JPH077730Y2 - Fishing line sedimentation speed adjustment float - Google Patents

Fishing line sedimentation speed adjustment float

Info

Publication number
JPH077730Y2
JPH077730Y2 JP1989113012U JP11301289U JPH077730Y2 JP H077730 Y2 JPH077730 Y2 JP H077730Y2 JP 1989113012 U JP1989113012 U JP 1989113012U JP 11301289 U JP11301289 U JP 11301289U JP H077730 Y2 JPH077730 Y2 JP H077730Y2
Authority
JP
Japan
Prior art keywords
fishing line
float
insertion hole
fishing
holding groove
Prior art date
Legal status (The legal status 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 status listed.)
Expired - Lifetime
Application number
JP1989113012U
Other languages
Japanese (ja)
Other versions
JPH0354176U (en
Inventor
憲子 今在家
正直 安田
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Individual
Original Assignee
Individual
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 Individual filed Critical Individual
Priority to JP1989113012U priority Critical patent/JPH077730Y2/en
Publication of JPH0354176U publication Critical patent/JPH0354176U/ja
Application granted granted Critical
Publication of JPH077730Y2 publication Critical patent/JPH077730Y2/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Description

【考案の詳細な説明】[Detailed description of the device] 【産業上の利用分野】[Industrial applications]

本考案は、釣糸に直接取付けておくことにより、海中,
水中への投入時における釣糸の沈降速度したがって餌の
沈降速度を調整しうる釣糸沈降速度調整浮子に関するも
のである。
The present invention can be installed under the sea by attaching it directly to the fishing line.
The present invention relates to a fishing line sedimentation speed adjusting float capable of adjusting the sedimentation speed of a fishing line and thus the sedimentation speed of a bait when it is put into water.

【従来の技術】[Prior art]

一般に、浮子は、これを浮子糸を介して連結した棒状体
を釣糸に挿通させたゴム環に差込むことによって、釣糸
に取付けるようになっている。 ところで、釣糸を海中又は水中に投入すると、その沈降
は、概ね、浮子による浮力と釣針及び錘の重量とがバラ
ンスされた時点で停止されるが、釣糸の沈降速度つまり
釣針に着けた餌の沈降速度は、錘の重量等の条件によっ
て或る程度異なるものの、餌のみが海中又は水中を自然
に沈降していく場合(例えば、撒き餌を行なった場合)
の速度(以下「自然沈降速度」という)に比して極めて
高速である。 このため、釣糸の投入領域における魚がチヌ等の敏感な
魚である場合には、餌が釣針に着けられたものであるか
どうか察知されてしまうことになる。したがって、釣師
の技量が如何に優れていたとしても、余程の運に恵まれ
ない限り、チヌ等の敏感な魚はこれを釣り上げることが
できない。 このように、釣糸の沈降速度は極めて重要な釣り条件で
ある。
Generally, the float is attached to the fishing line by inserting a rod-shaped body, which is connected to the float via a floating line, into a rubber ring inserted through the fishing line. By the way, when the fishing line is put into the sea or water, the settling is generally stopped when the buoyancy of the float and the weight of the hook and the weight are balanced, but the sinking speed of the fishing line, that is, the settling of the bait on the hook Although the speed will vary to some extent depending on the weight and other conditions, only the bait will naturally settle in the sea or in the water (for example, when the bait is used)
The speed is extremely high as compared with the speed (hereinafter referred to as "natural sedimentation speed"). For this reason, when the fish in the fishing line input area is a sensitive fish such as the Chinese croaker, it will be detected whether or not the bait is attached to the hook. Therefore, no matter how good the fisherman's skill is, sensitive fish such as chinu cannot catch it unless they are lucky enough. Thus, the sedimentation velocity of the fishing line is a very important fishing condition.

