A new type of integrated equipment for secondary joists of building formwork
Through the combined design of industrial vacuum cleaner and servo motor drive, the problems of deformation and debris adhesion of cutting blades and subcorrugated cutting equipment in cutting equipment are solved, and efficient cutting and equipment stability are achieved, and the motor life is extended.
Patent Information
- Application Number
- CN202411805714.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-10
- Publication Date
- 2025-08-01
- Estimated Expiration
- 2044-12-10
AI Technical Summary
The existing building formwork secondary corrugated cutting equipment is deformed due to friction and heat generation during the cutting process, and the water film adheres to the secondary corrugated surface after cutting is easily contaminated with debris, affecting the cutting quality and efficiency.
An industrial vacuum cleaner is used to absorb the debris produced by cutting, and dissipate heat from the cutting blade and motor through the air discharged from the vacuum cleaner. Combined with the servo motor, the conveyor roller and the L-shaped plate move, ensuring air circulation and debris collection, and avoiding the adhesion of water film and debris on the secondary corrugated surface after cutting.
Effectively prevent the deformation of the cutting blade and the sub-corner, maintain the cutting quality, avoid the adhesion of water film and debris on the surface of the sub-corner, extend the motor life, and improve cutting efficiency and equipment stability.
Smart Images

Figure CN119426712B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of secondary ribs of building formwork, and specifically to a new type of integrated equipment for secondary ribs of building formwork. Background Art
[0002] The secondary ribs of formwork refer to the formwork components used in building construction. They are usually made of wood or metal and are used to support the shape and size during concrete pouring and bear the lateral expansion pressure generated by the concrete during concrete pouring. The integrated production of secondary ribs generally refers to the integrated design of the main ribs and secondary ribs of the formwork during the design and manufacturing process of building formwork to improve the overall stability and construction efficiency of the formwork. The following are the general steps for the integrated production of secondary ribs: Design: First, according to the structural and dimensional requirements of the building, design the structure and dimensions of the integrated formwork unit, including the shape, size, and quantity of the main rib side plates, main rib end plates, and secondary rib stiffening plates. Material selection: Select suitable materials for production. Generally, in order to ensure the strength and stability of the formwork, steel or other metal materials are selected for production. Cutting and processing: Cut and process the materials according to the requirements of the design drawings to obtain various required components. Assembly: Assemble the cut and processed components to form an integrated formwork unit, which includes welding two main rib side plates and two main rib end plates to form a rectangular frame structure, and then inserting the two ends of multiple secondary rib stiffening plates into the U-shaped hole grooves on the two main rib side plates respectively. Connection: When two integrated formwork units need to be connected to each other, they can be butt-jointed through internal thread sleeves, and the two integrated formwork units can be locked to each other through bolts and lock nuts to achieve seamless connection. Inspection and testing: Finally, inspect and test the produced formwork to ensure that it meets the design requirements and quality standards.
