Net wire fiber drawing device for fishing net processing
By using water level and water temperature sensors to monitor the process during fishing net processing, combining liquid pumps and heat exchangers to control the water temperature, and utilizing agitation and filter treatment, the problems of uneven temperature and impurity contamination during the water bath drawing process were solved, thereby improving the quality and efficiency of fishing net fiber drawing.
Patent Information
- Application Number
- CN202510818378.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-18
- Publication Date
- 2025-10-21
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
In traditional fishing net processing, poor water flow and uneven temperature distribution during water bath wire drawing lead to unstable product performance. Impurities contaminate the water, affecting product quality and increasing maintenance costs.
Water level and water temperature sensors are used for monitoring, liquid pumps and heat exchangers are used to control water temperature, a stirring mechanism is used to ensure water temperature uniformity, and impurities are filtered through filter elements to form a closed-loop purification system.
It achieves precise regulation and uniform distribution of water temperature, improves the product quality stability of fishing net fiber drawing, reduces water pollution, and reduces equipment maintenance costs.
Smart Images

Figure CN120818908A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of fishing net processing, and in particular to a net fiber drawing device used for fishing net processing. Background Art
[0002] Fishing nets are indispensable tools in fishery production, and their quality and performance are directly related to the efficiency and safety of fishery production. During the fishing net processing, the drawing of the net fiber is a key step that determines the strength, flexibility, and durability of the fishing net. Traditional drawing processes mostly use dry drawing or simple water bath drawing methods, but these methods have certain limitations in drawing effect, product quality, and production efficiency.
[0003] In the traditional water bath drawing process, due to poor water flow or a single heating method, the water bath temperature distribution is often uneven. This temperature difference will directly affect the drawing effect of the mesh fiber, resulting in unstable product performance, such as inconsistent strength and poor flexibility. In addition, during the drawing process, impurities on the surface of the mesh fiber are easily shed into the water, causing water pollution. Long-term use of untreated water for drawing will not only affect product quality, but also increase equipment maintenance costs and even have a negative impact on the environment. Summary of the Invention
[0004] The purpose of the present invention is to solve the shortcomings of the prior art and to propose a net fiber drawing device for fishing net processing. When in use, the device can monitor the water level and water temperature to ensure that the water temperature and water level are in an appropriate state, and use a stirring mechanism to ensure the uniformity of the water temperature, and can filter the water to prevent excessive impurities in the water from affecting the quality of the product.
[0005] In order to achieve the above object, the present invention adopts the following technical solutions:
[0006] A net fiber drawing device for fishing net processing, comprising a shell, a water bath is provided at the upper end of the shell, the water bath is filled with water, a bracket is installed at the lower end of the shell, a water level sensor and a water temperature sensor are installed on the rear inner wall of the water bath, a display panel is installed on the front side of the shell, the display panel is electrically connected to the water level sensor and the water temperature sensor; a winding mechanism, the winding mechanism comprises a plurality of winding rollers, each of the winding rollers is penetrated by a rotating rod, and each of the rotating rods penetrates the winding roller, And it is fixedly connected, and the front and rear ends of each rotating rod are respectively rotatably connected to the water bath; a heat exchange mechanism, the heat exchange mechanism includes a mounting seat installed at the lower end of the shell, and a heat exchanger is installed at the lower end of the mounting seat, and the heat exchanger is used to cool and heat the water body to ensure the wire drawing effect; a liquid circulation mechanism, the liquid circulation mechanism cooperates with the heat exchange mechanism to achieve cooling and heating, and at the same time can filter impurities in the water body; a stirring mechanism, the stirring mechanism is used to stir the water body to make the water temperature more uniform.
[0007] Preferably, the liquid circulation mechanism includes a liquid pump installed on the left side of the shell, a filter box is fixedly connected to the left side of the shell, a filter element is installed inside the filter box, the liquid inlet end of the liquid pump is connected to a third connecting pipe, the liquid outlet end of the liquid pump is connected to a fourth connecting pipe, the other end of the third connecting pipe is connected to the inner bottom space of the filter box, the inner top space of the filter box is connected to the first connecting pipe, the other end of the first connecting pipe extends to the inside of the water bath, the other end of the fourth connecting pipe is connected to the liquid inlet end of the heat exchanger, the liquid outlet end of the heat exchanger is connected to the second connecting pipe, and the other end of the second connecting pipe extends to the inside of the water bath.
