Anodized composite aluminum plate and on-site joint adjustment tooling equipment thereof
By designing an L-shaped structure and joint adjustment equipment, precise splicing and efficient construction of anodized composite aluminum panels were achieved, solving the problems of low splicing accuracy and panel damage in existing technologies, and improving construction quality and efficiency.
Patent Information
- Application Number
- CN202610799134.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2026-06-04
- Publication Date
- 2026-07-24
AI Technical Summary
The lack of specialized tools in the construction of existing anodized composite aluminum panels results in low joint accuracy, easy scratching of the decorative surface, inability to adapt to complex working conditions, and low adjustment efficiency.
An anodized composite aluminum plate and its on-site joint adjustment fixture were designed. The plate uses an L-shaped aluminum plate skirt and joint adjustment components, combined with a gear and rack transmission and a positioning column structure, to achieve synchronous fine adjustment of the two plates and independent fine adjustment of the single plate. It is equipped with adjustment components and support plates for precise calibration.
It improves construction adaptability and joint adjustment accuracy, avoids scratches on the board surface, ensures accurate jointing and overall quality, and improves construction efficiency.
Smart Images

Figure CN122446848A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of anodized composite aluminum plate technology, specifically to anodized composite aluminum plate and its on-site joint adjustment tooling equipment. Background Technology
[0002] Anodized composite aluminum panels are widely used in high-end building curtain walls and interior decoration projects due to the advantages of wear-resistant, corrosion-resistant, and uniform appearance of the anodized film. When installing anodized composite aluminum panels, the seams need to be treated.
[0003] Currently, the alignment of joints in anodized composite aluminum panels at construction sites is mostly done manually using straightedges and manual prying, lacking specialized and suitable tooling. This traditional construction method has many drawbacks. First, manual adjustment has low precision, making it difficult to achieve millimeter-level joint width control, which easily leads to quality problems such as inconsistent joint widths, twisted joints, and misaligned panels, seriously affecting the overall decorative appearance. Second, manual prying and adjustment can directly contact and squeeze the anodized decorative surface of the aluminum panel, easily causing scratches, indentations, and cracks in the oxide film, resulting in the scrapping and waste of the panels. Third, the traditional joint adjustment method has limited functionality and cannot adapt to the complex working conditions of new alignment of double panels, existing reference panels, and fine-tuning of single panels on construction sites, resulting in poor versatility and low adjustment efficiency.
[0004] Therefore, in view of this, we have studied and improved the existing structure and its shortcomings, and proposed an anodized composite aluminum plate and its on-site joint adjustment tooling equipment. Summary of the Invention
[0005] To address the shortcomings of existing technologies, this invention provides an anodized composite aluminum plate and its on-site joint adjustment fixture, thus solving the problems mentioned in the background section.
[0006] To achieve the above objectives, the present invention is implemented through the following technical solution: an anodized composite aluminum plate, comprising an anodized aluminum panel and an aluminum alloy back plate, wherein a polymer adhesive layer I is disposed on the outer surface of the anodized aluminum panel, and a core layer is installed on the outer surface of the polymer adhesive layer I, a polymer adhesive layer II is disposed on the outer surface of the core layer, and the aluminum alloy back plate is disposed on the outer surface of the polymer adhesive layer II.
[0007] Furthermore, an anodized aluminum panel skirt is provided on one end side of the anodized aluminum panel, and a polymer adhesive layer skirt is installed on one end side of the polymer adhesive layer.
[0008] Furthermore, a core layer skirt is provided on one side of the outer surface of the core layer, and the anodized aluminum panel, polymer adhesive layer one, core layer, polymer adhesive layer two, aluminum alloy back plate, anodized aluminum panel skirt, polymer adhesive layer skirt and core layer skirt form an "L" shaped structure.
