Process and device for producing an extremely thin aluminum rolled sheet

By using a sealed bonding plate and a combined baffle plate assembly in the production of ultra-thin aluminum rolled sheets, combined with double-sided water spray cooling and internal detection, the problems of low aluminum ingot handling efficiency and the need for sufficient cooling before cold rolling are solved, thus achieving efficient aluminum ingot shaping and cold rolling.

CN116673329BActive Publication Date: 2025-11-28SHANDONG XINTONG ALUMINUM IND

Patent Information

Application Number
CN202310572111.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-05-18
Publication Date
2025-11-28
Estimated Expiration
2043-05-18

AI Technical Summary

Technical Problem

In the current production process of ultra-thin aluminum rolled plates, aluminum ingots need to be handled multiple times, resulting in low production efficiency and high costs. Furthermore, aluminum ingots need to be fully cooled before cold rolling, which is time-consuming and labor-intensive.

Method used

The aluminum liquid forming structure is formed by using a sealed bonding plate, a rotating conveyor cylinder and a combined baffle plate assembly. Combined with double-sided water spray cooling and an internal detection mechanism, it ensures that the aluminum ingot is fully cooled on the outside and is cold rolled when the inside is not fully cooled. The internal condition is continuously monitored by an ultrasonic detector.

Benefits of technology

This technology enables efficient shaping and cold rolling of aluminum ingots, reduces handling steps, lowers production costs, improves work efficiency, and shortens processing time.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses an extremely thin aluminum rolling plate production process and device, belongs to the technical field of extremely thin aluminum rolling plate production, and comprises aluminum ingot forming pretreatment integrated platforms, a cold rolling mill, fixed side plates, a combined type surrounding baffle assembly, a double-sided water spraying cooling and internal detection mechanism, a distance-adjustable roller conveying assembly, a lifting overturning type bottom plate adjusting assembly and load-bearing baffles. The number of the aluminum ingot forming pretreatment integrated platforms is two, the two aluminum ingot forming pretreatment integrated platforms are respectively located at the two sides of the cold rolling mill, fixed side plates are symmetrically arranged at the top of the aluminum ingot forming pretreatment integrated platforms, the combined type surrounding baffle assembly is fixedly installed at one side of the top of the fixed side plate, the double-sided water spraying cooling and internal detection mechanism is fixedly installed on the fixed side plate, load-bearing baffles are welded on the two sides of the fixed side plate, and the application effectively saves working steps, improves work efficiency, saves intermediate carrying equipment, and effectively reduces production cost.
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Description

TECHNICAL FIELD

[0001] The application relates to an ultra-thin aluminum rolling plate production process and device and belongs to the technical field of ultra-thin aluminum rolling plate production. BACKGROUND

[0002] The ultra-thin aluminum rolling plate has a very wide application in daily life, and in production, mainly relies on a cold rolling mill to realize. The aluminum ingot after being melted and formed is sent to the cold rolling mill for sufficient thinning, so that the ultra-thin aluminum rolling plate is formed. In a Chinese patent application No. CN201910086038.8, an aluminum foil production process is provided, which comprises the following steps: S1: selecting materials, S2: first pass rolling, S3: second pass rolling, S4: slicing, S5: third pass rolling, S6: fourth pass rolling, S7: cutting and edge cutting, S8: fifth pass rolling, and S9: sixth pass rolling. Compared with the related art, the aluminum foil production process optimizes the seven-pass rolling process into a six-pass rolling process, reduces the time of one-pass rolling, shortens the production cycle, saves the rolling cost, and through the above-mentioned comparison file, it can be seen that the current ultra-thin aluminum rolling plate production needs to continuously move and transport the raw materials, and large equipment is needed to transport the aluminum ingot during the period, which is time-consuming and laborious, high in cost and low in production efficiency. Therefore, the present application is proposed. SUMMARY

[0003] The purpose of the present application is to solve the above-mentioned problems and provide an ultra-thin aluminum rolling plate production process and device. The aluminum liquid forming structure is formed by the sealing and fitting plate, the rotating conveying cylinder and the combined fence plate assembly. The combined structure ensures the shaping effect without the need to transport the large aluminum ingot after shaping. When the aluminum ingot is cold-rolled, the aluminum ingot is not fully cooled inside and has low hardness, and the cold rolling mill can easily thin the aluminum ingot. The inner core of the aluminum ingot is continuously detected by the ultrasonic detector to ensure that the aluminum ingot is fully cooled outside and the internal aluminum liquid is not leaked. The aluminum ingot can be cold-rolled without being fully cooled. The low hardness of the aluminum ingot facilitates cold rolling processing, effectively saves processing time and improves work efficiency.

