Fishing tools with noctilucence and fluorescence function and manufacturing method thereof
Patent Information
- Application Number
- KR1020240085449
- Authority / Receiving Office
- KR · KR
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2024-06-28
- Publication Date
- 2026-09-21
- Estimated Expiration
- 2044-06-28
Smart Images

Figure 112024070487949-PAT00001_ABST
Abstract
Description
Technology Field
[0001] The present invention relates to fishing gear and a method for manufacturing the same. More specifically, the invention relates to fishing gear and a method for manufacturing the same, wherein by simultaneously forming a phosphorescent layer and a fluorescent layer on the fishing gear, the luminescence function by the phosphorescent layer and the fluorescent layer can be simultaneously exhibited underwater, thereby stably maintaining a fish attraction effect and improving fishing results. Background Technology
[0002] Fishing is an outdoor activity that can be enjoyed by people of all ages and genders in lakes, rivers, and seas. While you can catch fish with just a fishing line and a hook, to have a diverse and satisfying fishing experience, you need not only hooks suitable for the target species but also various fishing supplies such as fishing rods, floats, sinkers, bait, and reels.
[0003] In the past, fishing baits primarily consisted of biological forms such as earthworms or shrimp; however, recently, artificial baits (hereinafter referred to as lures) designed to be more colorful and highly active underwater are mainly used.
[0004] Since fish are known to distinguish colors and some fish possess excellent eyesight like birds, lures that produce more vibrant colors compared to conventional biological baits can further increase the attraction efficiency for target fish species or cephalopods such as octopus and cuttlefish.
[0005] Fishing lures are manufactured in various shapes and forms depending on the target fish species; however, luminous lures with a high attracting effect are primarily used when targeting relatively deep and dark water layers, such as bottom, mid-layer, or deep-layer fishing. Luminous lures are generally produced by coating the surface of the lure with a luminous material.
[0006] In addition to these lures, live bait specially prepared by drying organisms such as needlefish is also widely used due to its excellent ability to attract fish. Recently, the methods of use have become very diverse, such as bundling lures and live bait together. Just like with lures, luminous live bait is also being manufactured and sold.
[0007] In addition, to target relatively deep water layers, various underwater fishing gear such as sinkers are recently being manufactured as luminous products, and different types are being used depending on the type of fishing.
[0008] However, most luminous fishing gear has a problem in that its fish-attracting effect quickly diminishes due to its relatively short duration of luminescence underwater; consequently, there is a need to develop fishing gear capable of maintaining luminescence for an extended period underwater. Prior art literature
[0009] Korean Patent Publication No. 10-2021-0111714 The problem to be solved
[0010] The present invention was developed to solve the problems of the prior art. The objective of the present invention is to provide a fishing product and a method for manufacturing the same, wherein a luminescent layer and a fluorescent layer are formed simultaneously on the fishing product, thereby enabling simultaneous luminescence by the luminescent layer and the fluorescent layer underwater. In particular, even when the luminescence function of the luminescent layer is interrupted at deep underwater depths, the luminescence function of the fluorescent layer is maintained by ultraviolet rays, and accordingly, the fish attraction effect is stably maintained, thereby improving fishing results. means of solving the problem
[0011] The present invention provides a fishing product comprising: a main body of a fishing product connected to a fishing line so as to be positioned underwater; and a light-emitting layer formed by applying a phosphorescent pigment and a fluorescent pigment to the outer surface of the main body of the fishing product.
[0012] At this time, the light-emitting layer comprises a luminescent layer formed by applying a luminescent pigment to the outer surface of the main body of the fishing tool; and a fluorescent layer formed by applying a fluorescent pigment to the outer surface of the luminescent layer, and the luminescent layer and the fluorescent layer may be formed sequentially.
[0013] In addition, the transparency of the fluorescent layer can be formed to be higher than the transparency of the phosphorescent layer.
[0014] In addition, the light-emitting layer can be formed by mixing the phosphorescent pigment and the fluorescent pigment and applying them to the outer surface of the main body of the fishing product.
[0015] In addition, the main body of the fishing equipment may include at least one of a sinker, live bait, lure, float, and fishing hook.