【考案が解決しようとする課題】[Problems to be solved by the device]

しかしながら、従来の浮子によっては、釣糸の沈降速度
を調整することができず、敏感な魚については良好に対
処し得ない。勿論、錘を軽くすることによって沈降速度
を或る程度小さくすることは可能であるが、錘の軽量化
には限度があり、自然沈降速度に近づけることは不可能
である。 本考案は、かかる点に鑑みて、釣糸したがって餌の沈降
速度を自由に調整することができる釣糸沈降速度調整浮
子を提供することを目的とするものである。
However, the conventional float cannot adjust the sinking speed of the fishing line, and cannot deal well with sensitive fish. Of course, it is possible to reduce the sedimentation velocity to some extent by making the weight lighter, but there is a limit to the weight reduction of the weight, and it is impossible to approach the natural sedimentation velocity. In view of such a point, the present invention has an object to provide a fishing line sedimentation speed adjusting float capable of freely adjusting the sedimentation speed of a fishing line, that is, a bait.

【課題を解決するための手段】[Means for Solving the Problems]

この課題を解決した本考案の釣糸沈降速度調整浮子は、
両端部を、夫々、釣糸挿通孔を穿設した釣糸保持部に形
成すると共に、中央部を、釣糸挿通孔の軸線方向に貫通
し且つ浮子周面に開口する釣糸挾持溝を切設した釣糸固
定部に形成し、更に釣糸固定部と各釣糸保持部との間
に、各々、浮子周面に開口して一方の釣糸挿通孔から他
方の釣糸挿通孔に至る釣糸部分を釣糸挾持溝内に誘導さ
せる釣糸誘導部を形成して、前記釣糸部分を素材の弾性
を利用して釣糸挾持溝内に挾持固定させるように構成し
たものである。この浮子は、水又は海水と略同一比重若
しくはこれより定比重のプラスチック材で成形されてい
る。
The fishing line sedimentation velocity adjusting float of the present invention which solves this problem,
Both ends are formed in a fishing line holding portion having a fishing line insertion hole, and a fishing line fixing groove is formed by cutting a fishing line holding groove that penetrates the central portion in the axial direction of the fishing line insertion hole and opens on the peripheral surface of the float. Part of the fishing line, and between the fishing line fixing part and each fishing line holding part, the fishing line portion that opens from the one surface of the float to the other fishing line insertion hole is guided to the fishing line holding groove. The fishing line guiding portion is formed, and the fishing line portion is configured to be held and fixed in the fishing line holding groove by utilizing the elasticity of the material. This float is made of a plastic material having substantially the same specific gravity as water or seawater or a constant specific gravity.

【作用】[Action]

釣糸沈降速度調整浮子は、次のようにして釣糸の任意位
置に容易に且つ確実に取付けておくことができる。 まず、釣糸を両釣糸挿通孔に挿通させる。この挿通は、
釣糸端を一方の釣糸挿通孔から一方の釣糸誘導部を介し
て浮子周面上つまり釣糸固定部上へと導き、更に他方の
釣糸誘導部から他方の釣糸挿通孔へと導くことによっ
て、容易に行いうる。 この状態では、釣糸を浮子に対して自由にスライドさせ
ることができ、浮子の取付位置を任意に設定できる。 そして、釣糸固定部上に位置する釣糸部分を釣糸挾持溝
の開口部に誘導した上で、浮子の両側から釣糸を引張る
と、上記釣糸部分が釣糸挾持溝内に食込んでいく。その
結果、釣糸は浮子構成材自身の弾性力により釣糸挾持溝
に挾持固定され、浮子を釣糸の設定位置に確実に固定す
ることができる。このとき、釣糸は釣糸挾持溝の対向壁
面間に挾持されるにすぎないから、浮子固定により損傷
したりする虞れはない。 複数個の浮子を、釣糸に適当間隔を隔てて取付けておく
と、浮子が水又は海水と略同一比重若しくはこれより低
比重のプラスチック材からなるものであるから、釣糸を
水中又は海中に投入した場合、浮子の浮力によって釣糸
したがって餌の沈降速度を小さくすることができる。こ
の沈降速度は、取付ける浮子数によって自由に調整で
き、自然沈降速度に対応させることが可能である。な
お、かかる浮子群のうち水面,海面上に浮いた浮子は、
浮子本体の機能を発揮するから、通常の浮子はこれを格
別必要としない。 したがって、チヌ等の敏感な魚に対しても、釣針に着い
ている餌であることを察知させることなく、容易に釣り
上げることができる。
The fishing line sinking speed adjusting float can be easily and surely attached to an arbitrary position of the fishing line as follows. First, the fishing line is inserted into both fishing line insertion holes. This insertion is
By guiding the fishing line end from one fishing line insertion hole to the floating surface of the float, that is, on the fishing line fixing part via one fishing line guiding part, and further guiding it from the other fishing line guiding part to the other fishing line insertion hole. You can do it. In this state, the fishing line can be freely slid on the float, and the mounting position of the float can be set arbitrarily. Then, when the fishing line portion located on the fishing line fixing portion is guided to the opening of the fishing line holding groove and the fishing line is pulled from both sides of the float, the fishing line portion bites into the fishing line holding groove. As a result, the fishing line is held and fixed in the fishing line holding groove by the elastic force of the float component member itself, and the float can be reliably fixed to the set position of the fishing line. At this time, since the fishing line is only held between the opposing wall surfaces of the fishing line holding groove, there is no possibility that the fishing line will be damaged by fixing the float. If a plurality of floats are attached to the fishing line at appropriate intervals, the float is made of a plastic material having substantially the same specific gravity or a specific gravity lower than that of water or seawater. In this case, the sedimentation speed of the fishing line and thus the bait can be reduced by the buoyancy of the float. This settling speed can be freely adjusted by the number of floats attached, and can correspond to the natural settling speed. The floats floating on the water surface and the sea surface in the float group are
The normal float does not need this because it fulfills the function of the float itself. Therefore, it is possible to easily catch even a sensitive fish such as a Chinese croaker without knowing that the bait is attached to the fishing hook.

