A composite board grinding mechanism with a structure-adjustable conversion board
By designing a composite plate grinding mechanism with structural adjustable conversion plate, using a split grinding wheel and a flip adjustment frame, the problems of limitations in the applicability and adjustment range of the traditional grinding mechanism are solved, and flexible adaptation to the specifications of the composite plate and multi-angle grinding are achieved, which improves operational convenience and reduces costs.
Patent Information
- Application Number
- CN202111075126.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2021-09-14
- Publication Date
- 2025-06-20
- Estimated Expiration
- 2041-09-14
AI Technical Summary
The grinding mechanism of traditional composite boards has a simple structure and a limited adjustment range. It has high specification requirements for composite boards and very little applicability.
A composite plate grinding mechanism with structurally adjustable conversion plate is designed, including a drive motor, an electrically controlled pneumatic strut, an electric thread adjustment machine and a main board body. The flexible adaptation and multi-angle polishing of the composite plate specifications are achieved through a split grinding wheel and a flip adjustment frame.
It improves the applicability and operation convenience of the composite panel grinding mechanism, expands the grinding range, and reduces the cost of later use.
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Figure CN113752117B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of sheet metal grinding and processing, and in particular to a composite board grinding mechanism with a structurally adjustable conversion board. Background Art
[0002] In many cases, a single sheet cannot meet specific usage requirements. Therefore, it is necessary to enhance its own performance through a composite method, and thus composite boards are produced. A composite board is a new type of board formed by combining two or more materials with different properties, and has special functions that ordinary boards do not have.
[0003] A composite board refers to covering one metal plate with another metal plate to achieve the effect of saving resources and reducing costs without reducing the usage effect (anti-corrosion performance, mechanical strength, etc.). The composite methods usually include rolling composite, explosive composite method, explosive rolling composite, etc. It is mainly applied in new building materials, anti-corrosion, pressure vessel manufacturing, electric power construction, petrochemical, pharmaceutical, light industry, automotive and other industries.
[0004] During the processing and production of composite boards, it is necessary to grind the edge positions to improve the processing accuracy. The traditional composite board grinding mechanism has a simple structure, limited adjustment range, high requirements for the specifications of composite boards, and low applicability. Summary of the Invention
[0005] The technical problem to be solved by the present invention is: to provide an improved composite board grinding mechanism with a structurally adjustable conversion board to solve the problems of the traditional composite board grinding mechanism, such as simple structure, limited adjustment range, high requirements for the specifications of composite boards, and low applicability.
[0006] The technical solution adopted by the present invention to solve its technical problems is: a composite board grinding mechanism with a structurally adjustable conversion board, including a driving motor, an electric control air pressure strut, an electric screw adjuster, and a main board body. An internal transition hole is opened on the upper surface of the main board body. A longitudinal guide tube is bolted and fixed around the internal transition hole on the upper surface of the main board body. A flipping adjustment frame is movably assembled on the outer side surface of the longitudinal guide tube. The upper end of the driving motor is bolted and fixed to the lower surface of the main board body. A split grinding wheel controlled by the driving motor and the electric screw adjuster is arranged at the upper end of the longitudinal guide tube. A lateral mounting bracket is bolted and fixed to the lower surface of the main board body on one side of the driving motor. The lower end of the electric control air pressure strut is movably connected to the lateral mounting bracket through a first movable connection frame on the lateral mounting bracket.
[0007] A lateral assembly block is bolted and fixed to the lower surface of the main board body. An internal sliding groove with both ends open is opened on the lower surface of the lateral assembly block.
[0008] The described flipping and adjusting frame includes an external flipping frame installed outside the longitudinally arranged guiding tube, a lateral assembly bolt inserted into the outer side wall of the external flipping frame, a lateral assembly rod threadedly fixed on the outer side surface of the external flipping frame, and a lateral adjusting roller movably sleeved outside the lateral assembly rod through a roller bearing.
[0009] On the outer side surface of the longitudinally arranged guiding tube, there are laterally inward threaded holes. The external flipping frame is movably connected to the longitudinally arranged guiding tube by screwing the lateral assembly bolt into the laterally inward threaded holes.
[0010] At the top end of the upper rotating shaft of the driving motor, a main driving shaft is axially fixed through a coupling. The split grinding wheel includes a first grinding wheel axially and fixedly sleeved outside the main driving shaft, a second grinding wheel axially and movably sleeved outside the main driving shaft, and a top adjusting cylinder fixed on the upper end of the second grinding wheel.
