An aluminum plate production and transfer equipment for exterior finishing curtain walls

By designing an aluminum plate production and transportation equipment including a mobile base plate, a support plate, a rotating seat, a limiting assembly, a sliding mechanism and a transfer mechanism, the problems of low efficiency of aluminum plate transport, relying on manual operation and low safety in the prior art are solved, and automatic, safe and efficient transportation of aluminum plates are achieved.

CN119929496BActive Publication Date: 2025-06-20JIANGSU HONGYITIANDI ENERGY SAVING TECH CO LTD
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Patent Information

Application Number
CN202510432449.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-04-08
Publication Date
2025-06-20
Estimated Expiration
2045-04-08

AI Technical Summary

Technical Problem

The existing curtain wall aluminum plate transport equipment is inefficient and relies on manual operation. The aluminum plate is easily damaged during transportation and has low safety.

Method used

An aluminum plate production and transportation equipment including a mobile base plate, a support plate, a rotating seat, a limit assembly, a sliding mechanism and a transfer mechanism are designed. The aluminum plate is pushed upward by the telescopic hydraulic cylinder, and the transport mechanism uses the suction cup to stably adsorb the aluminum plate and slides it on the conveying line.

Benefits of technology

The automatic transport of aluminum plates is realized, the efficiency of transportation and product processing quality is improved, the aluminum plates are subjected to uniform stress during transportation, avoid damage, and improve safety.

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Abstract

The present invention discloses a production transfer device for exterior finish curtain wall aluminum plates, which relates to the technical field of aluminum plate processing. It includes a moving bottom plate, a support plate, a rotating seat, a limiting component, a sliding mechanism, a transfer mechanism, a support rod, and a connecting block. The limiting component includes a fixing plate and a sliding plate. By using the rotating seat, the sliding plate assembly, the support rod, and the connecting block, a rectangular placing table with an adjustable size can be formed, so as to place aluminum plates of different sizes. The transfer mechanism can adsorb the aluminum plates and transfer them to the conveyor line. There are four suction cups I with adjustable positions and one suction cup II in the transfer mechanism, so that the transfer mechanism can stably transfer aluminum plates of different sizes, and the aluminum plates are evenly stressed during the transfer process and will not be damaged. Thus, the automatic transfer work of the aluminum plates is realized safely and stably, effectively improving the transfer efficiency of the aluminum plates and the product processing quality of subsequent processing.
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Description

Technical Field

[0001] The present invention relates to the technical field of aluminum plate processing, and specifically to a production transfer device for exterior decorative curtain wall aluminum plates. Background Art

[0002] In the modern architectural field, exterior decorative curtain wall aluminum plates are widely used due to their beauty, durability, and ease of maintenance. After the production of curtain wall aluminum plates, it is necessary to transfer the aluminum plates to other processing equipment for operations such as bending, punching, chromating, spraying, etc. Therefore, during the production process, the transfer of curtain wall aluminum plates becomes an important link, and its efficiency and safety directly affect the operating efficiency of the entire production line and the product quality.

[0003] Currently, the transfer of curtain wall aluminum plates is generally carried out using a transfer vehicle. However, the existing transfer vehicle can only transfer the stacked aluminum plates to a certain position and cannot transfer the aluminum plates from the transfer vehicle to the conveyor line. This process is mostly carried out manually using a suction cup tool, which has low efficiency and seriously slows down the production efficiency of aluminum plates. Moreover, during the transfer process, the aluminum plates are prone to being damaged due to uneven force, and the safety is relatively low.

[0004] Therefore, it is necessary to provide a production transfer device for exterior decorative curtain wall aluminum plates to solve the problems raised in the above background art. Summary of the Invention

