Auxiliary ceramic tile cutting device for house decoration
Through the auxiliary tile cutting device of automatic line drawing and shape extraction mechanism, the problem of unstable and inaccurate hand-image lines is solved, and the automation and precision of tile cutting is realized, ensuring that the tiles and the walls are closely fitted, and the decoration effect is improved.
Patent Information
- Application Number
- CN202510641490.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-19
- Publication Date
- 2025-08-15
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
During the house decoration process, the manual animation lines are unstable and inaccurate, resulting in the inability to fit closely with the wall after the tiles are cut, affecting the aesthetic effect.
The auxiliary tile cutting device that uses automatic line drawing is used to drive the ink bucket line to automatically draw the line on the shape taker, and the shape is accurate through the shape take-up mechanism and the compression device, and the fixed device prevents sliding, so that the shape is automatically retrieved and drawn.
The automation and precision of tile cutting is achieved, which avoids the instability and inaccuracy of manual animation lines, ensures that the tiles and the walls are closely integrated, and improves the decoration effect.
Smart Images

Figure CN120480869A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the field of building construction, and in particular to an auxiliary tile cutting device for house decoration. Background Art
[0002] In the process of house decoration, it is often necessary to tile the floor and walls to make the house more beautiful. When tiling, you will encounter corners of the house. Corners have certain structures and angles. At this time, a whole tile cannot fit tightly with the wall. Therefore, decoration workers often use a shaping device to shape the corners of the wall, and then cut the tiles into a shape that can fit with the wall according to the shape of the shaping device, and then stick the cut tiles to the corresponding corner positions.
[0003] Patent publication number CN220489906U discloses a cutting line measuring device, including a mold taker, a first positioning ruler and a second positioning ruler; the mold taker is connected to the first positioning ruler and can slide back and forth along the length direction of the first positioning ruler; the second positioning ruler is vertically connected to the first positioning ruler, and forms a movable space for accommodating the mold taker between the second positioning ruler and the first positioning ruler, and the planes of the second positioning ruler and the first positioning ruler are parallel to each other.
[0004] In the cutting line measuring device, the former slides away from the second positioning ruler along the length direction of the first positioning ruler, and its inner core will encounter an obstacle and deform, thereby forming the outline of the obstacle, so as to realize the shaping of the obstacle; by aligning the front and back of the ruler formed by the two with a right-angle boundary of the floor tile or ceramic tile, the precise position of the former on the floor tile or ceramic tile can be determined, and then the cutting line can be drawn on the floor tile or ceramic tile along the outline of the former with a brush, and then the cutting can be carried out. When the above device draws the line on the ceramic tile after shaping the corner position, people draw the line manually. When drawing the line manually, the hand is prone to shaking and instability, which will cause the line drawing to be inaccurate, making it impossible for the cut ceramic tile to fit tightly against the wall, resulting in poor tile pasting effect. Therefore, in order to solve the shortcomings of unstable and accurate manual line drawing, an auxiliary ceramic tile cutting device for house decoration that can automatically draw lines is designed. Summary of the Invention
[0005] The present invention provides an auxiliary tile cutting device for house decoration, in order to overcome the shortcomings of unstable and inaccurate manual drawing lines.
[0006] Technical solution: An auxiliary tile cutting device for house decoration, including a former, with two side formers slidably connected in the former, and slide grooves are opened on the top surfaces of the two side formers, and multiple middle formers slidably connected in the former, the interiors of the middle former and the two side formers are set to be hollow, and the middle former and the two side formers are opened with wire grooves, a first double-axis motor is fixedly connected to the former, the output shaft of the first double-axis motor is fixedly connected to the first winding roller, and the first winding roller is fixed with an ink fountain line, a protective cover is fixedly connected to the side of the former away from the first double-axis motor, a second double-axis motor is fixed in the protective cover, a second winding roller is fixed on the output shaft of the second double-axis motor, the second winding roller is fixedly connected to the ink fountain line, and a guide member is fixed in the protective cover.
[0007] Optionally, an ink fountain box is further included, which is fixed on a side of the mold taker close to the first dual-axis motor and has an ink filling port.
[0008] Optionally, a multi-stage telescopic rod is further included, and the multi-stage telescopic rod is fixedly connected to a side of the ink fountain box away from the mold taking device.
[0009] Optionally, it also includes a molding mechanism that can replace people's manual molding and automatically complete the molding of the corners of the house. The molding mechanism includes a sealing box, which is fixed to the bottom surface of the mold taker. A plurality of circular holes are opened on the front side of the sealing box. A plurality of propulsion telescopic rods are fixed in the sealing box. The telescopic openings of the propulsion telescopic rods are fitted with the circular holes. The telescopic ends of the propulsion telescopic rods are squeezed and matched with the molding plates on both sides and the middle molding plate. The propulsion telescopic rods are fixed with a vent cover. The mold taker is fixedly connected with an air supply component for supplying air to the propulsion telescopic rods.
