High-strength hot-dip galvanized metal plate

By setting support components at the four corners of the hot-dip galvanized metal sheet, the height of the support plate is adjusted to maintain the spacing of the plates, the surface wear problem caused by anti-friction during the stacking process of hot-dip galvanized metal sheets is solved, and the strength of the board is improved.

CN222886496UActive Publication Date: 2025-05-20WEIHAI JIEWEIT MASCH EQUIP CO LTD
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Patent Information

Application Number
CN202421640186.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-11
Publication Date
2025-05-20
Estimated Expiration
2034-07-11

AI Technical Summary

Technical Problem

Hot-dip galvanized metal sheets are worn due to anti-friction during stacking, which affects their use strength.

Method used

A high-strength hot-dip galvanized metal sheet is designed, and by providing support components at the four corners of the board body, including mounting side panels, support panels, lifting panels, limiting panels and pushing panels, the height of the support panels is adjusted to maintain the spacing between the board bodies and avoid direct friction.

Benefits of technology

It effectively avoids friction and wear of hot-dip galvanized metal sheets during stacking, and improves the strength of the sheets.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a high-strength hot-dip galvanized metal plate which comprises a plate body and further comprises supporting assemblies arranged at the four corners of the plate body and used for assisting in supporting in the stacking process of the plate body, and each supporting assembly comprises an installation side plate. According to the high-strength hot-dip galvanized metal plate, after the hot-dip galvanized metal plate is produced, in the process that the plate body needs to be stacked to assist in follow-up carrying, the mounting side plates on the supporting assemblies are mounted on the periphery of the plate body through the mounting effect of the mounting assemblies; the supporting height of the supporting plate is adjusted through mutual cooperation of the lifting assembly and the limiting assembly, after adjustment is completed, the two adjacent stacked plate bodies are supported through the supporting plate, the distance between the two stacked plate bodies is kept, and the situation that the hot galvanizing materials on the surface are abraded due to friction caused by direct abutting and stacking of the plate bodies is avoided; and the use strength of the hot-dip galvanized metal plate is further ensured.
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Description

Technical Field

[0001] The utility model relates to the technical field of hot-dip galvanized metal sheets, and particularly relates to a high-strength hot-dip galvanized metal sheet. Background Technique

[0002] The hot-dip galvanized metal sheet refers to a steel sheet product obtained by first soaking a steel plate in a galvanizing bath after high-temperature heating to coat the surface of the steel plate with a layer of zinc, and then performing hot rolling or cold rolling on this basis.

[0003] After the production and processing of the hot-dip galvanized metal sheet, it is necessary to stack the hot-dip galvanized metal sheet. During the stacking process, the surfaces of two adjacent groups of hot-dip galvanized metal sheets in the up and down directions will rub against each other, resulting in wear on the surface of the hot-dip galvanized metal sheet and affecting the use strength of the subsequent hot-dip galvanized metal sheet.

[0004] Therefore, there is an urgent need for a high-strength hot-dip galvanized metal sheet to solve the above problems. Content of the Utility Model

[0005] The purpose of the utility model is to provide a high-strength hot-dip galvanized metal sheet to solve the problems put forward in the above background technique.

[0006] To achieve the above purpose, the utility model provides the following technical solution: A high-strength hot-dip galvanized metal sheet, including a plate body, and further including a support component arranged at the four corners of the plate body for supporting during the stacking process of the plate body. The support component includes an installation side plate, and a support plate for supporting the plate body stacked above is arranged above the installation side plate. The installation side plate and the plate body are installed and connected through an installation component, and the support plate is located above the plate body after installation. An elevation component for assisting the elevation of the support plate is arranged on the installation side plate.

[0007] The elevation component includes an installation groove opened on the installation side plate. An elevation plate is connected to the installation groove through a sliding component. The support plate is fixed to the upper end of the elevation plate. A limiting component for limiting the elevation and sliding of the elevation plate is arranged on the installation side plate. A pushing component for assisting in pushing the elevation plate to elevate is arranged on the installation side plate.

