Feeding mechanism for precise saw blade leveler
By designing a feeding mechanism for saw blade precision leveling machine, the problems of low efficiency and safety hazards of manual feeding in the prior art are solved, automatic feeding is realized, and working efficiency and safety are improved.
Patent Information
- Application Number
- CN202421281503.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-06
- Publication Date
- 2025-05-30
- Estimated Expiration
- 2034-06-06
AI Technical Summary
The feeding mechanism of the existing saw blade precision leveling machine relies on manual operation, which is inefficient and has safety hazards, resulting in high labor intensity and low working efficiency.
A feeding mechanism including a conveying assembly, an adjustment assembly and a limiting assembly is designed. The conveying assembly realizes the conveying of the saw blade through rotating rollers and belts. The adjustment assembly adjusts the height of the conveying assembly, and the limiting assembly is used to limit and guide the saw blade.
The feeding mechanism improves the conveying efficiency and safety of the saw blade, can automatically feed, reduces the need for manual operation, and improves work efficiency and productivity.
Smart Images

Figure CN222919505U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of feeding mechanisms, and particularly relates to a feeding mechanism for a saw blade precision flattening machine. Background Art
[0002] A saw blade is an important component in cutting tools, usually made of cemented carbide or steel. Its shape, size, and material selection depend on the material to be cut and the cutting method. The main types of saw blades include: circular saw blades, hand saw blades, metal saw blades, etc. A saw blade precision flattening machine is a device used for processing metal materials, mainly for trimming, correcting, and processing various types of saw blades. Through this machine, the surface of the saw blade can be made more flat, improving its precision and quality, thereby ensuring more accurate and stable cutting effects. This plays a very important role in the metal processing industry, improving production efficiency and processing quality.
[0003] For the existing feeding mechanisms for saw blade precision flattening machines, most of them are manual feeding. However, manual feeding has low efficiency and there are safety hazards, resulting in high labor intensity and thus reducing work efficiency. Therefore, we propose a feeding mechanism for a saw blade precision flattening machine to solve the above existing problems. Content of the Utility Model
[0004] Aiming at the deficiencies of the prior art, the utility model provides a feeding mechanism for a saw blade precision flattening machine, which solves the problems of low efficiency of manual feeding and safety hazards.
[0005] To achieve the above purposes, the utility model is realized through the following technical solutions: A feeding mechanism for a saw blade precision flattening machine, including a conveying component, which is used for conveying the saw blade to be flattened;
[0006] An adjusting component, which is arranged outside the conveying component and is used for adjusting the height of the conveying component; and
[0007] A limiting component, which is arranged on the top surface of the adjusting component and directly above the conveying component, and is used for limiting the saw blade to be flattened.
[0008] Preferably, the adjusting component includes a workbench. A mounting hole is opened on one side of the center position of the top surface of the workbench. The inner cavity of the mounting hole is connected to the conveying component. Adjusting parts are arranged at the four corner positions of the bottom surface of the workbench, and the four adjusting parts are distributed in a rectangular array.
[0009] Preferably, the adjusting part includes an adjusting pipe, the adjusting pipe is arranged on the bottom surface of the workbench, a hollow pipe is arranged in the inner cavity of the adjusting pipe, a bottom plate is arranged on the bottom surface of the hollow pipe, an electric telescopic rod is arranged at the center of the top surface of the bottom plate, and the top surface of the output end of the electric telescopic rod is connected to the center of the top surface of the inner cavity of the adjusting pipe.
[0010] Preferably, the limiting component includes a support plate. There are two support plates, and the two support plates are arranged on the top surface of the workbench and on both sides of the installation hole. The limiting columns are arranged on the top surfaces of the two support plates. A placement hole is opened on the top surface of the limiting column, and guiding grooves are opened at the center of the opposite side surfaces of the two support plates.
[0011] Preferably, a cushion plate is arranged on the bottom surface of the inner cavity of the guiding groove, and the cushion plate is used to adjust the thickness of the guiding groove.