[0008] Preferably, a moving bar is provided inside the water bath, and the front and rear sides of the moving bar are respectively slidably connected to the front and rear inner walls of the water bath, the upper end of the moving bar is fixedly connected to a first hollow bar, and the inner top of the first hollow bar is provided with a plurality of drainage holes, and the lower end of the moving bar is fixedly connected to a second hollow bar, and the inner bottom of the second hollow bar is provided with a plurality of liquid inlet holes.
[0009] Preferably, the end of the first connecting pipe located inside the water bath is connected to the second hollow bar, and the end of the second connecting pipe located inside the water bath is connected to the first hollow bar.
[0010] Preferably, a mounting bracket is fixedly connected to the right side of the shell, a drive motor is installed on the mounting bracket, the output shaft of the drive motor is fixedly connected to the drive shaft, the other end of the drive shaft extends to the inside of the water bath and is fixedly connected to a reciprocating screw.
[0011] Preferably, the other end of the reciprocating screw is rotatably connected to the left inner wall of the water bath, and the reciprocating screw passes through the moving bar and is threadedly connected to the moving bar.
[0012] Preferably, the stirring mechanism comprises two rotating shafts rotatably connected to the left and right inner walls of the water bath respectively, and a plurality of stirring blades are mounted on the outer side of each rotating shaft.
[0013] Preferably, the right ends of the two rotating shafts extend to the outside and are fixedly connected to a second pulley, and the two second pulleys are connected by a second transmission belt. The right end of the rotating shaft located on the rear side and the drive shaft are both equipped with a first pulley, and the two first pulleys are connected by a first transmission belt.
[0014] Compared with the prior art, the present invention has the following beneficial effects:
[0015] 1. The water temperature is monitored in real time by a water temperature sensor. Combined with the intelligent control of the liquid pump and heat exchanger by the controller, the water temperature is precisely adjusted within the set range. The reciprocating screw drives the moving bar back and forth in the water bath, driving the first and second hollow bars to move synchronously. The treated water is evenly discharged through the drainage holes and fully mixed with the water, forming a dynamic cycle. This design effectively eliminates temperature gradients in the water, ensuring that the mesh fibers are evenly heat treated during the drawing process, significantly improving the stability of product quality.
[0016] 2. During the circulation process, the water first passes through the filter element in the filter box to remove impurities and ensure the cleanliness of the water. The filtered water then enters the heat exchanger for temperature adjustment, forming a closed-loop purification system, which reduces the impact of water pollution on wire drawing quality;
[0017] 3. The reciprocating movement of the moving strip promotes the flow of water, making the filtration operation more uniform and avoiding the problem of incomplete local filtration;
[0018] 4. The driving motor drives the stirring blades on the two rotating shafts to rotate through the belt transmission mechanism, stirring the water in multiple dimensions; the rotation direction of the stirring blades cooperates with the reciprocating movement direction of the moving strips, further promoting the uniform mixing of the water. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 This is a schematic structural diagram of a net fiber drawing device for fishing net processing proposed by the present invention;
[0020] Figure 2 for Figure 1 Schematic diagram of the right side perspective;
[0021] Figure 3 for Figure 2 Schematic diagram of the cross-section structure;
[0022] Figure 4 for Figure 3 A is an enlarged view;
[0023] Figure 5 for Figure 3 Front view diagram of .
[0024] In the figure: 1 housing, 2 bracket, 3 filter box, 4 liquid pump, 5 display panel, 6 first connecting pipe, 7 winding roller, 8 water bath, 9 rotating rod, 10 water level sensor, 11 water temperature sensor, 12 mounting frame, 13 driving motor, 14 first pulley, 15 first transmission belt, 16 second pulley, 17 second transmission belt, 18 rotating shaft, 19 second connecting pipe, 20 stirring blade, 21 reciprocating screw, 22 heat exchanger, 23 mounting seat, 24 moving bar, 25 first hollow bar, 26 drainage hole, 27 second hollow bar, 28 liquid inlet hole, 29 driving shaft, 30 third connecting pipe, 31 fourth connecting pipe. DETAILED DESCRIPTION
[0025] The technical solutions in the embodiments of the present invention will be described clearly and completely below with reference to the accompanying drawings in the embodiments of the present invention.