[0005] To achieve the above object, the present invention provides the following technical solution: A production transfer device for exterior decorative curtain wall aluminum plates, including a moving bottom plate, a support plate, a rotating seat, a limiting component, a sliding mechanism, and a transfer mechanism. Among them, a telescopic hydraulic cylinder is fixedly arranged on the moving bottom plate, the output end of the telescopic hydraulic cylinder is fixedly provided with a support plate, a rotating seat is rotatably arranged on the support plate, the rotating seat is rectangular, and a plurality of slide plate components are evenly arranged in an array on the outer side of the rotating seat. The output ends of a plurality of the slide plate components located on the same side of the rotating seat are fixedly provided with support rods, the upper surface of the support rod coincides with the upper surface of the rotating seat, connecting rods are slidably arranged on both sides of the support rod, and the intersection of the two connecting rods is jointly fixedly arranged on a connecting block. A limiting component is slidably arranged on the connecting block, the output end of the limiting component is provided with a sliding mechanism, and a transfer mechanism is slidably arranged on the sliding mechanism;

[0006] The limiting component includes a fixed plate and a sliding plate. Among them, a limiting seat is fixedly arranged at the bottom of the fixed plate, and a universal guide wheel is rotatably arranged on the limiting seat. The universal guide wheel slides along the moving bottom plate. The sliding plate is slidably connected to the fixed plate in an L shape. The four fixed plates are respectively arranged parallel to the four side surfaces of the support plate, and two of the fixed plates located on adjacent sides of the support plate are perpendicularly arranged. A first hydraulic cavity is formed in the fixed plate, and a hydraulic rod is fixedly arranged on the sliding plate. The hydraulic rod slidably seals along the first hydraulic cavity.

[0007] Preferably, two T-shaped clamping blocks are fixedly arranged on the connecting block;

[0008] T-shaped chutes are formed in both the fixed plate and the sliding plate, and the two T-shaped clamping blocks respectively slide along the two T-shaped chutes.

[0009] Preferably, an L-shaped connecting plate is fixedly arranged at the output end of the sliding plate;

[0010] The sliding mechanism includes a first slide rail and a second slide rail. Among them, two first slide rails are arranged in parallel. The first slide rails are arranged at the output ends of the two sliding plates through the two connecting plates. The input end of the first slide rail is fixedly connected to one of the connecting plates and slidably connected to the other connecting plate. A second slide rail with the same length as it is slidably arranged on the first slide rail;

[0011] And the length of the first slide rail is greater than the maximum opening distance between the two connecting plates connected to it.

[0012] Preferably, the transfer mechanism includes a sliding seat, a transfer seat, a deflecting rod, a sliding rod, and a first suction cup. Among them, two sliding seats are provided. The two sliding seats are respectively slidably arranged on the two sliding mechanisms. A fixed rod is fixedly arranged on the sliding seat. The two fixed rods are respectively slidably connected to both sides of the transfer seat and a spring is arranged between the fixed rods and the transfer seat. Two deflecting grooves are symmetrically formed in the transfer seat. Two deflecting rods are symmetrically rotatably arranged in the deflecting grooves. A second hydraulic cavity is formed in the deflecting rod. A sliding rod is slidably sealed in the second hydraulic cavity. The output end of the sliding rod is slidably provided with a first suction cup through a first telescopic cylinder. A second suction cup is also slidably provided at the central position of the transfer seat through a second telescopic cylinder.

[0013] Preferably, a driving block is slidably arranged in the deflecting groove. Two T-shaped guide rods are symmetrically fixedly arranged on the driving block. T-shaped chutes are formed in the deflecting rod. The T-shaped guide rods slide along the T-shaped chutes.

[0014] Preferably, two limiting sliders are fixedly arranged on the sliding seat;

[0015] The first slide rail and the second slide rail are both provided with limiting grooves, and the two limiting sliders slide along the two limiting grooves respectively. Two gears are rotatably arranged on the sliding seat through a motor drive. A first rack is slidably arranged on the first slide rail, and a second rack is slidably arranged on the second slide rail. The two gears are respectively meshed with the first rack and the second rack;

[0016] And both the first rack and the second rack have a sliding distance of one tooth.

[0017] Preferably, the skateboard assembly is composed of a plurality of concave-shaped skateboards, and the upper surfaces of the plurality of skateboards coincide with the upper surface of the rotating seat.

[0018] Preferably, four driving rods are slidably arranged in the rotating seat, the output ends of the four driving rods are respectively fixedly connected to the four support rods, and two coaxial reverse lead screws for driving the four driving rods to slide are also rotatably arranged in the rotating seat.