[0009] Furthermore, an on-site seam-sealing adjustment fixture is applied to an anodized composite aluminum plate as described above. The on-site seam-sealing adjustment fixture includes a base plate and a support plate. A seam-sealing component for auxiliary driving is installed in the middle of the base plate. The seam-sealing component includes a gear, a rack, a connecting block, and a positioning column. A rack is meshed on the outer surface of the gear. A connecting block is fixedly installed on the outer surface of one set of racks. A connecting plate one is engaged with the outside of the connecting block. A connecting plate two is installed at the end of another set of racks. An adjustment component for longitudinal position adjustment is provided on the outer surfaces of the connecting plate one and the connecting plate two. The adjustment component includes a connecting seat, an outer threaded sleeve, a rotating handle, an inner threaded rod, and a top plate. An outer threaded sleeve is rotatably installed inside the connecting seat. An inner threaded rod is installed on the internal thread of the outer threaded sleeve. A top plate is provided on the top of the inner threaded rod. A rotating handle is fixedly installed on the top outer surface of the outer threaded sleeve. The support plate is located on the top of the support plate.
[0010] Furthermore, the seam-sealing assembly also includes a positioning post, which is internally engaged with the connecting plate and the connecting block.
[0011] Furthermore, the bottom of the gear is provided with a connecting handle, and the connecting handle is rotatably connected to the base plate.
[0012] Furthermore, both sides of the connecting handle are provided with mounting components for fixing the base plate, and there are two sets of mounting components.
[0013] Furthermore, the mounting assembly includes a first fixing plate, a second fixing plate, a threaded rod, and an adjusting plate. The second fixing plate is provided on one side of the first fixing plate, the threaded rod is installed on the internal thread of the second fixing plate, and the adjusting plate is provided at the end of the threaded rod.
[0014] Furthermore, an auxiliary plate is integrally installed on one side of the outer surface of the second connecting plate, and scale lines are provided on both sides of the auxiliary plate. A storage groove is provided inside the first connecting plate.
[0015] Furthermore, the base plate has slide rails on both sides, and side plates are slidably arranged inside the slide rails. There are two sets of side plates, and the two sets of side plates are fixedly connected to connecting plate one and connecting plate two, respectively.
[0016] This invention provides an anodized composite aluminum plate and its on-site joint adjustment fixture, which has the following beneficial effects: 1. This anodized composite aluminum plate and its on-site joint adjustment fixture, through the setting of a detachable joint adjustment component, enables the fixture to be compatible with both synchronous fine-tuning of double plates and independent fine-tuning of a single plate, significantly improving construction adaptability and joint adjustment accuracy. Through the snap-fit assembly structure of the positioning column and the connecting block, when assembling the positioning column, the two sets of racks can move synchronously and symmetrically under the gear meshing transmission, driving the two aluminum plates to be installed to be aligned and adjusted synchronously. It is suitable for the overall precise alignment scenario where the double plates are not fixed. Pulling out the positioning column can release the single-sided transmission linkage, realizing that the plate on one side is fixed as a reference, and the plate on the other side is adjusted independently. This effectively solves the problem that traditional fixtures cannot adapt to the fine-tuning of installed plates and are prone to causing overall joint offset. At the same time, the fixture relies on the L-shaped skirt structure of the aluminum plate for clamping operation throughout the process, with zero contact with the front of the anodized decoration, completely avoiding the problems of plate surface scratches and oxide layer damage caused by traditional construction methods, ensuring the integrity of the plate appearance and reducing construction losses.
