Curtain wall structure and production processing equipment
By setting up a double-layer sunshade design in the curtain wall structure and using Low-E insulating glass, combined with dedicated processing equipment to cut the square tube body, the problem of heat accumulation in the curtain wall structure under strong sunlight is solved, and indoor comfort and energy-saving effects are achieved.
Patent Information
- Application Number
- CN202510789630.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-13
- Publication Date
- 2025-09-05
- Estimated Expiration
- 2045-06-13
AI Technical Summary
The existing curtain wall structure lacks effective sunshade design, which causes the indoor temperature to rise under strong sunlight and increases the air conditioning load.
A double-layer sunshade design with upper and lower triangular wings is set in the curtain wall structure, combined with Low-E insulating glass. The length of the sunshade is optimized through site sunlight analysis and thermal calculations to reduce heat accumulation. At the same time, processing equipment is used to cut the square tube body, including the coordinated use of drive mechanism and feeding assembly.
Effectively reduce heat accumulation, improve indoor comfort, reduce air conditioning load, and ensure building safety and aesthetics, while achieving the building's green energy-saving goals.
Smart Images

Figure CN120291642B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of building structures, and in particular to a curtain wall structure and processing equipment for its production. Background Art
[0002] With the current global emphasis on environmental protection, green development, and low-carbon emissions, the construction industry is gradually transitioning towards new, environmentally friendly, green, and low-carbon buildings, which has become a mainstream trend. Energy-saving curtain wall structural design plays a crucial role in this transformation. By incorporating innovative technologies and materials, these designs not only significantly improve a building's energy efficiency and reduce its environmental impact, but also enhance its aesthetics and living comfort, meeting market demand for sustainable building solutions.
[0003] Patent application publication number CN111576704A discloses a curtain wall structure comprising a horizontally arranged crossbeam and an auxiliary frame fixed to the upper surface of the crossbeam. The crossbeam is secured to the wall surface via a positioning seat. An upper curtain wall panel is positioned above the crossbeam, its upper end fixed relative to the crossbeam, while its lower end slides and seals against the crossbeam. A movable curtain wall panel is positioned below the crossbeam. A pivotable cover panel is positioned on the outer side of the intersection of the upper and movable curtain wall panels. The crossbeam is equipped with a slider that moves up and down. Thermal expansion of the upper curtain wall panel pushes the slider downward. The slider is equipped with a push rod acting on the cover panel and a lever acting on the movable curtain wall panel. The downward movement of the slider drives the cover panel and the movable curtain wall panel to rotate outward. A slider spring is provided on the crossbeam to return the slider upward. This solution effectively mitigates warping caused by thermal expansion and contraction, improves ventilation capacity during high thermal expansion, and ensures the service life of the curtain wall.
[0004] However, the above-mentioned curtain wall structure has certain defects during use. For example, existing ordinary curtain walls often lack effective sunshade design, which leads to increased indoor temperature under strong sunlight and increased air conditioning load. Summary of the Invention
[0005] The present invention provides a curtain wall structure and production processing equipment, which can solve the problem in the prior art that ordinary curtain walls often lack effective sunshade design, resulting in increased indoor temperature and increased air conditioning load under strong sunlight.
[0006] A curtain wall structure includes multiple connecting frames fixed to the building floor, each of the connecting frames is fixed with Low-E insulating glass, an upper triangular flying wing and a lower triangular flying wing are fixedly provided on one side of each connecting frame, fireproof rock wool is fixed on one side of the connecting frame, one side of the lower end surface of the fireproof rock wool is fixedly connected to the lower triangular flying wing, an aluminum veneer is fixed to the lower surface of the connecting frame, one end of the aluminum veneer is fixedly connected to the lower triangular flying wing, the upper triangular flying wing and the lower triangular flying wing have the same structural appearance, the upper triangular flying wing includes a triangular square tube frame, a honeycomb panel is fixed on the upper surface of the triangular square tube frame, an arc profile is fixed on one end of the triangular square tube frame, and a connecting aluminum plate is fixed to the lower surface of the triangular square tube frame.
[0007] A processing equipment for curtain wall structure production is used for the production and processing of the above-mentioned curtain wall structure, including a workbench, a cavity is opened in the workbench, a processing groove is opened on the upper end surface of the workbench and penetrates into the cavity, a mounting frame is movably arranged in the cavity, a mounting seat is rotatably arranged in the mounting frame, a mounting groove is opened on the upper end surface of the mounting seat, a circular saw blade is rotatably arranged in the mounting groove, a working motor for cooperating with the circular saw blade is fixed on one side of the mounting seat, connecting columns are fixed at both ends of the mounting seat, one end of each connecting column rotates through the mounting frame and is fixedly sleeved with a gear ring, a driving mechanism 1 for cooperating with the gear ring is provided on the mounting frame, a driving mechanism 2 for cooperating with the mounting frame is provided in the cavity, a feeding assembly is provided on the workbench, and a waste collection assembly is provided on the workbench.
[0008] As a further technical solution of the present invention, the driving mechanism includes two electric push rods, which are respectively fixed on both sides of the mounting frame. A U-shaped frame is fixed to the end of each electric push rod, and a rack is fixed to the inner top of each U-shaped frame, which is meshed with the gear ring. Two T-shaped sliders are fixed on one side of each U-shaped frame close to the mounting frame, and T-shaped slide grooves are provided on both sides of the mounting frame for use with the T-shaped sliders, and the T-shaped sliders are slidably arranged in the T-shaped slide grooves.
[0009] As a further technical solution of the present invention, the second driving mechanism includes two electric guide rails 1, each of which is movably provided with an electric slider 1, and the mounting frame is fixed to the upper end surface of the electric slider 1.
[0010] As a further technical solution of the present invention, the waste collection assembly includes a sliding base fixed to the bottom of the cavity, a collection frame 1 is movably provided on the upper end surface of the sliding base, side baffles 1 used in conjunction with the collection frame 1 are fixed on both sides of the sliding base, a side through groove that penetrates into the cavity is provided on one side of the workbench, an opening and closing door is rotatably provided on the side through groove, an elastic unit used in conjunction with the collection frame 1 is provided between the opening and closing door and the inner wall of the cavity, a driving mechanism 3 used in conjunction with the collection frame 1 is provided on the mounting frame, a blanking through groove used in conjunction with the collection frame 1 is provided on the upper end surface of the workbench, a fixed limit baffle is fixed on the upper end surface of the workbench, and an electric push rod 4 is also fixed on the upper end surface of the workbench, and a movable limit baffle is fixed at the end of the telescopic end of the electric push rod 4.