[0010] Optionally, the gas delivery assembly includes an air storage box, which is fixedly connected to the side of the mold taker close to the middle mold taking plate, and has several small holes on the air storage box. The air storage box is slidingly connected to the mold taking plates on both sides and the middle mold taking plate. A ventilation plate is fixed to the side of the air storage box close to the propulsion telescopic rod, and the ventilation plate is connected to the air storage box through the small holes on the air storage box. The ventilation plate is connected to the ventilation cover. The air storage box is slidingly connected to the piston plate, and the first dual-axis motor and the second dual-axis motor are fixed with a power assembly that can provide power to the piston plate.
[0011] Optionally, the power assembly includes several ratchets, which are respectively fixed on the side of the first dual-axis motor and the second dual-axis motor away from each other, several fixing frames are fixed on the top surface of the mold taker, and several transmission rods are fixed on the top surface of the piston plate, the transmission rods are slidingly connected to the mold taker, the transmission rods are slidingly connected to the mold taking plates on both sides, the transmission rods are slidingly connected to the fixing frames, a transmission frame is fixed on the transmission rod, an extrusion spring is fixed between the transmission rod and the fixing frame, a fixing part is fixed on the side of the transmission frame close to the ratchet, the fixing part is rotatably connected to a shaft, a flip plate is fixedly connected to the shaft, the flip plate is extruded and fitted with the ratchet, the flip plate is extruded and fitted with the transmission frame, and a reset torsion spring is fixed between the flip plate and the fixing part.
[0012] Optionally, a clamping device is also included that can clamp the mold taker to prevent it from loosening. The clamping device includes a plurality of pull ropes, one end of the pull rope is fixed to the transmission rod, and the other end of the pull rope is fixedly connected to an extrusion piece. The extrusion piece is slidably connected to the transmission rod, the extrusion piece is slidably connected to the mold taker, the extrusion piece is slidably connected to the fixed frame, a rubber plate is fixedly connected to the bottom surface of the extrusion piece, the rubber plate is slidably connected to the transmission rod, the rubber plate is slidably connected to the mold taker, the rubber plate is extruded and fitted with the top surfaces of the two side mold takers and the middle mold taker, and a scraping component that can clean the ink line is fixed on the multi-stage telescopic rod.
[0013] Optionally, the scraping assembly includes a fixed seat, which is fixedly connected to the multi-stage telescopic rod, and a groove is provided on the fixed seat. The fixed seat is rotatably connected to a rotating shaft, and the rotating shaft is fixed with a rotating part. The rotating part is squeezed together with the ink line, and the rotating part is connected to a clamping assembly that can clamp the rotating part.
[0014] Optionally, the clamping assembly includes a limiting member, which is slidably connected to the rotating member, the limiting member is squeezed into engagement with a groove of the fixing seat, and a pressure spring is fixed between the limiting member and the rotating member.
[0015] Optionally, it also includes a fixing device that can fix the mold taker on the tile to ensure accurate line drawing. The fixing device includes several rotating seats, which are fixed on the top surface of the mold taker. The rotating seats are rotatably connected to the guide frames, and the guide frames are slidably connected to the clamping members. A return spring is fixed between the clamping members and the guide frames.
[0016] The beneficial effects of the present invention are: 1. The present invention rotates the first double-axis motor and the second double-axis motor clockwise, so that the first double-axis motor drives the first winding roller to rotate clockwise and then drives the ink line to extend, and the second double-axis motor drives the second winding roller to rotate clockwise and then drives the ink line to be wound. The ink line carries ink from right to left through the line grooves on the lower front part of the two side templates and the middle template. An opening is provided on the lower side of the line groove so that the lower side of the ink line contacts the ceramic tile, thereby achieving the purpose of automatic line drawing and avoiding the shortcomings of unstable and inaccurate manual line drawing.
[0017] 2. The present invention rotates the first dual-axis motor clockwise and the second dual-axis motor clockwise, and the first dual-axis motor drives the right ratchet to rotate clockwise, and the second dual-axis motor drives the left ratchet to rotate clockwise, so that both ratchets release the restriction on the flip plate, and then turn off the first dual-axis motor and the second dual-axis motor, so that the extrusion spring resets and drives the piston plate to squeeze into the gas storage box, and the telescopic rod is pushed forward by the gas and extends to squeeze the two side mold taking plates and the middle mold taking plate until the front sides of the two side mold taking plates and the middle mold taking plate are in contact with the wall of the corner of the house, so that the mold taking device completes the molding work.
[0018] 3. The present invention enables the rubber plate to squeeze the two side mold plates and the middle mold plate, thereby avoiding the movement of the two side mold plates and the middle mold plate during the line drawing process, resulting in inaccurate line drawing. At the same time, when the ink line is wound up, the rotating part will scrape the lower side of the ink line, so that impurities attached to the lower side of the ink line are removed, avoiding impurities on the ink line that affect the winding.
[0019] 4. The present invention allows people to manually flip the guide frame and move it to the side away from each other. Under the action of the return spring, the guide frame can tighten the two sides of the tile to fix it, preventing relative sliding between the mold remover and the tile, which will cause inaccurate line drawing. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 It is a schematic diagram of the three-dimensional structure of the present invention.