[0017] 2. This anodized composite aluminum panel and its on-site joint adjustment fixture, through the addition of a two-way calibration structure of adjustment components and support plates, combined with an auxiliary storage structure, further enhances the fixture's joint adjustment accuracy, panel flatness calibration capability, and portability. Utilizing a two-way clamping and pushing structure with the inner side of the top plate pushing and the outer side of the support plate resisting, it can precisely correct the vertical height difference and panel flatness after aluminum panel splicing, completely eliminating splicing misalignment defects. Combined with an auxiliary plate and scale lines, it can achieve millimeter-level visual precision joint control, significantly improving the construction quality of curtain wall aluminum panel splicing. Simultaneously, a storage groove is opened inside the connecting plate, allowing the auxiliary plate and drive accessories to be driven into the groove via the transmission structure of the joint adjustment components, effectively reducing the fixture's storage volume and preventing accessories from scattering or being lost. Attached Figure Description
[0018] Figure 1 This is a schematic diagram of the overall structure of the anodized aluminum panel of the present invention, which relates to an anodized composite aluminum plate and its on-site joint adjustment tooling. Figure 2 This is a schematic diagram of the unfolded structure of the anodized aluminum panel of the anodized composite aluminum plate and the on-site joint adjustment tooling equipment of the present invention; Figure 3 This is a schematic diagram of the adjustment fixture structure of an anodized composite aluminum plate and its on-site joint adjustment equipment according to the present invention. Figure 4 This is a schematic diagram of the adjustment fixture of an anodized composite aluminum plate and its on-site joint adjustment device according to the present invention from another perspective. Figure 5 This is a schematic diagram of the base plate connection structure of an anodized composite aluminum plate and its on-site joint adjustment tooling equipment according to the present invention; Figure 6 This is a schematic diagram of the jointing component structure of an anodized composite aluminum plate and its on-site jointing adjustment tooling equipment according to the present invention. Figure 7 This is a schematic diagram of the adjustment component structure of an anodized composite aluminum plate and its on-site joint adjustment tooling equipment according to the present invention.
[0019] In the diagram: 1. Anodized aluminum panel; 2. Polymer adhesive layer one; 3. Core layer; 4. Polymer adhesive layer two; 5. Aluminum alloy back plate; 6. Anodized aluminum panel skirt; 7. Polymer adhesive layer skirt; 8. Core layer skirt; 9. Base plate; 10. Connecting plate one; 11. Support plate; 12. Connecting handle; 13. Mounting assembly; 1301. Fixing plate one; 1302. Fixing plate two; 1303. Threaded rod; 1 304. Adjusting plate; 14. Connecting plate II; 15. Auxiliary plate; 16. Scale line; 17. Storage slot; 18. Adjusting component; 1801. Connecting seat; 1802. External threaded sleeve; 1803. Rotary handle; 1804. Internal threaded rod; 1805. Top plate; 19. Slide rail; 20. Side plate; 21. Seam fitting component; 2101. Gear; 2102. Rack; 2103. Connecting block; 2104. Positioning post. Detailed Implementation
[0020] The embodiments of the present invention will be described in further detail below with reference to the accompanying drawings and examples. The following examples are for illustrative purposes only and should not be construed as limiting the scope of the invention.
[0021] like Figures 1-7As shown, the present invention provides a technical solution: an anodized composite aluminum plate and its on-site joint adjustment fixture, comprising an anodized aluminum panel 1, a polymer adhesive layer 1 2, a core layer 3, a polymer adhesive layer 2 4, an aluminum alloy back plate 5, an anodized aluminum panel skirt 6, a polymer adhesive layer skirt 7, and a core layer skirt 8. The outer surface of the anodized aluminum panel 1 is provided with a polymer adhesive layer 1 2, and the outer surface of the polymer adhesive layer 1 2 is fitted with a core layer 3. A core layer skirt 8 is provided on one side of the outer surface of the core layer 3. The anodized aluminum panel 1, polymer adhesive layer 1 2, core layer 3, polymer adhesive layer 2 4, aluminum alloy back plate 5, anodized aluminum panel skirt 6, polymer adhesive layer skirt 7, and core layer skirt 8 form an "L" shaped structure. The anodized composite aluminum plate consists of the anodized aluminum panel 1, polymer adhesive layer 1 2, core layer 3, polymer adhesive layer 2 4, aluminum alloy back plate 5, anodized aluminum panel skirt 6, polymer adhesive layer skirt 7, and core layer skirt 8. The composite molding of plate 5 involves grooving and bending the splicing ends of the plates to form an integrated L-shaped folded edge structure consisting of anodized aluminum panel skirt 6, polymer adhesive layer skirt 7, and core layer skirt 8. This structure preserves the integrity of the decorative surface of the anodized aluminum panel 1 and has no aluminum alloy back plate 5. This structure not only meets the requirements for 90° bending of the plate and avoids cracking of the hard and brittle anodized layer, but also provides a dedicated stress structure for tooling clamping and seam correction. The non-splicing side is a straight structure, eliminating the need for seam adjustment. Only the L-shaped skirt side serves as the working reference surface for aligning the two aluminum plates and calibrating the seam width. Anodized aluminum panel skirt 6 is provided on one end of anodized aluminum panel 1, polymer adhesive layer skirt 7 is installed on one end of polymer adhesive layer 1, polymer adhesive layer 2 is provided on the outer surface of the core layer 3, and aluminum alloy back plate 5 is provided on the outer surface of polymer adhesive layer 2 4.