【実施例】【Example】

以下、本考案の構成を第1図〜第5図に示す実施例に基
づいて具体的に説明する。 この実施例の釣糸沈降速度調整浮子1は、第1図〜第3
図に示す如く、両端部である釣糸保持部2,2と中央部で
ある釣糸固定部3と両部2,3間に夫々形成された釣糸誘
導部4,4とからなり、水又は海水と略同一比重若しくは
これより低比重のプラスチック材により、両端部を先窄
まり状とした略流線形状に一体成形されている。 釣糸保持部2,2には、第1図及び第2図に示す如く、浮
子1の中心部を貫通する釣糸挿通孔5,5′が形成されて
いる。これらの釣糸挿通孔5,5′の形状は、釣糸6の挿
通容易性及び保持確実性を共に担保すべく工夫されてい
る。すなわち、第3図及び第5図に示す如く、一方の釣
糸挿通孔5を内方に窄まる截頭円錐形状となし、他方の
釣糸挿通孔5′を一方の挿通孔5の軸線か偏心させた円
柱形状となし、釣糸6を一方の挿通孔5から他方の挿通
孔5′へと容易に挿通させうると共に、釣糸6を、後述
する釣糸挾持溝7による保持と相俟って、一方の挿通孔
5の最小径端の内周面5aと他方の挿通孔5′の偏心側の
内周面5′aとで大きくガタつくことなく保持させうる
ように図っている。 釣糸固定部3には、釣糸挿通孔5,5′の軸線方向に貫通
し且つ浮子周面1aに開口する釣糸挾持溝7が切設されて
いる。この釣糸挾持溝7は、第4図及び第5図に示す如
く、浮子周面1a上の開口部7aから溝底部7bへと漸次溝幅
を小さくした略V字形状に構成されており、釣糸挿通孔
5の軸線が通過する中央部7cにおいては、その溝幅を釣
糸径より若干狭く設定してある。この釣糸挾持溝7の溝
幅は、使用する釣糸6の太さに応じて適宜に設定してお
くが、極細の釣糸6を使用する場合には、例えば第6図
に示す如く、釣糸挾持部3を浮子成形後に加熱プレスす
ることによって、溝7の中央部7cにおいて対向する溝壁
面が殆ど接着するようにしておけばよい。 各釣糸誘導部4は、第3図及び第4図に示す如く、釣糸
保持部2及び釣糸固定部3の対向面を浮子周面1aへと開
放させるべく断面U字状に形成されていて、一方の釣糸
挿通孔5から他方の釣糸挿通孔5′に至る釣糸部分6aを
釣糸挾持溝7内に誘導させうる構造となされている。 以上のように構成された釣糸沈降速度調整浮子1は、釣
糸6の任意位置に容易に且つ確実に取付けることができ
る。 すなわち、釣糸6を一方の釣糸挿通孔5に挿通させた釣
糸6を、第3図に一点鎖線で示すように、一方の釣糸誘
導部4から釣糸固定部3上に引出し、更に他方の釣糸誘
導部4から他方の釣糸挿通孔5′に挿通させる。 そして、この状態から、釣糸固定部3上の釣糸部分6aを
釣糸挾持溝7の開口部7aに導いた上で、浮子1の両側か
ら釣糸6を引張って、釣糸6を釣糸挾持溝7内に食い込
ませていく。 この食い込みが、第3図に二点鎖線で示すように、釣糸
挾持溝7の中央部7cに至ると、この中央部7cの溝幅は釣
糸径より狭小となっているから、釣糸1は一直線をなし
て確実に挾持固定される。この挾持力は浮子1の構成材
たるプラスチック材自身の有する弾性力によって得られ
る。 このようにして、浮子1を、釣糸6を損傷させることな
く、任意の位置に確実に固定することができる。なお、
浮子1を取外す場合や浮子位置を変更したい場合には、
挾持されている釣糸部分6aを釣糸挾持溝7から離脱させ
ればよい。これは、各釣糸誘導部4に存在する釣糸部分
を引張ることにより容易に行いうる。 このようにして浮子1の釣糸6への取付けを簡便に行う
ことができるから、釣糸6に取付ける浮子1の数及びそ
の取付位置,取付間隔を適当に設定することにより、錘
8とのバランスを自由に調整でき、釣糸6を海中,水中
に投入した場合における、釣糸6の沈降速度つまり釣針
9に着けた餌の沈降速度を、自由に調整することができ
る。 例えば、第7図又は第8図に示す如く、適当数の浮子1
…を錘8の近傍から適当間隔を隔てて釣糸6に取付け
て、餌の沈降速度が自然沈降速度若しくはこれに近い速
度となるようにすると、チヌ等の敏感な魚をも容易に釣
り上げることができる。このように複数の浮子1…を釣
糸6に取付けた場合、通常の浮子を併せて使用してもよ
いが、海面,水面上に浮く浮子1が通常の浮子と同様の
機能を発揮することから、一般には、通常の浮子は格別
必要としない。 ところで、通常の浮子の場合、釣糸に直接取付けるもの
ではなく、冒頭で述べた如く浮子糸を介して取付けるも
のであるから、風や波の影響を受け易く、所謂魚の当た
りをキャッチすることが困難である。特に、川釣りの場
合、水の流れにより釣糸の方向を見失うことがある。 しかしながら、上記した如く、浮子1…を釣糸6に直接
取付けるようにしておくと、第7図に示す海,池釣りの
場合でも、第8図に示す川釣りの場合でも、風や波の影
響を受けることが殆どなく、魚を当たりを正確にキャッ
チすることができる。しかも、複数の浮子1…を所定間
隔で取付けているため、川釣りの場合にも釣糸6の方向
を見失うことがない。 なお、本考案に係る釣糸沈降速度調整浮子1の構成は上
記実施例に限定されるものではなく、種々の変形が可能
である。例えば、浮子1に、通常の浮子を取付けるため
の取付部を設けるようにしてもよい。また、浮子1は、
釣糸6の投擲,引上げ等を妨げない程度の大きさとし、
水との抵抗を極力小さくすべく流線形状としておくこと
が好ましい。
Hereinafter, the structure of the present invention will be described in detail with reference to the embodiments shown in FIGS. The fishing line sinking speed adjusting float 1 of this embodiment is shown in FIGS.
As shown in the figure, it is composed of fishing line holding parts 2 and 2 at both ends, a fishing line fixing part 3 at the center, and fishing line guiding parts 4 and 4 formed between both parts 2 and 3, respectively. A plastic material having substantially the same specific gravity or a specific gravity lower than that is integrally molded into a substantially streamlined shape with both ends tapered. As shown in FIG. 1 and FIG. 2, the fishing line holding portions 2, 2 are provided with fishing line insertion holes 5, 5 ′ that penetrate the