A color steel tile production tile pressing machine
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2026-06-09
- Publication Date
- 2026-08-11
AI Technical Summary
[0005]本发明提出一种彩钢瓦生产用压瓦机,用于解决现有技术中由于彩钢瓦截面形状复杂并且本身较薄,在切割设备切割的过程中产生的振动易使板材偏移,从而导致切口出现毛刺或波浪状变形的问题
1、本发明中,同步开启导向机架左右两端的第五驱动件,通过第五驱动件推动对应的侧架进行移动,直到两个侧架上的导向辊分别与板材的左右两侧接触,然后同步开启导向机架上下两侧的第四驱动件,通过对应的压架进行移动,直到两个压架上的压辊分别与板材的上下两侧接触,从而起到导正板材移动方向以及辅助板材移动的作用,从而避免板材的移动方向出现偏移。
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Figure CN122539155A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of roll forming machine technology, specifically to a roll forming machine for producing color steel tiles. Background Technology
[0002] A roll forming machine is a device for cold bending and roll forming of metal sheets. Its main components consist of three parts: feeding, forming, and shearing. When operating, the roll forming machine can achieve one-time forming and CNC integration. It can operate without the need for multiple people, thus saving manpower. During the forming process, it relies on different types of forming rollers to roll and press the cross-section deformation step by step.
[0003] When using a roll forming machine to shape sheet materials, first place the sheet material on the feeding rack to ensure that the sheet material is flat, then start the feeding system. The sheet material enters the rolling area through the guide wheels. At this time, the sheet material is deformed step by step through multiple sets of rollers to finally form the target waveform or structure. When the formed sheet material reaches the set length, it is cut by a shearing device. Then the cut finished product can be transported to the stacking area by conveyor belt or manually.
[0004] When color steel tiles are processed and formed, they need to be cut. Because the waveform of color steel tiles is a continuous and complex curved surface, and the color steel tiles themselves are relatively thin, the blade will apply a lot of force to the cutting position of the color steel tile during the cutting process. If the color steel tile is not sufficiently fixed during cutting, the vibration of the cutting equipment will cause the plate to shift, resulting in burrs or wavy deformation of the cut, making the cut uneven and affecting the quality of the color steel tile. Summary of the Invention
[0005] This invention proposes a roll forming machine for the production of color steel tiles, which solves the problem in the prior art that due to the complex cross-sectional shape and thinness of color steel tiles, the vibration generated during the cutting process of the cutting equipment easily causes the plate to shift, resulting in burrs or wavy deformation of the cut.
[0006] The technical solution of the present invention is as follows: A roll forming machine for producing color steel roof tiles includes a roll forming machine body, the roll forming machine body includes a forming system, a feeding frame is fixedly installed at the feeding end of the roll forming machine body, and a discharging frame is fixedly installed at the discharging end of the roll forming machine body, and further includes: A support frame and a sliding frame are provided, wherein the support frame is fixedly installed on the discharge machine frame, and the sliding frame is slidably installed inside the support frame and is located at the upper part of the discharge machine frame; A locking component, which is mounted on the support frame, is used to secure the finished product to be cut; A cutting assembly, mounted on the sliding frame, is used to cut the finished product; A conveyor frame, which is fixedly mounted on the feeder frame; A conveying assembly, mounted on the conveyor frame, for conveying the sheet metal to the forming system of the roll forming machine body; The guide components are provided on both the front and rear sides of the conveying component to guide the movement direction of the plate.
[0007] Based on the aforementioned solution, the locking component includes: A locking frame is fixedly installed on the discharge frame; The lower cutting blade is installed on the inner bottom wall of the locking frame; A fixed frame is disposed inside the locking frame and is located above the lower cutting blade; A first driving component is fixedly installed on the upper part of the locking frame, and the output end of the first driving component is fixedly connected to the fixed frame. The locking part is installed inside the fixing frame and is used to fix the finished product when cutting it.
[0008] Based on the aforementioned solution, the locking part includes: The positioning slots are provided at equal intervals on the bottom of the fixed frame; A fixing frame is slidably installed inside each of the positioning slots; A spring is fixedly installed on the top of each of the fixing brackets, and the top of the spring is fixedly connected to the inner top wall of the positioning groove. Positioning components are provided on both the front and rear sides of the fixed frame to fix the position of the fixed frame and the positioning groove.
