Integrated veneer forming structural slab and production process

By using the design of an integrated single-panel molded structural panel, and utilizing grooves and perforated reinforcing ribs, the problems of material waste and complex installation in existing building fences and walkway panels are solved, achieving high strength, lightweight and applicability to multiple scenarios.

CN121539167APending Publication Date: 2026-02-17SHANDONG DAGUO CONSTR TECH CO LTD
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Patent Information

Application Number
CN202511702904.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-11-19
Publication Date
2026-02-17

AI Technical Summary

Technical Problem

The existing construction site fences and walkway panels are mostly composed of panels and independent welded frames, which leads to material waste, high labor costs, complex installation, and limited application scenarios.

Method used

The structure adopts a single-piece molded structural panel. By setting grooves and punches on the side of the structural panel body and combining them with the design of reinforcing ribs, the effect of reinforcing ribs on ribs is achieved, which improves the bending strength and tensile strength. It is connected to bolts or pins through tension holes to form a three-dimensional structure, which simplifies the processing and installation process.

Benefits of technology

It reduces material consumption and processing costs, improves the strength and integrity of structural panels, enhances bending and tensile resistance, simplifies installation and dismantling, and is suitable for various building construction scenarios.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention belongs to the technical field of building structural plates, and particularly relates to an integrated single-plate forming structural plate and a production process thereof.The side edge of a structural body is provided with reinforcing ribs and stretching holes, and the reinforcing ribs comprise inner reinforcing ribs, outer side edge reinforcing ribs and side edge reinforcing rib grooves; stretching holes are formed in the side edge groove structure forming rib upper reinforcing ribs and the grooves, and the inner reinforcing ribs are of a wedge-shaped structure with the wide bottom and the narrow top; the G-shaped strips with hook heads are arranged at the two ends of the structural plate body for blocking, the G-shaped strips and the structural plate body are welded and fixed, and the hook heads of the G-shaped strips are attached to the reinforcing ribs in the structural plate, so that the transverse strength of the structural plate is improved, the overall weight can be reduced to the maximum extent while the strength is guaranteed, and the grooves and the stretching holes are formed in the side edges. Due to the concave-convex stretching holes, the side face sideboards are changed into a three-dimensional shape from a plane shape, the tensile strength, the bending strength and the local deformation resistance coefficient can be improved, stress concentration is reduced, the local buckling risk is reduced, raw materials of the structural board are saved, and the machining cost is reduced.
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Description

TECHNICAL FIELD

[0001] The present application belongs to the technical field of building structure plates, in particular to an integrated single plate forming structure plate and a production process. BACKGROUND

[0002] At present, the steel enclosures, steel plate nets or steel walkway plates used on building enclosures or walkway plates are mostly in the form of combining a panel with an independent welded frame, and the panel and the frame need to be processed by multiple processes, which wastes materials and consumes a large amount of labor cost and is not convenient for installation. In addition, the enclosure and the walkway plate structure have great differences and cannot be mutually used, resulting in a single use scene of the structure plate. SUMMARY

[0003] Therefore, the purpose of the embodiments of the present application is to provide an integrated single plate forming structure plate which simplifies the structure of the structure plate, improves the strength and integrity of the structure plate, reduces the processing procedures, reduces the processing difficulty, shortens the processing time, and reduces the installation and removal difficulty and shortens the installation and removal time.

[0004] The technical scheme for solving the above technical problems is as follows:

[0005] An integrated single plate forming structure plate comprises a structure plate body, and a groove is arranged on the side surface of the structure plate body. The groove can achieve the effect of adding a rib on the rib, has a better reinforcing effect than different reinforcing ribs, and has punching. The punching can reduce the weight of the overall structure plate, further achieve lightweight, facilitate transportation and installation, and additionally change the single plane structure of the side edge into a three-dimensional structure by arranging the groove. Without increasing the overall thickness of the structure plate, the bending strength of the side edge can be improved, and the use demand of the side edge under relatively large stress can be met.

[0006] Preferably, the structure body side surface is provided with a punching, and the punching is a stretch hole. When a bolt or a pin shaft is used for connection, the gasket of the bolt or the pin shaft presses the recess surface and the protruding part of the stretch hole, the stretch hole forms a local support for the gasket, changes the plane structure into a three-dimensional structure, improves the bending strength, the tensile strength and the local deformation stiffness, and additionally makes the tensile stress distribution of the bottom and the side wall more uniform, reduces stress concentration, and reduces the risk of cracking.