[0012] Preferably, the conveying component includes rotating rollers. The rotating rollers are arranged in the inner cavity of the installation hole. There are multiple rotating rollers, and the multiple rotating rollers are linearly arranged. A belt is arranged outside the multiple rotating rollers. One end of one of the rotating rollers is provided with a driving motor, and one side surface of the driving motor is connected to one side surface of the workbench;
[0013] A driving part is arranged at the center of the top surface of the belt. There are multiple driving parts, and the multiple driving parts are linearly arranged in an array.
[0014] Preferably, the driving part includes a fixing column. The fixing column is arranged at the center of the top surface of the belt. A first internal thread hole is opened at the center of the top surface of the fixing column. A screw rod is rotatably connected in the inner cavity of the first internal thread hole. A clamping column is arranged on the top surface of the fixing column. A second internal thread hole is opened on the top surface of the clamping column, and the inner cavity of the second internal thread hole is rotatably connected to the outer side of the top end of the screw rod.
[0015] Beneficial effects
[0016] The utility model provides a feeding mechanism for a saw blade precision flattening machine. Compared with the prior art, the following beneficial effects are achieved:
[0017] The feeding mechanism of the saw blade precision leveling machine. When feeding the saw blade precision leveling machine, first place the adjusting component at the preset position, and then place the limiting component on one side of the top surface of the adjusting component, so that the adjusting component can support the limiting component, and then the staff can place the saw blade to be leveled in the inner cavity of the limiting component, so as to limit and guide the saw blade to be leveled. Since the conveying component is arranged in the inner cavity of the adjusting component, the adjusting component can support the conveying component, and then the output end of the conveying component can convey the saw blade to be leveled in the inner cavity of the limiting component, so as to feed the saw blade precision leveling machine. Then, through the adjusting component, the conveying component can be driven to move up and down, and then the position of the conveying component can be adjusted, so that the conveying component can feed saw blade precision leveling machines with different heights. Description of the Drawings
[0018] Figure 1 Schematic diagram of the overall structure of the present utility model;
[0019] Figure 2 Schematic diagram of the overall side structure of the present utility model;
[0020] Figure 3 Schematic diagram of the adjusting component structure of the present utility model;
[0021] Figure 4 Schematic diagram of the adjusting part structure of the present utility model;
[0022] Figure 5 Schematic diagram of the cross-sectional structure of the limiting component of the present utility model;
[0023] Figure 6 Schematic diagram of the conveying component structure of the present utility model;
[0024] Figure 7 Schematic diagram of the driving part structure of the present utility model.
[0025] In the figure: 1. Adjusting component; 11. Workbench; 12. Installation hole; 13. Adjusting part; 131. Adjusting pipe; 132. Hollow pipe; 133. Electric telescopic rod; 134. Bottom plate; 2. Limiting component; 21. Support plate; 22. Limiting column; 23. Placing hole; 24. Limiting hole; 25. Padding plate; 3. Conveying component; 31. Rotating roller; 32. Belt; 33. Driving motor; 34. Driving part; 341. Fixed column; 342. First internal thread hole; 343. Screw; 344. Engaging column; 345. Second internal thread hole. Detailed Implementation Manner
[0026] 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.
[0027] Please refer to Figure 1-7 , the present invention provides a technical solution: a feeding mechanism for a precision flattening machine of a saw blade, including a conveying component 3 for conveying the saw blade to be flattened; an adjusting component 1 disposed outside the conveying component 3 for adjusting the height of the conveying component 3; and a limiting component 2 disposed on the top surface of the adjusting component 1 and directly above the conveying component 3 for limiting the saw blade to be flattened.
