JP2005027628A - Device for fishing tackle - Google Patents

Device for fishing tackle Download PDF

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JP2005027628A
JP2005027628A JP2003289373A JP2003289373A JP2005027628A JP 2005027628 A JP2005027628 A JP 2005027628A JP 2003289373 A JP2003289373 A JP 2003289373A JP 2003289373 A JP2003289373 A JP 2003289373A JP 2005027628 A JP2005027628 A JP 2005027628A
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fishing
gas
fish
float
bait
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Akio Mito
昭夫 水戸
Michihiko Okamura
道彦 岡村
Masami Tanaka
正視 田中
Tadao Honda
忠夫 本田
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<P>PROBLEM TO BE SOLVED: To provide an inexpensive device for a fishing tackle capable of automatically floating/sinking hooks or a fish-gathering tool such as a ground bait-scattering container for gathering fishes within an optionally set water depth range without operating a rod up and down for solving problems such that in drabbling, since a fishing person must move a bait (fishing hooks) up and down for appealing to fishes, the load of the fishing person becomes a considerable amount, and while in float fishing, although the up and down movements of the bait (fishing hooks) are not performed, since the depth below the float is fixed, the fishing person only has to wait. <P>SOLUTION: This device for a fishing tackle is provided by installing a supplemental float or an intermediate weight and a gas-catching device below it on a fishing line delivered from a fishing rod, etc., and further below, and installing by joining a gas-releasing device for releasing the gas in water, the hooks for fishing or fish-gathering device such as the ground bait-scattering container, etc. <P>COPYRIGHT: (C)2005,JPO&NCIPI

Description

本発明は、釣餌(釣針)あるいはコマセ撒き容器等の集魚具を、所定の水中深度範囲で自動的に浮沈させることにより、釣果向上のための広範囲な棚探りと、魚へのアピールを行い、釣り人の負担を軽減するとともに釣果向上を狙う釣用仕掛け装置に関する。  The present invention performs a wide range of shelves to improve the fishing results and appeals to the fish by automatically raising and lowering a fishing bait such as a bait (fish hook) or a rice bran container in a predetermined depth range of water, The present invention relates to a fishing device that reduces the burden on an angler and improves fishing results.

所定の水中深度範囲で、釣餌(釣針)やコマセ撒き容器等の集魚具等を自動的に上昇下降させる装置は、機能的には電動リールを用いる方法が考えられる。  As a device for automatically raising and lowering fishing equipment such as fishing baits (fish hooks) and rice bracing containers within a predetermined depth range, a method using an electric reel can be considered.

しかし、電動リールは高価、比較的大きな電気パワーが必要、さらに運転音が大きい、さらには竿先真下での釣りに限られることなどから、船釣りにおいてのみ可能性がある。
脈釣り、浮き釣りが主である岸壁釣りに向く装置は無かった。
However, an electric reel is expensive, requires a relatively large electric power, has a louder driving sound, and is limited to fishing just under the tip of the reel.
There was no device suitable for quay fishing, mainly for pulse fishing and floating fishing.

釣りは、どんな釣りでも魚の居る場所(棚=深さ)に仕掛けを投入し、魚に餌(釣針)、コマセ等をアピール出きるか否かで、釣果に差が出る。浮き釣り、脈釣り等の岸壁釣りにおける釣果向上のポイントは、魚の居る棚(=深さ)での餌(釣針)、コマセ等の魚へのアピールにある。脈釣りでは、釣り人が検討をつけた深さの範囲で餌(釣針)を上下させ、魚にアピールしている。釣り人の負担はかなりのものとなる。また上下動の範囲は、竿先の上下の範囲であり数メートルの範囲に留まる。
一方、浮き釣りの場合には、餌(釣針)の上下動作は行わないので、釣り人への負担は少ないが、浮き下深さは固定され、魚が通りかかるのを待つしかない。したがって、釣果はなかなか上がらない。
In any fishing, there is a difference in fishing results depending on whether or not you can put a device in the place where the fish is located (shelf = depth) and appeal the bait (fishhook), komase, etc. to the fish. The point of fishing results improvement in quay fishing such as floating fishing and pulse fishing is in appealing to fish such as bait (fishhook) on the shelf (= depth) where fish are located and fish such as komase. In pulse fishing, bait (fishhook) is moved up and down to appeal to the fish within the depth range considered by the angler. The burden on the angler is considerable. The range of vertical movement is the range above and below the tip of the heel and remains within a few meters.
On the other hand, in the case of floating fishing, since the vertical movement of the bait (fishhook) is not performed, the burden on the angler is small, but the floating depth is fixed and there is no choice but to wait for the fish to pass. Therefore, the fishing results do not go up easily.

