A device for removing burrs from a drywall brick

CN117840858BActive Publication Date: 2026-09-29CSCEC STRAIT CONSTR & DEV +1
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Patent Information

Application Number
CN202311768510.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-12-19
Publication Date
2026-09-29
Estimated Expiration
2043-12-19

AI Technical Summary

Technical Problem

但此类去毛刺装置,因无法运用在连续性的生产线中,所以并不适用于实际的工厂生产中,不符合实际工厂的需求,存在有实用性不足的问题,需要进行改进

Benefits of technology

[0019]本发明通过设置加工箱体、输送机构、清扫机构、翻转平台、拨料机构等,在对清水墙砖本体进行毛刺清扫时,通过将生产线上的清水墙砖本体转运至加工箱体内,进入加工箱体内的清水墙砖本体会先处于水平位置高的输送机构上,水平位置高的输送机构将其运输至翻转平台上,此过程中,对应的清扫机构能够对清水墙砖本体此时的顶面进行毛刺的清扫,在清水墙砖本体运输至翻转平台后,拨料机构能够将清水墙砖本体拨动至水平位置低的输送机构上,得益于翻转平台的倾斜结构,使得被拨料机构拨动的清水墙砖本体移动到水平位置低的输送机构上时会翻面,此时,水平位置低的输送机构对其进行运输,对应的清扫机构即可以对清水墙砖本体此时的顶面进行毛刺的清扫,从而实现清水墙砖本体两面毛刺面上的自动化毛刺清除,以可以防止在后续的砖块叠放放置以及转运过程中,毛刺碎屑容易落在清水砖的光滑饰面上,造成饰面划损的问题,相较于现有技术,能够适用于连续性的生产线中,具有符合实际工厂需求、实用性好的优点。

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Abstract

The present application relates to wall brick processing technical field, disclose a kind of indoor decoration fair-faced wall brick burr removing device, including rack, processing box is arranged on the rack, the bottom surface of processing box is arranged in ladder structure, two ladder surfaces of processing box are equipped with conveying mechanism, the top of two side conveying mechanisms is equipped with cleaning mechanism, turnover platform is equipped between two side conveying mechanisms, turnover platform bottom is connected in processing box by setting first support, the end of the conveying mechanism close to low horizontal position of turnover platform is horizontally arranged, and it is flush with the conveying surface of the conveying mechanism of low horizontal position, the end of the conveying mechanism close to high horizontal position of turnover platform is set to be inclined upward in the direction close to the conveying mechanism of high horizontal position;The top of turnover platform is equipped with for the fair-faced wall brick body on turnover platform is stirred to the conveying mechanism on the low horizontal position of stirring mechanism;The present application has the advantages of meeting actual factory demand, good practicality.
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Description

Technical Field

[0001] This invention relates to a device for removing burrs from interior decorative fair-faced wall tiles, belonging to the technical field of wall tile processing. Background Technology

[0002] The design concept of exposed brick veneer construction technology in building interior decoration emphasizes the unity of structural beauty and natural beauty. This construction technology does not have a fixed decorative layer, but only a thin layer that emphasizes protection and decoration. This type of construction technology is mostly concentrated on exposed brick walls, with a specific construction scope. Moreover, the decoration using this construction technology can effectively reduce the thickness of the structural components, maximizing the usable area of ​​the interior of high-rise buildings.

[0003] Fair-faced bricks, also known as fair-faced wall bricks, are characterized by their integrated load-bearing capacity, diverse styles, and simple construction, making them a superior building material. With increasingly stringent construction requirements, higher standards are being placed on brickwork for walls, and the quality of the bricks directly impacts the overall construction quality.

[0004] Existing square-shaped fair-faced bricks are generally manufactured through extrusion molding. Therefore, the top and bottom two of their six sides are extrusion cut surfaces, i.e. burr surfaces. After the bricks are sintered and hardened, these sparse burrs will adhere to the bricks. During the stacking and transportation of the bricks, burr fragments can easily fall onto the smooth surface of the fair-faced bricks, causing scratches and thus damaging the surface effect of the fair-faced bricks.