[0003] Currently, when producing secondary battens, the secondary battens need to be cut into dimensions suitable for building templates. However, during the cutting process, due to the operation of the cutting machine, the contact part between the secondary batten and the cutting machine will generate heat through friction under the high-speed rotation of the cutting machine, resulting in a relatively high temperature of the cutting blade of the cutting machine and the secondary batten. And the relatively high temperature will cause the secondary batten to deform, affecting the quality of the produced secondary batten. To solve this problem, the existing integrated equipment for building template secondary battens, through the reciprocating sliding of the piston plate in the piston cylinder, and the water sprayed on the cutting machine and the secondary batten during cutting, the water flow absorbs the temperature and then enters the piston cylinder. Under the action of the piston cylinder, it flows through the heat exchange pipe and is sprayed onto the cutting edge of the cutting blade of the cutting machine through the water spray pipe. On the one hand, it realizes the heating of the water flow sprayed on the clamping part, preventing the temperature of the cutting blade of the cutting machine and the secondary batten from gradually rising as the cutting continues, while the temperature of the water flow sprayed on the clamping part remains unchanged, resulting in the generation of thermal stress when the cutting blade of the cutting machine and the secondary batten come into contact with the water flow with a constant temperature sprayed on the clamping part, leading to the risk of deformation and fracture of the cutting blade of the cutting machine and the secondary batten. On the other hand, the water flow with temperature acting on the cutting edge of the cutting blade of the cutting machine can cause the water flow with temperature to quickly volatilize and gather dust, enabling the dust to be washed down more quickly by the water flow sprayed on the clamping part, ensuring the cleanliness of the cutting blade of the cutting machine, and thus ensuring the quality of the end face of the secondary batten obtained by cutting; however, after cutting, a layer of water will adhere to the outer surface of the secondary batten, and the secondary batten needs to be dried after cutting. Secondly, it is true that the surface of the secondary batten with water is more likely to be contaminated with debris because the water can form a thin film on the surface of the secondary batten, and this thin film can reduce the contact between the surface and the air, making it easier for the debris to adhere to the wet surface. For this reason, we propose a new type of integrated equipment for building template secondary battens. Summary of the Invention
[0004] The object of the present invention is to provide a new type of integrated secondary rib equipment for building formwork, including a lifting frame, on which a cover body is fixedly installed. One end of a first pipeline penetrates through the inner side of the lifting frame and is connected to the inner cavity of the cover body. A plurality of air outlet nozzles are connected to the inner wall of the cover body, and the air outlet nozzles are all aligned with the cutting blades. The first pipeline is connected to a second pipeline, and the air outlet cover at the bottom of the second pipeline is aligned with the motor. A first electromagnetic valve is installed on the first pipeline, and a second electromagnetic valve is installed on the second pipeline. One end of the first pipeline far from the lifting frame is connected to one end of a spring tube, and the other end of the spring tube is connected to an air outlet pipe. The air outlet pipe penetrates through the inner side of the operation cover. The end of the air outlet pipe far from the spring tube is connected to the air outlet end of an industrial vacuum cleaner. The dust suction port of the industrial vacuum cleaner is connected to one end of a suction pipe, and the other end of the suction pipe is connected to a material collecting component. The top of the material collecting component is fixedly installed with a material collecting hopper, and the material collecting hopper is fixedly installed at the bottom of the workbench. A through hole is opened on the workbench. The inner diameter of the air outlet pipe gradually decreases from the end close to the spring tube to the other end. The inner diameter of the suction pipe gradually decreases from the end close to the industrial vacuum cleaner to the other end;
[0005] The material collecting component includes a material collecting frame. The top of the material collecting frame is fixedly connected to the material collecting hopper. The bottom of the material collecting frame is connected to the suction pipe. A filter plate is fixedly installed on the inner wall of the material collecting frame. A pressing block cavity is arranged in the material collecting frame. An L-shaped plate is slidably connected in the material collecting frame. The bottom of the L-shaped plate slidably fits the filter plate. A plurality of filter holes are opened on the L-shaped plate. The top of the L-shaped plate slidably fits a triangular strip, and the triangular strip is fixedly installed on the inner wall of the material collecting frame. The material collecting frame is hinged with a blocking door through a hinge, and two locking buttons are arranged between the material collecting frame and the blocking door.
[0006] Preferably: The motor is fixedly installed on the outer wall of the lifting frame, and the driving end of the motor penetrates through the inner side of the lifting frame and is fixedly connected to the cutting blade.
[0007] Preferably: The operation cover is fixedly installed on the tops of two fixed long plates, and both of the two fixed long plates are fixedly installed on the top of the workbench.
[0008] Preferably: An electric push rod one is fixedly installed on the top of the operation cover. The telescopic end of the electric push rod one slidably penetrates through the inner side of the operation cover and is fixedly connected to the lifting frame. Two guide rods one are fixedly installed on the top of the lifting frame, and both of the two guide rods one slidably penetrate through the inner side of the operation cover.
