A grinding and processing device for the production of drainage floor drains

Through the push mechanism and guide mechanism moving in the X-axis and Y-axis directions, combined with the grinding mechanism, the problem of inefficiency of the existing grinding device for floor drain production is solved, and the comprehensive grinding of the floor drain edge is achieved and the grinding efficiency is improved.

CN116276429BActive Publication Date: 2025-08-01NINGBO GAOGE BATHROOM FURNISHINGS CO LTD
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Patent Information

Application Number
CN202310089627.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-02-09
Publication Date
2025-08-01
Estimated Expiration
2043-02-09

AI Technical Summary

Technical Problem

The existing grinding devices for floor drain production are inefficient and cannot effectively polish the burrs at the edges of the floor drain.

Method used

The push mechanism and guide mechanism that move in the X-axis and Y-axis directions are adopted, combined with the grinding mechanism, to achieve all-round polishing of the floor drain.

Benefits of technology

It improves grinding efficiency, ensures comprehensive grinding of the edges of the floor drain, and increases the comprehensiveness and efficiency of grinding.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a grinding and processing device for the production of drainage floor drains, including a base and a grinding mechanism. The top of the base is fixedly installed with a first pushing mechanism arranged in the X-axis direction through a conveying mechanism, and the top of the first pushing mechanism is fixedly installed with a second pushing mechanism arranged in the Y-axis direction. In the present invention, by setting the first pushing mechanism and the second pushing mechanism that can move in the X-axis direction and the Y-axis direction, the floor drain installed on the top of the positioning disk can be polished all-round by using the conveying mechanism, which increases the grinding efficiency to a certain extent. The provided clamping blocks can clamp and position multiple groups of floor drains at the same time. When using the conveying mechanism to convey, the guiding mechanism can be respectively contacted with the two driving mechanisms. Such a setting can make the guiding mechanism move step by step from left to right first, and such a setting can effectively grind the edge position of the floor drain placed inside the clamping block.
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Description

Technical Field

[0001] The present invention relates to the technical field of floor drain processing, and specifically to a grinding and processing device for the production of drainage floor drains. Background Art

[0002] A floor drain is an important interface connecting the drainage pipe system and the indoor ground. As an important component of the drainage system in a residence, its performance directly affects the quality of indoor air and is very important for controlling the odor in the bathroom.

[0003] After the production and manufacturing of the floor drain are completed, there will be a large number of burrs at its edge. Therefore, after casting, it is necessary to polish its appearance. Most of the existing polishing devices use a carrying fixture to convey it, and then use a single polishing method to polish it. For example, in a polishing device for the production of cast iron floor drains in Chinese Patent (CN 208945771U), it is proposed that "the cast iron floor drain to be polished can be placed flat on the upper moving plate, and then the left end of the cast iron floor drain is pressed against the right end of the left fixing plate. By the screw fitting between the lower adjusting screw rod and the right threaded through hole, rotating the lower adjusting screw rod to the left makes the left end of the moving clamping plate press against the right end of the cast iron floor drain, so that the cast iron floor drain can be fixedly clamped at the top of the upper moving plate. Through the sliding fit between the two lower dovetail sliders and the two lower dovetail chutes respectively, the lower moving plate can be pushed to move left and right along the direction of the two lower dovetail chutes, so that the polishing position of the cast iron floor drain can be adjusted in the left and right directions. At the same time, by the screw fitting between the lower locking bolt and the lower threaded through hole, rotating the lower locking bolt upward makes the top of the lower locking bolt in locking contact with the bottom of the lower moving plate, so that the position of the adjusted lower moving plate can be relatively locked and fixed with the operation plate." In the above patent, only a single polishing roller is used to polish the surface of the floor drain, and such a polishing method is relatively single, with low polishing efficiency, and the edge of the floor drain cannot be effectively polished during the polishing process. Therefore, we propose a grinding and processing device for the production of drainage floor drains. Summary of the Invention

[0004] The purpose of the present invention is to provide a grinding and processing device for the production of drainage floor drains to solve the problems that need to be solved in the background art.