[0021] Figure 2 It is a schematic diagram of the three-dimensional structure of the mold taker, the mold taker plates on both sides and the middle mold taker plate of the present invention.
[0022] Figure 3 This is a sectional view of the three-dimensional structure of the ink fountain cartridge, the first dual-axis motor, the multi-stage telescopic rod and other components of the present invention.
[0023] Figure 4 It is a sectional view of the three-dimensional structure of the ink fountain line, the second dual-axis motor, the second winding roller and other components of the present invention.
[0024] Figure 5 It is a schematic diagram of the three-dimensional structure of the components such as the multi-stage telescopic rod, the intermediate pattern-taking plate and the ink fountain line of the present invention.
[0025] Figure 6 It is an enlarged view of the three-dimensional structure at point A of the present invention.
[0026] Figure 7 It is a schematic diagram of the three-dimensional structure of the propulsion mechanism of the present invention.
[0027] Figure 8 It is a schematic diagram of the three-dimensional structure of the second dual-axis motor, flip plate, transmission frame and other components of the present invention.
[0028] Figure 9 It is a schematic diagram of the three-dimensional structure of the reset torsion spring, the flip plate and the fixing member of the present invention.
[0029] Figure 10 It is a schematic diagram of the three-dimensional structure of the transmission frame, fixing frame, extrusion spring and other components of the present invention.
[0030] Figure 11 It is a schematic diagram of the three-dimensional structure of the gas storage box, sealing box and mold remover of the present invention.
[0031] Figure 12It is a schematic diagram of the three-dimensional structure of the gas storage box, piston plate, sealing box and other components of the present invention.
[0032] Figure 13 It is a sectional view of the three-dimensional structure of the sealing box, the telescopic propulsion rod, the ventilation plate and other components of the present invention.
[0033] Figure 14 It is a schematic diagram of the three-dimensional structure of the cleaning and pressing mechanism of the present invention.
[0034] Figure 15 It is a schematic diagram of the three-dimensional structure of the fixing seat, rotating member and limiting member of the present invention.
[0035] Figure 16 It is a sectional view of the three-dimensional structure of the fixing frame, extrusion spring, rubber plate and other components of the present invention.
[0036] Figure 17 This is a sectional view of the three-dimensional structure of the pull rope, rubber plate, extrusion part and other components of the present invention.
[0037] Figure 18 It is a schematic diagram of the three-dimensional structure of the fixing mechanism of the present invention.
[0038] Figure 19 It is a schematic diagram of the three-dimensional structure of the rotating member, rotating seat and clamping member of the present invention.
[0039] Figure 20 It is a schematic diagram of the three-dimensional structure of the mold remover, return spring, guide frame and other components of the present invention.
[0040] Markings in the accompanying drawings: 1: mold taker, 11: two side mold taker plates, 12: protective cover, 13: middle mold taker plate, 14: ink box, 15: first double-axis motor, 16: multi-stage telescopic rod, 17: first winding roller, 18: ink line, 19: second double-axis motor, 110: second winding roller, 111: guide member, 2: ratchet, 21: flip plate, 22: transmission frame, 23: fixed frame, 24: extrusion spring, 25 : Transmission rod, 26: Fixed part, 27: Air storage box, 28: Piston plate, 29: Sealing box, 210: Propelling telescopic rod, 211: Ventilation plate, 212: Reset torsion spring, 213: Ventilation cover, 3: Extrusion part, 31: Fixed seat, 32: Rotating part, 33: Limiting part, 34: Pressure spring, 35: Pull rope, 36: Rubber plate, 4: Guide frame, 41: Rotating seat, 42: Clamping part, 43: Return spring. DETAILED DESCRIPTION
[0041] Hereinafter, embodiments of the present invention will be described with reference to the accompanying drawings.
[0042] Example 1
[0043] An auxiliary tile cutting device for house decoration, see Figures 1-6 , including a mold taking device 1, the left and right sides of the mold taking device 1 are slidably connected with two side mold taking plates 11, the top surfaces of the two side mold taking plates 11 are provided with slide grooves, a plurality of intermediate mold taking plates 13 are slidably connected in the middle of the mold taking device 1, the intermediate mold taking plates 13 are located between the left and right side mold taking plates 11, the interiors of the intermediate mold taking plates 13 and the two side mold taking plates 11 are set to be hollow, and the front lower parts of the intermediate mold taking plates 13 and the two side mold taking plates 11 are provided with wire grooves, an ink box 14 is fixedly connected to the front right side of the mold taking device 1, an ink filling port is provided on the upper side of the ink box 14 for injecting ink, a first dual-axis motor 15 is fixedly connected to the front right side of the mold taking device 1, the left output shaft of the first dual-axis motor 15 passes through the right side of the ink box 14, and enters the ink box 14 and is fixedly connected to a first winding roller 17, and the first winding roller 17 is fixedly connected to the ink line 18 At one end, the front lower part of the ink box 14 is fixedly connected to a multi-stage telescopic rod 16, the front left side of the mold taking device 1 is fixedly connected to a protective cover 12, the interior of the protective cover 12 is fixedly connected to a second dual-axis motor 19, and the output shaft on the right side of the second dual-axis motor 19 is fixedly connected to a second winding roller 110, and a guide member 111 is fixedly connected inside the protective cover 12. The guide member 111 is located below the second winding roller 110, and the other end of the ink line 18 passes through the front side of the ink box 14 and enters the multi-stage telescopic rod 16, and then extends from the front end of the multi-stage telescopic rod 16 and passes through the wire groove at the front lower part of the middle mold taking plate 13 and the mold taking plates 11 on both sides. The lower side of the wire groove is open, and then the other end of the ink line 18 extends from the mold taking plates 11 on both sides on the left and is placed on the guide member 111 and fixed to the second winding roller 110, and the ink line 18 is flexible.