[0009] Preferably: Two electric push rods two are installed on the outer wall of the operation cover. The telescopic ends of the two electric push rods two both slidably penetrate through the inner side of the operation cover and are respectively fixedly connected to a clamping block. Notches are opened on both of the two clamping blocks. The two clamping blocks are respectively fixedly connected to two guide rods two, and the guide rods two both slidably penetrate through the inner side of the operation cover.
[0010] Preferably, a plurality of conveying rollers are rotatably installed between the two groups of fixed long plates through sealed bearings. A plurality of the conveying rollers are respectively fixedly connected to a group of bevel gears I. A plurality of the bevel gears I are respectively meshed with a group of bevel gears II. A plurality of the bevel gears II are fixedly installed on the outer wall of the rotating shaft. The rotating shaft is rotatably connected to two fixed blocks through bearings. The two fixed blocks are fixedly installed on the top end of the workbench. One end of the rotating shaft is fixedly connected to a servo motor. The servo motor is fixedly installed on the support frame. The support frame is fixedly connected to the outer wall of the workbench.
[0011] Preferably, a group of the bevel gears I is meshed with a bevel gear III. The bevel gear III is fixedly connected to one end of a rotating rod. The rotating rod is rotatably connected to a fixed frame through a bearing. The fixed frame is fixedly connected to the outer wall of the workbench. The fixed frame is rotatably connected to a rotating column through a bearing. One end of the rotating rod far from the bevel gear III and the top end of the rotating column are respectively fixedly installed with a group of bevel gears IV. The two bevel gears IV are meshed with each other.
[0012] Preferably, the bottom end of the rotating column is fixedly connected to a turntable. The turntable is rotatably connected to a connecting plate I. The connecting plate I is rotatably connected to a connecting plate II. One end of the connecting plate II far from the connecting plate I slidably penetrates through the inside of the material receiving frame and is fixedly connected to an L-shaped plate. Two guide rods III slidably penetrate through the inside of the material receiving frame. One end of the guide rod III is fixedly connected to the L-shaped plate.
[0013] Preferably, a plurality of support legs are fixedly installed at the bottom of the workbench.
[0014] Compared with the prior art, the beneficial effects of the present invention are as follows:
[0015] 1. When the present invention is used, the debris generated by cutting can be sucked into the material receiving frame by an industrial vacuum cleaner, and the air discharged by the industrial vacuum cleaner can dissipate heat from the cutting blade, so that the temperature between the cutting blade and the secondary corrugation will not be too high. When the cutting blade dissipates heat, there is no need to spray water, which avoids that a layer of water will adhere to the outer surface of the secondary corrugation after cutting, and it is necessary to dry the secondary corrugation after cutting. At the same time, it avoids that the secondary corrugation surface has water to contaminate the debris. In addition, the air discharged by the industrial vacuum cleaner can also dissipate heat from the motor, avoid the motor temperature from being too high, and extend the service life of the motor.
[0016] 2. When the present invention is in use, the driving of the servo motor can drive the conveying roller to rotate, thereby conveying the secondary corrugated board. During the conveying process, also driven by the servo motor, the L-shaped plate will move back and forth in the material receiving frame. The back-and-forth movement of the material receiving frame can push the debris on the filter plate into the pressing cavity, which can prevent the filter plate from being blocked, ensure air circulation, and thus ensure the normal operation of the industrial vacuum cleaner. At the same time, the L-shaped plate pushes the debris into the pressing cavity. As the debris in the pressing cavity increases, the debris can be gradually squeezed, and then the debris in the pressing cavity is squeezed into blocks. When the servo motor stops working, the L-shaped plate will also stop moving. If the end of the L-shaped plate away from the connecting plate two is in the pressing cavity, since multiple groups of filter holes are provided on the L-shaped plate, air circulation can be ensured through the filter holes. And when the L-shaped plate moves back and forth, the triangular strip can clean the debris on the top of the L-shaped plate to prevent the filter holes from being blocked by the debris. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 is a schematic structural diagram of the present invention;
[0018] Figure 2 is a schematic diagram inside the operation cover;
[0019] Figure 3 is a partial schematic structural diagram of the present invention;
[0020] Figure 4 is a schematic diagram inside the cover body;
[0021] Figure 5 is a schematic diagram inside the material receiving frame;
[0022] Figure 6 is a schematic structural diagram of the L-shaped plate.