本発明は、釣人が竿の上下操作をしなくても、任意に設定した水中深度範囲で餌(釣針)あるいはコマセ撒き容器等の集魚具を自動浮沈(上下に移動)させることができる安価な釣用仕掛け装置を提供することを目的とする。  The present invention is an inexpensive device that can automatically float (move up and down) a fish collecting tool such as a bait (fish hook) or a rice bracing container in an arbitrarily set underwater depth range without the fisherman operating the rod up and down. An object is to provide a fishing device.

上記目的を達成するために、本発明の釣用仕掛け装置は、釣り竿等から繰り出された道糸に、補助浮きまたは中間錘と、その下に気体捕捉装置を設け、さらにその下に水中にて気体を放出する気体発生装置、そして魚を釣るための針または魚を集めるコマセ撒き容器等の集魚具を連結して設けた。  In order to achieve the above object, the fishing device of the present invention is provided with an auxiliary float or an intermediate weight on a road line fed out from a fishing rod or the like, and a gas trapping device below it, and further underwater in water. A gas generator for releasing gas and a fish collecting tool such as a needle for fishing fish or a rice bowl that collects fish were connected to each other.

本発明による仕掛け装置は、任意に設定した水中深度範囲で、針または魚を集めるコマセ撒き容器等の集魚具などを自動浮沈(上下に移動)させることを可能とする。
すなわち、魚の居る棚(=深さ)で、餌(釣針)コマセ等を浮沈させ、魚にアピールする。「めばる」や「黒鯛」釣りで、生餌(ゴカイ、小エビ、小魚など)を使う場合には、あたかも生餌が泳ぎ回っているような状況になる。さらに浮釣りに使うと浮き釣りなのに、餌(釣針)コマセ等を浮沈させることが可能になる。すなわち岸壁から離れたところで脈釣りができる。
またコマセ撒き容器を吊るせば、籠は上昇時、および下降時に緩やかな速度による少しづつのコマセの放出を行う。この放出は狙った深さで行うため、餌取りの居ない本命の居るところで重点的にコマセを撒くことができる。
また集魚具として、水中集魚灯を用いることも可能であり、灯りが水中で浮沈を繰り返すので、コマセ同様に集魚効果が期待できる。
The device according to the present invention makes it possible to automatically float (move up and down) fish collecting tools such as needles or fish collecting containers for collecting fish in an arbitrarily set underwater depth range.
In other words, the bait (fishhook) komase or the like is raised and lowered on the shelf where the fish is (= depth), and appeals to the fish. When using live baits (eg, sea bream, shrimp, small fish, etc.) for “mebaru” or “black shark” fishing, the situation is as if the live bait is swimming around. Furthermore, if it is used for floating fishing, it is possible to float and sink bait (fishhook) komase and the like. That is, it is possible to perform pulse fishing at a distance from the quay.
Also, if the rice case container is hung, the rice bowl releases the rice cake little by little at the time of ascent and descent. Since this release is performed at the targeted depth, it is possible to squeeze Komase in a place where there is a favorite without food.
It is also possible to use an underwater fishing light as a fish collecting tool, and since the light repeatedly floats and sinks underwater, a fish collecting effect can be expected as in the case of Komase.

