JP2003047913A - Bucket equipped with sieving apparatus - Google Patents
Bucket equipped with sieving apparatusInfo
- Publication number
- JP2003047913A JP2003047913A JP2001240769A JP2001240769A JP2003047913A JP 2003047913 A JP2003047913 A JP 2003047913A JP 2001240769 A JP2001240769 A JP 2001240769A JP 2001240769 A JP2001240769 A JP 2001240769A JP 2003047913 A JP2003047913 A JP 2003047913A
- Authority
- JP
- Japan
- Prior art keywords
- sieving
- bucket
- frame
- suspension shaft
- sieving surface
- 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.)
- Pending
Links
- 238000007873 sieving Methods 0.000 title claims abstract description 147
- 239000000725 suspension Substances 0.000 claims description 29
- 230000002093 peripheral effect Effects 0.000 claims description 2
- 239000004576 sand Substances 0.000 abstract description 14
- 238000009412 basement excavation Methods 0.000 description 5
- 238000005096 rolling process Methods 0.000 description 3
- 238000005299 abrasion Methods 0.000 description 2
- 230000007257 malfunction Effects 0.000 description 2
- 239000002689 soil Substances 0.000 description 2
- 230000001133 acceleration Effects 0.000 description 1
- 210000000078 claw Anatomy 0.000 description 1
- 230000001771 impaired effect Effects 0.000 description 1
- 239000002184 metal Substances 0.000 description 1
- 238000004080 punching Methods 0.000 description 1
- 239000013049 sediment Substances 0.000 description 1
- 238000003466 welding Methods 0.000 description 1
Classifications
-
- E—FIXED CONSTRUCTIONS
- E02—HYDRAULIC ENGINEERING; FOUNDATIONS; SOIL SHIFTING
- E02F—DREDGING; SOIL-SHIFTING
- E02F3/00—Dredgers; Soil-shifting machines
- E02F3/04—Dredgers; Soil-shifting machines mechanically-driven
- E02F3/28—Dredgers; Soil-shifting machines mechanically-driven with digging tools mounted on a dipper- or bucket-arm, i.e. there is either one arm or a pair of arms, e.g. dippers, buckets
- E02F3/36—Component parts
- E02F3/40—Dippers; Buckets ; Grab devices, e.g. manufacturing processes for buckets, form, geometry or material of buckets
- E02F3/401—Buckets or forks comprising, for example, shock absorbers, supports or load striking scrapers to prevent overload
-
- E—FIXED CONSTRUCTIONS
- E02—HYDRAULIC ENGINEERING; FOUNDATIONS; SOIL SHIFTING
- E02F—DREDGING; SOIL-SHIFTING
- E02F7/00—Equipment for conveying or separating excavated material
- E02F7/06—Delivery chutes or screening plants or mixing plants mounted on dredgers or excavators
Landscapes
- Engineering & Computer Science (AREA)
- Mining & Mineral Resources (AREA)
- Civil Engineering (AREA)
- General Engineering & Computer Science (AREA)
- Structural Engineering (AREA)
- Mechanical Engineering (AREA)
- Shovels (AREA)
- Combined Means For Separation Of Solids (AREA)
Abstract
Description
【0001】[0001]
【発明の属する技術分野】この発明は、パワーショベル
のアーム先端に装着されたバケットに設けたふるい面を
加振装置で振動させることにより、バケット内の土砂の
ふるい分けを行うふるい装置付きバケットに関するもの
である。BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a bucket with a sieving device for sieving earth and sand in the bucket by vibrating a sieving surface provided on a bucket attached to the tip of an arm of a power shovel with a vibrating device. Is.
【0002】[0002]
【従来の技術】従来この種の振動バケットとして、バケ
ットの底部に平面状のふるい面を設け、このふるい面を
その面方向に往復振動させる構造が知られている。2. Description of the Related Art Conventionally, as this type of vibrating bucket, there is known a structure in which a flat sieving surface is provided at the bottom of the bucket and the sieving surface is reciprocally oscillated in the surface direction.
【0003】また、他の構造として、バケットを全円筒
形のふるい面で形成し、この円筒ふるい面をパワーショ
ベルのアーム先端に装着されるブラケットに回転自在に
軸支し、当該円筒ふるい面の開放された反支持側の端縁
の一部に掘削爪を設け、バケット内に投入された土砂を
円筒ふるい面を回転させることによってふるい分けする
構造が提案されている。As another structure, the bucket is formed by a sieving surface having an all-cylindrical shape, and the sieving surface of the cylinder is rotatably supported by a bracket attached to the tip of the arm of the power shovel, and the sieving surface of the cylindrical sieving surface is rotated. A structure has been proposed in which an excavation claw is provided at a part of the open end on the non-supporting side and the earth and sand put into a bucket is sieved by rotating a cylindrical sieving surface.
