A color steel tile cutting and edge grinding integrated machine

Through the design of the color steel tile cutting and edge grinding machine, the color steel tile is fixed by using a threaded rod and a motor-driven adjustment mechanism, and combined with the cutting wheel and triangular grinding block, the deviation problem during the color steel tile cutting and grinding process is solved, stable cutting and grinding is achieved, dust and waste are cleaned up, and production efficiency and safety are improved.

CN119550078BActive Publication Date: 2025-08-01SHANDONG JUYI NEW BUILDING MATERIALS CO LTD
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Patent Information

Application Number
CN202411777305.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-12-05
Publication Date
2025-08-01
Estimated Expiration
2044-12-05

AI Technical Summary

Technical Problem

The existing color steel tile cutting devices are difficult to fix during the cutting and grinding process, resulting in the color steel tile being easily offset and affecting the cutting and grinding effect.

Method used

A color steel tile cutting and edge grinding machine is designed. The threaded rod on the n-shaped frame and the adjustment mechanism driven by the motor are fixed. Combined with the cooperation of the cutting wheel and the triangular grinding block, the stability of the cutting and grinding process is ensured, and dust and waste are cleaned through the liquid spraying mechanism.

Benefits of technology

The color steel tiles are stable and fixed during the cutting and grinding process, avoiding offsets, improving the cutting effect, removing dust and waste generated by cutting, and protecting the safety of the operators.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the technical field of color steel tile cutting and edge grinding, and discloses a color steel tile cutting and edge grinding integrated machine, which includes a workbench supported and placed on the ground by an external support bracket. One end of the workbench is fixedly connected with an N-shaped frame, and an activity plate that moves up and down reciprocally is movably connected to the inner wall of the N-shaped frame. One end of the activity plate is fixedly connected with a rectangular frame, and pressing plates for fixing the color steel tile on the surface of the workbench are fixedly connected to symmetric positions on both sides of the rectangular frame. An activity sleeve that moves horizontally reciprocally is movably connected to the inner wall of the rectangular frame, and an L-shaped rod is fixedly connected to the bottom of the activity sleeve. A cutting wheel for cutting the color steel tile is rotatably connected to the L-shaped rod through a through hole. The present invention solves the problem that the color steel tile is prone to offset during the cutting and grinding process, which affects the cutting and grinding effect of the color steel tile, and enables the color steel tile to be more stably fixed during the cutting and grinding process.
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Description

Technical Field

[0001] The present invention relates to the technical field of color steel tile cutting and edge grinding, and specifically provides a color steel tile cutting and edge grinding integrated machine. Background Art

[0002] The cutting of color steel tiles is a key step in the production process, which usually involves using professional cutting equipment to cut the color steel tiles into appropriate sizes and shapes. The cutting process requires precise control to avoid material waste and ensure neat cutting edges. In an automated production line, the cutting device usually includes components such as a workbench, a fixed frame, a cylinder, and a motor. The cutting disc is driven by the motor to rotate at high speed for cutting. After the color steel tile is cut, burrs are easily generated on the edge, and it is uneven, which is easy to cut the operator. Therefore, grinding treatment is required. Grinding can remove burrs, provide a smooth edge, and prevent harm to people during installation.

[0003] The existing Chinese patent with the publication number CN107052816B includes a strip-shaped support base. One end of the upper surface of the strip-shaped support base is fixedly connected with a group of fixed protrusions. A bearing circular shaft is arranged between the group of fixed protrusions. A strip-shaped swing plate is sleeved on the bearing circular shaft. One end of the side surface of the strip-shaped swing plate is provided with a cutting mechanism, and the other end of the side surface of the strip-shaped swing plate is provided with a grinding mechanism. The upper surface of the group of fixed protrusions is fixedly connected with an L-shaped fixing plate. A plurality of electric control push rods are arranged between the lower surface of the L-shaped fixing plate and the upper surface of the strip-shaped swing plate. Moving mechanisms are arranged on the front and rear side surfaces of the strip-shaped support base, and protective mechanisms are arranged on the left and right side surfaces of the strip-shaped support base.

[0004] When the above device is in use, by controlling the rotation of the first rotating motor, the rotating cutting wheel located at the rotating end is driven to rotate. The color steel tile to be cut is placed on the upper surface of the strip-shaped bearing table located on the upper surface of the strip-shaped support base, and is pushed manually to cut the color steel tile. However, in the actual use process, during the cutting and grinding process of the color steel tile, it is easy to shift, thus affecting the cutting and grinding effect of the color steel tile. Therefore, it is difficult to fix the color steel tile during the cutting and grinding process.

[0005] Therefore, we propose a color steel tile cutting and edge grinding integrated machine. Summary of the Invention

[0006] The purpose of the present invention is to provide a color steel tile cutting and edge grinding integrated machine, which has the advantage of being difficult to fix the color steel tile during the cutting and grinding process, and solves the problems in the background art.

[0007] To achieve the above object, the present invention provides the following technical solution: A color steel tile cutting and edge grinding integrated machine, which includes a workbench supported and placed on the ground by an external support bracket. One end of the workbench is fixedly connected with an n-shaped frame. The inner wall of the n-shaped frame is movably connected with a movable plate that moves up and down reciprocally. One end of the movable plate is fixedly connected with a rectangular frame. On both sides of the rectangular frame at symmetrical positions, there are fixedly connected pressure plates for fixing the color steel tile on the surface of the workbench. The inner wall of the rectangular frame is movably connected with a movable sleeve that moves horizontally reciprocally, and an L-shaped rod is fixedly connected to the bottom of the movable sleeve. A cutting wheel for cutting the color steel tile is rotatably connected to the L-shaped rod through a through hole. A cutting groove for the cutting wheel to cut the color steel tile is opened on the workbench, and the bottom side of the cutting wheel is located inside the inner wall of the cutting groove. An adjusting mechanism for adjusting the up and down reciprocation of the pressure plate is provided on the n-shaped frame. The cutting wheel is driven to rotate by a motor after being powered on.

