CN117265677B - Processing equipment of fishing net line - Google Patents

Processing equipment of fishing net line Download PDF

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Publication number
CN117265677B
CN117265677B CN202311548834.1A CN202311548834A CN117265677B CN 117265677 B CN117265677 B CN 117265677B CN 202311548834 A CN202311548834 A CN 202311548834A CN 117265677 B CN117265677 B CN 117265677B
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CN
China
Prior art keywords
water
cooling
oiling
gear
fishing net
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CN202311548834.1A
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CN117265677A (en
Inventor
陈康中
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Lianyungang Fuxingkang Fishing Gear Co ltd
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Lianyungang Fuxingkang Fishing Gear Co ltd
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Priority to CN202311548834.1A priority Critical patent/CN117265677B/en
Publication of CN117265677A publication Critical patent/CN117265677A/en
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    • DTEXTILES; PAPER
    • D01NATURAL OR MAN-MADE THREADS OR FIBRES; SPINNING
    • D01DMECHANICAL METHODS OR APPARATUS IN THE MANUFACTURE OF ARTIFICIAL FILAMENTS, THREADS, FIBRES, BRISTLES OR RIBBONS
    • D01D5/00Formation of filaments, threads, or the like
    • D01D5/08Melt spinning methods
    • D01D5/088Cooling filaments, threads or the like, leaving the spinnerettes
    • DTEXTILES; PAPER
    • D01NATURAL OR MAN-MADE THREADS OR FIBRES; SPINNING
    • D01DMECHANICAL METHODS OR APPARATUS IN THE MANUFACTURE OF ARTIFICIAL FILAMENTS, THREADS, FIBRES, BRISTLES OR RIBBONS
    • D01D10/00Physical treatment of artificial filaments or the like during manufacture, i.e. during a continuous production process before the filaments have been collected
    • D01D10/06Washing or drying
    • DTEXTILES; PAPER
    • D01NATURAL OR MAN-MADE THREADS OR FIBRES; SPINNING
    • D01DMECHANICAL METHODS OR APPARATUS IN THE MANUFACTURE OF ARTIFICIAL FILAMENTS, THREADS, FIBRES, BRISTLES OR RIBBONS
    • D01D5/00Formation of filaments, threads, or the like
    • D01D5/08Melt spinning methods
    • D01D5/096Humidity control, or oiling, of filaments, threads or the like, leaving the spinnerettes

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Textile Engineering (AREA)
  • Mechanical Means For Catching Fish (AREA)
  • Removal Of Floating Material (AREA)

Abstract

The invention relates to the technical field of production of fishing net wires, and discloses processing equipment of the fishing net wires, which comprises a shaping gear on shaping equipment for processing the fishing net wires, a driving motor on the gear, a water cooling device, a water removing device and an oiling device which are linked with the shaping gear. According to the invention, the water cooling device is arranged before oiling after shaping the fishing net wire, so that the cooling of the fishing net wire is accelerated, the cooling of the fishing net wire is completed before the fishing net wire is subjected to the stretching force, the condition that the fishing net wire is uneven in size due to the fact that nylon with higher temperature deforms in advance under the action of the stretching force is prevented, the cooling structure is arranged above the water cooling groove, the phenomenon that the water cooling effect is poor due to the fact that excessive heat is absorbed by water in the water cooling groove is prevented, warm water in the water cooling groove is carried away by the Shui Shao contained in the cooling device, heat is exchanged with cold air, and a plurality of water containing spoons are continuously carried away from the warm water in the rotating process of the cooling device, so that the effect of water cooling and cooling are finally achieved.

Description

Processing equipment of fishing net line
Technical Field
The invention relates to the technical field of production of fishing net wires, in particular to processing equipment of the fishing net wires.
Background
The fishing net is a net wire for fishing, 99% of the net wire is made of synthetic fibers, and is mainly made of monofilaments, multifilaments or composite monofilaments of nylon or modified nylon, and fibers such as polyester, polyvinylidene chloride and the like can be used.
