Production device and production process of rapid hardening and reinforcing repair material
By designing a grinding device including limiting tube, rotating rod, rotating disk and hydraulic control, the problem of under-grinding of raw materials in traditional ball mills is solved, and efficient production of rapid hardening and reinforcement repair materials is achieved.
Patent Information
- Application Number
- CN202510715764.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-30
- Publication Date
- 2025-08-29
AI Technical Summary
The cylindrical structure of traditional ball mills causes the raw materials located at corner positions to be fully ground, reducing the grinding efficiency.
A production device for rapid hardening and reinforcement repair materials is adopted, including a limiting tube, a rotating rod, a rotating disk, a connecting rod, a grinding cylinder and a ball. Through the motor drive gear and a ring mesh, the alternating rotation and swing of the first grinding cylinder and the second grinding cylinder are realized, and the telescopic plate sealing channel is controlled by hydraulic oil to ensure that the raw material and the steel ball are fully in contact in the grinding cylinder.
The full grinding of raw materials is achieved, the grinding efficiency is improved, and the rapid hardening and reinforcement effect of the material is ensured.
Smart Images

Figure CN120550894A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of fast-hardening materials, in particular to a production device and a production process of a fast-hardening reinforcement repair material. Background Art
[0002] A common building reinforcement material is cement, and cement clinker is obtained by crushing, calcining, grinding and other processes of raw materials. The grinding process of cement clinker usually uses a ball mill to grind the granular material into cement powder. The barrel of the traditional ball mill used for grinding cement clinker is a simple cylindrical structure.
[0003] A ball mill is a key piece of equipment for comminuting materials after crushing. This type of mill uses a cylinder filled with a predetermined number of steel balls as the grinding medium. It is widely used in industries such as cement, silicate products, new building materials, refractories, fertilizers, ferrous and nonferrous metal beneficiation, and glass and ceramics.
[0004] However, since the traditional grinding machine is cylindrical, the raw materials located in the corners cannot be fully ground by the steel balls, resulting in a longer grinding time and reduced grinding efficiency. Summary of the Invention
[0005] The object of the present invention is to provide a production device and a production process of a fast-hardening reinforcement repair material to solve the problems raised in the above-mentioned background technology.
[0006] To achieve the above-mentioned object, the present invention provides the following technical solution: a production device for a fast-hardening reinforcement repair material, comprising:
[0007] The second support frame, a limiting tube is provided on the top of the second support frame, a first rotating rod is provided on the surface of the limiting tube, a rotating disk is provided on the end of the first rotating rod, a first connecting rod is provided on the surface of the rotating disk, a second limiting tube is provided on the end of the first connecting rod, a second grinding cylinder is provided on the end of the second grinding cylinder, a first grinding cylinder is provided on the other end of the first grinding cylinder, a connecting rod is provided, a second rotating rod is provided on the end of the connecting rod, a ball is provided on the end of the second rotating rod, and a limiting cover is provided on the outside of the ball.
[0008] Preferably, a first motor is fixed to the surface of the limiting tube, and a second gear is provided at the end of the first motor. The first motor can drive the second gear to rotate, and the first rotating rod is inserted into the interior of the limiting tube. The first rotating rod can rotate inside the limiting tube, and the rotating disk rotates with the first rotating rod. A circular ring is fixed to the surface of the rotating disk, and teeth are provided on the surface of the circular ring. The teeth on the surface of the second gear are engaged with the teeth on the surface of the circular ring. The circular ring rotates with the second gear, and the rotating disk rotates with the circular ring.
[0009] Preferably, the first connecting rod is fixed on the surface of the rotating disk, the first connecting rod rotates with the rotating disk, the end of the first connecting rod is fixed to the end of the second limiting tube, the surface of the rotating disk is fixed with a second connecting rod, the other end of the second connecting rod is fixed with a second motor, the end of the second motor is provided with a first gear, the second motor can drive the first gear to rotate, the surface of the second grinding cylinder is provided with teeth, the teeth on the tooth surface are engaged with the teeth on the surface of the first gear, and the second grinding cylinder rotates with the first gear.
[0010] Preferably, a first support frame is fixed to the bottom of the limit cover, the ball is located inside the limit cover, the ball can swing inside the limit cover, a second rotating rod is fixed to the surface of the ball, the second rotating rod is inserted into the inside of the connecting rod, the end of the second rotating rod can rotate inside the connecting rod, the connecting rod is fixed to the end of the first grinding cylinder, a feed port is opened on the surface of the first grinding cylinder, the interior of the first grinding cylinder is communicated with the interior of the second grinding cylinder, and the first grinding cylinder and the second grinding cylinder rotate together.