[0026] It should be noted that the terms used herein are only for describing specific embodiments and are not intended to limit the exemplary embodiments according to the present application. As used herein, unless the context clearly indicates otherwise, the singular form is also intended to include the plural form. In addition, it should be understood that when the terms "comprise" and / or "include" are used in this specification, they indicate the presence of features, steps, operations, devices, components and / or combinations thereof.
[0027] Reference Figure 1-Figure 5 , a net fiber drawing device for fishing net processing, comprising a shell 1, a water bath 8 is provided at the upper end of the shell 1, the water bath 8 is filled with water, a bracket 2 is installed at the lower end of the shell 1, a water level sensor 10 and a water temperature sensor 11 are installed on the rear inner wall of the water bath 8, a display panel 5 is installed on the front side of the shell 1, the display panel 5 is electrically connected to the water level sensor 10 and the water temperature sensor 11, the water level and water temperature can be displayed through the display panel 5, and a controller as shown in the figure is also electrically connected to the water temperature sensor 11. When the water temperature is lower than the set temperature, such as 50°C, the liquid pump 4 and the heat exchanger 22 are started for a period of time to circulate the water to increase the temperature. When the water temperature is higher than the set temperature, such as 80°C, the liquid pump 4 and the heat exchanger 22 are started for a period of time to circulate the water to cool down.
[0028] As an embodiment of the present invention, it also includes a winding mechanism, which includes a plurality of winding rollers 7, each of which is penetrated by a rotating rod 9, each rotating rod 9 penetrates the winding roller 7 and is fixedly connected, and the front and rear ends of each rotating rod 9 are respectively rotatably connected to the water bath 8;
[0029] As an embodiment of the present invention, a heat exchange mechanism is further included. The heat exchange mechanism includes a mounting base 23 mounted at the lower end of the shell 1. A heat exchanger 22 is mounted at the lower end of the mounting base 23. The heat exchanger 22 is used to cool and heat the water to ensure the wire drawing effect.
[0030] As an embodiment of the present invention, it also includes a liquid circulation mechanism, which cooperates with the heat exchange mechanism to achieve cooling and heating, and can filter impurities in the water body at the same time. The liquid circulation mechanism includes a liquid pump 4 installed on the left side of the shell 1, and the left side of the shell 1 is fixedly connected to the filter box 3. A filter element is installed inside the filter box 3. The liquid inlet end of the liquid pump 4 is connected to the third connecting pipe 30, and the liquid outlet end of the liquid pump 4 is connected to the fourth connecting pipe 31. The other end of the third connecting pipe 30 is connected to the inner bottom space of the filter box 3, and the inner top space of the filter box 3 is connected to the first connecting pipe 6. The other end of the first connecting pipe 6 extends to the inside of the water bath 8. The other end of the fourth connecting pipe 31 is connected to the liquid inlet end of the heat exchanger 22, and the liquid outlet end of the heat exchanger 22 is connected to the second connecting pipe 19. The other end of the second connecting pipe 19 extends to the inside of the water bath 8;
[0031] As an embodiment of the present invention, a movable bar 24 is provided inside the water bath 8, and the front and rear sides of the movable bar 24 are respectively slidably connected to the front and rear inner walls of the water bath 8. The upper end of the movable bar 24 is fixedly connected to a first hollow bar 25, and a plurality of drainage holes 26 are provided on the inner top of the first hollow bar 25. The lower end of the movable bar 24 is fixedly connected to a second hollow bar 27, and a plurality of liquid inlet holes 28 are provided on the inner bottom of the second hollow bar 27. One end of the first connecting pipe 6 located inside the water bath 8 is connected to the second hollow bar 27, and one end of the second connecting pipe 19 located inside the water bath 8 is connected to the first hollow bar 25;
[0032] As an embodiment of the present invention, the right side of the housing 1 is fixedly connected to a mounting bracket 12, and a drive motor 13 is mounted on the mounting bracket 12. The output shaft of the drive motor 13 is fixedly connected to a drive shaft 29. The other end of the drive shaft 29 extends into the interior of the water bath 8 and is fixedly connected to a reciprocating screw 21. The other end of the reciprocating screw 21 is rotatably connected to the left inner wall of the water bath 8. The reciprocating screw 21 passes through the moving bar 24 and is threadedly connected to the moving bar 24.