[0028] When feeding the precision flattening machine of the saw blade, first place the adjusting component 1 at a preset position, and then place the limiting component 2 on one side of the top surface of the adjusting component 1, so that the adjusting component 1 can provide support for the limiting component 2, and then the staff can place the saw blade to be flattened in the inner cavity of the limiting component 2, so as to limit and guide the saw blade to be flattened. Since the conveying component 3 is arranged in the inner cavity of the adjusting component 1, the adjusting component 1 can provide support for the conveying component 3, and then the output end of the conveying component 3 can convey the saw blade to be flattened in the inner cavity of the limiting component 2, so as to feed the precision flattening machine of the saw blade. Then, through the adjusting component 1, the conveying component 3 can be driven to move up and down, and then the position of the conveying component 3 can be adjusted, so that the conveying component 3 can feed the precision flattening machine of the saw blade with different heights.
[0029] Refer to Figure 1-4 , the adjusting component 1 includes a workbench 11. One side of the center position of the top surface of the workbench 11 is provided with an installation hole 12, and the inner cavity of the installation hole 12 is connected to the conveying component 3. Four corner positions of the bottom surface of the workbench 11 are respectively provided with adjusting parts 13, and the four adjusting parts 13 are arranged in a rectangular array. The adjusting part 13 includes an adjusting tube 131 disposed on the bottom surface of the workbench 11. A hollow tube 132 is arranged in the inner cavity of the adjusting tube 131. A bottom plate 134 is arranged on the bottom surface of the hollow tube 132. An electric telescopic rod 133 is arranged at the center position of the top surface of the bottom plate 134, and the top surface of the output end of the electric telescopic rod 133 is connected to the center position of the top surface of the inner cavity of the adjusting tube 131.
[0030] By adjusting the workbench 11 in the adjusting component 1, it can be placed at a preset position and provide a basis for opening the mounting holes 12. Since the inner cavity of the mounting holes 12 is connected to the conveying component 3, the workbench 11 can support the conveying component 3, thereby improving the stability of the conveying component 3 and facilitating the improvement of convenience. Since adjusting pipes 131 are fixedly connected to the four corner positions of the bottom surface of the workbench 11, and a hollow pipe 132 is movably connected to the inner cavity of the adjusting pipe 131, and a bottom plate 134 is fixedly connected to the bottom surface of the hollow pipe 132, the hollow pipe 132 can move up and down in the adjusting pipe 131, thereby adjusting the position of the hollow pipe 132 and facilitating the adjustment of the position of the workbench 11. Since an electric telescopic rod 133 is fixedly connected to the central position of the top surface of the bottom plate 134, and the top surface of the output end of the electric telescopic rod 133 is connected to the central position of the top surface of the inner cavity of the adjusting pipe 131, the electric telescopic rod 133 can drive the hollow pipe 132 to move, thereby adjusting the position of the workbench 11 and facilitating the adjustment of the position of the conveying component 3, and enabling feeding according to different saw blade precision flattening machines.
[0031] Refer to Figure 1 , Figure 2 , Figure 5 , the limiting component 2 includes support plates 21. There are two support plates 21, and the two support plates 21 are arranged on the top surface of the workbench 11 and on both sides of the mounting holes 12. Limiting columns 22 are arranged on the top surfaces of the two support plates 21, placing holes 23 are opened on the top surfaces of the limiting columns 22, guiding grooves 24 are opened at the central positions of the opposite side surfaces of the two support plates 21, and a backing plate 25 is arranged on the bottom surface of the inner cavity of the guiding grooves 24. The backing plate 25 is used to adjust the thickness of the guiding grooves 24;
[0032] Through the two support plates 21 in the limiting component 2, they can be fixedly connected to the top surface of the workbench 11 and on both sides of the mounting holes 12 and provide support for the limiting columns 22. Since placing holes 23 are opened on the top surfaces of the limiting columns 22, the support plates 21 can support the limiting columns 22, enabling the staff to place the saw blade to be flattened in the inner cavity of the placing holes 23, and facilitating the support plates 21 to provide support for the placing holes 23. Since guiding grooves 24 are opened at the central positions of the opposite side surfaces of the two support plates 21, the guiding grooves 24 can guide the saw blade to be flattened, thereby improving the stability of movement. Since a backing plate 25 is movably connected to the bottom surface of the inner cavity of the guiding grooves 24, the backing plate 25 can adjust the thickness of the guiding grooves 24, thereby guiding saw blades to be flattened with different thicknesses and facilitating the feeding process of saw blades to be flattened with different thicknesses, improving the practicability.