[0011] Preferably, a circular ring is provided on the outside of the first grinding cylinder and the second grinding cylinder, two groups of force plates are fixed on the surface of the circular ring, a fixed seat is fixed on the bottom of the circular ring, a filter groove is opened on the surface of the fixed seat, and multiple groups of filter rods are provided inside the filter groove, and the fixed seat is located at the bottom of the first grinding cylinder.
[0012] Preferably, an extension block is fixed inside the first grinding cylinder, and two groups of extension blocks are fixed. The two groups of extension blocks are symmetrically distributed inside the first grinding cylinder, and a channel is left between the extension blocks so that the first grinding cylinder and the second grinding cylinder are connected to each other. A movable groove is provided on the surface of the extension block, and a telescopic plate is inserted into the movable groove. The telescopic plate can move in the movable groove. After the two groups of telescopic plates move, they approach each other to seal the channel between the first grinding cylinder and the second grinding cylinder.
[0013] Preferably, a supporting rod is inserted into the surface of the first grinding cylinder, and the supporting rod can be telescopically moved inside the first grinding cylinder. A spring is provided at the end of the supporting rod. A pipe is provided inside the first grinding cylinder, and the interior of the pipe is filled with hydraulic oil. A channel is provided inside the first grinding cylinder, and the channel connects the movable groove and the pipe. The hydraulic oil in the pipe can enter the movable groove through the channel.
[0014] Preferably, the telescopic plate is in contact with the hydraulic oil in the movable groove. When the hydraulic oil in the pipeline enters the movable groove, the hydraulic oil in the movable groove squeezes the telescopic plate, causing the telescopic plate to move in the movable groove. The two groups of telescopic plates are close to each other, and plug-in grooves are provided at both ends of the telescopic plate. A telescopic block is plugged into the plug-in groove. The telescopic block can move in the plug-in groove. A spring is provided in the plug-in groove. The spring connects the end of the telescopic block and the inside of the plug-in groove. The spring has a thrust on the telescopic block, so that the surface of the telescopic block is held against the inner wall of the first grinding cylinder.
[0015] Preferably, the feed port is filled with raw materials and steel balls, the raw materials and the steel balls roll inside the first grinding cylinder and the second grinding cylinder, and the raw materials are ground by the steel column.
[0016] A production process for a device for producing a rapid hardening reinforcement repair material comprises the following steps:
[0017] Step 1: Initial grinding, put the raw materials and steel balls into the interior of the first grinding cylinder through the feed port, drive the second gear to rotate through the first motor, the teeth on the surface of the second gear mesh with the teeth on the surface of the ring, so that the second gear drives the ring to rotate, and the ring drives the rotating disk to rotate, so that the rotating disk drives the first connecting rod to rotate, and the first connecting rod drives the first grinding cylinder and the second grinding cylinder to swing. When the first connecting rod is at the top, the raw materials and steel balls are both located inside the first grinding cylinder, and the first connecting rod continues to rotate with the rotating disk, so that when the first grinding cylinder and the second grinding cylinder are in a horizontal position, the end of the holding rod is held on The surface of the force-bearing plate on the surface of the annular ring allows the supporting rod to be inserted into the pipeline, so that the spring is compressed, and the hydraulic oil in the pipeline enters the movable groove through the channel. The hydraulic oil squeezes the telescopic plate, causing the telescopic plate to move. The two sets of telescopic plates approach each other, and the telescopic block extends from the insertion groove. The channel between the extension blocks is sealed by the telescopic plate and the telescopic block, so that the raw material and the steel ball are located inside the first grinding cylinder. The second motor drives the first gear to rotate, and the teeth on the surface of the first gear mesh with the teeth, so that the first grinding cylinder and the second grinding cylinder rotate with the first gear, and the raw material is ground by the steel balls inside the first grinding cylinder;
[0018] Step 2: Regrinding, the rotating disk rotates to drive the first grinding cylinder and the second grinding cylinder to swing, so that the second grinding cylinder is located at the bottom, and the supporting rod is no longer supported on the surface of the force plate, so that the raw materials and steel balls in the first grinding cylinder enter the second grinding cylinder. When the first grinding cylinder and the second grinding cylinder are in a horizontal position again, the steel balls and raw materials are located in the middle position of the second grinding cylinder, so that the raw materials are fully ground, and the next batch of raw materials can be ground in the first grinding cylinder.
