Carbon fiber fishing rod polishing device
By designing a carbon fiber fishing rod grinding device including mobile components and stationary components, and using the drive components to realize automatic cyclic grinding, the problem of manual grinding and difficult to control the grinding angle in the prior art is solved, and efficient and stable fishing rod grinding is achieved.
Patent Information
- Application Number
- CN202421234530.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-05-31
- Publication Date
- 2025-07-01
- Estimated Expiration
- 2034-05-31
AI Technical Summary
The existing carbon fiber fishing rod grinding technology is mostly manual or machine polishing. Manual polishing is laborious and laborious, and machine polishing is difficult to control the polishing angle, resulting in low efficiency.
A carbon fiber fishing rod grinding device is designed, including mobile components and stationary components. The driving components realize intermittent movement of the mobile components, and automatically reciprocate the grinding angle to ensure the stability of the grinding angle.
It realizes efficient grinding of conical fishing rods, increases processing efficiency, and reduces power consumption when opening.
Smart Images

Figure CN223044220U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of fishing auxiliary equipment, and particularly relates to a carbon fiber fishing rod grinding device. Background Art
[0002] A fishing rod is a fishing tool with a long and slender multi-section rod shape. It usually has a handle that gradually tapers and sharpens from the handle to the rear end. A fishing line is used to connect a fishhook with bait for use. Carbon fiber refers to high-strength and high-modulus fibers with a carbon content of more than 90%. Using acrylic fiber and viscose fiber as raw materials, it is formed by high-temperature oxidation and carbonization. Currently, most carbon fiber grinding is done manually, which is time-consuming and laborious, or machine grinding is used. However, it is difficult to control the grinding angle during machine grinding. Therefore, it is very important to obtain a carbon fiber fishing rod grinding device that overcomes the above defects. Content of the Utility Model
[0003] To solve the above-mentioned at least one technical problem, the utility model provides a carbon fiber fishing rod grinding device, which includes a moving component and a stationary component. The moving component includes a first bracket and a first roller and a second roller rotatably arranged on the first bracket. The stationary component includes a second bracket and a grinding roller rotatably arranged on the second bracket. The first bracket and the second bracket can be obliquely arranged, that is, there can be an angle between them, such as 0 - 90 degrees.
[0004] The first roller and the second roller are obliquely arranged to form a placement position for the carbon fiber fishing rod on the first roller and the second roller. A grinding position for the carbon fiber fishing rod is formed between the first roller, the second roller and the grinding roller. The device further includes a driving component, which drives the moving component to move intermittently so that the moving component approaches the stationary component to achieve grinding, and the driving component drives the moving component away from the stationary component to make the ground carbon fiber fishing rod fall off.
[0005] Through the above technical solution, the utility model can achieve the grinding of conical fishing rods and realize automatic cyclic grinding by the machine, thereby increasing the processing efficiency.
[0006] The driving assembly includes a third bracket and a first driving motor fixed to the back of the third bracket. The output shaft of the first driving motor passes through the third bracket and is fixedly connected to a driving disc. An eccentric driving column is provided on the driving disc. A first support column and a second support column are fixed on the third bracket. A moving rod is further included. A matching block is fixed on the moving rod. The matching block is located between the first support column and the second support column. Both ends of the moving rod are placed on the supporting surfaces of the first support column and the second support column. The driving column is located between the first support column and the second support column. An arc track is provided on the matching block. The radian of the circle with the center of the driving disc as the center and the distance between the driving column and the center as the radius is the same as the radian of the arc track. Vertical tracks extend upward and downward from the arc track respectively. The moving rod is fixedly connected to the first bracket.
[0007] Through the above technical solution, the driving disc is driven by the first driving motor to rotate, so that the driving column rotates. The driving column moves on the arc track and the vertical track, so as to drive the movement of the end of the moving rod, and further control the movement of the moving assembly, and the distance between the moving assembly and the stationary assembly can be controlled.
[0008] A material receiving plate is fixed on the first bracket, and at least one material receiving groove is provided on the material receiving plate.
[0009] Through the above technical solution, the material receiving groove can be used to place the fishing rod, so that the worker can quickly pick up the material.
[0010] Preferably, a second driving motor is fixed outside the second bracket. The output shaft of the second driving motor passes through the second bracket and is fixed to the grinding roller.
[0011] Preferably, a third driving motor is fixed outside the first bracket. The output shaft of the third driving motor passes through the first bracket and is fixedly connected to the first roller. Gears are fixed outside the rotating shafts of the first roller and the second roller, and the two gears are driven by a belt.
[0012] Preferably, a blanking assembly is further included. The blanking assembly includes two cylinders fixed on two opposite inner walls of the first bracket. The output ends of the cylinders are placed between the first roller and the second roller to push out the polished fishing rod.