[0009] Based on the aforementioned scheme, a trapezoidal flexible block is also included, and the trapezoidal flexible block is fixedly installed at the bottom of several of the fixed frames.
[0010] Based on the aforementioned solution, the positioning component includes: The fixed frame has several through slots at equal intervals on both its front and rear sides; Among them, the several through slots on the front side correspond one-to-one with and are connected to the front side of the several positioning slots, and the several through slots on the rear side correspond one-to-one with and are connected to the rear side of the several positioning slots. The fixing column and fixing bar are provided on both the front and rear sides of the fixing frame. The two fixing bars are arranged symmetrically, and a number of fixing columns are fixedly installed on the two fixing bars at equal intervals. The fixing posts on the front fixing strip correspond one-to-one with the several through slots on the front and are slidably connected. The fixing posts on the fixing strip on the rear side correspond one-to-one with the several through slots on the rear side and are slidably connected. Anti-slip pads are fixedly installed on the side of each of the fixed posts near the positioning groove; The second driving component is fixedly installed on both the front and rear sides of the fixed frame. The output end of the second driving component located on the front side is fixedly connected to the fixed strip on the front side, and the output end of the second driving component located on the rear side is fixedly connected to the fixed strip on the rear side.
[0011] Based on the aforementioned solution, the cutting component includes: The upper cutting blade is mounted on the bottom of the sliding frame and is adapted to the lower cutting blade. The third driving component is fixedly installed on the top of the support frame, and the output end of the third driving component is fixedly connected to the top of the sliding frame.
[0012] Based on the aforementioned solution, the conveying component includes: Two conveyor rollers are rotatably mounted on the conveyor frame, and the two conveyor rollers are arranged vertically. A drive motor is fixedly mounted on the conveyor frame, and the output end of the drive motor is fixedly connected to the conveyor roller; Rubber sleeves are fixedly fitted on both of the conveying rollers.
[0013] Based on the aforementioned scheme, it also includes gears. Two gears are rotatably mounted on the conveyor frame. The two gears are fixedly connected to the two conveyor rollers respectively, and the two gears are arranged in a meshing manner.
[0014] Based on the aforementioned solution, the guiding component includes: A guide frame, on which two guide frames are symmetrically and fixedly installed, the two guide frames being located on the front and rear sides of the conveyor frame; The pressure frame is provided on both the upper and lower sides inside the two guide frames, and several pressure rollers are rotatably mounted on each of the two pressure frames; The fourth driving component is fixedly installed on both the upper and lower sides of the two guide frames, and the output end of the fourth driving component is fixedly connected to the corresponding pressure frame respectively. Side frames are provided on both the left and right sides of the two guide frames, and several guide rollers are rotatably mounted on each of the two side frames; The fifth driving component is fixedly installed on both the left and right sides of the two guide frames, and the output end of the fifth driving component is fixedly connected to the corresponding side frame.
[0015] Based on the aforementioned scheme, a guide frame is also included. The guide frame is fixedly installed at both the inlet and outlet ends of the two guide frames, and the inner top and bottom surfaces of each guide frame are set as arc-shaped structures.
[0016] The working principle and beneficial effects of this invention are as follows: 1. In this invention, the fifth drive components at both ends of the guide frame are activated simultaneously, and the corresponding side frames are moved by the fifth drive components until the guide rollers on the two side frames contact the left and right sides of the plate respectively. Then, the fourth drive components on the upper and lower sides of the guide frame are activated simultaneously, and the corresponding pressure frames are moved until the pressure rollers on the two pressure frames contact the upper and lower sides of the plate respectively. This plays a role in guiding the movement direction of the plate and assisting the movement of the plate, thereby preventing the plate from deviating from its movement direction.