[0004] The application realizes the above-mentioned purpose through the following technical scheme. The device for producing extremely thin aluminum rolling plate comprises two aluminum ingot forming and pretreatment integrated platforms, a cold rolling machine, fixed side plates, a combined enclosing plate assembly, a double-sided water spraying and internal detection mechanism, a distance-adjustable roller conveying assembly, a lifting and overturning bottom plate adjusting assembly and load-bearing baffle plates. The two aluminum ingot forming and pretreatment integrated platforms are respectively arranged on the two sides of the cold rolling machine. The fixed side plates are symmetrically arranged on the top of the aluminum ingot forming and pretreatment integrated platforms. The combined enclosing plate assembly is fixedly installed on one side of the top of the fixed side plate. The double-sided water spraying and internal detection mechanism is fixedly installed on the fixed side plate. The load-bearing baffle plates are welded on the two sides of the fixed side plate. The distance-adjustable roller conveying assembly is movably installed between the two load-bearing baffle plates. The lifting and overturning bottom plate adjusting assembly is fixedly arranged between the two fixed side plates.

[0005] Preferably, the number of the combined enclosing plate assembly is two. The combined enclosing plate assembly comprises a connecting bracket, a rotary control seat, an extension adjusting rod and a U-shaped enclosing plate. The connecting bracket is welded on one side of the outer wall of the fixed side plate. The rotary control seat is installed on the fixed side plate through the connecting bracket. The extension adjusting rod is connected with the motor control end built in the rotary control seat. The U-shaped enclosing plate is connected with the extension end of the extension adjusting rod. The U-shaped enclosing plate is controlled to be overturned and extended through the rotary control seat and the extension adjusting rod, so that the upper enclosing structure is conveniently formed.

[0006] Preferably, the double-sided water spraying and internal detection mechanism comprises an upper water passing plate, a lower water passing plate, a cooling water spraying head, a water injection seat, a water receiving pipe and a communication pipe. The water injection seat is screw-fixed on the fixed side plate. The water receiving pipe is arranged on one side of the water injection seat. The upper water passing plate and the lower water passing plate are connected with the water injection seat through two communication pipes respectively. The bottom of the upper water passing plate and the top of the lower water passing plate are provided with the cooling water spraying head respectively. The upper water passing plate and the lower water passing plate are respectively arranged on the top and the bottom of the distance-adjustable roller conveying assembly. Cold water is injected into the water injection seat through the water receiving pipe, and then is sprayed out from the cooling water spraying head through the communication pipe, so that the basic water spraying cooling function is realized.

[0007] Preferably, the double-sided water spraying and internal detection mechanism further comprises an extension rod and an ultrasonic detector. The extension rod is welded on the top of the upper water passing plate. The extension rod is arranged on the top of the upper water passing plate. The ultrasonic detector is fixedly arranged on the tail end of the extension rod. The inner core of the aluminum ingot is continuously detected through the ultrasonic detector, so that the aluminum liquid in the inner core of the aluminum ingot is prevented from leaking.

[0008] Preferably, the distance-adjustable roller conveying assembly comprises a sliding seat, a motor connecting frame and a driving motor, the sliding seat is slidingly clamped in the sliding rail on the top of the load-bearing baffle, the motor connecting frame is screw-fixed on the top of the sliding seat, and the driving motor is fixed on the top of the sliding seat through the motor connecting frame; the distance-adjustable roller conveying assembly further comprises a rotary conveying cylinder and a transverse distance adjusting telescopic rod, the rotary conveying cylinder is connected with the output shaft of the driving motor, and the transverse distance adjusting telescopic rod is arranged between adjacent two sliding seats; the rotary conveying cylinder is controlled to rotate by starting the driving motor, and is used for conveying the aluminum ingot for cold rolling.

