Aluminum form handling device

By using a servo motor-driven conveyor belt and a flipping device, combined with structures such as square plates, rollers, and U-shaped blocks, the aluminum template is automatically transported and flipped, solving the problems of inconvenient removal and unstable shaking, thus improving work efficiency and safety.

CN117184845BActive Publication Date: 2026-02-10CCCC SECOND HARBOR ENGINEERING CO LTD
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Patent Information

Application Number
CN202311115880.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-08-31
Publication Date
2026-02-10
Estimated Expiration
2043-08-31

AI Technical Summary

Technical Problem

Existing aluminum formwork handling devices are inconvenient to remove, have low work efficiency, are prone to shaking and instability, and have low safety.

Method used

The aluminum template is automatically conveyed and rotated by a servo motor-driven conveyor belt and a flipping device, combined with a structure of square plates, rollers, and U-shaped blocks. The servo motor drives the conveyor belt and rollers, and the aluminum template is flipped after being stuck in the square groove. The spring structure facilitates its removal, and cleaning brushes are set between the side plates to remove dust.

Benefits of technology

It improves the working efficiency of aluminum formwork, ensures the safety and stability of operation, and reduces the labor intensity and safety risks for workers.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application provides an aluminum template carrying device, one end of a support is provided with a conveyor belt, the other end of the support is provided with an aluminum template turnover device, the conveyor belt is connected with the aluminum template turnover device, the aluminum template turnover device comprises a square plate, the end of the square plate is provided with a square groove, a sliding top plate is arranged in the square groove, a third spring is arranged on the top plate, one end of the third spring is connected with a limiting ring in the square groove, the other end of the third spring is connected with the top plate, the end of the top plate is connected with a plurality of clamping blocks, the tail end of the support is further provided with a roller, the roller is provided with a clamping groove matched with the clamping block, and one end of the roller is connected with a servo motor; the conveyor belt conveys the aluminum template to the square groove of the square plate, the top plate pushes the clamping block to be clamped in the clamping groove, and the roller drives the aluminum template to be turned over upward. The top plate is pushed backward to the clamping groove, so that the aluminum template is clamped in the square groove, and rotates upward along with the rotation of the roller, the structure is simple, and the worker can take the aluminum template more conveniently.
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Description

Technical Field

[0001] This invention relates to the field of sheet metal handling devices, and in particular to an aluminum formwork handling device. Background Technology

[0002] Aluminum formwork, also known as aluminum alloy formwork system for construction, is a new generation of formwork support system that emerged after bamboo and wood formwork and steel formwork. Aluminum formwork is widely used in construction through splicing and pouring concrete. It is generally manufactured by extrusion using specialized equipment and consists of a complete set of universal accessories comprising aluminum panels, supports, and connectors. The aluminum formwork panels are interconnected by connection holes. The technology of all-aluminum alloy formwork originated in the United States in the 1950s. After its implementation in developed countries such as the United States and Canada, it was gradually tested in the construction fields of Asian countries such as Mexico and Brazil, including Malaysia, South Korea, Japan, and India, and has since been widely used, primarily in the construction of high-rise residential buildings.

[0003] Currently, aluminum formwork can be freely combined according to different structural dimensions. The design, research and development, and construction application of aluminum formwork represent a major advancement in the construction industry. The application of aluminum formwork systems in the construction industry has improved the construction efficiency of building projects, significantly saving resources in terms of building materials and labor. With the development of society…

[0004] The use of aluminum formwork to replace timber structures is becoming increasingly mature in the modern construction industry. When aluminum materials are used in construction, aluminum formwork is involved. Currently, the processing of aluminum formwork in the market generally uses manual loading and unloading, which leads to high labor intensity and low efficiency for operators, and is not conducive to large-scale aluminum formwork production and assembly. At the same time, manual loading and unloading of aluminum formwork also poses certain safety risks, as injuries are easy to occur during manual loading and unloading. Therefore, this utility model proposes an automatic aluminum formwork handling device to solve the shortcomings of the existing technology.

