Shaft part tumbling equipment

By designing a shaft parts rolling equipment with automatic loading and collection mechanism, the problem of high labor costs caused by manual loading and unloading is solved, automatic transmission and collection are realized, labor costs are reduced and production efficiency is improved.

CN223441993UActive Publication Date: 2025-10-17JIANGSU RISHENG BEARING CO LTD
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Patent Information

Application Number
CN202423001507.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-05
Publication Date
2025-10-17
Estimated Expiration
2034-12-05

AI Technical Summary

Technical Problem

The existing shaft parts polishing process requires manual loading and unloading, resulting in high labor costs.

Method used

A shaft parts rolling equipment is designed, which includes an automatic loading mechanism, a conveying rack and an automatic collecting mechanism, to realize the automatic conveying and collection of shaft parts and reduce manual intervention.

Benefits of technology

Through automated transmission and collection, labor costs are reduced and production efficiency is improved.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model relates to shaft part tumbling equipment which comprises a tumbling equipment body and further comprises an efficiency improving device, the efficiency improving device comprises a first conveying frame, a second conveying frame, an automatic feeding mechanism and an automatic collecting mechanism, the first conveying frame is arranged at the feeding end of the tumbling equipment body, and the second conveying frame is arranged at the feeding end of the tumbling equipment body; the automatic feeding mechanism is connected with the first conveying frame; the second conveying frame is arranged at the discharging end of the tumbling equipment body, and the automatic collecting mechanism is connected with the second conveying frame. The method has the effect of reducing the labor cost.
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Description

TECHNICAL FIELD

[0001] The application relates to the technical field of shaft part processing, in particular to a shaft part burnishing device. BACKGROUND

[0002] During generation of a shaft part, the outer surface of the shaft part needs to be smoothed, and a burnishing machine is usually used for burnishing treatment.

[0003] At present, a metal pipe polishing machine is disclosed in Chinese Patent No. CN219882176U, which comprises a machine body, a polishing wheel assembly installed on the machine body for polishing the outer circumferential surface of the metal pipe, a shaft roller power assembly installed on the machine body for driving the metal pipe to rotate at a uniform speed, and a workpiece positioning frame for supporting the metal pipe, wherein the polishing wheel assembly and the shaft roller power assembly are respectively installed on the two sides of the workpiece positioning frame, and the central axes of the polishing wheel in the polishing wheel assembly and the shaft roller in the shaft roller power assembly are parallel. The parallel central axes of the polishing wheel and the shaft roller make the polishing wheel and the shaft roller not have a fixed deflection angle as in the prior art, the axial angles of the transmission wheels on the walking mechanism in contact with the metal pipe are different, the direction in which the metal pipe can move is different, the feeding direction of the metal pipe can be adjusted in a timely manner through the wear of the polishing wheel, and thus the polishing uniformity of the metal pipe after multiple polishing is ensured.

[0004] When the metal hose or the shaft part is polished or burnished, manual feeding is required, the shaft parts are placed one by one into the feeding port in sequence, the surface of the shaft part is treated by the polishing wheel assembly, and then the shaft part is manually collected at the discharging port. Therefore, one operator is required to stay at the feeding port and the discharging port, which results in high labor cost. CONTENT OF THE UTILITY MODEL

[0005] In order to reduce the labor cost, the application provides a shaft part burnishing device.

[0006] The shaft part burnishing device provided by the application adopts the following technical scheme:

[0007] The shaft part burnishing device comprises a burnishing device body, a first conveying frame, a second conveying frame, an automatic feeding mechanism and an automatic collecting mechanism, the first conveying frame is arranged at a feeding end of the burnishing device body, the automatic feeding mechanism is connected with the first conveying frame, the second conveying frame is arranged at a discharging end of the burnishing device body, and the automatic collecting mechanism is connected with the second conveying frame.

[0008] By adopting the technical scheme, the shaft parts needing polishing in the same batch are placed on the automatic feeding mechanism, then the automatic feeding mechanism transfers the shaft parts to the first conveying frame, the first conveying frame conveys the shaft parts to the burnishing equipment body, the burnishing equipment body polishes the shaft parts, the processed shaft parts are transferred to the second conveying frame, and the second conveying frame transfers the processed shaft parts to the automatic collecting mechanism for collection, so that the operator only needs to place the shaft parts on the automatic feeding mechanism and then transfer the shaft parts on the automatic collecting mechanism out of the device within a certain time period, and therefore the efficiency device can reduce labor cost.