[0033] As an embodiment of the present invention, it also includes a stirring mechanism, which is used to stir the water body to make the water temperature more uniform. The stirring mechanism has two rotating shafts 18 that are rotatably connected to the inner walls of the left and right sides of the water bath 8 respectively. A plurality of stirring blades 20 are installed on the outside of each rotating shaft 18. The right ends of the two rotating shafts 18 extend to the outside and are fixedly connected to a second pulley 16. The two second pulleys 16 are connected by a second transmission belt 17. The right end of the rotating shaft 18 located at the rear side and the drive shaft 29 are both installed with a first pulley 14. The two first pulleys 14 are connected by a first transmission belt 15.
[0034] When used in the present invention, first fill the water bath 8 opened at the upper end of the housing 1 with an appropriate amount of water to ensure that the water level reaches a preset height. The water level status is monitored in real time by the water level sensor 10 and displayed on the display panel 5. The target temperature range (e.g., 50°C-80°C) of the water in the water bath 8 is set through the display panel 5 or the controller. The water temperature sensor 11 monitors the water temperature in real time and feeds the data back to the controller. The drawn fiber is then passed through multiple winding rollers 7 in sequence and then connected to the subsequent traction end.
[0035] When the water temperature is lower than the set temperature limit (e.g. 50°C), the controller starts the liquid pump 4 and the heat exchanger 22. The liquid pump 4 draws water from the bottom of the filter box 3 through the third connecting pipe 30, and after being filtered by the filter element, it is transported to the heat exchanger 22 through the fourth connecting pipe 31 for temperature increase.
[0036] The heated water is transported to the first hollow bar 25 inside the water bath 8 through the second connecting pipe 19, and then evenly discharged through the drainage hole 26 to mix with the water to achieve overall temperature increase. When the water temperature is higher than the set temperature upper limit (such as 80°C), the heat exchanger 22 switches to the cooling mode to cool the water. The process is similar to the heating process.
[0037] During the heating and cooling process, the drive motor 13 is started, and the reciprocating screw 21 is driven to rotate through the drive shaft 29. The reciprocating screw 21 is threadedly connected to the moving bar 24, driving the moving bar 24 to move back and forth in the water bath 8. The moving bar 24 drives the first hollow bar 25 and the second hollow bar 27 to move synchronously. The first hollow bar 25 discharges the treated water through the drainage hole 26, and the second hollow bar 27 sucks the water to be treated through the liquid inlet hole 28, forming a dynamic cycle, promoting uniform distribution of water temperature, and making the filtration operation more uniform, thereby ensuring the cleanliness of the water.
[0038] When the drive motor 13 is started, it will also drive the rotating shaft 18 located on the rear side to rotate through the first transmission belt 15. The second pulley 16 on the rotating shaft 18 drives the other rotating shaft 18 to rotate synchronously through the second transmission belt 17. The stirring blades 20 on the two rotating shafts 18 rotate in the water bath 8 to stir the water, promote water mixing, further improve temperature uniformity, and ensure that the mesh fibers are uniformly heat treated during the drawing process.
[0039] It should be noted that the terms "first", "second", etc. in the specification and claims of the present application and the above-mentioned drawings are used to distinguish similar objects and are not necessarily used to describe a specific order or sequence. It should be understood that the data used in this way can be interchangeable where appropriate, so that the embodiments of the present application described herein can, for example, be implemented in an order other than those illustrated or described herein. In addition, the terms "including" and "having" and any variations thereof are intended to cover non-exclusive inclusions, for example, a process, method, system, product or device comprising a series of steps or units is not necessarily limited to those steps or units clearly listed, but may include other steps or units that are not clearly listed or inherent to these processes, methods, products or devices.
[0040] The above description is only a preferred specific embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any technician familiar with the technical field, within the technical scope disclosed by the present invention, who makes equivalent replacements or changes based on the technical solution and inventive concept of the present invention, should be covered by the scope of protection of the present invention.