[0011] As a further technical solution of the present invention, the elastic unit includes a fixed plate fixed to the upper end surface of the sliding base, a translation plate movably provided on one side of the fixed plate, two guide columns are symmetrically fixed on the side of the translation plate close to the fixed plate, one end of each guide column movably passes through the fixed plate and fixes a limiting block, two springs 1 are fixed between the fixed plate and the translation plate, spring 1 is movably sleeved on the outer surface of the guide column, and two springs 2 are symmetrically fixed on the side of the opening and closing door close to the collection frame 1.
[0012] As a further technical solution of the present invention, the driving mechanism three includes a U-shaped frame two fixed to the lower end surface of the mounting frame, a metal plate is rotatably arranged inside the U-shaped frame two, and two side grooves are symmetrically provided on the inner wall of the U-shaped frame two, and an electromagnet is fixed in each side groove.
[0013] As a further technical solution of the present invention, the feeding assembly includes an electric guide rail 2 fixed to the upper end surface of the workbench, an electric slider 2 is movably provided on the electric guide rail 2, an L-shaped push plate is fixed to the upper end surface of the electric slider 2, two electric push rods 2 are symmetrically fixed to the upper end surface of the workbench, and a positioning push plate is fixed to the end of the telescopic end of each electric push rod 2, an L-shaped frame is fixed to the upper end surface of the workbench, an electric push rod 3 is fixed and penetrated through the upper end surface of the L-shaped frame, and a positioning pressure plate is fixed to the end of the telescopic end of the electric push rod 3.
[0014] As a further technical solution of the present invention, a material guide plate is rotatably provided on one side of the workbench, side baffles 2 are fixed on both sides of the material guide plate, an end stop is fixed between the two side baffles 2, and a driving mechanism 4 is provided on the workbench for cooperating with the rotation of the material guide plate.
[0015] As a further technical solution of the present invention, the driving mechanism 4 includes an extension seat fixed on the side wall of the workbench, the upper end surface of the extension seat is fixed with a lower connecting ear, the lower end surface of the guide plate is fixed with an upper connecting ear, and a hydraulic push rod is hinged between the upper connecting ear and the lower connecting ear.
[0016] Beneficial effects of the present invention:
[0017] 1. The curtain wall structure of the present application is provided with upper triangular flying wings and lower triangular flying wings on the connecting frame. Through this double-layer sunshade design, it effectively provides sunshade for the building, reduces heat accumulation, improves indoor comfort, reduces air conditioning load, and ensures building safety and aesthetics.
[0018] 2. When in use, place the square tube body to be cut on the upper end surface of the workbench, and then push the square tube body to be processed through the feeding assembly, so that one end of the square tube body is translated to the position to be cut, and then under the action of the driving mechanism one, the two gear rings drive the connecting column to deflect a certain angle, thereby driving the mounting seat and the circular saw blade to deflect a certain angle, and then the working motor drives the circular saw blade to rotate, and then under the action of the driving mechanism two, the mounting frame, the mounting seat and the circular saw blade are driven to translate. In this process, the circular saw blade cuts the end of the square tube body, thereby cutting one end of the square tube body into the required bevel shape, and then the driving mechanism two drives the mounting frame, the mounting seat and the circular saw blade to translate and reset. At this time, under the action of the driving mechanism one, the mounting seat and the circular saw blade are prompted to deflect and reset, so that the circular saw blade is in a vertical state, and then the feeding assembly sends the square tube body to be processed It is pushed a distance in the direction close to the circular saw blade, and then the driving mechanism 2 drives the mounting frame, the mounting seat and the circular saw blade to move horizontally again. During this process, the circular saw blade vertically cuts the square tube body, so that the cut square tube body meets the required length. Then the driving mechanism 2 drives the mounting frame, the mounting seat and the circular saw blade to move horizontally and reset again. At this time, the feeding assembly pushes the uncut square tube body in the rear section to move horizontally, and cooperates with the circular saw blade to repeat the above-mentioned cutting operation. During the translation process, the uncut square tube body in the rear section pushes the cut square tube body to continue to move horizontally. During the translation process, the cut square tube body pushes the waste cut at the end to continue to move horizontally until the cut waste falls into the waste collection assembly, which is convenient for waste collection. When the end of the square tube body is sawed into an oblique shape, there is no need to adjust the placement angle of the square tube body, which is easy to use.
[0019] 3. Due to the large size of the collection frame 1, cutting chips and cutting waste will fall into the collection frame 1. During the process of the installation frame driving the mounting seat and the circular saw blade to translate the other tube body for cutting processing, the driving mechanism 3 does not work. When the installation frame completes a single cutting process with the mounting seat and the circular saw blade and performs the reset translation, the driving mechanism 3 is set to drive the collection frame 1 containing waste and chips to translate. During the translation process, the collection frame 1 will squeeze the elastic unit. When the driving mechanism 3 releases the control of the collection frame 1, the collection frame 1 will quickly reciprocate and translate several times under the action of the elastic unit, thereby shaking the cutting chips and cutting waste in the collection frame 1 evenly, avoiding a large gap between the cutting chips and cutting waste, and reducing the capacity of the collection frame 1.
