Edge cutting device for stainless steel machining

By designing a stainless steel cutting device with a disc and material guiding structure, the problems of low efficiency and inconvenient operation of existing cutting machines in the large-volume cutting of stainless steel caps have been solved. The device realizes an automated, uninterrupted cutting and unloading process, improving processing efficiency and safety.

CN223699471UActive Publication Date: 2025-12-23YIBIN WUSHUAI ENVIRONMENTAL PROTECTION TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202520124106.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-20
Publication Date
2025-12-23
Estimated Expiration
2035-01-20

AI Technical Summary

Technical Problem

When performing edge trimming operations on large quantities of stainless steel caps, existing edge trimming machines require personnel to stop the machine frequently for manual replacement, which affects work efficiency and is inconvenient to operate.

Method used

Design a stainless steel processing edge trimming device including a disc, a placement seat, a motor, an electro-hydraulic push rod, an ejector column, and a cutting disc. The stainless steel cover is conveyed through the placement seat on the disc, and the motor drives the ejector and cutting disc to automatically trim the edge. Combined with a material guiding structure, automatic unloading is achieved.

Benefits of technology

It enables uninterrupted edge trimming of large batches of stainless steel caps, improving processing efficiency, avoiding safety hazards, and automating the unloading process, further enhancing processing convenience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an edge cutting device for stainless steel processing, relates to the technical field of stainless steel processing equipment, and aims to solve the technical problem that an existing edge cutting machine is inconvenient to perform edge cutting operation on a large batch of stainless steel covers. And a plurality of groups of placing seats are equidistantly arranged on the periphery of the disc. Through the designed structures such as the disc, the placement seats, the first motor, the third electric hydraulic push rod, the first circular ejection column, the second motor and the ejection disc, the placement seats on the periphery of the disc can convey stainless steel covers to the rear side in sequence for edge cutting operation; according to the stainless steel cover edge-cutting device, the stainless steel covers can be placed in the placing seat, then personnel can place the stainless steel covers to be trimmed into the placing seat from the front easily, so that the stainless steel covers can be trimmed uninterruptedly, and the stainless steel cover edge-cutting device is convenient and fast to use, high in efficiency, free of potential safety hazards and convenient to trim a large batch of stainless steel covers.
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Description

Technical Field

[0001] This utility model relates to the technical field of stainless steel processing equipment, and more specifically, to a cutting device for stainless steel processing. Background Technology

[0002] In the processing of stainless steel caps, edge trimming is an important step. Its purpose is to remove excess material from the edges of the stainless steel caps so that they meet the specified size and shape accuracy. To facilitate edge trimming of stainless steel caps, an edge trimming device, namely an edge trimming machine, is required.

[0003] Existing edge trimming machines typically place the stainless steel caps directly onto a rotating and fixed structure, then cut off the excess edges using a cutting mechanism. While this achieves edge trimming, it requires frequent manual replacement of caps when processing large batches, which is cumbersome and significantly impacts work efficiency. Therefore, we propose an edge trimming device for stainless steel processing. Utility Model Content

[0004] The purpose of this utility model is to overcome the shortcomings of the existing technology, adapt to the needs of reality, and provide a cutting device for stainless steel processing, so as to solve the technical problem that the current cutting machine is not convenient for cutting large batches of stainless steel covers.

[0005] To solve the above-mentioned technical problems, this utility model provides the following technical solution: a stainless steel processing edge-cutting device, including an installation platform, a disc rotatably arranged at the top center of the installation platform, several sets of placement seats equidistantly arranged around the disc, a first motor connected to the center of the disc and arranged through a bracket at the bottom center of the installation platform, a third electro-hydraulic push rod corresponding to the placement seats on the rear side of the disc and arranged through a bracket at the bottom of the installation platform, a first circular ejector post arranged at the piston end of the third electro-hydraulic push rod, the first circular ejector post penetrating the installation platform, an installation frame arranged at the top of the installation platform, a second motor arranged at the top center of the installation frame, a top plate arranged at the output end of the second motor through a rotating shaft, and the top plate corresponding to the first circular ejector post, an adjustment frame arranged at the top rear side of the installation platform, a third motor arranged inside the adjustment frame, and a cutting disc arranged at the output end of the third motor through a rotating shaft;

[0006] An arc-shaped plate is arranged at the bottom of the first circular ejector column, and a second circular ejector column is arranged at the end of the arc-shaped plate facing away from the first circular ejector column. The second circular ejector column corresponds to the placement seat on the left side of the disc, and a material guiding structure is arranged on the left side of the top of the installation platform.

