.
The utility model has the following beneficial effects:
1. According to the utility model, the first gear drives the first rack and the second rack to move relatively, so that the first fixed plates can clamp and fix the lining plates to be transported, collapse of the lining plates in the transportation process can be prevented, meanwhile, the first fixed plates are provided with the air cylinders, the output ends of the air cylinders can drive the telescopic rods to push the second fixed plates to ascend, the heights of clamping and fixing the lining plates can be improved, more lining plates can be transported at one time, and the transportation efficiency is improved.
2. According to the utility model, the bevel gear three is driven to rotate through the rotation of the bevel gear two, the bevel gear three drives the rotating shaft three to rotate, the bevel gear four drives the bevel gear five to rotate, the bevel gear five drives the rotating shaft four to rotate, the rotating shaft four drives the two groups of rollers to rotate, meanwhile, the rotating shaft four drives the belt pulley one to rotate, the belt pulley one drives the belt pulley two to rotate, the belt pulley two drives the other group of rotating shafts four to rotate, and the other group of rotating shafts four drives the two groups of rollers to rotate, so that the purpose of automatic movement can be realized, the phenomenon that a worker cannot move a transfer trolley due to overlarge weight of a lining plate can be avoided, the physical strength of the worker is saved, and the transfer efficiency of the lining plate is further improved.
Drawings
Fig. 1 is a schematic structural diagram of a semi-automatic liner plate transferring device for a grinding machine according to the present utility model;
FIG. 2 is a front perspective view of a semi-automatic mill liner transfer device according to the present utility model;
FIG. 3 is a schematic diagram II of a semi-automatic liner transfer device for a grinding machine according to the present utility model;
fig. 4 is a schematic structural view of a semi-automatic liner plate transferring device for a grinding machine according to the third embodiment of the present utility model.
Legend description:
1. A bottom plate; 2. a first motor; 3. a first rotating shaft; 4. a first gear; 5. a first rack; 6. a second rack; 7. a first fixing plate; 8. a cylinder; 9. railing; 10. a telescopic rod; 11. a second fixing plate; 12. a second motor; 13. a second rotating shaft; 14. bevel gears II; 15. bevel gears III; 16. a third rotating shaft; 17. bevel gears IV; 18. a bevel gear V; 19. a rotation shaft IV; 20. a first belt pulley; 21. a first belt; 22. a belt pulley II; 23. a roller; 24. a chute; 25. a slide block; 26. a T-shaped block; 27. a frame; 28. a square groove; 29. a support rod; 30. a push rod; 31. a limiting plate; 32. a vertical plate.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Referring to fig. 1-4, one embodiment provided by the present utility model is: the utility model provides a semi-automatic mill welt transfer device, includes bottom plate 1, fixedly connected with motor one 2 on the bottom plate 1, the output fixedly connected with pivot one 3 of motor one 2, the one end fixedly connected with gear one 4 of keeping away from motor one 2 of pivot one 3, gear one 4 upper end meshing is connected with rack one 5, the lower extreme meshing of gear one 4 is connected with rack two 6, the one end fixedly connected with fixed plate one 7 that rack one 5 and rack two 6 are opposite each other, fixed plate one 7 sliding connection is on bottom plate 1, fixed plate one 7 is gone up fixedly connected with cylinder 8, the output fixedly connected with telescopic link 10 of cylinder 8, the one end fixedly connected with fixed plate two 11 of cylinder 8 is kept away from to telescopic link 10, through the rotation of gear one 4, the relative motion is driven between rack one 5 and the rack two 6 to can make two sets of fixed plate one 7 press from both sides tight fixed welt that need transport, can prevent to take place the in-process of transporting like this and collapse, simultaneously be provided with 8 on fixed plate one 7 and promote 8, can drive the output telescopic link 10 more fixed plate 11 like this, can improve the stability of the transportation efficiency, thereby can improve more fixed plate 11.
The motor II 12 is fixedly connected to the bottom plate 1, the output end of the motor II 12 is fixedly connected with the rotating shaft II 13, one end of the rotating shaft II 13 far away from the motor II 12 is fixedly connected with the bevel gear II 14, the bevel gear II 14 is in meshed connection with the bevel gear III 15, the bevel gear III 15 is in penetrating and fixedly connected with the rotating shaft III 16, the rotating shaft III 16 is in penetrating and rotating connection to the bottom plate 1, one end of the rotating shaft III 16 far away from the bevel gear III 15 is fixedly connected with the bevel gear IV 17, the bevel gear IV 17 is in meshed connection with the bevel gear V18, the bevel gear V18 is in penetrating and fixedly connected with the rotating shaft IV 19, the rotating