[0005] Chinese utility model patent CN218696954U discloses a deburring device for paving bricks, including a workbench and a truss. The truss is fixed to the top of the workbench, and two sliding grooves are formed on the top of the workbench. A movable frame is movably connected inside the sliding grooves, and two symmetrically arranged clamps are set on the top of the movable frame. A slide rail is fixedly connected to the top of the workbench, and an adjustment component is set on the top of the slide rail. A deburring wheel is set on the adjustment component, and a dust removal mechanism is set on the truss. This device can prevent operators from excessively grinding the bricks with the deburring wheel, thus avoiding damage to the bricks. It reduces the workload of workers and improves the convenience and efficiency of deburring. At the same time, it can also collect the dust generated during deburring, reducing the impact of dust on the surrounding working environment and the health of operators. However, this type of deburring device cannot be used in continuous production lines, so it is not suitable for actual factory production and does not meet the needs of actual factories, thus having insufficient practicality and requiring improvement. Summary of the Invention

[0006] In order to solve the above-mentioned problems existing in the prior art, the present invention provides a device for removing burrs from interior decoration fair-faced wall tiles.

[0007] The technical solution of the present invention is as follows:

[0008] A burr removal device for interior decoration fair-faced wall tiles includes a frame with a processing box mounted on the frame. The bottom surface of the processing box has a stepped structure, and each of the two stepped surfaces of the processing box is equipped with a conveying mechanism for conveying the fair-faced wall tile body. Above the two conveying mechanisms on both sides, there is a cleaning mechanism for removing burrs from the fair-faced wall tile body. A tilting platform is provided between the two conveying mechanisms. The bottom of the tilting platform is connected to the processing box through a first bracket. The end of the tilting platform close to the lower horizontal position of the conveying mechanism is horizontally positioned and flush with the conveying surface of the lower horizontal position conveying mechanism. The end of the tilting platform close to the higher horizontal position conveying mechanism is inclined upward in the direction of the higher horizontal position conveying mechanism. Above the tilting platform, there is a material feeding mechanism for moving the fair-faced wall tile body on the tilting platform to the lower horizontal position conveying mechanism.

[0009] Furthermore, the conveying mechanism includes a pair of second supports, which are arranged left and right on the same stepped surface of the processing box. Conveying rollers are rotatably connected to both second supports, and the two conveying rollers are connected together by a conveyor belt. A conveying motor is also provided on one of the second supports, and the electric spindle of the conveying motor is connected to the conveying roller on the corresponding second support.

[0010] Furthermore, the cleaning mechanism includes a brush wheel motor, with a brush wheel body connected to the electric spindle of the brush wheel motor. A gap is reserved between the bottommost brush of the brush wheel body and the top surface of the conveyor belt for the clear water wall brick body to pass through.

[0011] Furthermore, the feeding mechanism includes a feeding motor and a spring-loaded lever. The feeding motor is located on the outer wall of the processing box, and the electric spindle of the feeding motor extends into the processing box. The spring-loaded lever is connected to the electric spindle of the feeding motor, and the length of the spring-loaded lever is set to allow it to touch the exposed brick body on the flipping platform.

[0012] Furthermore, the spring-loaded lever includes a fixed lever and a movable lever. The fixed lever is connected to the electric spindle of the feeding motor that extends into the processing box. The movable lever is hinged to the end of the fixed lever away from the feeding motor by a spring hinge. The length of the movable lever is set to allow it to touch the exposed brick body on the flipping platform.

[0013] Furthermore, the top wall of the processing box is provided with dust removal ports located above the conveying mechanisms on both sides, and dust removal ports on both sides are covered with dust removal hoods, and external dust collectors are connected to the dust removal hoods on both sides.

[0014] Furthermore, the processing box has a feed inlet and a discharge outlet on its two side walls, with a feed guide groove in the feed inlet and a discharge guide groove in the discharge outlet.

[0015] Furthermore, each of the brush wheel motors on both sides has a mounting plate at its bottom. Each of the two stepped surfaces of the processing box is equipped with a lifting motor located below the corresponding mounting plate. Each of the lifting motors on both sides has a lead screw that is set vertically upward. Both lead screws are movably connected through the corresponding mounting plate. The top of each lead screw is rotatably connected to the top inner wall of the processing box. Each lead screw is screwed with a lead screw nut, and both lead screw nuts are fixed together with the corresponding mounting plate.