[0008] Preferably, the adjusting mechanism includes a threaded rod that is rotatably connected to the n-shaped frame through a through hole and is driven to rotate by a power mechanism. A threaded sleeve is rotatably connected to the corresponding position of the movable plate through a through hole, and the threaded rod penetrates into the inner wall of the threaded sleeve and is screwed.

[0009] Preferably, a cavity is opened on one side of the movable plate close to the cutting wheel. A locking block for locking the threaded sleeve is movably connected to the inner wall of the cavity. A locking groove adapted to the outer contour of the locking block is opened on the outer contour of the threaded sleeve, and the locking groove is communicated with the cavity.

[0010] Preferably, a moving mechanism for driving the cutting wheel to move to cut the color steel plate is provided on the rectangular frame. The moving mechanism includes a reciprocating screw rod that is rotatably connected to the rectangular frame through a through hole and is driven to rotate by a power mechanism. The reciprocating screw rod penetrates into the inner wall of the movable sleeve and is screwed. A second bevel gear for driving the reciprocating screw rod to rotate coaxially is fixedly connected to the outer contour of the threaded sleeve near the end. A first bevel gear that meshes with the second bevel gear is coaxially fixed to one end of the reciprocating screw rod close to the movable plate.

[0011] Preferably, a moving rod that moves up and down reciprocally is movably connected to one side of the movable plate close to the locking block through a through hole. An inclined groove for driving the locking block to move reciprocally is opened on the moving rod. A slider for supporting the locking block is movably connected to the inner wall of the inclined groove, and the slider is fixedly connected to the locking block. A fixed block is fixedly connected to the bottom end of the moving rod. A spring for guiding the moving rod to move back to its original position is fixedly connected to the opposite surfaces of the fixed block and the movable plate.

[0012] Preferably, a grinding mechanism for grinding the cutting surface of the color steel tile is provided on the L-shaped rod. The grinding mechanism includes that one end of the L-shaped rod far from the movable sleeve is fixedly connected with a cylindrical shell through an external support. The cylindrical shell is penetrated and movably connected with a lifting rod that moves up and down reciprocally. The bottom end of the lifting rod is fixedly connected with a triangular grinding block for grinding the cutting surface of the color steel tile, and the triangular grinding block penetrates to the inner wall of the cutting groove and is movably connected.

[0013] Preferably, a fixed rod is fixedly connected to the L-shaped rod. The end of the fixed rod is rotatably connected with a swing rod that pulls the lifting rod to move up and down reciprocally through a pin shaft. An activity groove is opened at one end of the swing rod close to the cylindrical shell, and the end of the lifting rod penetrates to the inner wall of the activity groove and is movably connected. A second gear is coaxially fixed to the cutting wheel, and a first gear that meshes and drives with the second gear is rotatably connected to one side of the L-shaped rod close to the second gear through a pin shaft. A cam groove for pulling the fixed rod to swing reciprocally is opened on the first gear. A support block for supporting the swing rod is movably connected to the inner wall of the cam groove, and the swing rod is penetrated and fixedly connected by the support block.

[0014] Preferably, a liquid spraying mechanism for cleaning cutting dust and waste chips is provided on the cylindrical shell. The liquid spraying mechanism includes that liquid inlet pipes and liquid discharge pipes are penetrated and fixedly connected to symmetric positions on both sides of the cylindrical shell close to the end. First connecting pipes and second connecting pipes are penetrated and fixedly connected to symmetric positions on both sides of the end of the cylindrical shell far from the liquid inlet pipes and the liquid discharge pipes. One ends of the first connecting pipe and the second connecting pipe far from the cylindrical shell penetrate to the inner walls of the adjacent liquid inlet pipe and the liquid discharge pipe respectively and are fixedly connected. A water storage tank for storing water source is fixedly connected to the L-shaped rod, and one end of the liquid inlet pipe far from the cylindrical shell penetrates to the inner wall of the first conical tooth and is fixedly connected. The end of the liquid discharge pipe far from the cylindrical shell is fixedly connected with a nozzle for spraying the water source to the cutting position of the color steel plate.

[0015] Preferably, a piston plate for extracting and discharging the water source inside the water storage tank is movably connected to the inner wall of the cylindrical shell, and the piston plate is penetrated and fixedly connected by the lifting rod. One-way liquid inlet valves for quantitatively extracting the water source inside the water storage tank are fixedly connected to the inner walls of the liquid inlet pipe and the first connecting pipe close to the cylindrical shell. One-way liquid discharge valves for quantitatively discharging the water source inside the cylindrical shell are fixedly connected to the inner walls of the liquid discharge pipe and the second connecting pipe close to the cylindrical shell.

[0016] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0017] 1. Through the threaded rod provided on the N-shaped frame, and the threaded rod is driven by a motor to rotate, enabling the motor to drive the threaded rod to rotate axially and reciprocally on the N-shaped frame. And the threaded sleeve is screwed onto the threaded rod, enabling the threaded sleeve to drive the movable plate to move up and down reciprocally along the inner wall of the N-shaped frame under the action of the threaded rod. At the same time, the rectangular frame can drive the pressing plate to move up and down reciprocally synchronously with the movable plate.