[0007] This invention, through its designed structure including a disc, a placement seat, a first motor, a third electro-hydraulic push rod, a first circular ejector column, a second motor, and a top plate, allows for the efficient edge trimming of batches of stainless steel caps. Operators can directly place the caps into the placement seats around the disc. As the placement seats move to the rear, the third electro-hydraulic push rod raises the first circular ejector column, which then extends into the cap and ejects it from the placement seat. The ejector column, in conjunction with the top plate, clamps the cap. The second motor then drives the top plate to rotate, causing the caps to rotate as well. During this rotation, the cutting disc contacts and cuts the edges of the caps, completing the edge trimming process. The placement seats around the disc sequentially transport caps to the rear for trimming, while operators can easily place caps to be trimmed into the placement seats from the front. This allows for continuous edge trimming, making it convenient and quick to use. This invention offers high efficiency, eliminates safety hazards, and facilitates the trimming of large batches of stainless steel caps. Furthermore, a second circular ejector column is mounted on the first circular ejector column via an arc-shaped plate. A guide structure is correspondingly arranged on the mounting platform to the second circular ejector column. Therefore, when the first circular ejector column rises, the arc-shaped plate simultaneously drives the second circular ejector column upwards. The second circular ejector column then ejects the trimmed stainless steel cap from its placement seat. The concave guide plate in the guide structure, under the guidance of the inclined surface below the semi-circular opening, pushes the concave guide plate to the left as the stainless steel cap is ejected from the placement seat. Once the stainless steel cap moves above the semi-circular opening, the elastic seat resets, causing the semi-circular opening to press against the surface of the second circular ejector column. As the second circular ejector column descends, the stainless steel cap separates from it and falls onto the guide plate, sliding down the inclined surface at the top of the guide plate. This achieves automatic unloading of the trimmed stainless steel caps, further improving the convenience of trimming batches of stainless steel caps.

[0008] Preferably, the adjusting frame includes a concave frame that is slidably arranged on the mounting platform, an upper concave frame that is inserted into the top of the concave frame, a third motor that is arranged on the upper concave frame, a cutting disc that is located above the upper concave frame, and two sets of symmetrical first electro-hydraulic push rods that are arranged on opposite sides of the upper and lower concave frames.

[0009] Preferably, the bottom of the concave frame has two sets of symmetrical T-slots, and a T-shaped rod is slidably arranged inside the T-slot. The T-shaped rod is arranged on the mounting platform, and a second electro-hydraulic push rod is arranged at the center of the rear side of the concave frame. The second electro-hydraulic push rod is arranged on the mounting platform.

[0010] Preferably, the material guiding structure includes a concave material guiding plate and an elastic seat, the elastic seat being arranged at the bottom of the concave material guiding plate, the top of the concave material guiding plate being concave, and the top surface of the concave material guiding plate being inclined.

[0011] Preferably, one side of the concave guide plate is located on the top of the left side of the disc, and a semi-circular opening is provided on one side of the concave guide plate, with a guide slope arranged at the bottom of the semi-circular opening.

[0012] Preferably, the elastic seat includes a mounting base, which is arranged at the bottom of the concave guide plate. Two sets of symmetrical connecting rods are inserted into the mounting base. Mounting plates are arranged at both ends of the connecting rods. The mounting plates are arranged on the mounting platform. A spring is arranged between the mounting plates and the opposite side of the mounting base. The spring is sleeved on the connecting rod.