[0016] Furthermore, the processing box is also equipped with a correction mechanism for correcting the posture of the exposed brick body. The correction mechanism includes a vertically arranged third support, which is located between the horizontally elevated conveyor mechanism and the tilting platform. The third support is provided on both sides of the horizontally elevated conveyor mechanism. The top of the third support on both sides is bent, and the bending direction is extended towards the corresponding conveyor belt. The bent structure of the third support on both sides is located above the corresponding conveyor belt. The top surface of the bent structure of the third support on both sides is provided with a correction track. The ends of the correction tracks on both sides away from the tilting platform are inclined upward towards the edge of the corresponding conveyor belt. The ends of the correction tracks on both sides close to the tilting platform are straight. The inclined surfaces of the correction tracks on both sides are provided with arc-shaped guide surfaces. The arc-shaped guide surfaces on both sides are tangent to the straight structure of the corresponding correction track. The distance between the straight structures of the correction tracks on both sides is sufficient for the exposed brick body to pass through.

[0017] Furthermore, a groove is provided on the inclined surface of the tilting section of the flipping platform, and a rotating shaft is rotatably connected in the groove. A buffer plate is connected to the rotating shaft, and the bottom surface of the buffer plate is connected to the bottom surface of the groove by a buffer spring.

[0018] The present invention has the following beneficial effects:

[0019] This invention, by setting up a processing box, conveying mechanism, cleaning mechanism, tilting platform, and material feeding mechanism, allows for burr removal of fair-faced brick tiles. The fair-faced brick tiles from the production line are transferred to the processing box. Inside the processing box, the tiles are initially conveyed at a higher horizontal position by the conveying mechanism, which then transports them to the tilting platform. During this process, the corresponding cleaning mechanism removes burrs from the top surface of the tiles. After the tiles are transported to the tilting platform, the material feeding mechanism moves them to a lower horizontal position by the conveying mechanism. Thanks to the tilting platform… The inclined structure causes the exposed brick body, which is moved by the feeding mechanism, to flip over when it moves to the conveyor mechanism at a lower horizontal position. At this time, the conveyor mechanism at a lower horizontal position transports it, and the corresponding cleaning mechanism can clean the burrs on the top surface of the exposed brick body. This achieves automated burr removal on both sides of the exposed brick body, which can prevent burr debris from falling on the smooth surface of the exposed brick during subsequent brick stacking and transfer, causing scratches on the surface. Compared with the existing technology, it can be applied to continuous production lines and has the advantages of meeting actual factory needs and good practicality. Attached Figure Description

[0020] Figure 1 This is a schematic diagram of the structure of the present invention;

[0021] Figure 2 This is a schematic diagram of the structure of the flipping platform in this invention;

[0022] Figure 3 This is a schematic diagram of the material feeding mechanism in this invention;

[0023] Figure 4 This is a schematic diagram of the brush wheel motor mounting structure in this invention;

[0024] Figure 5 This is a schematic diagram of the correction mechanism in this invention.

[0025] The reference numerals in the figure are as follows:

[0026] 1. Frame; 2. Processing box; 3. Clear water wall tile body; 4. Tilting platform; 5. Second support; 6. Conveyor roller; 7. Conveyor belt; 8. Conveyor motor; 9. Brush wheel motor; 10. Brush wheel body; 11. Feeding motor; 12. Spring-loaded lever; 13. Fixed rod; 14. Movable rod; 15. Spring hinge; 16. Dust removal port; 17. Dust removal hood; 18. Feed inlet; 19. Discharge outlet; 20. Feed guide chute; 21. Discharge guide chute; 22. Mounting plate; 23. Lifting motor; 24. Lead screw; 25. Lead screw nut; 26. Groove; 27. Rotating shaft; 28. Buffer plate; 29. ​​Buffer spring; 30. Third support; 31. Correction track. Detailed Implementation

[0027] The present invention will now be described in detail with reference to the accompanying drawings and specific embodiments.