[0005] The existing technology, authorized by publication number CN216581959U, is entitled "An Aluminum Formwork Handling Device for Affordable Housing." It includes a movable base, a hollow base fixed to the top of the movable base, a fixing block fixed to the top of the hollow base, and a horizontal placement plate fixed to the top of the fixing block. Aluminum formwork bodies are stacked on the placement plate, and each aluminum formwork body has mounting holes at its end. Two partitions are fixed inside the hollow base, and a common rotating crossbar is rotatably mounted on the two partitions. A worm gear is fixedly fitted in the middle of the rotating crossbar between the two partitions. A vertical worm gear, meshing with the worm gear, is rotatably mounted on the hollow base, and a rotating disk is fixed to the upper end of the worm gear above the hollow base. This invention not only transports formwork but also prevents it from tilting and falling, offering good performance, flexibility, and convenience.

[0006] However, although this utility model can raise or lower the aluminum template, each aluminum template is stuck between the partitions, making it inconvenient for workers to remove it from the top. In addition, the utility model uses a screw to drive the lifting and lowering, which makes the lifting speed slow and the work efficiency low. Moreover, although the utility model can move, it cannot be fixed, which makes it easy to shake when it is needed. The structure is not stable enough and the safety is low. Summary of the Invention

[0007] The main objective of this invention is to provide an aluminum template handling device that solves the problems of inconvenient removal, low work efficiency, and easy slippage in related technologies.

[0008] To solve the above-mentioned technical problems, the technical solution adopted by the present invention is: an aluminum template handling device, wherein a conveyor belt is provided at one end of the support and an aluminum template flipping device is provided at the other end of the support. The conveyor belt is connected to the aluminum template flipping device. The aluminum template flipping device includes a square plate, a square groove is provided at the end of the square plate, a sliding top plate is provided inside the square groove, a third spring is provided on the top plate, one end of the third spring is connected to a limiting ring inside the square groove, and the other end is connected to the top plate. The end of the top plate is connected to multiple locking blocks. A roller is also provided at the tail end of the support. The roller has a locking groove that matches the locking blocks, and one end of the roller is connected to a servo motor.

[0009] The conveyor belt transports the aluminum template into the square groove of the square plate. The top plate pushes the locking block into the groove, and the roller drives the aluminum template to flip upward.

[0010] In the preferred embodiment, a rotating frame is provided on the support, the roller is rotatably connected to the rotating frame, a mounting plate is provided on one side of the rotating frame, a servo motor is mounted on the mounting plate, and the servo motor is connected to the roller.

[0011] In the preferred embodiment, sliding shafts are provided on both sides of one end of the square plate, and arc-shaped grooves are provided on both sides of the rotating frame, with the sliding shafts located inside the arc-shaped grooves.

[0012] In the preferred embodiment, the bracket is also provided with a U-shaped groove, which is located on one side of the end of the square plate, and one end of the U-shaped groove is located on the lower surface of the square plate.

[0013] A U-shaped block is provided inside the U-shaped groove, and a fourth spring is provided between the bottom of the U-shaped block and the bottom of the U-shaped groove;

[0014] The U-shaped block is pressed down at the end of the square plate, and the aluminum template slides from the conveyor belt into the square groove of the square plate.

[0015] In the preferred embodiment, the servo motor is connected to the first driven wheel through the second driven wheel. The first driven wheel drives the conveyor belt to rotate. Limiting plates are provided on both sides of the upper surface of the conveyor belt, and inclined plates are provided at the ends of the limiting plates on both sides. The two inclined plates are open and have a horn structure.

[0016] In the preferred embodiment, the bracket is also provided with side plates on both sides. The side plates are located on one side of the limiting plate. The side plates are provided with multiple grooves. A first spring is provided inside the grooves. The end of the first spring is connected to the side of the limiting plate.

[0017] In the preferred embodiment, the conveyor belt is also equipped with a cleaning brush, and the cleaning brush has connecting rods at both ends. The connecting rods pass through the through groove of the support plate and are connected to the top rod. A second spring is provided between one side of the through groove and one side of the connecting rod. A protrusion is provided on one side of the top rod. The rotating shaft of the protrusion is rotatably connected to the support rod. The support rod is set on the upper surface of the side plate.

[0018] A guide wheel is provided on one side of the push rod, and the guide wheel abuts against the surface of the protrusion;

[0019] The rotating shaft of the protrusion is connected to the second driven wheel, and the second driven wheel is connected to the servo motor through the first synchronous belt.