[0019] Compared with the prior art, the present invention provides a production transfer device for exterior finish curtain wall aluminum plates, which has the following beneficial effects:

[0020] In the present invention, a rotatable seat, a skateboard assembly, support rods and a connecting block can form an adjustable rectangular placement table, which can place aluminum plates of different sizes. The aluminum plates are limited by a limiting component slidably arranged on the connecting block, so that the aluminum plates are located at the center of the rotatable seat after being placed. The telescopic hydraulic cylinder can push the aluminum plates to slide upward, so that the transfer mechanism can adsorb the aluminum plates and slide on the sliding mechanism to transfer the aluminum plates to the conveyor line, thereby realizing the automatic transfer of the aluminum plates. The transfer mechanism can stably adsorb the aluminum plates through four suction cups one and one suction cup two, so that the aluminum plates can remain stable during transfer. The positions of the four suction cups one can be adjusted, so that aluminum plates of various different specifications can be stably adsorbed, and the aluminum plates are evenly stressed and will not be damaged, thereby realizing the safe and stable automatic transfer work of the aluminum plates, effectively improving the transfer efficiency of the aluminum plates, and improving the product processing quality of subsequent processing. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] Figure 1 is a three-dimensional schematic diagram of the overall structure of the present invention;

[0022] Figure 2 is a side schematic diagram of the overall structure of the present invention;

[0023] Figure 3 is a schematic diagram of the structure of the limiting component in the present invention;

[0024] Figure 4 is Figure 3 an enlarged schematic diagram of the structure at A;

[0025] Figure 5 This is a schematic structural diagram of the transfer mechanism in the present invention;

[0026] Figure 6 This is a schematic structural diagram of the sliding seat in the present invention;

[0027] In the figure: 1, moving bottom plate; 11, telescopic hydraulic cylinder; 2, support plate; 3, rotating seat; 31, driving rod; 32, coaxial reverse thread screw; 4, limiting component; 41, fixing plate; 411, first hydraulic cavity; 42, sliding plate; 421, hydraulic rod; 422, connecting plate; 43, limiting seat; 44, universal guide wheel; 5, sliding mechanism; 51, first slide rail; 511, first rack; 52, second slide rail; 521, second rack; 6, transfer mechanism; 61, sliding seat; 611, limiting slider; 612, gear; 62, transfer seat; 621, deflection groove; 622, driving block; 623, T-shaped guide rod; 63, deflection rod; 631, second T-shaped slide groove; 64, slide rod; 65, first suction cup; 7, slide plate assembly; 71, support rod; 72, connecting rod; 73, connecting block; 731, T-shaped clamping block. Specific embodiments

[0028] Please refer to Figures 1 to 6 , in the embodiment of the present invention, a production transfer device for exterior finish curtain wall aluminum plates includes a moving bottom plate 1, a support plate 2, a rotating seat 3, a limiting component 4, a sliding mechanism 5 and a transfer mechanism 6. Among them, a telescopic hydraulic cylinder 11 is fixedly arranged on the moving bottom plate 1, a support plate 2 is fixedly arranged at the output end of the telescopic hydraulic cylinder 11, a rotating seat 3 is rotatably arranged on the support plate 2, the rotating seat 3 is rectangular, and a plurality of slide plate assemblies 7 are uniformly arranged in an array on the outer side of the rotating seat 3. The output ends of the plurality of slide plate assemblies 7 on the same side of the rotating seat 3 are fixedly provided with support rods 71, the upper surface of the support rod 71 coincides with the upper surface of the rotating seat 3, connecting rods 72 are slidably arranged on both sides of the support rod 71, and a connecting block 73 is fixedly arranged at the intersection of the two connecting rods 72. A limiting component 4 is slidably arranged on the connecting block 73, a sliding mechanism 5 is arranged at the output end of the limiting component 4, and a transfer mechanism 6 is slidably arranged on the sliding mechanism 5;

[0029] In addition, there are various power driving methods for the rotation of the rotating seat 3 along the support plate 2, such as direct drive by a motor, a gear and ring gear mechanism, and a worm and worm gear. The preferred driving method in the present invention is the gear and ring gear mechanism drive;