本発明の釣用仕掛け装置は、釣り竿等から繰り出された道糸に、補助浮きまたは中間錘と、その下に気体捕捉装置を設け、さらにその下に水中にて気体を放出する気体発生装置、そして魚を釣るための針または魚を集めるコマセ撒き容器等の集魚具を連結して設けた。そしてこの構成により、気体発生装置からの放出気体を気体捕捉装置が捕捉収納し、その気体溜めに貯まった気体の浮力にて装置を水中で上昇させ、水面あるいはあらかじめ設定した深さに到達した時、気体捕捉装置の自立姿勢を倒し、気体溜めに貯まった気体を放出させる。釣用仕掛け装置は、浮力の消滅により装置自重により沈下する。気体発生装置からの気体放出が続く限り水中で浮沈を繰り返す。  The fishing device according to the present invention is a gas generator for providing an auxiliary float or an intermediate weight to a road line drawn out from a fishing rod or the like, and a gas trapping device thereunder, and further releasing a gas in water underneath. A fish collecting tool such as a needle for catching fish or a rice bowl that collects fish was connected and provided. And with this configuration, when the gas trapping device captures and stores the gas released from the gas generating device, the device is raised in water by the buoyancy of the gas stored in the gas reservoir, and reaches the water surface or a preset depth Depress the self-supporting posture of the gas trapping device to release the gas stored in the gas reservoir. The fishing device sinks due to the weight of the device due to the disappearance of buoyancy. As long as gas release from the gas generator continues, it floats and sinks in water.

図1は本発明の第一の実施例である。
水面には釣竿(図示せず)に道糸15で繋がるメイン浮き1があり、これが水中における装置全体を支えている。水面下には、上昇下降量を設定する長さの道糸15aを介して、仕掛け装置が垂下されている。メイン浮き1の下部には補助浮き2、気体捕捉装置3、気体発生装置4、錘6が配置される。通常、この錘6の下に餌10をつけた釣針9が直接あるいはハリス(糸)等で接続される。
FIG. 1 shows a first embodiment of the present invention.
On the surface of the water is a main float 1 which is connected to a fishing rod (not shown) by a road thread 15 which supports the entire device in water. Under the surface of the water, the device is suspended via a road thread 15a having a length for setting an ascending / descending amount. An auxiliary float 2, a gas trap 3, a gas generator 4, and a weight 6 are disposed below the main float 1. Usually, a fishing hook 9 with bait 10 under the weight 6 is connected directly or by Harris (thread) or the like.

図2は気体捕捉装置3の構造の1例を示すもので、金属線のような剛体で構成されたロッド7と、これに固着した例えば薄肉円錐状に成形された気体溜め8から構成されている。また、ロッド7の上部には道糸15を結びつけるための環7aがあり、下部には気体発生装置4を接続するための同様な環7bがある。
なお、この気体捕捉装置3における環7a、7bの位置と気体溜め8に溜まった気体による浮力中心の位置関係は、環7aに対しては補助浮き2による浮力が作用し(水面にあるときには作用力はなくなる)、環7bに対しては気体発生装置4および錘6等の水中重さが作用する。水中におけるこれらの力バランスから、水中にあるときは気体捕捉装置3が垂直に立ち、水面に至った時は速やかに倒れるような位置関係に、それぞれの位置を設定する。もちろん、気体溜め8の容積は、気体の体積が水深(水圧)により変化することも考慮して定める。すなわち、水深10mから水面に浮上すると、容積は2倍になるという事実から、上記気体溜め8の容積を定め、水面までバランスが崩れないように、各部の位置関係を定めるのは言うまでも無い。
FIG. 2 shows an example of the structure of the gas trapping device 3, which is composed of a rod 7 made of a rigid body such as a metal wire and a gas reservoir 8 formed in a thin conical shape, for example, fixed to the rod 7. Yes. Further, an upper portion of the rod 7 includes a ring 7a for connecting the road thread 15 and a lower portion includes a similar ring 7b for connecting the gas generating device 4.
The positional relationship between the positions of the rings 7a and 7b and the center of the buoyancy due to the gas accumulated in the gas reservoir 8 in the gas trapping device 3 is such that the buoyancy by the auxiliary buoy 2 acts on the ring 7a (acts when it is on the water surface). However, underwater weight such as the gas generator 4 and the weight 6 acts on the ring 7b. From these force balances in water, the respective positions are set in such a positional relationship that the gas capturing device 3 stands vertically when it is in the water and quickly falls when it reaches the water surface. Of course, the volume of the gas reservoir 8 is determined taking into consideration that the volume of the gas changes depending on the water depth (water pressure). That is, it is needless to say that the volume of the gas reservoir 8 is determined and the positional relationship of each part is determined so that the balance is not lost to the water surface due to the fact that the volume doubles when the water surface rises from a depth of 10 m. .