[0018] When the rectangular frame drives the pressing plate to move vertically upward to the limit distance, and the movable sleeve can drive the L-shaped rod and the cutting wheel to move to the top limit distance synchronously under the action of the rectangular frame, enabling the operator to place the color steel tile on the surface of the workbench. At this time, when the workbench drives the pressing plate to move vertically downward to the limit distance, the pressing plate can move to contact and press-fix the color steel tile on the surface of the workbench. At this time, the L-shaped rod drives the bottom side of the cutting wheel to move to the inner wall of the cutting groove and cut the color steel tile under the action of the movable sleeve.

[0019] 2. When the threaded rod rotates and drives the movable plate to move vertically downward to the limit distance, at this time the fixed block abuts against the surface of the workbench, enabling the movable plate to move towards the fixed block, and the spring is squeezed and contracted under the action of the movable plate. Thus, the slider can pull the locking block to move away from the threaded sleeve under the action of the inclined groove, and the locking block moves out of the inner wall of the locking groove, then the threaded sleeve is in the unlocked state. Furthermore, the threaded sleeve can rotate axially synchronously with the threaded rod on the movable plate, and the second bevel gear rotates axially synchronously with the threaded sleeve, enabling the first bevel gear to drive the reciprocating lead screw to rotate axially on the rectangular frame under the action of the second bevel gear. Along with the movable sleeve being screwed onto the reciprocating lead screw, the movable sleeve can drive the L-shaped rod to move horizontally and reciprocally along the inner wall of the rectangular frame under the action of the reciprocating lead screw, realizing the cutting operation of the cutting wheel moving under the action of the L-shaped rod on the color steel tile on the surface of the workbench.

[0020] 3. When the second gear drives the first gear to rotate axially, it can enable the support block to drive the swing rod to swing axially and reciprocally on the fixed rod under the action of the cam groove. Furthermore, the lifting rod can move up and down reciprocally on the inner wall of the cylindrical housing under the action of the movable groove. Through the triangular grinding block provided on the lifting rod, and the triangular grinding block penetrates to the inner wall of the cutting groove, the lifting rod can pull the triangular grinding block to move up and down reciprocally synchronously on the inner wall of the cutting groove, enabling the triangular grinding block to grind the cut of the color steel tile, realizing the grinding and removal of the burrs at the cut of the color steel tile, and avoiding the problem that the burrs at the cut of the color steel tile are easy to cause harm to personnel.

[0021] IV. When the piston plate moves towards the end close to the first connecting pipe, the air pressure near the end of the cylindrical shell is negative pressure, and the air pressure at the bottom end is positive pressure. This makes the one-way liquid inlet valve at the end of the cylindrical shell in the open state and the one-way liquid discharge valve in the closed state. Also, the one-way liquid inlet valve at the bottom end of the cylindrical shell is in the closed state and the one-way liquid discharge valve is in the open state. Thus, the liquid inlet pipe can extract the water source inside the water storage tank into the interior of the top end of the cylindrical shell, and at the same time, the second connecting pipe can discharge the water source at the bottom end of the cylindrical shell through the drain pipe. Through the spray head provided on the drain pipe, the spray head can evenly spray the water source onto the cutting area of the cutting wheel, enabling the water source to perform dust suppression and cleaning on the dust and waste generated during cutting, avoiding the problem of dust and waste splashing during cutting and causing harm to personnel.

[0022] Through the combined use of the above structure, it solves the problem that in the actual use process of the existing device, the color steel tile is prone to deviation during cutting and grinding, which affects the cutting and grinding effect of the color steel tile, and enables the color steel tile to be more stably fixed during cutting and grinding. BRIEF DESCRIPTION OF THE DRAWINGS

[0023] Figure 1 It is a three-dimensional structural schematic diagram of the present invention;

[0024] Figure 2 It is a three-dimensional structural sectional view of the rectangular frame of the present invention;

[0025] Figure 3 For the present invention Figure 2 Structural schematic diagram at A in;

[0026] Figure 4 It is a three-dimensional structural schematic diagram of the part where the swing rod is located in the present invention;

[0027] Figure 5 It is a three-dimensional structural schematic diagram of the part where the first gear is located in the present invention;

[0028] Figure 6 It is a three-dimensional structural sectional view of the movable plate of the present invention;

[0029] Figure 7 It is a three-dimensional structural schematic diagram of the part where the slider is located in the present invention;

[0030] Figure 8 It is a three-dimensional structural sectional view of the cylindrical shell of the present invention;

[0031] Figure 9 For the present invention Figure 8 Structural schematic diagram at B in;

[0032] Figure 10 For the present invention Figure 8 Structural schematic diagram at C in.