[0030] The limiting component 4 includes a fixed plate 41 and a sliding plate 42. Among them, a limiting seat 43 is fixedly arranged at the bottom of the fixed plate 41, a universal guide wheel 44 is rotatably arranged on the limiting seat 43, the universal guide wheel 44 slides along the moving bottom plate 1, the sliding plate 42 is slidably connected to the fixed plate 41 in an L shape, the four fixed plates 41 are respectively arranged parallel to the four side surfaces of the support plate 2, and two of the fixed plates 41 located on the adjacent sides of the support plate 2 are perpendicularly arranged. A first hydraulic cavity 411 is formed in the fixed plate 41, a hydraulic rod 421 is fixedly arranged on the sliding plate 42, the hydraulic rod 421 slidably seals along the first hydraulic cavity 411, and an L-shaped connecting plate 422 is fixedly arranged at the output end of the sliding plate 42;

[0031] Two T-shaped clamping blocks 731 are fixedly arranged on the connecting block 73;

[0032] T-shaped chutes one are formed in both the fixed plate 41 and the sliding plate 42, and the two T-shaped clamping blocks 731 respectively slide along the two T-shaped chutes one;

[0033] The transfer mechanism 6 includes a sliding seat 61, a transfer seat 62, a deflection rod 63, a sliding rod 64 and a first suction cup 65. Among them, two sliding seats 61 are configured, and the two sliding seats 61 are respectively slidably arranged on the two sliding mechanisms 5. A fixed rod is fixedly arranged on the sliding seat 61, the two fixed rods are respectively slidably connected to both sides of the transfer seat 62, and springs are arranged between the fixed rods and the transfer seat 62. Two deflection grooves 621 are symmetrically formed in the transfer seat 62, two deflection rods 63 are symmetrically rotatably arranged in the deflection grooves 621, a second hydraulic cavity is formed in the deflection rod 63, a sliding rod 64 is slidably sealed in the second hydraulic cavity, a first suction cup 65 is slidably arranged at the output end of the sliding rod 64 through a first telescopic cylinder, and a second suction cup is also slidably arranged at the center position of the transfer seat 62 through a second telescopic cylinder;

[0034] Four driving rods 31 are slidably arranged in the rotating seat 3, the output ends of the four driving rods 31 are respectively fixedly connected to the four support rods 71, and two coaxial reverse lead screws 32 for driving the four driving rods 31 to slide are also rotatably arranged in the rotating seat 3.

[0035] During implementation, stack the aluminum plates on the rotating seat 3. At the same time, use the coaxial reverse screw 32 to drive the four driving rods 31 to slide along the support plate 2, thereby driving the four support rods 71 to slide and driving the limiting component 4 to slide, so as to limit the aluminum plates. That is, limit the four faces of the aluminum plate through the four fixing plates 41, so that the aluminum plate is placed at the center position of the rotating seat 3 and facilitates the transfer mechanism 6 to transfer the aluminum plate. After the aluminum plate is placed, move the entire device to the conveying line through the moving bottom plate 1. Subsequently, adjust the sliding of the sliding plate 42 according to the height of the conveying line, so that the sliding mechanism 5 is above the conveying line. At the same time, the transfer mechanism 6 can move above the conveying line. Then, drive the support plate 2 to slide upward through the telescopic hydraulic cylinder 11 and drive the aluminum plate to slide upward. During this process, when the aluminum plate is released from the restriction of the fixing plate 41, the sliding plate 42 arranged in an L-shaped sliding manner with the fixing plate 41 can limit the aluminum plate, that is, the aluminum plate will not shift during the upward movement. Then, when the topmost aluminum plate just protrudes from the sliding plate 42, at this time the aluminum plate is just stuck in the four connecting plates 422. At this time, drive the driving block 622 to slide according to the size of the aluminum plate, so that the deflecting rod 63 deflects, and use the sliding of the sliding rod 64 to convey the four suction cups 65 to the four corners of the aluminum plate. Then, use the first telescopic cylinder and the second telescopic cylinder to drive the suction cup 65 and the suction cup 2 to approach the aluminum plate and adsorb the aluminum plate. Then, drive the sliding seat 61 to slide along the sliding mechanism 5 to convey the aluminum plate above the conveying line. After conveying to the accurate position, release the suction cup 65 and the suction cup 2, and then accurately transfer the aluminum plate to the conveying line. Then, retract the transfer mechanism 6 and perform the next transfer work. In addition, the rotating seat 3 can rotate along the support plate 2. During this process, the universal guide wheels 44 arranged on the fixing plate 41 can deflect and slide along the moving bottom plate 1, so that the limiting component 4 can rotate synchronously. And during the rotation process, through the action of the connecting block 73 and the T-shaped clamping block 731 arranged on the connecting block 73, the position of the limiting component 4 relative to the rotating seat 3 will not change, that is, the fixing plate 41 and the sliding plate 42 can always limit the aluminum plate. At the same time, the orientation of the sliding mechanism 5 will also change accordingly, so that the aluminum plate can be transferred to multiple conveying lines as needed. In addition, the moving bottom plate 1 without loaded aluminum plates can be moved to the conveying line, and then use the transfer mechanism 6 to adsorb and transfer the aluminum plate on the conveying line to the rotating seat 3, so as to realize two working states of automatic feeding and automatic discharging of the aluminum plate, further improve the overall convenience of the device, and the transfer efficiency is higher. During the transfer, the aluminum plate is evenly stressed and there will be no situation of aluminum plate damage, thereby improving its safety.

