WO2017045098A1 - 渔具浮子绳 - Google Patents

渔具浮子绳 Download PDF

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Publication number
WO2017045098A1
WO2017045098A1 PCT/CN2015/089514 CN2015089514W WO2017045098A1 WO 2017045098 A1 WO2017045098 A1 WO 2017045098A1 CN 2015089514 W CN2015089514 W CN 2015089514W WO 2017045098 A1 WO2017045098 A1 WO 2017045098A1
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WO
WIPO (PCT)
Prior art keywords
fishing gear
module
rope
floats
end portion
Prior art date
Application number
PCT/CN2015/089514
Other languages
English (en)
French (fr)
Inventor
叶瑞文
叶育豪
Original Assignee
协富渔具工业股份有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 协富渔具工业股份有限公司 filed Critical 协富渔具工业股份有限公司
Priority to US15/759,389 priority Critical patent/US20180249691A1/en
Priority to PCT/CN2015/089514 priority patent/WO2017045098A1/zh
Priority to DK15903789.4T priority patent/DK3351096T3/da
Priority to EP15903789.4A priority patent/EP3351096B1/en
Priority to ES15903789T priority patent/ES2806979T3/es
Publication of WO2017045098A1 publication Critical patent/WO2017045098A1/zh

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    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01KANIMAL HUSBANDRY; AVICULTURE; APICULTURE; PISCICULTURE; FISHING; REARING OR BREEDING ANIMALS, NOT OTHERWISE PROVIDED FOR; NEW BREEDS OF ANIMALS
    • A01K75/00Accessories for fishing nets; Details of fishing nets, e.g. structure
    • A01K75/04Floats
    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01KANIMAL HUSBANDRY; AVICULTURE; APICULTURE; PISCICULTURE; FISHING; REARING OR BREEDING ANIMALS, NOT OTHERWISE PROVIDED FOR; NEW BREEDS OF ANIMALS
    • A01K71/00Floating nets
    • DTEXTILES; PAPER
    • D07ROPES; CABLES OTHER THAN ELECTRIC
    • D07BROPES OR CABLES IN GENERAL
    • D07B1/00Constructional features of ropes or cables
    • D07B1/20Buoyant ropes, e.g. with air-filled cellular cores; Accessories therefor
    • DTEXTILES; PAPER
    • D07ROPES; CABLES OTHER THAN ELECTRIC
    • D07BROPES OR CABLES IN GENERAL
    • D07B2501/00Application field
    • D07B2501/20Application field related to ropes or cables
    • D07B2501/2038Agriculture, forestry and fishery
    • DTEXTILES; PAPER
    • D10INDEXING SCHEME ASSOCIATED WITH SUBLASSES OF SECTION D, RELATING TO TEXTILES
    • D10BINDEXING SCHEME ASSOCIATED WITH SUBLASSES OF SECTION D, RELATING TO TEXTILES
    • D10B2507/00Sport; Military
    • D10B2507/02Nets

Definitions

  • the invention relates to a fishing gear, in particular to a fishing gear float rope.
  • the upper edge mesh and the lower edge mesh of the net surface of the fishing net are respectively provided with a net rope and a net rope, and a float ball is attached at an appropriate interval of the net rope (or It is called a float).
  • the lower net rope is tied with a plumb bob and a weight body (or a sinker).
  • the fishing net device can be supported on the water evenly and vertically in the water due to the buoyancy of the net rope and the weight of the net rope. Open the fishing net.
  • the attached float (or float), plumb bob, weight body (or sinker) or slack does not cling to the protrusion, It is easy to entangle with the fishing net, narrowing the overall opening degree of the fishing net in the water, and due to the protruding part of the plumb bob, the weight body (or sinker) and the float ball (or float), it will be entangled with the fishing net when the net is closed. Or pulling, causing the fishing net to break.
  • Taiwan Taiwan Patent Publication No. M256071 discloses a "fishing net improved structure", which mainly comprises a net body, a buoyancy rope set and a weight rope set, the buoyancy rope set being coupled to a plurality of upper edges of the net body a mesh, the weighting rope set is coupled to a plurality of lower edge meshes of the mesh body, the weighting rope set comprises a mesh rope and a woven mesh rope, and the plurality of weight bodies are covered in the weaving in a spaced section In the net rope, between the two adjacent weight bodies, the woven mesh rope is fastened to the net rope to avoid tangling of the weight rope group when the fishing net is opened or closed.
  • the buoyancy cord set has a first net rope and a second net rope, and the first net rope passes through the upper edge nets of the net body to be coupled to the upper edge of the net body.
  • a plurality of floats are exposed to the second net.
  • the floating ball is still exposed, which is not easy to operate in the case of netting and unpacking, and its manufacturing is complicated, so that labor and manufacturing costs are increased.
  • a plurality of floats are wrapped in a woven mesh rope, and the current method is manually inserted into the float one by one, which is time consuming and difficult to control the spacing of the floats.
  • the two ends of the float are converged.
  • both ends of the float are easily exposed and the structure of the net rope is broken.
  • a special float rope weaving device In a known automatic manufacturing method of a fishing gear float rope, a special float rope weaving device is used, and a plurality of floats are sequentially input into a center of the net rope in a reversely twisted downward weaving, so that the weaving net rope Covering the float, this method needs to control the input time and the weaving speed, so it is not easy to control the spacing of the float, and the setting cost of the special equipment is high and the application range is narrow.
  • the main object of the present invention is to provide a fishing gear float rope, which is utilized.
  • the simple action of the quick connector method, the float and the module fastener can be quickly joined into a module serial core, which is used as the center line of the circular knitting machine and then wrapped into a fishing gear float rope to reach the braided rope.
  • a second object of the present invention is to provide a fishing gear float rope, so that a plurality of floats can be automatically wrapped in the float rope at equal intervals, and a general circular knitting machine can be used to make the fishing gear float rope, and the spacing between the floats can be Adjust and control according to the selected module fastener, and no special float rope weaving equipment is needed.
  • the object of the present invention and solving the technical problems thereof are achieved by the following technical solutions.
  • the invention discloses a fishing gear float rope comprising a module serial core and a braided covered rope.
  • the module is connected to the core in series with a plurality of floats, each float having a body, and a neck portion and an end portion are integrally connected at both ends of the body, wherein the neck has a radial cutting dimension smaller than the The radial cut dimension of the body is also less than the radial cut dimension of the end.
  • the braided cover rope encloses the module string core in a staggered manner.
  • the module serial core preferably further comprises a plurality of module fasteners, each of the module fasteners may have a bendable wire body and a plurality of connected to the bendable wire body
  • the hollowed out fasteners at the two ends are configured to receive the end portions, and the hollowed out buckle bodies are specifically away from a center point of the corresponding module fastener and have a U-shaped notch buckle groove to fasten the neck portions unit. Thereby, the equidistant series connection of the floats is achieved.
  • the hollowed-out buckle bodies are specifically half-cover type, and the U-shaped notch buckle groove has elastically clamped buckle points on both sides of the opening, so the U-shaped notch buckle groove can be easily buckled Corresponding neck.
