Non-ferrous metal calendaring and cutting equipment
By installing a limiting roller assembly and a conveying assembly on the non-ferrous metal rolling and cutting equipment, the problem of positional offset was solved, achieving efficient rolling roller positioning and cutting, and improving work efficiency.
Patent Information
- Application Number
- CN202520137029.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-21
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2035-01-21
AI Technical Summary
Existing non-ferrous metal rolling and cutting equipment requires positioning and conveying during processing to avoid positional deviation and affect work efficiency.
The equipment is equipped with a limiting roller assembly and a conveying assembly. The positioning assembly and the limiting roller assembly are used for clamping and conveying to ensure the positional stability of the calendering rollers. The cutting assembly is used to achieve efficient cutting.
It improves processing efficiency, avoids production delays caused by positional deviation, and enhances the convenience and efficiency of cutting work.
Smart Images

Figure CN223733955U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of processing in rolling equipment, specifically to non-ferrous metal rolling and cutting equipment. Background Technology
[0002] Non-ferrous metal rolling refers to the process of applying external force to deform non-ferrous metals in a plastic state to achieve the desired shape and size. This process is widely used in aerospace, automotive, construction, power, and electronics industries. The basic principle of non-ferrous metal rolling is to apply external force to deform the metal in a plastic state. In this process, the control of pressure and temperature is crucial. The magnitude of pressure determines the degree of deformation and forming effect, while temperature control affects the metal's plasticity and resistance to deformation. A rolling mill mainly consists of work rolls, a frame, a base, a transmission device, speed and spacing adjustment devices, roll heating and cooling devices, a lubrication system, and an emergency stop device. Depending on the process requirements, the number and arrangement of rolls in a rolling mill vary; common types include two-roll, three-roll, and four-roll rolling mills. Therefore, the cutting of the roll shafts is an essential part of the rolling mill production process.
[0003] Application number CN202123063209.7 discloses a non-ferrous metal rolling and cutting device, including a rolling table. A cooling hood is connected to the left side of the rolling table, and a cooling box is connected to the upper surface of the cooling hood. A semiconductor cooling chip is installed on the upper surface of the cooling box, and the cold end of the semiconductor cooling chip penetrates through the cooling box and extends into its interior. This non-ferrous metal rolling and cutting device cuts the rolled non-ferrous metal sheet using a cutting frame installed inside the cooling hood. A cooling hood is installed on top of the rolling table. During rolling, a fan on top of the cooling hood blows air onto the non-ferrous metal sheet. Since the cooling box is located on top of the fan, the semiconductor cooling chip in the cooling box cools the incoming air, thereby cooling the non-ferrous metal sheet with cold air. Simultaneously, a high-pressure water tank and an atomizing nozzle are used to atomize water, and the atomized water mist, combined with the cold air, further cools the non-ferrous metal.
[0004] Although the aforementioned utility model uses a cutting frame installed inside the cooling hood to cut the rolled non-ferrous metal sheet, and a cooling hood is set on top of the rolling table, and a fan on top of the cooling hood blows air onto the non-ferrous metal sheet during rolling, and a cooling box is set on top of the fan, using a semiconductor cooling chip in the cooling box to cool the incoming air, thereby cooling the non-ferrous metal sheet with cold air. At the same time, a high-pressure water tank and atomizing nozzle are used to atomize water, and the atomized water mist, together with the cold air, further cools the non-ferrous metal, the following drawback exists: the device requires positioning and conveying during processing to better produce the rolling rollers and avoid positional deviations that could affect subsequent use. Utility Model Content
[0005] The purpose of this invention is to provide a non-ferrous metal rolling and cutting device to solve the problems mentioned in the background art.
[0006] To solve the above-mentioned technical problems, this utility model is achieved through the following technical solution:
[0007] This utility model relates to a non-ferrous metal rolling and cutting equipment, including a support assembly. A positioning component is installed on one side of the top of the support assembly, a limiting roller assembly is installed between the two positioning components, and a cutting component is installed on the other side of the positioning component. A conveying component is installed at the bottom of the limiting roller assembly.