[0005] To achieve the above object, the present invention provides the following technical solution: A grinding and processing device for the production of drainage floor drains, including a base and a grinding mechanism. The top of the base is fixedly installed with a first pushing mechanism arranged in the X-axis direction through a conveying mechanism. The top of the first pushing mechanism is fixedly installed with a second pushing mechanism arranged in the Y-axis direction. The top of the second pushing mechanism is fixedly installed with a positioning disk. The inside of the positioning disk is rotatably connected with a plurality of clamping blocks through a plurality of connecting shafts. The grinding mechanism is arranged above the clamping blocks. A guiding mechanism is arranged on the top of the second pushing mechanism. Two driving mechanisms for driving the guiding mechanism to move left and right are arranged on both sides of the inner wall of the grinding mechanism.

[0006] After the production and manufacturing of the floor drain are completed, there will be a large number of burrs at its edge. Therefore, after casting, it is necessary to grind its outer surface. Most of the existing grinding devices use a loading fixture to convey it, and then use a single grinding method to grind it, resulting in incomplete grinding. The present invention can perform all-round grinding and polishing on the floor drain installed on the top of the positioning disk by using the first pushing mechanism and the second pushing mechanism that can move in the X-axis direction and the Y-axis direction through the conveying mechanism, which increases the grinding efficiency to a certain extent. The arranged clamping blocks can simultaneously clamp and position multiple floor drains. When using the conveying mechanism to convey, the guiding mechanism can be in contact with the two driving mechanisms respectively. Such a setting can make the guiding mechanism move step by step from left to right, which can make the clamping blocks and the floor drains clamped inside them swing continuously along the connecting shafts on the surface of the positioning disk. Such a setting can effectively grind the edge positions of the floor drains placed inside the clamping blocks, thus ensuring the comprehensiveness of grinding.

[0007] Preferably, the guiding mechanism includes a guiding disk, an avoidance groove, a driving groove and a guiding block. The guiding disk is arranged on the top of the second pushing mechanism. An avoidance groove is penetrated and opened on the top of the guiding disk. A plurality of driving grooves are penetrated and opened on the surface of the guiding disk corresponding to the positions of the clamping blocks. The outer wall of the clamping block is attached to one side of the inner wall of the driving groove. Arc-shaped guiding blocks are fixedly connected to both sides of the guiding disk.

[0008] Preferably, the grinding mechanism includes a plurality of grinding covers, fixed bearings, grinding rollers and a first servo motor. A fixed bearing is fixedly installed on one side of the inner wall of the grinding cover. A grinding roller is rotatably installed inside the fixed bearing. A first servo motor is fixedly installed on the other side of the outer wall of the grinding cover. The output end of the first servo motor penetrates the outer wall of the grinding cover and extends into the inside of the grinding cover. The output end of the first servo motor is fixedly connected to one end of the grinding roller away from the fixed bearing.

[0009] Preferably, the conveying mechanism includes an electric slide, a guide rail and a slider. The electric slide is fixedly installed on the top of the base. The output end of the electric slide is fixedly connected to the bottom of the first pushing mechanism. Two groups of guide rails are fixedly connected to the top of the base. The outer surface of the guide rail is slidably connected with a slider. The top of the slider is fixedly installed on the bottom of the first pushing mechanism.