  • the shape of the end portion may be a spherical body, so that the rotation of the floats does not cause the end portion to be disengaged from the correspondingly fastened hollow button body.
  • the radial cutting dimension of the end portion is specifically smaller than the radial cutting dimension of the body, so that the radial cutting dimension of the hollowed out button body is not protruding from the radial direction of the body. Cut the size. Therefore, the end portion is not easily released by the hollowed out button body.
  • the side surfaces of the hollowed out button bodies are preferably half-cut and inclined to the opening of the U-shaped notch groove to strengthen the fastening of the U-shaped notch groove to the neck. strength.
  • the module serial core may further comprise a series of wires, and the sewing seams connect the floats, so that the floats are connected at low cost and equidistant.
  • the tether can be sewn to the ends of the ends of the floats facing the same series direction, so that the floats can be quickly reached at a low cost equidistant series.
  • the bodies may be in the shape of a cylinder, so the floats may have a volume that can achieve a better float, and the rotation of the floats does not cause damage to the braided rope.
  • the shapes of the bodies may be rugby bodies, so the floats are more advantageous for the wrapping of the woven covered rope.
  • the invention also provides a fishing gear float rope comprising:
  • a module serially connected to the core, equidistantly connected in series with a plurality of floats, each float having a body;
  • a braided covered rope is used to wrap the module in series with the core.
  • the module serial core further comprises a series of wires, and the sewn joints connect the floats.
  • one end portion is integrally connected to both ends of the body, and the radial cutting dimension of the end portion is smaller than the radial cutting dimension of the body, and the sewing thread is coupled to the same side of the floats. The ends of the.
  • one end portion is integrally connected to both ends of the body, and the radial cut dimension of the end portion is smaller than the radial cutting dimension of the body, and the body is formed between the end portion and the end portion. Convergence curved surface.
  • one end portion is integrally connected to both ends of the body, and the radial cut dimension of the end portion is smaller than the radial cutting dimension of the body, and the body is formed between the end portion and the end portion.
  • Converging cones In the fishing gear float rope, one end portion is integrally connected to both ends of the body, and the radial cut dimension of the end portion is smaller than the radial cutting dimension of the body, and the body is formed between the end portion and the end portion.
  • the invention also discloses a fishing gear float rope, comprising:
  • a module serially connected to the core equidistantly connected in series with a plurality of floats, each float having a body, the two ends of the body are connected with a neck and an end portion, wherein the neck has a radial section size smaller than the The radial cutting dimension of the body is also smaller than the radial cutting dimension of the end portion
  • the module serial core further comprises a plurality of module fasteners, each module fastener has a bendable line body and a plurality of hollowed out fasteners connected to the two ends of the bendable wire body to accommodate the end portions, the hollowed out button bodies are relatively far from a center point of the corresponding module fastener and have a U-shaped notch buckle groove To buckle the necks;
  • a braided covered rope is used to wrap the module in series with the core.
  • buttons are in the shape of a teardrop.
  • the body of at least one of the floats is a buoyant chain formed by a plurality of body chain units connected in series.
  • the length of the bendable wire body is greater than the gap of the adjacent body chain unit.
  • the invention combines the simple combination of the module serial connection core and the simple action of the quick connection head mode, and the float and the module fastener can be quickly joined into a module serial connection core as a
  • the center line of the circular knitting machine is further wrapped into a fishing gear float rope to achieve automatic production of the floats at the same time during the formation of the braided coated rope.
  • the effect of automatically wrapping the plurality of floats in the float rope at equal intervals can be achieved.
  • the invention combines the simple combination of the module serial connection core and the simple action of the quick connection head mode, and the float and the module fastener can be quickly joined into a module serial connection core as a
  • the center line of the circular knitting machine is further wrapped into a fishing gear float rope to achieve automatic production of the floats at the same time during the formation of the braided coated rope.
  • the effect of automatically wrapping the plurality of floats in the float rope at equal intervals can be achieved.
  • FIG. 1 is a partial perspective view of a fishing gear float rope in accordance with a first embodiment of the present invention.
  • FIG. 2 is a partial perspective view of the module serial core of the fishing gear float rope according to the first embodiment of the present invention.
  • 3A to 3C are a perspective view, a side view and a front view of the float of the fishing gear float rope according to the first embodiment of the present invention.
  • 4A to 4C are a perspective view, a side view and a front view of a module fastener of the fishing gear float rope according to a first embodiment of the present invention.
  • Figure 5 is a schematic illustration of the fishing gear float rope being combined in a fishing net in accordance with a first embodiment of the present invention.
  • Figure 6 is a partial perspective view of a fishing gear float rope in accordance with a second embodiment of the present invention.
  • Fig. 7 is a partial perspective view showing the module core of the fishing gear float rope according to the second embodiment of the present invention.
  • 8A to 8C are a perspective view, a side view and a front view of a float of the fishing gear float rope according to a second embodiment of the present invention.
  • FIG. 9 is a partial perspective view of a modular core of another fishing gear float rope according to a third embodiment of the present invention.
  • FIG. 10 is a partial perspective view of a module serial core of another fishing gear float rope according to a fourth embodiment of the present invention.
  • Figure 11 is a partial perspective view showing the module core of another fishing gear float rope according to a fifth embodiment of the present invention.
  • Figure 12 is a partial perspective view showing another embodiment of the fishing gear float rope axially cutting the braided coated rope according to a sixth embodiment of the present invention.
  • a fishing gear float rope 100 is illustrated in a partial perspective view of FIG.
  • a fishing gear float rope 100 includes a module serial core 110 and a braided rope 120.
  • the braided cover rope 120 wraps the module string core 110 in a staggered manner.
  • the module serial core 110 is illustrated in a partial perspective view of FIG. 2 .
  • the module serial cores 110 are connected in series with a plurality of floats 130.
  • 3A, 3B and 3C are respectively a perspective view, a side view and a front view of a float 130.
  • Each of the floats 130 has a body 131.
  • a neck portion 132 and an end portion 133 are integrally connected to both ends of the body 131.
  • the radial sectioning dimension D2 of the neck portion 132 is smaller than the radial sectioning dimension D1 of the body 131 and is also smaller than the radial sectioning dimension D3 of the end portion 133 (as shown in FIG. 3C), using different radial sections.
  • the size is cut to reduce the sliding of the floats 130 in the braided cover rope 120.
  • the "axial direction” refers to the direction between the end portions 133 of the same float 130, and the “radial direction” refers to the direction or plane perpendicular to the “axial direction”.
  • the term “radial section size” as used herein refers to the maximum dimension obtained by cutting a product perpendicular to the axial direction.
  • the "radial section size" of each portion of the float 130 can be viewed from the axial direction of the float of FIG. 3C. The schematic observation is known.
  • the module serial core 110 is a zigzag tandem object for reel storage. The length of the module serial core 110 can be arbitrarily adjusted to meet the different lengths of the fishing gear float rope.
  • the float 130 may have a material density of less than water or seawater to float above the water surface.