In the existing production process of the fishing net wires, the nylon fishing net wires need to be shaped and wound after extrusion, then twisting or braiding is carried out by shaping equipment to manufacture the fishing net, the nylon net wires need to be shaped secondarily during transmission due to high temperature during extrusion, the existing technology is to directly wind the nylon wires after extrusion, and the situation that the nylon wires are broken when the later fishing net is braided can be caused.
To the problem of above-mentioned design equipment, current patent CN113584618B is through setting up the equipment of double round meshing suppression nylon wire, and increase the brush tung oil thereafter, thereby solve above-mentioned problem, but the extruder of this patent is after extruding nylon material, through the design device after the design, directly brush the oil to the nylon wire, finally through the coiling mechanism rolling, the nylon wire after the design is direct fat liquoring, the coiling mechanism has a pulling force to the nylon wire this moment, brush oil structure reciprocating motion on the fat liquoring device also can have a frictional force to the nylon wire, be equivalent to also having produced a pulling force to the nylon wire, and there is not cooling mechanism between design and fat liquoring, can only rely on tung oil and natural wind to realize the cooling, natural wind cooling effect is not good, the nylon wire temperature is not very fast fallen down, consequently, the nylon wire will receive the pulling force before the fat liquoring, the nylon wire that the temperature is high just stretches before not contracting, make the nylon wire after the design is direct oiling, the nylon wire after the design is stretched, cause the thin wire diameter, cause its thick uneven size of fishing, the effect.
Disclosure of Invention
Aiming at the defects of the prior nylon fishing net wire shaping equipment in the use process, the invention provides the fishing net wire processing equipment, which has the advantages of cooling the fishing net wire, stretching the fishing net wire and not reducing the uniformity of the fishing net wire, and solves the problems that the size and the quality of the fishing net wire are influenced due to uncooled advanced stretching in the prior art.
The invention provides the following technical scheme: the utility model provides a processing equipment of fishing net twine, includes the base, install shaping gear I on the base, shaping gear I's top is provided with shaping gear II, install lift cylinder, its characterized in that in shaping gear II's the pivot: the middle part of the shaping gear I is provided with a rotating shaft, the rotating shaft is fixedly connected with an output shaft of a driving motor, the driving motor provides power for the rotation of the shaping gear I, and the shaping gear I is meshed with the shaping gear II;
the water cooling device is arranged on the outgoing line side of the shaping gear I and the outgoing line side of the shaping gear II and is mainly used for timely cooling the shaped fishing net wires through cold water;
the water removing device is arranged on the outgoing line side of the water cooling device and is mainly used for removing water stains on the nylon wire after water cooling, so that the water stains are prevented from being diluted when tung oil is brushed at the back, and the oil brushing effect is prevented from being influenced;
the device at the outgoing line side of the water removing device is provided with an oiling device, and the oiling device is mainly used for adding an anti-corrosion and anti-aging layer to the outer surface layer of the fishing net wire.
Preferably, the water cooling device comprises a water cooling tank and a cooling structure, the cooling structure is located above the water cooling tank and stretches into the water cooling tank, liquid is filled in the water cooling tank, the liquid is water or cooling liquid, a water cooling driving shaft is fixedly installed in the middle of the cooling structure, the water cooling driving shaft is movably installed on a support wall on a base, a cooling driving gear is fixedly installed on the water cooling driving shaft, a transition gear is meshed above the cooling driving gear, a rotating shaft is installed in the middle of the transition gear, the rotating shaft is movably installed on the support wall on the base, guide rollers I are fixedly installed in the water cooling tank, two guide rollers I are arranged in the two guide rollers I, the guide rollers I are located on two sides of the bottom of the water cooling tank respectively, a rotating sleeve capable of rotating circumferentially is installed on the guide rollers I, a belt I is linked in the rotating shaft of the transition gear, and the other end of the belt I is linked to the rotating shaft of the shaping gear I.