[0007] Preferably, the structural plate body includes a panel and reinforcing ribs, the panel is provided with an opening, a punched protrusion or a punched recess, the reinforcing ribs include inner reinforcing ribs and outer side reinforcing ribs, the inner reinforcing ribs are wedge-shaped structures with a bottom width wider than an upper width; the panel opening can ensure the lightweight of the structural plate, and is generally selected when the structural plate is used as a facade protection; the opening can also reduce the stress on the panel when directly hit by strong wind, reduce the wind resistance of the structural plate, and improve the wind load stress of the structural plate; in addition, the wedge-shaped inner reinforcing ribs can disperse axial pressure and reduce the risk of local buckling, and the gradually changing cross section can reduce fluid resistance. When the structural plate is used as a plane bearing, punched protrusions or punched recesses are provided on the panel, which convert the entire panel surface from a plane structure to a three-dimensional structure, increase the rigidity of the panel, improve local deformation, and the protrusions or recesses can further increase the contact friction force to prevent slipping and ensure the safety of the user.

[0008] Further preferably, the inner reinforcing ribs can be other structures with a narrow upper part and a wide lower part, such as triangular, or wedge-shaped with a semi-circular or elliptical upper cross section and a rectangular lower cross section, which can also achieve the effects of reducing the risk of local buckling and reducing fluid resistance.

[0009] Further preferably, the side reinforcing ribs have grooves, which can convert the outer facade of the side reinforcing ribs from a plane to a three-dimensional structure to enhance structural strength.

[0010] The end of the side reinforcing rib is provided with a G-shaped sealing strip; the bottom of the G-shaped sealing strip is provided with a hook, and the hook of the G-shaped sealing strip is welded and fixed to the inner reinforcing rib of the structural plate body, which has higher strength than the traditional C-shaped sealing strip. The hook is different from the design of directly thickening the thickness of the plate, which can ensure the strength and reduce the weight. The side of the G-shaped sealing strip is provided with a notch, which can achieve the effect of reinforcing the rib, and a stretching hole is provided at the notch. The notch and the stretching hole convert the plane to a three-dimensional structure, further enhancing the structural strength. Under the premise of ensuring the strength, the thickness of the plate used can be reduced, further ensuring the lightweight.

[0011] Preferably, the structural plate body uses bolts or pins to connect with each other through the stretching holes to form a continuous structural plate; for plane bearing or facade safety protection;

[0012] Preferably, the structural plate body is directly fixed to the column or beam through the stretching holes using bolts to play a bearing or protection role;

[0013] Preferably, the structural plate body is fixed by a fixing member, which can be fixed to a traditional horizontal rod, vertical rod or disc buckle, or can be fixed in combination with a walkway plate to form an integrated fixed structure for enclosing and protecting, which can have more use scenarios, more convenient use experience and higher installation and disassembly efficiency.

[0014] Preferably, one end of the fixing member is provided with a connecting groove, and a rectangular crossbeam or a walkway plate frame can be inserted into the connecting groove. The other end is provided with a hook head, and the hook head is arranged on both sides of the fixing member and staggered or aligned vertically.

[0015] Preferably, the middle section of the fixing member is provided with a fixing hole, and a fixing pin is inserted into the fixing hole. The fixing pin serves as a fixing and limiting function after the plate body is connected. The angle α of the inclined wedge clamping mechanism is ≤15°, so that the fixing pin has a self-locking function after being fixed. The bottom of the fixing pin is provided with a double bend, which can further reduce the risk of the fixing pin coming out of the fixing hole during installation, ensuring stable, efficient and safe installation.

[0016] The end of the hook head is V-shaped, and the hook heads are arranged staggered or aligned vertically. It is designed for the reinforcing rib in the structure plate body. During actual installation and fixation, the upper and lower hook heads are fixed on both sides of the wedge-shaped reinforcing rib in the structure plate, which fixes the structure plate in the upward, downward, forward and backward directions, and limits the left and right sliding of the structure plate, forming a unique 720-degree complete fixing and limiting. It avoids the common hook head from being pulled out due to the left and right sliding of the structure plate. The hook head can also be designed as a straight head, a semicircular head, a triangular head or other shapes, which can also achieve the basic fixing effect.