なお、気体溜め8の形状として単純な円錐形状で説明をしたが、図3に他の形状例を示す。(a)のような気体を放出しやすい形状にしたり、(b)のような気体を放出し難い形状にすること、さらに三角錐、四角錐、そして多角錐も可能なことはいうまでもない。  In addition, although the simple conical shape was demonstrated as the shape of the gas reservoir 8, another shape example is shown in FIG. Needless to say, the shape as shown in (a) can be easily released, the shape as shown in (b) is difficult to release, and a triangular pyramid, a quadrangular pyramid, and a polygonal pyramid are possible. .

図4は、気体発生装置を構成する液化気体ボンベとボンベホルダーを示す。(a)には、液化気体ボンベとして最適な、使い捨てライター11を示す。
なお、使い捨てライター以外には、液化気体を収納した本格的なボンベ装置や固化した気体例えばドライアイス、さらに水にふれると気化する物質等を用いることが可能である。(b)には、使い捨てライターに最適なボンベホルダー5を示す。
ボンベホルダー5は金属製のケース構造で、アーム片5c、5dが付属している。これに使い捨てライター11をレバー11aを押し下げて装着すると、使い捨てライター11は図5に示すように両側のアーム片5c、5dで抱え込まれて、しっかりとセットされ、気体発生装置4となる。レバー11aは上板5eで押されているので封入されている液化気体を気体として連続放出する。放出量は、ライター側の調整で任意に設定できる。使い捨てライターを用いる場合には、装着前に着火すれば、炎から放出量の確認ができる。ボンベホルダー5の上下には気体捕捉装置3のロッド7と同様な接続用の環5a,5bを取り付けてある。
FIG. 4 shows a liquefied gas cylinder and a cylinder holder constituting the gas generator. (A) shows a disposable lighter 11 that is optimal as a liquefied gas cylinder.
In addition to the disposable lighter, it is possible to use a full-fledged cylinder device containing liquefied gas, a solidified gas such as dry ice, or a substance that vaporizes when exposed to water. (B) shows a cylinder holder 5 that is optimal for a disposable lighter.
The cylinder holder 5 has a metal case structure and includes arm pieces 5c and 5d. When the disposable lighter 11 is attached by pushing down the lever 11a, the disposable lighter 11 is held by the arm pieces 5c and 5d on both sides as shown in FIG. Since the lever 11a is pushed by the upper plate 5e, the enclosed liquefied gas is continuously discharged as a gas. The amount of discharge can be arbitrarily set by adjusting the lighter. When a disposable lighter is used, the amount of emission from the flame can be confirmed if it is ignited before being installed. Rings 5 a and 5 b for connection similar to the rod 7 of the gas capturing device 3 are attached to the upper and lower sides of the cylinder holder 5.