[0017] 2. In this invention, the first driving component pushes the fixed frame to move, and the fixed frame pushes several fixed frames to move until the trapezoidal flexible block at the bottom of the fixed frame contacts the color steel tile. At this time, the fixed frame continues to move, and relative sliding occurs between the fixed frame and the positioning groove, and the spring deforms. As the fixed frame moves, it pushes several fixed frames to move until the trapezoidal flexible blocks at the bottom of all fixed frames contact the color steel tile. The trapezoidal flexible blocks ensure that the force at each clamping point remains uniform, avoiding stress concentration problems that could cause the color steel tile to be pressed into a dent, thus ensuring the quality of the finished product.
[0018] 3. In this invention, the locking component provides a more stable clamping for the color steel sheet, thereby reducing problems such as burrs and wavy deformation caused by sheet misalignment during cutting. This not only facilitates the cutting component in cutting the color steel sheet but also makes it easier to obtain a flat, high-quality cut. The cooperation between the conveying and guiding components reduces the occurrence of sheet misalignment during conveying, ensuring that the sheet enters the forming system more accurately and minimizing forming defects caused by conveying deviations. Attached Figure Description
[0019] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments.
[0020] Figure 1 This is a schematic diagram of the overall structure of the present invention; Figure 2 This is a cross-sectional three-dimensional structural schematic diagram of the present invention; Figure 3This is a schematic diagram of the overall structure from another angle in this invention; Figure 4 This is a cross-sectional view of the locking component and the cutting component working together in this invention. Figure 5 This is a cross-sectional view of the locking component and the lower cutting blade working together in this invention. Figure 6 This is a cross-sectional view of the locking component in this invention; Figure 7 This is a cross-sectional structural diagram showing the cooperation between the locking part and the positioning component in this invention. Figure 8 This is a schematic diagram of the structure of the fixed frame and the trapezoidal flexible block in this invention; Figure 9 This is a cross-sectional view of the fixed frame in this invention; Figure 10 This is a cross-sectional view of the positioning component in this invention; Figure 11 This is a schematic diagram of the structure of the conveying component and the guiding component in this invention. Figure 12 This is a cross-sectional view of the conveying component in this invention; Figure 13 This is a cross-sectional view of the guide component in this invention; Figure 14 This is a cross-sectional view of the guide frame in this invention.
[0021] In the diagram: 1. Tile press machine body; 2. Feeding frame; 3. Discharging frame; 4. Support frame; 5. Sliding frame; 6. Conveyor frame; 7. Locking frame; 8. Lower cutting blade; 9. Fixed frame; 10. First driving component; 11. Positioning groove; 12. Fixed frame; 13. Spring; 14. Trapezoidal flexible block; 15. Through groove; 16. Fixed column; 17. Fixed strip; 18. Anti-slip pad; 19. Second driving component; 20. Upper cutting blade; 21. Third driving component; 22. Conveying roller; 23. Drive motor; 24. Rubber sleeve; 25. Gear; 26. Guide frame; 27. Pressing frame; 28. Pressing roller; 29. Fourth driving component; 30. Side frame; 31. Guide roller; 32. Fifth driving component; 33. Material guide frame. Detailed Implementation
[0022] The technical solutions of the present invention will be clearly and completely described below with reference to the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of the present invention.
[0023] like Figures 1 to 14 As shown, this embodiment proposes a roll forming machine for producing color steel tiles, including a roll forming machine body 1. The roll forming machine body 1 includes a forming system. A feeding frame 2 is fixedly installed at the feeding end of the roll forming machine body 1, and a discharging frame 3 is fixedly installed at the discharging end of the roll forming machine body 1. It also includes a support frame 4, a sliding frame 5, a locking assembly, a cutting assembly, a conveyor frame 6, a conveying assembly, and a guiding assembly. The support frame 4 is fixedly installed on the discharging frame 3, and the sliding frame 5 is slidably installed inside the support frame 4. The sliding frame 5 is located on the upper part of the discharging frame 3. The locking assembly is installed on the support frame 4 for... The locking assembly for fixing the finished product to be cut includes a locking frame 7, a lower cutting blade 8, a fixing frame 9, a first driving member 10, and a locking part. The locking frame 7 is fixedly installed on the discharge frame 3. The lower cutting blade 8 is installed on the inner bottom wall of the locking frame 7. The fixing frame 9 is located inside the locking frame 7 and is located above the lower cutting blade 8. The first driving member 10 is fixedly installed on the upper part of the locking frame 7. The output end of the first driving member 10 is fixedly connected to the fixing frame 9. The fixing frame 9 has a locking part installed inside it for fixing the finished product when cutting it.