[0009] Preferably, the lifting and overturning type bottom plate adjusting assembly comprises a longitudinal telescopic control rod, an overturning control motor and a sealing and fitting plate, the fixed end of the longitudinal telescopic control rod is screw-fixed on the fixed side plate, the overturning control motor is fixedly installed on the telescopic end of the longitudinal telescopic control rod, and the sealing and fitting plate is connected with the output shaft of the overturning control motor; the height and position of the sealing and fitting plate are adjusted by the longitudinal telescopic control rod and the overturning control motor.

[0010] The production process of the ultra-thin aluminum rolling plate comprises the following steps:

[0011] Raw material preparation: after the aluminum raw material is screened, the aluminum raw material is melted, and then the excess impurities are filtered to obtain aluminum liquid; aluminum ingot forming: the two combined type surrounding baffle assemblies are turned to the top and fitted, the sealing and fitting plate of the lifting and overturning type bottom plate adjusting assembly is turned to the upper side, the aluminum liquid forming structure is formed by the sealing and fitting plate, the rotary conveying cylinder and the combined type surrounding baffle assembly, the molten aluminum liquid is poured, then the aluminum liquid is air-cooled, after the aluminum liquid surface is preliminarily shaped, the aluminum liquid is further cooled by the double-sided water spraying cooling and internal detection mechanism, and the aluminum ingot is formed.

[0012] Surface treatment: while the double-sided water spraying cooling and internal detection mechanism is cooling, the internal part of the aluminum ingot is detected, the double-sided water spraying cooling and internal detection mechanism are temporarily stopped after the aluminum ingot is cooled to a sufficient degree on the outside and has a certain strength without deformation, the two combined type surrounding baffle assemblies are separated, the distance-adjustable roller conveying assembly is separated, the sealing and fitting plate of the lifting and overturning type bottom plate adjusting assembly is turned to the bottom, so that the aluminum ingot is located on the distance-adjustable roller conveying assembly, and then the surface of the aluminum ingot is polished by a polisher to complete the surface treatment.

[0013] After the surface treatment is completed, the two aluminum ingots on the aluminum ingot forming and pretreatment integrated platform are sequentially conveyed to the cold rolling machine for cold rolling treatment. At this time, the aluminum ingot is not fully cooled inside and has low hardness. The cold rolling machine can easily thin the aluminum ingot. After the thickness of the aluminum ingot is reduced, cooling is performed again to ensure that the aluminum ingot is fully cooled outside and the internal aluminum liquid does not leak. Through the above operation, the aluminum ingot can be pressed into an extremely thin aluminum rolling plate. The extremely thin aluminum rolling plate is wound by winding equipment.

[0014] The aluminum liquid forming structure formed by the sealing and fitting plate, the rotary conveying cylinder and the combined fence plate assembly can effectively store and shape the aluminum liquid. The molten aluminum liquid is poured and cooled to form an aluminum ingot. The sealing and fitting plate of the combined fence plate assembly and the lifting and overturning bottom plate adjusting assembly can be conveniently and quickly removed after the aluminum ingot is formed. Only the support and conveying effect of the distance-adjustable roller conveying assembly is retained. The combined structure ensures the shaping effect without the need to transport the large aluminum ingot after shaping. The working steps are effectively saved, the working efficiency is improved, the intermediate handling equipment is saved, and the production cost is effectively reduced.

[0015] When the aluminum ingot is cold-rolled, the aluminum ingot is not fully cooled inside and has low hardness. The cold rolling machine can easily thin the aluminum ingot. After the thickness of the aluminum ingot is reduced, cooling is performed again. Through the above operation, the aluminum ingot can be pressed into an extremely thin aluminum rolling plate. The internal core of the aluminum ingot is continuously detected by the ultrasonic detector to ensure that the aluminum ingot is fully cooled outside and the internal aluminum liquid does not leak. The aluminum ingot can be cold-rolled without being fully cooled. On the one hand, the low hardness of the aluminum ingot facilitates cold rolling treatment. On the other hand, the processing time is effectively saved and the working efficiency is improved. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 It is a whole structure schematic view under the right side view angle of the application.

[0017] Figure 2 It is a whole structure schematic view under the left side view angle of the application.

[0018] Figure 3 It is a structure schematic view of the aluminum ingot forming and pretreatment integrated platform in the application.

[0019] Figure 4 It is a structure schematic view of the fixed side plate hidden on one side of the aluminum ingot forming and pretreatment integrated platform in the application.