[0044] When a decorator is laying tiles and encounters the need to shape the corner of a house, the device can be used for operation. First, people put the device at the corner of the house that needs to be shaped, and let the front sides of the two side pattern plates 11 and the middle pattern plate 13 press against the tip of the corner of the house. Then the decorator manually pushes the back sides of the two side pattern plates 11 and the middle pattern plate 13, so that the front sides of the two side pattern plates 11 and the middle pattern plate 13 press against various positions of the corner wall, so that the lines formed by the front sides of the two side pattern plates 11 and the middle pattern plate 13 are consistent with the outline of the wall at the corner of the house. Then the decorator places the shaper 1 on the surface of the tile that needs to be cut, and then puts the ink The ink box 14 is filled with ink, and then the first double-axis motor 15 and the second double-axis motor 19 are rotated clockwise, so that the first double-axis motor 15 drives the first winding roller 17 to rotate clockwise and then drives the ink line 18 to extend, and the second double-axis motor 19 drives the second winding roller 110 to rotate clockwise and then drives the ink line 18 to reel, and the ink line 18 extends out of the ink box 14 with ink and enters the multi-stage telescopic rod 16. Then the ink line 18 extends out of the front end of the multi-stage telescopic rod 16 with ink and enters the line groove at the lower front part of the two side template plates 11 and the middle template plate 13. In the process of the ink line 18 passing through the two side template plates 11 and the middle template plate 13 from right to left with ink, because the line groove The lower side of the ink box 14 is provided with an opening, so the lower side of the ink line 18 with ink will contact the tile, so that the ink line 18 draws a line on the surface of the tile along the outline of the mold taker 1, thereby achieving the purpose of automatic line drawing. When the line drawing work is completed, the first double-axis motor 15 and the second double-axis motor 19 are rotated counterclockwise. The first double-axis motor 15 drives the first winding roller 17 to rotate counterclockwise and then drives the ink line 18 to rewind. The second double-axis motor 19 drives the second winding roller 110 to rotate counterclockwise and then drives the ink line 18 to extend. The ink line 18 is rewound back into the ink box 14. When the first rewinding roller 17 completes the rewinding of the ink line 18, the first double-axis motor 15 and the second double-axis motor 19 are rotated counterclockwise. The motor 19 is turned off. The above operation is carried out by the clockwise rotation of the first double-axis motor 15 and the clockwise rotation of the second double-axis motor 19, so that the first double-axis motor 15 drives the first winding roller 17 to rotate clockwise and then drives the ink line 18 to extend, and the second double-axis motor 19 drives the second winding roller 110 to rotate clockwise and then drives the ink line 18 to be wound. The ink line 18 carries ink from right to left through the line grooves at the lower front part of the two side mold plates 11 and the middle mold plate 13. An opening is provided on the lower side of the line groove so that the lower side of the ink line 18 will contact the tile, thereby achieving the purpose of automatic line drawing, so that the mold taker 1 can automatically complete the line drawing work, avoiding the shortcomings of unstable and inaccurate manual line drawing.
[0045] Example 2
[0046] Based on Example 1, please refer to Figure 7-13, and also includes a molding mechanism that can replace people's manual molding and automatically complete the molding of the corners of the house. The molding mechanism includes a sealing box 29, which is fixedly connected to the front side of the gas storage box 27. The sealing box 29 is fixedly connected to the lower part of the molding device 1. A plurality of circular holes are opened on the front side of the sealing box 29. A plurality of propulsion telescopic rods 210 are fixedly connected to the sealing box 29. The telescopic openings of the propulsion telescopic rods 210 are all fitted with the circular holes, so that the telescopic ends of the propulsion telescopic rods 210 can extend from the circular holes. The telescopic ends of the propulsion telescopic rods 210 are squeezed and matched with the molding plates 11 on both sides and the middle molding plate 13. The rear sides of the propulsion telescopic rods 210 are fixedly connected with vent covers 213, and the molding device 1 is fixedly connected with a gas supply component for supplying gas to the propulsion telescopic rods 210.