[0028] Example 1: Please refer to Figures 1-3 This embodiment provides a device for removing burrs from interior exposed brick walls, including a frame 1. A processing box 2 is provided on the top surface of the frame 1. The bottom surface of the processing box 2 has a stepped structure. Both stepped surfaces of the processing box 2 are provided with conveying mechanisms for conveying the exposed brick body 3. For ease of subsequent description, the stepped surface with the higher horizontal position inside the processing box 2 is referred to as the first stepped surface, and the conveying mechanism on the first stepped surface is referred to as the first conveying mechanism. The stepped surface with the lower horizontal position inside the processing box 2 is referred to as the second stepped surface, and the conveying mechanism on the second stepped surface is referred to as the second conveying mechanism.

[0029] The conveying mechanism includes paired second supports 5, which are arranged left and right on both the first and second stepped surfaces of the processing box 2. Each second support 5 is rotatably connected to a conveyor roller 6. The two conveyor rollers 6 on the same stepped surface within the processing box 2 are connected together by a conveyor belt 7. A conveyor motor 8 is also mounted on the left-hand second support 5 on both the first and second stepped surfaces. The electric spindle of the conveyor motor 8 is fixedly connected to the corresponding conveyor roller 6 on the second support 5. With this arrangement, when the conveyor motor 8 starts working, it drives the corresponding conveyor roller 6 to rotate, thereby driving the conveyor belt 7 and the other conveyor roller 6 connected to it to rotate, thus enabling the conveyor belt 7 to perform conveying operations. During conveying operations, the conveyor motors 8 on the first and second stepped surfaces rotate in the same direction to ensure that the conveying direction of the conveyor belt 7 is consistent.

[0030] Both the first and second conveying mechanisms are equipped with cleaning mechanisms above them for removing burrs from the clear water wall tile body 3. The cleaning mechanism includes a brush wheel motor 9, which is installed on both the first and second conveying mechanisms. Each brush wheel motor 9 has a brush wheel body 10 connected to its main shaft. When the brush wheel motor 9 starts working, it can drive the corresponding brush wheel body 10 to rotate. A gap is reserved between the bottom of the brush wheel body 10 above the first conveying mechanism and the top surface of the conveyor belt 7 of the first conveying mechanism for the clear water wall tile body 3 to pass through. There is also a gap between the bottom of the brush wheel body 10 above the second conveying mechanism and the top surface of the conveyor belt 7 of the second conveying mechanism for the clear water wall tile body 3 to pass through. The specific width of the gap needs to be determined according to the actual thickness of the clear water wall tile body and the height of the burrs to be cleaned. With the aforementioned setup, when the clear water wall tile body 3 passes through the gap under the action of the conveyor belt 7, the brush wheel body 10 driven by the brush wheel motor 9 can clean the top surface of the passing clear water wall tile body 3, so as to remove the burrs on the burr surface of the clear water wall tile body 3.

[0031] A tilting platform 4 is provided between the first and second conveying mechanisms. The tilting platform 4 is located on a stepped surface, and its bottom is fixed to the stepped surface by a first bracket. The end of the tilting platform 4 closest to the stepped surface is horizontally positioned and flush with the top surface of the conveyor belt 7 of the second conveying mechanism, ensuring that the exposed brick body 3 on the tilting platform 4 can smoothly move from the tilting platform 4 to the top surface of the conveyor belt 7 of the second conveying mechanism. The end of the tilting platform 4 closest to the first conveying mechanism is inclined upwards towards the first conveying mechanism, with an inclination angle between 135° and 160°. The highest point of the inclined section of the tilting platform 4 should be lower than the top surface of the conveyor belt 7 of the first conveying mechanism, ensuring that the exposed brick body 3 conveyed by the first conveying mechanism can fall onto the tilting platform 4.