[0013] Compared with the prior art, the beneficial effects of this utility model are:

[0014] 1. This utility model, through its designed structure including a disc, a placement seat, a first motor, a third electro-hydraulic push rod, a first circular ejector column, a second motor, and a top plate, allows for efficient edge trimming of batches of stainless steel caps. Operators can directly place the stainless steel caps into the placement seat around the circumference of the disc. When the placement seat moves to the rear, the third electro-hydraulic push rod drives the first circular ejector column upwards. The first circular ejector column then extends into the cap, ejecting the stainless steel cap from the placement seat. The first circular ejector column, in conjunction with the top plate, clamps the stainless steel cap. The second motor then drives the top plate to rotate, causing the stainless steel cap to rotate as well. During the rotation of the stainless steel cap... In this process, the cutting disc contacts and cuts off the edge of the stainless steel cover, thus completing the edge trimming operation. During this process, the placement seats around the disc can sequentially transport the stainless steel covers to the rear for edge trimming. Then, the operator can easily place the stainless steel covers to be trimmed into the placement seats in front, thus enabling uninterrupted edge trimming of the stainless steel covers. It is convenient, fast, efficient, and safe to use, and is suitable for trimming large quantities of stainless steel covers. It solves the technical problem that current edge trimming machines are not suitable for trimming large quantities of stainless steel covers. Therefore, this utility model has the advantage of making edge trimming of large quantities of stainless steel covers more convenient and faster.

[0015] 2. This utility model also features a second circular ejector column mounted on the first circular ejector column via an arc-shaped plate. A guide structure is arranged on the mounting platform corresponding to the second circular ejector column. Therefore, when the first circular ejector column rises, the arc-shaped plate simultaneously drives the second circular ejector column to rise. At this time, the second circular ejector column ejects the trimmed stainless steel cap from the placement seat. Under the action of the guide slope below the semi-circular opening, the concave guide plate in the guide structure pushes the concave guide plate to the left when the stainless steel cap is ejected from the placement seat. When the stainless steel cap moves above the semi-circular opening, the elastic seat resets, causing the semi-circular opening to press against the surface of the second circular ejector column. Then, when the second circular ejector column descends, the stainless steel cap separates from the second circular ejector column and falls onto the guide plate, sliding down the inclined surface at the top of the guide plate. This achieves automatic unloading of the trimmed stainless steel cap, further improving the convenience of trimming batches of stainless steel caps. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the first overall structure of the present invention;

[0017] Figure 2 This is a schematic diagram of the second overall structure of the present invention;

[0018] Figure 3 This is a cross-sectional structural diagram of the present invention;

[0019] Figure 4 This is a schematic diagram showing the connection between the first circular ejector post and the second circular ejector post of this utility model;

[0020] Figure 5 This is a schematic diagram of the adjustment frame structure of this utility model;

[0021] Figure 6 This is a first schematic diagram of the material guiding structure of this utility model;

[0022] Figure 7 This is a second schematic diagram of the material guiding structure of this utility model.

[0023] Explanation of the labels in the diagram:

[0024] 1. Mounting platform; 2. Disc; 3. Placement seat; 4. First motor; 5. Mounting frame; 6. Second motor; 7. Top plate; 8. Adjustment frame; 801. Lower concave frame; 802. Upper concave frame; 803. First electro-hydraulic push rod; 804. T-slot; 805. T-bar; 806. Second electro-hydraulic push rod; 9. Third motor; 10. Cutting disc; 11. Third electro-hydraulic push rod; 12. First circular ejector column; 1201. Arc plate; 1202. Second circular ejector column; 13. Material guiding structure; 14. Concave guide plate; 1401. Semi-circular opening; 1402. Guide slope; 15. Elastic seat; 1501. Mounting plate; 1502. Connecting rod; 1503. Mounting seat; 1504. Spring. Detailed Implementation