[0036] In this embodiment, as Figure 5 andFigure 6 The sliding mechanism 5 includes a first slide rail 51 and a second slide rail 52. Among them, two first slide rails 51 are arranged in parallel. The first slide rails 51 are arranged at the output ends of the two sliding plates 42 through the two connecting plates 422. The input end of the first slide rail 51 is fixedly connected to one of the connecting plates 422 and slidably connected to the other connecting plate 422. A second slide rail 52 with the same length as the first slide rail 51 is slidably arranged on the first slide rail 51;

[0037] In addition, there are various power driving methods for the second slide rail 52 to slide along the first slide rail 51, such as a gear-rack mechanism, a hydraulic driving mechanism, and a lead screw-nut pair. The preferred driving method in the present invention is a hydraulic driving mechanism. A hydraulic cavity can be opened in the first slide rail 51, and a hydraulic mechanism can be arranged on the second slide rail 52. The second slide rail 52 is driven to slide along the first slide rail 51 by the hydraulic mechanism sliding along the hydraulic cavity;

[0038] The length of the first slide rail 51 is greater than the maximum opening distance between the two connecting plates 422 connected thereto. That is to say, the extending distance of the second slide rail 52 is always greater than the opening distance between the two connecting plates 422 (i.e., the maximum width of the aluminum plate). Furthermore, the transfer mechanism 6 can always slide above the conveyor line to realize the transfer of the aluminum plate.

[0039] In this embodiment, as Figure 5 shown, a driving block 622 is slidably arranged in the deflection groove 621. Two T-shaped guide rods 623 are symmetrically and fixedly arranged on the driving block 622. A second T-shaped sliding groove 631 is formed on the deflection rod 63. The T-shaped guide rods 623 slide along the second T-shaped sliding groove 631.

[0040] In addition, the power for the driving block 622 to slide along the deflection groove 621 comes from an external driving mechanism, such as a lead screw-nut pair, a hydraulic driving mechanism, and a worm and worm gear.

[0041] In this embodiment, as Figure 6 shown, two limit sliders 611 are fixedly arranged on the sliding seat 61;

[0042] Limit grooves are opened on both the first slide rail 51 and the second slide rail 52. The two limit sliders 611 slide along the two limit grooves respectively. Two gears 612 are rotatably arranged on the sliding seat 61 through motor drive. A first rack 511 is slidably arranged on the first slide rail 51, and a second rack 521 is slidably arranged on the second slide rail 52. The two gears 612 are respectively meshed with the first rack 511 and the second rack 521;

[0043] Both the first rack 511 and the second rack 521 have a sliding distance of one tooth.

[0044] During implementation, the gear 612 is driven by a motor to rotate, thereby causing the slide block 61 to slide along the first slide rail 51 and the second slide rail 52 and driving the transfer seat 62 to slide, realizing the transfer work of the aluminum plate. Moreover, the first rack 511 and the second rack 521 have a sliding distance of one tooth. When the second slide rail 52 slides along the first slide rail 51 and the first rack 511 and the second rack 521 are misaligned, the first rack 511 and the second rack 521 can slide so that the teeth on the first rack 511 and the second rack 521 coincide, and then the gear 612 can be meshed with the first rack 511 and the second rack 521 simultaneously. That is, no matter how the second slide rail 52 slides, the slide block 61 can slide along the first slide rail 51 and the second slide rail 52.