  • the unit length of the body 131 may be greater than the unit length of the neck portion 132 and the unit length of the end portion 133.
  • the shapes of the bodies 131 are cylindrical, so the floats 130 can have a volume that can achieve a better float, and the rotation of the floats 130 does not cause the braided coated ropes. 120 damage.
  • the braided cover rope 120 can cover the floats 130 at equal intervals.
  • the material of the woven covering rope 120 can be waterproof plastic, and can be woven by a plurality of interlaced knitting machines.
  • the manner in which the braided covering rope 120 covers the module serially connected core 110 is a staggered weaving.
  • staggered weaving is that the modular tandem core 110 is first formed in series, and the braided coated rope is formed as a braid.
  • the core wire of 120 is interlaced and woven on the periphery of the module stringing core 110 to form the braided covering rope 120, so that a good coating effect and an automatic knitting operation can be obtained for the floats 130.
  • the verb definition of "interlaced wrapping" should not include the operation of first forming the braided covering cord 120 and then inserting the modular stringing core 110 (or the floats 130).
  • the module serial core 110 further includes a plurality of module fasteners 140 .
  • 4A, 4B, and 4C are respectively a perspective view, a side view and a front view of a module fastener 140.
  • Each of the module fasteners 140 has a bendable wire body 141 and a plurality of connected to the bendable
  • the hollowed out button body 142 at the two ends of the wire body 141 is disposed to receive the end portions 133.
  • the hollowed out button bodies 142 are relatively far from the center point of the corresponding module fastener 140 and have a U-shaped notch buckle groove 143. To buckle the necks 132, thereby achieving equidistant series connection of the floats 130.
  • the bendable wire body 141 is meandered as the braided cover rope 120 is bent to effectively maintain the pitch of the floats 130.
  • the module fastener 140 can be made of waterproof plastic.
  • the bendable strength of the bendable wire body 141 is greater than the braided tensile strength of the braided covered cord 120.
  • the shape of the hollowed out button body 142 may be a shape that just fits and fits the end portions 133, such as a pear shape.
  • the slotting dimension of the U-shaped notch groove 143 can be smaller than the radial cutting dimension D1 of the body 131 and also smaller than the radial cutting dimension D3 of the end portion 133. Therefore, the U-shaped notch groove 143 can be fastened. At the neck 132. As shown in FIG.
  • the unit length of the bendable wire body 141 is greater than the unit length of the floats 130, and may be equal to or smaller than the units of the floats 130, depending on the selected module fastener 140.
  • the length is such that the spacing of the floats 130 equidistantly connected can be controlled.
  • the hollowed out button body 142 is a half cover type, and the U-shaped notch buckle groove 143 has elastically clamped buckle points 144 on both sides of the opening, so the U-shaped notch buckle groove 143
  • the corresponding neck 132 can be easily snapped.
  • the two opposing buckle points 144 are smaller than the radial cut diameter of the neck portion 132.
  • the buckle 144 can increase the degree of engagement of the module fastener 140 at the neck 132.
  • the half-cover shape of the hollowed out button body 142 helps the module fastener 140 to be coupled and disengaged from the module of the float 130.
  • the sides of the hollowed out button body 142 are half-cut and inclined to the opening of the U-shaped notch groove (as shown in FIG. 4B) to reinforce the U-shaped notch groove 143 to the neck.
  • the fastening strength of the portion 132 is the fastening strength of the portion 132.
  • the shape of the end portion 133 is a spherical body. Therefore, the rotation of the floats 130 does not cause the end portion 133 to be dislodged by the correspondingly fastened button body 142. The damage to the braided covered cord 120 can be reduced.
  • the radial cutting dimension D3 of the end portion 133 is smaller than the radial cutting dimension D1 of the body 131, so that the radial cutting dimension of the hollowed out button body 142 does not protrude from the body 131.
  • the radial cut size is D1. Therefore, the end portion 133 is not easily released by the hollowed out button body 142.
  • FIG. 5 is a schematic view of the fishing gear float rope 100 combined in a fishing net 10 comprising a plurality of mesh wires 11 , a net rope 12 and a lower net rope 13 , wherein the net rope 12 is located at the upper edge of the net body.
  • the lower net rope 13 is located at the lower edge of the net body.
  • the fishing gear float rope 100 is coupled to the net rope 12 by a plurality of net rope sewing portions 12A; a fishing gear sinker rope 20 is coupled to the lower net rope 13 by a plurality of lower net rope sewing portions 13A.
  • the present invention discloses a fishing gear float rope, which can be quickly joined into a piece by the innovative combination of the module serial cores in a quick connection manner.
  • the module is connected to the core 110 as a center line of the circular knitting machine and then wrapped into the fishing gear float rope 100, so as to achieve automatic production of the floats at the same time during the formation of the braided coated rope.
  • the plurality of floats 130 can be automatically wrapped in the fishing gear float rope 100 at equal intervals, and the fishing gear float rope 100 can be made using a general circular knitting machine, and the spacing between the floats 130 can be selected according to the selection.
  • the fixed module fastener 140 is adjusted and controlled, and does not require a dedicated float rope weaving device.
  • a fishing gear float rope 200 is illustrated in a partial perspective view of FIG. 6, wherein elements having the same names and functions as those of the first embodiment are represented by the component numbers of the first embodiment. And the details of the same structure will not be described again.
  • a fishing gear float rope 200 includes a module serial core 110 and a braided covering rope 120.
  • the braided cover rope 120 wraps the module string core 110 in a staggered manner.
  • the module serial core 110 is illustrated in a partial perspective view of FIG.
  • the module serial cores 110 are connected in series with a plurality of floats 230.
  • 8A, 8B and 8C are respectively a perspective view, a side view and a front view of a float 130.
  • Each of the floats 230 has a body 231.
  • the neck portion 132 and the one end portion 133 are integrally connected to the two ends of the body 231.
  • the radial cutting dimension D2 of the neck portion 132 is smaller than the radial cutting dimension of the body 231.
  • D1 is also smaller than the radial cut dimension D3 of the end portion 133 (as shown in Figure 8C).
  • the material density of the float 230 may be a foam smaller than water or sea water to float above the water surface.
  • the shape of the body 231 can be a rugby body, so the floats 230 are more advantageous for the wrapping of the woven covering rope 120.
  • the module serial connector 110 preferably further includes a plurality of module fasteners 140 , and each of the module fasteners 140 can have a bendable wire body 141 and a plurality of hollowed out fasteners 142 connected to both ends of the bendable wire body 141 to accommodate the end portions 133, the plurality of hollowed out buckle bodies 142 are specifically away from the center point of the corresponding module fastener 140 and There is a U-shaped notch buckle groove 143 to fasten the neck portions 132. Thereby, the equidistant series connection of the floats 230 is achieved.
  • the shape of the end portion 133 can be a spherical body, so that the rotation of the floats 230 does not cause the end portion 133 to be dislodged by the correspondingly fastened hollow button body 142.
  • the radial cutting dimension D3 of the end portion 133 is specifically smaller than the radial cutting dimension D1 of the body 231, so that the radial cutting dimension of the hollowed out button body 142 is not protruding from the body 131. Cut the dimension D1 radially. Therefore, the end portion 133 is not easily released by the hollowed out button body 142.