[0022] A field seam-sealing adjustment fixture is applied to an anodized composite aluminum plate. The fixture includes a base plate 9, a connecting plate 10, a support plate 11, a connecting handle 12, an installation component 13, a fixing plate 1301, a fixing plate 2 1302, a threaded rod 1303, an adjusting plate 1304, a connecting plate 2 14, an auxiliary plate 15, scale lines 16, a storage groove 17, an adjusting component 18, a connecting seat 1801, an outer threaded sleeve 1802, a rotating handle 1803, an inner threaded rod 1804, a top plate 1805, a slide rail 19, a side plate 20, a seam-sealing component 21, a gear 2101, a rack 2102, a connecting block 2103, and a positioning post 2104. The center of the base plate 9 is equipped with an auxiliary drive for the seam-sealing component 21, which includes a gear 2101, a rack 2102, and a connecting block. The gear 2101 has a gear 2103 and a positioning post 2104. A rack 2102 is meshed on the outer surface of the gear 2101. A connecting handle 12 is provided at the bottom of the gear 2101 and is rotatably connected to the base plate 9. A connecting block 2103 is fixedly installed on the outer surface of a set of racks 2102. A connecting plate 10 is engaged with the outside of the connecting block 2103. A connecting plate 24 is installed at the end of another set of racks 2102. The seam-sealing assembly 21 also includes a positioning post 2104. The positioning post 2104 is engaged with the inside of the connecting plate 10 and the connecting block 2103. The whole assembly uses the base plate 9 as the supporting body. The seam-sealing assembly 21, which is composed of gears 2101 and racks 2102, realizes the synchronous seam adjustment of the double plates. The entire process is zero-contact with the front of the aluminum plate anodized decoration. Only the L-shaped skirt edge of the plate is clamped to complete the precise seam-sealing operation. During tooling operation, the sliding rails 19 on both sides of the base plate 9, in conjunction with two sets of side plates 20, firstly achieve smooth sliding and limiting of connecting plate 10 and connecting plate 24, ensuring that the overall adjustment process is free from deviation and jamming. At the same time, the connecting handle 12 enables the gear 2101 to rotate and assemble with the base plate 9. Manually driving the gear 2101 to rotate can mesh and drive two sets of symmetrically arranged racks 2102 to slide in opposite or opposite directions in a straight line, thereby synchronously driving the connecting plate 10, connecting plate 24 and the outer clamping structure to move, realizing the fine adjustment of the spacing between the two anodized composite aluminum plates to be spliced, and completing the basic seam alignment. The positioning column 2104 set in the tooling penetrates and engages the connecting block 2103 and connecting plate 10, which can realize the quick assembly and disassembly of the seam assembly 21 and the connecting plate 10 structure, and can be separated and connected, thus being compatible with two adjustment modes: synchronous fine adjustment of double plates and independent fine adjustment of single plates, and single plate fixed reference. During on-site construction, the installation of positioning post 2104 can ensure that connecting plate 10 and single-sided rack 2102 are stably linked. In conjunction with the connection structure of connecting plate 24 on the other side and the corresponding rack 2102, the two sets of racks 2102 are driven to move symmetrically through synchronous meshing of gear 2101, so that the two aluminum plates on the left and right can move synchronously towards or away from each other, and complete the synchronous jointing and equidistant joint adjustment of the double plates. This is suitable for construction scenarios where neither plate is fixed and the whole is uniformly aligned.When fine-tuning of a single plate is required, the positioning post 2104 can be selectively pulled out to disconnect the transmission connection between the connecting plate 10 and the rack 2102 on one side, fixing the corresponding aluminum plate as the reference plate for the overall joint. Meanwhile, the connecting plate 24 on the other side remains in transmission connection with the joint-tracking assembly 21, driving the plate to be adjusted to move independently through the gear 2101 and rack 2102. This achieves precise joint-tracking operation with only a single plate being fine-tuned and the reference plate having zero offset, effectively avoiding overall misalignment caused by the synchronous movement of two plates. It is suitable for on-site construction conditions where plates are already fixed and single-plate fine-tuning is required. The outer surfaces of the connecting plate 10 and the connecting plate 24 are equipped with adjustment components for longitudinal position adjustment. 