[0010] Preferably, the first pushing mechanism and the second pushing mechanism have the same structure and both include a pushing box, a guide rod, a limiting sleeve, a second servo motor and a reciprocating lead screw. Two groups of rotating shafts are fixedly connected to both ends of the reciprocating lead screw. The guide rod is fixedly connected to the inner wall of the pushing box. The outer surface of the guide rod is slidably connected with a limiting sleeve. A second servo motor is fixedly installed on one side of the pushing box. The output end of the second servo motor penetrates through the outer wall of the pushing box and extends into the interior of the pushing box. The output end of the second servo motor is fixedly connected to one of the rotating shafts. The other rotating shaft is rotatably installed on the other side of the inner wall of the pushing box. A lead screw sleeve adapted to the reciprocating lead screw is arranged on the outer surface of the reciprocating lead screw. The bottom of the lead screw sleeve is fixedly connected to the top of the limiting sleeve. A through groove is formed through the top of the pushing box. The top of the lead screw sleeve is fixedly connected with a mounting seat. The top of the mounting seat is fixedly connected to the second pushing mechanism. The top of the slider is fixedly connected to the bottom of the pushing box.

[0011] Preferably, the driving mechanism includes a first fixing rod, a first guide wheel, a second fixing rod, a second guide wheel, a spring and a baffle. The first fixing rod is fixedly installed on the inner wall of the grinding cover. One end of the first fixing rod is rotatably installed with a first guide wheel. The first guide wheel is in contact with one side of the guiding mechanism. The other side of the inner wall of the grinding cover is slidably connected with a second fixing rod. One end of the second fixing rod is rotatably installed with a second guide wheel. The other end of the second fixing rod is fixedly connected to a baffle. A spring is fixedly connected to the outer surface of the baffle on one side and located on the second fixing rod. The end of the spring away from the baffle is fixedly installed on the outer wall of the grinding cover.

[0012] Preferably, multiple groups of positioning tubes are fixedly connected to the bottom of the second pushing mechanism. A ball is slidably connected to the bottom of the inner wall of the positioning tube. The bottom of the ball is in contact with the top of the first pushing mechanism.

[0013] Preferably, a groove is arranged on the outer wall of the guiding block. The outer walls of the first guide wheel and the second guide wheel are in contact with the inner wall of the groove.

[0014] Compared with the prior art, the present invention has the following beneficial effects: By providing a first pushing mechanism and a second pushing mechanism that can move in the X-axis direction and the Y-axis direction, the present invention can perform all-round grinding and polishing on the floor drain installed on the top of the positioning disk by using the conveying mechanism, which increases the grinding efficiency to a certain extent. The provided clamping blocks can clamp and position multiple groups of floor drains at the same time. When using the conveying mechanism to convey, the guiding mechanism can be in contact with the two driving mechanisms respectively. Such a setting can make the guiding mechanism move step by step from left to right first, and such a setting can effectively grind the edge position of the floor drain placed inside the clamping block, thereby ensuring the comprehensiveness of grinding. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 is a schematic front view structure diagram of the present invention;

[0016] Figure 2 is a schematic perspective view structure diagram of the guiding mechanism of the present invention;

[0017] Figure 3 is a schematic top view sectional structure diagram of the grinding cover of the present invention;

[0018] Figure 4 is a schematic front view sectional structure diagram of the first pushing mechanism of the present invention.

[0019] In the figure: 1 base, 2 conveying mechanism, 3 grinding mechanism, 4 first pushing mechanism, 5 second pushing mechanism, 6 positioning disk, 7 connecting shaft, 8 clamping block, 9 guiding mechanism, 10 driving mechanism, 11 guiding disk, 12 avoidance groove, 13 driving groove, 14 guiding block, 15 grinding cover, 16 fixed bearing, 17 grinding roller, 18 first servo motor, 19 first fixing rod, 20 first guiding wheel, 21 second fixing rod, 22 second guiding wheel, 23 spring, 24 baffle, 25 electric slide, 26 guide rail, 27 slider, 28 pushing box, 29 guiding rod, 30 limiting sleeve, 31 second servo motor, 32 through groove, 33 reciprocating lead screw, 34 rotating shaft, 35 lead screw sleeve, 36 mounting seat, 37 positioning tube, 38 ball. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0020] The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to 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. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0021] Please refer to Figure 1, the present invention provides a technical solution: a grinding and processing device for the production of drainage floor drains, including a base 1 and a grinding mechanism 3. The top of the base 1 is fixedly installed with a first pushing mechanism 4 arranged in the X-axis direction through a conveying mechanism 2. The top of the first pushing mechanism 4 is fixedly installed with a second pushing mechanism 5 arranged in the Y-axis direction. The top of the second pushing mechanism 5 is fixedly installed with a positioning disk 6. The inside of the positioning disk 6 is rotatably connected with a plurality of clamping blocks 8 through a plurality of connecting shafts 7. The grinding mechanism 3 is arranged above the clamping blocks 8. A guiding mechanism 9 is arranged on the top of the second pushing mechanism 5. Two driving mechanisms 10 for driving the guiding mechanism 9 to move left and right are arranged on both sides of the inner wall of the grinding mechanism 3.