【0004】更にまた、前縁をバケット底面に枢着して
設けたふるい面の後縁部を加振装置で上下方向に振動さ
せるようにしたふるい装置付きバケットも知られてい
る。Further, there is also known a bucket with a sieving device in which a sieving surface having a front edge pivotally attached to a bottom surface of the bucket is vibrated in a vertical direction by a vibrating device.
【0005】[0005]
【発明が解決しようとする課題】バケット枠の底部に面
方向や面直角方向に振動する平面状のふるい面を設けた
バケットは、バケットの容量に比較して、ふるい面の面
積が小さく、ふるい作業の作業能率がよくないという問
題がある。またふるい面を面方向に振動させるものは、
ふるい面を保持しているふるい枠を摺動自在に支持する
必要があり、摺動面への土砂の侵入などにより、動作の
円滑さが損なわれたり、摺動面が摩耗するなどの問題が
あった。また面直角方向に振動させるものでも、土砂の
侵入による枢支軸の摩耗の問題があり、更にふるい面を
単純に上下動させるだけでは、土砂がふるい面上を転動
しないので、ふるい性能が低いという問題があった。A bucket in which a bottom surface of a bucket frame is provided with a flat sieving surface that vibrates in a plane direction or in a direction perpendicular to the plane, has a smaller sieving surface area than the capacity of the bucket. There is a problem that work efficiency is not good. Also, the one that vibrates the sieving surface in the plane direction is
It is necessary to slidably support the sieving frame that holds the sieving surface, and problems such as the smoothness of operation being impaired and the sliding surface becoming worn due to the intrusion of earth and sand into the sliding surface. there were. Even if it vibrates in a direction perpendicular to the plane, there is a problem of abrasion of the pivot shaft due to intrusion of sediment, and simply moving the sieve surface up and down will not cause the soil to roll on the sieve surface, so the sieving performance will be improved. There was a problem of being low.
【0006】一方、回転する円筒ふるい面を設けたバケ
ットは、ふるい面を大きくできるが、構造が非常に複雑
かつ大型になり、バケット自体及びその軸支部分の強度
を高くすることが困難なため、過酷な土工作業に対する
耐久性が十分でなく、構造的にも複雑かつ大型になると
いう欠点があった。On the other hand, a bucket provided with a rotating cylindrical sieving surface can have a large sieving surface, but the structure is very complicated and large, and it is difficult to increase the strength of the bucket itself and its shaft supporting portion. However, it has a drawback that it is not durable enough for severe earthmoving work and is structurally complicated and large.
【0007】そこでこの発明は、パワーショベルのアー
ムの先端に装着して土砂の掘削やふるい分け作業を行う
ふるい装置付きバケットにおいて、土砂の侵入による摩
耗や動作不良を生じることのないふるい面の支持構造を
提供することにより、ふるい動作が円滑で耐久性が高
く、かつふるい性能も優れたふるい装置付きバケットを
得ることを課題としている。In view of the above, the present invention provides a support structure for a sieving surface in a bucket with a sieving device which is attached to the tip of an arm of a power shovel for excavating and sieving earth and sand and which does not cause wear or malfunction due to intrusion of earth and sand. It is an object of the present invention to provide a bucket with a sieving device that has a smooth sieving operation, high durability, and excellent sieving performance.
【0008】[0008]
【課題を解決するための手段】上記課題を解決したこの
出願の請求項1のパワーショベルのふるい装置付きバケ
ットは、バケットの底部に配置されてバケット前後方向
の円弧状の曲面を形成しているふるい面2と、このふる
い面を保持するふるい枠3の円弧状の縁から上方に延び
る揺動腕32と、この揺動腕の先端とバケットの外周部
を形成しているバケット枠4とを枢着している懸吊軸3
1と、バケット枠4に装着されてふるい枠3に連結され
ている加振装置15とを備え、前記ふるい面は前記懸吊
軸を中心として揺動振動することを特徴とするものであ
る。A bucket with a sieving device for a power shovel according to claim 1 of the present application, which has solved the above-mentioned problems, is arranged at the bottom of the bucket to form an arcuate curved surface in the front-rear direction of the bucket. The sieving surface 2, the swinging arm 32 extending upward from the arc-shaped edge of the sieving frame 3 that holds this sieving surface, and the bucket frame 4 forming the tip of this swinging arm and the outer peripheral portion of the bucket. Pivoting suspension shaft 3
1 and a vibrating device 15 mounted on the bucket frame 4 and connected to the sieving frame 3, and the sieving surface oscillates and oscillates about the suspension shaft.