次に本発明装置の具体的な作用を浮き釣りを例にとって、図6〜図8において説明する。これらの図は、図1の装置における、気体の捕捉収納による浮沈動作の状態を示す。
メイン浮き1の下には、上から補助浮き2、気体捕捉装置3、気体発生装置4が接続されている。その下には、錘6、餌10を付けた釣り針9が配置される。
錘6は、気体捕捉装置3の浮力と、補助浮き2から餌10に至る総重量との関係を調整する。すなわち、この6の重さを増加させると、沈み込み速度を早くすることができる。また、気体発生装置4が重い場合には不要となるのは言うまでもない。また、気体発生装置4は液化気体の放出により重さは減ってくるので沈み込み速度が遅くなってくる。その分を錘6で増加させることで、一定の浮沈速度で浮沈させることが可能となる。
なお錘6を気体発生装置4の下に設けているが、気体捕捉装置3の下に直接あるいはハリスで接続しても良い。このような構成の本装置を水中に投げ込むと、水面に着水後直ちに装置自重により沈み込み、図6のように水中で各部がほぼ垂直に配置される。
Next, the specific operation of the device of the present invention will be described with reference to FIGS. These drawings show the state of the ups and downs operation by the trapping and storing of gas in the apparatus of FIG.
Under the main float 1, an auxiliary float 2, a gas trap 3 and a gas generator 4 are connected from above. Below that, a fishing hook 9 with a weight 6 and bait 10 is arranged.
The weight 6 adjusts the relationship between the buoyancy of the gas trap 3 and the total weight from the auxiliary float 2 to the bait 10. That is, when the weight of 6 is increased, the sinking speed can be increased. Needless to say, it is not necessary when the gas generator 4 is heavy. Further, since the weight of the gas generating device 4 is reduced by the discharge of the liquefied gas, the sinking speed becomes slow. By increasing the amount by the weight 6, it is possible to float and sink at a constant rising and falling speed.
Although the weight 6 is provided under the gas generating device 4, it may be connected directly under the gas capturing device 3 or with Harris. When the apparatus having such a configuration is thrown into the water, it sinks into the water surface immediately after landing on the surface of the apparatus due to its own weight, and each part is arranged substantially vertically in the water as shown in FIG.

そして気体発生装置4からは気体が放出されているので、この気体が気体捕捉装置3の気体溜め8に溜まり、気体捕捉装置3、気体発生装置4、錘6、餌10を付けた釣り針9は、図7の様に水中を上昇する。ここで補助浮き2は気体捕捉装置3の垂直姿勢を保つ働きをしている。  Since the gas is released from the gas generator 4, this gas is accumulated in the gas reservoir 8 of the gas trap 3, and the fishing hook 9 with the gas trap 3, the gas generator 4, the weight 6, and the bait 10 is Ascend underwater as shown in FIG. Here, the auxiliary float 2 functions to maintain the vertical posture of the gas trap 3.

図8に示すように、補助浮き2が水面に達すると、その浮力は、気体捕捉装置3を垂直姿勢に保つ作用が無くなり、気体捕捉装置3の垂直姿勢が崩れて気体溜め8の気体を一気に放出する。すると、気体捕捉装置3の浮力が消滅し、装置は沈下して図6の状態に戻る。このような動作を繰り返して、図6に示すようにメイン浮き1と気体捕捉装置3との間の距離L1にほぼ等しい範囲を、自動的に上下浮沈する。  As shown in FIG. 8, when the auxiliary float 2 reaches the water surface, the buoyancy is lost to keep the gas trapping device 3 in the vertical posture, and the vertical posture of the gas trapper 3 collapses so that the gas in the gas reservoir 8 is blown at once. discharge. Then, the buoyancy of the gas capturing device 3 disappears, the device sinks and returns to the state of FIG. By repeating such an operation, a range approximately equal to the distance L1 between the main float 1 and the gas trap 3 is automatically floated up and down as shown in FIG.

図9および図10において、補助浮き2の上部に中間錘12を使った第2の実施例を説明する。この例では補助浮き2が水面まで到達しなくとも、図10のように、中間錘12にて装置の上昇が妨げられ、気体捕捉装置3が倒れると、気体溜め8の気体が水中で放出され、前記と同様に浮沈を繰り返す。この場合には、距離L2の間で自動的に上下浮沈する。この例では、水面での波立ちの影響を避けることが出来る。
なお、後述の図11の実施例において明らかなように、気体捕捉装置3の設計によっては、補助浮き2は、必ずしも必要としない。
9 and 10, a second embodiment in which an intermediate weight 12 is used above the auxiliary float 2 will be described. In this example, even if the auxiliary float 2 does not reach the water surface, as shown in FIG. 10, the intermediate weight 12 prevents the device from rising, and when the gas trapping device 3 falls down, the gas in the gas reservoir 8 is released in the water. Repeat the ups and downs as before. In this case, it automatically floats up and down between the distances L2. In this example, the influence of ripples on the water surface can be avoided.
As will be apparent from the example of FIG. 11 described later, the auxiliary float 2 is not necessarily required depending on the design of the gas trapping device 3.