shaft IV 19 is in penetrating and rotating connection with the limiting plate 31, the rotating shaft IV 19 is fixedly connected with the belt pulley I20, the belt I21 is in meshed connection with the belt I20, the belt I21 is connected with the belt pulley II 22 far away from one end of the belt pulley I20 in a meshed manner, the rotating shaft IV 19 is provided with two groups, the belt pulley II 22 is fixedly connected with the rotating shaft IV 19 in a penetrating manner, two groups of rotating shafts IV 19 are fixedly connected with idler wheels 23 at two ends, the bottom plate 1 is provided with a sliding chute 24, the sliding chute 24 is slidably connected with a sliding block 25, one end of the sliding block 25 far away from the sliding chute 24 is fixedly connected with the rack II 6, the bottom plate 1 is fixedly connected with a frame 27, the frame 27 is provided with a square groove 28, the square groove 28 is slidably connected with a T-shaped block 26, one end of the T-shaped block 26 far away from the square groove 28 is fixedly connected with the rack I5, the air cylinders 8 are provided with two groups, a railing 9 is fixedly connected between the two groups of air cylinders 8, the bottom plate 1 is fixedly connected with a vertical plate 32, the vertical plate 32 is fixedly connected with a supporting rod 29, the pole 29 keeps away from the one end fixedly connected with push rod 30 of riser 32, telescopic link 10 promotes the height that fixed plate two 11 risen and is higher than riser 32, drive bevel gear three 15 through the rotation of bevel gear two 14 and rotate, bevel gear three 15 drives the rotation of pivot three 16, the rotation of pivot three 16 drives bevel gear four 17, bevel gear four 17 drives bevel gear five 18 and rotates, bevel gear five 18 drives the rotation of pivot four 19, pivot four 19 drives two sets of gyro wheels 23 and rotates, simultaneously pivot four 19 drives pulley one 20 and rotates, pulley one 20 drives belt one 21 and rotates, pulley two 22 are driven to pulley one, pulley two 22 drives the rotation of another set of pivot four 19, another set of pivot four 19 drives two sets of gyro wheels 23 and rotates, consequently, the purpose of automatic movement can be realized, thereby can avoid the workman to lead to pushing the transfer dolly because of the weight of the welt is too big, the physical power of workman has been saved, further improved the transportation efficiency of welt.
Working principle: firstly, a lining board is placed on a bottom board 1, when the stacking height of the lining board is higher than that of a first fixing plate 7, an air cylinder 8 can be started, the output end of the air cylinder 8 drives a telescopic rod 10 to lift, the telescopic rod 10 drives a second fixing plate 11 to lift, so that the height of the second fixing plate 11 can be further adjusted, more lining boards can be stacked, when the lining boards are stacked, the motor 2 can be played, the output end of the motor 2 drives a first rotating shaft 3 to rotate, the first rotating shaft 3 rotates to drive a first gear 4 to rotate, the first gear 4 drives a first rack 5 and a second rack 6 to do relative motion, so that the two groups of first fixing plates 7 and second fixing plates 11 can clamp and fix the lining boards to be transported, collapse of the lining boards in the transportation process can be prevented, meanwhile, the movement of the first rack 5 and the second rack 6 enables a sliding block 25 and a T-shaped block 26 to slide in a sliding groove 24 and a frame 27, after the lining plate is fixed, the motor II 12 can be started, the output end of the motor II 12 drives the rotating shaft II 13 to rotate, the rotating shaft II 13 drives the bevel gear II 14 to rotate, the rotating shaft II 14 drives the bevel gear III 15 to rotate, the bevel gear III 15 drives the rotating shaft III 16 to rotate, the rotating shaft III 16 drives the bevel gear IV 17 to rotate, the bevel gear IV 17 drives the bevel gear V18 to rotate, the bevel gear V18 drives the rotating shaft IV 19 to rotate, the rotating shaft IV 19 drives the two groups of rollers 23 to rotate, meanwhile, the rotating shaft IV 19 drives the belt pulley IV 20 to rotate, the belt pulley IV 20 drives the belt IV 21 to rotate, the belt IV 21 drives the belt pulley II 22 to rotate, the belt pulley IV 22 drives the other group of rotating shafts IV 19 to rotate, and the other group of rotating shafts IV 19 drives the two groups of rollers 23 to rotate, so that the purpose of automatic movement can be realized, and the force of a worker pushing the transfer trolley can be saved, thereby realizing the purpose of transferring the lining board.
Finally, it should be noted that: the foregoing description is only illustrative of the preferred embodiments of the present utility model, and although the present utility model has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that modifications may be made to the embodiments described, or equivalents may be substituted for elements thereof, and any modifications, equivalents, improvements or changes may be made without departing from the spirit and principles of the present utility model.