[0047] See also Figure 7 、 Figure 12-13 The air delivery component includes an air storage box 27, which is fixedly connected between the lower parts of the left and right sides of the mold taker 1. Several small holes are opened on the lower front side of the air storage box 27. The air storage box 27 is slidingly connected to the mold taking plates 11 on both sides and the middle mold taking plate 13. A ventilation plate 211 is fixed to the front side of the air storage box 27. The ventilation plate 211 is located inside the sealing box 29. The ventilation plate 211 is connected to the interior of the air storage box 27 through the small holes on the front side of the air storage box 27. The rear end of the ventilation cover 213 passes through the front side of the ventilation plate 211 and is connected to the interior of the ventilation plate 211. A piston plate 28 is slidingly connected to the upper side of the air storage box 27. A power component that can provide power to the piston plate 28 is fixed on the first dual-axis motor 15 and the second dual-axis motor 19.
[0048] See also Figure 7-11 The power assembly includes two ratchets 2, one of which is fixed to the right output shaft of the first dual-axis motor 15, and the other is fixed to the left output shaft of the second dual-axis motor 19. One side of the teeth on the ratchet 2 is an arc and the other side is a right-angled surface. The left and right sides of the top of the mold taker 1 are fixed with a fixing frame 23, and the left and right sides of the piston plate 28 are fixed with a transmission rod 25. The transmission rod 25 is slidably connected to the mold taker 1, and the transmission rod 25 is slidably connected to the slide grooves on the mold taker plates 11 on both sides. The transmission The rod 25 is slidably connected to the fixed frame 23, the upper part of the transmission rod 25 is fixedly connected to the transmission frame 22, and the extrusion spring 24 is fixedly connected between the transmission rod 25 and the fixed frame 23. The front end of the lower part of the transmission frame 22 is fixedly connected to the fixing piece 26, and the fixing piece 26 is rotatably connected to the shaft, and the flip plate 21 is fixedly connected to the shaft. The flip plate 21 is squeezed and fitted with the ratchet 2, and the flip plate 21 is squeezed and fitted with the lower part of the transmission frame 22. A return torsion spring 212 is fixed between the flip plate 21 and the left and right ends of the fixing piece 26.
[0049] In the above operation, when the decorators use the molding device 1 to mold the corner of the house, they need to push the rear sides of the molding plates 11 on both sides and the middle molding plate 13 by hand, so that the lines formed by the front sides of the molding plates 11 on both sides and the middle molding plate 13 are consistent with the outline of the walls at the corner of the house. It is very troublesome to do the molding manually each time, so a molding mechanism is provided. The following is its working principle: when people need to mold the corner of the house, first, people put the device at the corner of the house that needs to be molded, and let the front sides of the molding plates 11 on both sides and the middle molding plate 13 rest against the tip of the corner of the house, and then start the first double-axis motor 15 clockwise and the second double-axis motor 19 clockwise, and the first double-axis motor 15 drives the right ratchet The wheel 2 rotates clockwise, and the second double-axis motor 19 drives the left ratchet 2 to rotate clockwise, so that the right-angled surface of the ratchet 2 and the bottom of the flip plate 21 are no longer squeezed, and the curved surface of the ratchet 2 squeezes the top of the flip plate 21, so that there is no component blocking the bottom of the flip plate 21, so that the flip plate 21 will rotate downward, and the reset torsion spring 212 is twisted. When the flip plate 21 is no longer squeezed upward by the ratchet 2, the first double-axis motor 15 and the second double-axis motor 19 are turned off. At this time, the ink line 18 with ink has not yet extended from the multi-stage telescopic rod 16, and the flip plate 21 no longer squeezes the transmission frame 22, so that the transmission frame 22 no longer squeezes the transmission rod 25 upward, thereby making the squeezing spring 24 no longer squeezed, and the squeezing spring 24 resets and drives the transmission frame 22 to move downward. When the flip plate 21 is disengaged from the ratchet 2, the reset torsion spring 212 resets and drives the flip plate 21 to flip and reset. At the same time, the extrusion spring 24 resets and drives the transmission rod 25 to move downward. The transmission rod 25 drives the piston plate 28 to move downward to squeeze the gas in the gas storage box 27. The gas enters the interior of the vent plate 211 from the gas storage box 27 through the small holes on the gas storage box 27, and then the gas enters the rear end of the propulsion telescopic rod 210 from the inside of the vent cover 213, causing the telescopic end of the propulsion telescopic rod 210 to extend forward until the telescopic end of the propulsion telescopic rod 210 contacts and squeezes the inside of the two side mold plates 11 and the middle mold plate 13. The piston plate 28 continues to move downward to squeeze the gas in the gas storage box 27, so that the telescopic ends of the propulsion telescopic rod 210 continue to The molding machine 1 is pushed forward, thereby driving the molding plates 11 on both sides and the middle molding plate 13 to move forward, until the front ends of each molding plate 11 on both sides and the middle molding plate 13 are against various positions of the corner wall, so that the lines formed by the front sides of the molding plates 11 on both sides and the middle molding plate 13 are consistent with the outline of the wall at the corner of the house. Then the decorator places the molding machine 1 on the surface of the tile to be cut, and