[0020] Figure 5 It is a structure schematic view of the combined fence plate assembly in the application.

[0021] Figure 6 It is a structure schematic view of the double-sided water spraying cooling and internal detection mechanism in the application.

[0022] Figure 7 It is a structure schematic view of the distance-adjustable roller conveying assembly in the application.

[0023] Figure 8 It is a structure schematic view of the lifting and overturning bottom plate adjusting assembly in the application.

[0024] In the figure: 1, aluminum ingot forming and pretreatment integrated platform; 2, cold rolling mill; 3, fixed side plate; 4, combined fence plate assembly; 401, connecting bracket; 402, rotary control seat; 403, telescopic adjusting rod; 404, U-shaped fence plate; 5, double-sided water spraying cooling and internal detection mechanism; 501, upper water passing plate; 502, lower water passing plate; 503, cooling water spraying head; 504, water injection seat; 505, water receiving pipe; 506, communication pipe; 507, extension rod; 508, ultrasonic detector; 6, distance-adjustable roller conveying assembly; 601, sliding seat; 602, motor connecting frame; 603, driving motor; 604, rotary conveying cylinder; 605, transverse distance adjusting telescopic rod; 7, lifting and overturning bottom plate adjusting assembly; 701, longitudinal telescopic control rod; 702, overturning control motor; 703, sealing and fitting plate; 8, load bearing fence plate. DETAILED DESCRIPTION

[0025] The technical solutions in the embodiments of the application will be clearly and completely described below with reference to the drawings in the embodiments of the application. Obviously, the described embodiments are only part of the embodiments of the application, rather than all the embodiments of the application. Based on the embodiments in the application, all other embodiments obtained by those skilled in the art without creative work fall within the protection scope of the application.

[0026] Please refer to Figures 1-8 As shown in the figure, an extremely thin aluminum rolling plate production device includes aluminum ingot forming and pretreatment integrated platforms 1, a cold rolling mill 2, fixed side plates 3, a combined fence plate assembly 4, a double-sided water spraying cooling and internal detection mechanism 5, a distance-adjustable roller conveying assembly 6, a lifting and overturning bottom plate adjusting assembly 7, and load bearing fence plates 8. The number of the aluminum ingot forming and pretreatment integrated platforms 1 is two, and the two aluminum ingot forming and pretreatment integrated platforms 1 are respectively located on the two sides of the cold rolling mill 2. The fixed side plates 3 are symmetrically arranged on the top of the aluminum ingot forming and pretreatment integrated platforms 1. The combined fence plate assembly 4 is fixedly installed on one side of the top of the fixed side plate 3. The double-sided water spraying cooling and internal detection mechanism 5 is fixedly installed on the fixed side plate 3. The load bearing fence plates 8 are welded on the two sides of the fixed side plate 3. The distance-adjustable roller conveying assembly 6 is movably installed between the two load bearing fence plates 8. The lifting and overturning bottom plate adjusting assembly 7 is fixedly arranged between the two fixed side plates 3.

[0027] In the device, two combined fence plate assemblies 4 are turned to the top and fit, the sealing fit plate 703 of the lifting and overturning bottom plate adjusting assembly 7 is turned to the upper side, that is Figure 3 In the presented state, at this time, the aluminum liquid forming structure is formed through the sealing fit plate 703, the rotating conveying cylinder 604 and the combined fence plate assembly 4, the aluminum liquid can be effectively stored and shaped, the molten aluminum liquid is poured and then cooled to form an aluminum ingot, after the aluminum ingot is formed, the combined fence plate assembly 4 and the sealing fit plate 703 of the lifting and overturning bottom plate adjusting assembly 7 can be conveniently removed, only the supporting and conveying effect of the distance-adjustable roller conveying assembly 6 is reserved, the combined structure guarantees the shaping effect, without the need to transport the large aluminum ingot after shaping, the working steps are effectively saved, the working efficiency is improved, the intermediate handling equipment is also saved, and the production cost is effectively reduced.