[0023] In the figure: 1, lifting frame; 2, cover body; 3, pipe one; 4, air outlet nozzle; 5, cutting blade; 6, pipe two; 7, motor; 8, solenoid valve one; 9, solenoid valve two; 10, flexible pipe; 11, air outlet pipe; 12, operation cover; 13, industrial vacuum cleaner; 14, suction pipe; 15, material receiving assembly; 1501, material receiving frame; 1502, filter plate; 1503, pressing cavity; 1504, L-shaped plate; 1505, blocking door; 1506, filter holes; 1507, triangular strip; 16, aggregate hopper; 17, workbench; 18, through hole; 19, fixed long plate; 20, electric push rod one; 21, guide rod one; 22, electric push rod two; 23, clamping block; 24, guide rod two; 25, conveying roller; 26, bevel gear one; 27, bevel gear two; 28, rotating shaft; 29, fixed block; 30, servo motor; 31, support frame; 32, bevel gear three; 33, rotating rod; 34, fixed frame; 35, rotating column; 36, bevel gear four; 37, turntable; 38, connecting plate one; 39, connecting plate two; 40, guide rod three; 41, support leg. Detailed implementation mode
[0024] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.
[0025] Please refer to Figure 1 - Figure 6 , the figure shows an integrated equipment for secondary ribs of a new type of building formwork of the present invention, including a lifting frame 1, a cover body 2 is fixedly installed on the lifting frame 1, one end of a first pipeline 3 penetrates through the inner side of the lifting frame 1 and is connected to the inner cavity of the cover body 2, a plurality of air outlet nozzles 4 are connected to the inner wall of the cover body 1, and the air outlet nozzles 4 are all aligned with the cutting blades 5. The first pipeline 3 is connected to a second pipeline 6, the air outlet cover at the bottom of the second pipeline 6 is aligned with the motor 7, a first solenoid valve 8 is installed on the first pipeline 3, a second solenoid valve 9 is installed on the second pipeline 6, one end of the first pipeline 3 far from the lifting frame 1 is connected to one end of a spring tube 10, the other end of the spring tube 10 is connected to an air outlet pipe 11, the air outlet pipe 11 penetrates through the inner side of the operation cover 12, and the end of the air outlet pipe 11 far from the spring tube 10 is connected to the air outlet end of an industrial vacuum cleaner 13. The dust suction port 13 of the industrial vacuum cleaner 13 is connected to one end of a suction pipe 14, and the other end of the suction pipe 14 is connected to a material collection component 15. The top of the material collection component 15 is fixedly installed with a material collection hopper 16, the material collection hopper 16 is fixedly installed at the bottom of a workbench 17, a through hole 18 is opened on the workbench 17, the inner diameter of the air outlet pipe 11 gradually decreases from the end close to the spring tube 10 to the other end, and the inner diameter of the suction pipe 14 gradually decreases from the end close to the industrial vacuum cleaner 13 to the other end;
[0026] The material collection component 15 includes a material collection frame 1501, the top of the material collection frame 1501 is fixedly connected to the material collection hopper 16, the bottom of the material collection frame 1501 is connected to the suction pipe 14, a filter plate 1502 is fixedly installed on the inner wall of the material collection frame 1501, a pressing block cavity 1503 is arranged in the material collection frame 1501, an L-shaped plate 1504 is slidably connected in the material collection frame 1501, the bottom of the L-shaped plate 1504 is slidably attached to the filter plate 1502, a plurality of filter holes 1506 are opened on the L-shaped plate 1504, the top of the L-shaped plate 1504 is slidably attached to a triangular strip 1507, the triangular strip 1507 is fixedly installed on the inner wall of the material collection frame 1501, the material collection frame 1501 is hinged with a blocking door 1505 through a hinge, and two groups of locking buckles are arranged between the material collection frame 1501 and the blocking door 1505.