[0020] In the preferred embodiment, the bracket is also equipped with multiple support feet, and the lower end of the support feet is equipped with rollers.

[0021] In the preferred embodiment, a fixing block is provided on one side of the support foot, and at least one nut is provided on the fixing block. The axis of the nut is parallel to the support foot, and the nut type is provided with a screw.

[0022] This invention provides an aluminum template handling device. Through the arrangement of a servo motor and a square plate, the servo motor drives a first and second driving wheel to rotate. The first and second driven wheels are also driven by a first and a second synchronous belt, respectively. This causes the conveyor belt to push the aluminum template forward, which slides forward along the inclined plate until it enters the square groove of the square plate. The top plate is then pushed backward into a slot, securing the aluminum template inside the square groove. As the rollers rotate, the template rotates upward. The simple structure makes it easier for workers to handle. Furthermore, through the arrangement of a rotating frame and a U-shaped block, after the worker removes the aluminum template, the top plate is ejected upward by a third spring, causing the square plate to lose its limiting effect. The template then slides downward along the arc-shaped groove, pressing the U-shaped block downward. The next aluminum template then slides forward again, and the process is repeated, resulting in a faster speed and improved work efficiency.

[0023] In this invention, by setting up structures such as fixing blocks and screws, the aluminum template is protected from dust during use. Workers wear gloves to prevent their hands from being cut by the aluminum template, which can easily cause slippage when workers handle it, making them susceptible to injury. The aluminum template is also prone to deformation. Therefore, a cleaning brush is installed between the two side plates to clean the dust off the aluminum template, making it less likely for workers to slip when handling it, thus improving safety. Attached Figure Description

[0024] The present invention will be further described below with reference to the accompanying drawings and embodiments:

[0025] Figure 1 This is a schematic diagram of the overall structure of the present invention;

[0026] Figure 2 This is a schematic diagram of the overall structure from another perspective of the present invention;

[0027] Figure 3 This is a schematic diagram of the top plate of the present invention;

[0028] Figure 4 This is a schematic diagram of the structure of the roller of the present invention;

[0029] Figure 5 This is a side sectional view of the present invention;

[0030] Figure 6 This is a top view of the bracket of the present invention;

[0031] Figure 7 This is a top view of the support plate of the present invention;

[0032] Figure 8 This is an enlarged view of point A in the present invention.

[0033] In the diagram: 1. Rotating frame; 2. Mounting plate; 3. Servo motor; 4. First driving wheel; 5. Second driving wheel; 6. Arc groove; 7. First synchronous belt; 8. Second synchronous belt; 9. Second driven wheel; 10. Conveyor belt; 11. First driven wheel; 12. Inclined plate; 13. Roller; 14. Support plate; 15. Cleaning brush; 16. Protrusion; 17. Support rod; 18. Rotating shaft; 19. Top rod; 20. Top plate; 21. Locking block; 22. Locking groove; 23. Bracket; 24. Side plate; 25. Support foot; 26. Roller; 27. Screw; 28. Fixing block; 29. ​​Nut; 30. Groove; 31. First spring; 32. Limiting plate; 33. Second spring; 34. Through groove; 35. Connecting rod; 36. Square groove; 37. Third spring; 38. U-shaped block; 39. U-shaped groove; 40. Fourth spring; 41. Square plate. Detailed Implementation

[0034] Example 1

[0035] like Figures 1-8 As shown, an aluminum template handling device includes a conveyor belt 10 at one end of a support 23 and an aluminum template flipping device at the other end. The conveyor belt 10 is connected to the aluminum template flipping device. The aluminum template flipping device includes a square plate 41 with a square groove 36 at one end. A sliding top plate 20 is provided inside the square groove 36. A third spring 37 is provided on the top plate 20. One end of the third spring 37 is connected to a limiting ring inside the square groove 36, and the other end is connected to the top plate 20. The end of the top plate 20 is connected to multiple locking blocks 21. A roller 13 is also provided at the tail end of the support 23. The roller 13 has a locking groove 22 that matches the locking blocks 21. One end of the roller 13 is connected to a servo motor 3. The conveyor belt 10 transports the aluminum template into the square groove 36 of the square plate 41. The top plate 20 pushes the locking blocks 21 into the locking groove 22, and the roller 13 drives the aluminum template to flip upward. The servo motor 3 drives the first driving wheel 4 and the second driving wheel 5 to rotate. The first driven wheel 11 and the second driven wheel 9 are also driven by the first synchronous belt 7 and the second synchronous belt 8, respectively. This causes the conveyor belt 10 to push the aluminum template forward, and the aluminum template slides forward along the inclined plate 12. This causes the aluminum template to slide into the square groove 36 of the square plate 41, pushing the top plate 20 backward into the slot 22. This causes the aluminum template to be stuck inside the square groove 36. As the roller 13 rotates, it rotates upward. The structure is simple and makes it more convenient for workers to pick up the template.