[0022] Among them, by setting the first pushing mechanism 4 and the second pushing mechanism 5 that can move in the X-axis direction and the Y-axis direction, the floor drain installed on the top of the positioning disk 6 can be polished comprehensively by using the conveying mechanism 2, which increases the grinding efficiency to a certain extent. The arranged clamping blocks 8 can simultaneously clamp and position a plurality of floor drains. When using the conveying mechanism 2 to convey, the guiding mechanism 9 can be in contact with the two driving mechanisms 10 respectively. Such a setting can make the guiding mechanism 9 move gradually from left to right. Such a setting can make the clamping blocks 8 and the floor drains clamped inside them swing continuously along the connecting shafts 7 on the surface of the positioning disk 6. Such a setting can effectively grind the edge positions of the floor drains placed inside the clamping blocks 8, so as to ensure the comprehensiveness of grinding.

[0023] Please refer to Figure 1 and Figure 2 , the guiding mechanism 9 includes a guiding disk 11, an avoidance groove 12, a driving groove 13 and a guiding block 14. The guiding disk 11 is arranged on the top of the second pushing mechanism 5. The top of the guiding disk 11 is penetrated and provided with an avoidance groove 12. A plurality of driving grooves 13 are penetrated and provided on the surface of the guiding disk 11 corresponding to the position of the clamping blocks 8. The outer wall of the clamping block 8 is attached to one side of the inner wall of the driving groove 13. Arc-shaped guiding blocks 14 are fixedly connected to both sides of the guiding disk 11. Grooves are arranged on the outer walls of the guiding blocks 14. The outer walls of the first guiding wheel 20 and the second guiding wheel 22 are attached to the inner walls of the grooves.

[0024] Among them, the guiding disk 11 is placed on the top of the second pushing mechanism 5, and the bottom of the clamping block 8 is clamped inside a plurality of driving grooves 13. Subsequently, when the driving mechanism 10 moves, it can be in contact with the guiding blocks 14 on both sides of the guiding disk 11. Subsequently, the clamping blocks 8 and the floor drains clamped inside them can swing continuously along the connecting shafts 7 on the surface of the positioning disk 6. Such a setting can effectively grind the edge positions of the floor drains placed inside the clamping blocks 8 by using the grinding mechanism 3.

[0025] Please refer toFigure 1 , Figure 2 and Figure 3 , the grinding mechanism 3 includes multiple groups of grinding covers 15, fixed bearings 16, grinding rollers 17 and a first servo motor 18. One side of the inner wall of the grinding cover 15 is fixedly installed with a fixed bearing 16, a grinding roller 17 is rotatably installed inside the fixed bearing 16, the other side of the outer wall of the grinding cover 15 is fixedly installed with a first servo motor 18, the output end of the first servo motor 18 penetrates through the outer wall of the grinding cover 15 and extends into the grinding cover 15, and the output end of the first servo motor 18 is fixedly connected to one end of the grinding roller 17 away from the fixed bearing 16.

[0026] Among them, when the conveying mechanism 2, the first pushing mechanism 4 and the second pushing mechanism 5 move below the grinding mechanism 3, first start the first servo motor 18 to move, and then the first servo motor 18 drives the grinding roller 17 to rotate along the inside of the fixed bearing 16, so as to effectively grind the floor drain after conveying.

