CN223385602U - A steel coil cutting and recycling mechanism - Google Patents

A steel coil cutting and recycling mechanism

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Publication number
CN223385602U
CN223385602U CN202422585189.7U CN202422585189U CN223385602U CN 223385602 U CN223385602 U CN 223385602U CN 202422585189 U CN202422585189 U CN 202422585189U CN 223385602 U CN223385602 U CN 223385602U
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CN
China
Prior art keywords
cutting
rewinding
main shaft
recycling
steel coil
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Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
CN202422585189.7U
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Chinese (zh)
Inventor
侯树旗
李永晖
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Shanghai Zhongji Machinery Co ltd
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Shanghai Zhongji Machinery Co ltd
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Priority to CN202422585189.7U priority Critical patent/CN223385602U/en
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Publication of CN223385602U publication Critical patent/CN223385602U/en
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P70/00Climate change mitigation technologies in the production process for final industrial or consumer products
    • Y02P70/10Greenhouse gas [GHG] capture, material saving, heat recovery or other energy efficient measures, e.g. motor control, characterised by manufacturing processes, e.g. for rolling metal or metal working

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Abstract

本实用新型公开了一种钢卷裁切回收机构,包括裁切分条部及边料复卷回收部;边料复卷回收部包括安在裁切分条部上方的边料复卷回收部底座,边料复卷回收部底座上安有边料复卷回收部上架,边料复卷回收部上架布置有水平布置的主轴,主轴依次套装有被动链轮、摩擦片、联结板和压紧弹簧,被动链轮通过轴承套安装在主轴上,摩擦片固定在联结板上,联结板通过限位轴插接在主轴上的限位孔,主轴上安有对压紧弹簧进行限位的弹簧限位螺母,主轴的套装有收料架,边料复卷回收部底座上安有通过复卷传动链与被动链轮连接的复卷驱动电机。本实用新型的钢卷裁切回收机构,结构设计合理,回收装置能够克服收料线速度与收料剪切速度形成干扰的问题,收料稳定性好。

The utility model discloses a steel coil cutting and recycling mechanism, comprising a cutting and slitting section and a scrap rewinding and recycling section; the scrap rewinding and recycling section comprises a scrap rewinding and recycling section base mounted above the cutting and slitting section, a scrap rewinding and recycling section upper frame mounted on the scrap rewinding and recycling section base, a horizontally arranged main shaft mounted on the main shaft, a passive sprocket, a friction plate, a connecting plate, and a compression spring mounted thereon in sequence, the passive sprocket mounted on the main shaft via a bearing sleeve, the friction plate fixed to the connecting plate, the connecting plate plugged into a limiting hole on the main shaft via a limiting shaft, a spring limiting nut mounted on the main shaft for limiting the compression spring, a material receiving frame mounted on the main shaft, and a rewinding drive motor connected to the passive sprocket via a rewinding transmission chain mounted on the scrap rewinding and recycling section base. The steel coil cutting and recycling mechanism of the utility model has a reasonable structural design, a recycling device capable of overcoming the problem of interference between the receiving linear speed and the receiving shearing speed, and good receiving stability.