[0013] Compared with the prior art, the advantages of the present utility model are as follows: The structure of the present utility model is simple, the grinding of non-cylindrical conical fishing rods can be realized, and the reciprocating grinding can be realized, that is, the first driving motor can keep running, reducing the starting energy consumption. Description of the Drawings
[0014] Figure 1 Schematic cross-section of the present utility model Figure 1 ;
[0015] Figure 2 is a schematic cross-section of the present utility model Figure 2 ;
[0016] Figure 3 is a top view of the present utility model;
[0017] Reference numerals:
[0018] 101 First bracket; 1011 First roller; 1012 Second roller; 1013 Placement position; 1014 Grinding position; 1015 Material supporting plate; 1016 Material supporting groove; 1017 Cylinder;
[0019] 102 Second bracket; 1021 Grinding roller; 1022 Second driving motor; 1023 Third driving motor;
[0020] 103 Third bracket; 1031 First driving motor; 1032 Driving disc; 1033 First support column; 1034 Second support column; 1035 Moving rod; 1036 Fitting block; 1037 Vertical track; 1038 Arc track; 1039 Driving column. Specific embodiments
[0021] In order to enable those skilled in the art to better understand the present utility model and thus more clearly define the scope of protection required by the present utility model, the present utility model will be described in detail below with reference to certain specific embodiments of the present utility model. It should be noted that the following are only some specific embodiments of the concept of the present utility model, and only a part of the embodiments of the present utility model. The specific and direct descriptions of the relevant structures are only for the convenience of understanding the present utility model, and each specific feature does not of course and directly limit the scope of implementation of the present utility model.
[0022] Referring to the attached drawings, the present utility model adopts the following technical solutions. A carbon fiber fishing rod grinding device includes a moving component and a stationary component. The moving component includes a first bracket 101 and a first roller 1011 and a second roller 1012 rotatably arranged on the first bracket 101. The stationary component includes a second bracket 102 and a grinding roller 1021 rotatably arranged on the second bracket 102. The first bracket 101 and the second bracket 102 can be obliquely arranged, that is, there can be an angle between the two, such as 0 - 90 degrees.
[0023] The first roller 1011 and the second roller 1012 are obliquely arranged so that a placement position 1013 for a carbon fiber fishing rod is formed on the first roller 1011 and the second roller 1012. A grinding position 1014 for the carbon fiber fishing rod is formed between the first roller 1011, the second roller 1012 and the grinding roller 1021. It further includes a driving component, and the driving component drives the moving component to move intermittently so that the moving component approaches the stationary component to achieve grinding, and the driving component drives the moving component away from the stationary component so that the ground carbon fiber fishing rod falls off.
[0024] Through the above technical solution, the utility model can achieve the grinding of a conical fishing rod, and realize the automatic cyclic grinding of the machine, increasing the processing efficiency.
[0025] The driving component includes a third support 103 and a first driving motor 1031 fixed to the back of the third support 103. The output shaft of the first driving motor 1031 passes through the third support 103 and is fixedly connected to a driving disk 1032. An eccentric driving column 1039 is arranged on the driving disk 1032. A first support column 1033 and a second support column 1034 are fixed on the third support 103. It further includes a moving rod 1035. A matching block 1036 is fixed on the moving rod 1035. The matching block 1036 is located between the first support column 1033 and the second support column 1034. Both ends of the moving rod 1035 are placed on the supporting surfaces of the first support column 1033 and the second support column 1034. The driving column 1039 is located between the first support column 1033 and the second support column 1034. An arc track 1038 is arranged on the matching block 1036. The radian of the circle with the center of the driving disk 1032 as the center and the driving column 1039 as the radius is the same as the radian of the arc track 1038. Vertical tracks 1037 extend respectively above and below the arc track 1038. The moving rod 1035 is fixedly connected to the first support 101.
[0026] Through the above technical solution, the driving disk 1032 is driven by the first driving motor 1031 to rotate, so that the driving column 1039 rotates. The driving column 1039 moves on the arc track 1038 and the vertical tracks 1037, so as to drive the movement of the end of the moving rod 1035, and further control the movement of the moving component, and the distance between the moving component and the stationary component can be controlled.
[0027] A material receiving plate 1015 is fixed on the first support 101, and at least one material receiving groove 1016 is arranged on the material receiving plate 1015.
[0028] Through the above technical solution, the material receiving groove 1016 can be used to place the fishing rod, so that the operator can quickly pick up and load the material.
[0029] Preferably, a second driving motor 1022 is externally fixed to the second bracket 102, and an output shaft of the second driving motor 1022 passes through the second bracket 102 and is fixed to the grinding roller 1021.
[0030] Preferably, a third driving motor 1023 is externally fixed to the first bracket 101, an output shaft of the third driving motor 1023 passes through the first bracket 101 and is fixedly connected to the first roller 1011, and gears are fixed to the outer shafts of the first roller 1011 and the second roller 1012, and the two gears are driven by a belt.