Preferably, the cooling structure comprises a water-cooling shaft sleeve, water-cooling side plates are arranged on two sides of the water-cooling shaft sleeve, a waterway channel is formed between the water-cooling shaft sleeve and the two water-cooling side plates, a water containing spoon is arranged on the outer side of the water-cooling side plates, a water containing cavity is formed in the water containing spoon, the water containing cavity is mainly used for containing spoon water, the opening direction of the water containing cavity is consistent with the rotation direction of the water-cooling shaft sleeve, a drainage plate is arranged at the bottom of one side, close to the water containing cavity, of the water containing cavity, four drainage plates are uniformly distributed along the circumferential direction of the circle center of the water-cooling side plates, the drainage plates are not contacted with the bottom of the water-cooling shaft sleeve, and the drainage plates are mainly used for guiding water in the water containing cavity to flow into the waterway channel.
Preferably, the water removal device comprises a water removal driving shaft, a belt II is arranged on the water removal driving shaft, the other end of the belt II is linked to the water cooling driving shaft, a water removal sponge is fixedly arranged on the outer ring surface of the water removal driving shaft, an annular water removal ring cavity is formed in the middle of the water removal sponge, nylon wires with water can be used for removing water in the water removal ring cavity by the sponge on the side edge, a guide roller II and a guide roller III are arranged above the water cooling groove and in the space at the bottom of the water removal sponge, the guide roller II and the guide roller III are fixedly arranged on the side wall of the base, a rotatable outer sleeve is arranged on the guide roller II and the guide roller III, and the guide roller II and the guide roller III are mainly used for guiding nylon wires in the water cooling groove.
Preferably, the center of the water-cooling driving shaft is taken as the center, the outermost point of the water containing spoon is taken as the radius length, and the circular area range is partially overlapped with the area range of the water-removing sponge.
Preferably, the middle part fixed mounting of oiling station has the oiling drive shaft, on the lateral wall of oiling drive shaft installation base, the cover is equipped with belt III in the oiling drive shaft, the oiling drive shaft passes through the linkage between belt III and the dewatering drive shaft, oiling station includes fixed curb plate, fixed curb plate is equipped with two, two fixed mounting has the oiling roller between the fixed curb plate, the oiling roller is the heliciform, the oiling roller is close to the side fixed mounting of nylon wire and has the oiling sponge, form the line track that is used for the nylon wire winding between the oiling sponge of oiling roller adjacent both sides, the nylon wire can be wound on the line track, and the orientation of winding can be when the oiling drive shaft rotates for the nylon wire is forward driven, the oil inlet chamber has been seted up to the inside of oiling roller, the oil outlet has been seted up on the oil inlet chamber, the intercommunication between oil inlet chamber and the sponge, one side that the oil inlet chamber is close to the base has seted up the oil delivery port, the oil pipe intercommunication has, install the oil pump on the oil pipe, the other end in the oil pump is filled with the oil tank in the oil pump is passed through to the oil tank, and the oil tank can be filled with the oil pump in the oil tank, the oil tank is filled with the oil pump.
Preferably, the rotation direction of the shaping gear I is clockwise, the rotation direction of the shaping gear II is anticlockwise, the rotation direction of the transition gear is clockwise, and the rotation directions of the cooling structure, the dewatering sponge and the oiling device are anticlockwise.
The invention has the following beneficial effects:
1. according to the invention, the water cooling device is arranged before oiling after shaping the fishing net wire, so that the cooling of the fishing net wire is accelerated, the cooling of the fishing net wire is completed before the fishing net wire is subjected to the stretching force, the nylon with higher temperature is prevented from deforming in advance due to the stretching force, the size of the fishing net wire is uneven, the cooling structure is arranged above the water cooling groove, the water in the water cooling groove is prevented from absorbing excessive heat, the water cooling effect is poor, the warm water in the water cooling groove is carried away by the Shui Shao contained in the cooling device, the heat is exchanged with cold air, and the plurality of water containing spoons are continuously carried away from the warm water in the rotating process of the cooling device, so that the water cooling effect is finally achieved.
2. The invention can effectively remove water stains on the fishing net wire after water cooling, prevent the water stains from affecting the subsequent brushing of tung oil, improve the oiling device, and arrange the oiling roller in a spiral shape, so that the fishing net wire can wind a circle on the oiling roller along a spiral wire passing track, thereby increasing the stretching force of the oiling device on the fishing net wire when oiling, and preventing the fishing net wire from being cooled and contracted to lead to uneven quality of the fishing net wire when water cooling.