center of the float 1. The shapes of these fishing line insertion holes 5 and 5'are devised so as to ensure both easy insertion and reliable holding of the fishing line 6. That is, as shown in FIGS. 3 and 5, one of the fishing line insertion holes 5 is formed into a truncated cone shape that is narrowed inward, and the other fishing line insertion hole 5 ′ is eccentric with the axis line of the one insertion hole 5. In addition, the fishing line 6 can be easily inserted from the one insertion hole 5 to the other insertion hole 5 ', and the fishing line 6 is retained by the fishing line holding groove 7 which will be described later. The inner peripheral surface 5a at the minimum diameter end of the insertion hole 5 and the inner peripheral surface 5'a on the eccentric side of the other insertion hole 5'can be held without significant rattling. The fishing line fixing portion 3 is provided with a fishing line holding groove 7 penetrating in the axial direction of the fishing line insertion holes 5 and 5 ′ and opening to the float peripheral surface 1a. As shown in FIGS. 4 and 5, the fishing line holding groove 7 is formed in a substantially V shape in which the groove width is gradually reduced from the opening 7a on the float peripheral surface 1a to the groove bottom 7b. At the central portion 7c through which the axis of the insertion hole 5 passes, the groove width is set to be slightly smaller than the fishing line diameter. The groove width of the fishing line holding groove 7 is appropriately set according to the thickness of the fishing line 6 to be used. When using the ultrafine fishing line 6, for example, as shown in FIG. It is sufficient that the wall surfaces of the grooves facing each other in the central portion 7c of the groove 7 are almost adhered to each other by heating and pressing 3 after the float forming. As shown in FIGS. 3 and 4, each fishing line guide portion 4 is formed in a U-shaped cross section so as to open the facing surfaces of the fishing line holding portion 2 and the fishing line fixing portion 3 to the float peripheral surface 1a. The fishing line portion 6a extending from one fishing line insertion hole 5 to the other fishing line insertion hole 5'can be guided into the fishing line holding groove 7. The fishing line sinking speed adjusting float 1 configured as described above can be easily and surely attached to an arbitrary position of the fishing line 6. That is, the fishing line 6 having the fishing line 6 inserted through one of the fishing line insertion holes 5 is drawn out from one fishing line guiding section 4 onto the fishing line fixing section 3 as shown by the alternate long and short dash line in FIG. The portion 4 is inserted into the other fishing line insertion hole 5 '. Then, from this state, the fishing line portion 6a on the fishing line fixing portion 3 is guided to the opening 7a of the fishing line holding groove 7, and then the fishing line 6 is pulled from both sides of the float 1 to move the fishing line 6 into the fishing line holding groove 7. Let's cut in. When this bite reaches the central portion 7c of the fishing line holding groove 7 as shown by the chain double-dashed line in Fig. 3, the groove width of this central portion 7c is narrower than the fishing line diameter. It is held and fixed securely. This holding force is obtained by the elastic force of the plastic material itself, which is a constituent material of the float 1. In this way, the float 1 can be reliably fixed at any position without damaging the fishing line 6. In addition,