[0020] 4. When the mounting frame moves with the mounting seat and the circular saw blade to saw the other tube body, the electromagnet does not work. At this time, the metal plate can rotate, prompting the metal plate to pass over one side wall of the collection frame. After the metal plate passes over the metal plate, it is still in a vertical downward state. When the collection frame needs to be shaken, the electromagnet is energized to work, adsorbing the side wall of the metal plate, thereby limiting and fixing the metal plate. When the mounting frame moves with the mounting seat and the circular saw blade to reset, one side of the metal plate will contact the outer wall of the collection frame, thereby driving the collection frame to move together. When the mounting frame is reset to the specified position, the spring is squeezed and shortened, storing elastic potential energy, and then the electromagnet is powered off, releasing the adsorption and fixation of the metal plate. At this time, the metal plate no longer resists the collection frame. At this time, under the action of the elastic potential energy of the spring, the collection frame is prompted to move toward the direction close to the opening and closing door. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] Figure 1 This is a schematic diagram of the connection between the connecting frame and the upper triangular flying wing in the present invention;
[0022] Figure 2 Schematic diagram of the connection between the triangular square tube frame and the honeycomb panel in the present invention Figure 1 ;
[0023] Figure 3 Schematic diagram of the connection between the triangular square tube frame and the honeycomb panel in the present invention Figure 2 ;
[0024] Figure 4 Schematic diagram of the connection between the workbench and the electric guide rail 2 in the present invention Figure 1 ;
[0025] Figure 5 Schematic diagram of the connection between the workbench and the electric guide rail 2 in the present invention Figure 2 ;
[0026] Figure 6Schematic diagram of the internal structure of the cavity in the present invention Figure 1 ;
[0027] Figure 7 Schematic diagram of the internal structure of the cavity in the present invention Figure 2 ;
[0028] Figure 8 This is a schematic diagram of the connection between the mounting frame and the electric guide rail 1 in the present invention;
[0029] Figure 9 Schematic diagram of the connection between the mounting frame and the mounting seat in the present invention Figure 1 ;
[0030] Figure 10 Schematic diagram of the connection between the mounting frame and the mounting seat in the present invention Figure 2 ;
[0031] Figure 11 This is a schematic diagram of the connection between the U-shaped frame 1 and the T-shaped slider in the present invention;
[0032] Figure 12 This is a schematic diagram of the connection between the U-shaped frame 2 and the electromagnet in the present invention;
[0033] Figure 13 It is a schematic diagram of the connection between the sliding base and the side baffle 1 in the present invention.
[0034] In the figure: 1. Building floor; 2. Connecting frame; 3. Low-E insulating glass; 4. Upper triangular wing; 5. Lower triangular wing; 6. Fireproof rock wool; 7. Aluminum veneer; 8. Triangular square tube frame; 9. Honeycomb panel; 10. Curved profile; 11. Connecting aluminum plate; 12. Workbench; 13. Cavity; 14. Processing slot; 15. Mounting frame; 16. Mounting seat; 17. Mounting slot; 18. Circular saw blade; 19. Working motor; 20. Connecting column; 21. Gear ring; 22. Electric push rod (1); 23. U-shaped frame (1); 24. Rack; 25. T-shaped slider; 26. Electric guide rail (1); 27. Sliding base; 28. Collection frame (1); 29. Side baffle (1); 30. Opening and closing door; 31. Fixed plate; 32. Sliding plate; 33. Guide column; 34. Limit block; 35. Spring one; 36. Spring two; 37. U-shaped frame two; 38. Metal plate; 39. Electromagnet; 40. Electric guide rail two; 41. Electric slider two; 42. L-shaped push plate; 43. Electric push rod two; 44. Positioning push plate; 45. L-shaped frame; 46. Electric push rod three; 47. Positioning pressure plate; 48. Guide plate; 49. Side baffle two; 50. End block; 52. Extension seat; 53. Lower connecting ear; 54. Upper connecting ear; 55. Hydraulic push rod; 56. Blanking groove; 57. Square tube body; 58. Fixed limit baffle; 59. Electric push rod four; 60. Movable limit baffle. DETAILED DESCRIPTION
[0035] The specific embodiments of the present invention are described in detail below, but it should be understood that the protection scope of the present invention is not limited by the specific embodiments.
[0036] Reference Figure 1-Figure 3 A curtain wall structure comprises a plurality of connecting frames 2 fixed on a building floor 1, each connecting frame 2 is fixed with a LOW-E insulating glass 3, an upper triangular flying wing 4 and a lower triangular flying wing 5 are fixed on one side of each connecting frame 2, a fireproof rock wool 6 is fixed on one side of the connecting frame 2, and one side of the lower end face of the fireproof rock wool 6 is fixedly connected to the lower triangular flying wing 5, an aluminum single plate 7 is fixed on the lower surface of the connecting frame 2, and one end of the aluminum single plate 7 is fixedly connected to the lower triangular flying wing 5, the upper triangular flying wing 4 and the lower triangular flying wing 5 have the same structural shape, and the upper triangular flying wing 4 and the lower triangular flying wing 5 are different in size, the upper triangular flying wing 4 comprises a triangular square tube frame 8, a honeycomb panel 9 is fixed on the upper surface of the triangular square tube frame 8, an arc profile 10 is fixed on one end of the triangular square tube frame 8, and a connecting aluminum plate 11 is fixed to the lower surface of the triangular square tube frame 8.
[0037] The construction and installation of curtain wall structures are existing technologies.
[0038] The connecting frame 2 is an existing technology, and the installation and connection between the connecting frame 2 and the building floor 1 is a conventional technical means in this field. The connecting frame 2 is provided with an installation connector for the installation and fixation of the LOW-E insulating glass 3, and the installation of the connecting frame 2 and the LOW-E insulating glass 3 is an existing technology.
[0039] The sizes of the upper triangular flying wing 4 and the lower triangular flying wing 5 can be customized according to actual conditions.
[0040] By comprehensively applying the methods of site sunlight analysis and building thermal calculation, the impact of different shading sizes on indoor temperature is systematically evaluated. Based on the analysis results, the most suitable shading board length is customized for rooms with different temperature requirements. However, for specific areas that require longer shading boards, if the shading boards are designed to be too long, they are prone to large deflection changes and vibrations under the action of their own weight and external loads, especially under wind loads or dynamic loads, which may lead to structural fatigue and premature aging, which not only poses a threat to the safety of the building, but also seriously affects the aesthetic effect of the building. In order to solve this problem and take into account the requirements of structural stability and aesthetics, the curtain wall structure of this application is provided with an upper triangular wing 4 and a lower triangular wing 5 on the connecting frame 2. Through this double-layer shading design, the building is effectively shaded, heat accumulation is reduced, indoor comfort is improved, air-conditioning load is reduced, and building safety and aesthetics are ensured.