Drawings
FIG. 1 is a schematic diagram of a three-dimensional structure of a shaping apparatus according to the present invention;
FIG. 2 is a schematic diagram of the front structure of the shaping apparatus of the present invention;
FIG. 3 is a schematic top view of the shaping apparatus of the present invention;
FIG. 4 is a schematic perspective view of a cooling structure according to the present invention;
FIG. 5 is a schematic top view of the oiling station of the present invention;
fig. 6 is a schematic view of the oiling station of the present invention in cross-section.
In the figure: 1. a base; 2. a shaping gear I; 3. a shaping gear II; 4. a driving motor; 5. a lifting cylinder; 6. a water cooling tank; 7. a cooling structure; 71. a water-cooling shaft sleeve; 72. a water-cooling side plate; 73. holding Shui Shao; 74. a water containing chamber; 75. a drainage plate; 8. a water-cooled driving shaft; 9. a cooling driving gear; 10. a guide roller I; 11. a belt I; 12. a water removal drive shaft; 13. a belt II; 14. a water removal sponge; 15. a guide roller II; 16. a guide roller III; 17. a oiling driving shaft; 18. a belt III; 19. an oiling device; 191. fixing the side plates; 192. oiling roller; 193. oiling the sponge; 194. a wire passing track; 195. an oil inlet cavity; 196. an oil outlet; 20. an oil tank; 21. an oil pipe; 22. a transition gear.
Detailed Description
The following description of the embodiments of the present invention will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present invention, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the invention without making any inventive effort, are intended to be within the scope of the invention.
Referring to fig. 1-6, a fishing net wire processing device comprises a base 1, install setting gear i 2 on the base 1, setting gear i 2's top is provided with setting gear ii 3, setting gear i 2's mid-mounting has the pivot, pivot fixedly connected with driving motor 4's output shaft, driving motor 4 provides power for setting gear i 2's rotation, and driving motor 4 is fixed on the base 1, be provided with the meshing of gear between setting gear i 2 and setting gear ii 3, and still install the ring that is used for the design in the pivot at setting gear i 2 and setting gear ii 3 place, when setting gear i 2 and setting gear ii 3 rotate, setting ring on setting gear i 2 and the setting gear ii 3 is to the fishing net wire design that extrudes from the extruder this moment, setting gear ii 3's pivot is last still to install lift cylinder 5, lift cylinder 5's telescopic link can reciprocate setting gear ii 3's position, above is prior art, setting gear i 2 and setting gear ii 3 are provided with water cooling device on one side, water cooling device is mainly through the meshing of the gear to the back of cooling water, water cooling device is the water cooling device is in order to prevent that the water cooling device from being used for the water-cooling device is the water-cooling device after the water-cooling device is in order to prevent the water-cooling device from being polluted by the surface layer, water device is in order to prevent the water-cooling device from being used for the anti-ageing device is to be added on one side of the surface layer of the surface of the wire after the device.