starts the first double-axis motor 15 clockwise and the second double-axis motor 19 clockwise again to start the automatic line drawing work. When the line drawing is completed, people turn the first double-axis motor 15 counterclockwise and the second double-axis motor 19 counterclockwise, and the ink line 18 is reeled back into the ink box 14. The first double-axis motor 15 counterclockwise drives the right ratchet 2 to rotate counterclockwise.The second dual-axis motor 19 drives the left ratchet 2 to rotate counterclockwise, so that the two ratchet wheels 2 squeeze the flip plate 21 upward, so that the flip plate 21 moves upward, the flip plate 21 drives the transmission frame 22 to move upward, and then drives the transmission rod 25 to move upward, the extrusion spring 24 is squeezed, and the transmission rod 25 drives the piston plate 28 to move upward, and the piston plate 28 moves upward so that the gas is drawn back from the small hole of the gas storage box 27 to the inside of the gas storage box 27, and the telescopic end of the telescopic rod 210 is pushed back into the sealing box 29 by atmospheric pressure. Then people manually move and reset the two side mold taking plates 11 and the middle mold taking plate 13. The above operation is performed by the first dual-axis motor. The first and second dual-axis motors 15 and 19 rotate clockwise, driving the right ratchet 2 to rotate clockwise. The second dual-axis motor 19 then drives the left ratchet 2 to rotate clockwise, releasing the restriction on the flip plate 21. The first and second dual-axis motors 19 are then turned off, causing the extrusion spring 24 to reset and drive the piston plate 28 to squeeze the inside of the gas storage box 27. The telescopic rod 210 is pushed forward by the gas and extends forward to squeeze the two side mold-taking plates 11 and the middle mold-taking plate 13 until the front sides of the two side mold-taking plates 11 and the middle mold-taking plate 13 contact the wall at the corner of the house, thus completing the mold-taking operation of the mold-taking device 1.
[0050] See also Figure 14-17 , also includes a pressing device that can press the mold 1 to prevent it from loosening, and at the same time can limit the cleaning of the ink line 18. The pressing device includes a plurality of pull ropes 35, one end of the pull ropes 35 are fixed to the upper part of the transmission rod 25, and the other end of the pull ropes 35 are jointly fixed with an extrusion piece 3, the extrusion piece 3 is slidingly connected to the transmission rod 25, the extrusion piece 3 is slidingly connected to the mold 1, the extrusion piece 3 is slidingly connected to the fixed frame 23, and a rubber plate 36 is fixed to the lower side of the extrusion piece 3, the rubber plate 36 is slidingly connected to the transmission rod 25, the rubber plate 36 is slidingly connected to the mold 1, the rubber plate 36 is squeezed and fitted with the mold plates 11 on both sides and the upper side of the middle mold plate 13, and a scraping component that can clean the ink line 18 is fixed on the multi-stage telescopic rod 16.
[0051] See also Figure 15 The scraping assembly includes a fixed seat 31, which is fixed to the lower side of the front of the multi-stage telescopic rod 16. A groove is provided in the middle position of the front side of the fixed seat 31. The lower side of the fixed seat 31 is rotatably connected to a rotating shaft, and the rotating shaft is fixed to a rotating member 32. The front side of the rotating member 32 is squeezed and fitted with the ink fountain line 18. The rotating member 32 is connected to a clamping assembly that can clamp the rotating member 32.
[0052] See also Figure 15The clamping assembly includes a limiting member 33, which is slidably connected to the rotating member 32. The limiting member 33 is squeezed into fit with the fixed seat 31. When the rotating member 32 flips upward, the limiting member 33 is stuck in the groove of the fixed seat 31. A pressure spring 34 is fixed between the limiting member 33 and the rotating member 32.
[0053] When the former 1 automatically draws lines on the tiles that need to be cut, the second winding roller 110 may wind up the ink line 18, which may cause the two side forming plates 11 and the middle forming plate 13 to move, causing the forming shapes of the two side forming plates 11 and the middle forming plate 13 to change, thereby causing the ink line 18 to be drawn inaccurately. When the ink line 18 is wound up by the first winding roller 17, because the former 1 is basically used in a construction environment, there will be impurities remaining on the ink line 18, which may affect the winding. Therefore, in order to avoid the above problems, a clamping device is provided. The following is its working principle: When people use the former 1 to perform forming work, the reset of the extrusion spring 24 will drive the transmission rod 25 to move downward, and the transmission rod 25 drives the piston The plate 28 moves downward to squeeze the gas in the gas storage box 27. The gas enters the inside of the vent plate 211 from the gas storage box 27 through the small holes on the gas storage box 27. Then the gas enters the rear end of the telescopic push rod 210 from the inside of the vent cover 213, causing the telescopic end of the telescopic push rod 210 to extend forward until the telescopic end of the telescopic push rod 210 contacts and squeezes the inside of the two side molding plates 11 and the middle molding plate 13. Then, the two side molding plates 11 and the middle molding plate 13 are extended forward until their front sides contact the wall of the corner of the house, so that the molding device 1 completes the molding work. After the molding work is completed, the transmission rod 25 continues to move downward, so that the transmission rod 25 contacts the extrusion piece 3 and squeezes the extrusion piece 3 downward. The extrusion piece 3 moves downward to drive the rubber The plate 36 moves downward and squeezes the two side mold plates 11 and