[0036] In the preferred embodiment, a rotating frame 1 is provided on the bracket 23, and the roller 13 is rotatably connected to the rotating frame 1. A mounting plate 2 is provided on one side of the rotating frame 1, and the servo motor 3 is mounted on the mounting plate 2 and connected to the roller 13.

[0037] In the preferred embodiment, sliding shafts are provided on both sides of one end of the square plate 41, and arc-shaped grooves 6 are provided on both sides of the rotating frame 1, with the sliding shafts located inside the arc-shaped grooves 6. The square plate 41 is slidably assembled inside the rotating frame 1, and a top plate 20 is slidably assembled inside the square plate 41. A locking block 21 is fixedly connected to one side of the top plate 20 by screws. A U-shaped block 38 is slidably assembled inside the bracket 23. Through the arrangement of the rotating frame 1 and the U-shaped block 38, when the worker removes the aluminum template, the top plate 20 will be ejected upwards due to the action of the third spring 37, thereby causing the square plate 41 to lose its limiting effect. Then it will slide down along the arc-shaped grooves 6, thereby pressing the U-shaped block 38 downwards. The next aluminum template will slide forward again, and then flip and rise, which is faster and improves work efficiency.

[0038] In the preferred embodiment, the bracket 23 is also provided with a U-shaped groove 39, which is located on one side of the end of the square plate 41, and one end of the U-shaped groove 39 is located on the lower surface of the square plate 41.

[0039] The U-shaped groove 39 is provided with a U-shaped block 38 inside, and a fourth spring 40 is provided between the bottom of the U-shaped block 38 and the bottom of the U-shaped groove 39;

[0040] The U-shaped block 38 is pressed down at the end of the square plate 41, and the aluminum template slides from the conveyor belt 10 into the square groove 36 of the square plate 41.

[0041] The bracket 23 has a U-shaped groove 39 inside, and a U-shaped block 38 is slidably connected inside the U-shaped groove 39. A fourth spring 40 is welded to the bottom wall of the U-shaped groove 39, and the other end of the fourth spring 40 is welded to the bottom of the U-shaped block 38.

[0042] The rotating frame 1 has two symmetrically arranged arc-shaped grooves 6 inside, and the square plate 41 is slidably connected inside the two arc-shaped grooves 6.

[0043] Both side plates 24 have several evenly arranged grooves 30 inside. A first spring 31 is welded to the side wall of the groove 30, and the other end of the first spring 31 is welded to one side of the limiting plate 32.

[0044] In this embodiment, the servo motor 3 drives the first driving wheel 4 and the second driving wheel 5 to rotate. The first driven wheel 11 and the second driven wheel 9 are also driven by the first synchronous belt 7 and the second synchronous belt 8, respectively. The second driven wheel 9 drives the conveyor belt 10 to push the aluminum template forward. The aluminum template slides forward along the inclined plate 12. Due to the action of the first spring 31, the aluminum template is fixed in the middle of the bracket 23, which facilitates the clamping of the square plate 41. This allows the aluminum template to slide into the square groove 36 of the square plate 41. Then, the aluminum template pushes the top plate 20 backward into the slot 22, so that the aluminum template is stuck inside the square groove 36. Then, the servo motor 3 drives the roller 13 to rotate. Plate 41 rotates upwards along with roller 13, causing the aluminum template to flip upwards. After the flipping limit is reached, when the square plate 41 flips upwards, the U-shaped block 38 pops out upwards, thus blocking the aluminum template and preventing it from moving forward. Then, when the worker removes the aluminum template, the top plate 20 will be popped upwards due to the action of the third spring 37, thus causing the square plate 41 to lose its limiting effect. Then, due to its own weight, it slides down along the arc groove 6, thus pressing the U-shaped block 38 downwards, so that the U-shaped block 38 can no longer block the aluminum template from moving forward. The next aluminum template will slide forward again and then flip and rise. The speed is relatively fast, thus improving work efficiency.