Referring to fig. 1-3, the water cooling device includes a water cooling tank 6 and a cooling structure 7 above the water cooling tank 6, the interior of the water cooling tank 6 is filled with a liquid, the liquid can be water or cooling liquid, the cooling structure 7 is mainly used for accelerating the cooling of the water in the water cooling tank 6, because the water in the water cooling tank 6 can absorb the heat of the nylon fishing net wire 231 to raise the temperature, when the cooling structure 7 rotates, the water in the water cooling tank 6 can be driven to exchange heat with the outside, a water cooling driving shaft 8 is fixedly installed in the middle of the cooling structure 7, the water cooling driving shaft 8 is movably installed with a bracket on the base 1, a cooling driving gear 9 is fixedly installed on the water cooling driving shaft 8, a transition gear 22 is meshed above the cooling driving gear 9, a rotating shaft is installed in the middle of the transition gear 22, the rotating shaft is movably installed with the bracket wall on the base 1, a wire inlet is arranged on the water cooling tank 6, the wire inlet is mainly used for the passage of the fish wire, two wire pressing rollers are arranged at the wire inlet of the water cooling tank 6, the wire pressing rollers are positioned at the wire inlet and provide a pulling force for the water cooling shrinkage of the subsequent fish wire, the wire pressing rollers can also be designed into adjustable type through components such as an air cylinder, the inside of the water cooling tank 6 of the equipment is fixedly provided with guide rollers I10, the guide rollers I10 are provided with two pieces, which are respectively positioned at the two sides of the bottom of the water cooling tank 6, the guide rollers I10 are provided with rotating sleeves capable of rotating circumferentially, the fish wire from the shaping gear I2 and the shaping gear II 3 can be guided to the other side of the water cooling tank 6 from one side of the water cooling tank 6 through the bottoms of the two guide rollers I10, the guide rollers I10 are mainly used for preventing the cooling structure 7 from touching the nylon wire which is being cooled when driving the water in the water cooling tank 6 to rotate, thereby lead to nylon wire fracture, the pivot of transition gear 22 is gone up to link has belt I11, and the other end of belt I11 links to the pivot of shaping gear I2 for transition gear 22's rotation direction is unanimous with shaping gear I2's rotation direction, and the rotation direction of cooling structure 7 is opposite with transition gear 22's rotation direction.
During transmission, the motor 4 drives the shaping gear I2 to rotate, the belt pulley on the shaping gear I2 drives the belt pulley on the rotating shaft of 22 to rotate, so that the transition gear 22 rotates, the cooling driving gear 9 meshed with the transition gear 22 rotates, the rotating shaft of the cooling structure 7 can be driven to rotate by the rotation of the cooling driving gear 9, the cooling structure 7 rotates, the belt pulley on the rotating shaft of the cooling structure 7 can drive the belt pulley on the dewatering driving shaft 12 to rotate through the belt II 13, the dewatering driving shaft 12 rotates, the belt pulley on the dewatering driving shaft 12 can drive the belt pulley on the dewatering driving shaft 12, the oiling driving shaft 17 rotates, and the belt pulleys are all arranged in the rotating shaft of the transmission structure to link to prevent belt shaking.
Referring to fig. 4, the cooling structure 7 includes a water-cooling shaft sleeve 71, water-cooling side plates 72 are installed at two sides of the water-cooling shaft sleeve 71, so that a waterway is formed between the water-cooling shaft sleeve 71 and the two water-cooling side plates 72, a water containing cavity 74 is installed at the outer side of the water-cooling side plates 72, a water containing cavity 74 is provided in the water containing cavity 74, the opening direction of the water containing cavity 74 is consistent with the rotation direction of the water-cooling shaft sleeve 71, a drainage plate 75 is installed at the bottom of one side of the water containing cavity 74, which is close to the water containing cavity 74, four water containing cavities 74 and the drainage plate 75 are uniformly distributed along the circle center circumference of the water-cooling side plates 72, the drainage plate 75 is not contacted with the bottom of the water-cooling shaft sleeve 71, the drainage plate 75 is mainly used for guiding water flow in the water containing cavity 74 to the waterway, the water in the water-cooling tank 6 can be prevented from splashing when the liquid in the water-containing cavity 74 directly falls down through the drainage of the waterway channel, the temperature of the water in the water-cooling tank 6 can be raised after the water-cooling tank is cooled, when the water-cooling driving shaft 8 rotates, the water containing Shui Shao 73 is close to a part of the water-cooling tank 6 and can be scooped up, the water is taken away from the water-cooling tank 6 after rotating, the water with temperature can be separated from the water-cooling tank 6 to exchange heat with the air outside, meanwhile, when the water containing Shui Shao rotates to a vertical position, the water in the water-containing cavity 74 can flow downwards from the water channel, the heat dissipation of the flowing water can be accelerated, in addition, the water containing Shui Shao can also play a role of stirring and mixing when the water with high bottom temperature is mixed with the water with lower upper temperature, and the effect of uniform water temperature inside the water-cooling tank 6 can be achieved.