[0024] Specifically, when using the roll forming machine body 1 to form the sheet material, first install the corresponding model of lower cutting blade 8 and upper cutting blade 20 in the corresponding positions, then pass the sheet material through the conveying assembly and guide assembly, and then turn on the conveying assembly to move the sheet material towards the forming system until the end of the sheet material enters the forming system. At this time, turn on the roll forming machine body 1 and process the sheet material through the forming system of the roll forming machine body 1, so that the cross-section of the sheet material forms a specific wave shape or other shape, until the formed sheet material (the finished product is also called color steel tile, hereinafter referred to as color steel tile) passes through the locking frame 7. As the processing continues, the length of the finished color steel tile is determined by the measuring equipment. When the length of the finished product reaches the requirement, the roll forming machine body 1 can be turned off and the color steel tile can be cut.
[0025] To ensure stable clamping of the corrugated steel sheet, when it is necessary to fix the position of the corrugated steel sheet, the first drive component 10 is activated. The first drive component 10 pushes the fixing frame 9 to move until the fixing frame 9 pushes the locking part to contact the corrugated steel sheet, and then fixes the position of the locking part. The corrugated steel sheet can then be fixed by cooperating with the lower cutting blade 8. At this time, the cutting component is activated, and the corrugated steel sheet is cut off by cooperating with the cutting blade. The finished product can then be collected.
[0026] The above, such as Figures 4 to 10As shown, the locking part includes a positioning groove 11, a fixing frame 12, a spring 13, and a positioning component. The bottom of the fixing frame 9 is provided with a plurality of positioning grooves 11 at equal intervals. A fixing frame 12 is slidably installed inside each positioning groove 11. A spring 13 is fixedly installed on the top of each fixing frame 12. The top of the spring 13 is fixedly connected to the inner top wall of the positioning groove 11. Positioning components are provided on the front and rear sides of the fixing frame 9 to fix the position of the fixing frame 12 and the positioning groove 11. It also includes a trapezoidal flexible block 14. A trapezoidal flexible block 14 is fixedly installed on the bottom of each of the plurality of fixing frames 12.
[0027] Specifically, when fixing the color steel tile, the first driving component 10 pushes the fixing frame 9 to move, and the fixing frame 9 pushes several fixing brackets 12 to move until the trapezoidal flexible block 14 at the bottom of the fixing bracket 12 contacts the color steel tile. At this time, the fixing frame 9 continues to move, and relative sliding occurs between the fixing bracket 12 and the positioning groove 11, and the spring 13 deforms. Since the cross-sectional shape of the color steel tile is relatively complex, with many concave and convex inclined surfaces, as the fixing frame 9 moves, it pushes several fixing brackets 12 to move until the trapezoidal flexible block 14 at the bottom of all the fixing brackets 12 contacts the color steel tile. Then, the positioning component can be opened to fix the position between several fixing brackets 12 and the corresponding positioning groove 11, and the cutting of the color steel tile can begin.
[0028] It should be noted that, due to the complex cross-sectional shape of the corrugated steel sheet, when all the trapezoidal flexible blocks 14 are in contact with the corrugated steel sheet, the position of each fixing frame 12 in the positioning groove 11 is different, and the deformation of each spring 13 is also different. That is to say, the greater the deformation of the spring 13, the greater the force applied to the corrugated steel sheet through the corresponding fixing frame 12. However, the trapezoidal flexible blocks 14 have a certain degree of elasticity, which can prevent the corrugated steel sheet from being affected by concentrated stress during the clamping process of the fixing frame 12 through deformation. This reduces the pits on the surface of the corrugated steel sheet caused by unstable clamping, improves the overall quality of the corrugated steel sheet, and the trapezoidal flexible blocks 14 have inclined surfaces on both sides, which can better adapt to the shape of the corrugated steel sheet, further ensuring the clamping stability of the corrugated steel sheet when it is cut.