[0019] Compared with the prior art, the present invention has the following beneficial effects:
[0020] The present invention proposes that when the first connecting rod is at the top, the raw material and the steel balls are both located inside the first grinding cylinder, and the first connecting rod continues to rotate with the rotating disk, so that when the first grinding cylinder and the second grinding cylinder are in a horizontal position, the end of the supporting rod is supported on the surface of the force-bearing plate on the surface of the annular ring, so that the supporting rod is inserted into the pipeline, so that the spring is compressed, and the hydraulic oil in the pipeline enters the movable groove through the channel, and the hydraulic oil squeezes the telescopic plate, so that the telescopic plate moves, and the two sets of telescopic plates approach each other, and the telescopic block extends from the insertion groove, and the channel between the extension blocks is sealed by the telescopic plate and the telescopic block, so that the raw material and the steel balls are located inside the first grinding cylinder, and the second electric The machine drives the first gear to rotate, and the teeth on the surface of the first gear mesh with the teeth, so that the first grinding cylinder and the second grinding cylinder rotate with the first gear, and the raw material is ground by the steel balls inside the first grinding cylinder. Due to the corners inside the first grinding cylinder, the grinding is not sufficient. The rotation of the rotating disk drives the first grinding cylinder and the second grinding cylinder to swing, so that the second grinding cylinder is located at the bottom, and the supporting rod is no longer supported on the surface of the force plate, so that the raw material and steel balls in the first grinding cylinder enter the second grinding cylinder. When the first grinding cylinder and the second grinding cylinder are in a horizontal position again, the steel balls and raw materials are located in the middle position of the second grinding cylinder, so that the raw material is fully ground. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] Figure 1 It is a structural schematic diagram of the present invention.
[0022] Figure 2 This is a structural schematic diagram from another perspective of the present invention.
[0023] Figure 3 It is a schematic diagram of the structure of the rotating disk of the present invention.
[0024] Figure 4 Schematic diagram of the ball structure of the present invention.
[0025] Figure 5 for Figure 2 A magnified schematic diagram of the structure in the middle.
[0026] Figure 6 Schematic diagram of the ring structure of the present invention.
[0027] Figure 7 This is a schematic diagram of the grinding cylinder structure of the present invention.
[0028] Figure 8 This is a schematic diagram of the cross-sectional structure of the grinding cylinder of the present invention.
[0029] Figure 9 for Figure 8 A magnified schematic diagram of the structure at point B in the middle.
[0030] Figure 10 This is a schematic diagram of the cross-sectional structure of the second grinding cylinder of the present invention.
[0031] Figure 11 for Figure 10 Enlarged schematic diagram of the structure at point C in the middle.
[0032] In the figure: first support frame 1, rotating disk 2, second support frame 3, ring 4, first rotating rod 5, first motor 6, limiting tube 7, ball 8, limiting cover 9, second rotating rod 10, connecting rod 11, teeth 12, first connecting rod 13, second connecting rod 14, second motor 15, first gear 16, ring 17, force plate 18, filter tank 19, filter rod 20, fixed seat 21, feed port 22, first grinding cylinder 23, second grinding cylinder 24, extension block 25, supporting rod 27, pipe 28, spring 29, telescopic block 30, telescopic plate 31, channel 32, movable groove 33, plug-in groove 34, second gear 35, second limiting tube 36. DETAILED DESCRIPTION
[0033] In order to clearly and completely describe the objectives and technical solutions of the present invention and make the advantages more clearly understood, the embodiments of the present invention are further described in detail below with reference to the accompanying drawings. It should be understood that the specific embodiments described herein are part of the embodiments of the present invention, not all of them, and are only used to explain the embodiments of the present invention, not to limit the embodiments of the present invention. All other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0034] See also Figures 1 to 11 , the present invention provides a technical solution:
[0035] Example 1: A production device for a fast-hardening reinforcement repair material, comprising: a second support frame 3, a limiting tube 7 is provided on the top of the second support frame 3, a first rotating rod 5 is provided on the surface of the limiting tube 7, a rotating disk 2 is provided at the end of the first rotating rod 5, a first connecting rod 13 is provided on the surface of the rotating disk 2, a second limiting tube 36 is provided at the end of the first connecting rod 13, a second grinding cylinder 24 is provided at the end of the second grinding cylinder 24, a first grinding cylinder 23 is provided at the other end of the first grinding cylinder 23, a connecting rod 11 is provided at the end of the connecting rod 11, a second rotating rod 10 is provided at the end of the second rotating rod 10, a ball 8 is provided at the end of the second rotating rod 10, and a limiting cover 9 is provided on the outside of the ball 8.