[0028] While the double-sided water spraying cooling and internal detection mechanism 5 cools, the internal part of the aluminum ingot is detected, without the need to wait for the internal part of the aluminum ingot to be fully cooled, after the external part of the aluminum ingot is cooled to a sufficient degree and has a certain strength and will not be deformed, the double-sided water spraying cooling and internal detection mechanism 5 is temporarily stopped to spray water, the internal part of the aluminum ingot is not fully cooled, the hardness is low, the aluminum ingot can be easily thinned by the cold rolling mill 2, after the thickness of the aluminum ingot is reduced, the above operation is repeated, the aluminum ingot can be pressed into an extremely thin aluminum rolling plate, the internal core of the aluminum ingot is continuously detected by the ultrasonic detector 508, the external part of the aluminum ingot is fully cooled, the internal aluminum liquid will not leak, the cold rolling can be performed without the need to fully cool the aluminum ingot, on the one hand, the hardness of the aluminum ingot is low, which is convenient for cold rolling, on the other hand, the processing time is effectively saved, and the working efficiency is improved.

[0029] As shown in Figure 5 The number of the combined fence plate assembly 4 is two, the combined fence plate assembly 4 includes a connecting support 401, a rotating control seat 402, an extension adjusting rod 403 and a U-shaped fence plate 404, the connecting support 401 is welded on the outer wall of the fixed side plate 3, the rotating control seat 402 is installed on the fixed side plate 3 through the connecting support 401, the extension adjusting rod 403 is connected with the motor control end built in the rotating control seat 402, the U-shaped fence plate 404 is connected with the extension end of the extension adjusting rod 403, the U-shaped fence plate 404 is controlled to be overturned and extended through the rotating control seat 402 and the extension adjusting rod 403 respectively, so that the upper enclosure structure is conveniently formed, and the basic frame for the aluminum liquid cooling and shaping is quickly constituted and disassembled.

[0030] As shown in Figure 6As shown, the double-sided water spray cooling and internal detection mechanism 5 includes an upper water passage plate 501, a lower water passage plate 502, a cooling water spray head 503, a water injection seat 504, a water receiving pipe 505, and a communication pipe 506. The water injection seat 504 is screw-fixed on the fixed side plate 3. The water receiving pipe 505 is arranged on one side of the water injection seat 504. The upper water passage plate 501 and the lower water passage plate 502 are connected with the water injection seat 504 through two communication pipes 506 respectively. The bottom of the upper water passage plate 501 and the top of the lower water passage plate 502 are provided with the cooling water spray head 503. The upper water passage plate 501 and the lower water passage plate 502 are located at the top and the bottom of the distance-adjustable roller conveying assembly 6 respectively. Cold water is injected into the water injection seat 504 through the water receiving pipe 505, and is sprayed out from the cooling water spray head 503 after being conveyed to the upper water passage plate 501 and the lower water passage plate 502 through the communication pipe 506, so as to realize the basic water spray cooling function.

[0031] As shown in Figure 6 The double-sided water spray cooling and internal detection mechanism 5 further includes an extension rod 507 and an ultrasonic detector 508. The extension rod 507 is welded at the top of the upper water passage plate 501. The top of the upper water passage plate 501 is provided with the extension rod 507 on both sides. The ultrasonic detector 508 is fixedly arranged at the end of the extension rod 507. The internal core of the aluminum ingot is continuously detected by the ultrasonic detector 508, so as to ensure that the aluminum ingot is fully cooled outside and the internal aluminum liquid does not leak.

[0032] As shown in Figure 7 The distance-adjustable roller conveying assembly 6 includes a sliding seat 601, a motor connecting frame 602, and a driving motor 603. The sliding seat 601 is slidingly clamped in the slide rail at the top of the load baffle 8. The motor connecting frame 602 is screw-fixed at the top of the sliding seat 601. The driving motor 603 is fixed at the top of the sliding seat 601 through the motor connecting frame 602. The distance-adjustable roller conveying assembly 6 further includes a rotary conveying cylinder 604 and a transverse distance adjusting telescopic rod 605. The rotary conveying cylinder 604 is connected with the output shaft of the driving motor 603. The transverse distance adjusting telescopic rod 605 is arranged between adjacent two sliding seats 601. The rotary conveying cylinder 604 is controlled to rotate by the opening of the driving motor 603, which is used for conveying and cold rolling of the aluminum ingot. The distance between the rotary conveying cylinders 604 can be controlled by the transverse distance adjusting telescopic rod 605. When the distance between the rotary conveying cylinders 604 is adjusted to be farther by the transverse distance adjusting telescopic rod 605, the position of the sealing and fitting plate 703 of the lifting and overturning type bottom plate adjusting assembly 7 can be adjusted. When the sealing and fitting plate 703 is located at the top, the aluminum liquid forming container can be formed with the combined type baffle plate assembly 4. After the forming is completed, the sealing and fitting plate 703 can be easily removed.