[0045] In the preferred embodiment, the servo motor 3 is connected to the first driven wheel 11 via the second driven wheel 9. The first driven wheel 11 drives the conveyor belt 10 to rotate. Limiting plates 32 are provided on both sides of the upper surface of the conveyor belt 10, and inclined plates 12 are provided at the ends of the limiting plates 32 on both sides. The two inclined plates 12 are open and have a horn structure.

[0046] In the preferred embodiment, the bracket 23 is also provided with side plates 24 on both sides. The side plates 24 are located on one side of the limiting plate 32. The side plates 24 are provided with multiple grooves 30. The grooves 30 are provided with a first spring 31. The end of the first spring 31 is connected to the side of the limiting plate 32.

[0047] In the preferred embodiment, the conveyor belt 10 is also provided with a cleaning brush 15. The cleaning brush 15 has connecting rods 35 at both ends. The connecting rods 35 pass through the through groove 34 of the support plate 14 and are connected to the top rod 19. A second spring 33 is provided between one side of the through groove 34 and one side of the connecting rod 35. A protrusion 16 is provided on one side of the top rod 19. The rotating shaft 18 of the protrusion 16 is rotatably connected to the support rod 17. The support rod 17 is provided on the upper surface of the side plate 24.

[0048] A guide wheel is provided on one side of the push rod 19, and the guide wheel abuts against the surface of the protrusion 16.

[0049] The rotating shaft of the protrusion is connected to the second driven wheel, and the second driven wheel is connected to the servo motor through the first synchronous belt.

[0050] Because aluminum formwork gets dusty during use, workers wear gloves to prevent their hands from being cut. However, this can easily cause slippage when handling the formwork, leading to potential injuries and deformation. Therefore, a cleaning brush 15 is installed between the two side plates 24. The brush 15 is driven by the output of the servo motor 3, which in turn drives the second drive wheel 5 to rotate via a synchronous belt. The second drive wheel 5 then drives the second driven wheel 9 to rotate, which in turn drives the protrusion 16 to rotate. Since one side of the protrusion 16 has an inclined surface, the protrusion 16, under the action of the fourth spring 40, pushes the top rod 19 to slide to one side. This causes the connecting rod 35 to move the cleaning brush 15 back and forth, cleaning the dust off the aluminum formwork. This makes it less likely for workers to slip when handling the formwork, thus improving safety.

[0051] In the preferred embodiment, the bracket 23 is further provided with multiple support feet 25 below it, and the lower end of the support feet 25 is provided with rollers 26.

[0052] In the preferred embodiment, a fixing block 28 is provided on one side of the support foot 25, and at least one nut 29 is provided on the fixing block 28. The axis of the nut 29 is parallel to that of the support foot 25, and the nut 29 is provided with a screw 27. Threaded holes are opened inside the four fixing blocks 28, and the screw 27 is threaded into the inside of the threaded holes.

[0053] Since the entire bracket 23 may be unstable during use, the height of the screws 27 can be adjusted by loosening the two nuts 29 so that all four screws 27 are in contact with the ground, making the entire bracket 23 more stable. After adjustment, the nuts 29 are tightened so that the screws 27 will not become loose and easy to shake due to the vibration of the bracket 23.