[0016] Meanwhile, the present invention provides a method for manufacturing the fishing equipment, comprising the steps of: preparing a main body of the fishing equipment; preparing a luminous coating solution by mixing a luminous pigment with transparent paint; applying the luminous coating solution to the outer surface of the main body of the fishing equipment; drying the main body of the fishing equipment after application of the luminous coating solution so that a luminous layer is formed on the outer surface of the main body of the fishing equipment; preparing a fluorescent coating solution by mixing a fluorescent pigment with transparent paint; applying the fluorescent coating solution to the outer surface of the luminous layer; and drying the main body of the fishing equipment after application of the fluorescent coating solution so that a fluorescent layer is formed on the outer surface of the luminous layer.
[0017] At this time, the mixing ratio of the phosphorescent pigment to the transparent paint can be set to be greater than the mixing ratio of the fluorescent pigment to the transparent paint.
[0018] In addition, in the step of preparing the fluorescent coating solution, 10 to 15 g of the fluorescent pigment can be mixed based on 500 ml of the transparent paint. Effects of the invention
[0019] According to the present invention, by simultaneously forming a phosphorescent layer and a fluorescent layer on a fishing product, the luminescence function of the phosphorescent layer and the fluorescent layer can be simultaneously exhibited underwater. Furthermore, even when the luminescence function of the phosphorescent layer is interrupted at deep underwater depths, the luminescence function of the fluorescent layer due to ultraviolet rays is maintained, thereby stably maintaining the fish attraction effect and improving the fishing results.
[0020] In addition, by sequentially forming a phosphorescent layer and a fluorescent layer on the fishing gear, the degradation of the phosphorescent layer's luminescence function can be minimized while stably maintaining the luminescence function of the fluorescent layer, thereby enabling the luminescence functions of both the phosphorescent layer and the fluorescent layer to be performed stably and simultaneously. Brief explanation of the drawing
[0021] FIG. 1 is a conceptual drawing illustrating the shape of a live bait among fishing supplies according to one embodiment of the present invention. FIG. 2 is a conceptual drawing illustrating the shape of a sinker among fishing supplies according to one embodiment of the present invention. FIG. 3 is a drawing illustrating the characteristics of the phosphorescent layer and fluorescent layer of a fishing product according to one embodiment of the present invention. FIG. 4 is a conceptual drawing illustrating different forms of the luminescent layer and fluorescent layer of a fishing product according to one embodiment of the present invention. FIG. 5 is a conceptual drawing illustrating another form of the light-emitting layer of a live bait and a sinker among fishing supplies according to another embodiment of the present invention. FIG. 6 is a flowchart illustrating a method for manufacturing fishing gear according to one embodiment of the present invention, step-by-step according to the operation flow. FIG. 7 is a drawing illustrating the manufacturing process according to the method for manufacturing fishing gear according to one embodiment of the present invention in sequence. Specific details for implementing the invention
[0022] Hereinafter, specific embodiments for implementing the present invention will be described in detail with reference to the drawings.
[0023] First, it should be noted that when assigning reference numerals to the components of each drawing, the same components are assigned the same reference numeral whenever possible, even if they are shown in different drawings. Furthermore, in describing the present invention, if it is determined that a detailed description of related known components or functions could obscure the essence of the invention, such detailed description is omitted.
[0024] Furthermore, when it is stated that one component is 'connected,' 'supported,' 'connected,' 'supplied,' 'transmitted,' or 'contacted' with another component, it should be understood that while the connection, support, connection, supply, transmission, or contact may be direct to that other component, there may also be other components present in between.
[0025] The terms used in this specification are used merely to describe specific embodiments and are not intended to limit the invention. Singular expressions include plural expressions unless the context clearly indicates otherwise.
[0026] Furthermore, it should be noted in advance that expressions such as "upper side," "lower side," and "side" in this specification are described based on the drawings, and may be expressed differently if the orientation of the object changes. For the same reason, some components in the attached drawings may be exaggerated, omitted, or schematically depicted, and the size of each component does not entirely reflect its actual size.
[0027] Additionally, terms including ordinal numbers, such as first, second, etc., may be used to describe various components, but such components are not limited by such terms. These terms are used solely for the purpose of distinguishing one component from another.
[0028] The meaning of "comprising" as used in the specification specifies certain characteristics, regions, integers, steps, actions, elements, and / or components, and does not exclude the existence or addition of other specific characteristics, regions, integers, steps, actions, elements, components, and / or groups.