[0036] Example 2: On the basis of Example 1, a first motor 6 is fixed to the surface of the limiting tube 7, and a second gear 35 is provided at the end of the first motor 6. The first motor 6 can drive the second gear 35 to rotate, and the first rotating rod 5 is inserted into the inside of the limiting tube 7. The first rotating rod 5 can rotate inside the limiting tube 7, and the rotating disk 2 rotates with the first rotating rod 5. A ring 4 is fixed to the surface of the rotating disk 2, and the surface of the ring 4 is provided with teeth. The teeth on the surface of the second gear 35 mesh with the teeth on the surface of the ring 4, and the ring 4 rotates with the second gear 35. The rotating disk 2 rotates with the ring 4, and the teeth on the surface of the second gear 35 mesh with the teeth on the surface of the ring 4, so that the second gear 35 drives the ring 4 to rotate, and the ring 4 drives the rotating disk 2 to rotate, so that the rotating disk 2 drives the first connecting rod 13 to rotate.
[0037] The first connecting rod 13 is fixed on the surface of the rotating disk 2, and the first connecting rod 13 rotates with the rotating disk 2. The end of the first connecting rod 13 is fixed to the end of the second limiting tube 36. The surface of the rotating disk 2 is fixed with a second connecting rod 14, and the other end of the second connecting rod 14 is fixed with a second motor 15. The end of the second motor 15 is provided with a first gear 16, and the second motor 15 can drive the first gear 16 to rotate. The surface of the second grinding cylinder 24 is provided with teeth 12, and the teeth on the surface of the teeth 12 are engaged with the teeth on the surface of the first gear 16. The second grinding cylinder 24 rotates with the first gear 16, and the second motor 15 drives the first gear 16 to rotate. The teeth on the surface of the first gear 16 are engaged with the teeth 12, so that the first grinding cylinder 23 and the second grinding cylinder 24 rotate with the first gear 16, and the raw material is ground by the steel balls inside the first grinding cylinder 23.
[0038] A first support frame 1 is fixed to the bottom of the limiting cover 9, and the ball 8 is located inside the limiting cover 9. The ball 8 can swing inside the limiting cover 9. A second rotating rod 10 is fixed to the surface of the ball 8. The second rotating rod 10 is inserted into the inside of the connecting rod 11. The end of the second rotating rod 10 can rotate inside the connecting rod 11. The connecting rod 11 is fixed to the end of the first grinding cylinder 23. A feed port 22 is provided on the surface of the first grinding cylinder 23. The feed port 22 is filled with raw materials and steel balls. The raw materials and steel balls roll inside the first grinding cylinder 23 and the second grinding cylinder 24. The raw materials are ground by the steel column. The interior of the first grinding cylinder 23 is connected to the interior of the second grinding cylinder 24. The first grinding cylinder 23 and the second grinding cylinder 24 rotate together. The first grinding cylinder 23 and the second grinding cylinder 24 are provided with a ring 17 on the outside, two groups of force plates 18 are fixed on the surface of the ring 17, a fixing seat 21 is fixed to the bottom of the ring 17, a filter groove 19 is provided on the surface of the fixing seat 21, and multiple groups of filter rods 20 are provided inside the filter groove 19. The fixing seat 21 is located at the bottom of the first grinding cylinder 23, and an extension block 25 is fixed inside the first grinding cylinder 23. Two groups of extension blocks 25 are fixed. The two groups of extension blocks 25 are symmetrically distributed inside the first grinding cylinder 23. A channel is left between the extension blocks 25 so that the first grinding cylinder 23 and the second grinding cylinder 24 are communicated. A movable groove 33 is provided on the surface of the extension block 25, and a telescopic plate 31 is inserted in the movable groove 33. The telescopic plate 31 contacts the hydraulic oil in the movable groove 33. When When the hydraulic oil in the pipeline 28 enters the movable groove 33, the hydraulic oil in the movable groove 33 squeezes the telescopic plate 31, so that the telescopic plate 31 moves in the movable groove 33, and the two groups of telescopic plates 31 approach each other, and the two ends of the telescopic plate 31 are provided with a plug-in groove 34, and the telescopic block 30 is plugged into the plug-in groove 34. The telescopic block 30 can move in the plug-in groove 34, and a spring is provided in the plug-in groove 34. The spring connects the end of the