18, and the adjustment component 18 includes a connecting seat 1801, an outer threaded sleeve 1802, a rotating handle 1803, an inner threaded rod 1804, and a top plate 1805. The outer threaded sleeve 1802 is rotatably installed inside the connecting seat 1801, and the inner threaded rod 1804 is installed inside the outer threaded sleeve 1802. The top plate 1805 is provided on the top of the inner threaded rod 1804, and the rotating handle 1803 is fixedly installed on the top outer surface of the outer threaded sleeve 1802. The support plate 11 is set on the top of the support plate 11. For the vertical height difference and flatness deviation of the plate, the tooling achieves bidirectional fine calibration in cooperation with the support plate 11 through the adjustment component 18 on the outside of the connecting plate 10 and the connecting plate 2 14. The adjustment component 18 consists of a connecting seat 1801, an outer threaded sleeve 1802, a rotating handle 1803, an inner threaded rod 1804, and a top plate 1805. Manually rotating the rotating handle 1803 can drive the outer threaded sleeve 1802 to rotate inside the connecting seat 1801. Relying on the thread transmission principle, the inner threaded rod 1804 is driven to extend and retract, thereby driving the top plate 1805 to push the panel from the inside of the L-shaped skirt. At the same time, it cooperates with the support plate 11 at the corresponding position of the tooling to form an outer support and limiting structure. By clamping and pushing the panel from both inside and outside with the top plate 1805 and the support plate 11, the vertical height difference and the flatness of the panel surface of the two aluminum panels are accurately corrected, and the problems of misalignment and unevenness of the panel surface of the curtain wall aluminum panels are completely solved.
[0023] like Figure 4As shown, mounting components 13 for fixing the base plate 9 are provided on both sides of the connecting handle 12. Two sets of mounting components 13 are provided, each including a fixing plate 1301, a fixing plate 1302, a threaded rod 1303, and an adjusting plate 1304. The fixing plate 1302 is located on one side of the fixing plate 1301. The threaded rod 1303 is threaded into the interior of the fixing plate 1302, and the adjusting plate 1304 is located at the end of the threaded rod 1303. Two sets of mounting components 13 are symmetrically arranged on both sides of the base plate 9. Component 13 consists of a first fixing plate 1301, a second fixing plate 1302, a threaded rod 1303, and an adjusting plate 1304. The first fixing plate 1301 and the second fixing plate 1302 form a fixed base. Rotating the threaded rod 1303 pushes the adjusting plate 1304 to extend and tighten, achieving quick locking and fixing of the entire fixture on the construction keel or plate base, preventing slippage during operation and ensuring joint adjustment accuracy. An auxiliary plate 15 is integrally installed on one side of the outer surface of the second connecting plate 14, and scale lines 16 are provided on both sides of the auxiliary plate 15 for connection. The interior of plate 10 has a storage groove 17, and both sides of the base plate 9 have slide rails 19. Side plates 20 are slidably mounted inside the slide rails 19, and there are two sets of side plates 20. The two sets of side plates 20 are fixedly connected to connecting plate 10 and connecting plate 24 respectively. The auxiliary plate 15 integrated into connecting plate 24, along with scale lines 16, allows for direct observation of the seam width adjustment, achieving millimeter-level precise seam control and meeting the high-standard splicing requirements of anodized composite aluminum plates. The storage groove 17 inside connecting plate 10 eliminates the need for tooling. When used as a whole, the transmission adjustment design of the seam-sealing component 21 can be used to drive the auxiliary plate 15 to extend and retract into the storage slot 17, so as to realize the overall storage of the seam-sealing component 21 driving accessories and the auxiliary plate 15, effectively reducing the space occupied by the tooling, preventing accessories from being scattered and lost, and greatly improving the convenience of tooling storage and portability. In addition, when the connecting plate 10 and the connecting plate 24 move, the side plate 20 moves about the slide 19, so as to form a surrounding protection for the gear 2101, rack 2102 and connecting block 2103 from the outside.