Claims
1. A wire drawing device for fishing net processing, characterized in that: include: A housing (1), wherein a water bath (8) is provided at the upper end of the housing (1), the water bath (8) being filled with water, a bracket (2) being installed at the lower end of the housing (1), a water level sensor (10) and a water temperature sensor (11) being installed on the rear inner wall of the water bath (8), and a display panel (5) being installed at the front side of the housing (1), the display panel (5) being electrically connected to the water level sensor (10) and the water temperature sensor (11); A wire winding mechanism, the wire winding mechanism comprising a plurality of wire winding rollers (7), each of the wire winding rollers (7) being provided with a rotating rod (9), each of the rotating rods (9) passing through the wire winding roller (7) and being fixedly connected thereto, and the front and rear ends of each rotating rod (9) being respectively rotatably connected to a water bath (8); A heat exchange mechanism, the heat exchange mechanism comprising a mounting seat (23) mounted on the lower end of the shell (1), a heat exchanger (22) mounted on the lower end of the mounting seat (23), the heat exchanger (22) being used to cool and heat the water body to ensure a wire drawing effect; A liquid circulation mechanism, which cooperates with the heat exchange mechanism to achieve cooling and heating, and can also filter impurities in the water; The stirring mechanism is used to stir the water body to make the water temperature more uniform.
2. A net fiber drawing device for fishing net processing according to claim 1, characterized in that: The liquid circulation mechanism comprises a liquid pump (4) mounted on the left side of the housing (1); a filter box (3) is fixedly connected to the left side of the housing (1); a filter element is mounted inside the filter box (3); a liquid inlet end of the liquid pump (4) is connected to a third connecting pipe (30); a liquid outlet end of the liquid pump (4) is connected to a fourth connecting pipe (31); the other end of the third connecting pipe (30) is connected to the inner bottom space of the filter box (3); the inner top space of the filter box (3) is connected to a first connecting pipe (6); the other end of the first connecting pipe (6) extends to the inside of the water bath (8); the other end of the fourth connecting pipe (31) is connected to the liquid inlet end of the heat exchanger (22); the liquid outlet end of the heat exchanger (22) is connected to a second connecting pipe (19); the other end of the second connecting pipe (19) extends to the inside of the water bath (8); 3. A wire drawing device for fishing net processing according to claim 2, characterized in that: A moving bar (24) is provided inside the water bath (8), and the front and rear sides of the moving bar (24) are respectively slidably connected to the front and rear inner walls of the water bath (8), and the upper end of the moving bar (24) is fixedly connected to a first hollow bar (25), and the inner top of the first hollow bar (25) is provided with a plurality of drainage holes (26), and the lower end of the moving bar (24) is fixedly connected to a second hollow bar (27), and the inner bottom of the second hollow bar (27) is provided with a plurality of liquid inlet holes (28).
4. A net fiber drawing device for fishing net processing according to claim 3, characterized in that: One end of the first connecting pipe (6) located inside the water bath (8) is connected to the second hollow bar (27), and one end of the second connecting pipe (19) located inside the water bath (8) is connected to the first hollow bar (25).
5. The net fiber drawing device for fishing net processing according to claim 3, characterized in that: The right side of the housing (1) is fixedly connected to a mounting frame (12), a driving motor (13) is mounted on the mounting frame (12), an output shaft of the driving motor (13) is fixedly connected to a driving shaft (29), the other end of the driving shaft (29) extends into the interior of the water bath (8) and is fixedly connected to a reciprocating screw rod (21).
6. The net fiber drawing device for fishing net processing according to claim 5, characterized in that: The other end of the reciprocating screw rod (21) is rotatably connected to the left inner wall of the water bath (8), and the reciprocating screw rod (21) passes through the moving bar (24) and is threadedly connected to the moving bar (24).
7. The net fiber drawing device for fishing net processing according to claim 5, characterized in that: The stirring mechanism comprises two rotating shafts (18) which are rotatably connected to the inner walls of the left and right sides of the water bath (8), respectively. A plurality of stirring blades (20) are installed on the outer side of each rotating shaft (18).
8. The net fiber drawing device for fishing net processing according to claim 7, characterized in that: The right ends of the two rotating shafts (18) are extended to the outside and are fixedly connected with a second pulley (16), and the two second pulleys (16) are connected by a second transmission belt (17). The right end of the rotating shaft (18) located at the rear side and the driving shaft (29) are both installed with a first pulley (14), and the two first pulleys (14) are connected by a first transmission belt (15).