1-3, the water removal device includes a water removal driving shaft 12, a belt II 13 is installed on the water removal driving shaft 12, the other end of the belt II 13 is linked to a water cooling driving shaft 8, a water removal sponge 14 is fixedly installed on the outer annular surface of the water removal driving shaft 12, an annular water removal annular cavity is formed in the middle of the water removal sponge 14, a nylon wire with water can be removed through the water removal annular cavity and then pulled to an oiling device, a guide roller II 15 and a guide roller III 16 are installed above the water cooling groove 6 and in a space at the bottom of the water removal sponge 14, the guide roller II 15 and the guide roller III 16 are fixedly installed on the side wall of the base 1, a rotatable outer sleeve is installed on the guide roller II 15 and the guide roller III 16, the outer sleeve is made of water absorption materials, and can be flannelette, the guide roller II 15 and the guide roller III 16 are mainly used for guiding nylon wires in the water cooling groove 6, so that the nylon wires after water removal can be simultaneously guided to the oiling device in the water removal annular cavity of the water removal sponge 14, and the rotation direction of the water removal driving shaft 12 is consistent with the rotation direction of the cooling structure 7.
Referring to the position of the water containing sponge Shui Shao 73 and the position of the water removing sponge 14 in fig. 2, the center of the water cooling driving shaft 8 is taken as the center, the outermost point of the water containing sponge Shui Shao 73 is a radius, the circular area partially overlaps with the area of the water removing sponge 14, the overlapping arrangement can play a role in squeezing water in the water removing sponge 14, the water removing sponge 14 can absorb redundant water on nylon wires, but if the water removing sponge 14 is used for a long time, water in the water removing sponge 14 is accumulated and cannot be treated, at the moment, due to the arrangement of the opening and the rotation direction of the water containing sponge Shui Shao 73, when the water containing sponge Shui Shao is overlapped with the water removing sponge 14, the rotation directions of the water containing sponge and the water containing sponge 14 are opposite, water in the water removing sponge 14 can be squeezed better squeezed, and in addition, the squeezed water in the water containing sponge 14 can flow into the water containing sponge Shui Shao through the water containing cavity 74, and a water recycling function can be achieved.
1-3 and 5-6, an oiling driving shaft 17 is fixedly installed in the middle of the oiling device 19, the oiling driving shaft 17 is installed on the side wall of the base 1, a belt III 18 is sleeved on the oiling driving shaft 17, the oiling driving shaft 17 is linked with the dewatering driving shaft 12 through the belt III 18, the oiling device 19 comprises two fixed side plates 191, two oiling rollers 192 are fixedly installed between the two fixed side plates 191, the oiling rollers 192 are spiral, the nylon wire can be wound in a gap reserved by a spiral blade, the nylon wire is wound on the oiling rollers 192, the winding direction can be used for driving the nylon wire forwards when the oiling driving shaft 17 rotates, that is, when the oiling driving shaft 17 rotates, the nylon wire at the guide roller III 16 moves in a direction away from the guide roller III 16 after the nylon wire is wound on the fixed side plates 191, the oiling roller 192 is fixedly arranged near the side edge of the nylon wire, an oiling sponge 193 is arranged between the oiling sponge 193 on two adjacent sides of the oiling roller 192, an oil inlet cavity 195 is formed in the oiling roller 192, an oil outlet 196 is formed in the oil inlet cavity 195, the oil inlet cavity 195 is communicated with the oiling sponge 193, an oil delivery port is formed in one side, close to the base 1, of the oil inlet cavity 195, an oil pipe 21 is communicated with the oil delivery port, an oil pump is arranged on the oil pipe 21, the other end of the oil pipe 21 is communicated into the oil tank 20, the oil tank 20 is filled with tung oil, the oil pump can pump tung oil in the oil tank 20 into the oil inlet cavity 195, then the tung oil is brushed on the surface of the nylon wire through the oiling sponge 193, because a water cooling device is added, the nylon wire can shrink after heating and shaping and cooling, the final uniformity of the fishing net wire can be affected at the moment, the nylon wire from the water cooling device can be wound on the oiling roller 192 firstly due to the shape design of the oiling roller 192, the nylon wire can shrink after winding, a stretching force is increased, so that the shrunk nylon wire can not shrink again due to the winding force, the problem that uniformity of the nylon wire is damaged due to shrinkage is reduced, in addition, the internal crystal structure of the nylon wire can be changed when the nylon wire is stretched, if the nylon wire is cooled in air, the brittleness of the nylon wire is increased due to oxidation, the brittleness can be well reduced due to cooling in water or cooling liquid, breakage is prevented, in addition, a part which is not shown in the drawing is a final winding device, the winding device can adopt a winding structure which is the same as that of a patent CN113584618B, and also can be a winding drum which is driven by a motor to rotate.