[0024] In summary, as Figures 1-7As shown, the anodized composite aluminum plate and its on-site seam adjustment tooling equipment are used in the following ways: The anodized composite aluminum plate is formed by anodized aluminum panel 1, polymer adhesive layer 1 2, core layer 3, polymer adhesive layer 2 4, and aluminum alloy back plate 5. The splicing side of the plate is formed by a grooving and bending process to form an integrated L-shaped folded edge structure composed of anodized aluminum panel skirt 6, polymer adhesive layer skirt 7, and core layer skirt 8. This structure retains the integrity of the decorative surface of the anodized aluminum panel 1. The structure without aluminum alloy back plate 5 not only meets the 90° bending forming requirements of the plate and avoids cracking of the hard and brittle anodized layer, but also provides a dedicated stress structure for the tooling to clamp and adjust the seam. The non-splicing side is a straight structure and does not require seam adjustment. Only the L-shaped skirt side serves as the working reference surface for aligning the two aluminum plates and calibrating the seam width. The matching on-site seam adjustment tooling equipment is based on the above-mentioned L-shaped skirt structure adaptation design. The whole is based on the base plate 9 as the load-bearing base. The seam adjustment component 21, which is composed of gear 2101 and rack 2102, realizes the synchronous seam adjustment of the two plates. The entire process is zero contact with the front of the aluminum plate anodized decoration. It only clamps the L-shaped skirt side of the plate to complete the precise seam adjustment operation. During tooling operation, the sliding rails 19 on both sides of the base plate 9, in conjunction with two sets of side plates 20, firstly achieve smooth sliding and limiting of connecting plate 10 and connecting plate 24, ensuring that the overall adjustment process is free from deviation and jamming. At the same time, the connecting handle 12 enables the gear 2101 to rotate and assemble with the base plate 9. Manually driving the gear 2101 to rotate can mesh and drive two sets of symmetrically arranged racks 2102 to slide in opposite or opposite directions in a straight line, thereby synchronously driving the connecting plate 10, connecting plate 24 and the outer clamping structure to move, realizing the fine adjustment of the spacing between the two anodized composite aluminum plates to be spliced, and completing the basic seam alignment. The positioning column 2104 set in the tooling penetrates and engages the connecting block 2103 and connecting plate 10, which can realize the quick assembly and disassembly of the seam assembly 21 and the connecting plate 10 structure, and can be separated and connected, thus being compatible with two adjustment modes: synchronous fine adjustment of double plates and independent fine adjustment of single plates, and single plate fixed reference. During on-site construction, the installation of positioning post 2104 can ensure that connecting plate 10 and single-sided rack 2102 are stably linked. In conjunction with the connection structure of connecting plate 24 on the other side and the corresponding rack 2102, the two sets of racks 2102 are driven to move symmetrically through synchronous meshing of gear 2101, so that the two aluminum plates on the left and right can move synchronously towards or away from each other, and complete the synchronous jointing and equidistant joint adjustment of the double plates. This is suitable for construction scenarios where neither plate is fixed and the whole is uniformly aligned. When fine-tuning of a single plate is required, the positioning post 2104 can be selectively pulled out to disconnect the transmission connection between the connecting plate 10 and the rack 2102 on one side, so that the aluminum plate on the corresponding side is fixed and serves as the reference plate for the overall splice. Meanwhile, the connecting plate 24 on the other side always maintains a transmission connection with the joint assembly 21. Through the gear 2101 and rack 2102, the plate to be adjusted is driven to move independently, so