[0017] Preferably, one end of the fixing member is provided with a hook head, and the other end is provided with a pin shaft cover plate. The lower section of the pin shaft cover plate is provided with a pin shaft cover plate opening. This structure is mainly used for fixing the integrated plate on the disc buckle. After the pin shaft cover plate is inserted into the disc buckle, the pin body is further fixed by penetrating the pin shaft cover plate opening. Further, an arc-shaped opening is arranged at the connection between the pin shaft cover plate and the body of the fixing member, which can further avoid the structural conflict between the fixing member and the rod body, causing the installation to be not tight. Further, a fixed side plate is vertically arranged on the upper half of the fixing pin, which can further fix the entire structure by using bolts.

[0018] Preferably, one end of the fixing member is provided with a hook head, and the other end is provided with a fixed clamp. The fixed clamp can be horizontally connected or vertically connected with the fixing member, which is convenient for fixing on the horizontal rod or vertical rod.

[0019] Preferably, the fixing and installation method is to horizontally place the fixing pin, and the double bend is fitted to the middle part of the fixing member. The structure plate is installed into the front section of the bent hook, leaving a working space and not falling off. After the structure plate is installed and fitted to the front section of the bent hook, the fixing pin is vertically fixed, and the structure plate is fixed on the fixing member. The fixing pin is provided with an opening, which is used to fix the structure plate body by using screws after the structure plate is installed and fitted to the front section of the bent hook, so as to limit the horizontal sliding of the structure plate on the fixing member.

[0020] A production process of an integrated single plate forming structure plate, characterized in that it comprises the following steps,

[0021] S1: using the aluminum magnesium zinc coated steel coil with a fixed width, cutting according to the actual required length;

[0022] S2: using the stamping process to stamp the two side edges;

[0023] S3: after the side edge stamping, the stretch hole stamping is carried out;

[0024] S4: the side edge is stamped into a C-shaped groove through a die, then a reinforcing rib die is placed in the groove, and an inner concave side edge reinforcing rib is stamped;

[0025] S5: the first wedge-shaped reinforcing rib, the second reinforcing rib, the third reinforcing rib, the fourth reinforcing rib and other inner reinforcing ribs are sequentially stamped, and the panel stretch hole is concave or convex;

[0026] S6: using a bending machine, the two side edges C-shaped are bent into similar p-shaped and q-shaped, and then a welding machine is used to weld the side edges to be shaped;

[0027] S7: at both ends of the welded panel, a G-shaped sealing strip is sleeved and welded.

[0028] The beneficial effects of the present application are:

[0029] The structure plate body is integrally formed, material is saved, the process is simple, the above structure can reduce the overall weight to the maximum extent while ensuring the strength, reduce carbon emissions, reduce manufacturing cost, the side edge is provided with a stretch hole and a rib upper reinforcing rib, which can further improve the tensile strength and reduce stress concentration, the wedge-shaped structure can save material width, disperse axial pressure and reduce local buckling risk, the gradually changing cross section can reduce fluid resistance; the panel is provided with a stretch hole and a recess, so that the panel changes from a plane to a solid, improves the strength, improves the material utilization rate and reduces the processing cost; the hook head at one end of the fixing part is in V-shaped structure, completely matches the inner reinforcing rib side edge of the structure plate, limits the transverse sliding of the structure plate while fixing the structure plate, realizes 720 degree fixing of the structure plate without any bolt or screw auxiliary, saves labor and effort, and multiple fixing parts can ensure more use scenarios of the integrated plate.

[0030] The processing technology of the present application has the following advantages:

[0031] a. simple equipment, only cutting and stamping equipment, plus welding equipment, low equipment investment cost;

[0032] b. simple processing procedure: steel coil cutting → stamping forming → bending side edge and welding → sleeving and welding G-shaped sealing plate → completing processing;

[0033] c. Save the site: the length of the processing equipment is only 3 times the length of the finished product, according to the conventional finished product length of 2 meters, the processing plant only needs 6-8 meters; compared with the 20-50 meters required by the roll forming, the processing site can be greatly saved; more suitable for narrow site production;

[0034] d. Accurate size: from one side to the other side, the size deviation caused by the stretching deformation in the processing process can be overcome, the size of all finished products is consistent with the mold, and the accuracy of the size of the finished product is ensured; and the layer-by-layer progressive processing method is not easy to form concentrated stress in the processing process.