[0033] Refer to Figure 1 , Figure 2 , Figure 6, Figure 7 , the conveying assembly 3 includes a rotating roller 31 disposed inside the installation hole 12. There are multiple rotating rollers 31, and the multiple rotating rollers 31 are linearly arranged. A belt 32 is disposed outside the multiple rotating rollers 31. One end of one of the rotating rollers 31 is provided with a driving motor 33, and one side surface of the driving motor 33 is connected to one side surface of the workbench 11; at the center position of the top surface of the belt 32, there are multiple driving parts 34, and the multiple driving parts 34 are linearly arrayed. The driving part 34 includes a fixing column 341 disposed at the center position of the top surface of the belt 32. At the center position of the top surface of the fixing column 341, a first internal threaded hole 342 is opened. A screw 343 is rotatably connected inside the first internal threaded hole 342. A clamping column 344 is disposed on the top surface of the fixing column 341. A second internal threaded hole 345 is opened on the top surface of the clamping column 344, and the inside of the second internal threaded hole 345 is rotatably connected to the outer side of the top end of the screw 343;
[0034] Through the multiple rotating rollers 31 in the conveying assembly 3, it can not only be movably connected inside the installation hole 12, but also provide an installation basis for the belt 32. Since one end of one of the rotating rollers 31 is rotatably connected to the driving motor 33, and one side surface of the driving motor 33 is connected to one side surface of the workbench 11, the workbench 11 can thus support the driving motor 33, and then the output end of the driving motor 33 can drive the rotating roller 31 to rotate, so that the rotating roller 31 can drive the belt 32 to rotate. Since the fixing column 341 is fixedly connected to the top surface of the belt 32, and the first internal threaded hole 342 is opened on the top surface of the fixing column 341, and at the same time the screw 343 is rotatably connected inside the first internal threaded hole 342, the belt 32 can thus drive the fixing column 341 to rotate, and then the fixing column 341 can drive the screw 343 to rotate. Since the clamping column 344 is connected to the top surface of the fixing column 341, and the second internal threaded hole 345 is opened on the top surface of the clamping column 344, and at the same time the inside of the second internal threaded hole 345 is rotatably connected to the outer side of the top end of the screw 343, the clamping column 344 can be rotatably connected to the outer side of the top end of the screw 343, and then the outer side of the clamping column 344 can be clamped at the center position of the bottom surface of the saw blade to be leveled. Then through the screw 343, the screw 343 can drive the clamping column 344 to move, and then the clamping column 344 can drive the saw blade to be leveled to move, so as to feed the saw blade precision leveling machine. Then through the clamping column 344, the clamping columns 344 of different sizes can be adjusted, and then saw blades of different styles can be conveyed, so as to improve the diversity.
[0035] During operation, when feeding the saw blade precision flattening machine is required, first place the adjusting component 1 at the preset position, and then place the limiting component 2 on one side of the top surface of the adjusting component 1, so that the adjusting component 1 can provide support for the limiting component 2, and then enable the staff to place the saw blade to be flattened in the inner cavity of the limiting component 2, so as to limit and guide the saw blade to be flattened. Since the conveying component 3 is arranged in the inner cavity of the adjusting component 1, the adjusting component 1 can provide support for the conveying component 3, and then the output end of the conveying component 3 can convey the saw blade to be flattened in the inner cavity of the limiting component 2, so as to feed the saw blade precision flattening machine. Then, through the adjusting component 1, the conveying component 3 can be driven to move up and down, and then the position of the conveying component 3 can be adjusted, so as to enable the conveying component 3 to feed saw blade precision flattening machines of different heights.