Description

Steel coil cutting and recycling mechanism
Technical Field
The utility model relates to the technical field of auxiliary equipment of color steel plate production lines, relates to slitting and rewinding equipment in the color steel plate production lines, and particularly relates to a steel coil cutting and recycling mechanism.
Background
In the processing process of the color steel plate, the raw materials, namely steel coils, are required to be cut into strips to meet the requirements of the product size specifications because the product specifications are different. While the strip operation inevitably brings the surplus rim charge, the surplus rim charge is piled aside during the current normal operation, which affects the neatness of the workshop and the transportation management of the rim charge. CN 221473742U discloses a coil of strip cutting device, its reasonable in design utilizes water not only to cool down to the cutting, brings the cutting piece into the collection box moreover, but it can only collect the smaller rim charge of specification such as piece, can't satisfy the collection recovery needs of the great panel of specification.
Therefore, the development of the cutting recovery mechanism meeting the requirements of collecting and recovering the plates with larger specifications is of great practical significance.
Disclosure of utility model
Because the prior art has the defects, the utility model provides a steel coil cutting and recycling mechanism meeting the requirements of collecting and recycling large-size plates, so as to solve the problem that the existing steel coil cutting device cannot meet the requirements of collecting and recycling large-size plates.
In order to achieve the above purpose, the present utility model provides the following technical solutions:
A steel coil cutting and recycling mechanism comprises a cutting and slitting part and a rim charge rewinding and recycling part;
The cutting and slitting machine comprises a cutting and slitting machine frame, wherein a driving cutting roller and a driven cutting roller which are arranged up and down are arranged on the cutting and slitting machine frame, a plurality of groups of cutting tools which are arranged in a staggered manner are arranged on the driving cutting roller and the driven cutting roller, and a cutting driving motor is also arranged on the cutting and slitting machine frame and is connected with the driving cutting roller through a cutting driving belt;
The rim charge rewinding recovery unit comprises a rim charge rewinding recovery unit base, the rim charge rewinding recovery unit base is arranged at the top of a cutting and slitting unit frame, a rim charge rewinding recovery unit upper frame is arranged on the rim charge rewinding recovery unit base, a horizontally arranged main shaft is arranged on the rim charge rewinding recovery unit upper frame through a belt seat bearing, a driven sprocket, a friction plate, a connecting plate and a compression spring are sequentially sleeved on the main shaft, the driven sprocket is arranged on the main shaft through a bearing sleeve, the friction plate is fixed on the connecting plate, a limit hole is formed in the main shaft, the connecting plate is connected with the main shaft in an inserting mode through the limit hole in an movably connected mode, a spring limit nut used for limiting the compression spring is arranged on the main shaft, a material collecting frame is fixedly sleeved on the other side of the main shaft, a rewinding driving motor is arranged on the rim charge rewinding recovery unit base, and a driving shaft of the rewinding driving motor is connected with the driven sprocket through a rewinding driving chain.
The steel coil cutting and recycling mechanism is reasonable in structural design, a cutting device and a recycling device of a steel coil are organically combined, a cutting driving motor is used as a power source for driving a driving cutting roller to roll, a plate is inserted between the driving cutting roller and a driven cutting roller, the plate moves forwards along with the rolling of the driving cutting roller and further drives the driven cutting roller to roll, cutting tools on the two cutting rollers operate to cut the plate, a rim charge rewinding recycling part transmits torque to a connecting plate and further drives a main shaft to rotate through friction force between a friction plate and a driven sprocket, and the rim charge diameter gradually increases when the rim charge is rolled, the material collecting line speed gradually increases, but relative sliding is generated between the friction plate and the driven sprocket when the rim charge collecting line speed is excessively large, so that interference between the material collecting line speed and the material collecting shearing speed is avoided, stable material collecting is ensured, and the application prospect is good.
As a preferable technical scheme:
According to the steel coil cutting and recycling mechanism, the bearing seats are arranged on the two sides of the frame of the cutting and slitting part, and the driving cutting roller and the driven cutting roller are arranged on the bearing seats. The gap between the cutting tools on the two cutting rollers can be adjusted through the bearing seat.
According to the steel coil cutting and recycling mechanism, the plurality of groups of cutting tools are equidistantly arranged on the driving cutting roller and the driven cutting roller.
According to the steel coil cutting and recycling mechanism, the outer wall of the main shaft is provided with the external thread structure matched with the spring limit nut, and the spring limit nut is in threaded connection with the main shaft. The position of the spring limit nut is controlled so as to control the compression amount of the compression spring (the more tightly compressed the spring is, the larger the force is, the larger the friction force is, the less relative sliding is generated on the friction plate), and the speed difference of the relative sliding between the friction plate and the driven sprocket is further controlled.
According to the steel coil cutting and recycling mechanism, the limiting holes are strip-shaped through holes arranged along the length direction of the main shaft.
According to the steel coil cutting and recycling mechanism, the side plates and the side frames are sleeved on the main shaft and are respectively located at two sides of the material receiving frame, and the material receiving frame is limited through the side plates and the side frames.
According to the steel coil cutting and recycling mechanism, the side plates and the side frames are provided with the bolt hole groups which are matched with each other, and the bolts are inserted into the bolt hole groups, so that the side plates and the side frames can be prevented from rotating relatively when the main shaft rotates.
According to the steel coil cutting and recycling mechanism, the locking nut for limiting the side frame is connected to the main shaft through threads.
The above technical solution is only one possible technical solution of the present utility model, the protection scope of the present utility model is not limited thereto, and a person skilled in the art can reasonably adjust the specific design according to the actual requirements.
Compared with the prior art, the utility model has the following advantages or beneficial effects:
(1) The steel coil cutting and recycling mechanism is reasonable in structural design, and a steel coil cutting device and a recycling device are organically combined;
(2) According to the steel coil cutting and recycling mechanism, the cutting device takes the cutting driving motor as a power source to drive the driving cutting roller to roll, the plate is inserted between the driving cutting roller and the driven cutting roller, the plate moves forwards along with the rolling of the driving cutting roller, the driven cutting roller is driven to roll, and the cutting tools on the two cutting rollers operate to cut the plate, so that the design is reasonable;