[0035] In order to make the above-mentioned purposes, characteristics and advantages of the present application more obvious and easy to understand, the following preferred embodiments are described in detail below, together with the accompanying drawings. BRIEF DESCRIPTION OF DRAWINGS

[0036] Figure 1 It is a front view of the structure plate strip punching of the present application;

[0037] Figure 2 It is a front view of the structure plate strip punching of the present application;

[0038] Figure 3 It is a cross-sectional view of the structure plate of the present application;

[0039] Figure 4 It is a longitudinal cross-sectional view of the structure plate wedge structure of the present application, which accounts for 1 / 2;

[0040] Figure 5 It is a longitudinal cross-sectional view of the structure plate wedge structure of the present application, which accounts for more than 1 / 2;

[0041] Figure 6 It is a longitudinal cross-sectional view of the structure plate wedge structure of the present application, which accounts for less than 1 / 2;

[0042] Figure 7 It is a cross-sectional structure diagram of the G-type sealing strip of the present application;

[0043] Figure 8 It is a local three-dimensional structure diagram of the G-type sealing strip of the present application;

[0044] Figure 9 It is another structure G-type sealing cross-sectional strip diagram of the present application;

[0045] Figure 10 It is a Figure 9 Local three-dimensional structure diagram;

[0046] Figure 11 It is a local enlarged view of the structure plate of the present application;

[0047] Figure 12It is the first fixed part structure schematic view of the present application;

[0048] Figure 13 It is the fixed pin structure schematic view of the fixed part of the present application;

[0049] Figure 14 It is the other fixed pin structure schematic view of the fixed part of the present application;

[0050] Figure 15 It is the fixed part structure schematic view of the present application with different fixed holes

[0051] Figure 16 It is the second fixed part structure schematic view of the present application;

[0052] Figure 17 It is the partial enlarged schematic view of the connection mode between the structure plate and the fixed part of the present application;

[0053] Figure 18 It is the structure schematic view of the structure plate as a door leaf of the present application;

[0054] Figures 19-27 It is the manufacturing method step schematic view of the present application.

[0055] In the figure: 1 structure plate body; 2-1 inner reinforcing rib; 2-1-1 wedge structure; 2-2 side edge reinforcing rib; 3 face plate; 4 punching; 401 stretching hole; 5 G type sealing strip; 5-1 hook; 5-2 notch; 5-3 thickened support layer; 7 fixed part; 701 connecting groove; 702 hook head; 702-1 hook head platform; 702-2 hook head protrusion; 703 support part; 704 fixed hole; 705 fixed pin; 706 double-bend; 707 fixed side plate; 708 pin shaft cover plate; 709 pin shaft cover plate opening; 714 arc-shaped opening; 8 stamping protrusion or stamping depression. Embodiment

[0056] The technical solutions of the present application will be described below in conjunction with the drawings. Obviously, the described embodiments are part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0057] In the description of the present application, it should be noted that if the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer" and the like appear, the indicated orientation or position relationship is based on the orientation or position relationship shown in the drawings, and is only for the convenience of describing the present application and simplifying the description, and therefore cannot be understood as limiting the indicated device or element to have a specific orientation, to be constructed and operated in a specific orientation, and therefore cannot be understood as limiting the present application.

[0058] Embodiment 1

[0059] As Figure 1 , 3 -15、17, the embodiment discloses a one-piece single-board forming structure plate, comprising a structure plate body 1, the structure plate body 1 is provided with a stretching hole 401 on the side, the structure plate body 1 comprises a panel 3 and a reinforcing rib, the reinforcing rib comprises an inner reinforcing rib 2-1 and an outer side edge reinforcing rib 2-2, the inner reinforcing rib is a wedge-shaped structure 2-1-1, the side edge reinforcing rib 2-2 is transversely provided with a groove, and a G-shaped sealing strip 5 is arranged at the end of the side edge reinforcing rib 2-2; the G-shaped sealing strip 5 is provided with a hook 5-1 at the bottom and a notch 5-2 at the side.

[0060] The panel 3 is provided with an opening, the opening of the panel 3 can ensure that the structure plate is light in weight, the structure plate body in the embodiment is used as a building facade, the opening can reduce the stress of the panel 3 when directly blown by strong wind and reduce the risk of being blown by wind;

[0061] The structure plate body 1 is fixed on the walkway plate through the fixing part 7, forming an integrated fixed structure of the surrounding walkway plate, which can have more use scenarios, more convenient use experience and higher installation and disassembly efficiency.