[0032] Above the tilting platform 4 is a material-moving mechanism for moving the exposed brick body 3 on the tilting platform 4 to the second conveying mechanism. The material-moving mechanism includes a material-moving motor 11 and a spring-loaded lever 12. The material-moving motor 11 is located on the outer wall of the processing box 2, and its electric spindle extends into the processing box 2. The spring-loaded lever 12 is connected to the electric spindle of the material-moving motor 11, and its length is set to allow it to touch the exposed brick body 3 on the tilting platform 4. To facilitate the movement of the spring-loaded lever 12, the length of the inclined section of the tilting platform 4 should be shorter than the length of the exposed brick body 3, so that the exposed brick body 3 resting against the inclined end of the tilting platform 4 can be higher than the inclined section of the tilting platform 4, thus facilitating the movement of the spring-loaded lever 12. To improve the smoothness of the spring-loaded lever 12 when moving the exposed brick body 3, the spring-loaded lever 12 includes a fixed lever 13 and a movable lever 14. The fixed lever 13 is fixed to the electric spindle of the feeding motor 11 that extends into the processing box 2. The movable lever 14 is hinged to the end of the fixed lever 13 away from the feeding motor 11 by a spring hinge 15. The length of the movable lever 14 is set to allow the movable lever 14 to touch the exposed brick body 3 on the flipping platform 4.

[0033] As described above, a conveying mechanism transports the clear water wall tile body 3 towards the direction close to the flipping platform 4. When the clear water wall tile body 3 passes the cleaning mechanism located above the conveying mechanism, the cleaning mechanism cleans the burrs on the top surface of the clear water wall tile body 3 at this time. Under the conveying mechanism, the clear water wall tile body 3 will eventually slide onto the inclined section of the flipping platform 4, and the bottom of the clear water wall tile body 3 will abut against the horizontal end of the flipping platform 4. At this time, the spring-loaded lever 12 will move to the end of the clear water wall tile body 3 close to the conveying mechanism under the drive of the feeding motor 11. At this time, the movable rod 14 touches the clear water wall tile body 3. The movable rod 14 bends due to the reaction force of the clear water wall tile body 3. Due to the elasticity of the spring hinge 15, as the feeding motor 11 rotates, the end of the movable rod 14 can drive the clear water wall tile body 3 to complete the flipping, so as to ensure that the flipping of the clear water wall tile body 3 is not too rigid, thereby avoiding damage to the clear water wall tile body 3. After the exposed brick body 3 is flipped by the feeding mechanism, it will lie flat on the horizontal surface of the flipping platform 4. To ensure that the exposed brick body 3 can smoothly reach the top surface of the conveyor belt 7 of the second conveying mechanism, the length of the exposed brick body 3 should be more than twice the length of the horizontal section of the flipping body, so that part of the exposed brick body 3 can rest on the top surface of the conveyor belt 7 of the second conveying mechanism and be carried away from the flipping platform 4 by the second conveying mechanism. At the same time, the feeding motor 11 should operate at a certain speed during operation so that the frequency of one revolution of the spring-loaded lever 12 is consistent with the frequency of conveying the exposed brick body 3, so as to meet the needs of the production line.

[0034] In this embodiment, dust collection ports 16 are provided on the top wall of the processing box 2 above the first and second conveying mechanisms. Dust collection ports 16 on both sides are covered with dust collection hoods 17, and external dust collectors are connected to the dust collection hoods 17 on both sides. Through the aforementioned arrangement, dust and powder generated when the cleaning mechanisms on both sides clean the burrs on the fair-faced brick body 3 can be drawn away by the external dust collectors through the dust collection ports 16 and dust collection hoods 17, ensuring a safe processing environment and reducing air pollution.

[0035] The processing box 2 has a feed inlet 18 on the left side wall and a discharge outlet 19 on the right side wall. The feed inlet 18 is equipped with a feed guide 20 for connecting with the external clear water wall brick body 3 production line, and the discharge outlet 19 is equipped with a discharge guide 21 for connecting with the external clear water wall brick body 3 collection device.