[0029] FIG. 1 is a conceptual drawing illustrating the shape of a live bait among fishing supplies according to one embodiment of the present invention, FIG. 2 is a conceptual drawing illustrating the shape of a sinker among fishing supplies according to one embodiment of the present invention, FIG. 3 is a drawing illustrating the characteristics of the phosphorescent layer and fluorescent layer of a fishing supply according to one embodiment of the present invention, FIG. 4 is a conceptual drawing illustrating another shape of the phosphorescent layer and fluorescent layer of a fishing supply according to one embodiment of the present invention, and FIG. 5 is a conceptual drawing illustrating another shape of the luminescent layer of a live bait and a sinker among fishing supplies according to yet another embodiment of the present invention.
[0030] A fishing product according to one embodiment of the present invention is a fishing product capable of simultaneously exhibiting phosphorescent and fluorescent properties, comprising a main body (100) of the fishing product and a light-emitting layer (200) formed on the outer surface of the main body (100) of the fishing product.
[0031] The main body (100) of the fishing equipment may be any one of the fishing equipment connected to the fishing line so as to be positioned underwater. For example, at least one of a sinker, live bait, lure, float, or fishing hook may be applied.
[0032] The light-emitting layer (200) is a layer formed by applying a luminescent pigment and a fluorescent pigment to the outer surface of the main body (100) of the fishing equipment, and can simultaneously exhibit luminescent and fluorescent properties.
[0033] FIG. 1 illustrates an exemplary form in which a live bait (101), manufactured in a dried form such as dried needlefish, is applied to a main body (100) of a fishing tool. The live bait (101) may be manufactured in a flat form, and a light-emitting layer (200) is formed on the outer surface of the live bait (101). The live bait (101) may be in the dried form of various organisms.
[0034] FIG. 2 illustrates an exemplary form in which a sinker (102) is applied to the main body (100) of a fishing device. The sinker (102) acts as a weight and performs the function of maintaining the position of the fishing line by being suspended from the fishing line, and is generally formed in a cylindrical shape. Various shapes can be applied to the sinker (102). In one embodiment of the present invention, the upper part of the sinker (102) may be light and the lower part heavy, and a fishing line connecting clip (110) may be formed on the upper and lower parts of the sinker (102), respectively, so that the direction in which the sinker (102) is connected to the fishing line can be varied according to the user's needs.
[0035] The light-emitting layer (200) may include a light-emitting layer (210) formed by applying a light-emitting pigment to the outer surface of the fishing equipment body (100), and a fluorescent layer (220) formed by applying a fluorescent pigment to the outer surface of the light-emitting layer (210). That is, the light-emitting layer (210) may be formed first on the outer surface of the fishing equipment body (100), and then the fluorescent layer (220) may be formed on the outer surface of the light-emitting layer (210).
[0036] The phosphorescent layer (210) can be formed by applying a phosphorescent pigment. Representative compounds used as phosphorescent pigments include sulfide-based phosphorescent materials such as CaS:Bi (violet-blue emission), CaSrS:Bi (blue emission), ZnS:Cu (green emission), and ZnCdS:Cu (yellow to orange emission).
[0037] The fluorescent layer (220) can be formed by applying a fluorescent pigment. Representative fluorescent materials used as fluorescent pigments consist of transition metal compounds or rare earth compounds, and can be formed by adding an activator to the main material. For example, zinc sulfide with a copper activator added and zinc sulfide with a silver activator added are examples, and the main material is an oxide, nitride, sulfide, selenide, etc.
[0038] The fluorescent layer (220) formed by the application of a fluorescent pigment emits light when subjected to an external electromagnetic stimulus, namely, a light stimulus, and has the characteristic that when the external stimulus is stopped, the light emission phenomenon disappears immediately because the afterglow time of the fluorescent material is very short. In contrast, the phosphorescent layer (210) formed by the application of a phosphorescent pigment has the characteristic of emitting light for a long time even in dark places by absorbing energy upon receiving a stimulus of light with a relatively high level, such as electric lights or sunlight, and then converting it into visible light with a low level.
[0039] According to one embodiment of the present invention, the fluorescent layer (220) may be formed to have the characteristic of emitting purple light upon receiving a light stimulus, and the phosphorescent layer (210) may be formed to have the characteristic of emitting green light for a long time by accumulating a light stimulus.