[0062] One end of the fixing part 7 is provided with a connecting groove 701, the walkway plate is inserted into the connecting groove 701, the other end is provided with a hook head 702, the hook head 702 is arranged on the two sides of the fixing part and is distributed in staggered rows, and two groups of different structure plates are fixed at the upper and lower ends; the upper and lower hook heads 702 are respectively fixed on the two sides of the wedge-shaped reinforcing rib in the structure plate 1, the structure plate is fixed in the upper, lower, front and rear directions, and the left and right sliding of the structure plate is limited, forming a unique 720-degree complete fixation; the hook head is avoided in the conventional hook head, the structure plate slides left and right to cause the hook head to be pulled out, a supporting part 703 is arranged between the connecting groove 701 and the fixing part 7, a fixing hole 704 is arranged in the middle of the fixing part 7, a fixing pin 705 is inserted into the fixing hole 704, the fixing pin 705 is locked and connected after being inserted, a double-bent part 706 is arranged at the bottom of the fixing pin, the double-bent part 706 is arranged to further reduce the risk that the fixing pin is pulled out of the fixing hole during installation, so that the installation is stable, efficient and safe.

[0063] During installation, the connecting groove 701 is clamped on the rectangular cross beam (or the walkway plate frame), then the bolt is used for fixing, the wedge-shaped structure 2-1 of the one-piece structure plate body 1 is clamped with the hook head 702, the fixing pin 705 is inserted into the fixing hole 704 and is locked, and then the upper and lower and left and right are installed in sequence, and the disassembly is conversely.

[0064] Embodiment 2

[0065] As Figure 1 , 3-11, 13-14, 16-17, the embodiment discloses an integrated single board forming structural board, comprising a structural board body 1, the structural board body 1 is provided with a tensile hole 401 on the side, the structural board body 1 comprises a panel 3 and a reinforcing rib, the reinforcing rib comprises an inner reinforcing rib 2-1 and an outer side edge reinforcing rib 2-2, the inner reinforcing rib is a wedge structure 2-1-1, the side edge reinforcing rib 2-2 can be provided with a groove transversely, the groove can change the outer vertical surface of the side edge reinforcing rib from a plane into a three-dimensional structure, so that the structural strength is enhanced.The end of the side edge reinforcing rib 2-2 is provided with a G-shaped sealing strip 5; the bottom of the G-shaped sealing strip 5 is provided with a hook 5-1, and the side of the G-shaped sealing strip is provided with a notch 5-2.

[0066] The panel 3 is provided with an opening, and the opening of the panel 3 can ensure that the structural board is light in weight, the structural board body is used as a building fence in the embodiment, the opening can reduce the stress of the panel 3 when directly blown by strong wind, and the risk of being blown by wind is reduced.

[0067] The structural board body 1 is fixed on a disc buckle through the fixing part 7, a fixing hole 704 is formed in the middle of the fixing part 7, a fixing pin 705 is inserted into the fixing hole 704, the fixing pin 705 can be used for fixing after the plate body is connected, a double-bent part 706 is arranged at the bottom of the fixing pin 705; a hook 702 is arranged at one end of the fixing part 7, and a pin shaft cover plate 708 is arranged at the other end, a pin shaft cover plate opening 709 is arranged in the lower section of the pin shaft cover plate, and an arc-shaped opening 714 is arranged at the connecting position of the pin shaft cover plate 708 and the fixing part 7.

[0068] When the pin shaft cover plate 708 is inserted into the disc buckle, the wedge structure 2-1 of the integrated structural board body 1 is clamped with the hook 702, the fixing pin 705 is inserted into the fixing hole 704 and locked, and the pin shaft cover plate opening 709 is inserted into the pin body reinforcing fixing part and the disc buckle to improve the stability.

[0069] Embodiment 3

[0070] As Figure 1 , 3 -11, 13-14, 17, the embodiment discloses an integrated single board forming structural board, comprising a structural board body 1, the structural board body 1 is provided with a tensile hole 401 on the side, the tensile hole 401 changes a plane structure into a three-dimensional structure, so that the tensile strength is improved, the structural board body 1 comprises a panel 3 and a reinforcing rib, the reinforcing rib comprises an inner reinforcing rib 2-1 and an outer side edge reinforcing rib 2-2, the inner reinforcing rib is a wedge structure 2-1-1, the wedge structure 2-1-1 can disperse axial pressure and reduce the risk of local buckling, and the gradually changed cross section can reduce fluid resistance.