[0027] The motor 7 is fixedly installed on the outer wall of the lifting frame 1, and the driving end of the motor 7 penetrates through the inner side of the lifting frame 1 and is fixedly connected to the cutting blade 5; during use, starting the motor 7 will drive the cutting blade 5 to rotate, and the cutting blade 5 is vertically downward and aligned with the gap between the two conveying rollers 25.
[0028] The operation cover 12 is fixedly installed on the tops of two fixed long plates 19, and the two fixed long plates 19 are both fixedly installed on the top of the workbench 17; this makes the installation structure of the device stable.
[0029] An electric push rod 20 is fixedly installed on the top of the operation cover 12. The telescopic end of the electric push rod 20 slides through the inner side of the operation cover 12 and is fixedly connected to the lifting frame 1. Two guide rods 21 are fixedly installed on the top of the lifting frame 1, and the two guide rods 21 both slide through the inner side of the operation cover 12; during use, starting the electric push rod 20 will drive the lifting frame 1 to move up and down. The up and down movement of the lifting frame 1 will drive the motor 7 and the cutting blade 5 to move up and down, and then the secondary edge of the building formwork can be cut; two guide rods 21 are provided to enable the lifting frame 1 to move up and down stably.
[0030] Two electric push rods 22 are installed on the outer wall of the operation cover 12. The telescopic ends of the two electric push rods 22 both slide through the inner side of the operation cover 12 and are respectively fixedly connected to a clamping block 23. Notches are provided on the two clamping blocks 23. The two clamping blocks 23 are respectively fixedly connected to two guide rods 24, and the guide rods 24 all slide through the inner side of the operation cover 12; during the use process, the secondary edge is conveyed to directly below the cutting blade 5 through the conveying rollers 25. When the length of the secondary edge extending out of the cutting blade 5 meets the size adapted to the building formwork, the operation of the servo motor 30 is stopped to make the conveying rollers 25 stop conveying work, and then the two electric push rods 22 are started to drive the two clamping blocks 23 to approach each other, and then the secondary edge can be clamped.
[0031] Between two groups of the fixed long plates 19, a plurality of conveying rollers 25 are rotatably installed through sealed bearings. A plurality of the conveying rollers 25 are respectively fixedly connected to a group of first bevel gears 26. A plurality of the first bevel gears 26 are respectively meshed with a group of second bevel gears 27. A plurality of the second bevel gears 27 are fixedly installed on the outer wall of a rotating shaft 28. The rotating shaft 28 is rotatably connected to two fixed blocks 29 through bearings. Two groups of the fixed blocks 29 are fixedly installed on the top end of a workbench 17. One end of the rotating shaft 28 is fixedly connected to a servo motor 30. The servo motor 30 is fixedly installed on a support frame 31. The support frame 31 is fixedly connected to the outer wall of the workbench 17. When in use, starting the servo motor 30 will drive the rotating shaft 28 to rotate. The rotation of the rotating shaft 28 will drive a plurality of second bevel gears 27 to rotate. The rotation of a plurality of the second bevel gears 27 will drive a plurality of first bevel gears 26 to rotate. The rotation of the first bevel gears 26 will drive the conveying rollers 25 to rotate, so as to convey the secondary ribs of the building formwork.
[0032] One group of the first bevel gears 26 is meshed with a third bevel gear 32. The third bevel gear 32 is fixedly connected to one end of a rotating rod 33. The rotating rod 33 is rotatably connected to a fixed frame 34 through a bearing. The fixed frame 34 is fixedly connected to the outer wall of the workbench 17. The fixed frame 34 is rotatably connected to a rotating column 35 through a bearing. One end of the rotating rod 33 far from the third bevel gear 32 and the top end of the rotating column 35 are respectively fixedly installed with a group of fourth bevel gears 36. The two groups of the fourth bevel gears 36 are meshed with each other. When in use, the rotation of the first bevel gear 26 will drive the third bevel gear 32 to rotate. The rotation of the third bevel gear 32 will drive the rotating rod 33 to rotate. The rotation of the rotating rod 33 and under the transmission of the two mutually meshed fourth bevel gears 36, will drive the rotating column 35 to rotate.