[0011] On the outer side surface of the top adjusting cylinder, there is a first lateral assembly groove with a first linkage ring built in. The electric screw adjusting machine is fixedly installed on the outer side surface of the longitudinally arranged guiding tube through a lateral fixing frame. On the outer side surface of the lifting rod at the upper end of the electric screw adjusting machine, there is a second lateral assembly groove with a second linkage ring built in. The first linkage ring and the second linkage ring are fixedly connected through a fixed connecting rod.
[0012] The external flipping frame consists of triangular structure lateral assembly plates arranged on both sides of the longitudinally arranged guiding tube, an integral structure fixing frame fixed at both ends of the lateral assembly plates, and internal mounting seats installed at both inner ends of the lateral assembly plates. On the outer side surface of the internal mounting seats, there are internal assembly threaded holes matching with the lateral assembly rods.
[0013] On both sides of the internal mounting seats, there are lateral telescopic holes with threaded telescopic rods built in. On the side wall of the internal mounting seats, there are lateral adjusting rods for adjusting the threaded telescopic rods. On both sides of the internal mounting seats, there are lateral mounting grooves with lateral linkage rods built in.
[0014] On the inner side surface of the lateral assembly plates, there are multiple lateral positioning holes matching with the threaded telescopic rods.
[0015] The beneficial effects of the present invention are:
[0016] (1) In the composite board grinding mechanism with a structurally adjustable conversion plate of the present invention, a split grinding wheel controlled by a driving motor and an electric screw adjusting machine is arranged at the upper end of the longitudinally arranged guiding tube, so that composite boards of different specifications can be adapted as needed, thereby improving its applicability and being simple and convenient to operate;
[0017] (2) A flip - adjustment frame controlled by an electric - control pneumatic strut is movably assembled outside the longitudinally - arranged guide tube. The assembly angle of the composite board can be converted by flipping the lateral - adjustment roller, so as to conveniently grind different edges and corners of the composite board. The grinding range is wide and the control is very convenient.
[0018] (3) An adjustable threaded telescopic rod controlled by a lateral - adjustment rod and a lateral linkage rod is arranged inside the internal mounting seat. Lateral positioning holes matching with the threaded telescopic rod are formed on the inner side surface of the lateral mounting plate, making the installation position of the lateral - adjustment roller more diverse, so that it can be applicable to composite boards of different specifications.
[0019] (4) The longitudinally - arranged guide tube, the flip - adjustment frame, the drive motor, the split - type grinding wheel and the lateral mounting bracket all adopt a split - type detachable installation design, which is convenient for loading, unloading and replacement, and reduces the later use cost. Description of the Drawings
[0020] The present invention will be further described below in conjunction with the drawings and embodiments.
[0021] Figure 1 is the structural schematic diagram of the present invention.
[0022] Figure 2 is the internal cross - sectional view of the present invention.
[0023] Figure 3 is the internal cross - sectional view of the internal mounting seat in the present invention. Detailed Embodiment
[0024] Now, the present invention will be further described in detail in conjunction with the drawings. These drawings are all simplified schematic diagrams, only illustrating the basic structure of the present invention in a schematic way, so they only show the components related to the present invention.
[0025] Figure 1 、 Figure 2 and Figure 3 A composite - board grinding mechanism with a structure - adjustable conversion board as shown in, includes a drive motor 1, an electric - control pneumatic strut 2, an electric - threaded adjuster 3 and a main board body 4. An internal transition hole 5 is formed on the upper surface of the main board body 4. A longitudinally - arranged guide tube 6 is bolt - fixed on the upper surface of the main board body 4 around the internal transition hole 5. A flip - adjustment frame is movably assembled on the outer side surface of the longitudinally - arranged guide tube 6. The upper end of the drive motor 1 is bolt - fixed on the lower surface of the main board body 4. A split - type grinding wheel controlled by the drive motor 1 and the electric - threaded adjuster 3 is arranged at the upper end of the longitudinally - arranged guide tube 6. A lateral mounting bracket 7 is bolt - fixed on the lower surface of the main board body 4 on one side of the drive motor 1. The lower end of the electric - control pneumatic strut 2 is movably connected to the lateral mounting bracket 7 through a first movable connection frame 8 on the lateral mounting bracket 7.
[0026] Further, in order to cooperate with the sliding assembly, a lateral assembly block 9 is fixedly installed on the lower surface of the main board body 1 through bolts, and an internal chute 10 with openings at both ends is formed on the lower surface of the lateral assembly block 9.
[0027] Further, for the purpose of cooperating with the installation, the flipping and adjusting frame includes an external flipping frame 11 installed outside the vertical guiding tube 6, a lateral assembly bolt 15 inserted into the outer side wall of the external flipping frame 11, a lateral assembly rod 12 threadedly fixed on the outer side surface of the external flipping frame 11, and a lateral adjusting roller 14 movably sleeved outside the lateral assembly rod 12 through a roller bearing 13.