[0009] Optionally, the automatic feeding mechanism comprises a storage bin, a fixed block, a lifting block and an adjusting assembly, the storage bin is arranged on one side of the first conveying frame, the fixed block is arranged at one end of the storage bin close to the first conveying frame, and the lifting block is slidingly arranged on the storage bin; the adjusting assembly is arranged on the fixed block and connected with the lifting block; the relative height of the lifting block close to the first conveying frame is lower than that far away from the first conveying frame, and the relative height of the storage bin close to the first conveying frame is lower than that far away from the first conveying frame.

[0010] By adopting the technical scheme, the shaft parts in the same batch are placed in the storage bin, because the relative height of the storage bin close to the first conveying frame is lower than that far away from the first conveying frame, the shaft parts in the storage bin move towards the lifting block, the adjusting assembly is started, the adjusting assembly drives the lifting block to move, and because the relative height of the lifting block close to the first conveying frame is lower than that far away from the first conveying frame.

[0011] Optionally, the adjusting assembly comprises an adjusting motor, a rotating block and a driving block, the adjusting motor is arranged on the fixed block, the rotating block is arranged on the output shaft of the adjusting motor, and one end of the driving block is connected with the rotating block and the other end is connected with the lifting block.

[0012] By adopting the technical scheme, the adjusting motor is started, the output shaft of the adjusting motor drives the rotating block to rotate, the rotating block drives the driving block to move, and the driving block drives the lifting block to slide in the fixed block.

[0013] Optionally, the storage bin comprises a fixed frame, a first baffle, a second baffle, a first partition plate and a second partition plate, the fixed frame is connected with the first conveying frame, the relative height of the side of the fixed frame close to the first conveying frame is lower than the relative height of the side of the fixed frame far from the first conveying frame; the first baffle is provided with two, the two first baffles are respectively arranged on the two sides of the fixed frame; the second baffle is arranged at one end of the first baffle close to the first conveying frame; the first partition plate is arranged on the fixed frame between the two first baffles, and the second partition plate is arranged at one end of the first partition plate close to the first conveying frame.

[0014] By adopting the above technical scheme, the shaft parts of the same batch are placed on the fixed frame between the first baffle and the first partition plate; because the relative height of the side of the fixed frame close to the first conveying frame is lower than the relative height of the side of the fixed frame far from the first conveying frame, the shaft parts between the first baffle and the first partition plate will roll onto the fixed frame between the second baffle and the second partition plate, and then the lifting block will transfer the shaft parts between the second baffle and the second partition plate close to the fixed block to the first conveying frame for conveying; as long as the operator places a certain number of shaft parts between the first baffle and the first partition plate, the shaft parts can automatically move towards the direction close to the lifting block.

[0015] Optionally, the fixed frame is provided with an adjusting assembly, the adjusting assembly comprises an adjusting block, a bidirectional screw rod and an adjusting motor, the adjusting block is arranged on the two first baffles, the bidirectional screw rod penetrates through the two adjusting blocks, and the two adjusting blocks are threadedly connected with the two ends of the bidirectional screw rod respectively; the adjusting motor is arranged on the storage bin and connected with the bidirectional screw rod.

[0016] By adopting the above technical scheme, the adjusting motor is started, the output shaft of the adjusting motor drives the bidirectional screw rod to rotate, the bidirectional screw rod drives the adjusting block on the first baffle to move, and the position of the first baffle changes driven by the adjusting block, so that shaft parts of different lengths are realized.

[0017] Optionally, the fixed frame is provided with a limiting mechanism, the limiting mechanism comprises a first air cylinder, an adjusting block, a second air cylinder and a limiting block, the first air cylinder is arranged on the fixed frame, the adjusting block is arranged on the piston rod of the first air cylinder, the second air cylinder is arranged on the adjusting block, and the limiting block is arranged on the piston rod of the second air cylinder; the limiting block is located at one end of the second baffle close to the first baffle and above the second baffle, and there is a gap between the limiting block and the fixed frame for the shaft parts to pass through.