the middle mold plate 13. Because the friction of the rubber plate 36 is very large, the two side mold plates 11 and the middle mold plate 13 can be kept in the state of completed molding, and then the line drawing work can be carried out. When the line drawing is completed, people manually move the limiting member 33 forward, the pressure spring 34 is compressed, and then the rotating member 32 is flipped upward until the limiting member 33 is stuck in the groove of the fixed seat 31. At this time, the front end of the rotating member 32 is squeezed and matched with the ink line 18. People turn the first double-axis motor 15 counterclockwise and the second double-axis motor 19 counterclockwise, and the ink line 18 is reeled back into the ink box 14. In the process of the ink line 18 being reeled, the lower side of the ink line 18 rubs against the front side of the rotating member 32, so that the rotating member 32 The lower side of the ink line 18 can be scraped off, so that impurities attached to the lower side of the ink line 18 are removed, and the ink line 18 is prevented from being affected by impurities and thus affecting the winding, and even affecting the extension of the ink line 18 during the subsequent line drawing process. During the line drawing process, the rotating member 32 is in a state of being manually flattened. At this time, the limiting member 33 is stuck between the fixed seat 31 and the rotating member 32. The flattening of the rotating member 32 can prevent the ink line 18 with ink from rubbing against the front side of the rotating member 32, and prevent the rotating member 32 from removing the ink on the ink line 18, thereby affecting the line drawing. The above operation causes the rubber plate 36 to squeeze the two side template plates 11 and the middle template plate 13, and avoids the movement of the two side template plates 11 and the middle template plate 13 during the line drawing process, resulting in inaccurate line drawing.At the same time, when the ink line 18 is being wound, the rotating member 32 will scrape the lower side of the ink line 18 so that impurities attached to the lower side of the ink line 18 are removed, thereby preventing the ink line 18 from being affected by impurities and thus affecting the winding.
[0054] See also Figures 18-20 , and also includes a fixing device that can fix the former 1 on the tile to ensure accurate line drawing. The fixing device includes two rotating seats 41, which are fixed on the left and right sides of the top of the former 1. The rotating seats 41 are rotatably connected to the guide frames 4, and the guide frames 4 are slidably connected to the clamping members 42. A return spring 43 is fixed between the clamping members 42 and the guide frames 4.
[0055] When marking lines on tiles that need to be cut, relative sliding may occur between the former 1 and the tiles, resulting in inaccurate line drawing. Therefore, a fixing device is provided for the above situation. The following is its working principle: when marking lines on tiles that need to be cut, people first place the former 1 on the surface of the tiles, and then manually pull the two clamping members 42 in the direction of approaching each other, the return spring 43 is stretched, and then the two guide frames 4 are flipped toward the side away from each other, so that the clamping members 42 are respectively located on the left and right sides of the tiles, and then under the action of the return spring 43, the clamping members 42 can clamp the two sides of the tiles, so that the tiles can be kept relatively prohibited with the former 1, and then the line drawing work is carried out. The above operation is achieved by people manually flipping the guide frame 4 and moving the guide frame 4 toward the side away from each other. Under the action of the return spring 43, the guide frame 4 can tighten the two sides of the tile to fix it, preventing relative sliding between the former 1 and the tiles, which results in inaccurate line drawing.
[0056] The above description is only a preferred embodiment of the present invention and is 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 in the scope of protection of the present invention.
Claims
1. An auxiliary tile cutting device for house decoration, characterized by: The invention comprises a mold taker (1), wherein two side mold taker plates (11) are slidably connected in the mold taker (1), and the top surfaces of the two side mold taker plates (11) are provided with sliding grooves. A plurality of middle mold taker plates (13) are slidably connected in the mold taker (1), and the interiors of the middle mold taker plates (13) and the two side mold taker plates (11) are hollow, and the middle mold taker plates (13) and the two side mold taker plates (11) are provided with wire grooves. A first double-axis motor (15) is fixedly connected to the mold taker (1), and the output of the first double-axis motor (15) is A first winding roller (17) is fixedly connected to the shaft, an ink line (18) is fixed on the first winding roller (17), a protective cover (12) is fixedly connected to the side of the mold taker (1) away from the first double-axis motor (15), a second double-axis motor (19) is fixed in the protective cover (12), a second winding roller (110) is fixed on the output shaft of the second double-axis motor (19), the second winding roller (110) is fixedly connected to the ink line (18), and a guide member (111) is fixed in the protective cover (12).
2. The auxiliary tile cutting device for house decoration according to claim 1 is characterized in that: The invention also comprises an ink fountain box (14), which is fixed on one side of the mold taker (1) close to the first double-axis motor (15), and the ink fountain box (14) is provided with an ink injection port.
3. The auxiliary tile cutting device for house decoration according to claim 2 is characterized in that: It also includes a multi-stage telescopic rod (16), which is fixedly connected to a side of the ink fountain box (14) away from the mold taker (1).