[0041] By establishing a building model and setting CFD model parameters such as direct solar thermal radiation according to the site sunshine analysis, the indoor ambient temperature changes are simulated and analyzed. At the same time, the optimal Low-E insulating glass 3 is selected through thermal calculations. Low-E insulating glass 3 is an existing technology.
[0042] LOW-E insulating glass 3 effectively reduces heat transfer between indoor and outdoor, reduces energy consumption of air conditioning and heating, reflects indoor heat, reduces heat loss, and allows sunlight to pass through, improving indoor thermal comfort.
[0043] This application scheme improves the energy efficiency of the building, adds a unique decorative effect to the building's facade, meets the dual pursuit of aesthetics and functionality in modern architecture, and achieves the green energy-saving goals of the building.
[0044] The triangular square tube frame 8 is formed by welding a plurality of sawn square tube bodies 57 .
[0045] Reference Figures 1-13 The present invention also provides a processing equipment for the production of curtain wall structures, which is applied to the production and processing of the above-mentioned curtain wall structures, including a workbench 12, a cavity 13 is opened in the workbench 12, and a processing groove 14 is opened on the upper end surface of the workbench 12 to penetrate into the cavity 13, a mounting frame 15 is movably arranged in the cavity 13, a mounting seat 16 is rotatably arranged in the mounting frame 15, and a mounting groove 17 is opened on the upper end surface of the mounting seat 16, and a circular saw blade 18 is rotatably arranged in the mounting groove 17, a working motor 19 used in conjunction with the circular saw blade 18 is fixed on one side of the mounting seat 16, connecting columns 20 are fixed at both ends of the mounting seat 16, one end of each connecting column 20 rotates through the mounting frame 15 and is fixedly sleeved with a gear ring 21, a driving mechanism 1 used in conjunction with the gear ring 21 is provided on the mounting frame 15, a driving mechanism 2 used in conjunction with the mounting frame 15 is provided in the cavity 13, a feeding assembly is provided on the workbench 12, and a waste collection assembly is provided on the workbench 12.
[0046] When the present application scheme is in use, the square tube body 57 to be cut is placed on the upper end surface of the workbench 12, and then the square tube body 57 to be processed is pushed by the feeding assembly, so that one end of the square tube body 57 is translated to the position to be cut, and then under the action of the driving mechanism 1, the two gear rings 21 drive the connecting column 20 to deflect a certain angle, thereby driving the mounting seat 16 and the circular saw blade 18 to deflect a certain angle, and then the working motor 19 drives the circular saw blade 18 to rotate, and then under the action of the driving mechanism 2, the mounting frame 15, the mounting seat 16 and the circular saw blade 18 are driven to translate. In this process, the circular saw blade 18 cuts the end of the square tube body 57, thereby cutting one end of the square tube body 57 into the required bevel shape, and then the driving mechanism 2 drives the mounting frame 15, the mounting seat 16 and the circular saw blade 18 to translate and reset. At this time, under the action of the driving mechanism 1, the mounting seat 16 and the circular saw blade 18 are driven to deflect and reset, so that the circular saw blade 18 is in a vertical state, and then the feeding assembly sends the square tube body 57 to be processed. The square tube body 57 is pushed toward the direction close to the circular saw blade 18 for a distance, and then the driving mechanism 2 drives the mounting frame 15, the mounting seat 16 and the circular saw blade 18 to translate again. During this process, the circular saw blade 18 vertically cuts the square tube body 57, so that the cut square tube body 57 meets the required length. Then the driving mechanism 2 drives the mounting frame 15, the mounting seat 16 and the circular saw blade 18 to translate and reset again. At this time, the feeding assembly pushes the rear section of the uncut square tube body 57 to translate, and cooperates with the circular saw blade 18 to repeat the above-mentioned cutting operation. The rear section of the uncut square tube body 57 pushes the cut square tube body 57 to continue to translate during the translation process. The cut square tube body 57 pushes the waste cut at the end to continue to translate during the translation process until the cut waste falls into the waste collection assembly, which is convenient for waste collection. When the end of the square tube body 57 is sawed into an oblique shape, there is no need to adjust the placement angle of the square tube body 57, which is convenient to use.
[0047] The control of the distance that the feeding assembly pushes the square tube body 57 to be processed each time is a prior art.
[0048] Reference Figure 4 、 Figure 6 、 Figure 8 and Figure 9 The driving mechanism includes two electric push rods 22, which are respectively fixed on both sides of the mounting frame 15. A U-shaped frame 23 is fixed to the end of each electric push rod 22, and a rack 24 is fixed to the inner top of each U-shaped frame 23. The rack 24 is meshed with the gear ring 21, and two T-shaped sliders 25 are fixed on the side of each U-shaped frame 23 close to the mounting frame 15. T-shaped slide grooves for cooperating with the T-shaped slide grooves 25 are provided on both sides of the mounting frame 15, and the T-shaped slide grooves 25 are slidably set in the T-shaped slide grooves.
[0049] In the initial state, the telescopic end of the electric push rod 22 is in an extended state, and the circular saw blade 18 is in a vertical state. When the circular saw blade 18 needs to be deflected to a certain angle, the telescopic end of the electric push rod 22 contracts, thereby driving the U-shaped frame 23 to translate toward the direction close to the electric push rod 22, and the rack 24 translates together with the U-shaped frame 23. During the translation process, the rack 24 will drive the gear ring 21 to rotate, thereby driving the connecting column 20, the mounting seat 16 and the circular saw blade 18 to deflect to a certain angle, and then maintain this state to cooperate in the cutting process of the other tube body 57.
[0050] When the circular saw blade 18 needs to be deflected back to the initial vertical state, the telescopic end of the electric push rod 1 22 extends, thereby driving the U-shaped frame 1 23 and the rack 24 to translate in a direction away from the electric push rod 1 22 until the circular saw blade 18 rotates back to the vertical state.
[0051] The telescopic end of the electric push rod 22 has a self-locking function when not in operation, thereby cooperating with the gear ring 21 and the rack 24 to limit the connecting column 20 and the mounting seat 16. In other embodiments, the rotation adjustment of the driving mounting seat 16 can be replaced by other existing technologies.