[0036] The working principle of this embodiment is as follows: In actual production, the clear water wall tile body 3 produced by the external production line enters the processing box 2 through the feeding guide 20 and the feeding port 18, and first falls onto the top surface of the conveyor belt 7 of a conveying mechanism. The clear water wall tile body 3 falling onto the conveying mechanism will move towards the turning platform 4 under the conveying of the conveying mechanism. During this movement, the clear water wall tile body 3 will pass through the cleaning mechanism above the conveying mechanism, where the brush wheel body 10 in the cleaning mechanism will clean the burrs and remove them. After the clear water wall tile body 3 moves onto the turning platform 4 under the action of the conveying mechanism, the feeding mechanism can... The clear water wall tile body 3 located on the flipping platform 4 is moved to the top surface of the conveyor belt 7 of the second conveyor mechanism. The clear water wall tile body 3, which falls onto the second conveyor mechanism, will move towards the discharge guide 21 under the conveying of the second conveyor mechanism. During this movement, the clear water wall tile body 3 will pass through the cleaning mechanism above the second conveyor mechanism and be cleaned of burrs by the brush wheel body 10 in the cleaning mechanism. After the burrs are removed, the clear water wall tile body 3 will be conveyed to the discharge guide 21 by the second conveyor mechanism. Then, the clear water wall tile body 3 will leave the processing box 2 from the discharge guide 21 and the discharge port 19 and enter the external collection device for collection.

[0037] To ensure the conveying effect, in this embodiment, anti-slip textures or rubber anti-slip materials can be provided on the surface of the conveyor belt 7 to increase friction and prevent the exposed brick body 3 from slipping on the surface of the conveyor belt 7.

[0038] Since the models of the produced fair-faced wall tile bodies 3 are different, and the thicknesses of the fair-faced wall tile bodies 3 of different models are different, in order to clean the burrs of the fair-faced wall tile bodies 3 of different models, an embodiment two is proposed based on embodiment one.

[0039] Example 2: Please refer to Figures 1-4This embodiment provides a device for removing burrs from interior decorative fair-faced wall tiles, including all the mechanisms in Embodiment 1. Further, the bottom of both brush wheel motors 9 is provided with mounting plates 22, and lifting motors 23 are provided on the first and second stepped surfaces of the processing box 2 at positions below the corresponding mounting plates 22. The electric spindles of both lifting motors 23 are connected to vertically upward lead screws 24, and both lead screws 24 are movably connected through the corresponding mounting plates 22. The top ends of both lead screws 24 are rotatably connected to the top inner wall of the processing box 2, and both lead screw nuts 25 are screwed onto both lead screws 24. Both lead screw nuts 25 are fixed together with the corresponding mounting plates 22. With the aforementioned configuration, when the two lifting motors 23 start working, they can drive the corresponding lead screw 24 to rotate, thereby causing the corresponding lead screw nut 25 to move up and down along the lead screw 24. This, in turn, drives the corresponding mounting plate 22 and brush wheel motor 9 to move, adjusting the horizontal height of the corresponding brush wheel body 10 to accommodate different thicknesses of the exposed concrete wall tile body 3. When cleaning different types of exposed concrete wall tile bodies 3 is required, the operator can control the lifting motors 23 to adjust the distance between the brush wheel body 10 and the top surface of the corresponding conveyor belt 7.

[0040] Because the cleaning mechanism needs to remove burrs from the exposed brick body 3, the force generated during this process may cause the exposed brick body 3 to tilt to a certain extent on the conveyor belt 7, mostly by about 3 to 15 degrees. This may affect the subsequent flipping process of the exposed brick body 3 on the flipping platform 4, preventing it from flipping properly onto the second conveyor mechanism. To solve this problem, based on Embodiment 1, Embodiment 3 is proposed.

[0041] Example 3: Please refer to Figures 1-5This embodiment provides a device for removing burrs from interior decoration fair-faced wall tiles, including all the structures in Embodiment 1. Furthermore, the processing box 2 is also provided with a correction mechanism for correcting the posture of the fair-faced wall tile body 3. The correction mechanism includes a vertically arranged third support 30, which is located on a stepped surface between a conveying mechanism and a flipping platform 4. The third support 30 is provided on both the front and rear sides of the conveying mechanism. The top of both third supports 30 is bent, and the bending direction is extended towards the conveyor belt 7 on the conveying mechanism. The bent structures of both third supports 30 are located above the conveyor belt 7 on the conveying mechanism. Both sides of the third support 30 have a correction track 31 on the top surface of the bent structure. The ends of the correction tracks 31 on both sides away from the flipping platform 4 are inclined upwards towards the edge of the conveyor belt 7 on the conveying mechanism. The ends of the correction tracks 31 on both sides close to the flipping platform 4 are straight. The inclined surfaces of the correction tracks 31 on both sides are provided with arc-shaped guide surfaces. The arc-shaped guide surfaces on both sides are tangent to the straight structures of the corresponding correction tracks 31. The distance between the straight structures of the correction tracks 31 on both sides is sufficient for the clear water brick body 3 to pass through. The distance between the straight structures of the correction tracks 31 on both sides should be 2 to 10 mm greater than the width of the clear water brick body 3.