Referring to fig. 2, the rotation direction of the shaping gear i 2 is clockwise, the rotation direction of the shaping gear ii 3 is counterclockwise, the rotation direction of the transition gear 22 is clockwise, and the rotation directions of the cooling structure 7, the dewatering sponge 14 and the oiling device 19 are counterclockwise, so that the rotation directions are set, on one hand, in order to facilitate the trend of the nylon wire, prevent the trend of the nylon wire from being inconsistent with the rotation direction, affect the working efficiency, and on the other hand, in order to increase a stretching force opposite to the shrinking force, prevent the nylon wire from cooling and shrinking.

Claims (3)

1. The utility model provides a processing equipment of fishing net twine, includes base (1), install shaping gear I (2) on base (1), the top of shaping gear I (2) is provided with shaping gear II (3), install lift cylinder (5), its characterized in that in the pivot of shaping gear II (3): the middle part of the shaping gear I (2) is provided with a rotating shaft, the rotating shaft is fixedly connected with an output shaft of a driving motor (4), the driving motor (4) provides power for the rotation of the shaping gear I (2), and the shaping gear I (2) is meshed with the shaping gear II (3);
a water cooling device for timely cooling the shaped fishing net wire is arranged on one wire outlet side of the shaping gear I (2) and one wire outlet side of the shaping gear II (3);
a water removal device for preventing tung oil dilution is arranged on one outlet side of the water cooling device;
an oiling device (19) for adding an anti-corrosion layer of the nylon wire is arranged on the outgoing line side of the water removing device and used for coating an anti-aging layer on the nylon wire;
the water cooling device comprises a water cooling tank (6) and a cooling structure (7), wherein the cooling structure (7) is positioned above the water cooling tank (6) and stretches into the water cooling tank (6), liquid is filled in the water cooling tank (6), the liquid is water or cooling liquid, a water cooling driving shaft (8) is fixedly arranged in the middle of the cooling structure (7), the water cooling driving shaft (8) is movably arranged on a bracket wall on a base (1), a cooling driving gear (9) is fixedly arranged on the water cooling driving shaft (8), a transition gear (22) is meshed above the cooling driving gear (9), a rotating shaft is arranged in the middle of the transition gear (22), the rotating shaft is movably arranged on the bracket wall on the base (1), guide rollers I (10) are respectively arranged on two sides of the bottom of the water cooling tank (6), a transition gear (22) is arranged on the guide rollers I (10), and the rotating shaft I is linked with a belt (11) of the rotating shaft I of the transition gear (22), and the belt I is linked with the other end of the rotating shaft (11);
the cooling structure (7) comprises a water-cooling shaft sleeve (71), water-cooling side plates (72) are arranged on two sides of the water-cooling shaft sleeve (71), a waterway channel is formed between the water-cooling shaft sleeve (71) and the two water-cooling side plates (72), a water containing cavity (74) is arranged in the water containing cavity (74) and is used for containing spoon water, the opening direction of the water containing cavity (74) is consistent with the rotation direction of the water-cooling shaft sleeve (71), a drainage plate (75) is arranged at the bottom of one side, close to the water containing cavity (74), of the water containing cavity (73) and the drainage plate (75) respectively, four water containing cavities (74) and the drainage plate (75) are uniformly distributed along the circumferential direction of the circle center of the water-cooling side plates (72), the drainage plate (75) is not contacted with the bottom of the water-cooling shaft sleeve (71), and the drainage plate (75) is used for guiding water in the water containing cavity (74) to flow into the waterway channel;
the water removal device comprises a water removal driving shaft (12), a belt II (13) is installed on the water removal driving shaft (12), the other end of the belt II (13) is linked to a water cooling driving shaft (8), a water removal sponge (14) is fixedly installed on the outer ring surface of the water removal driving shaft (12), an annular water removal ring cavity is formed in the middle of the water removal sponge (14), a nylon wire with water can be used for removing water by wiping the sponge on the side edge in the water removal ring cavity, a guide roller II (15) and a guide roller III (16) are installed above the water cooling groove (6) and in a space at the bottom of the water removal sponge (14), the guide roller II (15) and the guide roller III (16) are fixedly installed on the side wall of the base (1), rotatable jackets are installed on the guide roller II (15) and the guide roller III (16), and the guide roller III (16) are nylon wires used for guiding the water cooling groove (6);
the outermost point of the container Shui Shao (73) is a radius length with the center of the water-cooled driving shaft (8) as the center, and the area of the circle is partially overlapped with the area of the water-removing sponge (14).