[0029] The above, such as Figure 6 , Figure 9 , Figure 10As shown, the positioning component includes a through groove 15, a fixing post 16, a fixing strip 17, an anti-slip pad 18, and a second driving component 19. The front and rear sides of the fixed frame 9 are each provided with a plurality of through grooves 15 at equal intervals. The through grooves 15 on the front side correspond one-to-one with and connect to the front sides of a plurality of positioning grooves 11, and the through grooves 15 on the rear side correspond one-to-one with and connect to the rear sides of a plurality of positioning grooves 11. Fixing strips 17 are provided on both the front and rear sides of the fixed frame 9, with two fixing strips 17 arranged symmetrically. A plurality of fixing posts 16 are fixedly installed on each of the two fixing strips 17 at equal intervals. The front fixing... Several fixed posts 16 on the fixed bar 17 correspond one-to-one with several through slots 15 on the front side and are slidably connected. Several fixed posts 16 on the fixed bar 17 on the rear side correspond one-to-one with several through slots 15 on the rear side and are slidably connected. Each fixed post 16 is fixedly installed with an anti-slip pad 18 on the side near the positioning slot 11. Second drive members 19 are fixedly installed on both the front and rear sides of the fixed frame 9. The output end of the second drive member 19 on the front side is fixedly connected to the fixed bar 17 on the front side, and the output end of the second drive member 19 on the rear side is fixedly connected to the fixed bar 17 on the rear side.
[0030] in, Figure 6 The arrow in the diagram points in the front of the fixed frame 9, which is the direction in which the material is moved out.
[0031] Specifically, when it is necessary to fix the position between several fixing brackets 12 and the corresponding positioning slots 11, the second drive members 19 on both sides are activated, thereby simultaneously pushing the two fixing bars 17 to move. At this time, several fixing posts 16 on the two fixing bars 17 move in several through slots 15 on both sides of the fixing frame 9. At this time, the fixing posts 16 and the through slots 15 slide relative to each other until the anti-slip pad 18 at the top of the fixing bar 17 abuts against the fixing bracket 12 at the corresponding position. Then, the second drive member 19 can be closed and locked to fix the position of the fixing bar 17.
[0032] like Figure 4 As shown, the cutting assembly is installed on the sliding frame 5 and is used to cut the finished product. The cutting assembly includes an upper cutting blade 20 and a third driving component 21. The upper cutting blade 20 is installed at the bottom of the sliding frame 5 and is adapted to the lower cutting blade 8. The third driving component 21 is fixedly installed on the top of the support frame 4 and the output end of the third driving component 21 is fixedly connected to the top of the sliding frame 5.
[0033] Specifically, when cutting the color steel tile, the third drive component 21 is activated, and the third drive component 21 pushes the upper cutting blade 20 to move. Through the cooperation of the upper cutting blade 20 and the lower cutting blade 8, the color steel tile can be cut off. The cut color steel tile of a certain length can be removed and the color steel tile can be processed again.
[0034] like Figure 11 , Figure 12 As shown, the conveyor frame 6 is fixedly installed on the feeding frame 2, and the conveying assembly is installed on the conveyor frame 6 for conveying the sheet metal to the forming system of the roll forming machine body 1. The conveying assembly includes conveying rollers 22, drive motors 23 and rubber sleeves 24. Two conveying rollers 22 are rotatably installed on the conveyor frame 6 and arranged vertically. The drive motor 23 is fixedly installed on the conveyor frame 6 and the output end of the drive motor 23 is fixedly connected to the conveying rollers 22. Rubber sleeves 24 are fixedly fitted on both conveying rollers 22. The conveyor frame 6 also includes gears 25. Two gears 25 are rotatably installed on the conveyor frame 6 and are fixedly connected to the two conveying rollers 22 respectively. The two gears 25 are meshed.
[0035] Specifically, when the sheet material is fed onto the conveyor frame 6, it enters between two conveyor rollers 22. At this time, the rubber sleeve 24 fitted on the sheet material deforms, thereby clamping the sheet material. Then, the drive motor 23 is turned on, which drives one of the conveyor rollers 22 to rotate. Through two meshing gears 25, the two conveyor rollers 22 can be driven to rotate in opposite directions simultaneously, thus pushing the sheet material to move and continuously conveying it towards the roll forming machine body 1.
