Metal forming rolling equipment, manufacturing method and application in high-purity aluminum target material

By introducing grinding and testing components into the metal forming and rolling equipment, the problem of impurities in the rolling process is solved, efficient and accurate rolling of metal sheets is achieved, and the service life and production efficiency of the equipment are improved.

CN120228560AActive Publication Date: 2025-07-01HENAN WANDA ALUMINUM
View PDF 6 Cites 0 Cited by

Patent Information

Application Number
CN202510511714.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-23
Publication Date
2025-07-01
Estimated Expiration
2045-04-23

AI Technical Summary

Technical Problem

The prior art cannot effectively identify and remove the impact of impurities in the rolling process of metal sheets, resulting in insufficiency of rolling and damage to the rolling roll, which cannot meet the needs of use.

Method used

A metal forming and rolling equipment is designed, which includes grinding components, rolling components and inspection components. The grinding components remove impurities on the surface of metal sheets, rolling components, and identify and adjust the rolling status through the inspection components to ensure rolling accuracy and efficiency.

Benefits of technology

It improves rolling accuracy and efficiency, reduces the maintenance frequency of rolled components, and ensures the forming quality of metal sheets and the stable operation of equipment.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120228560A_ABST
    Figure CN120228560A_ABST
Patent Text Reader

Abstract

The invention belongs to the technical field of metal processing, and discloses metal forming rolling equipment, a manufacturing method and application in a high-purity aluminum target material.The metal forming rolling equipment comprises a supporting frame, a polishing assembly is connected to the supporting frame, a rolling assembly is connected to one side of the polishing assembly, and the rolling assembly is connected to the other side of the polishing assembly; one end of the rolling assembly is connected with a detection assembly, the supporting frame is further connected with a regulation and control part, the regulation and control part can regulate and control the grinding assembly, and through mutual cooperation between the arranged grinding assembly and the rolling assembly, it is ensured that the metal plate stably moves on the rolling equipment, and meanwhile the metal plate can be stably ground. Impurities on the surface of the metal plate are cleaned, the rolling efficiency of the metal plate when the metal plate passes through the rolling assembly is ensured, the situation that the impurities damage the rolling assembly is reduced, the rolling precision is improved, and the number of times of follow-up maintenance and replacement of the rolling assembly is reduced.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention belongs to the technical field of metal processing, specifically metal forming rolling equipment, manufacturing methods, and applications in high-purity aluminum targets. Background Art

[0002] Rolling refers to a pressure processing method in which a metal billet is compressed by rollers to reduce the cross-sectional area of the material and increase its length, mainly used to produce profiles, plates, and tubes. In the existing tube rolling process, the rotation of the rollers only stretches the metal plate to make its thickness meet the usage requirements.

[0003] Chinese Patent with application number CN202310077688.2 discloses a metal material rolling and forming equipment, including two vertical plates, a rough rolling mechanism, a cleaning mechanism, and a joining mechanism. First, the metal plate is preliminarily rolled by a mating roller and a rolling roller to make the thickness of the metal plate uniform and the surface flat, so that the overall size of the subsequent metal plate changes uniformly. Then, it is rolled again by a flattening roller to further improve the flatness of the metal plate and reduce the size deviation value after rough rolling of the metal plate. The distance between the flattening roller and the corresponding receiving roller is changed by a swing plate to adapt to the flattening requirements of metal plates with different thicknesses, improving the applicability of the device. The above solution does not realize the identification of the rolling state during metal rolling and cannot judge the influence of the rolling roller and impurities on the forming state of the metal plate.

[0004] During the rolling process of the metal plate, due to the influence of rolling pressure and impurities, it is easy to cause the problem that the rolling efficiency of the rolled plate cannot meet the usage requirements, and the usage condition of the rolling roller cannot be distinguished, resulting in low rolling efficiency during the rolling process of the metal plate.