[0018] By adopting the technical scheme, because the gap for the shaft part to pass through exists between the limiting block and the fixing frame, the shaft parts entering between the second baffle are sequentially arranged, and the lifting block is convenient to transfer; the first cylinder is started, the piston rod of the first cylinder drives the adjusting block to move, the second cylinder is started, the piston rod of the second cylinder drives the limiting block to move, thereby changing the position of the limiting block, and the size of the gap for the shaft part to pass through is changed, and the shaft parts with different diameters can be adapted.

[0019] Optionally, the automatic collecting mechanism comprises a collecting frame, a storage rack and a pushing assembly, the collecting frame is connected with one end of the second conveying frame away from the body of the tumbling device, and the storage rack is arranged on one side of the collecting frame; and the pushing assembly is arranged on the collecting frame.

[0020] By adopting the technical scheme, the shaft parts on the second conveying frame move to the collecting frame, the shaft parts on the second conveying frame about to enter the collecting frame push the shaft parts on the collecting frame close to the second conveying frame to move, when a proper number of shaft parts exist on the collecting frame, the pushing assembly is started, and the pushing assembly transfers the shaft parts on the collecting frame to the storage rack; the operator only needs to transfer the shaft parts in the storage rack within a certain time period, and does not need to be at the discharging end of the device at all times, thereby reducing the labor cost.

[0021] Optionally, the pushing assembly comprises a third cylinder, a pushing block, a blocking block and a fixing bolt, the third cylinder is arranged on the collecting frame, the pushing block is arranged on the piston rod of the third cylinder, and the blocking block is connected to one side of the pushing block away from the second conveying frame through the fixing bolt.

[0022] By adopting the technical scheme, the blocking block blocks the shaft parts on the collecting frame, and the phenomenon of the shaft parts moving out of the collecting frame is reduced; when a proper number of shaft parts exist on the collecting frame, the third cylinder is started, the piston rod of the third cylinder drives the pushing block to move, the pushing block drives the plurality of shaft parts to move, and the shaft parts on the collecting frame move to the storage rack.

[0023] Optionally, the storage rack is rotatably arranged on the collecting frame, an angle adjusting assembly connected with the storage rack is arranged on the collecting frame, the angle adjusting assembly comprises a connecting block and an adjusting bolt, the connecting block is arranged on the collecting frame, the adjusting bolt is threadedly connected with an adjusting threaded hole arranged on the connecting block, and the adjusting bolt abuts against the storage rack.

[0024] By adopting the technical scheme, the rotation adjusting bolt is in threaded connection with the adjusting threaded hole on the connecting block, so that when the rotation adjusting bolt rotates, the rotation adjusting bolt will displace relative to the connecting block, and the rotation adjusting bolt will push the storage rack to rotate relative to the collecting rack, so that the angle of the storage rack relative to the collecting rack is changed, and the application range is improved.

[0025] Optionally, the second conveying frame is provided with a guide assembly at one end close to the collecting rack, the guide assembly comprises guide blocks and mounting bolts, the guide blocks are connected to the second conveying frame through the mounting bolts, the guide blocks are provided in two, and the two guide blocks form a guide space, and one end of the guide blocks away from the second conveying frame is located on the collecting rack.

[0026] By adopting the technical scheme, the shaft part in the second conveying frame passes through the guide space formed by the two guide blocks and then enters the collecting rack, and the guide assembly can limit the movement path of the shaft part, so that the shaft part can better enter the collecting rack.

[0027] In summary, the present application has at least one of the following beneficial technical effects:

[0028] 1. The operator only needs to place the shaft part on the automatic feeding mechanism within a certain time period and then transfer the shaft part on the automatic collecting mechanism, so that the efficiency device can reduce labor cost.

[0029] 2. The adjusting assembly and the limiting mechanism can improve the application range. BRIEF DESCRIPTION OF DRAWINGS

[0030] Figure 1 FIG. 1 is a structural schematic view of a shaft part tumbling device in an embodiment of the present application;

[0031] Figure 2 FIG. 2 is a structural schematic view of a storage bin in an embodiment of the present application;

[0032] Figure 3 FIG. 3 is a structural schematic view of an adjusting assembly in an embodiment of the present application;

[0033] Figure 4 FIG. 4 is a structural schematic view of an adjusting assembly in an embodiment of the present application;

[0034] Figure 5 FIG. 5 is a structural schematic view of a guide assembly in an embodiment of the present application;

[0035] Figure 6 FIG. 6 is a structural schematic view of an angle adjusting assembly in an embodiment of the present application.