[0008] The sliding component includes T-shaped grooves opened on the opposite inner walls of the installation groove. Two T-shaped blocks are slidably connected to the two T-shaped grooves, and the two T-shaped blocks are fixed to both sides of the elevation plate.

[0009] The limiting component includes a threaded sleeve fixed to one side of the installation side plate. The threaded sleeve is communicated with the inside of the installation groove. A threaded rod is threadedly engaged with the threaded sleeve. One end of the threaded rod abuts against one side of the elevation plate after sliding, and a driving pin is fixed to the other end of the threaded rod.

[0010] The pushing component includes a slotted opening formed in the mounting side plate. The slotted opening communicates with the inside of the mounting groove. A pushing pin is provided on the slotted opening, and one end of the pushing pin is fixed to one side of the lifting plate.

[0011] The mounting component includes multiple groups of pins fixed to one side of the mounting side plate. Mounting surfaces are formed at the corners of the plate body, and multiple groups of jacks for inserting and connecting the pins are formed on the mounting surfaces.

[0012] Compared with the prior art, the beneficial effects of the present utility model are as follows:

[0013] For a high-strength hot-dip galvanized metal sheet of the present utility model, after the hot-dip galvanized metal sheet is produced, during the process of stacking the plate body to assist subsequent handling, the mounting side plates on each group of support components are mounted around the plate body through the mounting action of the mounting component, and through the mutual cooperation of the lifting component and the limiting component, the support height of the support plate is adjusted. After the adjustment is completed, the support plate is used to support between two adjacent stacked plate bodies, maintaining the spacing between the two stacked plate bodies, avoiding friction caused by direct contact and stacking between the plate bodies, resulting in wear of the hot-dip galvanized material on the surface, and further ensuring the use strength of the hot-dip galvanized metal sheet. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 is a schematic diagram of the overall external structure of the present utility model;

[0015] Figure 2 is a schematic diagram of the plate body structure of the present utility model;

[0016] Figure 3 is a schematic diagram of the mounting component structure of the present utility model;

[0017] Figure 4 is a schematic diagram of the limiting component structure of the present utility model;

[0018] Figure 5 is a schematic diagram of the pushing component and the support component structure of the present utility model;

[0019] Figure 6 is a schematic diagram of the lifting component and the sliding component structure of the present utility model.

[0020] In the figure: 1, plate body; 201, mounting side plate; 202, support plate; 301, pin; 302, mounting surface; 303, jack; 401, mounting groove; 402, lifting plate; 501, T-shaped groove; 502, T-shaped block; 601, threaded sleeve; 602, threaded rod; 603, driving pin; 701, slotted opening; 702, pushing pin. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0021] The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0022] Please refer to Figure 1-6 , a high-strength hot-dip galvanized metal sheet provided by the present invention includes a plate body 1, and further includes a support assembly provided at the four corners of the plate body 1 for supporting during the stacking process of the plate body 1. The support assembly includes a mounting side plate 201. Above the mounting side plate 201, there is a support plate 202 for supporting the plate body 1 stacked above. The mounting side plate 201 and the plate body 1 are installed and connected through a mounting assembly, and after the mounting side plate 201 is installed, the support plate 202 is located above the plate body 1. An elevating assembly for assisting the lifting of the support plate 202 is provided on the mounting side plate 201;

[0023] It should be noted here that: after the hot-dip galvanized metal sheet is produced, during the process of stacking the plate body 1 to assist subsequent handling, the mounting side plates 201 of each group of support assemblies are installed around the plate body 1 through the installation of the mounting assembly, and through the mutual cooperation of the elevating assembly and the limiting assembly, the support height of the support plate 202 is adjusted. After the adjustment is completed, the support plate 202 is used to support between two adjacent stacked plate bodies 1, maintaining the distance between the two stacked plate bodies 1, preventing the plate bodies 1 from directly abutting and rubbing against each other, resulting in wear of the surface hot-dip galvanized material, and further ensuring the use strength of the hot-dip galvanized metal sheet.