[0008] Furthermore, the support assembly includes a support box, with support legs installed diagonally at the bottom of the support box, and a transmission slot opened in the middle of the top of the support box.
[0009] Furthermore, the positioning component includes a support frame, the top of which is equipped with a bracket opening, and the support frame is installed on both sides of the top of the support box. An upper clamping opening is installed on the top of one side of the bracket opening, and a locking buckle is installed on the outer side of the upper clamping opening and the bracket opening.
[0010] Furthermore, the limiting roller assembly includes a limiting bracket, a roller is installed inside the limiting bracket, and the limiting bracket is installed on the top of the slide rod. At the same time, a connecting rod is installed in the middle of the front side of the limiting bracket, and a locator is installed on one side of the limiting bracket. The other side of the connecting rod is connected to a pneumatic telescopic pump. A driven gear is installed on the front side of the roller, and a clamping bracket is installed on the inner wall of the roller.
[0011] Furthermore, the conveying assembly includes a brake motor, a rotary motor is mounted on the top of the brake motor, and the brake motor is installed inside the support box. A transmission device is mounted on one side of the rotary motor, and a conveyor belt is mounted on the outside of the transmission device.
[0012] Furthermore, the cutting assembly includes an electrically controlled slide groove, which is opened on the top side of the support box and has an electrically controlled slider installed on its inner side. A cutting bracket is installed on the top of the electrically controlled slider, a rotating mechanism is installed on the outer side of the top of the cutting bracket, and a cutting blade is installed in the middle of the inner side of the rotating mechanism.
[0013] This utility model has the following beneficial effects:
[0014] (1) This utility model is a non-ferrous metal rolling and cutting equipment. By installing a limiting roller assembly and a conveying assembly on the device, the rolling roller is clamped by the limiting roller assembly and the conveying assembly to limit and convey the work when using the device. This can improve the work efficiency and avoid production delays during the cutting work.
[0015] (2) This utility model is a non-ferrous metal rolling and cutting equipment. By installing positioning components in the device, the positioning components are installed on both sides of the limiting roller assembly. This can prevent positional deviation during conveying and cutting operations, thus avoiding affecting the working effect.
[0016] Of course, any product implementing this utility model does not necessarily need to achieve all of the advantages described above at the same time. Attached Figure Description
[0017] To more clearly illustrate the technical solutions of the embodiments of this utility model, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0018] Figure 1 This is a schematic diagram of the overall structure of the non-ferrous metal rolling and cutting equipment of this utility model;
[0019] Figure 2 This is a schematic diagram of the internal structure of the non-ferrous metal rolling and cutting equipment of this utility model;
[0020] Figure 3 This is a schematic diagram of the limiting roller assembly structure of the non-ferrous metal rolling and cutting equipment of this utility model;
[0021] Figure 4 This is a schematic diagram of the cutting component structure of the non-ferrous metal rolling and cutting equipment of this utility model;
[0022] The attached diagram lists the components represented by each number as follows:
[0023] In the diagram: 1. Support assembly; 2. Positioning assembly; 3. Limiting roller assembly; 4. Conveying assembly; 5. Cutting assembly; 101. Support box; 102. Support leg; 103. Transmission slot; 201. Support frame; 202. Bracket opening; 203. Upper clamping opening; 204. Locking buckle; 301. Limiting bracket; 302. Roller; 303. Driven gear; 304. Clamping bracket; 305. Slide rod; 306. Pneumatic telescopic pump; 307. Connecting rod; 308. Positioner; 401. Brake motor; 402. Rotary motor; 403. Transmission device; 404. Conveyor belt; 501. Electrically controlled slide; 502. Electrically controlled slider; 503. Cutting bracket; 504. Rotary machine; 505. Cutting blade. Detailed Implementation
[0024] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0025] Please see Figure 1 - Figure 4 As shown, this utility model is a non-ferrous metal rolling and cutting equipment, including a support assembly 1, a positioning assembly 2 installed on one side of the top of the support assembly 1, a limiting roller assembly 3 installed between the two positioning assemblies 2, a cutting assembly 5 installed on the other side of the positioning assembly 2, and a conveying assembly 4 installed at the bottom of the limiting roller assembly 3.