[0045] In this embodiment, the slide plate assembly 7 is composed of a plurality of concave-shaped slide plates, and the upper surfaces of the plurality of slide plates coincide with the upper surface of the rotating seat 3.

[0046] When the support rod 71 slides, the plurality of concave-shaped slide plates can slide synchronously, and during the sliding process, the upper surface of the slide plate always coincides with the upper surface of the rotating seat 3. Therefore, when aluminum plates of different sizes are placed on the rotating seat 3, through the action of the plurality of slide plates and the support rod 71, the aluminum plates can be placed stably and have a stable supporting force, preventing the aluminum plates from being damaged due to uneven stress.

[0047] In summary, during the implementation of the present invention, the rotating seat 3, the slide plate assembly 7, the support rod 71, and the connecting block 73 can form an adjustable rectangular placement table, which can then place aluminum plates of different sizes. The aluminum plate is limited by the limiting assembly 4 slidably arranged on the connecting block 73, so that the aluminum plate is in the central position of the rotating seat 3 after being placed. The telescopic hydraulic cylinder 11 can be used to push the aluminum plate to slide upward, so that the transfer mechanism 6 can adsorb the aluminum plate and slide on the sliding mechanism 5 to transfer the aluminum plate to the conveyor line, thereby realizing the automatic transfer of the aluminum plate. The transfer mechanism 6 can stably adsorb the aluminum plate through four first suction cups 65 and one second suction cup, so that the aluminum plate can remain stable during transfer. Moreover, the positions of the four first suction cups 65 can be adjusted, so that aluminum plates of various different specifications can be stably adsorbed, and the aluminum plate is evenly stressed and will not be damaged, thereby realizing the safe and stable automatic transfer work of the aluminum plate, effectively improving the transfer efficiency of the aluminum plate and improving the product processing quality of subsequent processing.

[0048] The above is only a preferred specific embodiment of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention, according to the technical solution and inventive concept of the present invention, makes equivalent substitutions or changes, and should be covered by the protection scope of the present invention.

Claims

1. A production and transfer equipment for exterior curtain wall aluminum plates, characterized in that: The invention comprises a movable bottom plate (1), a support plate (2), a rotating seat (3), a position limiting assembly (4), a sliding mechanism (5) and a transfer mechanism (6), wherein a telescopic hydraulic cylinder (11) is fixedly arranged on the movable bottom plate (1), a support plate (2) is fixedly arranged on the output end of the telescopic hydraulic cylinder (11), a rotating seat (3) is rotatably arranged on the support plate (2), the rotating seat (3) is rectangular, and a plurality of slide plate assemblies (7) are evenly arranged in an array on the outer side of the rotating seat (3), and a plurality of slide plate assemblies (7) located on the same side of the rotating seat (3) are arranged on the rotating seat (3). A support rod (71) is fixedly arranged at the output end of the slide plate assembly (7), the upper surface of the support rod (71) coincides with the upper surface of the rotating seat (3), connecting rods (72) are slidably arranged on both sides of the support rod (71), and the junction of the two connecting rods (72) is fixedly arranged on a connecting block (73), a limit assembly (4) is slidably arranged on the connecting block (73), a sliding mechanism (5) is arranged at the output end of the limit assembly (4), and a transfer mechanism (6) is slidably arranged on the sliding mechanism (5); The limiting assembly (4) comprises a fixed plate (41) and a sliding plate (42), wherein a limiting seat (43) is fixedly arranged at the bottom of the fixed plate (41), a universal guide wheel (44) is rotatably arranged on the limiting seat (43), the universal guide wheel (44) slides along the movable bottom plate (1), the sliding plate (42) and the fixed plate (41) are connected in an L-shaped sliding manner, the four fixed plates (41) are respectively arranged parallel to the four side surfaces of the support plate (2), and the two fixed plates (41) located on the adjacent two sides of the support plate (2) are arranged perpendicular to each other, a hydraulic cavity (411) is opened on the fixed plate (41), and a hydraulic rod (421) is fixedly arranged on the sliding plate (42), and the hydraulic rod (421) slides in a sealed manner along the hydraulic cavity (411); Two T-shaped clamping blocks (731) are fixedly arranged on the connecting block (73); The fixed plate (41) and the sliding plate (42) are both provided with a T-shaped sliding groove, and the two T-shaped clamping blocks (731) slide along the two T-shaped sliding grooves respectively; An L-shaped connecting plate (422) is fixedly provided at the output end of the sliding plate (42).