[0005] Therefore, to solve the above technical problems, the present invention proposes metal forming rolling equipment, manufacturing methods, and applications in high-purity aluminum targets. Summary of the Invention

[0006] The purpose of the present invention is to address the above problems. The present invention provides metal forming rolling equipment, manufacturing methods, and applications in high-purity aluminum targets, which have the advantages of quickly achieving rolling and forming and ensuring accurate forming.

[0007] To achieve the above object, the present invention provides the following technical solution: A metal forming rolling equipment, including a support frame, a grinding assembly is connected to the support frame, a rolling assembly is connected to one side of the grinding assembly, a detection assembly is connected to one end of the rolling assembly, and a regulation unit is also connected to the support frame, and the regulation unit can regulate the grinding assembly; The grinding assembly includes a grinding roller, and a polishing roller is connected to one side of the grinding roller; The rolling assembly includes a working box, a rolling cavity is provided through the working box, two rolling rolls are rotatably provided in the rolling cavity, the rolling roll includes a connecting rod, a plurality of telescopic rods are connected to the outer circumference of the connecting rod, and a movable plate is connected to the end of the telescopic rod away from the connecting rod.

[0008] Preferably, movable grooves are formed on the wall of the rolling cavity, two resisting rods are slidably provided in the movable grooves, and the resisting rods are in the same axial direction as the rolling roll.

[0009] Preferably, the detection assembly includes a detection box, the detection box is connected to the working box, a through groove is provided through the detection box, and a connection cavity is formed in the detection box, the connection cavity is communicated with the through groove, and two recognition parts are connected in the connection cavity, and the two recognition parts are symmetrically distributed with the through groove as the symmetry center.

[0010] Preferably, both of the two recognition parts include cross bars, a plurality of movable rods are connected to the opposite ends of the cross bars, a connection frame is connected to the end of the movable rod away from the cross bar, and a resisting wheel is rotatably provided on the connection frame.

[0011] Preferably, two buffer grooves are symmetrically formed on the connection frame, elastic rods are connected in both of the two buffer grooves, and the two ends of the resisting wheel distributed in the axial direction are respectively connected to the elastic rods.

[0012] Preferably, grinding parts are respectively provided at both ends of the through groove distributed in the length direction.

[0013] Preferably, a power assembly is connected to the support frame, and the power assembly is respectively connected to the grinding assembly and the rolling assembly.

[0014] Preferably, a baffle is connected to the side of the detection assembly away from the rolling assembly, and one end of the baffle is connected to the support frame.

[0015] A manufacturing method realized by using a metal forming rolling equipment includes the following steps: S1. According to the thickness and model of the metal sheet, use the regulation part to control the grinding assembly, and then connect the metal sheet to be rolled to the grinding assembly; S2. Use the power assembly to control the grinding assembly and the rolling assembly to work, drive the metal sheet to move, and grind the surface of the metal sheet when the metal sheet passes through the grinding assembly; S3. After the metal sheet enters the rolling cavity, adjust the landing position of the metal sheet by moving the resisting rod to make the starting end surface of the metal sheet located between the rolling rolls; S4, rolling the polished metal sheet using a rolling roller, and causing the rolled metal sheet to pass through the rolling cavity and enter the through groove, and detecting the end surface of the metal sheet using a detection component; S5. Judging the status of the rolled metal sheet and the rolling roller by the status of the abutting wheel and the elastic rod.

[0016] A method of utilizing metal forming and rolling equipment for application in high purity aluminum targets.

[0017] Compared with the prior art, the present invention has the following beneficial effects: 1. Through the cooperation between the grinding assembly and the rolling assembly, the impurities on the surface of the metal sheet are cleaned while the metal sheet moves stably on the rolling equipment, ensuring the rolling efficiency of the metal sheet when passing through the rolling assembly, reducing the damage of the rolling assembly caused by impurities, improving the rolling accuracy and reducing the number of subsequent repairs and replacements of the rolling assembly.