telescopic block 30 and the interior of the plug-in groove 34. The spring has a thrust on the telescopic block 30, so that the surface of the telescopic block 30 is held against the inner wall of the first grinding cylinder 23, and the telescopic plate 31 can move in the movable groove 33. After the two groups of telescopic plates 31 move, they approach each other, sealing the passage between the first grinding cylinder 23 and the second grinding cylinder 24. The first grinding cylinder 2 3 is plugged into the surface of a supporting rod 27, which can be telescopically moved inside the first grinding cylinder 23. A spring 29 is provided at the end of the supporting rod 27. A pipe 28 is provided inside the first grinding cylinder 23. The interior of the pipe 28 is filled with hydraulic oil. A channel 32 is provided inside the first grinding cylinder 23. The channel 32 connects the movable groove 33 and the pipe 28. The hydraulic oil in the pipe 28 can enter the movable groove 33 through the channel 32. The hydraulic oil in the pipe 28 enters the movable groove 33 through the channel 32. The hydraulic oil squeezes the telescopic plate 31, causing the telescopic plate 31 to move. The two sets of telescopic plates 31 approach each other, and the telescopic block 30 extends from the insertion groove 34. The channel between the extension blocks 25 is sealed by the telescopic plate 31 and the telescopic block 30.
[0039] The raw material and steel balls are put into the interior of the first grinding cylinder 23 through the feed port 22, and the second gear 35 is driven to rotate by the first motor 6. The teeth on the surface of the second gear 35 mesh with the teeth on the surface of the ring 4, so that the second gear 35 drives the ring 4 to rotate, and the ring 4 drives the rotating disk 2 to rotate, so that the rotating disk 2 drives the first connecting rod 13 to rotate, and the first connecting rod 13 drives the first grinding cylinder 23 and the second grinding cylinder 24 to swing. When the first connecting rod 13 is at the top, the raw material and steel balls are all located inside the first grinding cylinder 23, and the first connecting rod 13 continues to rotate with the rotating disk 2, so that when the first grinding cylinder 23 and the second grinding cylinder 24 are in a horizontal position, the end of the supporting rod 27 is supported on the surface of the force plate 18 on the surface of the ring 17, so that the supporting rod 27 is inserted into the pipe 28, so that the spring 29 is compressed, and the hydraulic oil in the pipe 28 enters the movable groove 33 through the channel 32. The hydraulic oil squeezes the telescopic plate 31, so that the telescopic plate 31 moves, and the two sets of telescopic plates 31 approach each other, and the telescopic plates 31 are moved. The block 30 extends from the insertion slot 34, and the passage between the extension block 25 is sealed by the telescopic plate 31 and the telescopic block 30, so that the raw material and the steel balls are located inside the first grinding cylinder 23. The second motor 15 drives the first gear 16 to rotate, and the teeth on the surface of the first gear 16 engage with the teeth 12, so that the first grinding cylinder 23 and the second grinding cylinder 24 rotate with the first gear 16, and the raw material is ground by the steel balls inside the first grinding cylinder 23. Due to the corners inside the first grinding cylinder 23, the grinding is not sufficient. The rotation of the rotating disk 2 drives the first grinding cylinder 23 and the second grinding cylinder 24 to swing, so that the second grinding cylinder 24 is located at the bottom, and the supporting rod 27 is no longer supported on the surface of the force-bearing plate 18, so that the raw material and steel balls in the first grinding cylinder 23 enter the second grinding cylinder 24. When the first grinding cylinder 23 and the second grinding cylinder 24 are in the horizontal position again, the steel balls and raw material are located in the middle position of the second grinding cylinder 24, so that the raw material is fully ground, and the next batch of raw material can be ground in the first grinding cylinder 23.
[0040] Although the above describes the illustrative specific embodiments of the present application so that those skilled in the art can understand the present application, the present application is not limited to the scope of the specific embodiments. For those skilled in the art, as long as various changes are within the spirit and scope of the present application defined and determined by the attached claims, all application creations based on the concept of the present application are protected.