[0031] Preferably, a blanking assembly is further included, and the blanking assembly includes two cylinders 1017 fixedly arranged on two opposite inner walls of the first bracket 101, and an output end of the cylinder 1017 is placed between the first roller 1011 and the second roller 1012 to push out the polished fishing rod.
[0032] When the utility model is put into use, the third bracket 103 and the second bracket 102 are fixed, for example, fixed on the ground.
[0033] Compared with the prior art, the advantages of the utility model are as follows: the structure of the utility model is simple, the grinding of non-cylindrical conical fishing rods can be realized, and the reciprocating grinding can be realized, that is, the first driving motor 1031 can keep running, reducing the starting energy consumption.
[0034] In the description of the present utility model, the terms such as "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc., which indicate directions or position relationships, are based on the directions or position relationships shown in the drawings. This is only for the convenience of description, rather than indicating or implying that the device or element must have a specific orientation, be constructed and operated in a specific orientation. Therefore, it cannot be understood as a limitation to the present utility model. In addition, the terms "first", "second", "third" are only used for descriptive purposes and cannot be understood as indicating or implying relative importance.
[0035] So far, the technical solutions of the present utility model have been described in conjunction with the preferred embodiments shown in the drawings. However, it is easy for those skilled in the art to understand that the protection scope of the present utility model is obviously not limited to these specific embodiments. Without departing from the principle of the present utility model, those skilled in the art can make equivalent changes or substitutions to the relevant technical features, and the technical solutions after these changes or substitutions will fall within the protection scope of the present utility model.
Claims
1. A carbon fiber fishing rod polishing device, characterized in that: It comprises a moving component and a stationary component, wherein the moving component comprises a first bracket (101) and a first roller (1011) and a second roller (1012) rotatably arranged on the first bracket (101), and the stationary component comprises a second bracket (102) and a grinding roller (1021) rotatably arranged on the second bracket (102); The first roller (1011) and the second roller (1012) are arranged obliquely so that a placement position (1013) for the carbon fiber fishing rod is formed on the first roller (1011) and the second roller (1012), and a grinding position (1014) for the carbon fiber fishing rod is formed between the first roller (1011), the second roller (1012) and the grinding roller (1021). The invention also includes a driving component, which drives the moving component to intermittently move so that the moving component approaches the stationary component to achieve grinding, and the driving component drives the moving component away from the stationary component to make the polished carbon fiber fishing rod fall.
2. The carbon fiber fishing rod polishing device according to claim 1, characterized in that: The driving assembly comprises a third bracket (103), a first driving motor (1031) fixed to the back of the third bracket (103), an output shaft of the first driving motor (1031) passing through the third bracket (103) and then fixedly connected to a driving disk (1032), a driving column (1039) being eccentrically arranged on the driving disk (1032), a first supporting column (1033) and a second supporting column (1034) being fixed to the third bracket (103), and further comprises a moving rod (1035), a matching block (1036) being fixed to the moving rod (1035), and the matching block (1036) being located between the first supporting column (1033) and the second supporting column (1034). 034), both ends of the moving rod (1035) are placed on the supporting surfaces of the first supporting column (1033) and the second supporting column (1034), the driving column (1039) is placed between the first supporting column (1033) and the second supporting column (1034), the matching block (1036) is provided with an arc track (1038), the arc of a circle with the center of the driving disk (1032) as the center and the driving column (1039) and the center as the radius is consistent with the arc of the arc track (1038), the arc track (1038) is respectively extended with vertical tracks (1037) above and below, and the moving rod (1035) is fixedly connected to the first bracket (101).
3. The carbon fiber fishing rod polishing device according to claim 1, characterized in that: A material receiving plate (1015) is fixed on the first bracket (101), and at least one material receiving groove (1016) is provided on the material receiving plate (1015).
4. The carbon fiber fishing rod polishing device according to claim 1, characterized in that: A second drive motor (1022) is fixed outside the second bracket (102), and an output shaft of the second drive motor (1022) passes through the second bracket (102) and is fixed to the grinding roller (1021).
5. The carbon fiber fishing rod polishing device according to claim 1, characterized in that: A third drive motor (1023) is fixed outside the first bracket (101), and an output shaft of the third drive motor (1023) passes through the first bracket (101) and is fixedly connected to the first roller (1011), and gears are fixed outside the rotating shafts of the first roller (1011) and the second roller (1012), and the two gears are driven by a belt.
6. The carbon fiber fishing rod polishing device according to claim 1, characterized in that: It also includes a material dropping assembly, which includes two cylinders (1017) fixed on two opposite inner walls of the first bracket (101), and the output end of the cylinder (1017) is placed between the first roller (1011) and the second roller (1012) to push out the polished fishing rod.