as to achieve precise jointing operation with only fine-tuning of a single plate and zero offset of the reference plate. This effectively avoids the overall misalignment caused by the synchronous movement of two plates and is suitable for construction conditions where the plates are already fixed on site and fine-tuning of a single plate is required. Two sets of mounting components 13 are symmetrically arranged on both sides of the base plate 9. The mounting components 13 consist of a first fixing plate 1301, a second fixing plate 1302, a threaded rod 1303, and an adjusting plate 1304. The first fixing plate 1301 and the second fixing plate 1302 form a fixed base. Rotating the threaded rod 1303 can push the adjusting plate 1304 to extend and tighten, so as to realize the quick locking and fixing of the entire tooling on the construction keel or plate base, prevent the tooling from slipping during operation, and ensure the accuracy of joint adjustment. For the vertical height difference of the plate and the flatness deviation of the plate surface, the tooling can achieve bidirectional fine calibration in conjunction with the adjusting components 18 on the outside of the connecting plate 10 and the second connecting plate 14 and the support plate 11.The adjustment component 18 consists of a connecting seat 1801, an outer threaded sleeve 1802, a rotating handle 1803, an inner threaded rod 1804, and a top plate 1805. Manually rotating the rotating handle 1803 causes the outer threaded sleeve 1802 to rotate inside the connecting seat 1801, driving the inner threaded rod 1804 to extend and retract based on the thread transmission principle, thereby causing the top plate 1805 to push the panel from the inside of the L-shaped skirt. At the same time, it works with the support plate 11 at the corresponding position of the tooling to form an outer support and limiting structure. Through the double-sided clamping of the top plate 1805 and the support plate 11, the vertical height difference and flatness of the two aluminum plates are accurately corrected, completely solving the problem of misalignment during the splicing of curtain wall aluminum panels. To address the issue of uneven panel surfaces, the auxiliary plate 15 integrated into the connecting plate 2 14, along with the scale lines 16, allows for direct observation of the seam width adjustment dimensions, achieving millimeter-level precise seam control and meeting the high-standard splicing construction requirements of anodized composite aluminum panels. The connecting plate 1 10 has an internal storage groove 17. When the tooling is not used as a whole, the transmission adjustment design of the seam-tracking component 21 can drive the auxiliary plate 15 to extend and retract into the storage groove 17, achieving complete storage of the seam-tracking component 21's drive accessories and the auxiliary plate 15. This effectively reduces the space occupied by the tooling, prevents accessories from scattering and being lost, and significantly improves the convenience and portability of the tooling.
[0025] The embodiments of the present invention are given for illustrative and descriptive purposes only, and are not intended to be exhaustive or to limit the invention to the forms disclosed. Many modifications and variations will be apparent to those skilled in the art. The embodiments were chosen and described in order to better illustrate the principles and practical application of the invention, and to enable those skilled in the art to understand the invention and to design various embodiments with various modifications suitable for a particular purpose.
Claims
1. An anodized composite aluminum plate, comprising an anodized aluminum panel (1) and an aluminum alloy back plate (5), characterized in that, The outer surface of the anodized aluminum panel (1) is provided with a polymer adhesive layer one (2), and a core layer (3) is installed on the outer surface of the polymer adhesive layer one (2). The outer surface of the core layer (3) is provided with a polymer adhesive layer two (4), and the aluminum alloy back plate (5) is disposed on the outer surface of the polymer adhesive layer two (4).