[0018] 2. Through the cooperation between the rolling assembly and the detection assembly, the rolled metal sheet is identified, and the state of the metal sheet is judged by the dynamic changes of the contact wheel and the elastic rod. At the same time, the surface state of the rolling roller is judged according to the contact between the contact wheel and the metal sheet, ensuring that the metal sheet meets the rolling requirements. At the same time, the rolling failure of the metal sheet caused by damage to the surface of the rolling roller is avoided, thereby further improving the rolling efficiency.

[0019] 3. According to the elastic changes of the elastic rod and the mutual cooperation of the rolling rollers, the state of the metal sheet can be identified, and it can be judged whether there are impurities on the surface of the metal sheet that affect the rolling efficiency, so as to adjust the rolling components and grinding components to ensure that the subsequent metal sheets can be rolled successfully. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 It is a schematic diagram of the three-dimensional structure of the overall device of the present invention; Figure 2 It is a schematic diagram of the connection structure of the rolling assembly of the present invention; Figure 3 It is a three-dimensional structural schematic diagram of the rolling assembly of the present invention; Figure 4 It is a schematic diagram of the cross-sectional structure of the rolling assembly of the present invention; Figure 5 It is a schematic diagram of the three-dimensional structure of the rolling roller of the present invention; Figure 6 It is a schematic diagram of the three-dimensional structure of the detection component of the present invention; Figure 7 It is a schematic diagram of the cross-sectional structure of the detection component of the present invention; Figure 8It is a schematic diagram of the three-dimensional structure of the interference wheel of the present invention; Figure 9 It is a schematic diagram of the connection structure of the elastic rod of the present invention.

[0021] Description of the drawings: 1. Support frame; 2. Control unit; 3. Grinding assembly; 301. Sanding roller; 302. Grinding roller; 4. Baffle; 5. Rolling assembly; 501. Working box; 5011. Rolling cavity; 5012. Movable groove; 502. Rolling roller; 5021. Connecting rod; 5022. Telescopic rod; 5023. Movable plate; 6. Power assembly; 7. Interference rod; 8. Detection assembly; 801. Detection box; 8011. Through groove; 8012. Connecting cavity; 802. Grinding unit; 803. Identification unit; 8031. Connecting frame; 8032. Movable rod; 8033. Cross bar; 8034. Interference wheel; 8035. Buffer groove; 8036. Elastic rod. DETAILED DESCRIPTION

[0022] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0023] Embodiment 1 like Figure 1 - Figure 9 As shown, the present embodiment discloses a metal forming and rolling equipment, comprising a support frame 1 for fixing components. In order to improve the supporting stability of the support frame 1, in the present invention, the cross-sectional shape of the support frame 1 is in the shape of a Chinese character "土". A grinding component 3 for grinding the surface of a metal plate is connected on the side of the support frame 1 away from the area in contact with the ground. A rolling component 5 for forming metal materials is connected on one side of the grinding component 3. After the metal plate is ground by the grinding component 3, it is rolled by the rolling component 5 to reduce the amount of impurities on the metal plate and improve the rolling efficiency of the rolling component 5. A detection component 8 for identifying the rolled metal plate is connected at one end of the rolling component 5. A regulating part 2 is also connected to the support frame 1. The regulating part 2 can regulate the grinding component 3. The regulating part 2 is operated according to the model of the metal plate to change the spacing and angle between the grinding components 3 to ensure that the grinding component 3 can grind the surface of the metal plate.

[0024] When in use, the metal plate to be rolled is passed through the grinding component 3 and aligned with the position of the rolling component 5, and then the grinding component 3 and the rolling component 5 are controlled to work, driving the metal plate to move on the grinding component 3, and the grinding component 3 is used to remove the oxide on the surface of the metal plate, and then enters the rolling component 5 for rolling.

[0025] The grinding assembly 3 includes a grinding roller 301, one side of which is connected to a grinding roller 302, and the lengths of the grinding roller 301 and the grinding roller 302 can both meet the requirements of grinding the surface of the metal plate, ensuring that impurities on the surface of the metal plate will not affect the subsequent rolling process, thereby improving the success rate of rolling.