[0025] like Figures 1 to 7 As shown, this utility model relates to a stainless steel processing edge cutting device, including an installation platform 1, a disc 2 rotatably arranged at the top center of the installation platform 1, several sets of placement seats 3 equidistantly arranged around the disc 2, a first motor 4 connected to the center of the disc 2 via a bracket at the bottom center of the installation platform 1, a third electric hydraulic push rod 11 corresponding to the placement seats 3 on the rear side of the disc 2 via a bracket at the bottom of the installation platform 1, a first circular ejector post 12 arranged at the piston end of the third electric hydraulic push rod 11, the first circular ejector post 12 penetrating the installation platform 1, an installation frame 5 arranged at the top of the installation platform 1, a second motor 6 arranged at the top center of the installation frame 5, a top plate 7 arranged at the output end of the second motor 6 via a rotating shaft, and the top plate 7 corresponding to the first circular ejector post 12, an adjustment frame 8 arranged at the top rear side of the installation platform 1, a third motor 9 arranged inside the adjustment frame 8, and a cutting disc 10 arranged at the output end of the third motor 9 via a rotating shaft;

[0026] When performing edge trimming on batches of stainless steel caps, personnel can directly place the stainless steel caps into the placement seats 3 around the disc 2. When the placement seats 3 move to the rear, the third electric hydraulic push rod 11 drives the first circular ejector column 12 to rise. Then, the first circular ejector column 12 extends into the cap and pushes the stainless steel cap out of the placement seat 3. The first circular ejector column 12, together with the top plate 7, clamps the stainless steel cap. Then, the second motor 6 drives the top plate 7 to rotate, and the top plate 7 drives the stainless steel cap to rotate. During the rotation of the stainless steel cap, the third motor 9 drives the cutting disc 10 to rotate. The cutting disc 10 contacts and cuts the edge of the stainless steel cap, thus completing the edge trimming operation. During this process, the placement seats 3 around the disc 2 can sequentially transport the stainless steel caps to the rear for edge trimming. Then, personnel can easily place the stainless steel caps to be trimmed into the placement seats 3 from the front, thus achieving uninterrupted edge trimming of the stainless steel caps. It is convenient, fast, efficient, and safe, and is suitable for edge trimming large batches of stainless steel caps.

[0027] Specifically, the adjusting frame 8 includes a concave frame 801, which is slidably arranged on the mounting platform 1. An upper concave frame 802 is inserted into the top of the lower concave frame 801. A third motor 9 is arranged on the upper concave frame 802. The cutting disc 10 is located above the upper concave frame 802. Two sets of symmetrical first electric hydraulic push rods 803 are arranged on opposite sides of the upper concave frame 802 and the lower concave frame 801. The lower concave frame 801 and the upper concave frame 802 can move up and down. Then, the first electric hydraulic push rods 803 can drive the upper concave frame 802 to rise and fall, thereby adjusting the height of the cutting disc 10.

[0028] Furthermore, the bottom of the concave frame 801 is provided with two sets of symmetrical T-slots 804, and T-shaped rods 805 are slidably arranged inside the T-slots 804. The T-shaped rods 805 are arranged on the mounting platform 1. A second electro-hydraulic push rod 806 is arranged in the center of the rear side of the concave frame 801 and is also arranged on the mounting platform 1. With the cooperation of the T-slots 804 and the T-shaped rods 805, the concave frame 801 can move back and forth. Then, the second electro-hydraulic push rod 806 can push the concave frame 801 to move back and forth, so that the cutting disc 10 contacts the stainless steel cover and completes the cutting of the edge of the stainless steel cover.

[0029] In this embodiment of the present invention, an arc-shaped plate 1201 is arranged at the bottom end of the first circular ejector post 12, and a second circular ejector post 1202 is arranged at the end of the arc-shaped plate 1201 facing away from the first circular ejector post 12. The second circular ejector post 1202 corresponds to the placement seat 3 on the left side of the disk 2. A material guiding structure 13 is arranged on the left side of the top of the mounting platform 1. The material guiding structure 13 includes a concave material guiding plate 14 and an elastic seat 15. The elastic seat 15 is arranged at the bottom of the concave material guiding plate 14. The top of the concave material guiding plate 14 is concave, and the top surface of the concave material guiding plate 14 is inclined. One side of the concave material guiding plate 14 is located on the disk. The top of the seat 3 is placed on the left side of the upper part of the 2. A semi-circular opening 1401 is opened on one side of the concave guide plate 14, and a guide slope 1402 is arranged at the bottom of the semi-circular opening 1401. The elastic seat 15 includes a mounting seat 1503, which is arranged at the bottom of the concave guide plate 14. Two sets of symmetrical connecting rods 1502 are inserted into the mounting seat 1503. Mounting plates 1501 are arranged at both ends of the connecting rods 1502. The mounting plates 1501 are arranged on the mounting platform 1. A spring 1504 is arranged between the mounting plate 1501 and the mounting seat 1503 on opposite sides. The spring 1504 is sleeved on the connecting rod 1502.