  • a fishing gear float rope is illustrated as a partial perspective view of the module serial connector of FIG. 9, wherein the components of the same name and function as the first embodiment are in the first embodiment. The component figure number is indicated, and the same structure of its details is not described again.
  • a fishing gear float rope comprises a module serial core 310 and a braided covering rope. In the same manner as the first embodiment, the braided covering rope wraps the module stringing core 310 in a staggered manner.
  • the module serial connection core 310 is connected in series with a plurality of floats 130.
  • Each float 130 has a body 131.
  • the two ends of the body 131 are integrally connected with a neck 132 and one end.
  • 333 wherein the neck portion 132 has a radial cutting dimension smaller than a radial cutting dimension of the body 131 and is also smaller than a radial cutting dimension of the end portion 333.
  • the shape of the end portion 333 may be a cylinder having a length smaller than that of the body 131.
  • the module serial core 310 further includes a tether 311, and the sewn joints connect the floats 130 such that the floats 130 are connected at low cost and equidistant.
  • the material of the tether 311 may be a synthetic fiber such as a nylon thread.
  • the tether 311 can be sewn to the end portions 333 of the end portions 333 of the floats 130 in the same series direction, thereby quickly achieving the low cost equidistance of the floats 130 .
  • the tether 311 is sewn to the floats 130 is a sewn joint 312.
  • the floats 130 may be replaced by a double-headed float, and the tethers are directly sewn to the body of the float.
  • a fishing gear float rope is illustrated in a partial perspective view of the module serial connector of FIG. 10, wherein the components of the same name and function as the first embodiment are in the first embodiment. The component figure number is indicated, and the same structure of its details is not described again.
  • a fishing gear float rope comprises a module serial core 410 and a braided covered rope. In the same manner as the first embodiment, the braided coated cord wraps the module stringing core 410 in a staggered manner.
  • the module serial connection core 410 is connected in series with a plurality of floats 430.
  • Each float 430 has a body 131.
  • One end portion 433 is integrally connected to both ends of the body 131.
  • the radial cutaway dimension of the end portion 433 is less than the radial cutaway dimension of the body 131.
  • the end portion 433 may be in the shape of a cylinder having a length and a diameter smaller than the body 131.
  • the module serial core 410 may further include a tether 411, and the sewn joints connect the ends 433 of the floats 430 such that the floats 430 are connected at low cost and equidistant. Where the tether 411 is sewn to the floats 430 is a sewn joint 412.
  • a convergent curved surface 434 is formed between the body 131 and the end portion 433, which facilitates the braided covering rope to cover the floats 430 and expand the volume of the floats 430.
  • a fishing gear float rope is illustrated as a partial perspective view of the module serial core of FIG. 11 , wherein the elements corresponding to the same name and function of the first embodiment are in the first embodiment. The component figure number is indicated, and the same structure of its details is not described again.
  • a fishing gear float rope comprises a module serial core 510 and a braided covered rope. In the same manner as the first embodiment, the braided coated cord wraps the module stringing core 510 in a staggered manner.
  • the module serial connection core 510 is connected in series with a plurality of floats 530 .
  • Each float 530 has a body 131 .
  • the two ends of the body 131 are integrally connected with an end portion 533 .
  • the radial cutaway dimension of the end 533 is less than the radial cutaway dimension of the body 131.
  • the shape of the end portion 533 can be a cylinder having a length and a diameter smaller than the body 131.
  • the module stringing core 510 further includes a tether 511, and the sewn joints connect the ends 533 of the floats 530 such that the floats 530 are connected at low cost and equidistant. Where the tether 511 is sewn to the floats 530 is a sewn joint 512.
  • a converging tapered surface 534 is formed between the body 131 and the end portion 533, which facilitates the wrapping of the float 530 by the braided covering rope, and reduces the braiding of the body 131 of the float 530. Damage and offset of the rope.
  • a fishing gear float rope 600 is illustrated in a partial perspective view of FIG. 12, wherein elements of the same name and function corresponding to the first embodiment are in the first embodiment. The figure number is indicated, and the same structure of its details is not described again.
  • a fishing gear float rope 600 includes a module stringing core 610 and a braided covering rope 120. The braided cover rope 120 wraps the module serial core 610 in a staggered manner.
  • the module serial core 610 is connected in series with a plurality of floats 630.
  • Each of the floats 630 has a body, and a neck portion 132 and an end portion 133 are connected to both ends of the body 631.
  • the body of at least one of the floats 630 is a buoyant chain formed by a plurality of body chain units 631 connected in series to increase the strong buoyancy section of the fishing gear float rope 600.
  • the radial cut dimension of the neck portion 132 is smaller than the radial cut dimension of the body chain unit 631 of the body and is also smaller than the radial cut dimension of the end portion 133.
  • tandem relationship between the adjacent main body chain unit 631 and the most lateral main body chain unit 631 to the adjacent end portion 133 may be an integral connection, a post-forming line binding, a centerline threading after forming, and a centerline built-in mode during forming. Cover, hook or loop.
  • the module serial connector 610 preferably further includes a plurality of module fasteners 140, each of the module fasteners 140 may have a foldable wire body 141 and a plurality of hollowed out fasteners 142 connected to both ends of the bendable wire body 141 to accommodate the end portions 133, the plurality of hollowed out buckle bodies 142 are specifically away from the center point of the corresponding module fastener 140 and There is a U-shaped notch buckle groove 143 to fasten the neck portions 132. Thereby, the equidistant series connection of the floats 630 is achieved.
  • the hollowed out button bodies 142 may be in the shape of a teardrop to achieve a better receiving effect on the end portions 133.
  • the length of the bendable wire body 141 is preferably greater than the gap of the adjacent body chain unit 631 to provide a weak buoyancy section of the fishing gear float rope 600.