[0027] Please refer to Figure 1 , the conveying mechanism 2 includes an electric slide 25, a guide rail 26 and a slider 27. The electric slide 25 is fixedly installed on the top of the base 1, the output end of the electric slide 25 is fixedly connected to the bottom of the first pushing mechanism 4, two groups of guide rails 26 are fixedly connected to the top of the base 1, the outer surface of the guide rail 26 is slidably connected with a slider 27, and the top of the slider 27 is fixedly installed on the bottom of the first pushing mechanism 4.

[0028] Among them, when the floor drain is placed on the top of the clamping block 8, start the electric slide 25 to operate, so that the first pushing mechanism 4, the second pushing mechanism 5, the positioning plate 6, the clamping block 8 and the slider 27 above the electric slide 25 can move along the guide rail 26, so as to effectively grind the floor drain.

[0029] Please refer to Figure 1 and Figure 4, the first pushing mechanism 4 and the second pushing mechanism 5 have the same structure and both include a pushing box 28, a guiding rod 29, a limiting sleeve 30, a second servo motor 31 and a reciprocating lead screw 33. Both ends of the reciprocating lead screw 33 are fixedly connected with two groups of rotating shafts 34. The inner wall of the pushing box 28 is fixedly connected with the guiding rod 29. The outer surface of the guiding rod 29 is slidably connected with the limiting sleeve 30. One side of the pushing box 28 is fixedly installed with the second servo motor 31. The output end of the second servo motor 31 penetrates through the outer wall of the pushing box 28 and extends into the inside of the pushing box 28. The output end of the second servo motor 31 is fixedly connected with one of the rotating shafts 34. The other rotating shaft 34 is rotatably installed on the other side of the inner wall of the pushing box 28. The outer surface of the reciprocating lead screw 33 is provided with a lead screw sleeve 35 adapted to it. The bottom of the lead screw sleeve 35 is fixedly connected with the top of the limiting sleeve 30. The top of the pushing box 28 is penetrated and provided with a through groove 32. The top of the lead screw sleeve 35 is fixedly connected with a mounting seat 36. The top of the mounting seat 36 is fixedly connected with the second pushing mechanism 5. The top of the slider 27 is fixedly connected with the bottom of the pushing box 28.

[0030] Among them, when the conveying mechanism 2 pushes the first pushing mechanism 4 and the second pushing mechanism 5, the first servo motors 31 of the first pushing mechanism 4 and the second pushing mechanism 5 work simultaneously. When the first servo motor 31 operates, it drives the reciprocating lead screw 33 and the rotating shaft 34 to rotate, so that the lead screw sleeve 35 and the limiting sleeve 30 can reciprocate along the reciprocating lead screw 33 and the guiding rod 29 respectively. Thus, the mounting seat 36 can move along the through groove 32. Such a setting can make the first pushing mechanism 4 and the second pushing mechanism 5 move simultaneously in the X-axis and Y-axis directions, and when the first pushing mechanism 4 and the second pushing mechanism 5 operate, they can cooperate with the grinding roller 17 for grinding.

[0031] Please refer to Figure 1 , Figure 2 and Figure 3 , the driving mechanism 10 includes a first fixing rod 19, a first guiding wheel 20, a second fixing rod 21, a second guiding wheel 22, a spring 23 and a baffle 24. The first fixing rod 19 is fixedly installed on the inner wall of the grinding cover 15. One end of the first fixing rod 19 is rotatably installed with the first guiding wheel 20. The first guiding wheel 20 is in contact with one side of the guiding mechanism 9. The other side of the inner wall of the grinding cover 15 is slidably connected with the second fixing rod 21. One end of the second fixing rod 21 is rotatably installed with the second guiding wheel 22. The other end of the second fixing rod 21 is fixedly connected with the baffle 24. One side of the baffle 24 and on the outer surface of the second fixing rod 21 is fixedly connected with the spring 23. The end of the spring 23 away from the baffle 24 is fixedly installed on the outer wall of the grinding cover 15.