[0030] When the first circular ejector column 12 rises, it simultaneously drives the second circular ejector column 1202 to rise via the arc plate 1201. At this time, the second circular ejector column 1202 will push the trimmed stainless steel cover out of the placement seat 3. At this time, under the action of the guide slope 1402 below the semi-circular opening 1401, the concave guide plate 14 in the guide structure 13 will push the concave guide plate 14 to the left when the stainless steel cover is pushed out of the placement seat 3. At this time, the mounting seat 1503 of the elastic seat 15 moves to the left on the connecting rod 1502. At this time, the spring 1504 will undergo expansion and contraction deformation. When the stainless steel cover moves to the semi-circular opening 1401... After the upper part is in place, the spring 1504 drives the mounting base 1503 to reset, and then the mounting base 1503 drives the concave guide plate 14 to reset. At this time, the semi-circular opening 1401 presses against the surface of the second circular ejector post 1202. When the second circular ejector post 1202 descends, the stainless steel cover will separate from the second circular ejector post 1202. Then the stainless steel cover will fall on the concave guide plate 14 and slide down along the inclined surface at the top of the concave guide plate 14. This can achieve the effect of automatic unloading of the trimmed stainless steel cover, further improving the convenience of trimming batches of stainless steel covers.

[0031] Working Principle: This embodiment provides a stainless steel trimming device. First, when trimming a batch of stainless steel caps, the operator can directly place the caps into the placement seat 3 around the circumference of the disc 2. When the placement seat 3 moves to the rear, the third electric hydraulic push rod 11 drives the first circular ejector column 12 to rise. Then, the first circular ejector column 12 extends into the cap and ejects the stainless steel cap from the placement seat 3. The first circular ejector column 12, in conjunction with the top plate 7, clamps the stainless steel cap. Then, the second motor 6 drives the top plate 7 to rotate, and the top plate 7 moves the stainless steel cap further in... During the rotation of the stainless steel cover, the third motor 9 drives the cutting disc 10 to rotate. The cutting disc 10 contacts the edge of the stainless steel cover to cut it, thus completing the edge cutting operation of the stainless steel cover. During this process, the placement seat 3 around the disc 2 can sequentially transport the stainless steel cover to the rear for edge cutting. Then, the personnel can calmly put the stainless steel cover to be cut into the placement seat 3 in front, so that the stainless steel cover can be cut continuously. It is convenient, fast and efficient to use, has no safety hazards, and is suitable for cutting large batches of stainless steel covers.

[0032] Secondly, when the first circular ejector column 12 rises, it simultaneously drives the second circular ejector column 1202 to rise via the arc plate 1201. At this time, the second circular ejector column 1202 will push the trimmed stainless steel cover out of the placement seat 3. At this time, under the action of the guide slope 1402 below the semi-circular opening 1401 in the guide structure 13, the concave guide plate 14 will push the concave guide plate 14 to the left when the stainless steel cover is pushed out of the placement seat 3. At this time, the mounting seat 1503 of the elastic seat 15 moves to the left on the connecting rod 1502. At this time, the spring 1504 will undergo expansion and contraction deformation. When the stainless steel cover moves to the semi-circular opening 1401... After the upper part is in place, the spring 1504 drives the mounting base 1503 to reset, and then the mounting base 1503 drives the concave guide plate 14 to reset. At this time, the semi-circular opening 1401 presses against the surface of the second circular ejector post 1202. When the second circular ejector post 1202 descends, the stainless steel cover will separate from the second circular ejector post 1202. Then the stainless steel cover will fall on the concave guide plate 14 and slide down along the inclined surface at the top of the concave guide plate 14. This can achieve the effect of automatic unloading of the trimmed stainless steel cover, further improving the convenience of trimming batches of stainless steel covers.