[0033] In the figure: 1, working table; 101, cutting groove; 2, n-shaped frame; 3, movable plate; 301, cavity; 4, rectangular frame; 5, pressing plate; 6, threaded sleeve; 601, locking groove; 7, threaded rod; 8, movable sleeve; 9, L-shaped rod; 10, cutting wheel; 11, locking block; 12, moving rod; 121, inclined groove; 13, slider; 14, fixed block; 15, spring; 16, reciprocating lead screw; 17, first bevel gear; 18, second bevel gear; 19, cylindrical housing; 20, lifting rod; 21, triangular grinding block; 22, fixed rod; 23, swinging rod; 231, movable groove; 24, first gear; 241, cam groove; 25, support block; 26, second gear; 27, water storage tank; 28, liquid inlet pipe; 281, one-way liquid inlet valve; 29, liquid discharge pipe; 291, one-way liquid discharge valve; 30, spray head; 31, first connecting pipe; 32, second connecting pipe; 33, piston plate. Specific implementation manner

[0034] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0035] Embodiment one:

[0036] Please refer to Figures 1 to 10 , the present invention provides a technical solution: a color steel tile cutting and edge grinding integrated machine, including a working table 1 supported and placed on the ground through an external support, one end of the working table 1 is fixedly connected with an n-shaped frame 2, the inner wall of the n-shaped frame 2 is movably connected with a movable plate 3 that moves up and down reciprocally, one end of the movable plate 3 is fixedly connected with a rectangular frame 4, pressing plates 5 for fixing the color steel tile on the surface of the working table 1 are fixedly connected at symmetric positions on both sides of the rectangular frame 4, a movable sleeve 8 that moves horizontally reciprocally is movably connected to the inner wall of the rectangular frame 4, and an L-shaped rod 9 is fixedly connected to the bottom of the movable sleeve 8, and a cutting wheel 10 for cutting the color steel tile is rotatably connected through the L-shaped rod 9, a cutting groove 101 for the cutting wheel 10 to cut the color steel tile is opened on the working table 1, and the bottom side of the cutting wheel 10 is located inside the inner wall of the cutting groove 101, an adjusting mechanism for adjusting the lifting and reciprocating of the pressing plate 5 is provided on the n-shaped frame 2, and the cutting wheel 10 is driven to rotate by an energized motor.

[0037] In use, by setting up the workbench 1, first, the workbench 1 is fixedly supported on the ground through an external support, which improves the stability of the cutting and edge-grinding integrated machine. Through the n-shaped frame 2 arranged on the workbench 1, the n-shaped frame 2 is fixedly supported on the workbench 1. Through the movable plate 3 arranged on the n-shaped frame 2, and the n-shaped frame 2 supports the movable plate 3, enabling the movable plate 3 to be connected for lifting and moving inside the inner wall of the n-shaped frame 2. Through the rectangular frame 4 arranged on the movable plate 3, the rectangular frame 4 is fixedly supported on the movable plate 3. Through the movable sleeve 8 arranged on the rectangular frame 4, and the rectangular frame 4 supports the movable sleeve 8, enabling the movable sleeve 8 to be connected for horizontal reciprocating movement inside the inner wall of the rectangular frame 4. Through the L-shaped rod 9 arranged on the L-shaped rod 9, and the cutting wheel 10 arranged on the L-shaped rod 9, the L-shaped rod 9 can fixedly support the cutting wheel 10 on the movable sleeve 8, and the cutting wheel 10 is driven by a motor to rotate. Thus, the motor can drive the cutting wheel 10 to rotate around a fixed axis. Through the cutting groove 101 opened on the workbench 1, and the bottom side of the cutting wheel 10 is located inside the inner wall of the cutting groove 101. Along with the cutting wheel 10 rotating around a fixed axis, the cutting wheel 10 can cut the color steel tile on the workbench 1.

[0038] Through the pressing plate 5 arranged on the rectangular frame 4, and the adjusting mechanism arranged on the n-shaped frame 2. Along with placing the color steel tile on the surface of the workbench 1, the adjusting mechanism can drive the pressing plate 5 to move to press or lift and contact to fix the color steel tile on the workbench 1, which improves the stability of the cutting of the color steel tile on the surface of the workbench 1 by the cutting wheel 10, and at the same time facilitates the personnel to pick up and place the color steel tile on the workbench 1.

[0039] Embodiment Two:

[0040] On the basis of Embodiment One, furthermore:

[0041] The adjusting mechanism includes a threaded rod 7 that is penetrated and rotatably connected on the n-shaped frame 2 and is driven to rotate by a power mechanism. The movable plate 3 is penetrated and rotatably connected at a position corresponding to the threaded rod 7 with a threaded sleeve 6, and the threaded rod 7 penetrates into the inner wall of the threaded sleeve 6 and is screwed.

[0042] A cavity 301 is opened on one side of the movable plate 3 close to the cutting wheel 10. A locking block 11 for locking the threaded sleeve 6 is movably connected to the inner wall of the cavity 301. A locking groove 601 adapted to the outer contour of the locking block 11 is opened on the outer contour of the threaded sleeve 6, and the locking groove 601 is communicated with the cavity 301.

[0043] In use, such as Figure 1 、 Figure 2 、 Figure 6 and Figure 7As shown in the figure, through the threaded rod 7 provided on the n-shaped frame 2, and the threaded rod 7 is driven by a motor to rotate, the motor can drive the threaded rod 7 to perform a fixed-axis reciprocating rotation on the n-shaped frame 2. Through the threaded sleeve 6 provided on the movable plate 3, the threaded sleeve 6 is rotatably connected to the movable plate 3. Through the locking groove 601 opened on the threaded sleeve 6 and the cavity 301 opened on the movable plate 3, the locking groove 601 is communicated with the cavity 301. Through the locking block 11 provided on the cavity 301, and the locking block 11 is movably connected to the inner wall of the cavity 301. In the initial state, the locking block 11 moves to the inner wall of the locking groove 601 to lock the threaded sleeve 6. Along with the fixed-axis reciprocating rotation of the threaded rod 7, the threaded sleeve 6 can drive the movable plate 3 to perform a reciprocating lifting movement along the inner wall of the n-shaped frame 2 under the action of the threaded rod 7. At the same time, the rectangular frame 4 can drive the pressing plate 5 to perform a synchronous reciprocating lifting movement along with the movable plate 3.