[0052] By cooperating with the T-shaped slide block 25 and the T-shaped slot, the U-shaped frame 23 and the rack 24 are stabilized during use.
[0053] Reference Figure 4 、 Figure 6 and Figure 8 The driving mechanism 2 includes two electric guide rails 26, each of which is movably provided with an electric slider 1, and the mounting frame 15 is fixed to the upper end surface of the electric slider 1.
[0054] The electric guide rail 26 is a prior art, and the installation frame 15 is driven to translate by the cooperation of the electric guide rail 26 and the electric slider 1.
[0055] An accordion dust cover can be provided between the electric slider 1 and the electric guide rail 1 26 as needed.
[0056] Reference Figure 6 、 Figure 7 and Figure 13The waste collection assembly includes a sliding base 27 fixed to the bottom of the cavity 13, and a collection frame 28 is movably provided on the upper end surface of the sliding base 27. Side baffles 29 for cooperating with the collection frame 28 are fixed on both sides of the sliding base 27. A side through groove that penetrates into the cavity 13 is provided on one side of the workbench 12, and an opening and closing door 30 is rotatably provided on the side through groove. An elastic unit for cooperating with the collection frame 28 is provided between the opening and closing door 30 and the inner wall of the cavity 13. A driving mechanism three for cooperating with the collection frame 28 is provided on the mounting frame 15. A blanking through groove 56 for cooperating with the collection frame 28 is provided on the upper end surface of the workbench 12, and a fixed limit baffle 58 is fixed on the upper end surface of the workbench 12. An electric push rod four 59 is also fixed on the upper end surface of the workbench 12, and a movable limit baffle 60 is fixed at the end of the telescopic end of the electric push rod four 59.
[0057] A top material baffle is fixed to the upper end surface of the movable limit baffle 60 and on one side close to the fixed limit baffle 58. The top material baffle is located above the movable limit baffle 60 and the fixed limit baffle 58 during operation to prevent the cut waste from being ejected from above the movable limit baffle 60 and the fixed limit baffle 58. The length setting of the top material baffle will not affect the rotation of the square tube body 57 located on the guide plate 48, nor will it affect the cutting process of the circular saw blade 18. The problem of how to prevent the cut waste from being ejected from between the movable limit baffle 60 and the fixed limit baffle 58 is an existing technology.
[0058] Each time the end of the square tube body 57 is cut into an oblique shape, the end of the square tube body 57 is placed on the upper end surface of the workbench 12 to prevent the end of the square tube body 57 from being in a suspended state (located in the area of the processing groove 14), thereby preventing the cut waste (a specific volume) from falling between the mounting frame 15 and the mounting seat 16, affecting the deflection of the mounting seat 16 and the circular saw blade 18.
[0059] During the process of cutting the square tube body 57, the debris generated by the cutting process can directly fall into the collection frame 28 through the processing groove 14. When the end of the square tube body 57 is processed (one end of the square tube body 57 is processed into the required bevel shape), the waste generated is on the upper end surface of the workbench 12. Then, when the feeding assembly pushes the square tube body 57 to move horizontally, it will push the waste at the front end of the square tube body 57 to move horizontally. During the translation process of the cut square tube body 57 and the waste, the waste will fall into the collection frame 28 when passing through the blanking groove 56. When the cut square tube body 57 passes through the blanking groove 56, since the cut square tube body 57 has a certain length, it will not be affected by the blanking groove 56 during the translation process.
[0060] Due to the large size of the collecting frame 28, the cutting debris and cutting waste will fall into the collecting frame 28. During the process of the mounting frame 15 driving the mounting seat 16 and the circular saw blade 18 to translate the other tube body 57 for cutting processing, the driving mechanism 3 does not work. When the mounting frame 15 completes a single cutting process with the mounting seat 16 and the circular saw blade 18 and performs a reset translation, the driving mechanism 3 will drive the collecting frame 28 containing the waste and debris to translate. During the translation process, the collecting frame 28 will squeeze the elastic unit. Then, when the driving mechanism 3 releases the control of the collecting frame 28, the collecting frame 28 will quickly reciprocate and translate several times under the action of the elastic unit, thereby shaking the cutting debris and cutting waste in the collecting frame 28 evenly, avoiding a large gap between the cutting debris and the cutting waste, and reducing the capacity of the collecting frame 28.
[0061] Since the reciprocating translation of the collection frame 28 takes time, the installation frame 15 does not control the collection frame 28 to translate through the driving mechanism 3 every time when the installation frame 15 translates. After the collection frame 28 has collected for a period of time, the driving mechanism 3 can be used to prompt the collection frame 28 to translate.
[0062] The fixed limiting baffle 58 and the movable limiting baffle 60 cooperate to guide the pushed-in cut square tube body 57 and the cut waste.
[0063] Reference Figure 6 、 Figure 7 and Figure 13 The elastic unit includes a fixed plate 31 fixed to the upper end surface of the sliding base 27, and a translation plate 32 is movably provided on one side of the fixed plate 31. Two guide posts 33 are symmetrically fixed to the side of the translation plate 32 close to the fixed plate 31. One end of each guide post 33 movably passes through the fixed plate 31 and is fixed with a limit block 34. Two springs 1 35 are fixed between the fixed plate 31 and the translation plate 32. The spring 1 35 is movably sleeved on the outer surface of the guide post 33. Two springs 2 36 are symmetrically fixed to the side of the opening and closing door 30 close to the collection frame 1 28. The locking of the opening and closing door 30 and the side through slot is the existing technology. During the use of the opening and closing door 30, if the staff does not open the opening and closing door 30, the opening and closing door 30 will not open automatically.
[0064] When the mounting frame 15 completes a single cutting process with the mounting seat 16 and the circular saw blade 18 and performs a reset translation, the driving mechanism 3 provided will drive the collection frame 1 28 containing waste and debris to translate, prompting the collection frame 1 28 to translate in the direction away from the closing door 30. In this process, the collection frame 1 28 will drive the translation plate 32 to move together. During the movement, the translation plate 32 will squeeze the spring 1 35, and the spring 1 35 will be squeezed and contracted to store elastic potential energy. When the driving mechanism 3 releases the collection frame 1 28, the elastic potential energy stored in the spring 1 35 is released, and the collection frame 1 28 is pushed to move in the direction close to the opening and closing door 30 through the translation plate 32 until the collection frame 1 28 squeezes the spring 2 36, prompting the spring 2 36 to be squeezed and contracted to store elastic potential energy. Then, under the action of the elastic potential energy of the spring 2 36, the collection frame 1 28 is moved toward away from the closing door 30 again. This process is repeated several times until the collection frame 1 28 stops.