[0040] At this time, the transparency of the fluorescent layer (220) may be formed to be higher than the transparency of the phosphorescent layer (210). For example, the phosphorescent layer (210) may be formed opaquely so that the internal fishing gear body (100) is not externally identifiable, and the fluorescent layer (220) may be formed transparently so that the internal phosphorescent layer (210) is externally identifiable.
[0041] As the transparency of the fluorescent layer (220) formed on the outermost layer is high in this way, external light can pass through the fluorescent layer (220) and reach the phosphorescent layer (210), and accordingly, the phosphorescent function of the phosphorescent layer (210) can be improved.
[0042] Additionally, as shown in FIG. 3, the thickness (d2) of the fluorescent layer (220) can be formed to be smaller than the thickness (d1) of the phosphorescent layer (210). This makes it easier for external light to pass through the fluorescent layer (220) and reach the phosphorescent layer (210), thereby further enhancing the phosphorescent function of the phosphorescent layer (210).
[0043] In summary, according to one embodiment of the present invention, the light-emitting layer (200) is formed such that a phosphorescent layer (210) and a fluorescent layer (220) are sequentially applied to the outer surface of the main body (100) of the fishing equipment. Since the fluorescent layer (220) located at the outermost edge is formed with relatively high transparency and a thin thickness, the reduction in the amount of light transmitted to the phosphorescent layer (210) inside can be minimized, and thereby the degradation of the phosphorescent function of the phosphorescent layer (210) can be minimized so that the phosphorescent function of the phosphorescent layer (210) can be stably maintained.
[0044] According to this configuration, the fishing equipment according to one embodiment of the present invention can emit light through the luminescent layer (210) even when reaching deep underwater depths, thereby enabling a fish attraction effect. Additionally, when the fishing equipment reaches a depth where only ultraviolet rays reach and visible light does not reach underwater, the fluorescent layer (220) emits light due to stimulation by ultraviolet rays at that depth, thereby enabling a fish attraction effect. In this case, even if the light emission of the luminescent layer (210) is interrupted due to the dissipation of the phosphorescent energy of the luminescent layer (210), the fluorescent layer (220) can continue to maintain a light-emitting state due to stimulation by ultraviolet rays. That is, when the fishing equipment is located at deep underwater depths for a long time, even if the light emission of the luminescent layer (210) is interrupted, the light emission by the fluorescent layer (220) is maintained, so the fish attraction effect can be continuously maintained.
[0045] Meanwhile, as shown in FIG. 4, a phosphorescent hole (240) penetrating the fluorescent layer (220) may be formed in a portion of the fluorescent layer (220) so that the phosphorescent layer (210) may be exposed to the outside in a portion of the fluorescent layer (220), and an odor-emitting hole (230) penetrating the fluorescent layer (220) and the phosphorescent layer (210) may be formed in a portion of the fluorescent layer (220) and the phosphorescent layer (210) so that the main body of the fishing equipment (100) may be exposed to the outside in a portion of the fluorescent layer (220) and the phosphorescent layer (210).
[0046] The phosphorescent hole (240) is intended to allow external light to be absorbed by the phosphorescent layer (210) with a higher intensity, and may be formed in a shape that penetrates a portion of the fluorescent layer (220) from the inside out. Accordingly, some of the external light is transmitted directly to the phosphorescent layer (210) through the phosphorescent hole (240) without passing through the fluorescent layer (220), so the amount of light absorbed by the phosphorescent layer (210) increases, and the phosphorescent performance of the phosphorescent layer (210) can be improved. When the phosphorescent performance of the phosphorescent layer (210) is improved, the duration of light emission of the phosphorescent layer (210) increases when external light is blocked.
[0047] The odor emission hole (230) is for external exposure of the main body of the fishing equipment (100) and may be formed in a form that simultaneously penetrates the fluorescent layer (220) and the glow-in-the-dark layer (210) in some areas. It may be preferable for the odor emission hole (230) to be formed when the live bait (101) is applied to the main body of the fishing equipment (100). As the odor emission hole (230) is formed in this way, some areas of the live bait (101) are exposed to the outside, so the odor generated from the live bait (101) is emitted more strongly to the outside, and this odor can increase the fish attraction effect.