[0026] It should be noted that when the surface of the metal sheet is polished by the polishing assembly 3 , due to the intervention of the rolling assembly 5 , the rotation speed of the polishing assembly 3 is greater than the moving speed of the metal sheet, thereby achieving polishing of the surface of the metal sheet.

[0027] The rolling assembly 5 includes a working box 501, wherein the working box 501 is connected to the support frame 1, and a rolling cavity 5011 is provided in the working box 501. The metal sheet after passing through the grinding assembly 3 enters the rolling cavity 5011 and waits for rolling. Two rolling rollers 502 for processing the metal sheet are rotated in the rolling cavity 5011. The two rolling rollers 502 are at the same horizontal height. After the metal sheet enters the rolling cavity 5011, it falls between the two rolling rollers 502. The forming process of the metal sheet is completed by the rotation of the two rolling rollers 502. In the process of processing the metal sheet, due to the heat on the metal sheet, the metal sheet will adhere to the rolling roller 502 when it is rolled by the rolling roller 502, resulting in In the event that the rolling roller 502 or the metal sheet is damaged, the rolling roller 502 includes a connecting rod 5021, on the outer circumference of which a plurality of telescopic rods 5022 are connected, and an end of the telescopic rod 5022 away from the connecting rod 5021 is connected to a movable plate 5023, and the rotation of the connecting rod 5021 drives the telescopic rod 5022 to rotate, thereby realizing the rotation of the movable plate 5023. At the same time, after the metal sheet passes the position where the distance between the two rolling rollers 502 is the smallest, the telescopic rods 5022 in this area are controlled to extend, driving the movable plate 5023 in this area to move toward the end away from the connecting rod 5021, so that the rolled metal sheet can be separated from the rolling roller 502, and the rolled metal sheet enters the detection component 8.

[0028] Furthermore, when the telescopic rod 5022 is in the initial state, two adjacent movable plates 5023 are in a state of interference, thereby ensuring the stability of the rolling quality during the rolling of the metal plate.

[0029] In order to ensure that the metal sheet after passing through the grinding component 3 can accurately enter between the two rolling rolls 502, further, a movable groove 5012 is formed on the cavity wall of the rolling cavity 5011, and two abutting rods 7 are slidably arranged in the movable groove 5012. By adjusting the distance between the two abutting rods 7, the landing position of the metal sheet can be adjusted, and the axial direction of the abutting rod 7 is the same as that of the rolling roll 502. During use, when the metal sheet contacts the abutting rod 7 after passing through the grinding component 3, the ground sheet is located between the two rolling rolls 502 through the movement of the abutting rod 7.

[0030] Further, in order to ensure that the rolled metal steel plate can meet the rolling requirements and improve the rolling efficiency, it is necessary to detect the rolled sheet during use. The detection component 8 includes a detection box 801, and the detection box 801 is connected to the working box 501. The rolled metal sheet enters the detection box 801 after passing through the rolling cavity 5011, and the rolled sheet is detected. A through groove 8011 for the rolled metal sheet to pass through is formed through the detection box 801, and a connection cavity 8012 is formed in the detection box 801. The connection cavity 8012 is communicated with the through groove 8011. Two identification parts 803 for detecting the thickness of the sheet are connected in the connection cavity 8012. The two identification parts 803 are symmetrically distributed with the through groove 8011 as the symmetry center. When the rolled sheet passes through the through groove 8011, the two identification parts 803 are controlled to move towards the end close to each other, so that the two identification parts 803 contact the metal sheet. While the metal sheet is moving, it is ensured that the rolled metal sheet meets the rolling requirements according to the identification of the identification part 803.