[0065] Reference Figure 6 、 Figure 7 、 Figure 10 and Figure 12 The driving mechanism three includes a U-shaped frame 37 fixed to the lower end surface of the mounting frame 15, a metal plate 38 is rotatably arranged in the U-shaped frame 37, and two side grooves are symmetrically opened on the inner wall of the U-shaped frame 37, and an electromagnet 39 is fixed in each side groove.
[0066] When the mounting frame 15 moves with the mounting seat 16 and the circular saw blade 18 to the opposite tube body 57 for sawing, the electromagnet 39 does not work. At this time, the metal plate 38 can rotate, so that the metal plate 38 can pass over the side wall of the collection frame 28. After the metal plate 38 passes over the metal plate 38, it is still in a vertical downward state. When the collection frame 28 needs to be shaken, the electromagnet 39 is energized to work and adsorb the side wall of the metal plate 38, thereby limiting and fixing the metal plate 38. When the mounting frame 15 moves with the mounting seat 16 and the circular saw blade 18, the electromagnet 39 does not work. At this time, the metal plate 38 can rotate, so that the metal plate 38 can pass over the side wall of the collection frame 28. After the metal plate 38 passes over the metal plate 38, it is still in a vertical downward state. When the collection frame 28 needs to be shaken, the electromagnet 39 is energized to work and adsorb the side wall of the metal plate 38, thereby limiting and fixing the metal plate 38. When 16 and the circular saw blade 18 are translated and reset, one side of the metal plate 38 will contact the outer wall of the collection frame 28, thereby driving the collection frame 28 to move together. When the mounting frame 15 is translated and reset to the specified position, the spring 35 is squeezed and shortened, storing elastic potential energy, and then the electromagnet 39 is powered off, releasing the adsorption and fixation of the metal plate 38. At this time, the metal plate 38 no longer contacts the collection frame 28. At this time, under the action of the elastic potential energy of the spring 35, the collection frame 28 is prompted to translate toward the direction close to the opening and closing door 30.
[0067] The collecting frame 1 28 has a certain weight. When the metal plate 38 contacts the side wall of the collecting frame 1 28 and drives the collecting frame 1 28 to move horizontally, the collecting frame 1 28 will not flip over and the collecting frame 1 28 will only move horizontally.
[0068] The control of energizing and de-energizing the electromagnet 39 is a prior art.
[0069] Reference Figure 4 The feeding assembly includes an electric guide rail 2 40 fixed to the upper end surface of the workbench 12, and an electric slider 2 41 is movably provided on the electric guide rail 2 40. An L-shaped push plate 42 is fixed to the upper end surface of the electric slider 2 41. Two electric push rods 2 43 are symmetrically fixed to the upper end surface of the workbench 12. A positioning push plate 44 is fixed to the end of the telescopic end of each electric push rod 2 43. An L-shaped frame 45 is fixed to the upper end surface of the workbench 12. An electric push rod 3 46 is fixed and penetrated through the upper end surface of the L-shaped frame 45. A positioning pressure plate 47 is fixed to the end of the telescopic end of the electric push rod 3 46.
[0070] During use, the square tube body 57 to be cut is placed on the upper end surface of the workbench 12, and then the telescopic end of the electric push rod 2 43 is extended to push the positioning push plate 44 close to the square tube body 57, thereby performing preliminary positioning of the square tube body 57 to avoid the square tube body 57 from being offset during the subsequent translation process. Each time the circular saw blade 18 cuts the square tube body 57, the positioning pressure plate 47 and the positioning push plate 44 act on the surface of the square tube body 57 to avoid the square tube body 57 from shaking during the cutting process. This part of the content belongs to the prior art.
[0071] The electric guide rail 2 40 belongs to the existing technology. When in use, it drives the electric slider 2 41 and the L-shaped push plate 42 to move horizontally, so that the L-shaped push plate 42 pushes the end of the square tube body 57, thereby pushing the square tube body 57.
[0072] According to the actual situation of the workbench 12 and the needs, a plurality of square tube bodies 57 to be cut and processed can be placed on the workbench 12 at one time.
[0073] Reference Figure 4 and Figure 5 A material guide plate 48 is provided on one side of the workbench 12 through a rotating shaft. Side baffles 49 are fixed on both sides of the material guide plate 48. An end stopper 50 is fixed between the two side baffles 49. A driving mechanism 4 is provided on the workbench 12 for cooperating with the rotation of the material guide plate 48.
[0074] When the cut square tube body 57 is pushed onto the guide plate 48 (most of the volume of the square tube body 57 is located on the guide plate 48), the driving mechanism 4 causes the guide plate 48 to rotate downward. At this time, the square tube body 57 located on the guide plate 48 moves downward along the surface of the guide plate 48 under the action of gravity until the upper end portion of the cut square tube body 57 collides with the end stopper 50. At this time, the cutting debris located in the square tube body 57 continues to move under the action of gravity, thereby separating from the square tube body 57, and the square tube body 57 will vibrate when colliding with the end stopper 50, so that some of the debris adhering to the inner wall of the square tube body 57 will also fall off, and then the staff can remove the cut square tube body 57 from the guide plate 48.
[0075] A second collecting frame may be placed below the guide plate 48 as needed to collect cutting debris dumped out from the square tube body 57 .
[0076] Reference Figure 4 and Figure 5 The driving mechanism 4 includes an extension seat 52 fixed on the side wall of the workbench 12, a lower connecting ear 53 is fixed to the upper end surface of the extension seat 52, an upper connecting ear 54 is fixed to the lower end surface of the guide plate 48, and a hydraulic push rod 55 is hinged between the upper connecting ear 54 and the lower connecting ear 53.