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Abstract

一种渔具浮子绳(100),包括模组串接芯(110)和编织包覆绳(120)。模组串接芯等距串接多个浮子(130)。浮子具有本体(131),本体的两端皆一体连接颈部(132)和端部(133),颈部的径向剖切尺寸小于本体和端部的径向剖切尺寸。编织包覆绳以交错编织的方式包覆模组串接芯。模组串接芯包括多个模组扣接器(140),其具有可曲折的线体(141)以及与该线体两端连接的挖空扣体(142),挖空扣体具有U型缺口扣槽(143),以扣接颈部。浮子与模组扣接器能快速地接合成一条模组串接芯,进而包覆成渔具浮子绳,达到自动化制作。

Description

渔具浮子绳 技术领域
本发明有关于渔具,特别是有关于一种渔具浮子绳。
背景技术
一般的渔网装置是由该渔网网面的上缘网目及下缘网目分别供一上网绳及一下网绳穿设绑附结合,且在该上网绳适当间隔处绑附有浮球(或称浮子),下网绳处则绑附有铅锤、配重体(或称沉子),期使该渔网装置可因上网绳的浮力及下网绳的重量而能平均且垂直地在水中撑开该渔网。然而此种以人工系结方式以固定线将浮球(或称浮子)、铅锤、配重体(或称沉子)分别绑附于渔网的上网绳处及下网绳处的传统渔网装置,常因人为施力绑附的松、紧因素,致使所绑附的浮球(或称浮子)、铅锤、配重体(或称沉子)或有松弛不紧贴而造成有突起部份,致其易与渔网纠结,缩小渔网在水中的整体张开度,且由于铅锤、配重体(或称沉子)及浮球(或称浮子)的突起部份,在收网时会与渔网产生纠结或拉扯,致使渔网破损。
中国台湾新型专利公告号第M256071号揭示一种「渔网的改良构造」,主要包含一网本体、一浮力绳组及一配重绳组,该浮力绳组结合于该网本体的多个上缘网目,该配重绳组结合于该网本体的多个下缘网目,该配重绳组包含有一网绳及一编织网绳,多个配重体呈间隔分段被包覆在该编织网绳内,在二相邻配重体间,该编织网绳与该网绳系结固定,以避免该配重绳组于渔网张开或收网时的不当勾网纠结。该浮力绳组具有一第一网绳及一第二网绳,该第一网绳穿设该网本体的该些上缘网目,以结合于该网本体的上缘。多个浮球外露地与该第二网绳结合。然而,浮球仍为外露造成在收网与拆网时的不容易操作且其制造复杂,故增加人力与制造成本。
在已知的一种渔具浮子绳中,将多个浮子包覆在一已编织好的网绳中,目前作法为人工方式逐一塞入浮子,费工耗时且不容易控制浮子的间距。为了容易塞入浮子,浮子两端为收敛,在渔具使用时,浮子两端容易突出外露而破坏网绳结构。
在已知的一种渔具浮子绳的自动化制造方法中,利用专用的浮子绳编织设备,将多个浮子依序等时间差投入至一逆向翻转往下编织中的网绳中心处,使得编织网绳包覆浮子,此一作法需要控制投入时间与编织速度,故不容易控制浮子的间距,并且专用设备的设置成本高、应用范围窄。
技术问题
为了解决上述的问题,本发明的主要目的在于提供一种渔具浮子绳,利用以 快速连接头方式的简单动作,浮子与模组扣接器能快速的接合成一条模组串接芯,来作为圆编机的中心线进而包覆成渔具浮子绳,达到在编织包覆绳的形成过程中同时等距包覆浮子的自动化制作。
本发明的次一目的在于提供一种渔具浮子绳,使得多个浮子可等距间距地自动化包覆于浮子绳中,能使用一般圆编机来制作渔具浮子绳,而浮子之间的间距可依据选定的模组扣接器作调整与控制,且不需要专用的浮子绳编织设备。
技术解决方案
本发明的目的及解决其技术问题是采用以下技术方案来实现的。本发明揭示一种渔具浮子绳,包含一模组串接芯以及一编织包覆绳。该模组串接芯等距串接有多个浮子,每一浮子具有一本体,由该本体的两端皆一体连接有一颈部与一端部,其中该颈部的径向剖切尺寸小于该本体的径向剖切尺寸且亦小于该端部的径向剖切尺寸。该编织包覆绳以交错编织的方式包覆该模组串接芯。
本发明的目的及解决其技术问题还可采用以下技术措施进一步实现。
在前述渔具浮子绳中,该模组串接芯较佳地更包含多个模组扣接器,每一模组扣接器可具有一可曲折线体以及多个连接于该可曲折线体两端的挖空扣体,以容置该些端部,该些挖空扣体具体地相对远离对应的模组扣接器的中心点并且具有一U型缺口扣槽,以扣接该些颈部。借此达到该些浮子的等距串接。
在前述渔具浮子绳中,该些挖空扣体具体地为半罩式,并且该U型缺口扣槽的开口两侧具有弹性夹合的扣点,故该U型缺口扣槽可轻易扣合对应的颈部。
在前述渔具浮子绳中,该端部的形状可为圆球体,故该些浮子的转动不会造成该端部由对应扣接的挖空扣体脱出。
在前述渔具浮子绳中,该端部的径向剖切尺寸具体地小于该本体的径向剖切尺寸,以使该挖空扣体的径向剖切尺寸为不突出于该本体的径向剖切尺寸。故该端部不易由该挖空扣体脱出。
在前述渔具浮子绳中,该些挖空扣体的侧面较佳地为半切且往该U型缺口扣槽的开口倾斜的斜边,以加强该U型缺口扣槽对该颈部的扣合强度。
在前述渔具浮子绳中,该模组串接芯可更包含一系线,车缝连结该些浮子,使得该些浮子为低成本等距串接。
在前述渔具浮子绳中,该系线系可车缝连结至该些浮子的该些端部中朝向同一串接方向的端部,借以快速地达到该些浮子为低成本等距串接。
在前述渔具浮子绳中,该些本体的形状可为圆柱体,故该些浮子可具有能达到较佳浮子作用的体积,且该些浮子的转动不会造成该编织包覆绳的损伤。
在前述渔具浮子绳中,该些本体的形状可为橄榄球体,故该些浮子更有利于该编织包覆绳的包覆。
本发明还提供一种渔具浮子绳,包含:
一模组串接芯,等距串接有多个浮子,每一浮子具有一本体;以及
一编织包覆绳,以交错编织的方式包覆该模组串接芯。
前述渔具浮子绳中,该模组串接芯更包含一系线,车缝连结该些浮子。
前述渔具浮子绳中,由该本体的两端皆一体连接有一端部,该端部的径向剖切尺寸小于该本体的径向剖切尺寸,该系线车缝连结至该些浮子同一侧的该些端部。
前述渔具浮子绳中,由该本体的两端皆一体连接有一端部,该端部的径向剖切尺寸小于该本体的径向剖切尺寸,由该本体至该端部之间形成为一收敛弧面。
前述渔具浮子绳中,由该本体的两端皆一体连接有一端部,该端部的径向剖切尺寸小于该本体的径向剖切尺寸,由该本体至该端部之间形成为一收敛锥面。
本发明还公开一种渔具浮子绳,包含:
一模组串接芯,等距串接有多个浮子,每一浮子具有一本体,由该本体的两端皆连接有一颈部与一端部,其中该颈部的径向剖切尺寸小于该本体的径向剖切尺寸且亦小于该端部的径向剖切尺寸,其中该模组串接芯更包含多个模组扣接器,每一模组扣接器具有一可曲折线体以及多个连接于该可曲折线体两端的挖空扣体,以容置该些端部,该些挖空扣体相对远离对应的模组扣接器的中心点并且具有一U型缺口扣槽,以扣接该些颈部;以及
一编织包覆绳,以交错编织的方式包覆该模组串接芯。