(3) According to the steel coil cutting and recycling mechanism, the rim charge rewinding and recycling part transmits torque to the connecting plate through friction force between the friction plate and the driven sprocket so as to drive the main shaft to rotate, and the rim charge diameter is gradually increased and the material receiving line speed is gradually increased during winding, but relative sliding is generated between the friction plate and the driven sprocket when the rim charge diameter is excessive, so that interference between the material receiving line speed and the material receiving shearing speed is avoided, stable material receiving is ensured, and the application prospect is good.
Drawings
The utility model and its features, aspects and advantages will become more apparent from the detailed description of non-limiting embodiments with reference to the following drawings. Like numbers refer to like parts throughout. The drawings may not be to scale, emphasis instead being placed upon illustrating the principles of the utility model.
Fig. 1 is a schematic structural view of a steel coil cutting and recycling mechanism of the utility model;
FIG. 2 is a schematic view of a structure of a slit portion;
fig. 3 is a schematic structural view of the rim charge rewinding recovery unit;
The cutting and slitting machine comprises a cutting and slitting machine body, wherein a cutting and slitting machine body is characterized in that the cutting and slitting machine body is provided with a cutting and slitting machine frame 1, a driving cutting roller 12, a driven cutting roller 13, a cutting driving motor 14, a cutting driving belt 15, a cutting tool 16, a bearing seat 17, an edge material rewinding and recovering part 2, an edge material rewinding and recovering part base 21, a rewinding driving motor 22, an edge material rewinding and recovering part upper frame 23, a compression spring 24, a friction plate 25, a driven sprocket wheel 26, a rewinding driving chain 27, a bolt 28, a material collecting frame 29, a locking nut 211, a spindle shaft 212, a connecting plate 213, a belt seat bearing and an edge material 3.
Detailed Description
The structure of the present utility model will be further described with reference to the accompanying drawings and specific examples, which are not intended to limit the utility model.
Example 1
A steel coil cutting and recycling mechanism, as shown in figures 1-3, comprises a cutting and slitting part 1 and a rim charge rewinding and recycling part 2;
The cutting and slitting part 1 comprises a cutting and slitting part frame 11, bearing seats 17 are arranged on two sides of the cutting and slitting part frame 11, a driving cutting roller 12 and a driven cutting roller 13 which are arranged up and down are arranged on the bearing seats 17, a plurality of groups of cutting tools 16 which are arranged in a staggered mode and are arranged at equal intervals are arranged on the driving cutting roller 12 and the driven cutting roller 13, a cutting driving motor 14 is further arranged on the cutting and slitting part frame 11, and the cutting driving motor 14 is connected with the driving cutting roller 12 through a cutting driving belt 15;
The rim charge recycling portion 2 comprises a rim charge recycling portion base 21, the rim charge recycling portion base 21 is arranged at the top of the cutting and slitting portion frame 11, a rim charge recycling portion upper frame 23 is arranged on the rim charge recycling portion base 21, a main shaft 211 which is horizontally arranged is arranged on the rim charge recycling portion upper frame 23, the main shaft 211 is fixed on the rim charge recycling portion upper frame 23 through a belt seat bearing 213, a driven sprocket 26, a friction plate 25, a connecting plate 212 and a compression spring 24 are sleeved on the main shaft 211 in sequence, the driven sprocket 26 is arranged on the main shaft 211 through a bearing sleeve, the friction plate 25 is fixed on the connecting plate 212 through bolts, a limit hole (a strip-shaped through hole which is arranged along the length direction of the main shaft 211) is arranged on the main shaft 211, the connecting plate 212 is spliced in the limit hole through a limit shaft to realize movable connection of the connecting plate 212 and the main shaft 211, the main shaft 211 is connected with a spring limit nut for limiting the compression spring 24 in a threaded manner (an outer threaded structure matched with the spring limit nut is arranged on the outer wall of the main shaft 211, the spring limit nut is connected with the main shaft 211 in a threaded manner), the other side of the main shaft 211 is sleeved and fixed with a material collecting frame 29 (a side plate and a side frame are sleeved on the main shaft 211 and are respectively positioned on two sides of the material collecting frame 29, the material collecting frame 29 is limited through the side plate and the side frame, a bolt hole group matched with each other is arranged on the side plate and the side frame, a bolt 28 is inserted into the bolt hole group), the rim charge 3 is wound on the material collecting frame 29, a locking nut 210 for limiting the side frame is connected with the main shaft 211 in a threaded manner, a rewinding driving motor 22 is arranged on a rim charge rewinding recovery part base 21, the drive shaft of the rewinding drive motor 22 is connected to the driven sprocket 26 via a rewinding drive chain 27.
In conclusion, the steel coil cutting and recycling mechanism is reasonable in structural design, a steel coil cutting device is organically combined with a recycling device, a cutting driving motor is used as a power source for driving a driving cutting roller to roll by the cutting device, a plate is inserted between the driving cutting roller and a driven cutting roller, the plate moves forwards along with the rolling of the driving cutting roller to further drive the driven cutting roller to roll, cutting tools on the two cutting rollers operate to cut the plate, a rim charge rewinding recycling part transmits torque to a connecting plate to drive a main shaft to rotate through friction force between a friction plate and a driven sprocket, and the rim charge collecting line speed is gradually increased due to gradual increase of the rim charge diameter during winding, but relative sliding is generated between the friction plate and the driven sprocket when the rim charge collecting line speed is excessively large, so that interference between the charge collecting line speed and the charge collecting shearing speed is avoided, stable material collecting is ensured, and the application prospect is good.
Those skilled in the art will understand that the skilled person can implement the modification in combination with the prior art and the above embodiments, and this will not be repeated here. Such modifications do not affect the essence of the present utility model, and are not described herein.
The preferred embodiments of the present utility model have been described above. It is to be understood that the utility model is not limited to the particular embodiments described above, in which the apparatus and structures not described in detail are to be understood as being embodied in a manner commonly understood in the art, and that many possible variations and modifications may be made to the technical solution of the utility model by any person skilled in the art using the methods and techniques disclosed above, or modified to equivalent embodiments without departing from the spirit of the utility model. Therefore, any simple modification, equivalent variation and modification of the above embodiments according to the technical substance of the present utility model still fall within the scope of the technical solution of the present utility model.