[0054] Example 2

[0055] Further explanation in conjunction with Example 1, such as Figures 1-8The structure shown includes a bracket 23. Four symmetrically arranged support legs 25 are fixedly connected to the bottom of the bracket 23 by screws. Each of the four support legs 25 has a rotatable roller 26 mounted inside. A mounting plate 2 is fixedly connected to one side of the bracket 23 by screws. A servo motor 3 is mounted on the top of the mounting plate 2. The output end of the servo motor 3 is fixedly connected to a coaxially arranged round rod via a coupling. A rotating frame 1 is fixedly connected to the top of the bracket 23 by screws. A roller 13 is rotatably mounted inside the rotating frame 1. One end of the round rod is fixedly connected to one end of the roller 13 by screws. A first driving wheel 4 and a second driving wheel 5 are fixedly sleeved on the outer circumference of the round rod. A conveyor belt 10 is mounted on one side of the bracket 23. A first driven wheel 11 is mounted on one side of the conveyor belt 10. A first synchronous wheel 11 is mounted on the outer circumference of both the first driving wheel 4 and the first driven wheel 11. The top of the support 23 is fixedly connected to two symmetrically arranged side plates 24 by screws. The inside of each side plate 24 is fitted with a limit plate 32. One side of each limit plate 32 is fixedly connected to an inclined plate 12 by screws. With the arrangement of the servo motor 3 and the square plate 41, the servo motor 3 drives the first drive wheel 4 and the second drive wheel 5 to rotate. The first driven wheel 11 and the second driven wheel 9 are also driven by the first synchronous belt 7 and the second synchronous belt 8, respectively. This causes the conveyor belt 10 to push the aluminum template forward, and the aluminum template slides forward along the inclined plate 12, so that the aluminum template slides into the square groove 36 of the square plate 41, pushing the top plate 20 backward into the slot 22, so that the aluminum template is stuck inside the square groove 36. As the roller 13 rotates, it rotates upward. The structure is simple and makes it more convenient for workers to pick up.

[0056] The rotating frame 1 has a square plate 41 that slides inside, and a top plate 20 that slides inside the square plate 41. A locking block 21 is fixedly connected to one side of the top plate 20 by screws. A U-shaped block 38 is slidably installed inside the bracket 23. With the structure of the rotating frame 1 and the U-shaped block 38, when the worker removes the aluminum template, the top plate 20 will be popped upward due to the action of the third spring 37, so that the square plate 41 loses its limiting effect. Then it will slide down along the arc groove 6, thereby pressing the U-shaped block 38 downward. The next aluminum template will slide forward again and then flip and rise. The speed is relatively fast, thereby improving work efficiency.

[0057] The bracket 23 has a U-shaped groove 39 inside, and a U-shaped block 38 is slidably connected inside the U-shaped groove 39. A fourth spring 40 is welded to the bottom wall of the U-shaped groove 39, and the other end of the fourth spring 40 is welded to the bottom of the U-shaped block 38.

[0058] The rotating frame 1 has two symmetrically arranged arc-shaped grooves 6 inside, and the square plate 41 is slidably connected inside the two arc-shaped grooves 6.

[0059] Both side plates 24 have several evenly arranged grooves 30 inside. A first spring 31 is welded to the side wall of the groove 30, and the other end of the first spring 31 is welded to one side of the limiting plate 32.

[0060] The roller 13 has two slots 22 inside, and the slots 22 and the block 21 are the same in shape and size.

[0061] In this embodiment, the servo motor 3 drives the first driving wheel 4 and the second driving wheel 5 to rotate. The first driven wheel 11 and the second driven wheel 9 are also driven by the first synchronous belt 7 and the second synchronous belt 8, respectively. The second driven wheel 9 drives the conveyor belt 10 to push the aluminum template forward. The aluminum template slides forward along the inclined plate 12. Due to the action of the first spring 31, the aluminum template is fixed in the middle of the bracket 23, which facilitates the clamping of the square plate 41. This allows the aluminum template to slide into the square groove 36 of the square plate 41. Then, the aluminum template pushes the top plate 20 backward into the slot 22, so that the aluminum template is stuck inside the square groove 36. Then, the servo motor 3 drives the roller 13 to rotate, and the square plate 41 slides forward along the roller 12. The rotation of roller 13 causes the aluminum template to flip upwards. After the flipping limit is reached, due to the action of the fourth spring 40, when the square plate 41 flips upwards, the U-shaped block 38 pops upwards, thus blocking the aluminum template and preventing it from moving forward. Then, when the worker removes the aluminum template, due to the action of the third spring 37, the top plate 20 will be popped upwards, thus causing the square plate 41 to lose its limiting effect. Then, due to its own weight, it slides down along the arc groove 6, thus pressing the U-shaped block 38 downwards, so that the U-shaped block 38 can no longer block the aluminum template from moving forward. The next aluminum template will slide forward again and then flip and rise. The speed is relatively fast, thus improving work efficiency.