[0033] The embodiments disclosed herein are preferred embodiments, but are not limited thereto. Those skilled in the art can readily grasp the spirit of this utility model based on the above embodiments and make different extensions and variations. However, as long as they do not depart from the spirit of this utility model, they are all within the protection scope of this utility model.

Claims

1. A trimming device for stainless steel processing, characterized by, The utility model provides a kind of automatic cutting device for cutting disc, including installation platform (1), the disc (2) is rotationally arranged at the top center of installation platform (1), a plurality of groups of placement seat (3) are arranged equidistantly on the disc (2), the first motor (4) is arranged with the central connection of disc (2) at the bottom center of installation platform (1) by support, the third electric hydraulic push rod (11) corresponding with the placement seat (3) of the upper rear side of disc (2) is arranged on the bottom of installation platform (1) by support, the piston end of third electric hydraulic push rod (11) is arranged with first circular ejection column (12), first circular ejection column (12) penetrates installation platform (1), installation rack (5) is arranged on the top of installation platform (1), second motor (6) is arranged at the top center of installation rack (5), the output end of second motor (6) is arranged with top disc (7) by rotating shaft, and top disc (7) corresponds with first circular ejection column (12), adjusting frame (8) is arranged on the top rear side of installation platform (1), third motor (9) is arranged in adjusting frame (8), the output end of third motor (9) is arranged with cutting disc (10) by rotating shaft; The bottom end of the first circular ejection column (12) is arranged with an arc plate (1201), and the end of the arc plate (1201) facing away from the first circular ejection column (12) is arranged with a second circular ejection column (1202). The second circular ejection column (1202) corresponds to the placement seat (3) on the left side of the disc (2). The left side of the top of the installation platform (1) is arranged with a material guiding structure (13).

2. The edge trimming device for stainless steel processing according to claim 1, characterized in that, The adjusting frame (8) includes a lower concave frame (801) which is slidingly arranged on the installation platform (1). The upper concave frame (802) is inserted into the top of the lower concave frame (801). The third motor (9) is arranged on the upper concave frame (802). The cutting disc (10) is located above the upper concave frame (802). The upper concave frame (802) is arranged with two groups of symmetrical first electric hydraulic push rods (803) on the opposite side of the lower concave frame (801).

3. The edge trimming device for stainless steel processing according to claim 2, characterized in that, The bottom of the lower concave frame (801) is provided with two groups of symmetrical T-shaped grooves (804). The T-shaped rods (805) are slidingly arranged in the T-shaped grooves (804). The T-shaped rods (805) are arranged on the installation platform (1). The second electric hydraulic push rod (806) is arranged on the rear center of the lower concave frame (801). The second electric hydraulic push rod (806) is arranged on the installation platform (1).

4. The edge trimming device for stainless steel processing according to claim 1, characterized in that, The material guiding structure (13) includes a concave material guiding plate (14) and an elastic seat (15). The elastic seat (15) is arranged at the bottom of the concave material guiding plate (14). The top of the concave material guiding plate (14) is concave, and the top surface of the concave material guiding plate (14) is inclined.

5. The edge trimming device for stainless steel processing according to claim 4, characterized in that, One side of the concave material guiding plate (14) is located at the top of the left placement seat (3) on the disc (2). A semicircular opening (1401) is formed on one side of the concave material guiding plate (14). A guide inclined surface (1402) is arranged at the bottom of the semicircular opening (1401).

6. The edge trimming device for stainless steel processing according to claim 4, wherein The elastic seat (15) includes a mounting seat (1503), which is arranged at the bottom of the concave guide plate (14). Two sets of symmetrical connecting rods (1502) are inserted into the mounting seat (1503). Mounting plates (1501) are arranged at both ends of the connecting rods (1502). The mounting plates (1501) are arranged on the mounting platform (1). A spring (1504) is arranged between the mounting plate (1501) and the opposite side of the mounting seat (1503). The spring (1504) is sleeved on the connecting rod (1502).