[0077] In the initial state, the telescopic end of the hydraulic push rod 55 is in an extended state, so that the upper end surface of the guide plate 48 is flush with the upper end surface of the workbench 12, so that the square tube body 57 that has moved horizontally can move onto the guide plate 48. When the guide plate 48 needs to be flipped, the telescopic end of the hydraulic push rod 55 contracts, thereby driving the guide plate 48 to rotate through the upper connecting ear 54.
[0078] When the present invention is in use, since the upper triangular flying wing 4 and the lower triangular flying wing 5 are provided on the connecting frame 2, this double-layer sunshade design effectively provides sunshade for the building, reduces heat accumulation, improves indoor comfort, reduces air conditioning load, and ensures building safety and aesthetics.
[0079] The present invention processes the square tube body 57 to be cut, places the square tube body 57 to be cut on the upper end surface of the workbench 12, and then pushes the square tube body 57 to be processed through the feeding assembly, so that one end of the square tube body 57 is translated to the position to be cut, and then, under the action of the driving mechanism 1, the two gear rings 21 drive the connecting column 20 to deflect a certain angle, thereby driving the mounting seat 16 and the circular saw blade 18 to deflect a certain angle, and then the working motor 19 drives the circular saw blade 18 to rotate, and then, under the action of the driving mechanism 2, drives the mounting frame 15, the mounting seat 16 and the circular saw blade 18 to translate, in this process, the circular saw blade 18 cuts the end of the square tube body 57, thereby cutting one end of the square tube body 57 into the required bevel shape, and then the driving mechanism 2 drives the mounting frame 15, the mounting seat 16 and the circular saw blade 18 to translate and reset, and at this time, under the action of the driving mechanism 1, the mounting seat 16 and the circular saw blade 18 are driven to deflect and reset, so that the circular saw blade 18 is in a vertical state, and then fed. The feeding assembly pushes the square tube body 57 to be processed toward the direction close to the circular saw blade 18 for a distance, and then the driving mechanism 2 drives the mounting frame 15, the mounting seat 16 and the circular saw blade 18 to move horizontally. During this process, the circular saw blade 18 cuts the square tube body 57 vertically, so that the cut square tube body 57 meets the required length. Then the driving mechanism 2 drives the mounting frame 15, the mounting seat 16 and the circular saw blade 18 to move horizontally and reset. At this time, the feeding assembly pushes the rear section of the uncut square tube body 57 horizontally. The cutting operation is repeated in conjunction with the circular saw blade 18. The uncut square tube body 57 pushes the cut square tube body 57 to continue to move in the process of translation. The cut square tube body 57 pushes the waste material cut at the end to continue to move in the process of translation until the cut waste material falls into the waste material collection assembly, which is convenient for waste material collection. In addition, when the end of the square tube body 57 is sawed into an oblique shape, there is no need to adjust the placement angle of the square tube body 57, which is convenient to use.
[0080] During the cutting process of the square tube body 57, the debris generated by the cutting process can directly fall into the collection frame 28 through the processing groove 14. When the end of the square tube body 57 is processed (one end of the square tube body 57 is processed into the required bevel shape), the waste generated is on the upper end surface of the workbench 12. Then, when the feeding assembly pushes the square tube body 57 to move horizontally, it pushes the waste at the front end of the square tube body 57 to move horizontally. During the translation process of the cut square tube body 57 and the waste, the waste will fall into the collection frame 28 when passing through the blanking groove 56. When the cut square tube body 57 passes through the blanking groove 56, since the cut square tube body 57 has a certain length, it will not be affected by the blanking groove 56 during the translation process.
[0081] Due to the large volume of the collecting frame 28, the cutting chips and cutting waste will fall into the collecting frame 28. During the process of the mounting frame 15 driving the mounting seat 16 and the circular saw blade 18 to translate to the other pipe body 57 for cutting processing, the driving mechanism 3 does not work. When the mounting frame 15 completes a single cutting process with the mounting seat 16 and the circular saw blade 18 and performs a reset translation, the driving mechanism 3 will drive the collecting frame 28 containing the waste and chips to translate. During the translation process, the collecting frame 28 will squeeze the elastic unit. Then, when the driving mechanism 3 releases the control of the collecting frame 28, the collecting frame 28 will quickly reciprocate and translate several times under the action of the elastic unit, thereby shaking the cutting chips and cutting waste in the collecting frame 28 evenly, avoiding a large gap between the cutting chips and cutting waste, and reducing the capacity of the collecting frame 28.
[0082] When the cut square tube body 57 is pushed onto the guide plate 48 (most of the volume of the square tube body 57 is located on the guide plate 48), the driving mechanism 4 causes the guide plate 48 to rotate downward. At this time, the square tube body 57 located on the guide plate 48 moves downward along the surface of the guide plate 48 under the action of gravity until the upper end portion of the cut square tube body 57 collides with the end stopper 50. At this time, the cutting debris located in the square tube body 57 continues to move under the action of gravity, thereby separating from the square tube body 57, and the square tube body 57 will vibrate when colliding with the end stopper 50, so that some of the debris adhering to the inner wall of the square tube body 57 will also fall off, and then the staff can remove the cut square tube body 57 from the guide plate 48.
[0083] The above disclosure is only a preferred embodiment of the present invention. However, the embodiments of the present invention are not limited thereto. Any changes that can be conceived by those skilled in the art should fall within the scope of protection of the present invention.