[0033] The bottom end of the rotating column 35 is fixedly connected to a turntable 37. The turntable 37 is rotatably connected to a first connecting plate 38. The first connecting plate 38 is rotatably connected to a second connecting plate 39. One end of the second connecting plate 39 far from the first connecting plate 38 slides through the inside of a material receiving frame 1501 and is fixedly connected to an L-shaped plate 1504. Two guide rods three 40 slide through the inside of the material receiving frame 1501. One end of the guide rod three 40 is fixedly connected to the L-shaped plate 1504. When in use, the rotation of the rotating column 35 will drive the turntable 37 to rotate. The rotation of the turntable 37 and under the action of the first connecting plate 38, will drive the second connecting plate 39 to move back and forth. The back-and-forth movement of the second connecting plate 39 will drive the L-shaped plate 1504 to move back and forth in the material receiving frame 1501.
[0034] A plurality of support legs 41 are fixedly installed at the bottom of the workbench 17. The workbench 17 can be strongly supported by the plurality of support legs 41.
[0035] Working principle of the present invention: During use, place the secondary rib of the building formwork on the top of the conveying roller 25. Starting the servo motor 30 will drive the rotation of the rotating shaft 28. The rotation of the rotating shaft 28 will drive the rotation of multiple sets of bevel gears II 27. The rotation of multiple sets of bevel gears II 27 will drive the rotation of multiple sets of bevel gears I 26. The rotation of the bevel gear I 26 will drive the rotation of the conveying roller 25, and thus the secondary rib of the building formwork can be conveyed. The secondary rib is conveyed to directly below the cutting blade 5 by the conveying roller 25. When the length of the secondary rib extending out of the cutting blade 5 conforms to the size adapted to the building formwork, stop the operation of the servo motor 30 to make the conveying roller 25 stop the conveying work. Then start two sets of electric push rods II 22 to drive two sets of clamping blocks 23 to approach each other, and thus the secondary rib can be clamped. Then start the motor 7 to drive the rotation of the cutting blade 5. At the same time, start the electric push rod I 20 to drive the lifting frame 1 to move downward. The downward movement of the lifting frame 1 will drive the motor 7 and the cutting blade 5 to move downward, and thus the secondary rib of the building formwork can be cut.
[0036] During the cutting process, start the industrial vacuum cleaner 13. Through the suction pipe 14, the receiving frame 1501, the collecting hopper 16 and the through hole 18, the debris generated by cutting can be absorbed. The absorbed debris will enter the receiving frame 1501 and fall on the top of the filter plate 1502. During the process of absorbing the debris, air enters the interior of the industrial vacuum cleaner 13 through the suction pipe 14. Since the inner diameter of the suction pipe 14 gradually decreases from the end close to the industrial vacuum cleaner 13 to the other end, the temperature of the air entering the interior of the industrial vacuum cleaner 13 will become lower. Then the air in the industrial vacuum cleaner 13 will be discharged from the air outlet pipe 11. The inner diameter of the air outlet pipe 11 gradually decreases from the end close to the bellows 10 to the other end, and the temperature of the discharged air will be further reduced.
[0037] The air discharged from the air outlet pipe 11 will enter the inner cavity of the cover body 2 through the bellows 10 and the pipe I 3, and then be discharged from the air outlet nozzle 4. The air discharged from the air outlet nozzle 4 will blow on the cutting blade 5, and the air temperature is relatively low, which can reduce the hot air around the cutting blade 5. At the same time, the air discharged from the air outlet pipe 11 can also pass through the bellows 10 and the pipe I 3, and then be discharged from the pipe II 6. The air will be discharged on the motor 7, and the air temperature is relatively low, which can reduce the hot air around the motor 7 and accelerate the heat dissipation of the motor 7.