[0071] The side edge reinforcing rib 2-2 can be provided with a groove transversely, which can convert the outer facade of the side edge reinforcing rib from a plane to a three-dimensional structure, enhancing the structural strength. The G-shaped sealing strip 5 is installed at the end 2-2 of the side edge reinforcing rib. The G-shaped sealing strip 5 is provided with a hook 5-1 at the bottom and a notch 5-2 at the side.

[0072] The panel 3 is provided with an opening, which can ensure the lightweight of the structural plate. In the embodiment, the structural plate body is used as a building fence, and the opening can reduce the stress of the panel 3 when directly blown by strong wind and reduce the risk of being blown by wind.

[0073] The structural plate body 1 is fixed by the fixing member 7, which is provided with a hook at one end, a fixing hole 704 at the middle, and a fixing pin 705 inserted into the fixing hole 704. The fixing pin 705 can be used for fixing after the plate body is connected. The bottom of the fixing pin 705 is provided with a double-bent hook 706, and the other end is provided with a fixing clamp, which can be horizontally or vertically arranged for fixing different horizontal or vertical rods.

[0074] When connected and installed with the horizontal rod, the fixing clamp is fixed on the horizontal rod, the outer edge of the wedge-shaped structure 2-1 of the integrated structural plate body 1 is clamped with the hook 702, and the fixing pin 705 is inserted into the fixing hole 704 and locked.

[0075] When connected and installed with the vertical rod, the fixing clamp is fixed on the vertical rod, the outer edge of the wedge-shaped structure 2-1 of the integrated structural plate body 1 is clamped with the hook 702, and the fixing pin 705 is inserted into the fixing hole 704 and locked.

[0076] Embodiment 4

[0077] As Figures 2-17 , the embodiment discloses an integrated single plate forming structural plate, which is mainly applied to a walkway plate and comprises a structural plate body 1. The structural plate body 1 is provided with a tensile hole 401 at the side, which can convert a plane structure into a three-dimensional structure and improve the tensile strength. The structural plate body 1 comprises a panel 3 and a reinforcing rib, wherein the reinforcing rib comprises an inner reinforcing rib 2-1 and an outer side edge reinforcing rib 2-2. The inner reinforcing rib is a wedge-shaped structure 2-1-1, which can disperse the axial pressure and reduce the risk of local buckling. The gradually changed cross section can reduce the fluid resistance.

[0078] The side edge reinforcing rib 2-2 can be provided with a groove transversely, which can convert the outer facade of the side edge reinforcing rib from a plane to a three-dimensional structure, enhancing the structural strength. The G-shaped sealing strip 5 is installed at the end 2-2 of the side edge reinforcing rib. The G-shaped sealing strip 5 is provided with a hook 5-1 at the bottom and a notch 5-2 at the side.

[0079] The panel 3 is provided with a stamping protrusion or a stamping recess, and the panel 3 protrusion or recess can enhance the structural plate strength and is mainly used as a walkway plate;

[0080] When fixedly connected with the fence, the structural plate body 1 is fixed on the fence through the fixing part 7, forming a fence walkway plate integrated fixing structure, one end of the fixing part 7 is provided with a connecting groove 701, the walkway plate is inserted into the connecting groove 701, the other end is provided with a hook head 702, the hook head 702 is arranged on both sides of the fixing part and is distributed in staggered rows, and two groups of different structural plates are fixed at the upper end and the lower end; the end of the hook head 702 is composed of a hook head protrusion 702-2 in the middle part and hook head platforms 702-1 on both sides, the hook head protrusion 702-2 and the hook head platforms 702-1 are matched with the outer edge of the wedge-shaped structure 2-1-1 of the inner reinforcing rib 2-1, so as to ensure the tightness of the fixing, reduce the risk of shaking of the plate body, a supporting part 703 is arranged between the connecting groove 701 and the fixing part 7, a fixing hole 704 is arranged in the middle of the fixing part 7, a fixing pin 705 is inserted into the fixing hole 704, the fixing pin 705 is locked and connected after being inserted, a double-bent part 706 is arranged at the bottom of the fixing pin, the double-bent part 706 can further reduce the risk of the fixing pin being pulled out of the fixing hole during installation, so as to ensure stable, efficient and safe installation.