Claims
1. A production device for a rapid hardening reinforcement repair material, characterized by: include: A second support frame (3), a limiting tube (7) is provided on the top of the second support frame (3), a first rotating rod (5) is provided on the surface of the limiting tube (7), a rotating disk (2) is provided at the end of the first rotating rod (5), a first connecting rod (13) is provided on the surface of the rotating disk (2), a second limiting tube (36) is provided at the end of the first connecting rod (13), a second grinding cylinder (24) is provided at the end of the second grinding cylinder (24), a first grinding cylinder (23) is provided at the other end of the first grinding cylinder (23), a connecting rod (11) is provided at the end of the connecting rod (11), a second rotating rod (10) is provided at the end of the second rotating rod (10), a ball (8) is provided at the end of the second rotating rod (10), and a limiting cover (9) is provided outside the ball (8).
2. The production device of a rapid hardening reinforcement repair material according to claim 1, characterized in that: A first motor (6) is fixed on the surface of the position-limiting tube (7), a second gear (35) is provided at the end of the first motor (6), and the first motor (6) can drive the second gear (35) to rotate. The first rotating rod (5) is inserted into the interior of the position-limiting tube (7), and the first rotating rod (5) can rotate inside the position-limiting tube (7). The rotating disk (2) rotates along with the first rotating rod (5). A circular ring (4) is fixed on the surface of the rotating disk (2), and the surface of the circular ring (4) is provided with teeth. The teeth on the surface of the second gear (35) mesh with the teeth on the surface of the circular ring (4). The circular ring (4) rotates along with the second gear (35), and the rotating disk (2) rotates along with the circular ring (4).
3. The production device of a rapid hardening reinforcement repair material according to claim 2, characterized in that: The first connecting rod (13) is fixed on the surface of the rotating disk (2), and the first connecting rod (13) rotates with the rotating disk (2). The end of the first connecting rod (13) is fixed to the end of the second limiting tube (36). A second connecting rod (14) is fixed to the surface of the rotating disk (2), and a second motor (15) is fixed to the other end of the second connecting rod (14). A first gear (16) is provided at the end of the second motor (15), and the second motor (15) can drive the first gear (16) to rotate. The surface of the second grinding cylinder (24) is provided with teeth (12), and the teeth on the surface of the teeth (12) mesh with the teeth on the surface of the first gear (16). The second grinding cylinder (24) rotates with the first gear (16).
4. The production device of a rapid hardening reinforcement repair material according to claim 3, characterized in that: A first support frame (1) is fixed to the bottom of the limiting cover (9), a ball (8) is located inside the limiting cover (9), and the ball (8) can swing inside the limiting cover (9). A second rotating rod (10) is fixed to the surface of the ball (8), and the second rotating rod (10) is inserted into the interior of the connecting rod (11). The end of the second rotating rod (10) can rotate inside the connecting rod (11). The connecting rod (11) is fixed to the end of the first grinding cylinder (23). A feed port (22) is provided on the surface of the first grinding cylinder (23). The interior of the first grinding cylinder (23) is communicated with the interior of the second grinding cylinder (24), and the first grinding cylinder (23) and the second grinding cylinder (24) rotate together.
5. The production device of a rapid hardening reinforcement repair material according to claim 4, characterized in that: A circular ring (17) is provided on the outside of the first grinding cylinder (23) and the second grinding cylinder (24), two groups of force plates (18) are fixed on the surface of the circular ring (17), a fixing seat (21) is fixed on the bottom of the circular ring (17), a filter groove (19) is provided on the surface of the fixing seat (21), and multiple groups of filter rods (20) are provided inside the filter groove (19), and the fixing seat (21) is located at the bottom of the first grinding cylinder (23).
6. The production device of a rapid hardening reinforcement repair material according to claim 5, characterized in that: An extension block (25) is fixed inside the first grinding cylinder (23), and two groups of extension blocks (25) are fixed. The two groups of extension blocks (25) are symmetrically distributed inside the first grinding cylinder (23), and a channel is left between the extension blocks (25), so that the first grinding cylinder (23) and the second grinding cylinder (24) are connected to each other. A movable groove (33) is opened on the surface of the extension block (25), and a telescopic plate (31) is inserted into the movable groove (33). The telescopic plate (31) can move in the movable groove (33). After the two groups of telescopic plates (31) move, they approach each other and seal the channel between the first grinding cylinder (23) and the second grinding cylinder (24).