2. The exterior curtain wall aluminum plate production and transfer equipment according to claim 1 is characterized in that: The sliding mechanism (5) comprises a first slide rail (51) and a second slide rail (52), wherein two first slide rails (51) are provided and arranged in parallel, the first slide rail (51) is arranged at the output ends of the two sliding plates (42) through the two connecting plates (422), and the input end of the first slide rail (51) is fixedly connected to one of the connecting plates (422) and slidably connected to the other connecting plate (422), and the first slide rail (51) is slidably arranged with a second slide rail (52) having the same length as the first slide rail; Furthermore, the length of the slide rail 1 (51) is greater than the maximum opening distance between the two connecting plates (422) connected thereto.

3. The production and transfer equipment for exterior curtain wall aluminum plates according to claim 2 is characterized in that: The transfer mechanism (6) includes a slide seat (61), a transfer seat (62), a deflection rod (63), a slide rod (64) and a suction cup (65), wherein the slide seat (61) is configured with two, and the two slide seats (61) are respectively slidably set on the two sliding mechanisms (5), and a fixed rod is fixedly set on the slide seat (61), and the two fixed rods are respectively slidably connected to the two sides of the transfer seat (62), and a spring is set between the transfer seat (62), and two deflection grooves (621) are symmetrically provided on the transfer seat (62), and two deflection rods (63) are symmetrically rotated in the deflection grooves (621), and a hydraulic chamber (2) is provided in the deflection rod (63), and a slide rod (64) is sealed and slidably set in the hydraulic chamber (2), and a suction cup (65) is slidably set at the output end of the slide rod (64) through a telescopic cylinder (1), and a suction cup (2) is also slidably set at the center position of the transfer seat (62) through a telescopic cylinder (2).

4. The production and transfer equipment for exterior curtain wall aluminum plates according to claim 3 is characterized in that: A driving block (622) is slidably arranged in the deflection groove (621), two T-shaped guide rods (623) are symmetrically fixedly arranged on the driving block (622), a second T-shaped slide groove (631) is provided on the deflection rod (63), and the T-shaped guide rod (623) slides along the second T-shaped slide groove (631).

5. The production and transfer equipment for exterior curtain wall aluminum plates according to claim 4 is characterized in that: Two limiting slide blocks (611) are fixedly arranged on the slide seat (61); The slide rail 1 (51) and the slide rail 2 (52) are both provided with limit grooves, the two limit sliders (611) slide along the two limit grooves respectively, the slide seat (61) is provided with two gears (612) driven to rotate by a motor, the slide rail 1 (51) is provided with a rack 1 (511) for sliding, the slide rail 2 (52) is provided with a rack 2 (521) for sliding, the two gears (612) are respectively meshed with the rack 1 (511) and the rack 2 (521); Furthermore, the rack 1 (511) and the rack 2 (521) both have a sliding distance of one tooth.

6. The production and transfer equipment for exterior curtain wall aluminum plates according to claim 1 is characterized in that: The slide plate assembly (7) is composed of a plurality of concave-shaped slide plates, and the upper surfaces of the plurality of slide plates overlap with the upper surface of the rotating seat (3).

7. The production and transfer equipment for exterior curtain wall aluminum plates according to claim 1 is characterized in that: Four driving rods (31) are slidably arranged in the rotating seat (3), and the output ends of the four driving rods (31) are respectively fixedly connected to the four supporting rods (71). Two coaxial reverse screws (32) for driving the four driving rods (31) to slide are also rotatably arranged in the rotating seat (3).

Citation Information

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