[0032] Among them, when the conveying mechanism 2 moves the first pushing mechanism 4, the second pushing mechanism 5, the clamping block 8 and the guiding mechanism 9, during the movement, the guiding block 14 of the guiding mechanism 9 will first contact the first fixed rod 19 and the first guiding wheel 20. Subsequently, the arc-shaped guiding block 14 will be squeezed, and then the guiding mechanism 9 can be moved to the right. Then, the clamping block 8 and the floor drain clamped inside it can be tilted to the left along the connecting shaft 7 on the surface of the positioning disk 6, so that the left side of the floor drain can be polished by the polishing roller 17. Subsequently, when the first guiding wheel 20 moves to the outermost edge of the guiding block 14, the spring 23 can be used to push the guiding mechanism 9 to move back to its original position, and the floor drain on the top of the clamping block 8 can be leveled again. Then, the top of the floor drain can be polished by the polishing roller 17. Subsequently, the conveying mechanism 2 continues to drive the first pushing mechanism 4, the second pushing mechanism 5, the clamping block 8 and the guiding mechanism 9 to move. Then, the guiding mechanism 9 can be in contact with another set of driving mechanisms 10. Such a setting can make the guiding mechanism 9 move to the left. Then, the clamping block 8 and the floor drain clamped inside it can be tilted to the right along the connecting shaft 7 on the surface of the positioning disk 6, so that the right side of the floor drain can be polished by the polishing roller 17. Such a setting can complete the all-round polishing of the floor drain.

[0033] Please refer to Figure 1 , a plurality of positioning tubes 37 are fixedly connected to the bottom of the second pushing mechanism 5. A ball 38 is slidably connected to the bottom of the inner wall of the positioning tube 37, and the bottom of the ball 38 contacts the top of the first pushing mechanism 4.

[0034] Among them, the settings of the positioning tube 37 and the ball 38 can support the second pushing mechanism 5 when it reciprocates on the top of the first pushing mechanism 4, and prevent damage when the first pushing mechanism 4 and the second pushing mechanism 5 move.