図11は、竿先からの道糸15に直接本仕掛け装置を接続した第3の実施例である。
竿は竿立て(図示せず)にセットされている。
この場合には中間錘12の位置(深さ)は、道糸15の繰り出し量で任意にセットされる。装置は竿先の真下で自動浮沈を繰り返す。釣り人はのんびりと竿先の変化を見ていれば良い。道糸15の先端には、中間錘12、気体捕捉装置3、気体発生装置4、錘6、餌10を付けた釣り針9が配置される。
この場合には、気体捕捉装置3において、ロッド7を長めに製作し、補助浮き無しで水中での自立を可能する。すなわち、環7bはその位置を、気体溜め8から下に向かって長くしている。このように、気体捕捉装置3のロッド7の位置調整により、気体捕捉装置3は、水中にて自立する。気体が気体捕捉装置3の気体溜め8に溜まって上昇できる浮力を得ると、気体捕捉装置3を最上位置として水中を上昇する。そして気体捕捉装置3は、中間錘12により、後述の図12の2点鎖線で示す部分と同様に、環7aを引かれて自立が崩されて横転し、気体溜め8の気体は放出される。
そして浮力を失った仕掛け装置は再沈下する。
FIG. 11 shows a third embodiment in which the present device is directly connected to the road thread 15 from the heel.
The kite is set in a stand (not shown).
In this case, the position (depth) of the intermediate weight 12 is arbitrarily set by the feeding amount of the road thread 15. The device repeats automatic sinking underneath the tip. The angler should just watch the change of the tip slowly. At the tip of the road line 15, an intermediate weight 12, a gas trap 3, a gas generator 4, a weight 6, and a fishing hook 9 with bait 10 are arranged.
In this case, in the gas trapping device 3, the rod 7 is manufactured to be long so that it can stand up in water without auxiliary floating. That is, the position of the ring 7b is elongated from the gas reservoir 8 downward. In this way, the gas trap 3 is self-supporting in water by adjusting the position of the rod 7 of the gas trap 3. When the buoyancy that allows the gas to accumulate and rise in the gas reservoir 8 of the gas capturing device 3 is obtained, the gas capturing device 3 is raised in the water with the gas capturing device 3 as the uppermost position. Then, the gas trap 3 is pulled by the intermediate weight 12 in the same manner as the portion indicated by a two-dot chain line in FIG. .
And the device that lost buoyancy will sink again.

第4の実施例として、コマセ撒き容器によるコマセ撒きについて説明する。コマセも、魚の居る場所(棚=深さ)で撒けば少ない量で効果が得られる。また上昇下降動作は、コマセの適度な放出に役立ち、魚を効率よく集めることができる。
前記図11の実施例において、釣餌の代わりにコマセ撒き容器を吊るせば良い。岸壁などで、この装置を潮流の上流位置にセットし、コマセが流れてくる下流側で釣ることにより、コマセに集まった魚群を相手に効率よく釣ることができる。
As a fourth embodiment, coma making using a coma container will be described. Komase can also be effective in small amounts if it is made where fish are located (shelf = depth). In addition, the ascending / descending operation is useful for moderate release of komase and can collect fish efficiently.
In the embodiment of FIG. 11, it is only necessary to hang a rice bracing container instead of fishing bait. By setting this device at the upstream position of the tidal current at a quay, etc., and fishing on the downstream side where the rice is flowing, the school of fish gathered in the rice can be efficiently fished against the opponent.