[0031] In order to ensure that the identification part 803 can accurately identify the metal sheet and the rolling component 5 can be adjusted in time according to the detection result, further, both of the two identification parts 803 include a cross bar 8033 for fixing the device. A plurality of movable rods 8032 are connected to the opposite ends of the cross bar 8033, and the length of the movable rod 8032 can be adjusted. A connecting frame 8031 for supporting is connected to the end of the movable rod 8032 away from the cross bar 8033, and a contact wheel 8034 for detection is rotatably arranged on the connecting frame 8031. During use, the length of the movable rod 8032 is adjusted to drive the connecting frame 8031 to move towards the end away from the cross bar 8033, and drive the contact wheel 8034 to move towards the end close to the metal sheet, so that the contact wheel 8034 contacts the metal sheet, and the quality detection is realized through the contact pressure between the contact wheel 8034 and the metal sheet.

[0032] Further, in order to improve the detection efficiency of the contact wheel 8034 and ensure the qualification rate of the metal sheet, two buffer grooves 8035 are symmetrically formed on the connecting frame 8031 to ensure that the contact wheel 8034 will not interfere with the elastic rod 8036 during the detection process. Elastic rods 8036 are connected in both of the two buffer grooves 8035. The two ends of the contact wheel 8034 distributed along the axial direction are respectively connected to the elastic rod 8036. When the contact wheel 8034 contacts the rolled metal sheet, the contact wheel 8034 rotates as the metal sheet moves, so as to detect the surface state of the metal sheet. When the contact wheel 8034 rotates, if the length of the elastic rod 8036 does not change significantly, it means that the rolled metal sheet is in a qualified state at this time. When the contact wheel 8034 fluctuates as the metal sheet moves, it drives the elastic rod 8036 to stretch and contract, which means that the metal sheet does not meet the rolling standard after rolling.

[0033] And according to the elastic change of the elastic rod 8036 and the mutual cooperation of the rolling roller 502, the state of the metal sheet is identified, and it is judged whether there are impurities on the surface of the metal sheet that affect the rolling efficiency, so as to adjust the rolling assembly 5 and the grinding assembly 3 to ensure that the subsequent metal sheet can be successfully rolled.

[0034] When the contact wheel 8034 identifies and detects the rolled metal sheet, the state of the surface of the metal sheet is judged through the state of the elastic rod 8036. When the contact wheel 8034 contacts the metal sheet, if the length of the elastic rod 8036 at a certain place fluctuates irregularly, it means that there are impurities in this area that affect the rolling efficiency of the metal sheet. When the contact wheel 8034 continuously shakes regularly after contacting the metal sheet, it means that the rolling force of the rolling assembly 5 on the metal sheet is small and cannot meet the rolling requirements of the sheet. At the same time, when the contact wheel 8034 is identifying, if the contact wheel 8034 and the elastic rod 8036 at the same position continuously shake abnormally, it is necessary to stop the machine to identify and detect the surface of the rolling roller 502 to ensure that the surface of the rolling roller 502 is not damaged and affects the success rate of metal sheet rolling.

[0035] Further, during the rolling process, since abnormal protrusions may appear at the edges of the metal after being extruded, which will affect the rolling quality of the metal sheet, grinding parts 802 for eliminating abnormal protrusions are respectively arranged at both ends of the through groove 8011 distributed along the length direction. The grinding parts 802 are used to grind the edges of the rolled metal sheet. When the metal sheet passes through the through groove 8011, the grinding parts 802 can contact the edges of the metal sheet to grind and eliminate the abnormal protrusions at the edges of the metal sheet.

[0036] At the same time, in order to prevent the stress in the rolled metal plate from causing deformation and resetting of the rolled plate, thereby affecting the qualified rate of the plate, an electromagnetic heating component is set on the side of the detection box 801 away from the rolling roller 502, and the rolled metal plate is heated in sections, so as to eliminate the stress in the plate and ensure the accuracy of the detection data passed by the detection component 8 to prevent the metal plate from being deformed under the action of stress.

[0037] Furthermore, a power assembly 6 is connected to the support frame 1, and the power assembly 6 is connected to the grinding assembly 3 and the rolling assembly 5 respectively. When the power assembly 6 starts to work, it can drive the grinding assembly 3 and the rolling assembly 5 to start working.