[0038] During use, the rotation of bevel gear one 26 drives the rotation of bevel gear three 32. The rotation of bevel gear three 32 drives the rotation of the rotating rod 33. The rotating rod 33 rotates and, under the transmission of two mutually meshing bevel gears four 36, drives the rotation of the rotating column 35. The rotation of the rotating column 35 drives the rotation of the turntable 37. The rotation of the turntable 37, under the action of connecting plate one 38, drives the reciprocating movement of connecting plate two 39. The reciprocating movement of connecting plate two 39 drives the reciprocating movement of L-shaped plate 1504 within the material receiving frame 1501. The reciprocating movement of the material receiving frame 1501 can push the debris on the filter plate 1502 into the pressing cavity 1503, preventing the filter plate 1502 from being blocked and ensuring air circulation. At the same time, L-shaped plate 1504 pushes the debris into the pressing cavity 1503. As the debris in the pressing cavity 1503 increases, the debris can be gradually squeezed, and then the debris in the pressing cavity 1503 is squeezed into blocks; when the servo motor 30 stops working, L-shaped plate 1504 also stops working. If the end of L-shaped plate 1504 away from connecting plate two 39 is in the pressing cavity 1503, due to multiple filter holes 1506 being provided on L-shaped plate 1504, air circulation can be ensured through the filter holes 1506. And when L-shaped plate 1504 moves back and forth, the triangular strip 1507 can clean the debris on the top of L-shaped plate 1504, preventing the filter holes 1506 from being blocked by debris; when the work is completed, the blocking door 1505 can be opened, and then the squeezed debris blocks can be taken out.
[0039] It should be noted that when the device of the present invention is in use, a suitable external power supply and intelligent controller are required. The operation of the servo motor 30, electric push rod two 22, motor 7, industrial vacuum cleaner 13, and electric push rod two 22, etc. is controlled through the externally connected intelligent controller, and the externally connected power supply provides power support for the operation of the servo motor 30, electric push rod two 22, motor 7, industrial vacuum cleaner 13, and electric push rod two 22, etc.
[0040] The above content further elaborates on the present invention in combination with specific embodiments. It cannot be determined that the specific implementation of the present invention is only limited to these descriptions. For those of ordinary skill in the technical field to which the present invention pertains, without departing from the concept of the present invention, several simple deductions or substitutions can still be made, which should all be regarded as belonging to the protection scope determined by the claims submitted for the present invention.
Claims
1. A new type of integrated equipment for secondary joists of building formwork, including a lifting frame, characterized in that: A cover body is fixedly installed on the lifting frame. One end of the first pipeline penetrates through the inner side of the lifting frame and is connected to the inner cavity of the cover body. A plurality of air outlet nozzles are connected to the inner wall of the cover body, and the air outlet nozzles are all aligned with the cutting blades. The first pipeline is connected to a second pipeline, and the air outlet cover at the bottom of the second pipeline is aligned with the motor. A first solenoid valve is installed on the first pipeline, and a second solenoid valve is installed on the second pipeline. One end of the first pipeline far from the lifting frame is connected to one end of a flexible pipe, and the other end of the flexible pipe is connected to an air outlet pipe. The air outlet pipe penetrates through the inner side of the operation cover. The end of the air outlet pipe far from the flexible pipe is connected to the air outlet end of an industrial vacuum cleaner. The dust suction port of the industrial vacuum cleaner is connected to one end of a suction pipe, and the other end of the suction pipe is connected to a material receiving assembly. A collecting hopper is fixedly installed at the top of the material receiving assembly, and the collecting hopper is fixedly installed at the bottom of the workbench. A through hole is opened on the workbench. The inner diameter of the air outlet pipe gradually decreases from the end close to the flexible pipe to the other end. The inner diameter of the suction pipe gradually decreases from the end close to the industrial vacuum cleaner to the other end. The material receiving assembly includes a material receiving frame. The top of the material receiving frame is fixedly connected to the collecting hopper. The bottom of the material receiving frame is connected to the suction pipe. A filter plate is fixedly installed on the inner wall of the material receiving frame. A pressing block cavity is arranged in the material receiving frame. An L-shaped plate is slidably connected in the material receiving frame. The bottom of the L-shaped plate slidably fits the filter plate. A plurality of filter holes are opened on the L-shaped plate. The top of the L-shaped plate slidably fits a triangular strip, and the triangular strip is fixedly installed on the inner wall of the material receiving frame. The material receiving frame is hinged with a blocking door through a hinge. Two locking buttons are arranged between the material receiving frame and the blocking door. The L-shaped plate pushes the debris into the pressing block cavity. As more and more debris accumulates in the pressing block cavity, the debris can be gradually squeezed, and then the debris in the pressing block cavity is squeezed into blocks.