Claims (7)

1. Semi-automatic mill welt transfer device, including bottom plate (1), its characterized in that: fixedly connected with motor one (2) on bottom plate (1), the output fixedly connected with pivot two (13) of motor one (2), the one end fixedly connected with gear one (4) of motor one (2) is kept away from to pivot two (13), gear one (4) upper end meshing is connected with rack one (5), the lower extreme meshing of gear one (4) is connected with rack two (6), the one end fixedly connected with fixed plate one (7) that rack one (5) and rack two (6) are opposite each other, fixed plate one (7) sliding connection is on bottom plate (1), fixedly connected with cylinder (8) on fixed plate one (7), the output fixedly connected with telescopic link (10) of cylinder (8), the one end fixedly connected with fixed plate two (11) of cylinder (8) are kept away from to telescopic link (10).
2. A semiautomatic mill liner transfer device as claimed in claim 1, wherein: the motor II (12) is fixedly connected to the bottom plate (1), the output end of the motor II (12) is fixedly connected with the rotating shaft II (13), one end of the rotating shaft II (13) away from the motor II (12) is fixedly connected with the bevel gear II (14), the bevel gear II (14) is fixedly connected with the bevel gear III (15), the bevel gear III (15) is fixedly connected with the rotating shaft III (16) in a penetrating manner, the rotating shaft III (16) is fixedly connected to the bottom plate (1) in a penetrating manner, one end of the rotating shaft III (16) away from the bevel gear III (15) is fixedly connected with the bevel gear IV (17), the bevel gear IV (17) is fixedly connected with the bevel gear V (18) in a penetrating manner, the bevel gear V (18) is fixedly connected with the rotating shaft IV (19), the rotating shaft IV (19) is fixedly connected with the limiting plate (31) in a penetrating manner, the limiting plate (31) is fixedly connected to the bottom plate (1), the rotating shaft IV (19) is fixedly connected with the first pulley (20), the first pulley (20) is fixedly connected with the first pulley (21) in a penetrating manner, one end of the first pulley (21) is far from the bottom plate (1), one end of the first pulley (20) is fixedly connected with the second pulley IV (22) in a penetrating manner, one end of the fourth pulley (19) is fixedly connected with the rotating shaft IV (22), two ends of the two groups of rotating shafts IV (19) are fixedly connected with idler wheels (23).
3. A semiautomatic mill liner transfer device as claimed in claim 1, wherein: the base plate (1) is provided with a sliding groove (24), the sliding groove (24) is connected with a sliding block (25) in a sliding mode, and one end, away from the sliding groove (24), of the sliding block (25) is fixedly connected to the second rack (6).
4. A semiautomatic mill liner transfer device as claimed in claim 1, wherein: the novel rack is characterized in that a frame (27) is fixedly connected to the bottom plate (1), a square groove (28) is formed in the frame (27), a T-shaped block (26) is slidably connected to the square groove (28), and one end, far away from the square groove (28), of the T-shaped block (26) is fixedly connected to the rack I (5).
5. A semiautomatic mill liner transfer device as claimed in claim 1, wherein: the air cylinders (8) are provided with two groups, and a railing (9) is fixedly connected between the two groups of air cylinders (8).
6. A semiautomatic mill liner transfer device as claimed in claim 1, wherein: the novel vertical plate comprises a bottom plate (1), wherein a vertical plate (32) is fixedly connected to the bottom plate (1), a supporting rod (29) is fixedly connected to the vertical plate (32), and a push rod (30) is fixedly connected to one end, away from the vertical plate (32), of the supporting rod (29).
7. A semiautomatic mill liner transfer device as claimed in claim 1, wherein: the telescopic rod (10) pushes the second fixing plate (11) to rise to a height higher than that of the vertical plate (32).
CN202420304460.2U 2024-02-19 2024-02-19 Semi-automatic mill welt transfer device Active CN221418350U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202420304460.2U CN221418350U (en) 2024-02-19 2024-02-19 Semi-automatic mill welt transfer device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202420304460.2U CN221418350U (en) 2024-02-19 2024-02-19 Semi-automatic mill welt transfer device

Publications (1)

Publication Number Publication Date
CN221418350U true CN221418350U (en) 2024-07-26

Family

ID=91981273

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202420304460.2U Active CN221418350U (en) 2024-02-19 2024-02-19 Semi-automatic mill welt transfer device

Country Status (1)

Country Link
CN (1) CN221418350U (en)

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