[0042] With the aforementioned setup, the exposed brick body 3, conveyed by a conveying mechanism, passes through the cleaning mechanism above the conveying mechanism and enters the two side correction tracks 31. The arc-shaped surfaces in the inclined structure of the two side correction tracks 31 guide the exposed brick body 3. If the exposed brick body 3 becomes skewed, it will move tangentially to the contact point with the arc-shaped surfaces through contact with them, in conjunction with the continuous conveying by the conveyor belt 7 in the conveying mechanism. The arc-shaped surfaces in the inclined structure of the two side correction tracks 31 are tangential to the corresponding straight structure of the correction track 31, so that the exposed brick body 3 is eventually guided to be parallel or nearly parallel to the straight structure of the two side correction tracks 31, thus smoothly passing through the straight structure of the two side correction tracks 31. The exposed brick body 3, having successfully passed through the straight structure of the two side correction tracks 31, is now in a state of no skew or almost no skew, and can then be normally flipped by the feeding mechanism.

[0043] To prevent the exposed brick tile body 3 from flying off the tilting platform 4 due to the conveying force of the conveyor belt 7 and its own weight when it lands on the tilting platform 4, in this embodiment, a groove 26 is provided on the inclined surface of the inclined section of the tilting platform 4. A rotating shaft 27 is rotatably connected inside the groove 26, and a buffer plate 28 is connected to the rotating shaft 27. The bottom surface of the buffer plate 28 is connected to the bottom surface of the groove 26 by a buffer spring 29. With the aforementioned arrangement, when the exposed brick tile body 3, conveyed by the conveying mechanism, lands on the tilting platform 4, it will contact the buffer plate 28. The buffer plate 28 is pressed, causing the rotating shaft 27 to rotate and retract into the groove 26, compressing the buffer spring 29. This buffering effect prevents the exposed brick tile body 3 from flying off the tilting platform 4.

[0044] The above description is merely an embodiment of the present invention and does not limit the patent scope of the present invention. Any equivalent structural or procedural transformations made based on the content of the present invention's specification and drawings, or direct or indirect applications in other related technical fields, are similarly included within the patent protection scope of the present invention.

Claims

1. A device for removing burrs from interior exposed brick walls, characterized in that: The machine includes a frame (1), on which a processing box (2) is provided. The bottom surface of the processing box (2) is set in a stepped structure. On both stepped surfaces of the processing box (2), there are conveying mechanisms for conveying the body of the clear water wall brick (3). Above the conveying mechanisms on both sides, there are cleaning mechanisms for removing burrs from the body of the clear water wall brick (3). Between the conveying mechanisms on both sides, there is a flipping platform (4). The bottom of the flipping platform (4) is connected to the processing box (2) by a first bracket. The end of the flipping platform (4) close to the lower horizontal position of the conveying mechanism is set horizontally and is flush with the conveying surface of the lower horizontal position of the conveying mechanism. The end of the flipping platform (4) close to the higher horizontal position of the conveying mechanism is tilted upward towards the direction of the higher horizontal position of the conveying mechanism. Above the flipping platform (4), there is a material feeding mechanism for moving the body of the clear water wall brick (3) on the flipping platform (4) to the lower horizontal position of the conveying mechanism. The material feeding mechanism includes a material feeding motor (11) and a spring-loaded lever (12). The material feeding motor (11) is located on the outer wall of the processing box (2). The electric spindle of the material feeding motor (11) extends into the processing box (2). The spring-loaded lever (12) is connected to the electric spindle of the material feeding motor (11). The length of the spring-loaded lever (12) is set to allow the spring-loaded lever (12) to touch the clear water wall brick body (3) on the flipping platform (4). The spring-loaded lever (12) includes a fixed lever (13) and a movable lever (14). The fixed lever (13) is connected to the electric spindle of the feeding motor (11) that extends into the processing box (2). The movable lever (14) is hinged to the end of the fixed lever (13) away from the feeding motor (11) by a spring hinge (15). The length of the movable lever (14) is set to allow the movable lever (14) to touch the clear water wall brick body (3) on the flipping platform (4). The inclined section of the flipping platform (4) has a groove (26) on its inclined surface. A rotating shaft (27) is rotatably connected inside the groove (26). A buffer plate (28) is connected to the rotating shaft (27). The bottom surface of the buffer plate (28) and the bottom surface of the groove (26) are connected together by a buffer spring (29).