[0026] By installing a limiting roller assembly 3 and a conveying assembly 4 on the device, the calendering rollers clamped by the limiting roller assembly 3 and the conveying assembly 4 can be limited and conveyed when using the device. This can improve work efficiency and avoid production delays during the cutting process.
[0027] The support assembly 1 includes a support box 101, with support legs 102 installed diagonally at the bottom of the support box 101, and a transmission slot 103 opened in the middle of the top of the support box 101. The support box 101 is supported and fixed by the support legs 102, and then the transmission assembly 4 is installed inside the transmission slot 103.
[0028] The positioning component 2 includes a support frame 201. A bracket opening 202 is installed on the top of the support frame 201, and the support frame 201 is installed on both sides of the top of the support box 101. An upper clamping opening 203 is installed on the top of one side of the bracket opening 202. A locking buckle 204 is installed on the outer side of the upper clamping opening 203 and the bracket opening 202. The pressure roller in the calender is positioned by the positioning component 2. During positioning, the roller is first supported by the bracket opening 202 installed on the top of the support frame 201, then the upper clamping opening 203 is used for merging and limiting, and finally the locking buckle 204 is used for limiting and locking to complete the limiting work.
[0029] The limiting roller assembly 3 includes a limiting bracket 301, inside which a roller 302 is installed. The limiting bracket 301 is mounted on top of a slide bar 305. A connecting rod 307 is installed in the middle of the front side of the limiting bracket 301, and a positioner 308 is installed on one side of the limiting bracket 301. The other side of the connecting rod 307 is connected to a pneumatic telescopic pump 306. A driven gear 303 is installed on the front side of the roller 302, and a clamping bracket 304 is installed on the inner wall of the roller 302. The pneumatic telescopic pump 306 at the bottom drives the connecting rod 307 at the end to retract, which in turn moves the outer limiting bracket 301, thus realizing the conveying operation. Afterwards, the driven gear 303 on the outer side of the outer roller 302 is installed inside the conveyor belt 404 to achieve the rotation effect. This makes the subsequent cutting operation more convenient and efficient.
[0030] The conveying assembly 4 includes a brake motor 401, a rotary motor 402 mounted on top of the brake motor 401, and the brake motor 401 is installed inside the support box 101. A transmission device 403 is mounted on one side of the rotary motor 402, and a conveyor belt 404 is mounted on the outside of the transmission device 403. When rotating, the brake motor 401 mounted at the bottom drives the rotary motor 402 at the top to rotate, and the rotary motor 402 drives the transmission device 403 on the outside. The rotation of the transmission device 403 drives the conveyor belt 404 on the outside, which in turn drives the driven gear 303 to rotate, thus driving the fixed pressure roller to rotate.
[0031] The cutting assembly 5 includes an electrically controlled slide 501, which is located on the top side of the support box 101. An electrically controlled slider 502 is installed inside the slide 501. A cutting bracket 503 is installed on the top of the slider 502. A rotating mechanism 504 is installed on the outer side of the top of the cutting bracket 503. A cutting blade 505 is installed in the middle of the inner side of the rotating mechanism 504. By moving the electrically controlled slider 502 within the electrically controlled slide 501, the cutting bracket 503 installed on the top of the slider 502 is driven. The rotating mechanism 504 installed on the outer side of the cutting bracket 503 drives the internal cutting blade 505, thus enabling the cutting operation of the cutting blade.