[0044] When the rectangular frame 4 drives the pressing plate 5 to move upward in the vertical direction to the limit distance, and the movable sleeve 8 can drive the L-shaped rod 9 and the cutting wheel 10 to move to the top limit distance synchronously under the action of the rectangular frame 4, so that the operator can place the color steel tile on the surface of the workbench 1. At this time, when the workbench 1 drives the pressing plate 5 to move downward in the vertical direction to the limit distance, the pressing plate 5 can move to contact and press-fix the color steel tile on the surface of the workbench 1. At this time, the L-shaped rod 9 drives the bottom side of the cutting wheel 10 to move to the inner wall of the cutting groove 101 under the action of the movable sleeve 8 and cut the color steel tile.

[0045] Embodiment 3:

[0046] On the basis of Embodiment 2, further:

[0047] The rectangular frame 4 is provided with a moving mechanism for driving the cutting wheel 10 to move to cut the color steel plate. The moving mechanism includes a reciprocating screw rod 16 that is penetrated and rotatably connected to the rectangular frame 4 and is driven by a power mechanism to rotate. The reciprocating screw rod 16 penetrates into the inner wall of the movable sleeve 8 and is screwed. A second bevel gear 18 for driving the reciprocating screw rod 16 to perform a fixed-axis rotation is fixedly connected to the outer contour of the threaded sleeve 6 near the end, and a first bevel gear 17 that meshes and drives with the second bevel gear 18 is coaxially fixed to one end of the reciprocating screw rod 16 close to the movable plate 3.

[0048] One side of the movable plate 3 close to the locking block 11 is penetrated and movably connected with a moving rod 12 that moves up and down reciprocally. An inclined groove 121 for driving the locking block 11 to move reciprocally is formed on the moving rod 12. The inner wall of the inclined groove 121 is movably connected with a slider 13 that supports the locking block 11, and the slider 13 is fixedly connected with the locking block 11. The bottom end of the moving rod 12 is fixedly connected with a fixed block 14. A spring 15 for guiding the moving rod 12 to move back is fixedly connected to the opposite surfaces of the fixed block 14 and the movable plate 3.

[0049] During use, through the reciprocating lead screw 16 provided on the rectangular frame 4, the reciprocating lead screw 16 is rotatably connected to the rectangular frame 4 in a fixed-axis manner. Through the first bevel gear 17 provided on the reciprocating lead screw 16 and the second bevel gear 18 provided on the threaded sleeve 6, the teeth on the first bevel gear 17 and the second bevel gear 18 mesh with each other. Through the moving rod 12 provided on the movable plate 3, the moving rod 12 can be movably connected to the movable plate 3 in a lifting manner. Through the inclined groove 121 formed on the moving rod 12 and the slider 13 provided on the inclined groove 121, the slider 13 is fixed on the locking block 11. Thus, the slider 13 can support the position of the locking block 11 under the action of the inclined groove 121.

[0050] As Figure 6 and Figure 7 shown, through the fixed block 14 provided on the moving rod 12 and the spring 15 provided on the fixed block 14, when the threaded rod 7 rotates and drives the movable plate 3 to move downward in the vertical direction to the limit distance, at this time, the fixed block 14 abuts against the surface of the workbench 1, enabling the movable plate 3 to move towards the direction close to the fixed block 14, and the spring 15 is compressed and contracted under the action of the movable plate 3. Thus, the slider 13 can pull the locking block 11 to move away from the threaded sleeve 6 under the action of the inclined groove 121, and the locking block 11 moves out of the inner wall of the locking groove 601, then the threaded sleeve 6 is in an unlocked state. Furthermore, the threaded sleeve 6 can rotate in a fixed-axis manner on the movable plate 3 synchronously with the threaded rod 7, and the second bevel gear 18 rotates in a fixed-axis manner synchronously with the threaded sleeve 6, enabling the first bevel gear 17 to drive the reciprocating lead screw 16 to rotate in a fixed-axis manner on the rectangular frame 4 under the action of the second bevel gear 18. Along with the movable sleeve 8 being screwed onto the reciprocating lead screw 16, the movable sleeve 8 can drive the L-shaped rod 9 to move horizontally reciprocally along the inner wall of the rectangular frame 4 under the action of the reciprocating lead screw 16, realizing the cutting operation of the cutting wheel 10 moving on the surface of the color steel tile on the workbench 1 under the action of the L-shaped rod 9.

[0051] When the threaded rod 7 rotates and drives the movable plate 3 to move in the upward direction, and the movable plate 3 loses the downward pushing force of the threaded rod 7, at this time, the spring 15 can push the movable plate 3 to move in the upward vertical direction under the action of elastic force, and the slider 13 pushes the locking block 11 to move to the inner wall of the locking groove 601 under the action of the inclined groove 121, so that the threaded sleeve 6 can drive the movable plate 3 to move synchronously in the upward vertical direction during the rotation of the threaded rod 7.