[0036] : 1, rolling device body; 2, efficiency device; 21, first conveying frame; 22, second conveying frame; 3, automatic feeding mechanism; 31, fixed block; 32, lifting block; 33, adjusting assembly; 331, rotating block; 332, driving block; 34, sliding rail; 4, storage bin; 41, fixed frame; 411, sliding hole; 42, first baffle; 43, second baffle; 44, first partition plate; 45, second partition plate; 46, adjusting assembly; 461, adjusting block; 462, bidirectional screw rod; 463, adjusting motor; 5, limiting mechanism; 51, first air cylinder; 52, adjusting block; 53, second air cylinder; 54, limiting block; 6, automatic collection mechanism; 61, collection frame; 62, storage frame; 63, pushing assembly; 631, third air cylinder; 632, pushing block; 633, blocking block; 7, angle adjusting assembly; 71, connecting block; 72, adjusting bolt; 8, guide assembly; 81, guide block; 82, mounting bolt. DETAILED DESCRIPTION

[0037] The following will be described in detail below in combination with the accompanying Figures 1-6 The application is further described in detail.

[0038] The embodiment of the application discloses a shaft part rolling device.

[0039] Reference Figure 1 A shaft part rolling device, comprising a rolling device body 1, a first conveying frame 21 is arranged at the feeding end of the rolling device body 1, and an automatic feeding mechanism 3 is arranged at one side of the first conveying frame 21; a second conveying frame 22 is connected to the discharging end of the rolling device body 1, and an automatic collection mechanism 6 is arranged at the end, away from the rolling device body 1, of the second conveying frame 22.

[0040] The shaft parts needing polishing in the same batch are placed on the automatic feeding mechanism 3, then the automatic feeding mechanism 3 transfers the shaft parts to the first conveying frame 21, the first conveying frame 21 conveys the shaft parts to the rolling device body 1, the rolling device body 1 polishes the shaft parts, the processed shaft parts are transferred to the second conveying frame 22, and the second conveying frame 22 transfers the processed shaft parts to the automatic collection mechanism 6 for collection, so that the operator only needs to place the shaft parts on the automatic feeding mechanism 3 and then transfer the shaft parts on the automatic collection mechanism 6 out of the device within a certain time period.

[0041] Reference Figure 2 And Figure 3The automatic feeding mechanism 3 comprises a fixed block 31 fixedly connected to one side of the first feeding frame, a sliding rail 34 fixedly connected to the side of the fixed block 31 away from the first feeding frame, and a lifting block 32 slidably connected to the sliding rail 34 and abutting against the fixed block 31. The relative height of the side of the lifting block 32 close to the fixed block 31 is lower than that of the side of the lifting block 32 away from the fixed block 31. An adjusting assembly 33 is arranged on the fixed block 31 and comprises an adjusting motor fixedly connected to the fixed block 31, a rotating block 331 connected to the output shaft of the adjusting motor, and a driving block 332 rotatably arranged on the rotating block 331 and rotatably connected to the lifting block 32 at the end thereof away from the rotating block 331.

[0042] The adjusting motor is started, the output shaft of the adjusting motor drives the rotating block 331 to rotate, the rotating block 331 drives the lifting block 32 to rotate, and the lifting block 32 slides on the guide rail and is displaced relative to the fixed block 31.

[0043] Reference Figure 2 and Figure 4 The side of the first feeding frame is provided with a storage bin 4 comprising a fixed frame 41 fixedly connected to the first feeding frame. The end of the fixed frame 41 close to the first feeding frame abuts against the side of the lifting block 32 away from the fixed block 31, and the relative height of the side of the fixed frame 41 close to the first feeding frame is lower than that of the side of the fixed frame 41 away from the first feeding frame.

[0044] The end of the fixed frame 41 away from the first feeding frame is provided with two first baffles 42, and two sliding holes 411 corresponding to the first baffles 42 are formed in the fixed frame 41. An adjusting assembly 46 is arranged on the fixed frame 41 and comprises an adjusting block 461. One adjusting block 461 is fixedly connected to each first baffle 42, and the end of the adjusting block 461 away from the first baffle 42 penetrates through the sliding hole 411. A bidirectional screw rod 462 is rotatably connected to the fixed frame 41 and penetrates through the two adjusting blocks 461. The two adjusting blocks 461 are threadedly connected to the two ends of the bidirectional screw rod 462, respectively. An adjusting motor 463 is fixedly connected to the fixed frame 41, and the output shaft of the adjusting motor 463 is threadedly connected to one end of the bidirectional screw rod 462.