狙い場所が、岸壁から離れている場合には、浮きを用いた方式とし、例えば、図12に示すように、釣りの場合と同じく、道糸15の先端に、メイン浮き1、中間錘12、気体捕捉装置3、気体発生装置4、そして4の下にはコマセ16を入れたコマセ撒き容器13を吊るしてある。自動浮沈の動作は図11と同じく、気体捕捉容器3の上昇により、コマセ撒き容器が2点鎖線13Aで示す位置に上昇し、そこで中間錘12にて上の環7aの上昇が7aAのように妨げられ、気体捕捉装置3は自立が崩れて2点差線で示す3Aのように横転し、気体溜め8Aの気体は放出される。そして浮力を失った仕掛け装置は再沈下する。そして気体捕捉装置3での気体の捕捉収納と共に再上昇し、本装置は、気体がなくなるまで浮沈動作を繰り返す。この例では、水深Hにおいて、深さの幅Lwの範囲でコマセ16を撒くことができる。なお、コマセ撒き容器13はプラスチック製、金属製など多くの種類があり、材質の比重により、水中での重さが違う。
水中で重い金属製のコマセ撤き容器を用いる場合には、重さに打ち勝つ浮力を発生できる大きな容積の気体溜め8を有する気体捕捉装置3を用いても良いが、1回の上昇に多量の気体を要し、また1サイクルの時間も長くなる。このような場合には、図9および図10のように、補助浮き2を浮力補助として用いれば、小型の気体捕捉装置3を用いることができるので、効率の良い自動浮沈を行うことができる。
When the target place is away from the quay, a system using a float is used. For example, as shown in FIG. 12, the main float 1, the intermediate weight 12, Under the gas capturing device 3, the gas generating device 4, and under the 4, there is suspended a rice cracker container 13 containing a rice cake 16. In the same way as in FIG. 11, the rise and fall of the gas trapping container 3 raises the Komase burning container to the position indicated by the two-dot chain line 13A, where the upper ring 7a rises at the intermediate weight 12 as 7aA. As a result, the gas trapping device 3 loses its independence and rolls over as indicated by 3A indicated by a two-dotted line, and the gas in the gas reservoir 8A is released. And the device that lost buoyancy will sink again. And it raises again with the capture | acquisition accommodation of the gas in the gas capture apparatus 3, and this apparatus repeats floating and sinking operation until there is no gas. In this example, at the water depth H, the top 16 can be spread in the range of the width Lw of the depth. In addition, there are many types of the komase container 13 made of plastic or metal, and the weight in water varies depending on the specific gravity of the material.
In the case of using a heavy metal Komaze removal container in water, the gas capturing device 3 having a large volume gas reservoir 8 capable of generating buoyancy that overcomes the weight may be used. Gas is required and the cycle time is also long. In such a case, as shown in FIGS. 9 and 10, if the auxiliary float 2 is used as buoyancy assistance, the small gas capture device 3 can be used, so that efficient automatic floating and sinking can be performed.

本発明の第一実施例で、静止状態を示す。The first embodiment of the present invention shows a stationary state. 気体捕捉装置の断面図を示す。Sectional drawing of a gas capture device is shown. 気体捕捉装置の他の形状例を示す.(a)は、気体を放出しやすい形状の例(b)は、気体を放出し難い形状の例を示す。Other examples of gas trapping devices are shown. (A) shows the example of the shape which is easy to discharge | release gas (b) shows the example of the shape which does not discharge | release gas easily. 気体発生装置に使われる構成要素を示す。(a)は、液化気体ボンベに用いる、使い捨てガスライターを示す。(b)は、ボンベホルダーの例を示す。The component used for a gas generator is shown. (A) shows the disposable gas lighter used for a liquefied gas cylinder. (B) shows an example of a cylinder holder. 気体発生装置を示す。1 shows a gas generator. 図1の装置における、気体の捕捉収納状態図である。FIG. 2 is a gas capture / accommodation state diagram in the apparatus of FIG. 1. 図1の装置における、上昇動作状態図である。FIG. 2 is a rising operation state diagram in the apparatus of FIG. 1. 図1の装置における、水面到達時の気体放出状態図である。It is a gas discharge state figure at the time of the water surface arrival in the apparatus of FIG. 本発明の第2の実施例を示す(静止状態図)。2 shows a second embodiment of the present invention (stationary state diagram). FIG. 図9の装置の気体放出状態図である。FIG. 10 is a gas discharge state diagram of the apparatus of FIG. 9. 本発明の第3の実施例を示す(静止状態図)。3 shows a third embodiment of the present invention (stationary state diagram). FIG. 本発明の第4の実施例であるコマセ撒き装置の例である。It is an example of the top player which is the 4th example of the present invention.