[0028] A second movable connection frame for installing the electric pneumatic strut 2 is fixedly connected to the side wall of the external flipping frame 11.
[0029] Further, for the purpose of cooperating with the lateral assembly, lateral internal threaded holes are formed on the outer side surface of the vertical guiding tube 6, and the external flipping frame 11 is movably connected to the vertical guiding tube 6 by screwing the lateral assembly bolts 15 into the lateral internal threaded holes.
[0030] Further, for the purpose of cooperating with the lifting adjustment so as to change the grinding range of the grinding wheel as required. The top end of the upper rotating shaft of the driving motor 1 is axially fixed with a main driving shaft 16 through a coupling. The split grinding wheel includes a first grinding wheel 17 axially fixedly sleeved outside the main driving shaft 16, a second grinding wheel 18 axially movably sleeved outside the main driving shaft 16, and a top adjustment cylinder 19 fixed to the upper end of the second grinding wheel 18.
[0031] The top end of the main driving shaft 16 at the assembly end of the second grinding wheel 18 has a non-circular cross-section structure, which can facilitate the lifting adjustment while cooperating with the rotation.
[0032] Further, for the purpose of cooperating with the linkage control, a first lateral assembly groove with a built-in first linkage ring 20 is formed on the outer side surface of the top adjustment cylinder 19. The electric screw adjuster 3 is fixedly installed on the outer side surface of the vertical guiding tube 6 through a lateral fixing frame. A second lateral assembly groove with a built-in second linkage ring 21 is formed on the outer side surface of the lifting rod at the upper end of the electric screw adjuster 3. The first linkage ring 20 and the second linkage ring 21 are fixedly connected through a fixing link 22.
[0033] Further, for the purpose of cooperating with the assembly and fixation, the external flipping frame 11 is composed of triangular structure lateral assembly plates 23 arranged on both sides of the vertical guiding tube 6, integral structure fixing frames 24 fixed at both ends of the lateral assembly plates 23, and internal mounting seats 25 installed at both inner ends of the lateral assembly plates 23. Internal assembly threaded holes 26 matching with the lateral assembly rods 12 are formed on the outer side surfaces of the internal mounting seats 25.
[0034] Further, for the convenience of adjusting loading and unloading, lateral telescopic holes for accommodating the built-in threaded telescopic rods 27 are provided on both sides of the internal mounting seat 25. A lateral adjusting rod 28 for adjusting the threaded telescopic rods 27 is provided on the side wall of the internal mounting seat 25. Lateral mounting grooves for accommodating the built-in lateral linkage rods 29 are provided on both sides of the internal mounting seat 25.
[0035] Adjustment grooves are provided on the outer side of the lateral adjusting rod 28. Using tools such as a screwdriver inserted into the adjustment grooves to rotate and adjust the lateral adjusting rod 28, the lateral adjusting rod 28 drives the threaded telescopic rod 27 to rotate. The threaded telescopic rod 27 is composed of an external internal-thread adjusting tube and an external-thread screw rod threadedly inserted into the internal-thread adjusting tube. A lateral limiting block is provided at the outer top end of the external-thread screw rod to prevent the external-thread screw rod from rotating. Then, the contact ends of the lateral adjusting rod 28 and the internal-thread adjusting tube are meshed with each other, and the internal-thread adjusting tube is in meshing transmission with both ends of the lateral linkage rod 29.
[0036] Further, for the convenience of fixing and adjustment, 10 lateral positioning holes 30 that cooperate with the threaded telescopic rods 27 are provided on the inner side surface of the lateral mounting plate 23.
[0037] In the composite board grinding mechanism with a structurally adjustable conversion plate of the present invention, a split grinding wheel controlled by a driving motor 1 and an electric thread adjusting machine 3 is provided at the upper end of the longitudinal guide tube, so that composite boards of different specifications can be adapted according to needs, thereby improving its applicability and making the operation simple and convenient; a flipping adjustment frame controlled by an electric control pneumatic strut 2 is movably assembled outside the longitudinal guide tube 6, and the assembly angle of the composite board can be converted by flipping the lateral adjustment roller 14, so as to facilitate grinding different corners of the composite board, with a wide grinding range and very convenient control; an adjusting threaded telescopic rod 27 controlled by a lateral adjusting rod 28 and a lateral linkage rod 29 is provided inside the internal mounting seat 25, and lateral positioning holes 30 that cooperate with the threaded telescopic rod 27 are provided on the inner side surface of the lateral mounting plate 23, making the installation position of the lateral adjustment roller 14 more diverse, so that it can be applicable to composite boards of different specifications; the longitudinal guide tube 6, the flipping adjustment frame, the driving motor 1, the split grinding wheel and the lateral mounting bracket 7 all adopt a split detachable installation design, which is convenient for loading, unloading and replacement, and reduces the later use cost.