[0081] During installation, the connecting groove 701 is clamped into the vertical protection, and then fixed by bolts, the wedge-shaped structure 2-1 outer edge of the integrated structural plate body 1 is clamped with the hook head 702, the fixing pin 705 is inserted into the fixing hole 704 and locked, and then installed in sequence from top to bottom and from left to right, and vice versa for disassembly.

[0082] When fixedly connected with the disc buckle, the structural plate body 1 is fixed on the disc buckle through the fixing part 7, a fixing hole 704 is arranged in the middle of the fixing part 7, a fixing pin 705 is inserted into the fixing hole 704, the fixing pin 705 can be used for fixing after the plate body is connected, and a double-bent part 706 is arranged at the bottom of the fixing pin 705; one end of the fixing part 7 is provided with a hook head 702, and the other end is provided with a pin shaft cover plate 708, a pin shaft cover plate opening 709 is arranged in the lower segment of the pin shaft cover plate, and an arc-shaped opening 714 is arranged at the connection position of the pin shaft cover plate 708 and the fixing part 7 body;

[0083] During installation, the pin shaft cover plate 708 is inserted into the disc buckle, the wedge-shaped structure 2-1 outer edge of the integrated structural plate body 1 is clamped with the hook head 702, the fixing pin 705 is inserted into the fixing hole 704 and locked, and the pin shaft cover plate opening 709 is inserted into the pin body reinforcing fixing part and the disc buckle to improve the stability.

[0084] When fixedly connected with the horizontal or vertical rod, the structural plate body 1 is fixed on the horizontal or vertical rod through the fixing part 7, the middle part of the fixing part 7 is provided with a fixing hole 704, a fixing pin 705 is inserted into the fixing hole 704, the fixing pin 705 can play a role in fixing after the plate body is connected, and the bottom of the fixing pin 705 is provided with a double-bent bend 706; one end of the fixing part 7 is provided with a hook head 702, and the other end is bent with a fixing clamp, and the fixing clamp can be parallel, perpendicular or at other angles with the fixing part 7 so as to be connected and fixed with the horizontal or vertical rod.

[0085] When connected and installed with the horizontal or vertical rod, the fixing clamp is fixed on the horizontal or vertical rod, the outer edge of the wedge-shaped structure 2-1 of the integral structural plate body 1 is clamped with the hook head 702, the fixing pin 705 is inserted into the fixing hole 704 and locked.

[0086] Embodiment 5:

[0087] As Figures 1-11 , 18, the embodiment discloses an integral single plate forming structural plate, which comprises a structural plate body 1, the structural plate body 1 is provided with a stretching hole 401 on the side, the structural plate body 1 comprises a panel 3 and a reinforcing rib, the reinforcing rib comprises an inner reinforcing rib 2-1 and an outer side reinforcing rib 2-2, the inner reinforcing rib is a wedge-shaped structure 2-1-1, the side reinforcing rib 2-2 can be provided with a groove in the transverse direction, and a G-shaped sealing strip 5 is installed at the end of the side reinforcing rib 2-2; the bottom of the G-shaped sealing strip 5 is provided with a bent hook 5-1, the side of the G-shaped sealing strip is provided with a notch 5-2, and the stretching length of the stretching hole 401 is consistent with the groove depth.

[0088] Direct connection of plate beam or direct connection of plate column

[0089] The structural plate body 1 is directly fixed on a stand column or a horizontal beam through the stretching hole 401 by using a bolt, and plays a role in bearing or protection.

[0090] Direct connection of plate and plate:

[0091] The structural plate body 1 is connected with each other by using a bolt through the stretching hole 401, and a continuous plate structure is formed; the structural plate is used for plane bearing or vertical safety protection.

[0092] Plate installation hinge as a door leaf:

[0093] As shown in FIG. (18), the structural plate body 1 is provided with a stretching hole 401, and a hinge is installed by using a bolt, and the other side of the hinge is installed on an adjacent structural plate or stand column; the structural plate provided with the hinge forms a door leaf type movable structure which can be opened and closed, so as to meet the requirement of closing the passage for personnel or material access after the enclosure.