[0052] Embodiment 4:

[0053] On the basis of Embodiment 3, further:

[0054] A grinding mechanism for grinding the cutting surface of the color steel tile is provided on the L-shaped rod 9. The grinding mechanism includes that one end of the L-shaped rod 9 far away from the movable sleeve 8 is fixedly connected with a cylindrical shell 19 through an external support. The cylindrical shell 19 is penetrated and movably connected with a lifting rod 20 that moves up and down reciprocally. The bottom end of the lifting rod 20 is fixedly connected with a triangular grinding block 21 for grinding the cutting surface of the color steel tile, and the triangular grinding block 21 penetrates to the inner wall of the cutting groove 101 and is movably connected.

[0055] A fixed rod 22 is fixedly connected to the L-shaped rod 9. One end of the fixed rod 22 is rotatably connected with a swing rod 23 that pulls the lifting rod 20 to move up and down reciprocally through a pin shaft. An activity groove 231 is opened at one end of the swing rod 23 close to the cylindrical shell 19, and the end of the lifting rod 20 penetrates to the inner wall of the activity groove 231 and is movably connected. A second gear 26 is coaxially fixed to the cutting wheel 10, and a first gear 24 that meshes and drives with the second gear 26 is rotatably connected to one side of the L-shaped rod 9 close to the second gear 26 through a pin shaft. A cam groove 241 for pulling the fixed rod 22 to swing reciprocally is opened on the first gear 24. A support block 25 for supporting the swing rod 23 is movably connected to the inner wall of the cam groove 241, and the swing rod 23 is penetrated and fixedly connected by the support block 25.

[0056] In use, through the cylindrical shell 19 provided on the L-shaped rod 9, the cylindrical shell 19 is fixedly supported on the L-shaped rod 9 through an external bracket. Through the lifting rod 20 provided on the cylindrical shell 19, and the cylindrical shell 19 supports the lifting rod 20, so that the lifting rod 20 can be connected to move up and down on the cylindrical shell 19. Through the fixed rod 22 provided on the L-shaped rod 9, and the swing rod 23 provided on the fixed rod 22, the fixed rod 22 can fixedly support the swing rod 23 on the L-shaped rod 9. At the same time, the swing rod 23 is rotatably connected to the fixed rod 22 about a fixed axis. Through the movable groove 231 opened on the swing rod 23, and the end of the lifting rod 20 penetrates through the inner wall of the movable groove 231, the swing rod 23 can support the lifting rod 20 under the action of the movable groove 231. Through the second gear 26 provided on the cutting wheel 10, and the second gear 26 is coaxially fixed to the cutting wheel 10, the second gear 26 can rotate about a fixed axis synchronously with the cutting wheel 10. Through the first gear 24 provided on the L-shaped rod 9, and the teeth of the first gear 24 and the second gear 26 mesh with each other, so that the second gear 26 can drive the first gear 24 to rotate about a fixed axis on the L-shaped rod 9 under the action of the cutting wheel 10. Through the cam groove 241 opened on the first gear 24, and the support block 25 provided on the cam groove 241, the support block 25 supports the swing rod 23 under the action of the cam groove 241.

[0057] As Figure 1 , Figure 4 and Figure 5 shown, along with the second gear 26 driving the first gear 24 to rotate about a fixed axis, the support block 25 can drive the swing rod 23 to swing reciprocally about a fixed axis on the fixed rod 22 under the action of the cam groove 241. Further, the lifting rod 20 can reciprocally move up and down on the inner wall of the cylindrical shell 19 under the action of the movable groove 231. Through the triangular grinding block 21 provided on the lifting rod 20, and the triangular grinding block 21 penetrates through the inner wall of the cutting groove 101, the lifting rod 20 can pull the triangular grinding block 21 to reciprocally move up and down on the inner wall of the cutting groove 101 synchronously, so that the triangular grinding block 21 can grind the cut of the color steel tile, achieving the grinding and removal of the burrs at the cut of the color steel tile, and avoiding the problem that the burrs at the cut of the color steel tile are likely to cause harm to personnel.

[0058] At the same time, the triangular grinding block 21 moves along the port of the color steel tile, and the triangular grinding block 21 can expand the cut of the color steel tile to both sides, further reducing the resistance received by the cutting wheel 10 during cutting.

[0059] Embodiment Five:

[0060] On the basis of Embodiment Four, furthermore:

[0061] A liquid spraying mechanism for cleaning cutting dust and waste chips is provided on the cylindrical housing 19. The liquid spraying mechanism includes a liquid inlet pipe 28 and a liquid discharge pipe 29 which are both penetrated and fixedly connected at symmetric positions on both sides of the cylindrical housing 19 near the end. At symmetric positions on both sides of the end of the cylindrical housing 19 far from the liquid inlet pipe 28 and the liquid discharge pipe 29, a first connecting pipe 31 and a second connecting pipe 32 are both penetrated and fixedly connected. The ends of the first connecting pipe 31 and the second connecting pipe 32 far from the cylindrical housing 19 respectively penetrate into the inner walls of the adjacent liquid inlet pipe 28 and the liquid discharge pipe 29 and are fixedly connected. A water storage tank 27 for storing water source is fixedly connected to the L-shaped rod 9, and the end of the liquid inlet pipe 28 far from the cylindrical housing 19 penetrates into the inner wall of the first conical gear 17 and is fixedly connected. The end of the liquid discharge pipe 29 far from the cylindrical housing 19 is fixedly connected with a nozzle 30 for spraying the water source to the cutting position of the color steel plate.