[0035] During use, first, by setting the first pushing mechanism 4 and the second pushing mechanism 5 that can move in the X-axis direction and the Y-axis direction, the floor drain installed on the top of the positioning disk 6 can be polished comprehensively by using the conveying mechanism 2, which increases the polishing efficiency to a certain extent. The set clamping block 8 can clamp and position multiple groups of floor drains at the same time. When using the conveying mechanism 2 for conveying, the guiding mechanism 9 can be in contact with the two driving mechanisms 10 respectively. Such a setting can make the guiding mechanism 9 move step by step from left to right. Such a setting can make the clamping block 8 and the floor drain clamped inside it swing continuously along the connecting shaft 7 on the surface of the positioning disk 6. Such a setting can effectively polish the edge position of the floor drain placed inside the clamping block 8, so as to ensure the comprehensiveness of polishing. The guiding disk 11 is placed on the top of the second pushing mechanism 5, and the bottom of the clamping block 8 is clamped inside multiple driving grooves 13. Subsequently, when the driving mechanism 10 moves, it can be in contact with the guiding blocks 14 on both sides of the guiding disk 11, and then the clamping block 8 and the floor drain clamped inside it can swing continuously along the connecting shaft 7 on the surface of the positioning disk 6. Such a setting can use the polishing mechanism 3 to effectively polish the edge position of the floor drain placed inside the clamping block 8. When the conveying mechanism 2, the first pushing mechanism 4 and the second pushing mechanism 5 move below the polishing mechanism 3, first start the first servo motor 18 to move. Subsequently, the first servo motor 18 drives the polishing roller 17 to rotate along the inside of the fixed bearing 16, so as to effectively polish the conveyed floor drain. When the floor drain is placed on the top of the clamping block 8, start the electric slide 25 to operate, so that the first pushing mechanism 4, the second pushing mechanism 5, the positioning disk 6, the clamping block 8 and the slider 27 above the electric slide 25 move along the guide rail 26, so as to effectively polish the floor drain. When the conveying mechanism 2 pushes the first pushing mechanism 4 and the second pushing mechanism 5, the first servo motors 31 of the first pushing mechanism 4 and the second pushing mechanism 5 work simultaneously. When the first servo motor 31 operates, it drives the reciprocating lead screw 33 and the rotating shaft 34 to rotate, so that the lead screw sleeve 35 and the limit sleeve 30 move reciprocally along the reciprocating lead screw 33 and the guide rod 29 respectively, so that the mounting seat 36 moves along the through groove 32. Such a setting can make the first pushing mechanism 4 and the second pushing mechanism 5 move simultaneously in the X-axis and Y-axis directions. When the first pushing mechanism 4 and the second pushing mechanism 5 operate, they can cooperate with the polishing roller 17 for polishing. When the conveying mechanism 2 moves the first pushing mechanism 4, the second pushing mechanism 5, the clamping block 8 and the guiding mechanism 9, during the movement, the guiding block 14 of the guiding mechanism 9 will first be in contact with the first fixed rod 19 and the first guiding wheel 20, and then the arc-shaped guiding block 14 will be squeezed, and then the guiding mechanism 9 can be moved to the right.Subsequently, the clamping block 8 and the floor drain clamped therein can be tilted to the left along the connecting shaft 7 on the surface of the positioning disk 6, so that the left side of the floor drain can be polished by the polishing roller 17. Subsequently, after the first guide wheel 20 moves to the outermost edge of the guide block 14, the guide mechanism 9 can be pushed by the spring 23 to move and reset again, and the floor drain on the top of the clamping block 8 can be leveled again. In this way, the top of the floor drain can be polished by the polishing roller 17. Subsequently, the conveying mechanism 2 continues to drive the first pushing mechanism 4, the second pushing mechanism 5, the clamping block 8 and the guide mechanism 9 to move. Subsequently, the guide mechanism 9 can be brought into contact with another set of driving mechanisms 10. Such a setting can make the guide mechanism 9 move to the left. Subsequently, the clamping block 8 and the floor drain clamped therein can be tilted to the right along the connecting shaft 7 on the surface of the positioning disk 6, so that the right side of the floor drain can be polished by the polishing roller 17. Such a setting can complete the all-round polishing of the floor drain.