[0038] Furthermore, a baffle 4 is connected to the side of the detection component 8 away from the rolling component 5, and one end of the baffle 4 is connected to the support frame 1, wherein the baffle 4 is in an arc-shaped state, so that when the metal plate passes through the detection component 8, it contacts the baffle 4 and moves along the arc of the baffle 4 as the metal plate moves, so that the rolled metal plate is moved out of the rolling equipment for storage.

[0039] During operation, the metal sheet to be rolled is first connected to the grinding assembly 3, and then the power assembly 6 is started, so that the power assembly 6 drives the grinding assembly 3 and the rolling assembly 5 to work, ensuring that the metal sheet can be rolled on the rolling equipment.

[0040] The two ends of the metal plate are respectively connected to the grinding roller 301 and the grinding roller 302 by abutment, and the distance between the grinding roller 301 and the grinding roller 302 is adjusted to ensure the stability of the position of the metal plate. At the same time, impurities adhering to the surface of the metal plate can be eliminated to reduce the impact of impurities on the subsequent metal plate on the plate rolling efficiency. As the grinding roller 301 and the grinding roller 302 rotate, the polished plate is introduced into the rolling cavity 5011. When the end of the metal plate enters the rolling cavity 5011, the position of the metal plate is regulated by the abutment rod 7 so that the end of the metal plate can contact the rolling roller 502, prompting the metal plate to complete rolling when passing through the rolling roller 502, and then enter the detection component 8, and use the identification unit 803 to identify and judge the surface of the rolled plate to ensure that the rolled plate meets the use requirements, and then the rolled plate is transported out of the rolling equipment along the arc of the baffle 4.

[0041] When rolling plates of different thicknesses, the regulating unit 2 is used to regulate the spacing of the grinding assembly 3 to ensure that the grinding roller 301 and the grinding roller 302 can adapt to plates of different thicknesses, thereby increasing their scope of application.

[0042] When the rolled sheet passes through the through groove 8011, control the two recognition parts 803 to move towards the ends close to each other, so that the metal sheet contacts the two recognition parts 803. As the metal sheet moves, use the recognition of the recognition part 803 to ensure that the rolled metal sheet meets the rolling requirements.

[0043] Specifically, by adjusting the length of the movable rod 8032, drive the connecting frame 8031 to move towards the end away from the cross bar 8033, and drive the abutting wheel 8034 to move towards the end close to the metal sheet, so that the abutting wheel 8034 abuts against the metal sheet, and realize quality detection through the abutting pressure between the abutting wheel 8034 and the metal sheet. At the same time, according to the surface state of the metal sheet, identify the surface state of the rolling roll 502 to avoid damage to the rolling roll 502 affecting the rolling of the metal sheet.

[0044] After the abutting wheel 8034 contacts the rolled metal sheet, the abutting wheel 8034 rotates as the metal sheet moves. When the abutting wheel 8034 rotates, the length of the elastic rod 8036 does not change significantly, which means that the surface of the rolled metal sheet is flat at this time, without obvious concave and convex changes, and is in a qualified state. When the abutting wheel 8034 vibrates as the metal sheet moves and drives the elastic rod 8036 to stretch and contract, it means that the metal sheet does not meet the rolling standard after rolling.

[0045] At the same time, when the abutting wheel 8034 is identifying and detecting the rolled metal sheet, judge the surface state of the metal sheet through the state of the elastic rod 8036. When the abutting wheel 8034 contacts the metal sheet, if the length of the elastic rod 8036 at a certain place fluctuates irregularly, it means that there are impurities in this area affecting the rolling efficiency of the metal sheet. At this time, control the regulating part 2 to adjust the positions of the abrasive roller 301 and the polishing roller 302 to ensure that the impurities on the metal sheet are fully removed. If necessary, the abrasive roller 301 and the polishing roller 302 can be replaced to ensure the stability of their polishing efficiency.