If you want to remove the float 1 or change the float position,
The held fishing line portion 6a may be removed from the fishing line holding groove 7. This can be easily performed by pulling the fishing line portion existing in each fishing line guiding portion 4. Since the float 1 can be easily attached to the fishing line 6 in this manner, the balance with the weight 8 can be achieved by appropriately setting the number of the floats 1 to be attached to the fishing line 6, their attachment positions, and the attachment intervals. It can be freely adjusted, and the sinking speed of the fishing line 6, that is, the sinking speed of the bait on the fishing hook 9 when the fishing line 6 is put into the sea or water can be freely adjusted. For example, as shown in FIG. 7 or FIG.
By attaching the ... to the fishing line 6 at a proper distance from the vicinity of the weight 8 so that the sedimentation speed of the bait becomes a natural sedimentation speed or a speed close to this, it is possible to easily catch even sensitive fish such as chinen. it can. When a plurality of floats 1 ... Are attached to the fishing line 6 as described above, a normal float may be used together, but the float 1 floating on the sea surface or the water surface exhibits the same function as a normal float. , In general, ordinary floats do not need special. By the way, in the case of a normal float, it is not attached directly to the fishing line, but is attached via the float line as described at the beginning, so it is easily affected by wind and waves, and it is difficult to catch the so-called fish hit. Is. Especially in the case of river fishing, the direction of the fishing line may be lost due to the flow of water. However, as described above, if the floats 1 ... Are directly attached to the fishing line 6, the effect of wind and waves will be exerted both in the case of sea and pond fishing shown in FIG. 7 and in the case of river fishing shown in FIG. You can catch fish accurately without hitting them. Moreover, since the plurality of floats 1 ... Are attached at a predetermined interval, the direction of the fishing line 6 will not be lost in the case of river fishing. The structure of the fishing line sinking speed adjusting float 1 according to the present invention is not limited to the above embodiment, but various modifications can be made. For example, the float 1 may be provided with a mounting portion for mounting a normal float. In addition, the float 1
The size should be such that throwing and pulling of the fishing line 6 is not hindered,
A streamline shape is preferred to minimize resistance to water.