[0036] Through the workbench 11 in the adjusting component 1, it can be placed at the preset position and provide a foundation for opening the mounting holes 12. Since the inner cavity of the mounting holes 12 is connected to the conveying component 3, the workbench 11 can provide support for the conveying component 3, and then the stability of the conveying component 3 can be improved, so as to improve convenience. Since the four corners of the bottom surface of the workbench 11 are fixedly connected with adjusting tubes 131, and the inner cavity of the adjusting tubes 131 is movably connected with hollow tubes 132, and the bottom surface of the hollow tubes 132 is fixedly connected with a bottom plate 134, the hollow tubes 132 can move up and down in the adjusting tubes 131, and then the position of the hollow tubes 132 can be adjusted, so as to adjust the position of the workbench 11. Since the middle position of the top surface of the bottom plate 134 is fixedly connected with an electric telescopic rod 133, and the top surface of the output end of the electric telescopic rod 133 is connected to the middle position of the top surface of the inner cavity of the adjusting tube 131, the electric telescopic rod 133 can drive the hollow tube 132 to move, and then the position of the workbench 11 can be adjusted, so as to adjust the position of the conveying component 3 and feed saw blade precision flattening machines according to different ones.
[0037] Through the two support plates 21 in the limiting component 2, it can not only be fixedly connected to the top surface of the workbench 11 and located on both sides of the mounting hole 12, but also provide support for the limiting column 22. Since the placing hole 23 is provided on the top surface of the limiting column 22, the support plate 21 can provide support for the limiting column 22, and then the staff can place the saw blade to be leveled in the inner cavity of the placing hole 23, so that the support plate 21 can provide support for the placing hole 23. Since the guiding grooves 24 are provided at the central positions on the opposite surfaces of the two support plates 21, the guiding grooves 24 can guide the saw blade to be leveled, and then the stability of movement can be improved. Since the bottom surface of the inner cavity of the guiding groove 24 is movably connected with the backing plate 25, the thickness of the guiding groove 24 can be adjusted by the backing plate 25, and then the saw blades to be leveled with different thicknesses can be guided, so as to feed the saw blades to be leveled with different thicknesses, improving the practicability.
[0038] Through the multiple rotating rollers 31 in the conveying component 3, it can not only be movably connected to the inner cavity of the mounting hole 12, but also provide an installation basis for the belt 32. Since one end of one of the rotating rollers 31 is rotatably connected with the driving motor 33, and one side surface of the driving motor 33 is connected to one side surface of the workbench 11, the workbench 11 can provide support for the driving motor 33, and then the output end of the driving motor 33 can drive the rotating roller 31 to rotate, so that the rotating roller 31 can drive the belt 32 to rotate. Since the fixing column 341 is fixedly connected to the top surface of the belt 32, and the first internal thread hole 342 is provided on the top surface of the fixing column 341, and the screw 343 is rotatably connected to the inner cavity of the first internal thread hole 342, the belt 32 can drive the fixing column 341 to rotate, and then the fixing column 341 can drive the screw 343 to rotate. Since the engaging column 344 is connected to the top surface of the fixing column 341, and the second internal thread hole 345 is provided on the top surface of the engaging column 344, and the inner cavity of the second internal thread hole 345 is rotatably connected to the outer side of the top end of the screw 343, the engaging column 344 can be rotatably connected to the outer side of the top end of the screw 343, and then the outer side of the engaging column 344 can be engaged with the central position on the central bottom surface of the saw blade to be leveled. Then through the screw 343, the screw 343 can drive the engaging column 344 to move, and then the engaging column 344 can drive the saw blade to be leveled to move, so as to feed the saw blade precision leveling machine. Then through the engaging column 344, the engaging columns 344 with different sizes can be adjusted, and then saw blades with different styles can be conveyed, so as to improve the diversity.
