JP3960389B2 - Grab bucket for firewood - Google Patents

Grab bucket for firewood Download PDF

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JP3960389B2
JP3960389B2 JP2004145043A JP2004145043A JP3960389B2 JP 3960389 B2 JP3960389 B2 JP 3960389B2 JP 2004145043 A JP2004145043 A JP 2004145043A JP 2004145043 A JP2004145043 A JP 2004145043A JP 3960389 B2 JP3960389 B2 JP 3960389B2
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pair
bucket
buckets
cover bodies
upper support
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JP2005325602A (en
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晴久 和田
徹也 土山
克明 川辺
福一 増田
貴光 増田
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Toa Corp
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Description

本発明は、海底や湖底などの土砂等をすくい上げる浚渫に使用される浚渫用グラブバケットに関し、さらに詳しくは、浚渫による水中での土砂等の拡散を抑制し、浚渫対象の土砂厚みに応じて効率的な浚渫を可能とする浚渫用グラブバケットに関するものである。   The present invention relates to a grab bucket for dredging that is used for dredging up sand and sand such as the seabed and lake bottom. More specifically, the present invention relates to suppression of diffusion of sand and sand underwater by dredging, and efficiency depending on the thickness of the dredged sediment. It is related with the grab bucket for dredging which enables a typical dredging.

従来の浚渫用のグラブバケットは、図7に示すように吊りワイヤ5で吊り下げられる上部支持体3に上端部を回転可能に軸支される左右一対のアーム4下端部の支軸6に左右一対のバケット1が回転可能に軸支されていた。この左右一対のバケット1同士を回転可能に連結する連結軸2を滑車装置11を介して開閉用ワイヤ17を用いて昇降させることで、バケット1が支軸6を中心として左右に開閉する構造となっている。バケット1が閉じた状態ではバケット1上部は開放さているので、すくった土砂Sはバケット1を引き上げる途中でこぼれて水中に拡散し、汚濁を生じさせていた。特に、浚渫対象となる土砂等がダイオキシン類等の汚染物質を含む場合は、周辺に汚染物質が拡散するため大きな問題となる。   As shown in FIG. 7, the conventional grab bucket for a kite has a pair of left and right arms 4 rotatably supported on an upper support 3 that is suspended by a suspension wire 5, and left and right on a support shaft 6 at the lower end of the arm 4. A pair of buckets 1 was rotatably supported. A structure in which the bucket 1 is opened and closed left and right around the support shaft 6 by raising and lowering the connecting shaft 2 that rotatably connects the pair of left and right buckets 1 using the opening and closing wire 17 via the pulley device 11; It has become. Since the upper part of the bucket 1 is open when the bucket 1 is closed, the scooped earth and sand S spilled during the lifting of the bucket 1 and diffused into the water, causing pollution. In particular, when the earth and sand to be dredged contain contaminants such as dioxins, it becomes a big problem because the contaminants diffuse around.

浚渫による水中での土砂等の拡散防止対策としては、密閉型バケットが提案されている(例えば、特許文献1参照)。この密閉型バケットはバケットに上蓋を設けて左右一対のバケットを閉じた状態で、バケット内部を密閉構造としたものである。この密閉型バケットでは、土砂をすくった後にバケットを水中から引き上げる途中に、土砂がこぼれるもことはなく、土砂の拡散を抑制することができる。   As a countermeasure for preventing diffusion of earth and sand in the water by dredging, a sealed bucket has been proposed (for example, see Patent Document 1). This hermetic bucket has a bucket structure in which the upper lid is provided on the bucket and the pair of left and right buckets are closed. In this sealed bucket, the earth and sand are not spilled while the bucket is pulled up from the water after scooping up the earth and sand, and the spread of the earth and sand can be suppressed.

しかしながら、浚渫する土砂厚みは一つの作業区域においても一定とは限らず、この密閉型バケットで様々な土砂厚みに対応するためには複数の密閉型バケットを用意する必要があり、その都度バケットを交換すれば作業効率が悪くなる。また、複数の密閉型バケットを用意するにはコストもかかる。   However, the dredging sediment thickness is not always constant in one work area, and it is necessary to prepare a plurality of sealed buckets in order to cope with various sediment thicknesses with this sealed bucket. If it is replaced, the work efficiency will deteriorate. In addition, it is expensive to prepare a plurality of sealed buckets.