2. The device for removing burrs from interior decorative fair-faced wall tiles according to claim 1, characterized in that: The conveying mechanism includes a pair of second supports (5), which are arranged in a left-right distribution on the same step surface of the processing box (2). Conveying rollers (6) are rotatably connected to both sides of the second supports (5), and the two sides of the conveying rollers (6) are connected together by a conveyor belt (7). A conveying motor (8) is also provided on one side of the second support (5), and the electric spindle of the conveying motor (8) is connected to the conveying roller (6) on the corresponding second support (5).

3. The device for removing burrs from interior decorative fair-faced wall tiles according to claim 2, characterized in that: The cleaning mechanism includes a brush wheel motor (9), and a brush wheel body (10) is connected to the electric spindle of the brush wheel motor (9). A gap is reserved between the bottom brush of the brush wheel body (10) and the top surface of the conveyor belt (7) for the clear water wall brick body (3) to pass through.

4. The device for removing burrs from interior decorative fair-faced wall tiles according to claim 1, characterized in that: The processing box (2) has dust removal ports (16) on the top wall above the conveying mechanisms on both sides. Dust removal ports (16) on both sides are covered with dust removal covers (17), and external dust collectors are connected to the dust removal covers (17) on both sides.

5. The device for removing burrs from interior decorative fair-faced wall tiles according to claim 1, characterized in that: The processing box (2) has a feed inlet (18) and a discharge outlet (19) on its two side walls respectively. The feed inlet (18) is provided with a feed guide groove (20), and the discharge outlet (19) is provided with a discharge guide groove (21).

6. The device for removing burrs from interior decorative fair-faced wall tiles according to claim 3, characterized in that: The bottom of the brush wheel motors (9) on both sides is provided with mounting plates (22). The two stepped surfaces of the processing box (2) are provided with lifting motors (23) located below the corresponding mounting plates (22). The electric spindles of the lifting motors (23) on both sides are connected with lead screws (24) that are set vertically upward. The lead screws (24) on both sides are set to pass through the corresponding mounting plates (22) in a movable manner. The top of the lead screws (24) on both sides are rotatably connected to the top inner wall of the processing box (2). The lead screw nuts (25) on both sides are screwed on the lead screws (24). The lead screw nuts (25) on both sides are fixed together with the corresponding mounting plates (22).

7. The device for removing burrs from interior decorative fair-faced wall tiles according to claim 2, characterized in that: The processing box (2) is also equipped with a correction mechanism for correcting the posture of the clear water wall tile body (3). The correction mechanism includes a vertically arranged third support (30). The third support (30) is located between the horizontally high conveying mechanism and the flipping platform (4). The third support (30) is set on both sides of the horizontally high conveying mechanism. The top of the third support (30) on both sides is set with a bent structure. The bending direction is to extend towards the corresponding conveyor belt (7). The bent structure of the third support (30) on both sides is located above the corresponding conveyor belt (7). The top surface of the bent structure of 30) is provided with a correction track (31). The ends of the correction tracks (31) on both sides away from the flipping platform (4) are inclined upwards towards the edge of the corresponding conveyor belt (7). The ends of the correction tracks (31) on both sides close to the flipping platform (4) are straight. The inclined surfaces of the correction tracks (31) on both sides are provided with arc-shaped guide surfaces. The arc-shaped guide surfaces on both sides are tangent to the straight structure of the corresponding correction track (31). The distance between the straight structures of the correction tracks (31) on both sides is sufficient for the clear water brick body (3) to pass through.

Citation Information

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