【考案の効果】[Effect of device]

以上の説明から容易に理解されるように、本考案の釣糸
沈降速度調整浮子は、釣糸にこれを損傷させることなく
極めて容易且つ確実に取付けることができるものであ
り、浮子取付位置の調整を容易に行ないうるものであ
る。したがって、釣糸に直接取付けるものであること及
び水又は海水と略同一比重若しくはこれより低比重のプ
ラスチック材で構成されたものであることとも相俟っ
て、浮子の取付数,取付位置,取付間隔を適当に設定し
たおくことにより、釣糸の沈降速度を自由に調整できる
ものである。したがって、餌を自然沈降速度若しくはこ
れに近い速度で沈降させることができ、チヌ等の敏感な
魚であってもこれを容易にを釣ることができる。 また、本考案の釣糸沈降速度調整浮子は、このように釣
糸の沈降速度を調整する機能を有するものでありなが
ら、浮子本来の機能をも当然に有するものである。 しかも、浮子本来の機能においても、従来の浮子に比し
て極めて優れたものである。すなわち、風や波の影響を
殆ど受けず、所謂魚の当たりを正確にキャッチできる。
また、複数の使用により、川釣りの場合にも、水の流れ
によって釣糸の方向を見失うようなことがない。特に、
透明度の高い場所において、顕著な使用効果を奏する。
さらに、釣糸の任意位置に取付けうることから、繊細且
つ美麗な仕掛けを作ることができる。
As can be easily understood from the above description, the fishing line sinking speed adjusting float of the present invention can be attached to the fishing line very easily and reliably without damaging it, and the float attaching position can be easily adjusted. It is possible to go to. Therefore, in combination with being directly attached to the fishing line and being made of a plastic material having substantially the same specific gravity as water or seawater or a specific gravity lower than this, It is possible to freely adjust the sinking speed of the fishing line by setting the appropriate value. Therefore, the bait can be settled at a natural sedimentation speed or a speed close to this, and even sensitive fish such as chinen can be easily caught. Further, the fishing line sinking speed adjusting float of the present invention has the function of adjusting the sinking speed of the fishing line as described above, but naturally has the original function of the float. Moreover, the original function of the float is extremely superior to that of the conventional float. That is, the so-called fish hit can be accurately caught without being affected by wind and waves.
Also, by using a plurality of fishing lines, the direction of the fishing line is not lost due to the flow of water even in river fishing. In particular,
It has a remarkable use effect in a highly transparent place.
Furthermore, since the fishing line can be attached at any position, a delicate and beautiful device can be made.

【図面の簡単な説明】[Brief description of drawings]

第1図は本考案に係る釣糸沈降速度調整浮子の一実施例
を示す斜視図、第2図はその平面図、第3図は第2図の
III-III線に沿う縦断正面図、第4図は第2図のIV-IV線
に沿う縦断側面図、第5図は第2図のV−V線に沿う縦
断側面図であり、第6図は釣糸挾持溝の変形例を示す第
5図相当の縦断側面図であり、第7図は海又は池におけ
る浮子の使用状態を示す側面図であり、第8図は川にお
ける浮子の使用状態を示す側面図である。 1……釣糸沈降速度調整浮子、2……釣糸保持部、3…
…釣糸固定部、4……釣糸誘導部、5,5′……釣糸挿通
孔、6……釣糸、6a……一方の釣糸挿通孔から他方の釣
糸挿通孔に至る釣糸部分、7……釣糸挾持溝。
FIG. 1 is a perspective view showing an embodiment of a fishing line sinking speed adjusting float according to the present invention, FIG. 2 is its plan view, and FIG. 3 is that of FIG.
A vertical sectional front view taken along line III-III, FIG. 4 is a vertical sectional side view taken along line IV-IV of FIG. 2, and FIG. 5 is a longitudinal sectional side view taken along line VV of FIG. The figure is a vertical side view corresponding to FIG. 5 showing a modified example of the fishing line holding groove, FIG. 7 is a side view showing the use state of the float in the sea or pond, and FIG. 8 is the use state of the float in the river. It is a side view which shows. 1 ... Float for adjusting fishing line sedimentation speed, 2 ... Fishing line holder, 3 ...
... Fishing line fixing part, 4 ... Fishing line guiding part, 5,5 '... Fishing line insertion hole, 6 ... Fishing line, 6a ... Fishing line portion from one fishing line insertion hole to the other fishing line insertion hole, 7 ... Fishing line Holding groove.