一方で、一つの密閉型バケットで様々な土砂厚みに対応する場合は、最大の土砂厚みに合わせたバケットを使用することになるので、土砂厚みが小さい場合はバケットに余分な水分を取り込んでしまうため、含泥率(バケット容積に対する浚渫対象となる土砂量の割合)が低い浚渫となってしまう。余分な水分は、さらに浚渫した土砂の運搬効率、土砂処理場での処理効率を低下させる。
特開2000−328594号公報
On the other hand, when a variety of sediment thicknesses are handled with a single sealed bucket, a bucket that matches the maximum sediment thickness is used, so if the sediment thickness is small, excess moisture is taken into the bucket. For this reason, the mud content rate (ratio of the amount of sand and sand to be dredged with respect to the bucket volume) is dredged. Excess water reduces the transport efficiency of dredged soil and the processing efficiency at the sewage treatment plant.
JP 2000-328594 A

本発明の目的は、浚渫による水中での土砂等の拡散を抑制し、浚渫対象の土砂厚みに応じて効率的な浚渫を可能とする浚渫用グラブバケットを提供することにある。   An object of the present invention is to provide a grab bucket for dredging that suppresses diffusion of sand and the like in the water by dredging and enables efficient dredging according to the thickness of the dredged sediment.

上記目的を達成するため本発明の浚渫用グラブバケットは、吊りワイヤで吊り下げられる上部支持体と、該上部支持体に上端部を回転可能に軸支される左右一対のアームと、該左右一対のアーム下端部の支軸に回転可能に軸支される左右一対のバケットと、該左右一対のバケット同士を回転可能に連結する連結軸とを設け、該連結軸を昇降させて前記支軸を中心に前記左右一対のバケットを左右に開閉させる浚渫用グラブバケットにおいて、前記左右一対のバケットそれぞれの内部に、それぞれのバケットに対して不動状態に固定するカバー体を着脱可能に設け、この左右一対となるカバー体を内部に固定した左右一対のバケットを閉じた状態で該左右一対のカバー体の対向する端部どうしが直接またはパッキンを介して当接することによりバケット内部に密閉空間を形成するように構成し、該左右一対のバケットに固定する左右一対のカバー体を縦断面形状の異なる別の左右一対のカバー体に変えることによりバケット内部の密閉空間の容積を変更可能にしたことを特徴とするものである。
また、本発明の別の浚渫用グラブバケットは、吊りワイヤで吊り下げられる上部支持体と、該上部支持体に上端部を回転可能に軸支される左右一対のアームと、該左右一対のアーム下端部の支軸に回転可能に軸支される左右一対のバケットと、該左右一対のバケット同士を回転可能に連結する連結軸とを設け、該連結軸を昇降させて前記支軸を中心に前記左右一対のバケットを左右に開閉させる浚渫用グラブバケットにおいて、前記左右一対のバケットそれぞれの内部に、それぞれのバケットに対して不動状態に固定するカバー体を着脱可能に設け、この左右一対となるカバー体を内部に固定した左右一対のバケットを閉じた状態で該左右一対のカバー体の対向する端部どうしが直接またはパッキンを介して当接することによりバケット内部に密閉空間を形成するように構成し、該左右一対のバケットに固定する左右一対のカバー体を該左右一対のバケットの内壁に対して別の上下位置に変えて固定することによりバケット内部の密閉空間の容積を変更可能にしたことを特徴とするものである。
In order to achieve the above object, a glove bucket for a basket according to the present invention includes an upper support that is suspended by a suspension wire, a pair of left and right arms that are pivotally supported by the upper support so that an upper end portion thereof is rotatable, and the pair of left and right A pair of left and right buckets rotatably supported on a support shaft at the lower end of the arm, and a connecting shaft that rotatably connects the pair of left and right buckets, and raising and lowering the connecting shaft to In the bag grab bucket that opens and closes the pair of left and right buckets at the center, a cover body that is fixed to each bucket in a stationary state is detachably provided inside each of the pair of left and right buckets. When the pair of left and right buckets with the cover body fixed inside is closed, the opposing ends of the pair of left and right cover bodies contact each other directly or via packing The volume of the sealed space inside the bucket is configured by changing the pair of left and right cover bodies fixed to the pair of left and right buckets to another pair of left and right cover bodies having different vertical cross-sectional shapes. Is characterized in that it can be changed.
The other grab bucket of the present invention includes an upper support that is suspended by a suspension wire, a pair of left and right arms that are pivotally supported by the upper support so that an upper end portion thereof is rotatable, and the pair of left and right arms. A pair of left and right buckets rotatably supported on a support shaft at the lower end portion and a connection shaft that rotatably connects the pair of left and right buckets are provided, and the connection shaft is moved up and down to center on the support shaft A pair of left and right buckets that opens and closes the pair of left and right buckets is provided with a cover body that is detachably fixed to each of the pair of left and right buckets. When the pair of left and right buckets with the cover body fixed inside is closed, the opposing ends of the pair of left and right cover bodies contact each other directly or via packing. A pair of left and right cover bodies fixed to the pair of left and right buckets are configured so as to form a sealed space, and are changed to a different vertical position with respect to the inner walls of the pair of left and right buckets, thereby fixing the sealed space inside the bucket. The volume of the battery can be changed.