[0036] like Figure 11 , Figure 13 , Figure 14 As shown, guide components are provided on both the front and rear sides of the conveying assembly to guide the movement direction of the plate. The guide components include guide frames 26, pressure frames 27, fourth drive components 29, side frames 30, and fifth drive components 32. Two guide frames 26 are symmetrically and fixedly installed on the feeding frame 2. The two guide frames 26 are located on the front and rear sides of the conveying frame 6. Pressure frames 27 are provided on the upper and lower sides inside the two guide frames 26. Several pressure rollers 28 are rotatably installed on each of the two pressure frames 27. Fourth drive components 29 are fixedly installed on the upper and lower sides of the two guide frames 26. The output end of the fourth drive component 29 is fixedly connected to the corresponding pressure frame 27. Each of the two guide frames 26 has a side frame 30 on both the left and right sides. Several guide rollers 31 are rotatably mounted on each of the two side frames 30. A fifth drive component 32 is fixedly mounted on each of the two guide frames 26. The output end of the fifth drive component 32 is fixedly connected to the corresponding side frame 30. The guide frame 33 is also included. A guide frame 33 is fixedly mounted on both the feed end and the discharge end of the two guide frames 26. The inner top surface and inner bottom surface of each guide frame 33 are set as arc-shaped structures to facilitate the front end of the plate to enter the guide frame 26 and then move out of the guide frame 26. In other words, it avoids the front end of the plate from hitting the inner wall of the guide frame 26, which would cause the movement to be obstructed.
[0037] Specifically, before the sheet material is conveyed by the conveyor rollers 22, when the sheet material is fed onto the conveyor frame 6, the sheet material will first enter the front guide frame 26, and then enter between the two conveyor rollers 22. As the sheet material moves, it will enter the rear guide frame 26, and then enter the forming system of the roll forming machine body 1.
[0038] When the sheet material passes through the guide frame 26, it first passes through the guide frame 33 at the feed end of the guide frame 26, and then exits from the guide frame 33 at the discharge end of the guide frame 26. During this process, in order to prevent the sheet material from deviating in the direction of movement, the fifth drive components 32 at both ends of the guide frame 26 are activated simultaneously. The fifth drive components 32 push the corresponding side frames 30 to move until the guide rollers 31 on the two side frames 30 contact the left and right sides of the sheet material respectively, thereby correcting the direction of movement of the sheet material. Then, the fourth drive components 29 on the upper and lower sides of the guide frame 26 are activated simultaneously, and the corresponding pressure frames 27 are moved until the pressure rollers 28 on the two pressure frames 27 contact the upper and lower sides of the sheet material respectively, thereby assisting the movement of the sheet material.
[0039] Among them, the first drive component 10, the second drive component 19, the third drive component 21, the fourth drive component 29 and the fifth drive component 32 are all preferably in the form of electric cylinders.
[0040] The working principle or usage process of this application is as follows: When forming the sheet material using the roll forming machine body 1, first install the corresponding lower cutting blade 8 and upper cutting blade 20 in the corresponding positions, then pass the sheet material through the guide frame 26 and between the two conveying rollers 22. At this time, the rubber sleeve 24 fitted on the sheet material deforms, thereby clamping the sheet material. When it is necessary to convey the sheet material to the forming system, turn on the drive motor 23. The drive motor 23 drives one of the conveying rollers 22 to rotate. Through the two meshing gears 25, the two conveying rollers 22 can be driven to rotate in opposite directions at the same time, thus pushing the sheet material to move and continuously conveying the sheet material to the roll forming machine body 1.
[0041] To prevent the material from deviating from its moving direction, the fifth drive components 32 at both ends of the guide frame 26 are activated simultaneously. The fifth drive components 32 push the corresponding side frames 30 to move until the guide rollers 31 on the two side frames 30 contact the left and right sides of the material, thereby correcting the moving direction of the material. Then, the fourth drive components 29 on the upper and lower sides of the guide frame 26 are activated simultaneously. The corresponding pressure frames 27 are moved until the pressure rollers 28 on the two pressure frames 27 contact the upper and lower sides of the material, thereby assisting the moving of the material.