前述渔具浮子绳中,该些挖空扣体为水滴形。
前述渔具浮子绳中,该些浮子中至少一个的本体为一浮力链,其由多个本体链单元串连形成。
前述渔具浮子绳中,该可曲折线体的长度大于相邻本体链单元的间隙。
借由上述的技术手段,本发明借由模组串接芯的创新组合,以快速连接头方式的简单动作,浮子与模组扣接器能快速的接合成一条模组串接芯,来作为圆编机的中心线进而包覆成渔具浮子绳,达到在编织包覆绳的形成过程中同时等距包覆浮子的自动化制作。并且,达到多个浮子可等距间距地自动化包覆于浮子绳中的功效。
有益效果
借由上述的技术手段,本发明借由模组串接芯的创新组合,以快速连接头方式的简单动作,浮子与模组扣接器能快速的接合成一条模组串接芯,来作为圆编机的中心线进而包覆成渔具浮子绳,达到在编织包覆绳的形成过程中同时等距包覆浮子的自动化制作。并且,达到多个浮子可等距间距地自动化包覆于浮子绳中的功效。
附图说明
图1为依据本发明的第一实施例,一种渔具浮子绳的局部立体示意图。
图2为依据本发明的第一实施例,该渔具浮子绳的模组串接芯的局部立体示意图。
图3A至3C为依据本发明的第一实施例,该渔具浮子绳的浮子的立体示意图、侧视示意图与前视示意图。
图4A至4C为依据本发明的第一实施例,该渔具浮子绳的模组扣接器的立体示意图、侧视示意图与前视示意图。
图5为依据本发明的第一实施例,该渔具浮子绳在组合于一渔网的示意图。
图6为依据本发明的第二实施例,一种渔具浮子绳的局部立体示意图。
图7为依据本发明的第二实施例,该渔具浮子绳的模组串接芯的局部立体示意图。
图8A至8C为依据本发明的第二实施例,该渔具浮子绳的浮子的立体示意图、侧视示意图与前视示意图。
图9为依据本发明的第三实施例,另一种渔具浮子绳的模组串接芯的局部立体示意图。
图10为依据本发明的第四实施例,另一种渔具浮子绳的模组串接芯的局部立体示意图。
图11为依据本发明的第五实施例,另一种渔具浮子绳的模组串接芯的局部立体示意图。
图12为依据本发明的第六实施例,另一种渔具浮子绳轴向剖切其编织包覆绳的局部立体示意图。
附图标记说明:
D1 本体的径向剖切尺寸;D2 颈部的径向剖切尺寸;D3 端部的径向剖切尺寸;10 渔网;11 网线;12 上网绳;12A 上网绳车缝处;13 下网绳;13A上网绳车缝处;20 渔具沉子绳;100 渔具浮子绳;110 模组串接芯;120 编织包覆绳;130 浮子;131 本体;132 颈部;133 端部;140 模组扣接器;141 可曲折线体;142 挖空扣体;143 U型缺口扣槽;144 扣点;145 斜边;200 渔具浮子绳;230 浮子;231 本体;310 模组串接芯;311 系线;312 车缝连结处;333 端部;410 模组串接芯;411系线;412车缝连结处;430浮子;433 端部;434 收敛弧面;510 模组串接芯;511 系线;512 车缝连结处;530 浮子;533 端部;534 收敛锥面;600 渔具浮子绳;610 模组串接芯;630 浮子;631 本体链单元。
本发明的实施方式
下面结合附图和具体实施例对本发明作进一步说明,以使本领域的技术人员可以更好的理解本发明并能予以实施,但所举实施例不作为对本发明的限定。
依据本发明的第一实施例,提供一种渔具浮子绳100举例说明于图1的局部立体示意图。一种渔具浮子绳100包含一模组串接芯110以及一编织包覆绳120。该编织包覆绳120以交错编织的方式包覆该模组串接芯110。该模组串接芯110举例说明于图2的局部立体示意图。
如图2所示,该模组串接芯110等距串接有多个浮子130。图3A、3B与3C分别为一浮子130的立体示意图、侧视示意图与前视示意图。每一浮子130具有一本体131,由该本体131的两端皆一体连接有一颈部132与一端部133。该颈部132的径向剖切尺寸D2小于该本体131的径向剖切尺寸D1且亦小于该端部133的径向剖切尺寸D3(如图3C所示),利用不同的径向剖切尺寸借以减少该些浮子130在该编织包覆绳120中的滑动。其中「轴向」指为同一浮子130中两端部133之间的方向,「径向」指为垂直于「轴向」的方向或平面。在此所称的「径向剖切尺寸」为某物以垂直于轴向的剖切得到的最大尺寸,该浮子130的各部位「径向剖切尺寸」可由图3C的浮子轴向前视示意图观察得知。此外,该模组串接芯110为可曲折的串接物体,用以卷收保存。该模组串接芯110的长度可任意调整的变化,以符合渔具浮子绳不同长度的需求。该浮子130的材质密度可为小于水或海水的发泡体,以浮于水面之上。该本体131的单位长度可大于该颈部132的单位长度与该端部133的单位长度。再如图3A及3B所示,该些本体131的形状为圆柱体,故该些浮子130可具有能达到较佳浮子作用的体积,且该些浮子130的转动不会造成该编织包覆绳120的损伤。
再如图1所示,该编织包覆绳120可等间距地包覆该些浮子130。该编织包覆绳120的材质可为防水塑胶,且可利用圆编机多股交错编织而成。该编织包覆绳120包覆该模组串接芯110的方式为交错编织,所称的「交错编织」为该模组串接芯110先串接成形,并作为编织形成该编织包覆绳120的芯线,利用多股细丝交错并编织在该模组串接芯110的周边,以形成该编织包覆绳120,故对于该些浮子130可以得到良好的包覆效果与自动化编织作业。「交错编织的方式包覆」的动词界定应不包含先形成该编织包覆绳120再塞入该模组串接芯110(或该些浮子130)的操作。
如图2所示,在本实施例中,该模组串接芯110更包含多个模组扣接器140。图4A、4B与4C分别为一模组扣接器140的立体示意图、侧视示意图与前视示意图,每一模组扣接器140具有一可曲折线体141以及多个连接于该可曲折线体141两端的挖空扣体142,以容置该些端部133,该些挖空扣体142相对远离对应的模组扣接器140的中心点并且具有一U型缺口扣槽143,以扣接该些颈部 132,借此达到该些浮子130的等距串接。该可曲折线体141随着该编织包覆绳120曲折而曲折,以有效维持该些浮子130的间距。该模组扣接器140的材质可为防水塑胶。该可曲折线体141的延伸强度大于该编织包覆绳120的编织拉伸强度。该些挖空扣体142的形状可为刚好容置并贴合该些端部133的形状,如西洋梨形。该U型缺口扣槽143的槽剖切尺寸可小于该本体131的径向剖切尺寸D1且亦小于该端部133的径向剖切尺寸D3,故该U型缺口扣槽143可扣接在该颈部132。再如图2所示,依选用的模组扣接器140的不同变化,该些可曲折线体141的单位长度大于该些浮子130的单位长度,亦可等于或小于该些浮子130的单位长度,使得该些浮子130等距串接的间距可得到控制。