7. The production device of a rapid hardening reinforcement repair material according to claim 6, characterized in that: A supporting rod (27) is inserted into the surface of the first grinding cylinder (23), and the supporting rod (27) can be telescopically moved inside the first grinding cylinder (23). A spring (29) is provided at the end of the supporting rod (27). A pipe (28) is provided inside the first grinding cylinder (23), and the pipe (28) is filled with hydraulic oil. A channel (32) is provided inside the first grinding cylinder (23), and the channel (32) communicates with the movable groove (33) and the pipe (28). The hydraulic oil in the pipe (28) can enter the movable groove (33) through the channel (32).
8. The production device of a rapid hardening reinforcement repair material according to claim 7, characterized in that: The telescopic plate (31) contacts the hydraulic oil in the movable groove (33). When the hydraulic oil in the pipeline (28) enters the movable groove (33), the hydraulic oil in the movable groove (33) squeezes the telescopic plate (31), so that the telescopic plate (31) moves in the movable groove (33). The two groups of telescopic plates (31) are close to each other, and plug-in grooves (34) are provided at both ends of the telescopic plate (31). The plug-in grooves (34) are plugged with telescopic blocks (30). The telescopic blocks (30) can move in the plug-in grooves (34). A spring is provided in the plug-in groove (34). The spring connects the end of the telescopic block (30) and the inside of the plug-in groove (34). The spring has a thrust on the telescopic block (30), so that the surface of the telescopic block (30) is held against the inner wall of the first grinding cylinder (23).
9. The production device of a rapid hardening reinforcement repair material according to claim 8, characterized in that: The feed port (22) is filled with raw materials and steel balls, and the raw materials and steel balls roll inside the first grinding cylinder (23) and the second grinding cylinder (24), and the raw materials are ground by the steel columns.
10. A production process for the production device of the rapid hardening reinforcement repair material according to claim 9, characterized in that: The following steps are involved: Step 1: Initial grinding, the raw materials and steel balls are put into the interior of the first grinding cylinder (23) through the feed port (22), and the second gear (35) is driven to rotate by the first motor (6). The teeth on the surface of the second gear (35) are meshed with the teeth on the surface of the ring (4), so that the second gear (35) drives the ring (4) to rotate, and the ring (4) drives the rotating disk (2) to rotate, so that the rotating disk (2) drives the first connecting rod (13) to rotate, and the first connecting rod (13) drives the first grinding cylinder (23) and the second grinding cylinder (24) to swing. When the first connecting rod (13) is at the top, the raw materials and steel balls are all located inside the first grinding cylinder (23), and the first connecting rod (13) continues to rotate with the rotating disk (2), so that when the first grinding cylinder (23) and the second grinding cylinder (24) are in a horizontal position, the end of the supporting rod (27) is supported on the surface of the ring (17). The surface of the force plate (18) causes the supporting rod (27) to be inserted into the pipe (28), causing the spring (29) to be compressed, and the hydraulic oil in the pipe (28) to enter the movable groove (33) through the channel (32). The hydraulic oil squeezes the telescopic plate (31), causing the telescopic plate (31) to move, and the two sets of telescopic plates (31) are close to each other, and the telescopic block (30) extends from the insertion groove (34). The channel between the extension block (25) is sealed by the telescopic plate (31) and the telescopic block (30), so that the raw material and the steel ball are located inside the first grinding cylinder (23). The second motor (15) drives the first gear (16) to rotate, and the teeth on the surface of the first gear (16) are engaged with the teeth (12), so that the first grinding cylinder (23) and the second grinding cylinder (24) rotate with the first gear (16), and the raw material is ground by the steel ball inside the first grinding cylinder (23); Step 2: Regrinding, the rotating disc (2) rotates to drive the first grinding cylinder (23) and the second grinding cylinder (24) to swing, so that the second grinding cylinder (24) is located at the bottom, and the supporting rod (27) is no longer supported on the surface of the force plate (18), so that the raw materials and steel balls in the first grinding cylinder (23) enter the second grinding cylinder (24), and when the first grinding cylinder (23) and the second grinding cylinder (24) are in a horizontal position again, the steel balls and the raw materials are located in the middle of the second grinding cylinder (24), so that the raw materials are fully ground, and the first grinding cylinder (23) can grind the next portion of raw materials.
Citation Information
Patent Citations
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CN119386982A
Nylon drum-type grinding machine
CN214131969U
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