符号の説明Explanation of symbols

1 メイン浮き
2 補助浮き
3 気体捕捉装置
4 気体発生装置
5 ボンベホルダー
5a、5b 環
6 錘
7 ロッド
7a、7b、 環
8 気体溜め
9 釣り針
10 餌
11 液化気体ボンベ:使い捨てライター
11a 液化気体放出レバー
12 中間錘
13 コマセ撒き容器
14 釣り竿
15、15a 道糸
16 コマセ
DESCRIPTION OF SYMBOLS 1 Main float 2 Auxiliary float 3 Gas capture device 4 Gas generator 5 Cylinder holder 5a, 5b Ring 6 Weight 7 Rod 7a, 7b, Ring 8 Gas reservoir 9 Fishing hook 10 Feed 11 Liquefied gas cylinder: Disposable lighter 11a Liquefied gas discharge lever 12 Intermediate weight 13 Komaise sowing container 14 Fishing rod 15, 15a Road thread 16 Komaze

Claims (4)

釣り竿等から繰り出される道糸に接続される装置であって、補助浮きと、その下に気体捕捉装置を設け、さらにその下に気体発生装置、そして魚を釣るための針または魚を集めるコマセ撒き容器等の集魚具を連結して設けたことを特徴とする釣用仕掛け装置。  A device that is connected to a line drawn from a fishing rod, etc., provided with an auxiliary float, a gas trapping device under it, a gas generator under it, and a needle for catching fish or a fish that collects fish A fishing device characterized by connecting a fish collecting tool such as a container. 釣り竿等から繰り出される道糸に接続される装置であって、中間錘と、その下に所定長さをおいて気体捕捉装置を設け、さらにその下に気体発生装置、そして魚を釣るための針または魚を集めるコマセ撒き容器等の集魚具を連結して設けたことを特徴とする釣用仕掛け装置。  A device connected to a line drawn from a fishing rod, etc., comprising an intermediate weight, a gas trapping device with a predetermined length below it, a gas generator below it, and a needle for fishing fish Alternatively, a fishing device characterized in that a fish collecting tool such as a rice bowl for collecting fish is connected to the fishing device. 釣り竿等から繰り出される道糸に接続される装置であって、中間錘と、その下に所定長さをおいて補助浮きを設け、その下に気体捕捉装置を設け、さらにその下に気体発生装置、そして魚を釣るための針または魚を集めるコマセ撒き容器等の集魚具を連結して設けたことを特徴とする釣用仕掛け装置。  A device connected to a road line drawn out from a fishing rod, etc., provided with an intermediate weight, an auxiliary float with a predetermined length below it, a gas trapping device below it, and a gas generator below it And a fishing device characterized in that a fish collecting tool such as a needle for fishing fish or a fish container for collecting fish is connected. 請求項1において釣り竿等と補助浮きとの間の道糸に、請求項2,3において釣り竿等と中間錘のとの間の道糸に、それぞれメイン浮きを設けることを特徴とする釣用仕掛け装置。  A fishing device according to claim 1, wherein a main float is provided on the road line between the fishing rod and the auxiliary float in claim 1 and a road line between the fishing rod and the intermediate weight in claim 2 and 3, respectively. apparatus.
JP2003289373A 2003-07-04 2003-07-04 Device for fishing tackle Pending JP2005027628A (en)

Priority Applications (1)

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Application Number Priority Date Filing Date Title
JP2003289373A JP2005027628A (en) 2003-07-04 2003-07-04 Device for fishing tackle

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JP2005027628A true JP2005027628A (en) 2005-02-03

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Country Link
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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109258595A (en) * 2018-11-07 2019-01-25 太和县大河钓具有限公司 A kind of dynamic float for fishing that fishing group can be driven to go up and down in water
CN110663651A (en) * 2019-10-31 2020-01-10 上海海洋大学 Underwater non-winding degradable artificial fish collecting device

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109258595A (en) * 2018-11-07 2019-01-25 太和县大河钓具有限公司 A kind of dynamic float for fishing that fishing group can be driven to go up and down in water
CN110663651A (en) * 2019-10-31 2020-01-10 上海海洋大学 Underwater non-winding degradable artificial fish collecting device

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