2. A novel building formwork secondary rib integrated device according to claim 1, characterized in that: The motor is fixedly installed on the outer wall of the lifting frame. The driving end of the motor penetrates through the inner side of the lifting frame and is fixedly connected to the cutting blade.
3. A novel integrated equipment for secondary joists of building formwork according to claim 1, characterized in that: The operation cover is fixedly installed on the tops of two fixed long plates, and the two fixed long plates are both fixedly installed on the top of the workbench.
4. A novel integrated equipment for secondary joists of building formwork according to claim 1, characterized in that: An electric push rod one is fixedly installed on the top of the operation cover. The telescopic end of the electric push rod one slidably penetrates through the inner side of the operation cover and is fixedly connected to the lifting frame. Two guide rods one are fixedly installed at the top of the lifting frame, and the two guide rods one both slidably penetrate through the inner side of the operation cover.
5. A novel integrated equipment for secondary joists of building formwork according to claim 1, characterized in that: Two electric push rods two are installed on the outer wall of the operation cover. The telescopic ends of the two electric push rods two both slidably penetrate through the inner side of the operation cover and are respectively fixedly connected to a clamping block. Notches are opened on the two clamping blocks. The two clamping blocks are respectively fixedly connected to two guide rods two, and the guide rods two both slidably penetrate through the inner side of the operation cover.
6. A novel integrated secondary rib and formwork equipment according to claim 1, characterized in that: A plurality of conveying rollers are rotatably installed between the two fixed long plates through sealed bearings. The plurality of conveying rollers are respectively fixedly connected to a bevel gear one. The plurality of bevel gear ones respectively mesh with a bevel gear two. The plurality of bevel gear twos are all fixedly installed on the outer wall of a rotating shaft. The rotating shaft is rotatably connected to two fixed blocks through bearings. The two fixed blocks are both fixedly installed on the top of the workbench. One end of the rotating shaft is fixedly connected to a servo motor, and the servo motor is fixedly installed on a support frame. The support frame is fixedly connected to the outer wall of the workbench.
7. A novel integrated equipment for secondary joists of building formwork according to claim 6, characterized in that: A set of bevel gears meshes with bevel gear three. One end of the rotating rod is fixedly connected to bevel gear three. The rotating rod is rotatably connected to the fixed frame through a bearing. The fixed frame is fixedly connected to the outer wall of the workbench. The fixed frame is rotatably connected to the rotating column through a bearing. One end of the rotating rod away from bevel gear three and the top end of the rotating column are respectively fixedly installed with a set of bevel gears four. The two sets of bevel gears four mesh with each other.
8. A novel integrated equipment for secondary ribs of building formwork according to claim 7, characterized in that: The bottom end of the rotating column is fixedly connected to the turntable. The turntable is rotatably connected to connecting plate one. Connecting plate one is rotatably connected to connecting plate two. One end of connecting plate two away from connecting plate one slides through the inside of the material receiving frame and is fixedly connected to the L-shaped plate. Two sets of guide rods three slide through the inside of the material receiving frame. One end of the guide rod three is fixedly connected to the L-shaped plate.
9. A novel integrated equipment for secondary ribs of building formwork according to claim 7, characterized in that: Multiple sets of support legs are fixedly installed at the bottom of the workbench.
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