[0048] Meanwhile, although the above description explains the configuration of the light-emitting layer (200) in which a phosphorescent layer (210) and a fluorescent layer (220) are sequentially formed on the outer surface of the main body (100) of the fishing equipment, as shown in FIG. 5, the light-emitting layer (200) may be formed by mixing a phosphorescent pigment and a fluorescent pigment and applying them to the outer surface of the main body (100) of the fishing equipment. In this case, the light-emitting layer (200) may form a single layer rather than two separate layers.
[0049] FIG. 6 is a flowchart illustrating a method for manufacturing fishing gear according to an embodiment of the present invention in steps according to the operation flow, and FIG. 7 is a drawing illustrating a manufacturing process according to a method for manufacturing fishing gear according to an embodiment of the present invention in sequence.
[0050] The present invention relates to a method for manufacturing the aforementioned fishing equipment, and may include a step of preparing a main body (100) of the fishing equipment (S10), a step of preparing a luminous coating solution (S20), a step of applying a luminous coating solution (S30), a step of forming a luminous layer through a drying process (S40), a step of preparing a fluorescent coating solution (S50), a step of applying a fluorescent coating solution (S60), and a step of forming a fluorescent layer through a drying process (S70).
[0051] In the step (S10) of preparing the main body (100) of the fishing equipment, the main body (100) of the fishing equipment to form a luminescent layer, such as live bait (10) and a sinker (102), is prepared.
[0052] In the step of manufacturing the glow-in-the-dark coating solution (S20), a glow-in-the-dark pigment is mixed into a transparent paint to manufacture the glow-in-the-dark coating solution. As described above, the glow-in-the-dark pigment may be a phosphorescent material powder that emits green light, and the transparent paint may be lacquer paint, urethane paint, or other transparent paints for gloss.
[0053] In the step of applying the luminous coating liquid (S30), the manufactured luminous coating liquid is applied to the outer surface of the main body (100) of the fishing equipment, such as live bait or a sinker. Various methods, such as a dipping method or a spray method, can be applied to the method of applying the luminous coating liquid. The dipping method can be performed by dipping the main body (100) of the fishing equipment into the luminous coating liquid stored in a separate container and then removing it; this method has the advantage of enabling uniform application of the luminous coating liquid and reducing waste of the luminous coating liquid. The spray method can be performed by spraying the luminous coating liquid onto the main body (100) of the fishing equipment through a spray gun while the main body (100) of the fishing equipment is suspended from a separate jig; this method has the advantage of enabling rapid application and a short drying time.
[0054] In the luminous layer formation step (S40), after applying the luminous coating liquid, the main body of the fishing equipment (100) is dried to form a luminous layer (210). The drying process may be carried out until the surface of the luminous layer (210) reaches a certain degree of hardening.
[0055] When a luminescent layer (210) is formed on the outer surface of the main body (100) of the fishing equipment through this process, a process of forming a fluorescent layer (220) on the outer surface of the luminescent layer (210) is subsequently performed. The process of forming the fluorescent layer includes a step of manufacturing a fluorescent coating solution (S50), a step of applying a fluorescent coating solution (S60), and a step of forming the fluorescent layer through a drying process (S70).
[0056] In the fluorescent coating solution manufacturing step (S50), a fluorescent pigment in powder form is mixed into a transparent paint to prepare a fluorescent coating solution. As described above, the fluorescent pigment may be a fluorescent material powder that emits purple light, and the transparent paint may be a lacquer paint, urethane paint, or other transparent paints for gloss.
[0057] In the fluorescent coating solution application step (S30), the manufactured fluorescent coating solution is applied to the outer surface of the luminous layer (210) formed on the main body (100) of the fishing equipment. Various methods, such as a dipping method or a spray method, can be applied to the fluorescent coating solution, and since the description of each method is the same as previously described, it is omitted here.
[0058] In the fluorescent layer formation step (S40), after applying the fluorescent coating liquid, the main body of the fishing equipment (100) is dried to form a fluorescent layer (220). The drying process may be carried out until the surface of the fluorescent layer (220) hardens.
[0059] The fluorescent coating solution manufacturing step (S50) may be performed after the phosphorescent coating solution manufacturing step (S20) rather than after the phosphorescent layer (210) is formed, and the order of execution does not matter.