[0032] When using this device, first install the positioning components 2 on both sides of the top of the support assembly 1, then install the limiting roller assembly 3 between the two positioning components 2, and install the conveying assembly 4 inside the support assembly 1 and associate it with the limiting roller assembly 3. This completes the overall assembly. During processing, first support the support box 101 using the support legs 102, then install the conveying assembly 4 inside the transmission slot 103. Position the pressure roller in the calender using the positioning components 2. During positioning, first hold it through the bracket opening 202 installed on the top of the support frame 201, then use the upper clamping opening 203 for merging and limiting, and finally use the locking buckle 204 to lock and limit the position. The middle part of the pressure roller is positioned and limited by the clamping bracket 304. After clamping, the pneumatic telescopic pump 306 installed at the bottom drives the connecting rod 307 at the end. The retraction operation moves the outer limit bracket 301, enabling the conveying process. Then, the outer roller 302 and the driven gear 303, mounted inside the conveyor belt 404, achieve rotation. This makes subsequent cutting more convenient and efficient. During rotation, the brake motor 401 at the bottom drives the rotary motor 402 at the top, which in turn drives the outer transmission device 403. The rotation of the transmission device 403 drives the outer conveyor belt 404, further driving the driven gear 303, thus rotating the fixed pressure roller. Finally, the movement of the electrically controlled slider 502 within the electrically controlled groove 501 drives the cutting bracket 503 mounted on top of the slider 502. The rotating mechanism 504 on the outside of the cutting bracket 503 drives the internal cutting blade 505, thus achieving the cutting operation.
[0033] The preferred embodiments of this utility model disclosed above are merely illustrative of the present utility model. These preferred embodiments do not exhaustively describe all details, nor do they limit the utility model to the specific implementations described. Clearly, many modifications and variations can be made based on the content of this specification. This specification selects and specifically describes these embodiments to better explain the principles and practical applications of this utility model, thereby enabling those skilled in the art to better understand and utilize it. This utility model is limited only by the claims and their full scope and equivalents.
Claims
1. Non-ferrous calendering and cutting apparatus comprising a support assembly (1), characterized in that: The top side of the support assembly (1) is provided with a positioning assembly (2), the middle of the two positioning assemblies (2) is provided with a limiting roller shaft assembly (3), and the other side of the positioning assembly (2) is provided with a cutting assembly (5), and the bottom of the limiting roller shaft assembly (3) is provided with a conveying assembly (4).
2. The non-ferrous calender slitting apparatus of claim 1 wherein: The support assembly (1) comprises a support box (101), and the bottom of the support box (101) is diagonally provided with a support foot (102), and the top of the support box (101) is provided with a transmission slot (103) in the middle.
3. The non-ferrous calender slitting apparatus of claim 1 wherein: The positioning assembly (2) comprises a support frame (201), and the top of the support frame (201) is provided with a bracket opening (202), and the support frame (201) is installed on both sides of the top of the support box (101), and the side of the bracket opening (202) is provided with an upper clamp opening (203) on the top, and the outer side of the upper clamp opening (203) and the bracket opening (202) is provided with a locking buckle (204).
4. The non-ferrous calender slitting apparatus of claim 1 wherein: The limiting roller shaft assembly (3) comprises a limiting support (301), and the inside of the limiting support (301) is provided with a roller (302), and the limiting support (301) is installed on the top of the sliding rod (305), and the front side of the limiting support (301) is provided with a connecting rod (307) in the middle, and the side of the limiting support (301) is provided with a positioner (308), the other side of the connecting rod (307) is provided with a pneumatic telescopic pump (306), the front side of the roller (302) is provided with a driven gear (303), and the inner wall of the roller (302) is provided with a clamping support (304).
5. The non-ferrous calender slitting apparatus of claim 1 wherein: The conveying assembly (4) comprises a brake motor (401), and the top of the brake motor (401) is provided with a rotating motor (402), and the brake motor (401) is installed in the inside of the support box (101), and the side of the rotating motor (402) is provided with a transmission device (403), and the outer side of the transmission device (403) is provided with a conveying belt (404).
6. The non-ferrous calender slitting apparatus of claim 1 wherein: The cutting assembly (5) comprises an electric control sliding groove (501), which is provided on the top side of the support box (101), and the inner side is provided with an electric control sliding block (502), and the top of the electric control sliding block (502) is provided with a cutting support (503), and the top of the cutting support (503) is provided with a rotating machine (504) on the outer side, and the inner side of the rotating machine (504) is provided with a cutting blade (505) in the middle.
Citation Information
Patent Citations
Non-ferrous metal calendaring and cutting equipment
CN217141719U