2. A fishing net line processing apparatus as defined in claim 1, wherein: the middle part fixed mounting of oiling station (19) has oiling drive shaft (17), on the lateral wall of oiling drive shaft (17) installation base (1), the cover is equipped with belt III (18) on oiling drive shaft (17), the linkage between oiling drive shaft (17) and dewatering drive shaft (12) through belt III (18), oiling station (19) are including fixed curb plate (191), fixed curb plate (191) are equipped with two, two fixed mounting has oiling roller (192) between fixed curb plate (191), oiling roller (192) are the heliciform, oiling roller (192) are close to side fixed mounting of nylon wire have oiling sponge (193), form between oiling sponge (193) of the adjacent both sides of oiling roller (192) and be used for nylon wire winding wire through belt III (194), and the direction of winding can be when oiling drive shaft (17) rotate, make the nylon wire drive forward, oiling roller (192) are equipped with the spiral form, oiling roller (192) are close to oil inlet (195), oil inlet (195) are seted up on one side of the oil feed port (195) and oil feed port (196) are seted up between the oil feed port (195), the oil pipe (21) is provided with an oil pump, the other end of the oil pipe (21) is communicated with the oil tank (20), the oil tank (20) is filled with tung oil, the oil pump pumps the tung oil in the oil tank (20) into the oil inlet cavity (195), and then the surface of the nylon wire is brushed with the tung oil through an oiling sponge (193).
3. A fishing net line processing apparatus as claimed in claim 2, wherein: the rotation direction of the shaping gear I (2) is clockwise, the rotation direction of the shaping gear II (3) is anticlockwise, the rotation direction of the transition gear (22) is clockwise, and the rotation directions of the cooling structure (7), the dewatering sponge (14) and the oiling device (19) are anticlockwise.
CN202311548834.1A 2023-11-21 2023-11-21 Processing equipment of fishing net line Active CN117265677B (en)

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Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN212461251U (en) * 2020-08-21 2021-02-02 揭西县宝讯电缆有限公司 Cooling device for cable processing
CN113584618A (en) * 2021-08-05 2021-11-02 安徽省安国渔具有限公司 A filament setting device for fishing net weaves wire rod and handles
CN216838304U (en) * 2021-11-17 2022-06-28 晋江旭华新材料科技有限公司 Fiber spinning cooling device
CN218262853U (en) * 2022-09-06 2023-01-10 浙江康东新材料科技有限公司 A viscose spinning equipment for preparation of functional viscose

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN212461251U (en) * 2020-08-21 2021-02-02 揭西县宝讯电缆有限公司 Cooling device for cable processing
CN113584618A (en) * 2021-08-05 2021-11-02 安徽省安国渔具有限公司 A filament setting device for fishing net weaves wire rod and handles
CN216838304U (en) * 2021-11-17 2022-06-28 晋江旭华新材料科技有限公司 Fiber spinning cooling device
CN218262853U (en) * 2022-09-06 2023-01-10 浙江康东新材料科技有限公司 A viscose spinning equipment for preparation of functional viscose

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