[0039] In summary, the device can not only convey the saw blade to be leveled, but also feed the saw blade precision leveling machine with different heights, and convey saw blades with different styles, so as to improve the safety and working efficiency.
[0040] Meanwhile, the content not described in detail in this specification belongs to the prior art well-known to those skilled in the art.
Claims
1. A feeding mechanism for a saw blade precision leveling machine, characterized in that: include: A conveying assembly (3), wherein the conveying assembly (3) is used to convey the saw blade to be leveled; an adjusting component (1), the adjusting component (1) being arranged on the outside of the conveying component (3), the adjusting component (1) being used to adjust the height of the conveying component (3); and A limiting component (2), the limiting component (2) being arranged on the top surface of the adjusting component (1) and located directly above the conveying component (3), the limiting component (2) being used to limit the saw blade to be leveled; The adjustment component (1) comprises a workbench (11), a mounting hole (12) is provided on one side of the center position of the top surface of the workbench (11), the inner cavity of the mounting hole (12) is connected to the conveying component (3), and adjustment parts (13) are provided at the four corners of the bottom surface of the workbench (11), and the four adjustment parts (13) are arranged in a rectangular row; The conveying assembly (3) comprises a rotating roller (31), wherein the rotating roller (31) is arranged in the inner cavity of the mounting hole (12), and a plurality of the rotating rollers (31) are provided, and the plurality of the rotating rollers (31) are arranged in a linear arrangement. A belt (32) is provided on the outer side of the plurality of rotating rollers (31), and a driving motor (33) is provided at one end of one of the rotating rollers (31), and a side surface of the driving motor (33) is connected to a side surface of the workbench (11), and a driving part (34) is provided at a central position on the top surface of the belt (32), and a plurality of the driving parts (34) are provided, and the plurality of the driving parts (34) are arranged in a linear array.
2. A feeding mechanism for a saw blade precision leveling machine according to claim 1, characterized in that: The adjusting portion (13) comprises an adjusting tube (131), the adjusting tube (131) being arranged on the bottom surface of the workbench (11), the inner cavity of the adjusting tube (131) being provided with a hollow tube (132), the bottom surface of the hollow tube (132) being provided with a bottom plate (134), the top surface of the bottom plate (134) being provided with an electric telescopic rod (133) at a central position, and the top surface of the output end of the electric telescopic rod (133) being connected to the central position of the top surface of the inner cavity of the adjusting tube (131).
3. The feeding mechanism for a saw blade precision leveling machine according to claim 2, characterized in that: The limiting assembly (2) comprises a support plate (21), wherein two support plates (21) are provided, and the two support plates (21) are provided on the top surface of the workbench (11) and located on both sides of the mounting hole (12). Limiting columns (22) are provided on the top surfaces of the two support plates (21), and placement holes (23) are provided on the top surfaces of the limiting columns (22). Guide grooves (24) are provided at the center of the surfaces of opposite sides of the two support plates (21).
4. The feeding mechanism for a saw blade precision leveling machine according to claim 3, characterized in that: A pad (25) is provided on the bottom surface of the inner cavity of the guide groove (24), and the pad (25) is used to adjust the thickness of the guide groove (24).
5. The feeding mechanism for a saw blade precision leveling machine according to claim 1, characterized in that: The driving part (34) includes a fixing column (341), and the fixing column (341) is arranged at a central position on the top surface of the belt (32). A first internal threaded hole (342) is provided at a central position on the top surface of the fixing column (341), and a screw rod (343) is rotatably connected to the inner cavity of the first internal threaded hole (342). A locking column (344) is provided on the top surface of the fixing column (341), and a second internal threaded hole (345) is provided on the top surface of the locking column (344), and the inner cavity of the second internal threaded hole (345) is rotatably connected to the outer side of the top end of the screw rod (343).