2. The anodized composite aluminum plate according to claim 1, characterized in that, An anodized aluminum panel (1) has an anodized aluminum panel skirt (6) on one side of its end, and a polymer adhesive layer skirt (7) is installed on one side of the end of the polymer adhesive layer (2).
3. The anodized composite aluminum plate according to claim 1, characterized in that, The outer surface of the core layer (3) is provided with a core layer skirt (8). The anodized aluminum panel (1), polymer adhesive layer one (2), core layer (3), polymer adhesive layer two (4), aluminum alloy back plate (5), anodized aluminum panel skirt (6), polymer adhesive layer skirt (7) and core layer skirt (8) form an "L" shaped structure.
4. A field seam-sealing adjustment fixture, characterized in that, The on-site joint adjustment fixture is applied to an anodized composite aluminum plate as described in any one of claims 1-3. The on-site joint adjustment fixture includes a base plate (9) and a support plate (11). The base plate (9) is equipped with a joint adjustment assembly (21) for auxiliary driving. The joint adjustment assembly (21) includes a gear (2101), a rack (2102), a connecting block (2103), and a positioning column (2104). The outer surface of the gear (2101) is meshed with the rack (2102). A set of racks (2102) is fixedly installed on the outer surface of the outer surface of the racks (2102). A connecting plate (10) is engaged with the outer surface of the connecting block (2103). The other set of racks (2102) is equipped with a connecting plate (10). There is a second connecting plate (14). The outer surfaces of the first connecting plate (10) and the second connecting plate (14) are provided with an adjustment component (18) for longitudinal position adjustment. The adjustment component (18) includes a connecting seat (1801), an outer threaded sleeve (1802), a rotating handle (1803), an inner threaded rod (1804), and a top plate (1805). The outer threaded sleeve (1802) is rotatably installed inside the connecting seat (1801), and the inner threaded rod (1804) is installed inside the outer threaded sleeve (1802). The top of the inner threaded rod (1804) is provided with a top plate (1805). The rotating handle (1803) is fixedly installed on the top outer surface of the outer threaded sleeve (1802). The support plate (11) is located on the top of the support plate (11).
5. The on-site seam-sealing and adjustment fixture equipment according to claim 4, characterized in that, The stitching assembly (21) also includes a positioning post (2104), which is internally engaged with the connecting plate (10) and the connecting block (2103).
6. The on-site seam-sealing adjustment fixture equipment according to claim 4, characterized in that, The bottom of the gear (2101) is provided with a connecting handle (12), and the connecting handle (12) is rotatably connected to the base plate (9).
7. The on-site seam-sealing adjustment fixture equipment according to claim 6, characterized in that, The connecting handle (12) is provided with two sets of mounting components (13) for fixing the base plate (9).
8. The on-site seam-sealing adjustment fixture equipment according to claim 7, characterized in that, The mounting assembly (13) includes a first fixing plate (1301), a second fixing plate (1302), a threaded rod (1303), and an adjusting plate (1304). The second fixing plate (1302) is provided on one side of the first fixing plate (1301). The threaded rod (1303) is installed in the internal thread of the second fixing plate (1302), and the adjusting plate (1304) is provided at the end of the threaded rod (1303).
9. The on-site seam-sealing and adjustment fixture equipment according to claim 4, characterized in that, An auxiliary plate (15) is integrally installed on one side of the outer surface of the second connecting plate (14), and scale lines (16) are provided on both sides of the auxiliary plate (15). A storage groove (17) is provided inside the first connecting plate (10).
10. The on-site seam-sealing adjustment fixture equipment according to claim 4, characterized in that, The base plate (9) has slides (19) on both sides inside, and side plates (20) are slidably arranged inside the slides (19). There are two sets of side plates (20), and the two sets of side plates (20) are fixedly connected to the first connecting plate (10) and the second connecting plate (14) respectively.