[0094] A production process of an integral single plate forming structural plate, characterized in that the process comprises the following steps,

[0095] S1: using the plated aluminum magnesium zinc coating of the steel coil with a fixed size, cutting according to the actual length needed;

[0096] S2: using the stamping process, starting from one side, first stamping the side edge stretch hole, then stamping into a C-shaped groove through the mold; during the stamping process, placing the reinforcing rib mold in the C-shaped groove to make the reinforcing rib realize the concave structure; then, stamping the first wedge-shaped reinforcing rib, the second reinforcing rib, the third reinforcing rib, and the fourth reinforcing rib in sequence, then stamping the stretch hole, stamping the side edge to the C-shaped, and performing stretch hole stamping on the side edge, the preliminary stamping is basically completed.

[0097] S3: using the hydraulic bending machine to bend the two sides of the C-shaped into a shape similar to the p-shaped and q-shaped side edges, and using the laser welding machine to weld the side edges in line to be shaped;

[0098] S4: sleeving the G-shaped sealing strip cut to completion on both ends of the welded plate surface, and using laser welding to be firm; completing the processing of the integrated single plate forming structure plate;

[0099] The G-shaped sealing strip needs to be pre-processed, and is stamped into a structure with a groove and a stretch hole on the side edge.

[0100] Repeating S1-S4 to repeatedly produce multiple integrated structure plates; preferably, the surface of the structure plate body can be treated according to various application scenarios.

[0101] The preferred embodiments of the application are described in detail above, of course, the application can also adopt different forms from the above-mentioned embodiments, the equivalent transformation or corresponding change made by the skilled person in the art without departing from the spirit of the application, all should belong to the protection scope of the application.

Claims

1. A one-piece single-board formed structural panel comprising a structural body (1), characterized in that: The structural body (1) is provided with a groove and a punched hole (4) on the side, and the punched hole is a stretching hole (401).

2. The veneer formed structural panel according to claim 1, wherein: The stretching length of the stretching hole (401) is consistent with the depth of the groove.

3. The one-piece, single-board formed structural panel of claim 2, wherein: The structural plate body (1) comprises a panel (3) provided with an opening, a punched protrusion or a punched recess (8), and a reinforcing rib comprising an external side edge reinforcing rib (2-2) and an internal reinforcing rib (2-1), wherein the internal reinforcing rib (2-1) is a wedge-shaped structure (2-1-1) with a bottom width being larger than an upper width.

4. The one-piece, single-board formed structural panel of claims 1-3, wherein: The structural plate body (1) is provided with a G-type sealing strip (5) with a hook (5-1) at the end, and the G-type sealing strip (5) is provided with a notch (5-2) on the side, wherein the notch (5-2) is provided with a stretching hole (401), and the hook (5-1) of the G-type sealing strip (5) is fixedly connected to the internal reinforcing rib of the structural plate body (1).

5. The one-piece, single-board formed structural panel of claim 1, wherein: The structural plate body (1) is connected in each direction of up, down, left and right through the stretching hole (401) by using bolts or pins.

6. The one-piece, shaped structural panel of claim 1, wherein: The structural plate body (1) is directly fixed to a column or a beam or a structural body (1) through the stretching hole (401) by using a bolt; preferably, the structural plate body (1) is fixed by a fixing member (7) fixed to a plate body, a horizontal rod, a vertical rod or a vertical rod fixing disc.

7. The one-piece, single-board formed structural panel of claim 6, wherein: The fixing member (7) is provided with an upper and lower hook at one end, a fixing hole (704) in the middle, and a connecting groove (701) or a pin cover plate (708) or a fixing clamp at the other end.

8. The one-piece, single-board formed structural panel of claim 7, wherein: The front end of the hook (702) is a V-shaped notch.

9. The one-piece, single-board formed structural panel of claims 6-8, wherein: A fixing pin (705) is inserted into the fixing hole (704), and the bottom of the fixing pin (705) is provided with a double bend (706).

10. A process for the production of a one-piece, single-board, formed structural panel, characterized by: It comprises the following steps, S1: using a steel coil coated with an aluminum-magnesium-zinc coating with a fixed width, cutting and cutting as needed; S2: using a stamping process, stamping the two sides; S3: after stamping the side edges, punching the stretching holes; S4: punching the side edges into C-shaped grooves through a mold, then placing a reinforcing rib mold in the groove, and stamping the internal concave side edge reinforcing rib; S5: sequentially stamping a plurality of wedge-shaped reinforcing ribs, and stamping the panel stretching holes or recesses or protrusions; S6: using a bending machine, bending the two side edges into a p-type and a q-type, and then using a welding machine to weld and shape the side edges; S7: after welding the plate surface at both ends, the G-type sealing strip is sleeved and welded.