[0024] The elevating assembly includes a mounting groove 401 opened on the mounting side plate 201. A lifting plate 402 is connected to the mounting groove 401 through a sliding assembly. The support plate 202 is fixed to the upper end of the lifting plate 402. A limiting assembly for limiting the lifting and sliding of the lifting plate 402 is provided on the mounting side plate 201. A pushing assembly for assisting in pushing the lifting plate 402 to lift is provided on the mounting side plate 201;

[0025] It should be noted here that: through the pushing assembly, the lifting plate 402 is pushed to slide inside the mounting groove 401. During the sliding process of the lifting plate 402, the support plate 202 is driven to lift synchronously, facilitating the use of the support plate 202 at different support heights.

[0026] The sliding assembly includes T-shaped grooves 501 opened on the opposite inner walls of the mounting groove 401. Two T-shaped blocks 502 are slidably connected to the two T-shaped grooves 501. The two T-shaped blocks 502 are fixed to both sides of the lifting plate 402;

[0027] It should be noted here that: through the interaction between the T-shaped groove 501 and the T-shaped block 502, it is convenient to assist the lifting plate 402 after being stressed to slide stably.

[0028] The limiting component includes a threaded sleeve 601 fixed on one side of the mounting side plate 201. The threaded sleeve 601 communicates with the inside of the mounting groove 401. A threaded rod 602 is threadedly engaged with the threaded sleeve 601. One end of the threaded rod 602 abuts against one side of the lifted and lowered lifting plate 402. The other end of the threaded rod 602 is fixed with a driving pin 603;

[0029] It should be noted here that: after the lifting of the support plate 202 is completed, the driving pin 603 is used to drive the threaded rod 602 to rotate. During the rotation of the threaded rod 602, through the meshing transmission between the threaded rod 602 and the threaded sleeve 601, one end of the threaded rod 602 moves towards the inside of the mounting groove 401 and abuts against the lifted and lowered lifting plate 402. Through the abutting action, the lifted and lowered lifting plate 402 after lifting adjustment is abutted and limited.

[0030] The pushing component includes a slot 701 opened on the mounting side plate 201. The slot 701 communicates with the inside of the mounting groove 401. A pushing pin 702 is arranged on the slot 701. One end of the pushing pin 702 is fixed to one side of the lifting plate 402;

[0031] It should be noted here that: after the mounting side plate 201 is installed, the pushing pin 702 on the slot 701 is used to push the lifting plate 402 to slide inside the mounting groove 401.

[0032] The mounting component includes a plurality of groups of pins 301 fixed on one side of the mounting side plate 201. Mounting surfaces 302 are opened at the corners of the plate body 1. A plurality of groups of insertion holes 303 for inserting and connecting the pins 301 are opened on the mounting surfaces 302;

[0033] It should be noted here that: through the cooperation between the pins 301 and the insertion holes 303 on the mounting surface 302, it is convenient to assist in the installation of the mounting side plate 201 and the plate body 1.

[0034] Working principle: After the hot-dip galvanized metal sheet is produced, during the process of stacking the plate body 1 to assist subsequent handling, the mounting side plates 201 on each group of support components are installed around the plate body 1 through the installation action of the mounting component;

[0035] After the installation side plate 201 is installed, the lifting plate 402 is pushed to slide inside the installation groove 401 through the push pin 702 on the slot 701. During the sliding process of the lifting plate 402, the support plate 202 is driven to lift and lower synchronously, facilitating the use of the support plate 202 at different support heights. After the lifting of the support plate 202 is completed, the threaded rod 602 is driven to rotate through the drive pin 603. During the rotation process of the threaded rod 602, through the meshing transmission between the threaded rod 602 and the threaded sleeve 601, one end of the threaded rod 602 moves towards the inside of the installation groove 401 and abuts against the lifted and lowered lifting plate 402. Through the abutting action, the lifted and adjusted lifting plate 402 is limited by abutting;