[0062] Example 3

[0063] like Figure 1As shown in Figure 2, based on the same concept as Embodiment 2 above, this embodiment also proposes that a support plate 14 is fixedly connected between the two side plates 24 by screws. A connecting rod 35 is slidably assembled inside the support plate 14. A cleaning brush 15 is fixedly connected to the bottom of the connecting rod 35 by screws, and a top rod 19 is fixedly connected to the top of the connecting rod 35 by screws. A second driving wheel 5 is fixedly sleeved on the round rod. A support rod 17 is fixedly connected to the top of one of the side plates 24 by screws. A rotating shaft 18 is rotatably installed inside the support rod 17. A second driven wheel 9 is fixedly sleeved on one end of the rotating shaft 18. A second driving wheel 9 is fixedly sleeved on both the second driving wheel 5 and the second driven wheel 9. Two synchronous belts 8, the other end of the rotating shaft 18 is fixedly connected to a protrusion 16 by screws. One end of the protrusion 16 is provided with a bevel, and one end of the top rod 19 contacts the bevel. Through the setting of structures such as the fixing block 28 and the screw 27, since there is a lot of dust on the aluminum template during use, workers wear gloves to prevent their hands from being cut by the aluminum template. Therefore, it is easy for workers to slip when handling the aluminum template, which can easily cause workers to be injured by falling objects. The aluminum template is also easy to deform. Therefore, a cleaning brush 15 is set between the two side plates 24 to clean the dust on the aluminum template, so that workers are less likely to slip when handling it, and the safety is higher.

[0064] The support plate 14 has a through groove 34 inside, and the connecting rod 35 is slidably connected inside the through groove 34. A second spring 33 is welded to the side wall of the through groove 34, and the other end of the second spring 33 is welded to one side of the connecting rod 35.

[0065] The support rod 17 has a circular hole inside, and the rotating shaft 18 is rotatably installed inside the circular hole.

[0066] In this embodiment, since the aluminum template is covered with dust during use, workers wear gloves to prevent their hands from being cut by the template. However, this can easily cause slippage when workers handle the template, making them susceptible to injury. The template is also prone to deformation. Therefore, a cleaning brush 15 is installed between the two side plates 24. The second drive wheel 5 rotates via the output of the servo motor 3. The second drive wheel 5 then rotates via a synchronous belt, which in turn rotates the second driven wheel 9. The driven wheel 9, in turn, rotates the protrusion 16. Because one side of the protrusion 16 has a slope, the protrusion 16, under the action of the fourth spring 40, pushes the top rod 19 to one side, causing the connecting rod 35 to continuously move the cleaning brush 15 back and forth, cleaning the dust from the aluminum template. This makes it less likely for workers to slip when handling the template, increasing safety.

[0067] Example 4

[0068] like Figure 5As shown, based on the same concept as Embodiment 1 above, this embodiment also proposes that each of the four support feet 25 is fixedly connected to a fixing block 28 by screws, and the fixing block 28 is internally threaded with a screw rod 27, and the screw rod 27 is threaded with two nuts 29.

[0069] Each of the four fixing blocks 28 has a threaded hole inside, and the screw 27 is threaded into the inside of the threaded hole.

[0070] Since the entire bracket 23 may be unstable during use, the height of the screws 27 can be adjusted by loosening the two nuts 29 so that all four screws 27 are in contact with the ground, making the entire bracket 23 more stable. After adjustment, the nuts 29 are tightened so that the screws 27 will not become loose and easy to shake due to the vibration of the bracket 23.

[0071] The above embodiments are merely preferred technical solutions of the present invention and should not be considered as limitations on the present invention. The scope of protection of the present invention should be limited to the technical solutions described in the claims, including equivalent substitutions of the technical features described in the claims. That is, equivalent substitutions and improvements within this scope are also within the scope of protection of the present invention.