[0033] As shown in Figure 8As shown, the lifting and overturning bottom plate adjusting assembly 7 includes a longitudinal telescopic control rod 701, an overturning control motor 702 and a sealing and fitting plate 703. The fixed end of the longitudinal telescopic control rod 701 is screwed to the fixed side plate 3. The overturning control motor 702 is fixedly installed on the telescopic end of the longitudinal telescopic control rod 701. The sealing and fitting plate 703 is connected to the output shaft of the overturning control motor 702. The height and position of the sealing and fitting plate 703 are adjusted by the longitudinal telescopic control rod 701 and the overturning control motor 702. When the sealing and fitting plate 703 is located at the top, it can form a molten aluminum forming container with the combined fence plate assembly 4. After the forming is completed, the sealing and fitting plate 703 can be lowered to the bottom.

[0034] The production process of the ultra-thin aluminum rolling plate includes the following steps: raw material preparation, melting the aluminum raw material after preliminary screening, filtering the excess impurities, preparing the molten aluminum, aluminum ingot forming, turning two combined fence plate assemblies 4 to the top and fitting, turning the sealing and fitting plate 703 of the lifting and overturning bottom plate adjusting assembly 7 to the upper position, forming a molten aluminum forming structure through the sealing and fitting plate 703, the rotating conveying cylinder 604 and the combined fence plate assembly 4, pouring the fully melted molten aluminum, then air cooling the molten aluminum, waiting for the molten aluminum surface to be preliminarily shaped, further cooling it through the double-sided water spraying cooling and internal detection mechanism 5, forming the aluminum ingot, surface treatment, detecting the inside of the aluminum ingot while cooling it through the double-sided water spraying cooling and internal detection mechanism 5, temporarily stopping the water spraying cooling of the double-sided water spraying cooling and internal detection mechanism 5 when the outside of the aluminum ingot is sufficiently cooled and has a certain strength without deformation, separating the two combined fence plate assemblies 4, separating the distance-adjustable roller conveying assembly 6, turning the sealing and fitting plate 703 of the lifting and overturning bottom plate adjusting assembly 7 to the bottom, so that the aluminum ingot is located on the distance-adjustable roller conveying assembly 6, then polishing the surface of the aluminum ingot through a polisher to complete the surface treatment, cold rolling forming, after the surface treatment is completed, sequentially conveying the aluminum ingots on the two aluminum ingot forming and pretreatment integrated platforms 1 to the cold rolling mill 2 for cold rolling treatment. At this time, the inside of the aluminum ingot is not fully cooled and has low hardness, so the cold rolling mill 2 can easily thin the aluminum ingot. After the thickness of the aluminum ingot is reduced, it is cooled again to ensure that the outside of the aluminum ingot is fully cooled and the internal molten aluminum does not leak. The above operations are repeated to press the aluminum ingot into an ultra-thin aluminum rolling plate. The pressed ultra-thin aluminum rolling plate is wound through winding equipment.

[0035] It will be obvious to a person skilled in the art that the application is not limited to the details of the foregoing exemplary embodiments and can be implemented in other concrete forms without departing from the spirit or essential characteristics of the application. The embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the application being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. No reference signs in the claims should be considered as limiting the scope of the claims to the identity of the reference signs therein.

[0036] Furthermore, it should be understood that although the description is made on the basis of the embodiments, not every embodiment contains only one independent technical solution, and the description of the specification is only for the sake of clarity, and those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that those skilled in the art can understand.