ここで、密閉空間とは厳密な密閉性を有するものではなく、若干のすき間を有する空間を含むものである。   Here, the sealed space does not have a strict sealing property but includes a space having a slight gap.

本発明の浚渫用グラブバケットによれば、左右一対のバケットそれぞれの内部に、それぞれのバケットに対して不動状態に固定する左右一対のカバー体を着脱可能に設けたので、浚渫対象の土砂厚みに応じて左右一対のバケットに固定する左右一対のカバー体を縦断面形状の異なる別の左右一対のカバー体に変えることにより密閉空間となるバケット容積を変更することができ、また、本発明の別の浚渫用グラブバケットによれば、左右一対のカバー体を左右一対のバケットの内壁に対して別の上下位置に変えて固定することにより密閉空間となるバケット容積を変更することができるので、一つのバケット(一種類のバケット)で余分な水分をすくうことなく含泥率が高く、効率の良い浚渫作業ができる。 According to the grab bucket for dredging of the present invention, since the pair of left and right cover bodies that are fixed to the respective buckets are detachably provided inside the pair of left and right buckets, Accordingly, by changing the pair of left and right cover bodies fixed to the pair of left and right buckets to another pair of left and right cover bodies having different vertical cross-sectional shapes, the bucket volume serving as a sealed space can be changed. According to the bag grab bucket, the volume of the bucket serving as the sealed space can be changed by changing the pair of left and right cover bodies to different vertical positions relative to the inner walls of the pair of left and right buckets. Two buckets (one kind of bucket) have a high mud content without scooping off excess water, allowing efficient dredging work.

また、左右一対のバケットを閉じた状態で左右一対のカバー体の対向する端部同士が直接またはパッキンを介して当接し、バケット内部に密閉空間を形成するので、すくった土砂は密閉され、バケットを引き上げる途中で土砂がこぼれることがなく、水中での土砂の拡散を防ぐことができる。 In addition, the opposed ends of the pair of left and right cover bodies contact each other directly or via packing in a state in which the pair of left and right buckets are closed, and a sealed space is formed inside the bucket. Sediment does not spill during the pulling up, and can prevent the spread of sediment in the water.

以下、図に示す本発明の実施形態に基づいて具体的に説明する。尚、従来のグラブバケット(図7)と同じ構成要素については同一の符号を使用し、説明は省略する。   Hereinafter, a specific description will be given based on the embodiment of the present invention shown in the drawings. In addition, the same code | symbol is used about the same component as the conventional grab bucket (FIG. 7), and description is abbreviate | omitted.