[0036] After the installation of the installation side plate 201 and the adjustment of the support height of the support plate 202 are completed, the other plate bodies 1 to be stacked above the plate body 1 are placed towards the plate body 1. During the placement process, the plate bodies 1 to be stacked abut against the support plates 202 on each group of support components of the lower plate body 1, supporting between the two adjacent stacked plate bodies 1 and maintaining the distance between the two stacked plate bodies 1, avoiding friction caused by direct abutting stacking between the plate bodies 1 and wearing the hot-dip galvanized material on the surface, and further ensuring the use strength of the hot-dip galvanized metal sheet.

[0037] For those skilled in the art, it is obvious that the present invention is not limited to the details of the above exemplary embodiments, and can be implemented in other specific forms without departing from the spirit or basic characteristics of the present invention. Therefore, from any point of view, the embodiments should be regarded as exemplary and non-restrictive. The scope of the present invention is defined by the appended claims rather than the above description. Therefore, all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be included in the present invention. Any reference signs in the claims should not be regarded as limiting the claimed rights.

Claims

1. A high-strength hot-dip galvanized metal sheet, comprising: plate(1); It is characterized by further comprising: A support assembly is arranged at the four corners of a plate body (1) for assisting the support of the plate body (1) during stacking, the support assembly comprising a mounting side plate (201), a support plate (202) for supporting the plate body (1) stacked above is arranged above the mounting side plate (201), the mounting side plate (201) and the plate body (1) are mounted and connected via the mounting assembly, and after the mounting side plate (201) is mounted, the support plate (202) is located above the plate body (1), and a lifting assembly for assisting the lifting of the support plate (202) is arranged on the mounting side plate (201).

2. The high-strength hot-dip galvanized metal sheet according to claim 1, characterized in that: The lifting assembly comprises a mounting groove (401) provided on the mounting side plate (201); a lifting plate (402) is connected to the mounting groove (401) via a sliding assembly; the support plate (202) is fixed to the upper end of the lifting plate (402); a limiting assembly for limiting the position of the lifting plate (402) after lifting and sliding is arranged on the mounting side plate (201); and a pushing assembly for assisting in pushing the lifting plate (402) to lift and lower is arranged on the mounting side plate (201).

3. The high-strength hot-dip galvanized metal sheet according to claim 2, characterized in that: The sliding assembly comprises T-shaped slots (501) formed on inner walls opposite to the mounting slot (401), two groups of T-shaped slots (501) are slidably connected with T-shaped blocks (502), and the two groups of T-shaped blocks (502) are fixed on both sides of the lifting plate (402).

4. The high-strength hot-dip galvanized metal sheet according to claim 2, characterized in that: The limiting assembly comprises a threaded sleeve (601) fixed on one side of the mounting side plate (201), the threaded sleeve (601) being communicated with the interior of the mounting groove (401), a threaded rod (602) being threadedly engaged with the threaded sleeve (601), one end of the threaded rod (602) being arranged to abut against one side of the sliding rear lifting plate (402), and a driving pin (603) being fixed to the other end of the threaded rod (602).

5. The high-strength hot-dip galvanized metal sheet according to claim 2, characterized in that: The pushing assembly comprises a slot (701) formed on the mounting side plate (201), the slot (701) being in communication with the interior of the mounting slot (401), a pushing pin (702) being provided on the slot (701), and one end of the pushing pin (702) being fixed to one side of the lifting plate (402).

6. The high-strength hot-dip galvanized metal sheet according to claim 1, characterized in that: The installation assembly comprises a plurality of groups of plug pins (301) fixed to one side of the installation side plate (201); a mounting surface (302) is provided at a corner of the plate body (1); and a plurality of groups of sockets (303) for plugging and connecting the plug pins (301) are provided on the mounting surface (302).