[0046] When the abutting wheel 8034 continuously shows relatively regular jitters after contacting the metal sheet, it means that the thickness of the metal sheet after passing through the rolling roll 502 is inconsistent, that is, the rolling force of the rolling roll 502 in the rolling assembly 5 on the metal sheet is small and cannot meet the rolling requirements of the sheet. When the rolling force of the rolling roll 502 is increased, and at this time when passing through the abutting wheel 8034 and the elastic rod 8036, if the elastic rod 8036 is still in relatively regular jitters, it means that the rolling roll 502 is damaged at this time, that is, the surface of the movable plate 5023 is damaged, affecting the rolling accuracy, and it is necessary to stop the machine to repair the rolling roll 502 and the movable plate 5023.

[0047] Meanwhile, when the contact wheel 8034 is in the process of recognition, if the contact wheel 8034 and the elastic rod 8036 at the same position continuously show abnormal jitter, the machine needs to be stopped to detect the surface of the rolling roll 502 to ensure that there is no damage on the surface of the rolling roll 502 that affects the success rate of metal sheet rolling.

[0048] Moreover, in order to reduce the deformation of the rolled sheet caused by the stress after rolling when the rolled sheet passes through the detection component 8, an electromagnetic heating component is provided to segmentally heat the rolled sheet passing through the contact wheel 8034, thereby reducing the rolling stress in the rolled sheet, reducing the probability of deformation of the rolled sheet, and improving the forming efficiency of the rolled sheet.

[0049] Embodiment 2 This embodiment discloses a manufacturing method implemented by using a metal forming rolling equipment, including the following steps: S1. According to the thickness and model of the metal sheet, use the regulation unit 2 to control the grinding component 3, and then connect the metal sheet to be rolled with the grinding component 3; S2. Use the power component 6 to control the grinding component 3 and the rolling component 5 to work, drive the metal sheet to move, and grind the surface of the metal sheet when the metal sheet passes through the grinding component 3; S3. After the metal sheet enters the rolling cavity 5011, adjust the landing position of the metal sheet by moving the contact rod 7 to make the starting end face of the metal sheet located between the rolling rolls 502; S4. Use the rolling rolls 502 to roll the ground metal sheet, and make the rolled metal sheet enter the through groove 8011 through the rolling cavity 5011, and use the detection component 8 to detect the end face of the metal sheet; S5. Judge the states of the rolled metal sheet and the rolling roll 502 according to the states of the contact wheel 8034 and the elastic rod 8036.

[0050] Embodiment 3 An application in high-purity aluminum targets realized by using a metal forming rolling equipment. Using the metal forming rolling equipment, before rolling, it is necessary to mill the surface of the ultra-high-purity aluminum ingot to remove the surface oxide layer, roll it on a reversible hot rolling mill, with a single-pass reduction of 20MM, and use emulsion for lubrication. During the rolling process, first set the roll gap of the rolling mill to half of the single-pass reduction, and then adjust it to the single-pass reduction for rolling. In this step, controlling the deformation temperature and the single-pass deformation reduction is the key to controlling the grain size and orientation of the target product. After annealing, the target needs to be flattened and then milled to obtain an ultra-high-purity aluminum sputtering target.

[0051] It should be noted that, in this document, the terms "include", "comprise" or any other variants thereof are intended to cover non-exclusive inclusion, such that a process, method, article or device comprising a series of elements not only includes those elements but also includes other elements not expressly listed, or further includes elements inherent to such process, method, article or device.

[0052] Although the embodiments of the present invention have been shown and described, it will be understood by those of ordinary skill in the art that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A metal forming rolling equipment, comprising a support frame (1), characterized in that: The support frame (1) is connected to a grinding assembly (3), one side of the grinding assembly (3) is connected to a rolling assembly (5), one end of the rolling assembly (5) is connected to a detection assembly (8), and the support frame (1) is also connected to a regulating unit (2), and the regulating unit (2) can regulate the grinding assembly (3); The grinding assembly (3) comprises a grinding roller (301), and a grinding roller (302) is connected to one side of the grinding roller (301); The rolling assembly (5) comprises a working box (501), a rolling cavity (5011) extending through the working box (501), two rolling rollers (502) rotatably arranged in the rolling cavity (5011), the rolling rollers (502) comprising a connecting rod (5021), a plurality of telescopic rods (5022) being connected to the outer circumference of the connecting rod (5021), and a movable plate (5023) being connected to one end of the telescopic rod (5022) away from the connecting rod (5021).