[0036] Although the embodiments of the present invention have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A grinding and processing device for the production of drainage floor drains, comprising a base (1) and a grinding mechanism (3), characterized in that: The top of the base (1) is fixedly installed with a first pushing mechanism (4) arranged in the X-axis direction through a conveying mechanism (2). The top of the first pushing mechanism (4) is fixedly installed with a second pushing mechanism (5) arranged in the Y-axis direction. The top of the second pushing mechanism (5) is fixedly installed with a positioning disc (6). Inside the positioning disc (6), a plurality of clamping blocks (8) are rotatably connected through a plurality of connecting shafts (7). The grinding mechanism (3) is arranged above the clamping blocks (8). A guiding mechanism (9) is arranged on the top of the second pushing mechanism (5). On both sides of the inner wall of the grinding mechanism (3), there are two driving mechanisms (10) for driving the guiding mechanism (9) to move left and right; The guiding mechanism (9) includes a guiding disc (11), an avoidance groove (12), a driving groove (13) and a guiding block (14). The guiding disc (11) is arranged on the top of the second pushing mechanism (5). An avoidance groove (12) is penetratingly opened on the top of the guiding disc (11). A plurality of driving grooves (13) are penetratingly opened on the surface of the guiding disc (11) corresponding to the positions of the clamping blocks (8). The outer wall of the clamping block (8) is in fit with one side of the inner wall of the driving groove (13). Arc-shaped guiding blocks (14) are fixedly connected to both sides of the guiding disc (11); The grinding mechanism (3) includes a plurality of grinding covers (1), a fixed bearing (16), a grinding roller (17) and a first servo motor (18). On one side of the inner wall of the grinding cover (15), a fixed bearing (16) is fixedly installed. Inside the fixed bearing (16), a grinding roller (17) is rotatably installed. On the other side of the outer wall of the grinding cover (15), a first servo motor (18) is fixedly installed. The output end of the first servo motor (18) penetrates the outer wall of the grinding cover (I5) and extends into the grinding cover (15). The output end of the first servo motor (18) is fixedly connected to one end of the grinding roller (17) away from the fixed bearing (16); The conveying mechanism (2) includes an electric slide (25), a guide rail (26) and a slider (27). The electric slide (25) is fixedly installed on the top of the base (1). The output end of the electric slide (25) is fixedly connected to the bottom of the first pushing mechanism (4). Two guide rails (26) are fixedly connected to the top of the base (1). The outer surface of the guide rail (26) is slidably connected with a slider (2). The top of the slider (27) is fixedly installed on the bottom of the first pushing mechanism (4); The first pushing mechanism (4) and the second pushing mechanism (5) have the same structure and both include a pushing box (28), a guide rod (29), a limit sleeve (30), a second servo motor (31) and a reciprocating lead screw (33). Both ends of the reciprocating lead screw (33) are fixedly connected with two groups of rotating shafts (34). The inner wall of the pushing box (28) is fixedly connected with a guide rod (29). The outer surface of the guide rod (29) is slidably connected with a limit sleeve (30). One side of the pushing box (28) is fixedly installed with a second servo motor (31). The output end of the second servo motor (31) penetrates through the outer wall of the pushing box (28) and extends into the pushing box (28). The output end of the second servo motor (31) is fixedly connected with one of the rotating shafts (34). The other rotating shaft (34) is rotatably installed on the other side of the inner wall of the pushing box (28). The outer surface of the reciprocating lead screw (33) is provided with a lead screw sleeve (35) adapted to it. The bottom of the lead screw sleeve (35) is fixedly connected with the top of the limit sleeve (30). A through groove (32) is formed through the top of the pushing box (28). The top of the lead screw sleeve (35) is fixedly connected with a mounting seat (36). The top of the mounting seat (36) is fixedly connected with the second pushing mechanism (5). The top of the slider (27) is fixedly connected with the bottom of the pushing box (28); The driving mechanism (10) includes a first fixing rod (19), a first guide wheel (20), a second fixing rod (21), a second guide wheel (22), a spring (23) and a baffle (24). The first fixing rod (19) is fixedly installed on the inner wall of the grinding cover (15). One end of the first fixing rod (19) is rotatably installed with a first guide wheel (20). The first guide wheel (20) is in contact with one side of the guiding mechanism (9). The other side of the inner wall of the grinding cover (15) is slidably connected with a second fixing rod (21). One end of the second fixing rod (21) is rotatably installed with a second guide wheel (22). The other end of the second fixing rod (21) is fixedly connected with a baffle (24). One side of the baffle (24) and on the outer surface of the second fixing rod (21) is fixedly connected with a spring (23). The end of the spring (23) away from the baffle (24) is fixedly installed on the outer wall of the grinding cover (15).

2. A grinding and processing device for the production of a drainage floor drain according to claim 1, characterized in that: The bottom of the second pushing mechanism (5) is fixedly connected with multiple positioning tubes (37). The bottom of the inner wall of the positioning tube (37) is slidably connected with a ball (38). The bottom of the ball (38) is in contact with the top of the first pushing mechanism (4).

3. A grinding and processing device for the production of a drainage floor drain according to claim 2, characterized in that: The outer wall of the guiding block (14) is provided with a groove. The outer walls of the first guide wheel (20) and the second guide wheel (22) are in contact with the inner wall of the groove.

Citation Information

Patent Citations

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