[0042] Until the end of the sheet enters the forming system, the roll forming machine body 1 is turned on. The forming system of the roll forming machine body 1 processes the sheet, so that the cross-section of the sheet forms a specific wave shape or other shape. The formed color steel tile passes through the locking frame 7. As the processing continues, the length of the finished color steel tile is determined by the measuring equipment. When the length of the finished product reaches the requirement, the roll forming machine body 1 can be turned off and the color steel tile can be cut.
[0043] Before cutting the corrugated steel sheet, it is fixed in place. At this time, the first drive unit 10 is activated to move the fixing frame 9. The fixing frame 9 then moves several fixing brackets 12 until the trapezoidal flexible block 14 at the bottom of the fixing bracket 12 contacts the corrugated steel sheet. The fixing frame 9 continues to move, causing relative sliding between the fixing bracket 12 and the positioning groove 11, and the spring 13 deforms. Because the cross-sectional shape of the corrugated steel sheet is complex, with many uneven slopes, the movement of the fixing frame 9 further pushes the fixing brackets 12 to move until the... Some of the trapezoidal flexible blocks 14 at the bottom of the fixing frame 12 are in contact with the color steel tile, which can open the second drive component 19 on both sides, thereby simultaneously pushing the two fixing strips 17 to move. At this time, several fixing posts 16 on the two fixing strips 17 move in several through slots 15 on both sides of the fixing frame 9. At this time, the fixing posts 16 and the through slots 15 slide relative to each other until the anti-slip pad 18 at the top is fixed and abuts against the fixing frame 12 at the corresponding position. Then the second drive component 19 can be closed and locked, and the position of the fixing strip 17 can be fixed, and the cutting of the color steel tile can begin.
[0044] When cutting the color steel tile, the third drive component 21 is activated, and the third drive component 21 pushes the upper cutting blade 20 to move. Through the cooperation of the upper cutting blade 20 and the lower cutting blade 8, the color steel tile can be cut off. The cut color steel tile of a certain length is removed and then the color steel tile can be processed again.
[0045] The above are merely preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.
Claims
1. A roll forming machine for producing color steel tiles, comprising a roll forming machine body (1), the roll forming machine body including a forming system, a feeding frame (2) fixedly installed at the feeding end of the roll forming machine body (1), and a discharging frame (3) fixedly installed at the discharging end of the roll forming machine body (1), characterized in that, Also includes: The support frame (4) and the sliding frame (5) are fixedly installed on the discharge frame (3) and the sliding frame (5) is slidably installed inside the support frame (4) and the sliding frame (5) is located on the upper part of the discharge frame (3); A locking component is mounted on the support frame (4) for fixing the finished product to be cut; A cutting assembly, which is mounted on the sliding frame (5), is used to cut the finished product; A conveyor frame (6) is fixedly installed on the feed frame (2); A conveying assembly, which is mounted on the conveyor frame (6), is used to convey the sheet material to the forming system of the roll forming machine body (1); The guide components are provided on both the front and rear sides of the conveying component to guide the movement direction of the plate.
2. The roll forming machine for producing color steel tiles according to claim 1, characterized in that, The locking component includes: A locking frame (7) is fixedly installed on the discharge frame (3); The lower cutting blade (8) is installed on the inner bottom wall of the locking frame (7). A fixed frame (9) is provided inside the locking frame (7) and is located above the lower cutting blade (8); The first driving component (10) is fixedly installed on the upper part of the locking frame (7), and the output end of the first driving component (10) is fixedly connected to the fixed frame (9). The locking part is installed inside the fixing frame (9) and is used to fix the finished product when cutting it.
3. The tile press for producing color steel tile according to claim 2, characterized in that, The locking part includes: Positioning groove (11): Several positioning grooves (11) are equally spaced at the bottom of the fixed frame (9). The fixing frame (12) is slidably installed inside each of the positioning slots (11); Spring (13), each of the fixing brackets (12) is fixedly installed on the top of the spring (13), and the top of the spring (13) is fixedly connected to the inner top wall of the positioning groove (11). Positioning components are provided on both the front and rear sides of the fixed frame (9) to fix the position of the fixed frame (12) and the positioning groove (11).