[0045] The end of each first baffle 42 close to the first conveying frame 21 is integrally provided with a second baffle 43, and the end of the second baffle 43 away from the first baffle 42 abuts against the lifting block 32. The adjusting assembly 46 in the fixed frame 41 is connected to the second baffle 43. When the lifting block 32 slides upward, the second baffle 43 abuts against the side wall of the lifting block 32. When the lifting block 32 is located at the initial position, the upper end surface of the lifting block 32 is coplanar with the upper end surface of the fixed frame 41. The height of the second baffle 43 is lower than that of the first baffle 42.

[0046] The first partition plate 44 is fixedly connected to the fixed frame 41 between the two first baffles 42, and the second partition plate 45 is integrally arranged at one end of the first partition plate 44 close to the first conveying frame 21, and the other end of the second partition plate 45 away from the first partition plate 44 can abut against the lifting block 32. The height of the first partition plate 44 is the same as that of the first baffle 42, and the height of the second partition plate 45 is the same as that of the second baffle 43. In other embodiments, the first partition plate 44 can also be fixed on the fixed frame 41 by bolts, and the position of the first partition plate 44 on the fixed frame 41 can be adjusted as needed.

[0047] The stacking space is formed between the two first baffles 42 and the first partition plate 44, and the feeding space in communication with the stacking space is formed between the two second baffles 43 and the second partition plate 45.

[0048] The adjusting motor 463 is started, the output shaft of the adjusting motor 463 drives the bidirectional screw rod 462 to rotate, the bidirectional screw rod 462 drives the two adjusting blocks 461 to move, and the two adjusting blocks 461 drive the first baffle 42 to move, so as to change the size of the stacking space.

[0049] Referring to 2 and Figure 4 The fixed frame 41 is provided with the first cylinder 51, the cylinder body of the first cylinder 51 is fixed on the fixed frame 41, the piston rod of the first cylinder 51 is connected with the adjusting block 52, the adjusting block 52 is provided with the second cylinder 53, the cylinder body of the second cylinder 53 is fixed on the adjusting block 52, the piston rod of the second cylinder 53 is connected with the limiting block 54; the limiting block 54 is located on the side of the first baffle 42 close to the first conveying frame 21, the limiting block 54 is located above the second baffle 43 and abuts against one end of the first baffle 42 close to the first conveying frame 21, and the gap for the shaft part to pass through is formed between the end of the limiting block 54 close to the fixed frame 41 and the fixed frame 41.

[0050] According to the size of the diameter of the shaft part, the first cylinder 51 is started, the piston rod of the first cylinder 51 drives the adjusting block 52 to move, and the positions of the second cylinder 53 and the limiting block 54 are changed.

[0051] The shaft parts are placed in the stacking space, because the relative height of the fixed frame 41 away from one end of the first conveying frame 21, the shaft parts can move to the stacking space through the gap between the limiting block 54 and the fixed frame 41, and the shaft parts in the stacking space are arranged one by one; and because of the existence of the limiting block 54, a plurality of shaft parts can be placed in the stacking space; when the shaft parts move from the stacking space to the stacking space, the second cylinder 53 can be started, the second cylinder 53 drives the limiting block 54 to move away from the first baffle 42, so that the shaft parts are better transported to the stacking space. The shaft parts in the stacking space and close to the first conveying frame 21 can move to the lifting block 32 and abut against the fixed block 31, and then the lifting block 32 is lifted, the lifting block 32 drives the shaft parts to rise, when the shaft parts move to above the first conveying frame 21, because the relative height of the lifting block 32 close to one side of the first conveying frame 21 is higher than that away from the first conveying frame 21, the shaft parts will move to the first conveying frame 21; when the lifting block 32 is lifted, the shaft parts close to the first conveying frame 21 abut against the side wall of the lifting block 32 away from the first conveying frame 21.