図1、2に示す浚渫用グラブバケット10において、左右一対のバケット1それぞれの内部に左右一対のカバー体8が着脱可能に設けられている。左右一対のバケット1が閉じた状態では、左右一対のカバー体8の対向する端部同士が当接し、バケット1内部に密閉空間が形成される。   1 and 2, a pair of left and right cover bodies 8 are detachably provided inside each of the pair of left and right buckets 1. In a state where the pair of left and right buckets 1 are closed, opposing ends of the pair of left and right cover bodies 8 come into contact with each other, and a sealed space is formed inside the bucket 1.

図3にバケット1内部へのカバー体8の取り付け方法の一例を示すと、バケット1内壁の上下方向中途に山形鋼12を溶接等で固定し、山形鋼12とほぼ同形状のパッキン13を介してカバー体8をボルト等で山形鋼12に固定する。これを左右両バケット1について行なう。パッキン13を介して固定することで密閉性が向上させることができる。   FIG. 3 shows an example of a method of attaching the cover body 8 to the inside of the bucket 1. The angle steel 12 is fixed by welding or the like midway in the vertical direction of the inner wall of the bucket 1, and the packing 13 having substantially the same shape as the angle steel 12 is interposed. The cover body 8 is fixed to the angle steel 12 with bolts or the like. This is performed for both the left and right buckets 1. Sealing can be improved by fixing via the packing 13.

また、左右一対のカバー体8の対向する一端の少なくとも一方にパッキン14をつけると密閉性を上げることができる。   Moreover, if the packing 14 is attached to at least one of the opposing ends of the pair of left and right cover bodies 8, the sealing performance can be improved.

左右一対のカバー体8を取り付けた状態で、左右一対のバケット1を閉じると図4に示すように、左右一対のバケット1および左右一対のカバー体8の対向する部分が当接してバケット1内部に密閉空間が形成される。   When the pair of left and right buckets 1 are closed with the pair of left and right cover bodies 8 attached, as shown in FIG. 4, the opposed portions of the pair of left and right buckets 1 and the pair of left and right cover bodies 8 come into contact with each other. A sealed space is formed in

図1、2に示すように両バケットの側壁面1aには、カバー体8との当接部下方近傍に空気抜き用の貫通孔15と貫通孔15を開閉する開閉弁16が備わっている。この開閉弁16は上端部が支軸6と同じ軸方向の軸によって回転自在に軸支されている。したがって、左右一対のバケット1が開いた状態では開閉弁16が開き、左右一対のバケット1が閉じた状態では開閉弁16が閉じる構造となっている。   As shown in FIGS. 1 and 2, the side wall surfaces 1 a of both buckets are provided with an air vent through hole 15 and an opening / closing valve 16 for opening and closing the through hole 15 in the vicinity of the lower part of the contact portion with the cover body 8. The open / close valve 16 is rotatably supported at its upper end by an axis in the same axial direction as the support shaft 6. Therefore, the open / close valve 16 is opened when the pair of left and right buckets 1 are open, and the open / close valve 16 is closed when the pair of left and right buckets 1 is closed.

次に、本発明の浚渫用グラブバケットの使用方法について説明する。まず、浚渫対象の土砂厚みに適した高含泥率の浚渫が可能なカバー体8をバケット1内壁に取り付ける。具体的には、縦断面形状が異なる複数の左右一対のカバー体8から選択したカバー体8をバケット1に取り付ける。例えば、土砂厚みが小さい場合は図3に示すような平板状のカバー体8を選択して、バケット容積を小さくする。逆に土砂厚みが大きい場合は例えば、図5(a)、(b)に示すような縦断面形状がくさび型で、角度を変えてそれぞれ縦断面形状が異なる箱状のカバー体8を選択してバケット容積を変えることができる。もちろん、縦断面形状はくさび型に限らず、バケット容積を変える種々の形状とすることができる。   Next, the usage method of the grab bucket for firewood of this invention is demonstrated. First, a cover body 8 capable of dredging with a high mud content suitable for dredging sediment is attached to the inner wall of the bucket 1. Specifically, a cover body 8 selected from a plurality of left and right paired cover bodies 8 having different vertical cross-sectional shapes is attached to the bucket 1. For example, when the earth and sand thickness is small, a flat cover body 8 as shown in FIG. 3 is selected to reduce the bucket volume. Conversely, when the earth and sand thickness is large, for example, a box-shaped cover body 8 having a wedge-shaped vertical cross-sectional shape as shown in FIGS. 5A and 5B and a different vertical cross-sectional shape is selected by changing the angle. The bucket volume can be changed. Of course, the longitudinal cross-sectional shape is not limited to the wedge shape, and may be various shapes that change the bucket volume.