4. The auxiliary tile cutting device for house decoration according to claim 3 is characterized by: The invention also includes a molding mechanism capable of automatically completing the molding of a house corner instead of manual molding by people. The molding mechanism includes a sealing box (29), which is fixed to the bottom surface of the molding device (1). The front side of the sealing box (29) is provided with a plurality of circular holes. The sealing box (29) is fixed with a plurality of telescopic propulsion rods (210). The telescopic openings of the telescopic propulsion rods (210) are fitted with the circular holes. The telescopic ends of the telescopic propulsion rods (210) are extruded and matched with molding plates (11) on both sides and a middle molding plate (13). The telescopic propulsion rods (210) are fixed with a vent cover (213). The molding device (1) is fixed with an air supply assembly for supplying air to the telescopic propulsion rods (210).
5. The auxiliary tile cutting device for house decoration according to claim 4 is characterized in that: The gas transmission component includes a gas storage box (27), which is fixedly connected to a side of the mold taking device (1) close to the middle mold taking plate (13), and a plurality of small holes are opened on the gas storage box (27). The gas storage box (27) is slidably connected to the mold taking plates (11) on both sides and the middle mold taking plate (13). A ventilation plate (211) is fixedly connected to a side of the gas storage box (27) close to the propulsion telescopic rod (210), and the ventilation plate (211) is communicated with the gas storage box (27) through the small holes on the gas storage box (27). The ventilation plate (211) is communicated with the ventilation cover (213). The gas storage box (27) is slidably connected to the piston plate (28). A power component capable of providing power to the piston plate (28) is fixed on the first dual-axis motor (15) and the second dual-axis motor (19).
6. The auxiliary tile cutting device for house decoration according to claim 5, characterized in that: The power assembly includes a plurality of ratchets (2), which are respectively fixed on the side of the first double-axis motor (15) and the second double-axis motor (19) away from each other. A plurality of fixing frames (23) are fixed on the top surface of the mold taker (1), and a plurality of transmission rods (25) are fixed on the top surface of the piston plate (28). The transmission rods (25) are slidably connected to the mold taker (1), the transmission rods (25) are slidably connected to the mold taker plates (11) on both sides, the transmission rods (25) are slidably connected to the fixing frames (23), and the transmission rods (2 5) is fixed with a transmission frame (22), a pressing spring (24) is fixedly connected between a transmission rod (25) and a fixing frame (23), a fixing member (26) is fixedly connected to a side of the transmission frame (22) close to the ratchet (2), the fixing member (26) is rotatably connected to a shaft, a flip plate (21) is fixedly connected to the shaft, the flip plate (21) is pressed and matched with the ratchet (2), the flip plate (21) is pressed and matched with the transmission frame (22), and a reset torsion spring (212) is fixedly connected between the flip plate (21) and the fixing member (26).
7. The auxiliary tile cutting device for house decoration according to claim 6, characterized in that: The invention also includes a pressing device that can press the mold taker (1) to prevent it from loosening. The pressing device includes a plurality of pull ropes (35). One end of the pull rope (35) is fixed on the transmission rod (25). The other end of the pull rope (35) is fixedly connected to an extrusion member (3). The extrusion member (3) is slidably connected to the transmission rod (25). The extrusion member (3) is slidably connected to the mold taker (1). The extrusion member (3) is slidably connected to the fixed frame (23). A rubber plate (36) is fixedly connected to the bottom surface of the extrusion member (3). The rubber plate (36) is slidably connected to the transmission rod (25). The rubber plate (36) is slidably connected to the mold taker (1). The rubber plate (36) is extruded and matched with the top surfaces of the two side mold taker plates (11) and the middle mold taker plate (13). A scraping component capable of cleaning the ink fountain line (18) is fixed on the multi-stage telescopic rod (16).
8. The auxiliary tile cutting device for house decoration according to claim 7, characterized in that: The scraping assembly includes a fixed seat (31), the fixed seat (31) is fixedly connected to the multi-stage telescopic rod (16), a groove is provided on the fixed seat (31), the fixed seat (31) is rotatably connected to a rotating shaft, the rotating shaft is fixedly connected to a rotating member (32), the rotating member (32) is extruded and matched with the ink fountain line (18), and the rotating member (32) is connected to a clamping assembly capable of clamping the rotating member (32).
9. The auxiliary tile cutting device for house decoration according to claim 8, characterized in that: The clamping assembly includes a limiting member (33), which is slidably connected to the rotating member (32), the limiting member (33) is squeezed into engagement with a groove of the fixing seat (31), and a pressure spring (34) is fixedly connected between the limiting member (33) and the rotating member (32).
10. The auxiliary tile cutting device for house decoration according to claim 9, characterized in that: The invention also includes a fixing device that can fix the mold taker (1) on the tile to ensure accurate line drawing. The fixing device includes a plurality of rotating seats (41). The rotating seats (41) are fixed on the top surface of the mold taker (1). A guide frame (4) is rotatably connected to the rotating seat (41). A clamping member (42) is slidably connected to the guide frame (4). A return spring (43) is fixed between the clamping member (42) and the guide frame (4).
Citation Information
Patent Citations
Cutting line measuring device
CN220489906U