2. The metal forming rolling equipment according to claim 1, characterized in that: A movable groove (5012) is provided on the cavity wall of the rolling cavity (5011), and two abutment rods (7) are slidably provided in the movable groove (5012), and the abutment rods (7) and the rolling roller (502) have the same axial direction.

3. The metal forming rolling equipment according to claim 1, characterized in that: The detection assembly (8) comprises a detection box (801), the detection box (801) being connected to the working box (501), the detection box (801) being provided with a through slot (8011) penetrating therethrough, and a connecting cavity (8012) being provided in the detection box (801), the connecting cavity (8012) being communicated with the through slot (8011), two identification parts (803) being connected in the connecting cavity (8012), and the two identification parts (803) being symmetrically distributed with the through slot (8011) being the symmetry center.

4. The metal forming rolling equipment according to claim 3, characterized in that: The two identification parts (803) each comprise a cross bar (8033), a plurality of movable bars (8032) being connected to one end of the cross bar (8033) opposite to each other, a connecting frame (8031) being connected to one end of the movable bar (8032) away from the cross bar (8033), and a resisting wheel (8034) being rotatably provided on the connecting frame (8031).

5. The metal forming rolling equipment according to claim 4, characterized in that: Two buffer grooves (8035) are symmetrically provided on the connecting frame (8031), and elastic rods (8036) are connected to the two buffer grooves (8035). Both ends of the abutting wheel (8034) distributed in the axial direction are respectively connected to the elastic rods (8036).

6. The metal forming rolling equipment according to claim 3, characterized in that: Grinding portions (802) are respectively provided at both ends of the through groove (8011) distributed along the length direction.

7. The metal forming rolling equipment according to claim 1, characterized in that: The support frame (1) is connected to a power assembly (6), and the power assembly (6) is respectively connected to the grinding assembly (3) and the rolling assembly (5).

8. The metal forming rolling equipment according to claim 1, characterized in that: A baffle (4) is connected to a side of the detection component (8) away from the rolling component (5), and one end of the baffle (4) is connected to the support frame (1).

9. A manufacturing method using the metal forming rolling equipment according to any one of claims 1 to 8, characterized in that: The following steps are involved: S1, according to the thickness and type of the metal sheet, using the control unit (2) to control the grinding component (3), and then connecting the metal sheet to be rolled to the grinding component (3); S2, using the power assembly (6) to control the grinding assembly (3) and the rolling assembly (5) to drive the metal sheet to move, and grinding the surface of the metal sheet when the metal sheet passes through the grinding assembly (3); S3, after the metal sheet enters the rolling cavity (5011), the landing point of the metal sheet is adjusted by moving the resistance rod (7) so that the starting end surface of the metal sheet is located between the rolling rollers (502); S4, using a rolling roller (502) to roll the polished metal sheet, and causing the rolled metal sheet to pass through the rolling cavity (5011) and enter the through groove (8011), and using a detection component (8) to detect the end surface of the metal sheet; S5. The state of the rolled metal sheet and the rolling roller (502) is determined by the state of the abutment wheel (8034) and the elastic rod (8036).

10. An application of the metal forming and rolling equipment as described in any one of claims 1 to 8 in high purity aluminum target materials.

Citation Information

Patent Citations

  • Metal material rolling forming equipment

    CN116078815A

  • Online rolling process adjusting system and method based on roller wear detection

    CN106694572A

  • Asynchronous amplitude modulation rolling method for high-performance metal plate

    CN114425568A

  • Rolling forming process of aluminum profile frame

    CN119702726A

  • Aluminum cold rolling production device and production method for can material

    CN119771920A