このように、縦断面形状が異なる複数のカバー体8から選択することで同じ山形鋼12に取り付けても、バケット容積を変更することができる。
これらのカバー体8においても他のカバー体8と当接する端部にパッキン14を取り付けておくと密閉性を上げることができる。
Thus, even if it attaches to the same angle steel 12 by selecting from the several cover bodies 8 from which a longitudinal cross-section differs, a bucket volume can be changed.
Also in these cover bodies 8, if the packing 14 is attached to the end portion in contact with the other cover bodies 8, the sealing performance can be improved.

また、バケット1内壁に上下方向に位置を変えた山形鋼12を複数設けて、その中から選択した山形鋼12にカバー体1を取り付けることでバケット容積を変更することもできる。   Further, the bucket volume can be changed by providing a plurality of angle steels 12 whose positions are changed in the vertical direction on the inner wall of the bucket 1 and attaching the cover body 1 to the angle steel 12 selected from the angle steels 12.

ダイオキシン類などの汚染土壌は土砂厚みが40〜60cm程度と比較的薄いので、容積が大きいバケットを使用すると、余分な水分まですくってしまい含泥率が低下し、浚渫した土砂の運搬効率、土砂の処理効率を悪化させる。また、一つの作業区域でも浚渫対象となる土砂厚さが一定ではなく、様々な土砂厚みに対応して浚渫する必要がある。   Dioxins and other contaminated soils are relatively thin with a thickness of about 40 to 60 cm, so if you use a bucket with a large volume, excess water will be absorbed and the mud content will be reduced. Deteriorating the processing efficiency. In addition, the thickness of the soil that is to be dredged is not constant even in one work area, and it is necessary to dredge in accordance with various sand thicknesses.

そこで、浚渫対象となる土砂厚さに適したカバー体8をバケット1に取り付けて浚渫作業をすることで一つのバケット(一種類のバケット)で含泥率を高く、効率の良い浚渫作業が可能となる。バケット容積を変更するには、カバー体8を取り替えるだけでよく、作業も簡単である。また、容積が異なる密閉型バケットを複数用意する必要もなく、一つのバケット(一種類のバケット)で多くの土砂厚さに対応できるのでコスト負担も小さくて済む。   Therefore, by attaching the cover body 8 suitable for the dredged sediment thickness to the bucket 1 and carrying out the dredging work, one bucket (one kind of bucket) has a high mud content and enables efficient dredging work. It becomes. In order to change the bucket volume, it is only necessary to replace the cover body 8, and the operation is also simple. In addition, it is not necessary to prepare a plurality of sealed buckets having different volumes, and a single bucket (one type of bucket) can cope with a large amount of earth and sand, so that the cost burden can be reduced.

浚渫をする場合は、図6に示すように左右一対のバケット1を開いた状態で、水中に落下させる。このとき、開閉弁16は貫通孔15を開くように機能するのでバケット1内部の空気は貫通孔15から外部に抜け、バケット1を閉じる時にバケット1内部の空気が浮上して土砂を舞い上がらせることがない。また、バケット1内部の空気による浮力が生じないのでバケット1を的確に浚渫対象区域に沈めることができる。   When dredging, as shown in FIG. 6, the pair of left and right buckets 1 are opened and dropped into water. At this time, since the on-off valve 16 functions to open the through hole 15, the air inside the bucket 1 escapes from the through hole 15, and when the bucket 1 is closed, the air inside the bucket 1 rises and soots the earth and sand. There is no. Moreover, since the buoyancy by the air inside the bucket 1 does not occur, the bucket 1 can be accurately submerged in the dredging target area.