再如图4A至4C所示,该些挖空扣体142为半罩式,并且该U型缺口扣槽143的开口两侧具有弹性夹合的扣点144,故该U型缺口扣槽143可轻易扣合对应的颈部132。两相对的扣点144小于该颈部132的径向剖切直径。该扣点144可增加该模组扣接器140在该颈部132的卡合程度。该些挖空扣体142的半罩式形状有助于该模组扣接器140与该浮子130的模组结合与脱离。较佳地,该些挖空扣体142的侧面为半切且往该U型缺口扣槽的开口倾斜的斜边145(如图4B所示),以加强该U型缺口扣槽143对该颈部132的扣合强度。
再如图3A及3B所示,较佳地,该端部133的形状为圆球体,故该些浮子130的转动不会造成该端部133由对应扣接的挖空扣体142脱出,并可减少对该编织包覆绳120的破坏。如图3C所示,该端部133的径向剖切尺寸D3小于该本体131的径向剖切尺寸D1,以使该挖空扣体142的径向剖切尺寸为不突出于该本体131的径向剖切尺寸D1。故该端部133不易由该挖空扣体142脱出。
图5为该渔具浮子绳100在组合于一渔网的示意图,该渔网10包含多个网线11构成的网本体、一上网绳12以及一下网绳13,其中该上网绳12位于网本体的上缘,该下网绳13位于网本体的下缘。该渔具浮子绳100利用多个上网绳车缝处12A结合至该上网绳12;一渔具沉子绳20利用多个下网绳车缝处13A结合至该下网绳13。当该渔网10丢置于海面,由该些网线11构成的网本体将被拉伸。而收回该渔网10时,该渔具浮子绳100不会卡住该些网线11。
因此,本发明揭示一种渔具浮子绳,借由模组串接芯的创新组合,以快速连接头方式的简单动作,该些浮子130与该些模组扣接器140能快速的接合成一条模组串接芯110,来作为圆编机的中心线进而包覆成该渔具浮子绳100,达到在编织包覆绳的形成过程中同时等距包覆浮子的自动化制作。并且,达到多个浮子130可等距间距地自动化包覆于该渔具浮子绳100中的功效,能使用一般圆编机来制作渔具浮子绳100,而该些浮子130之间的间距可依据选定的模组扣接器140作调整与控制,且不需要专用的浮子绳编织设备。
依据本发明的第二实施例,提供一种渔具浮子绳200举例说明于图6的局部立体示意图,其中对应于第一实施例相同名称与功能的元件以第一实施例的元件图号表示,并且不再赘述其细部相同结构。一种渔具浮子绳200包含一模组串接芯110以及一编织包覆绳120。该编织包覆绳120以交错编织的方式包覆该模组串接芯110。该模组串接芯110举例说明于图7的局部立体示意图。
如图7所示,该模组串接芯110等距串接有多个浮子230。图8A、8B与8C分别为一浮子130的立体示意图、侧视示意图与前视示意图。每一浮子230具有一本体231,由该本体231的两端皆一体连接有一颈部132与一端部133,其中该颈部132的径向剖切尺寸D2小于该本体231的径向剖切尺寸D1且亦小于该端部133的径向剖切尺寸D3(如图8C所示)。该浮子230的材质密度可为小于水或海水的发泡体,以浮于水面之上。再如图8A及8B所示,该些本体231的形状可为橄榄球体,故该些浮子230更有利于该编织包覆绳120的包覆。
如图7所示,在本实施例中,该模组串接芯110较佳地更包含多个模组扣接器140,每一模组扣接器140可具有一可曲折线体141以及多个连接于该可曲折线体141两端的挖空扣体142,以容置该些端部133,该些挖空扣体142具体地相对远离对应的模组扣接器140的中心点并且具有一U型缺口扣槽143,以扣接该些颈部132。借此达到该些浮子230的等距串接。
较佳地,该端部133的形状可为圆球体,故该些浮子230的转动不会造成该端部133由对应扣接的挖空扣体142脱出。此外,该端部133的径向剖切尺寸D3系具体地小于该本体231的径向剖切尺寸D1,以使该挖空扣体142的径向剖切尺寸为不突出于该本体131的径向剖切尺寸D1。故该端部133不易由该挖空扣体142脱出。
依据本发明的第三实施例,提供一种渔具浮子绳举例说明于图9的模组串接芯的局部立体示意图,其中对应于第一实施例相同名称与功能的元件以第一实施例的元件图号表示,并且不再赘述其细部相同结构。一种渔具浮子绳包含一模组串接芯310以及一编织包覆绳。相同于第一实施例,该编织包覆绳以交错编织的方式包覆该模组串接芯310。
再如图9所示,该模组串接芯310等距串接有多个浮子130,每一浮子130具有一本体131,由该本体131的两端皆一体连接有一颈部132与一端部333,其中该颈部132的径向剖切尺寸小于该本体131的径向剖切尺寸且亦小于该端部333的径向剖切尺寸。该端部333的形状可为长度小于该本体131的圆柱体。
如图9所示,在本实施例中,该模组串接芯310可更包含一系线311,车缝连结该些浮子130,使得该些浮子130为低成本等距串接。该系线311的材质可为合成纤维,如尼龙线。
再如图9所示,该系线311可车缝连结至该些浮子130的该些端部333中朝向同一串接方向的端部333,借以快速地达到该些浮子130为低成本等距串接。该系线311车缝连结至该些浮子130之处为一车缝连结处312。在一变化实施例中,该些浮子130或可置换为双头锥形的浮子,一系线直接车缝连结至浮子的本体。
依据本发明的第四实施例,提供一种渔具浮子绳举例说明于图10的模组串接芯的局部立体示意图,其中对应于第一实施例相同名称与功能的元件以第一实施例的元件图号表示,并且不再赘述其细部相同结构。一种渔具浮子绳包含一模组串接芯410以及一编织包覆绳。相同于第一实施例,该编织包覆绳以交错编织的方式包覆该模组串接芯410。
再如图10所示,该模组串接芯410等距串接有多个浮子430,每一浮子430具有一本体131,由该本体131的两端皆一体连接有一端部433,其中该端部433的径向剖切尺寸小于该本体131的径向剖切尺寸。该端部433的形状可为长度与直径皆小于该本体131的圆柱体。在本实施例中,该模组串接芯410可更包含一系线411,车缝连结该些浮子430的端部433,使得该些浮子430为低成本等距串接。该系线411车缝连结至该些浮子430之处为一车缝连结处412。
较佳地,由该本体131至该端部433之间形成为一收敛弧面434,有利于该编织包覆绳包覆该些浮子430并可扩大该些浮子430的体积。
依据本发明的第五实施例,提供一种渔具浮子绳举例说明于图11的模组串接芯的局部立体示意图,其中对应于第一实施例相同名称与功能的元件以第一实施例的元件图号表示,并且不再赘述其细部相同结构。一种渔具浮子绳包含一模组串接芯510以及一编织包覆绳。相同于第一实施例,该编织包覆绳以交错编织的方式包覆该模组串接芯510。