Claims
1. A processing equipment for curtain wall structure production, characterized in that: The processing equipment for producing a curtain wall structure is used for producing and processing a curtain wall structure. The curtain wall structure comprises a plurality of connecting frames (2) fixed on a building floor (1), each of the connecting frames (2) is fixedly provided with a LOW-E insulating glass (3), an upper triangular wing (4) and a lower triangular wing (5) are fixedly provided on one side of each connecting frame (2), a fireproof rock wool (6) is fixed on one side of the connecting frame (2), and one side of the lower end surface of the fireproof rock wool (6) is fixedly connected to the lower triangular wing (5). The lower surface of the connecting frame (2) is fixed with an aluminum single plate (7), one end of the aluminum single plate (7) is fixedly connected to the lower triangular flying wing (5), the upper triangular flying wing (4) and the lower triangular flying wing (5) have the same structure and appearance, the upper triangular flying wing (4) includes a triangular square tube frame (8), the upper surface of the triangular square tube frame (8) is fixed with a honeycomb panel (9), one end of the triangular square tube frame (8) is fixed with an arc profile (10), and the lower surface of the triangular square tube frame (8) is fixed with a connecting aluminum plate (11); The processing equipment for curtain wall structure production comprises a workbench (12), a cavity (13) is provided in the workbench (12), a processing groove (14) is provided on the upper end surface of the workbench (12) and penetrates into the cavity (13), a mounting frame (15) is movably provided in the cavity (13), a mounting seat (16) is rotatably provided in the mounting frame (15), a mounting groove (17) is provided on the upper end surface of the mounting seat (16), a circular saw blade (18) is rotatably provided in the mounting groove (17), and one side of the mounting seat (16) is provided with a processing groove (14) and a processing groove (14) extending into the cavity (13). A working motor (19) for use with a circular saw blade (18) is fixed, connecting columns (20) are fixed at both ends of the mounting seat (16), one end of each connecting column (20) rotates through the mounting frame (15) and is fixedly sleeved with a gear ring (21), a driving mechanism 1 for use with the gear ring (21) is provided on the mounting frame (15), a driving mechanism 2 for use with the mounting frame (15) is provided in the cavity (13), a feeding assembly is provided on the workbench (12), and a waste collection assembly is provided on the workbench (12); The waste collection assembly includes a sliding base (27) fixed to the bottom of the cavity (13), a collection frame (28) is movably provided on the upper end surface of the sliding base (27), and side baffles (29) used in conjunction with the collection frame (28) are fixed on both sides of the sliding base (27), a side through groove penetrating into the cavity (13) is provided on one side of the workbench (12), an opening and closing door (30) is rotatably provided on the side through groove, and a space is provided between the opening and closing door (30) and the inner wall of the cavity (13). An elastic unit used in conjunction with the collecting frame (28) is provided on the mounting frame (15) with a driving mechanism (3) used in conjunction with the collecting frame (28). The upper end surface of the workbench (12) is provided with a blanking slot (56) used in conjunction with the collecting frame (28). A fixed limit baffle (58) is fixed to the upper end surface of the workbench (12). An electric push rod (59) is also fixed to the upper end surface of the workbench (12). A movable limit baffle (60) is fixed to the end of the telescopic end of the electric push rod (59). The driving mechanism three comprises a U-shaped frame two (37) fixed to the lower end surface of the mounting frame (15), a metal plate (38) being rotatably arranged in the U-shaped frame two (37), and two side grooves being symmetrically provided on the inner wall of the U-shaped frame two (37), and an electromagnet (39) being fixed in each side groove.
2. The processing equipment for curtain wall structure production according to claim 1, characterized in that: The driving mechanism comprises two electric push rods (22), the two electric push rods (22) being fixed to both sides of the mounting frame (15), a U-shaped frame (23) being fixed to the end of each electric push rod (22), a rack (24) being fixed to the inner top of each U-shaped frame (23), the rack (24) being meshed with the gear ring (21), and two T-shaped sliders (25) being fixed to one side of each U-shaped frame (23) close to the mounting frame (15), a T-shaped slot for cooperating with the T-shaped slider (25) being provided on both sides of the mounting frame (15), and the T-shaped slider (25) being slidably arranged in the T-shaped slot.
3. The processing equipment for curtain wall structure production according to claim 1, characterized in that: The driving mechanism 2 includes two electric guide rails 1 (26), each electric guide rail 1 (26) is movably provided with an electric slider 1, and the mounting frame (15) is fixed to the upper end surface of the electric slider 1.
4. The processing equipment for curtain wall structure production according to claim 1, characterized in that: The elastic unit includes a fixed plate (31) fixed to the upper end surface of the sliding base (27), a translation plate (32) is movably provided on one side of the fixed plate (31), two guide columns (33) are symmetrically fixed on the translation plate (32) near the fixed plate (31), one end of each guide column (33) is movably passed through the fixed plate (31) and fixed with a limit block (34), two springs (35) are fixed between the fixed plate (31) and the translation plate (32), the springs (35) are movably sleeved on the outer surface of the guide columns (33), and two springs (36) are symmetrically fixed on the side of the opening and closing door (30) near the collection frame (28).
5. The processing equipment for curtain wall structure production according to claim 1, characterized in that: The feeding assembly includes an electric guide rail 2 (40) fixed to the upper end surface of the workbench (12), an electric slider 2 (41) is movably provided on the electric guide rail 2 (40), an L-shaped push plate (42) is fixed to the upper end surface of the electric slider 2 (41), two electric push rods 2 (43) are symmetrically fixed to the upper end surface of the workbench (12), and a positioning push plate (44) is fixed to the end of the telescopic end of each electric push rod 2 (43), an L-shaped frame (45) is fixed to the upper end surface of the workbench (12), an electric push rod 3 (46) is fixedly provided through the upper end surface of the L-shaped frame (45), and a positioning pressure plate (47) is fixed to the end of the telescopic end of the electric push rod 3 (46).
6. The processing equipment for curtain wall structure production according to claim 1, characterized in that: A guide plate (48) is rotatably provided on one side of the workbench (12), and two side baffles (49) are fixed on both sides of the guide plate (48). An end stopper (50) is fixed between the two side baffles (49). A driving mechanism (4) is provided on the workbench (12) for cooperating with the guide plate (48) to rotate.
7. The processing equipment for curtain wall structure production according to claim 6, characterized in that: The driving mechanism 4 includes an extension seat (52) fixed on the side wall of the workbench (12), a lower connecting ear (53) is fixed to the upper end surface of the extension seat (52), an upper connecting ear (54) is fixed to the lower end surface of the guide plate (48), and a hydraulic push rod (55) is hinged between the upper connecting ear (54) and the lower connecting ear (53).
Citation Information
Patent Citations
Curtain wall structure
CN111576704A
Aluminum profile machining system
CN112247256A
Disk saw for metal cutting and cutting method
CN118123115A
Energy -saving big box stainless steel flies wing structure
CN206495383U
Sun-shading flying wing assembly structure
CN222822720U