土砂をすくった後、バケット1を閉じて引き上げるときは、開閉弁16は貫通孔15を閉じるように機能するので、すくった土砂が貫通孔15からこぼれることはなく、また、土砂はバケット1内部の密閉空間に収容されるので、浚渫用グラブバケット10を引き上げる途中でこぼれることはなく、土砂を水中に拡散させることはない。 When the bucket 1 is closed and pulled up after scooping the earth and sand, the on-off valve 16 functions to close the through hole 15, so that the scooped earth and sand will not spill from the through hole 15, and the earth and sand will not spill inside the bucket 1. Therefore, the dredged grab bucket 10 is not spilled and the earth and sand are not diffused into the water.

本発明に係る左右一対のバケットを閉じた状態を示す正面図である。It is a front view which shows the state which closed the left-right paired bucket which concerns on this invention. 図1の側面図である。It is a side view of FIG. 本発明に係るカバー体をバケット内部に取り付ける状態を示す組み立て透視図である。It is an assembly perspective view which shows the state which attaches the cover body which concerns on this invention inside a bucket. 本発明に係る左右一対のバケットを閉じた状態での左右一対のカバー体の状態を示す透視図である。It is a perspective view which shows the state of a left-right paired cover body in the state which closed the left-right paired bucket which concerns on this invention. 本発明に係るカバー体の他の形状を示す斜視図である。It is a perspective view which shows the other shape of the cover body which concerns on this invention. 本発明に係る左右一対のバケットを開いた状態を示す正面図である。It is a front view which shows the state which opened the left-right paired bucket which concerns on this invention. 従来の浚渫用グラフバケットを示す正面図である。It is a front view which shows the conventional graph bucket for bags.

符号の説明Explanation of symbols

1 バケット 1a バケットの側壁面
2 連結軸
3 上部支持体
4 アーム
5 吊りワイヤ
6 支軸
8 カバー体
10 浚渫用グラブバケット
11 滑車装置
12 山形鋼
13 パッキン(山形鋼用) 14 パッキン(カバー体用)
15 貫通孔
16 開閉弁
17 開閉用ワイヤ
DESCRIPTION OF SYMBOLS 1 Bucket 1a Side wall surface of bucket 2 Connecting shaft 3 Upper support body 4 Arm 5 Hanging wire 6 Support shaft
8 Cover body 10 Grab bucket for ridge 11 Pulley device 12 Angle steel 13 Packing (for angle steel) 14 Packing (for cover body)
15 Through hole 16 On-off valve
17 Opening and closing wire

Claims (3)