Claims (1)

【実用新案登録請求の範囲】[Scope of utility model registration request] 【請求項1】水又は海水と略同一比重若しくはこれり低
比重の弾性を有するプラスチック材で成形された釣糸沈
降速度の調整用浮子であって、両端部を先窄まり状とし
た略円柱状の本体の両端部を釣糸挿通孔を穿設した釣糸
保持部(2)に夫々形成すると共に、前記本体の中央部
を釣糸挿通孔の軸線方向に貫通し且つ浮子本体の周面に
開口する断面形状がほぼV字形の細幅の釣糸挾持溝
(7)を切設した釣糸固定部(3)に形成し、更に、釣
糸固定部(3)と各釣糸保持部(2)との間に、浮子周
面に開口した凹部より成り、一方の釣糸挿通孔から他方
の釣糸挿通孔に至釣糸部分を釣糸挾持溝(7)内に誘導
させる釣糸誘導部(4)を形成して、前記釣糸挾持溝
(7)内へその上方開口より挿入した釣糸部分を本体の
弾性を利用して釣糸挾持溝(7)内に挾持固定する構成
としたことを特徴とする釣糸沈降速度調整浮子。
1. A float for adjusting the sedimentation velocity of a fishing line, which is molded from a plastic material having elasticity having substantially the same specific gravity as water or seawater or a specific gravity lower than that of seawater, and has a substantially columnar shape with both ends tapered. A cross section in which both ends of the main body are formed in fishing line holding portions (2) each having a fishing line insertion hole, and the central portion of the main body penetrates in the axial direction of the fishing line insertion hole and opens on the peripheral surface of the float body. A narrow fishing line holding groove (7) having a substantially V shape is formed in the fishing line fixing portion (3), and further, between the fishing line fixing portion (3) and each fishing line holding portion (2), A fishing line guide portion (4), which is formed of a recess opened on the circumferential surface of the float and guides the most fishing line portion from one fishing line insertion hole to the other fishing line insertion hole into the fishing line holding groove (7), holds the fishing line. The fishing line portion inserted into the groove (7) from its upper opening is held by using the elasticity of the main body. (7), characterized in that a configuration in which clamping fixed in the fishing line sedimentation rate adjustment float.
JP1989113012U 1989-09-27 1989-09-27 Fishing line sedimentation speed adjustment float Expired - Lifetime JPH077730Y2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP1989113012U JPH077730Y2 (en) 1989-09-27 1989-09-27 Fishing line sedimentation speed adjustment float

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP1989113012U JPH077730Y2 (en) 1989-09-27 1989-09-27 Fishing line sedimentation speed adjustment float

Publications (2)

Publication Number Publication Date
JPH0354176U JPH0354176U (en) 1991-05-24
JPH077730Y2 true JPH077730Y2 (en) 1995-03-01

Family

ID=31661441

Family Applications (1)

Application Number Title Priority Date Filing Date
JP1989113012U Expired - Lifetime JPH077730Y2 (en) 1989-09-27 1989-09-27 Fishing line sedimentation speed adjustment float

Country Status (1)

Country Link
JP (1) JPH077730Y2 (en)

Family Cites Families (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS61170272U (en) * 1985-04-11 1986-10-22
JPS63124377U (en) * 1987-02-05 1988-08-12

Also Published As

Publication number Publication date
JPH0354176U (en) 1991-05-24

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