4. The tile press for producing color steel tile according to claim 3, characterized in that, It also includes trapezoidal flexible blocks (14), and the bottom of several of the fixed frames (12) are fixedly installed with the trapezoidal flexible blocks (14).
5. The tile pressing machine for producing color steel tile according to claim 4, characterized in that, The positioning component includes: Through slots (15): Several through slots (15) are provided at equal distances on both the front and rear sides of the fixed frame (9). Among them, the several through slots (15) on the front side correspond one-to-one with and are connected to the front side of several positioning slots (11), and the several through slots (15) on the rear side correspond one-to-one with and are connected to the rear side of several positioning slots (11). Fixed columns (16) and fixed strips (17) are provided on both the front and rear sides of the fixed frame (9). The two fixed strips (17) are arranged symmetrically, and several fixed columns (16) are fixedly installed on the two fixed strips (17) at equal distances. The fixing posts (16) on the front fixing strip (17) correspond one-to-one with the several through slots (15) on the front and are slidably connected. The fixing posts (16) on the fixing strip (17) on the rear side correspond one-to-one with the several through slots (15) on the rear side and are slidably connected. Anti-slip pad (18), each of the fixed posts (16) is fixedly installed on the side near the positioning groove (11). The second drive unit (19) is fixedly installed on both the front and rear sides of the fixed frame (9). The output end of the second drive unit (19) located on the front side is fixedly connected to the fixed strip (17) on the front side, and the output end of the second drive unit (19) located on the rear side is fixedly connected to the fixed strip (17) on the rear side.
6. The tile press for producing color steel tile according to claim 5, characterized in that, The cutting assembly includes: Upper cutting blade (20), the upper cutting blade (20) is installed at the bottom of the sliding frame (5), and the upper cutting blade (20) is adapted to the lower cutting blade (8); The third drive unit (21) is fixedly installed on the top of the support frame (4), and the output end of the third drive unit (21) is fixedly connected to the top of the sliding frame (5).
7. The tile press for producing color steel tile according to claim 6, characterized in that, The conveying assembly includes: Conveying rollers (22), two conveying rollers (22) are rotatably mounted on the conveyor frame (6), and the two conveying rollers (22) are arranged vertically; A drive motor (23) is fixedly mounted on the conveyor frame (6), and the output end of the drive motor (23) is fixedly connected to the conveyor roller (22); Rubber sleeves (24) are fixedly fitted on both of the conveying rollers (22).
8. The tile press for producing color steel tile according to claim 7, characterized in that, It also includes gears (25), two of the gears (25) are rotatably mounted on the conveyor frame (6), the two gears (25) are fixedly connected to the two conveyor rollers (22) respectively, and the two gears (25) are meshed.
9. The tile press for producing color steel tile according to claim 8, characterized in that, The guiding component includes: Guide frame (26), two guide frames (26) are symmetrically and fixedly installed on the feed frame (2), and the two guide frames (26) are located on the front and rear sides of the conveyor frame (6); The pressure frame (27) is provided on both the upper and lower sides inside the two guide frames (26), and several pressure rollers (28) are rotatably installed on the two pressure frames (27). The fourth driving component (29) is fixedly installed on the upper and lower sides of the two guide frames (26), and the output end of the fourth driving component (29) is fixedly connected to the corresponding pressure frame (27); Side frame (30): The two guide frames (26) are provided with side frames (30) on both the left and right sides, and several guide rollers (31) are rotatably installed on the two side frames (30). The fifth drive unit (32) is fixedly installed on both the left and right sides of the two guide frames (26), and the output end of the fifth drive unit (32) is fixedly connected to the corresponding side frame (30).
10. The tile pressing machine for producing color steel tile according to claim 9, characterized in that, It also includes a guide frame (33), and the guide frame (33) is fixedly installed at the feed end and the discharge end of the two guide frames (26). The inner top surface and the inner bottom surface of each guide frame (33) are set as arc-shaped structures.