Claims (8)

1. The steel coil cutting and recycling mechanism is characterized by comprising a cutting and slitting part and an edge material rewinding and recycling part;
The cutting and slitting machine comprises a cutting and slitting machine frame, wherein a driving cutting roller and a driven cutting roller which are arranged up and down are arranged on the cutting and slitting machine frame, a plurality of groups of cutting tools which are arranged in a staggered manner are arranged on the driving cutting roller and the driven cutting roller, and a cutting driving motor is also arranged on the cutting and slitting machine frame and is connected with the driving cutting roller through a cutting driving belt;
The rim charge rewinding recovery unit comprises a rim charge rewinding recovery unit base, the rim charge rewinding recovery unit base is arranged at the top of a cutting and slitting unit frame, a rim charge rewinding recovery unit upper frame is arranged on the rim charge rewinding recovery unit base, a horizontally arranged main shaft is arranged on the rim charge rewinding recovery unit upper frame through a belt seat bearing, a driven sprocket, a friction plate, a connecting plate and a compression spring are sequentially sleeved on the main shaft, the driven sprocket is arranged on the main shaft through a bearing sleeve, the friction plate is fixed on the connecting plate, a limit hole is formed in the main shaft, the connecting plate is connected with the main shaft in an inserting mode through the limit hole in an movably connected mode, a spring limit nut used for limiting the compression spring is arranged on the main shaft, a material collecting frame is fixedly sleeved on the other side of the main shaft, a rewinding driving motor is arranged on the rim charge rewinding recovery unit base, and a driving shaft of the rewinding driving motor is connected with the driven sprocket through a rewinding driving chain.
2. The steel coil cutting and recycling mechanism according to claim 1, wherein bearing seats are arranged on two sides of the frame of the cutting and slitting part, and the driving cutting roller and the driven cutting roller are arranged on the bearing seats.
3. The steel coil cutting and recycling mechanism as set forth in claim 1, wherein the plurality of sets of cutting tools are equidistantly arranged on the driving cutting roller and the driven cutting roller.
4. The steel coil cutting and recycling mechanism of claim 1, wherein the outer wall of the main shaft is provided with an external thread structure matched with the spring limit nut, and the spring limit nut is in threaded connection with the main shaft.
5. The steel coil cutting and recycling mechanism according to claim 1, wherein the limiting holes are bar-shaped through holes arranged along the length direction of the main shaft.
6. The steel coil cutting and recycling mechanism of claim 1, wherein the main shaft is sleeved with side plates and side frames, the side plates and the side frames are respectively positioned at two sides of the material receiving frame, and the material receiving frame is limited by the side plates and the side frames.
7. The steel coil cutting and recycling mechanism of claim 6, wherein the side plates and the side frames are provided with mutually matched bolt hole groups, and bolts are inserted into the bolt hole groups.
8. The steel coil cutting and recycling mechanism of claim 6, wherein the spindle is threaded with a lock nut for limiting the side frame.
CN202422585189.7U 2024-10-25 2024-10-25 A steel coil cutting and recycling mechanism Active CN223385602U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202422585189.7U CN223385602U (en) 2024-10-25 2024-10-25 A steel coil cutting and recycling mechanism

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202422585189.7U CN223385602U (en) 2024-10-25 2024-10-25 A steel coil cutting and recycling mechanism

Publications (1)

Publication Number Publication Date
CN223385602U true CN223385602U (en) 2025-09-26

Family

ID=97135276

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202422585189.7U Active CN223385602U (en) 2024-10-25 2024-10-25 A steel coil cutting and recycling mechanism

Country Status (1)

Country Link
CN (1) CN223385602U (en)

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