[0062] A piston plate 33 for extracting and discharging the water source inside the water storage tank 27 is movably connected to the inner wall of the cylindrical housing 19, and the piston plate 33 is penetrated and fixedly connected by a lifting rod 20. One-way inlet valves 281 for quantitatively extracting the water source inside the water storage tank 27 are fixedly connected to the inner walls of the liquid inlet pipe 28 and the first connecting pipe 31 near the end of the cylindrical housing 19. One-way discharge valves 291 for quantitatively discharging the water source inside the cylindrical housing 19 are fixedly connected to the inner walls of the liquid discharge pipe 29 and the second connecting pipe 32 near the end of the cylindrical housing 19.

[0063] During use, through the liquid inlet pipe 28 and the liquid discharge pipe 29 provided on the cylindrical housing 19, the liquid inlet pipe 28 and the liquid discharge pipe 29 are communicated with the end of the cylindrical housing 19. And the first connecting pipe 31 and the second connecting pipe 32 provided on the cylindrical housing 19 enable the first connecting pipe 31 and the second connecting pipe 32 to connect the bottom end of the cylindrical housing 19 with the liquid inlet pipe 28 and the liquid discharge pipe 29 respectively. Through the water storage tank 27 provided on the L-shaped rod 9, first store the water source inside the water storage tank 27. At the same time, the liquid inlet pipe 28 connects the cylindrical housing 19 with the first gear 24. Through the piston plate 33 provided on the cylindrical housing 19, and the piston plate 33 is fixedly connected with the lifting rod 20. Along with the reciprocating lifting movement of the lifting rod 20, the lifting rod 20 can drive the piston plate 33 to perform reciprocating lifting movement on the inner wall of the cylindrical housing 19.

[0064] Such as Figure 4 、 Figure 8 、 Figure 9 and Figure 10As shown, through the one-way liquid inlet valve 281 provided on the liquid inlet pipe 28 and the first connecting pipe 31, and the one-way liquid discharge valve 291 provided on the liquid discharge pipe 29 and the second connecting pipe 32, when the piston plate 33 moves towards the end close to the first connecting pipe 31, at this time, the air pressure near the end of the cylindrical housing 19 is negative pressure, and the air pressure at the bottom end is positive pressure. This makes the one-way liquid inlet valve 281 at the end of the cylindrical housing 19 in an open state, the one-way liquid discharge valve 291 in a closed state, the one-way liquid inlet valve 281 at the bottom end of the cylindrical housing 19 in a closed state, and the one-way liquid discharge valve 291 in an open state. Thus, the liquid inlet pipe 28 can extract the water source inside the water storage tank 27 into the interior of the top end of the cylindrical housing 19. At the same time, the second connecting pipe 32 can discharge the water source at the bottom end of the cylindrical housing 19 through the liquid discharge pipe 29. Through the spray head 30 provided on the liquid discharge pipe 29, the spray head 30 can evenly spray the water source onto the cutting area of the cutting wheel 10, enabling the water source to perform dust suppression and cleaning on the dust and waste chips generated during cutting, avoiding the problem of dust and waste chips splashing during cutting and causing harm to personnel.

[0065] When the piston plate 33 moves towards the end close to the liquid discharge pipe 29, the above structure moves in the opposite direction, realizing continuous extraction and spraying of the water source, and avoiding poor cleaning effect caused by water source interruption.

[0066] Furthermore, it is realized that the existing device can fix the color steel tile during cutting and grinding, improving the cutting effect of the color steel tile, being convenient to use, and being better than traditional products.

[0067] The standard parts used in this embodiment can be directly purchased from the market. For the non-standard structural components described in the specification and drawings, they can also be directly processed according to the existing common technical knowledge without any doubt. At the same time, the connection methods of each component adopt the mature conventional means in the existing technology, and the machines, parts, and equipment all adopt the conventional models in the existing technology. Therefore, no specific description will be made here.

[0068] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A color steel tile cutting and edge grinding integrated machine, characterized in that: It includes a workbench (1) placed on the ground and supported by a peripheral bracket. One end of the workbench (1) is fixedly connected with an n-shaped frame (2). An activity plate (3) that moves up and down reciprocally is movably connected to the inner wall of the n-shaped frame (2). One end of the activity plate (3) is fixedly connected with a rectangular frame (4). Pressing plates (5) for fixing the color steel tile on the surface of the workbench (1) are fixedly connected to the symmetric positions on both sides of the rectangular frame (4). An activity sleeve (8) that moves horizontally reciprocally is movably connected to the inner wall of the rectangular frame (4). And a bottom of the activity sleeve (8) is fixedly connected with an L-shaped rod (9). A cutting wheel (10) for cutting the color steel tile is rotatably connected to the L-shaped rod (9) through penetration. A cutting groove (101) for the cutting wheel (1) to cut the color steel tile is formed on the workbench (1). And the bottom side of the cutting wheel (10) is located on the inner wall of the cutting groove (101). An adjusting mechanism for adjusting the up-and-down reciprocating movement of the pressing plate (5) is arranged on the n-shaped frame (2). The cutting wheel (10) is driven to rotate by a motor after being powered on; A grinding mechanism for grinding the cutting surface of the color steel tile is arranged on the L-shaped rod (9). The grinding mechanism includes that one end of the L-shaped rod (9) far away from the activity sleeve (8) is fixedly connected with a cylindrical shell (19) through a peripheral bracket. A lifting rod (20) that moves up and down reciprocally is movably connected to the cylindrical shell (19) through penetration. A triangular grinding block (21) for grinding the cutting surface of the color steel tile is fixedly connected to the bottom end of the lifting rod (20). And the triangular grinding block (21) penetrates to the inner wall of the cutting groove (101) and is movably connected; A fixed rod (22) is fixedly connected to the L-shaped rod (9). One end of the fixed rod (22) is rotatably connected with a swing rod (23) that pulls the lifting rod (20) to move up and down reciprocally through a pin shaft. An activity groove (231) is formed at one end of the swing rod (23) close to the cylindrical shell (19). And the end of the lifting rod (20) penetrates to the inner wall of the activity groove (231) and is movably connected. A second gear (26) is coaxially fixed to the cutting wheel (10). And a first gear (2) that meshes and drives with the second gear (26) is rotatably connected to one side of the L-shaped rod (9) close to the second gear (26) through a pin shaft. A cam groove (241) for pulling the fixed rod (22) to swing reciprocally is formed on the first gear (24). A support block (25) for supporting the swing rod (23) is movably connected to the inner wall of the cam groove (241). And the swing rod (23) is penetrated and fixedly connected by the support block (25).