再如图11所示,该模组串接芯510等距串接有多个浮子530,每一浮子530具有一本体131,由该本体131的两端皆一体连接有一端部533,其中该端部533的径向剖切尺寸小于该本体131的径向剖切尺寸。该端部533的形状可为长度与直径皆小于该本体131的圆柱体。在本实施例中,该模组串接芯510可更包含一系线511,车缝连结该些浮子530的端部533,使得该些浮子530为低成本等距串接。该系线511车缝连结至该些浮子530之处为一车缝连结处512。
较佳地,由该本体131至该端部533之间形成为一收敛锥面534,有利于该编织包覆绳包覆该些浮子530,并能减少该浮子530的本体131对编织包覆绳的损伤与偏移。
依据本发明的第六实施例,提供一种渔具浮子绳600举例说明于图12的局部立体示意图,其中对应于第一实施例相同名称与功能的元件以第一实施例的元 件图号表示,并且不再赘述其细部相同结构。一种渔具浮子绳600包含一模组串接芯610以及一编织包覆绳120。该编织包覆绳120以交错编织的方式包覆该模组串接芯610。
如图12所示,该模组串接芯610等距串接有多个浮子630。每一浮子630具有一本体,由该本体631的两端皆连接有一颈部132与一端部133。在本实施例中,其中至少一浮子630的本体为一浮力链,其由多个本体链单元631串连形成,以增长该渔具浮子绳600的强浮力区段。其中该颈部132的径向剖切尺寸小于该本体的本体链单元631的径向剖切尺寸且亦小于该端部133的径向剖切尺寸。相邻本体链单元631的间与最侧边本体链单元631至相邻端部133的串连关系可为一体连接、成形后线绑接、成形后中心线穿接、成形时中心线内置模覆、勾接或环扣接。
如图12所示,在本实施例中,该模组串接芯610较佳地更包含多个模组扣接器140,每一模组扣接器140可具有一可曲折线体141以及多个连接于该可曲折线体141两端的挖空扣体142,以容置该些端部133,该些挖空扣体142具体地相对远离对应的模组扣接器140的中心点并且具有一U型缺口扣槽143,以扣接该些颈部132。借此达到该些浮子630的等距串接。其中,该些挖空扣体142可为水滴形,以达到对该些端部133的较佳容置效果。该可曲折线体141的长度较佳地大于相邻本体链单元631的间隙,以提供该渔具浮子绳600的弱浮力区段。
以上所述实施例仅是为充分说明本发明而所举的较佳的实施例,本发明的保护范围不限于此。本技术领域的技术人员在本发明基础上所作的等同替代或变换,均在本发明的保护范围之内。本发明的保护范围以权利要求书为准。

Claims (19)

  1. 一种渔具浮子绳,其特征在于,包含:
    一模组串接芯,等距串接有多个浮子,每一浮子具有一本体,由该本体的两端皆一体连接有一颈部与一端部,其中该颈部的径向剖切尺寸小于该本体的径向剖切尺寸且亦小于该端部的径向剖切尺寸;以及
    一编织包覆绳,以交错编织的方式包覆该模组串接芯。
  2. 如权利要求1所述的渔具浮子绳,其特征在于,该模组串接芯更包含多个模组扣接器,每一模组扣接器具有一可曲折线体以及多个连接于该可曲折线体两端的挖空扣体,以容置该些端部,该些挖空扣体相对远离对应的模组扣接器的中心点并且具有一U型缺口扣槽,以扣接该些颈部。
  3. 如权利要求2所述的渔具浮子绳,其特征在于,该些挖空扣体为半罩式,并且该U型缺口扣槽的开口两侧具有弹性夹合的扣点。
  4. 如权利要求3所述的渔具浮子绳,其特征在于,该端部的形状为圆球体。
  5. 如权利要求4所述的渔具浮子绳,其特征在于,该端部的径向剖切尺寸小于该本体的径向剖切尺寸,以使该挖空扣体的径向剖切尺寸为不突出于该本体的径向剖切尺寸。
  6. 如权利要求3所述的渔具浮子绳,其特征在于,该些挖空扣体的侧面为半切且往该U型缺口扣槽的开口倾斜的斜边。
  7. 如权利要求1所述的渔具浮子绳,其特征在于,该模组串接芯更包含一系线,车缝连结该些浮子。
  8. 如权利要求7所述的渔具浮子绳,其特征在于,该系线车缝连结至该些浮子的该些端部中朝向同一串接方向的端部。
  9. 如权利要求1至8任一项所述的渔具浮子绳,其特征在于,该些本体的形状为圆柱体。
  10. 如权利要求1至8任一项所述的渔具浮子绳,其特征在于,该些本体的形状为橄榄球体。
  11. 一种渔具浮子绳,其特征在于,包含:
    一模组串接芯,等距串接有多个浮子,每一浮子具有一本体;以及
    一编织包覆绳,以交错编织的方式包覆该模组串接芯。
  12. 如权利要求11所述的渔具浮子绳,其特征在于,该模组串接芯更包含一系线,车缝连结该些浮子。
  13. 如权利要求12所述的渔具浮子绳,其特征在于,由该本体的两端皆一体连接有一端部,该端部的径向剖切尺寸小于该本体的径向剖切尺寸,该系线车缝连结至该些浮子同一侧的该些端部。
  14. 如权利要求11或12所述的渔具浮子绳,其特征在于,由该本体的两端皆一体连接有一端部,该端部的径向剖切尺寸小于该本体的径向剖切尺寸,由该本体至该端部之间形成为一收敛弧面。
  15. 如权利要求11或12所述的渔具浮子绳,其特征在于,由该本体的两端皆一体连接有一端部,该端部的径向剖切尺寸小于该本体的径向剖切尺寸,由该本体至该端部之间形成为一收敛锥面。
  16. 一种渔具浮子绳,其特征在于,包含:
    一模组串接芯,等距串接有多个浮子,每一浮子具有一本体,由该本体的两端皆连接有一颈部与一端部,其中该颈部的径向剖切尺寸小于该本体的径向剖切尺寸且亦小于该端部的径向剖切尺寸,其中该模组串接芯更包含多个模组扣接器,每一模组扣接器具有一可曲折线体以及多个连接于该可曲折线体两端的挖空扣体,以容置该些端部,该些挖空扣体相对远离对应的模组扣接器的中心点并且具有一U型缺口扣槽,以扣接该些颈部;以及
    一编织包覆绳,以交错编织的方式包覆该模组串接芯。
  17. 如权利要求16所述的渔具浮子绳,其特征在于,该些挖空扣体为水滴形。
  18. 如权利要求16或17所述的渔具浮子绳,其特征在于,该些浮子中至少一个的本体为一浮力链,其由多个本体链单元串连形成。
  19. 如权利要求18所述的渔具浮子绳,其特征在于,该可曲折线体的长度大于相邻本体链单元的间隙。
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CN87216606U (zh) * 1987-12-12 1988-08-17 杨启榕 渔网浮(沉)纲
CN2338975Y (zh) * 1998-06-01 1999-09-22 杨启榕 渔网沉绳
TWM256071U (en) * 2004-05-11 2005-02-01 Yu-Chung Tsai Improving structure of fishing net
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