[0052] Referring to Figure 1 and Figure 5 , the second conveying frame 22 is provided with a guide mechanism away from one end of the tumbling device body 1, the guide mechanism comprises two guide blocks 81, and a mounting bolt 82 is arranged on each guide block 81 and threadedly connected with the second conveying frame 22 through the guide block 81; the guide space is formed between the two guide blocks 81, and the shaft parts on the second conveying frame 22 enter the guide space and then enter the automatic collecting mechanism 6.

[0053] Referring to Figure 1 and Figure 5 , the automatic collecting mechanism 6 comprises a collecting frame 61 fixedly connected with the second conveying frame 22, and one end of the guide block 81 away from the second conveying frame 22 is located on the collecting frame 61; the collecting frame 61 is rotationally connected with a storage frame 62.

[0054] Referring to Figure 5 and Figure 6 , the collecting frame 61 is provided with an angle adjusting assembly 7, the angle adjusting assembly 7 comprises a connecting block 71 fixedly connected with the collecting frame 61, the connecting block 71 is L-shaped, an adjusting threaded hole is formed in one end of the connecting block 71 away from the collecting frame 61, and an adjusting bolt 72 is threadedly connected in the adjusting threaded hole and abuts against the storage frame 62.

[0055] Rotating the adjusting bolt 72, because the adjusting bolt 72 is threadedly connected with the adjusting threaded hole on the connecting block 71, when the adjusting bolt 72 rotates, the adjusting bolt 72 will relatively displace the connecting block 71, and the adjusting bolt 72 will drive the position of the storage frame 62 to change.

[0056] Reference Figure 1 and Figure 5 The side of the collecting rack 61 away from the storage rack 62 is provided with a pushing assembly 63, the pushing assembly 63 comprises a third cylinder 631, the cylinder body of the third cylinder 631 is fixed on the collecting rack 61, a pushing block 632 is connected on the piston rod of the third cylinder 631, a blocking block 633 is slidingly connected on the end of the pushing block 632 away from the second conveying rack 22, and the blocking block 633 is provided with a fixing bolt.

[0057] The blocking block 633 is made to slide on the pushing block 632 first according to the need, and then the fixing bolt is screwed with the pushing block 632 through the blocking block 633 after the position of the blocking block 633 is determined. The shaft parts in the second conveying rack 22 enter into the collecting rack 61 through the guide space and abut against the pushing block 632, and the shaft parts on the second conveying rack 22 about to enter into the collecting rack 61 will push the shaft parts already on the collecting rack 61 and close to the second conveying rack 22 to move, so that a plurality of shaft parts arranged on the collecting rack 61 exist; then the third cylinder 631 is started, the piston rod of the third cylinder 631 drives the pushing block 632 to move towards the direction close to the storage rack 62, the pushing block 632 will push the shaft parts to move, so that the shaft parts on the collecting rack 61 are transferred to the storage rack 62.

[0058] The above are the preferred embodiments of the present application, and not limited to the protection scope of the present application, therefore: all equivalent changes made according to the structure, shape, principle of the present application should be covered in the protection scope of the present application.

Claims

1. A shaft part rolling device, comprising a rolling device body (1), characterized in that: The invention also includes an efficiency-enhancing device (2), wherein the efficiency-enhancing device (2) comprises a first conveying frame (21), a second conveying frame (22), an automatic loading mechanism (3) and an automatic collecting mechanism (6), wherein the first conveying frame (21) is arranged at the feeding end of the roller-polishing device body (1), and the automatic loading mechanism (3) is connected to the first conveying frame (21); the second conveying frame (22) is arranged at the discharging end of the roller-polishing device body (1), and the automatic collecting mechanism (6) is connected to the second conveying frame (22).

2. The shaft component rolling equipment according to claim 1, characterized in that: The automatic loading mechanism (3) comprises a storage bin (4), a fixed block (31), a lifting block (32) and an adjusting component (33); the storage bin (4) is arranged on one side of the first conveying frame (21); the fixed block (31) is arranged on one end of the storage bin (4) close to the first conveying frame (21); the lifting block (32) is slidably arranged on the storage bin (4); the adjusting component (33) is arranged on the fixed block (31) and connected to the lifting block (32); the relative height of the lifting block (32) close to the first conveying frame (21) is lower than the relative height of the lifting block (32) away from the first conveying frame (21); the relative height of the storage bin (4) close to the first conveying frame (21) is lower than the relative height of the lifting block (32) away from the first conveying frame (21).