2. The integrated color steel tile cutting and edge grinding machine according to claim 1, wherein: The adjusting mechanism includes a threaded rod (7) that is rotatably connected to the n-shaped frame (2) through penetration and is driven to rotate by a power mechanism. A threaded sleeve (6) is rotatably connected to the position corresponding to the threaded rod (7) on the activity plate (3) through penetration. And the threaded rod (7) penetrates to the inner wall of the threaded sleeve (6) and is screwed.

3. The integrated color steel tile cutting and edge grinding machine according to claim 2, characterized in that: On one side of the movable plate (3) close to the cutting wheel (10), a cavity (301) is formed. The inner wall of the cavity (301) is movably connected with a locking block (11) for locking the threaded sleeve (6). A locking groove (601) adapted to the outer contour of the locking block (11) is formed on the outer contour of the threaded sleeve (6), and the locking groove (601) communicates with the cavity (301).

4. A color steel tile cutting and edge grinding integrated machine according to claim 3, characterized in that: A moving mechanism for driving the cutting wheel (10) to move for cutting the color steel plate is provided on the rectangular frame (4). The moving mechanism includes a reciprocating lead screw (16) that is penetrated and rotatably connected to the rectangular frame (4) by a fixed axis and driven to rotate by a power mechanism. The reciprocating lead screw (16) penetrates into the inner wall of the movable sleeve (8) and is screwed. A second bevel gear (18) for driving the reciprocating lead screw (16) to rotate by a fixed axis is fixedly connected to the outer contour of the threaded sleeve (6) near the end, and a first bevel gear (17) meshing with the second bevel gear (18) is coaxially fixed to one end of the reciprocating lead screw (16) close to the movable plate (3).

5. The integrated color steel tile cutting and edge grinding machine according to claim 4, wherein: On one side of the movable plate (3) close to the locking block (11), a moving rod (12) that moves up and down reciprocally is penetrated and movably connected. An inclined groove (121) for driving the locking block (11) to move reciprocally is formed on the moving rod (12). A slider (13) for supporting the locking block (11) is movably connected to the inner wall of the inclined groove (121), and the slider (13) is fixedly connected to the locking block (11). A fixed block (14) is fixedly connected to the bottom end of the moving rod (12). Springs (15) for guiding the moving rod (12) to move back to its original position are fixedly connected to the opposite surfaces of the fixed block (14) and the movable plate (3).

6. The integrated color steel tile cutting and edge grinding machine according to claim 5, characterized in that: A liquid spraying mechanism for cleaning cutting dust and waste chips is provided on the cylindrical shell (19). The liquid spraying mechanism includes a liquid inlet pipe (28) and a liquid discharge pipe (29) that are penetrated and fixedly connected to both sides of the cylindrical shell (19) near the end symmetrically. On both sides of the cylindrical shell (19) at the symmetric position away from the liquid inlet pipe (28) and the liquid discharge pipe (29), a first connecting pipe (31) and a second connecting pipe (32) are penetrated and fixedly connected. One ends of the first connecting pipe (31) and the second connecting pipe (32) away from the cylindrical shell (19) penetrate into the inner walls of the adjacent liquid inlet pipe (28) and the liquid discharge pipe (29) respectively and are fixedly connected. A water storage tank (27) for storing water source is fixedly connected to the L-shaped rod (9). One end of the liquid inlet pipe (28) away from the cylindrical shell (19) penetrates into the inner wall of the first bevel gear (17) and is fixedly connected. One end of the liquid discharge pipe (29) away from the cylindrical shell (19) is fixedly connected to a nozzle (30) for spraying water source to the cutting position of the color steel plate.

7. A color steel tile cutting and edge grinding integrated machine according to claim 6, characterized in that: A piston plate (33) for extracting and discharging the water source inside the water storage tank (27) is movably connected to the inner wall of the cylindrical shell (19), and the piston plate (33) is penetrated by a lifting rod (20) and fixedly connected thereto. One-way liquid inlet valves (281) for quantitatively extracting the water source inside the water storage tank (27) are fixedly connected to the inner walls of the liquid inlet pipe (28) and the first connecting pipe (31) near one end of the cylindrical shell (19). One-way liquid discharge valves (291) for quantitatively discharging the water source inside the cylindrical shell (19) are fixedly connected to the inner walls of the liquid discharge pipe (29) and the second connecting pipe (32) near one end of the cylindrical shell (19).

Citation Information

Patent Citations

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