Claims

1. An aluminum formwork handling device, characterized in that: One end of the support (23) is provided with a conveyor belt (10), and the other end of the support (23) is provided with an aluminum template flipping device. The conveyor belt (10) is connected to the aluminum template flipping device. The aluminum template flipping device includes a square plate (41). The end of the square plate (41) is provided with a square groove (36). The inside of the square groove (36) is provided with a sliding top plate (20). The top plate (20) is provided with a third spring (37). One end of the third spring (37) is connected to the limiting ring inside the square groove (36), and the other end is connected to the top plate (20). The end of the top plate (20) is connected to multiple locking blocks (21). The tail end of the support (23) is also provided with a roller (13). The roller (13) has a locking groove (22) that matches the locking block (21). One end of the roller (13) is connected to a servo motor (3). The conveyor belt (10) transports the aluminum template into the square groove (36) of the square plate (41), the top plate (20) pushes the card block (21) into the card slot (22), and the roller (13) drives the aluminum template to flip upward.

2. The aluminum formwork handling device according to claim 1, characterized in that: A rotating frame (1) is provided on the bracket (23), and the roller (13) is rotatably connected to the rotating frame (1). A mounting plate (2) is provided on one side of the rotating frame (1), and a servo motor (3) is provided on the mounting plate (2) and connected to the roller (13).

3. The aluminum formwork handling device according to claim 2, characterized in that: The square plate (41) is provided with sliding shafts on both sides at one end, and the rotating frame (1) is provided with arc grooves (6) on both sides of the plate, with the sliding shafts located inside the arc grooves (6).

4. The aluminum formwork handling device according to claim 2, characterized in that: The bracket (23) is also provided with a U-shaped groove (39), which is located on one side of the end of the square plate (41), and one end of the U-shaped groove (39) is located on the lower surface of the square plate (41); The U-shaped groove (39) is provided with a U-shaped block (38) inside, and a fourth spring (40) is provided between the bottom of the U-shaped block (38) and the bottom of the U-shaped groove (39). The U-shaped block (38) is pressed down at the end of the square plate (41), and the aluminum template slides from the conveyor belt (10) into the square groove (36) of the square plate (41).

5. The aluminum template handling device according to claim 1, characterized in that: The servo motor (3) is connected to the first driven wheel (11) through the second driven wheel (9). The first driven wheel (11) drives the conveyor belt (10) to rotate. Limiting plates (32) are provided on both sides of the upper surface of the conveyor belt (10), and inclined plates (12) are provided at the ends of the limiting plates (32) on both sides. The two inclined plates (12) are open and have a horn structure.

6. The aluminum formwork handling device according to claim 4, characterized in that: The bracket (23) is also provided with side plates (24) on both sides. The side plates (24) are located on one side of the limiting plate (32). The side plates (24) are provided with multiple grooves (30). The grooves (30) are provided with a first spring (31). The end of the first spring (31) is connected to the side of the limiting plate (32).

7. The aluminum formwork handling device according to claim 1, characterized in that: The conveyor belt (10) is also equipped with a cleaning brush (15), and the cleaning brush (15) is equipped with connecting rods (35) at both ends. The connecting rods (35) pass through the through groove (34) of the support plate (14) and are connected to the top rod (19). A second spring (33) is provided between one side of the through groove (34) and one side of the connecting rod (35). A protrusion (16) is provided on one side of the top rod (19). The rotating shaft (18) of the protrusion (16) is rotatably connected to the support rod (17). The support rod (17) is set on the upper surface of the side plate (24). A guide wheel is provided on one side of the push rod (19), and the guide wheel abuts against the surface of the protrusion (16); The rotating shaft (18) of the protrusion (16) is connected to the second driven wheel (9), and the second driven wheel (9) is connected to the servo motor (3) through the first synchronous belt (7).

8. The aluminum template handling device according to claim 1, characterized in that: The bracket (23) is also provided with multiple support feet (25) below, and the lower end of the support feet (25) is provided with rollers (26).

9. The aluminum template handling device according to claim 8, characterized in that: A fixing block (28) is provided on one side of the support foot (25), and at least one nut (29) is provided on the fixing block (28). The axis of the nut (29) is parallel to the support foot (25), and the nut (29) is provided with a screw (27).

Citation Information

Patent Citations

  • Aluminum formwork carrying device for indemnificatory housing

    CN216581959U

  • Blade flipping device

    CN218840880U

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    CN219278707U