吊りワイヤで吊り下げられる上部支持体と、該上部支持体に上端部を回転可能に軸支される左右一対のアームと、該左右一対のアーム下端部の支軸に回転可能に軸支される左右一対のバケットと、該左右一対のバケット同士を回転可能に連結する連結軸とを設け、該連結軸を昇降させて前記支軸を中心に前記左右一対のバケットを左右に開閉させる浚渫用グラブバケットにおいて、前記左右一対のバケットそれぞれの内部に、それぞれのバケットに対して不動状態に固定するカバー体を着脱可能に設け、この左右一対となるカバー体を内部に固定した左右一対のバケットを閉じた状態で該左右一対のカバー体の対向する端部どうしが直接またはパッキンを介して当接することによりバケット内部に密閉空間を形成するように構成し、該左右一対のバケットに固定する左右一対のカバー体を縦断面形状の異なる別の左右一対のカバー体に変えることによりバケット内部の密閉空間の容積を変更可能にしたことを特徴とする浚渫用グラブバケット。 An upper support that is suspended by a suspension wire, a pair of left and right arms that are pivotally supported by the upper support so that the upper end of the upper support is rotatable, and a pivot that is rotatably supported by the support shafts of the lower ends of the pair of left and right arms A pair of left and right buckets and a connecting shaft that rotatably connects the pair of left and right buckets, and a lifting grab that moves the connecting shaft up and down to open and close the pair of left and right buckets left and right about the support shaft Each of the pair of left and right buckets is provided with a detachable cover body that is fixed to each bucket in a stationary state, and the pair of left and right buckets that have the pair of left and right cover bodies fixed therein are closed. In this state, the opposite end portions of the pair of left and right cover bodies are in contact with each other directly or through packing, thereby forming a sealed space inside the bucket. Dredging glove bucket, wherein a pair of left and right cover members to be fixed to the bucket that was capable of changing the volume of the bucket inside the enclosed space by changing to a different pair of left and right cover bodies having different cross sectional shapes. 吊りワイヤで吊り下げられる上部支持体と、該上部支持体に上端部を回転可能に軸支される左右一対のアームと、該左右一対のアーム下端部の支軸に回転可能に軸支される左右一対のバケットと、該左右一対のバケット同士を回転可能に連結する連結軸とを設け、該連結軸を昇降させて前記支軸を中心に前記左右一対のバケットを左右に開閉させる浚渫用グラブバケットにおいて、前記左右一対のバケットそれぞれの内部に、それぞれのバケットに対して不動状態に固定するカバー体を着脱可能に設け、この左右一対となるカバー体を内部に固定した左右一対のバケットを閉じた状態で該左右一対のカバー体の対向する端部どうしが直接またはパッキンを介して当接することによりバケット内部に密閉空間を形成するように構成し、該左右一対のバケットに固定する左右一対のカバー体を該左右一対のバケットの内壁に対して別の上下位置に変えて固定することによりバケット内部の密閉空間の容積を変更可能にしたことを特徴とする浚渫用グラブバケット。 An upper support that is suspended by a suspension wire, a pair of left and right arms that are pivotally supported by the upper support so that the upper end of the upper support is rotatable, and a pivot that is rotatably supported by the support shafts of the lower ends of the pair of left and right arms A pair of left and right buckets and a connecting shaft that rotatably connects the pair of left and right buckets, and a lifting grab that moves the connecting shaft up and down to open and close the pair of left and right buckets left and right about the support shaft Each of the pair of left and right buckets is provided with a detachable cover body that is fixed to each bucket in a stationary state, and the pair of left and right buckets that have the pair of left and right cover bodies fixed therein are closed. In this state, the opposite end portions of the pair of left and right cover bodies are in contact with each other directly or through packing, thereby forming a sealed space inside the bucket. The volume of the sealed space inside the bucket can be changed by changing the pair of left and right cover bodies fixed to the buckets of the buckets to different vertical positions with respect to the inner walls of the pair of left and right buckets. Grab bucket for. 左右一対のバケットそれぞれの側壁面のカバー体との当接部下方近傍に貫通孔と、該貫通孔を開閉する開閉弁とを設け、左右一対のバケットが開いた状態では前記開閉弁を開き、左右一対のバケットが閉じた状態では前記開閉弁を閉じるようにした請求項1または2に記載の浚渫用グラブバケット。   A through hole and an opening / closing valve for opening and closing the through hole are provided in the vicinity of the lower part of the side wall surface of each of the pair of left and right buckets in contact with the cover body, and when the pair of left and right buckets are opened, the opening and closing valve is opened. 3. The bag grab bucket according to claim 1, wherein the on-off valve is closed when the pair of left and right buckets are closed.
JP2004145043A 2004-05-14 2004-05-14 Grab bucket for firewood Expired - Lifetime JP3960389B2 (en)

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2013028927A (en) * 2011-07-27 2013-02-07 Minotsu Tekko Kk Grab bucket for dredging
JP2018104987A (en) * 2016-12-27 2018-07-05 東亜建設工業株式会社 Grab bucket capacity adjusting jig and dredging method

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JP2011084372A (en) * 2009-10-16 2011-04-28 Penta Ocean Construction Co Ltd Sealed grab bucket
JP6348280B2 (en) * 2013-12-20 2018-06-27 東洋建設株式会社 Grab bucket and grab bucket volume changing method
CN106120920B (en) * 2016-06-27 2019-05-24 杭州市城市土地发展有限公司 A kind of sludge treatment equipment and method for park man-made lake
CN112962705B (en) * 2021-02-11 2023-07-21 赣州辰特建设集团有限公司 Hydraulic engineering river course cleaning device

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2013028927A (en) * 2011-07-27 2013-02-07 Minotsu Tekko Kk Grab bucket for dredging
JP2018104987A (en) * 2016-12-27 2018-07-05 東亜建設工業株式会社 Grab bucket capacity adjusting jig and dredging method

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