3. The shaft component rolling equipment according to claim 2, characterized in that: The adjusting assembly (33) comprises an adjusting motor, a rotating block (331) and a driving block (332); the adjusting motor is arranged on the fixed block (31); the rotating block (331) is arranged on the output shaft of the adjusting motor; one end of the driving block (332) is connected to the rotating block (331) and the other end is connected to the lifting block (32).

4. The shaft component rolling equipment according to claim 2, characterized in that: The storage bin (4) includes a fixed frame (41), a first baffle (42), a second baffle (43), a first partition plate (44) and a second partition plate (45), wherein the fixed frame (41) is connected to the first conveying frame (21), and the relative height of the fixed frame (41) close to the first conveying frame (21) is lower than the relative height of the side away from the first conveying frame (21); two first baffles (42) are provided, and the two first baffles (42) are respectively provided on both sides of the fixed frame (41); the second baffle (43) is provided at one end of the first baffle (42) close to the first conveying frame (21); the first partition plate (44) is provided on the fixed frame (41) between the two first baffles (42), and the second partition plate (45) is provided at one end of the first partition plate (44) close to the first conveying frame (21).

5. The shaft component rolling equipment according to claim 4, characterized in that: An adjustment assembly (46) is provided on the fixing frame (41), and the adjustment assembly (46) includes an adjustment block (461), a bidirectional screw rod (462) and an adjustment motor (463). The two first baffles (42) are both provided with the adjustment block (461), the bidirectional screw rod (462) passes through the two adjustment blocks (461), and the two adjustment blocks (461) are respectively threadedly connected to the two ends of the bidirectional screw rod (462); the adjustment motor (463) is provided on the storage bin (4) and connected to the bidirectional screw rod (462).

6. The shaft component rolling equipment according to claim 4, characterized in that: A limiting mechanism (5) is provided on the fixing frame (41), and the limiting mechanism (5) includes a first cylinder (51), an adjusting block (52), a second cylinder (53) and a limiting block (54). The first cylinder (51) is provided on the fixing frame (41), the adjusting block (52) is provided on the piston rod of the first cylinder (51), the second cylinder (53) is provided on the adjusting block (52), and the limiting block (54) is provided on the piston rod of the second cylinder (53). The limiting block (54) is located at one end of the second baffle (43) close to the first baffle (42) and above the second baffle (43). A gap is provided between the limiting block (54) and the fixing frame (41) for the shaft part to pass through.

7. The shaft component rolling equipment according to claim 1, characterized in that: The automatic collecting mechanism (6) comprises a collecting rack (61), a material storage rack (62) and a pushing assembly (63); the collecting rack (61) is connected to an end of the second conveying rack (22) away from the roller polishing device body (1); the material storage rack (62) is arranged on one side of the collecting rack (61); and the pushing assembly (63) is arranged on the collecting rack (61).

8. The shaft component rolling equipment according to claim 7, characterized in that: The pushing assembly (63) includes a third cylinder (631), a pushing block (632), a blocking block (633) and a fixing bolt. The third cylinder (631) is arranged on the collecting rack (61), and the pushing block (632) is arranged on the piston rod of the third cylinder (631). The blocking block (633) is connected to a side of the pushing block (632) away from the second conveying rack (22) through the fixing bolt.

9. The shaft component rolling equipment according to claim 7, characterized in that: The storage rack (62) is rotatably arranged on the collection rack (61); the collection rack (61) is provided with an angle adjustment assembly (7) connected to the storage rack (62); the angle adjustment assembly (7) comprises a connecting block (71) and an adjusting bolt (72); the connecting block (71) is arranged on the collection rack (61); an adjusting threaded hole is provided on the connecting block (71); the adjusting bolt (72) is threadedly connected to the adjusting threaded hole, and the adjusting bolt (72) is pressed against the storage rack (62).

10. The shaft component rolling equipment according to claim 7, characterized in that: A guide assembly (8) is provided at one end of the second conveying rack (22) close to the collecting rack (61), and the guide assembly (8) includes a guide block (81) and a mounting bolt (82). The guide block (81) is connected to the second conveying rack (22) via the mounting bolt (82). Two guide blocks (81) are provided, and the two guide blocks (81) form a guide space. The end of the guide block (81) away from the second conveying rack (22) is located on the collecting rack (61).

Citation Information

Patent Citations

  • Metal circular tube polishing machine

    CN219882176U