[0060] In this case, as described in FIG. 3, the mixing ratio of the luminescent pigment to the transparent paint can be set to be greater than the mixing ratio of the fluorescent pigment to the transparent paint so that the transparency of the fluorescent layer (220) is formed to be higher than the transparency of the luminescent layer (210).
[0061] In addition, in the fluorescent coating solution preparation step (S50), 10 to 15 g of fluorescent powder may be mixed based on 500 ml of transparent paint. When the fluorescent powder is less than 10 g, the luminescence effect against ultraviolet light is significantly reduced, and when the fluorescent powder is 15 g or more, the luminescence effect against ultraviolet light is found to be almost the same even if the content of the fluorescent powder increases. Therefore, it may be preferable to mix 10 to 15 g of fluorescent powder based on 500 ml of transparent paint.
[0062] Meanwhile, as described in FIG. 4, odor emission holes (230) and phosphorescent holes (240) may be formed in the light-emitting layer, and to do this, as shown in FIG. 7, a step of attaching and removing a separate first screen member (310) and a second screen member (320) may be performed.
[0063] As shown in FIG. 7(a), a first screen member (310) can be attached to the outer surface of the fishing equipment body (100) before applying the luminous coating liquid to the fishing equipment body (100). In this state, as shown in FIG. 7(b), the luminous coating liquid is applied and dried, and a luminous layer (210) is formed in the area excluding the area where the first screen member (310) is attached. In this state, as shown in FIG. 7(c), a second screen member (320) can be attached to the outer surface of the luminous layer (210). Subsequently, as shown in FIG. 7(d), a fluorescent coating liquid is applied to the outer surface of the luminous layer (210) and dried, and a fluorescent layer (220) is formed in the area excluding the area where the first screen member (310) and the second screen member (320) are attached. The thickness of the first screen member (310) can be formed to be equal to or greater than the combined thickness of the phosphorescent layer (210) and the fluorescent layer (220), and the thickness of the second screen member (320) can be formed to be equal to or greater than the thickness of the fluorescent layer (220). Subsequently, as shown in FIG. 7 (e), when the first screen member (310) and the second screen member (320) are removed, an odor emission hole (230) and a phosphorescent hole (240) are formed.
[0064] The foregoing description is merely an illustrative explanation of the technical concept of the present invention, and those skilled in the art to which the present invention pertains will be able to make various modifications and variations within the scope of the essential characteristics of the present invention. Accordingly, the embodiments disclosed in the present invention are intended to explain, not limit, the technical concept of the present invention, and the scope of the technical concept of the present invention is not limited by these embodiments. The scope of protection of the present invention shall be interpreted by the claims below, and all technical concepts within an equivalent scope shall be interpreted as being included within the scope of rights of the present invention. Explanation of the symbols
[0065] 100: Fishing gear main body 101: Live bait 102: Sinker 200: Emitting layer 210: Phosphorescent layer 220: Fluorescent layer 230: Odor emission hole 240: Luminous hole 310: Missing 1st screen 320: Second screen missing
Claims
Claim 1 A method for manufacturing fishing gear, comprising the steps of: preparing a main body of fishing gear; preparing a luminous coating solution by mixing a luminous pigment into a transparent paint; applying the luminous coating solution to the outer surface of the main body of fishing gear; drying the main body of fishing gear after application of the luminous coating solution so that a luminous layer is formed on the outer surface of the main body of fishing gear; preparing a fluorescent coating solution by mixing a fluorescent pigment into a transparent paint; applying the fluorescent coating solution to the outer surface of the luminous layer; and drying the main body of fishing gear after application of the fluorescent coating solution so that a fluorescent layer is formed on the outer surface of the luminous layer. Claim 2 A method for manufacturing fishing gear according to claim 1, wherein the mixing ratio of the phosphorescent pigment to the transparent paint is set to be greater than the mixing ratio of the fluorescent pigment to the transparent paint. Claim 3 A method for manufacturing fishing gear according to claim 2, wherein 10 to 15 g of the fluorescent pigment is mixed based on 500 ml of the transparent paint in the step of manufacturing the fluorescent coating solution. Claim 4 A method for manufacturing a fishing product according to claim 1, wherein the main body of the fishing product comprises at least one of a sinker, live bait, lure, float, and fishing hook. Claim 5 Fishing gear manufactured through the method of manufacturing fishing gear of claim 1. Claim 6 delete Claim 7 delete Claim 8 delete
Citation Information
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