Claims

1. A production apparatus for ultra-thin aluminum rolled plates, characterized in that: The assembly includes an integrated aluminum ingot forming pretreatment platform (1), a cold rolling mill (2), fixed side plates (3), a combined baffle assembly (4), a double-sided water spray cooling and internal detection mechanism (5), a distance-adjustable roller conveyor assembly (6), a lifting and tilting bottom plate adjustment assembly (7), and a load-bearing baffle (8). There are two integrated aluminum ingot forming pretreatment platforms (1), located on opposite sides of the cold rolling mill (2). The top two sections of each integrated aluminum ingot forming pretreatment platform (1) are... The fixed side plates (3) are arranged symmetrically on both sides. The combined enclosure plate assembly (4) is fixedly installed on the top side of the fixed side plate (3). The double-sided water spray cooling and internal detection mechanism (5) is fixedly installed on the fixed side plate (3). The load-bearing baffles (8) are welded on both sides of the fixed side plate (3). The distance adjustable roller conveyor assembly (6) is movably installed between the two load-bearing baffles (8). The lifting and flipping bottom plate adjustment assembly (7) is fixedly arranged between the two fixed side plates (3). The adjustable roller conveyor assembly (6) includes a sliding seat (601), a motor connecting frame (602), and a drive motor (603). The sliding seat (601) is slidably mounted in the slide rail at the top of the load-bearing baffle (8). The motor connecting frame (602) is screwed to the top of the sliding seat (601). The drive motor (603) is fixed to the top of the sliding seat (601) through the motor connecting frame (602). The adjustable roller conveyor assembly (6) further includes a rotating conveyor cylinder (604) and a lateral distance adjusting telescopic rod (605). The rotating conveyor cylinder (604) is connected to the output shaft of the drive motor (603), and the lateral distance adjusting telescopic rod (605) is provided between two adjacent sliding seats (601). The lifting and flipping base plate adjustment assembly (7) includes a longitudinal telescopic control rod (701), a flipping control motor (702), and a sealing and bonding plate (703). The fixed end screw of the longitudinal telescopic control rod (701) is fixed on the fixed side plate (3). The flipping control motor (702) is fixedly installed on the telescopic end of the longitudinal telescopic control rod (701). The sealing and bonding plate (703) is connected to the output shaft of the flipping control motor (702). The aluminum liquid forming structure is formed by the sealing bonding plate (703), the rotating conveyor cylinder (604) and the combined enclosure plate assembly (4) to store and shape the aluminum liquid; The sealing plate (703) of the lifting and flipping bottom plate adjustment assembly (7) is rotated to the bottom, so that the aluminum ingot is placed on the distance adjustable roller conveyor assembly (6).

2. The ultra-thin aluminum rolled plate production apparatus according to claim 1, characterized in that: The number of the combined enclosure panel assembly (4) is two. The combined enclosure panel assembly (4) includes a connecting bracket (401), a rotation control seat (402), a telescopic adjustment rod (403), and a U-shaped enclosure panel (404). The connecting bracket (401) is welded to one side of the outer wall of the fixed side plate (3). The rotation control seat (402) is installed on the fixed side plate (3) through the connecting bracket (401). The telescopic adjustment rod (403) is connected to the motor control end built into the rotation control seat (402). The U-shaped enclosure panel (404) is connected to the telescopic end of the telescopic adjustment rod (403).

3. The ultra-thin aluminum rolled plate production apparatus according to claim 1, characterized in that: The double-sided water spray cooling and internal detection mechanism (5) includes an upper water plate (501), a lower water plate (502), a cooling water spray head (503), a water injection seat (504), a water inlet pipe (505), and a connecting pipe (506). The water injection seat (504) is screwed onto the fixed side plate (3). The water inlet pipe (505) is located on one side of the water injection seat (504). The upper water plate (501) and the lower water plate (502) are respectively connected to the water injection seat (504) through two connecting pipes (506). The cooling water spray head (503) is provided at the bottom of the upper water plate (501) and the top of the lower water plate (502). The upper water plate (501) and the lower water plate (502) are located at the top and bottom of the adjustable distance roller conveyor assembly (6), respectively.

4. The ultra-thin aluminum rolled plate production apparatus according to claim 3, characterized in that: The double-sided water spray cooling and internal detection mechanism (5) also includes an extension rod (507) and an ultrasonic detector (508). The extension rod (507) is welded to the top of the upper water-passing plate (501). The extension rod (507) is provided on both sides of the top of the upper water-passing plate (501). The ultrasonic detector (508) is fixedly installed at the end of the extension rod (507).

Citation Information

Patent Citations

  • Aluminum foil production process

    CN111482458A

  • Continuous casting semi-molten rolling copper-aluminum composite plate strip and production process thereof

    CN114700479A

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