[0038] Taking the above ideal embodiments based on the present invention as an inspiration, through the above description, relevant staff can completely make various changes and modifications without departing from the technical idea of this invention. The technical scope of this invention is not limited to the content in the specification, and its technical scope must be determined according to the scope of the claims.
Claims
1. A composite board grinding mechanism with a structurally adjustable conversion board, comprising a driving motor (1), an electric control pneumatic strut (2), an electric screw adjuster (3), and a main board body (4), characterized in that: An internal transition hole (5) is formed on the upper surface of the main board body (4). A vertical guiding tube (6) is fixedly bolted on the upper surface of the main board body (4) around the internal transition hole (5). A flipping and adjusting frame is movably assembled on the outer side surface of the vertical guiding tube (6). The upper end of the driving motor (1) is fixedly installed on the lower surface of the main board body (4) by bolts. A split grinding wheel controlled by the driving motor (1) and the electric screw adjusting machine (3) is arranged at the upper end of the vertical guiding tube (6). A lateral mounting bracket (7) is fixedly bolted on the lower surface of the main board body (4) on one side of the driving motor (1). The lower end of the electric control pneumatic strut (2) is movably connected with the lateral mounting bracket (7) through a first movable connecting frame (8) on the lateral mounting bracket (7); A lateral assembly block (9) is fixedly installed on the lower surface of the main board body (4) by bolts. An internal chute (10) with both ends open is formed on the lower surface of the lateral assembly block (9); The flipping and adjusting frame includes an external flipping frame (11) installed on the outer side of the vertical guiding tube (6), a lateral assembly bolt (15) inserted into the outer side wall of the external flipping frame (11), a lateral assembly rod (12) threadedly fixed on the outer side surface of the external flipping frame (11), and a lateral adjusting roller (14) movably sleeved on the outer side of the lateral assembly rod (12) through a roller bearing (13); The top end of the rotating shaft of the upper end of the driving motor (1) is axially fixed with a main driving shaft (16) through a coupling. The split grinding wheel includes a first grinding wheel (17) axially fixedly sleeved on the outer side of the main driving shaft (16), a second grinding wheel (18) axially movably sleeved on the outer side of the main driving shaft (16), and a top adjusting cylinder (19) fixed on the upper end of the second grinding wheel (18).
2. The composite board grinding mechanism with a structurally adjustable conversion board according to claim 1, characterized in that: A lateral internal threaded hole is formed on the outer side surface of the vertical guiding tube (6). The external flipping frame (11) is movably connected with the vertical guiding tube (6) by screwing the lateral assembly bolt (15) into the lateral internal threaded hole; 3. The composite board grinding mechanism with a structurally adjustable conversion board according to claim 1, characterized in that: A first lateral assembly groove with a built-in first linkage ring (20) is formed on the outer side surface of the top adjusting cylinder (19). The electric screw adjusting machine (3) is fixedly installed on the outer side surface of the vertical guiding tube (6) through a lateral fixing frame. A second lateral assembly groove with a built-in second linkage ring (21) is formed on the outer side surface of the lifting rod at the upper end of the electric screw adjusting machine (3). The first linkage ring (20) and the second linkage ring (21) are fixedly connected through a fixed connecting rod (22).
4. The composite board grinding mechanism with a structurally adjustable conversion board according to claim 1, characterized in that: The external flipping frame (11) includes triangular structure lateral assembly plates (23) arranged on both sides of the vertical guiding tube (6), integral structure fixing frames (24) fixed at both ends of the lateral assembly plates (23), and internal mounting seats (25) installed at both inner ends of the lateral assembly plates (23). An internal assembly threaded hole (26) matching with the lateral assembly rod (12) is formed on the outer side surface of the internal mounting seat (25).
5. The composite board grinding mechanism with a structurally adjustable conversion board according to claim 4, characterized in that: On both sides of the described internal mounting base (25), there are lateral telescopic holes for accommodating the built-in threaded telescopic rods (27). On the side wall of the internal mounting base (25), there is a lateral adjusting rod (28) for adjusting the threaded telescopic rods (27). On both sides of the internal mounting base (25), there are lateral mounting grooves for accommodating the built-in lateral linkage rods (29).
6. The composite board grinding mechanism with a structurally adjustable conversion board according to claim 5, characterized in that: On the inner surface of the described lateral assembly plate (23), there are a plurality of lateral positioning holes (30) that cooperate with the threaded telescopic rods (27).
Citation Information
Patent Citations
Composite board polishing mechanism with structure-adjustable conversion board
CN216327152U