【0009】また請求項2のパワーショベルのふるい装
置付きバケットは、パワーショベルのアーム先端に連結
されるブラケット20を有するバケット枠4の底部にふ
るい面2を備え、このふるい面を保持するふるい枠3が
バケット枠4に一方向に往復動自在に支持され、ふるい
枠3を前記一方向に往復振動させる加振装置15を備え
ており、上記ふるい面2がバケット前後方向の円弧状の
曲面であり、バケット枠4は両側面上部に懸吊軸31を
備え、この懸吊軸にふるい枠3が懸吊支持され、バケッ
ト枠4の前記アームへの連結側端部に加振装置15を備
え、当該加振装置がふるい枠3を懸吊軸31回りに往復
揺動させることを特徴とするものである。A bucket with a sieving device for a power shovel according to claim 2 is provided with a sieving surface 2 at the bottom of a bucket frame 4 having a bracket 20 connected to the tip of the arm of the power shovel, and a sieving frame for holding this sieving surface. 3 is supported by the bucket frame 4 so as to be reciprocally movable in one direction, and is provided with a vibrating device 15 that reciprocally vibrates the sieving frame 3 in the one direction. The sieving surface 2 is an arcuate curved surface in the bucket front-back direction. The bucket frame 4 is provided with suspension shafts 31 on the upper portions of both side surfaces, the sieve frame 3 is suspended and supported on the suspension shafts, and a vibration device 15 is provided at the end of the bucket frame 4 on the side of connection to the arm. The oscillating device reciprocally swings the sieving frame 3 around the suspension shaft 31.
【0010】上記のこの発明のふるい装置付きバケット
では、そのふるい面がバケット前後方向の円弧状の曲面
となるので、バケット底面の形状を通常の掘削作業用バ
ケットの形状にでき、掘削時の操作性にも優れた振動バ
ケットを得ることができる。In the bucket with a sieving device of the present invention described above, since the sieving surface is an arcuate curved surface in the front-back direction of the bucket, the shape of the bottom surface of the bucket can be the shape of a normal bucket for excavation work, and the operation at the time of excavation can be performed. A vibrating bucket having excellent properties can be obtained.
【0011】ここで言うバケット前後方向の円弧状の曲
面は、例えばバケットの掘削動作の揺動中心軸23と平
行な中心軸を備えた部分円筒面、後方から前方へと曲率
半径が連続的に又は階段的に変化する曲面、後方を部分
円筒面とし前方をその接線方向の平面でした面、これら
の曲面に近似した多角形状の面などである。The arcuate curved surface in the front-rear direction of the bucket mentioned here is, for example, a partial cylindrical surface having a central axis parallel to the swing central axis 23 of the excavating operation of the bucket, and the radius of curvature is continuous from the rear to the front. Alternatively, a curved surface that changes stepwise, a surface that has a rear surface as a partial cylindrical surface and a front surface that is a tangential plane, and a polygonal surface that approximates these curved surfaces.
【0012】この発明のふるい装置付きバケットは、そ
のふるい面がバケットとの上方に位置する懸吊軸31で
支持されて当該懸吊軸回りに揺動振動するので、ふるい
面の支持構造を単純化でき、堅牢で土砂の影響による摺
動面の摩耗や動作不良を生じないふるい装置付きバケッ
トを得ることができる。In the bucket with the sieving device of the present invention, the sieving surface is supported by the suspension shaft 31 located above the bucket and oscillates and oscillates around the suspension shaft, so that the supporting structure of the sieving surface is simple. Thus, it is possible to obtain a bucket with a sieving device that is stable and does not cause abrasion or malfunction of the sliding surface due to the influence of earth and sand.
【0013】加振装置15としてふるい枠3に直接連結
した、又はリンク17、19を介して連結した油圧シリ
ンダを用いれば、駆動構造が簡単かつ小型になり、バケ
ットの全体重量も軽量にできる。また、シリンダ駆動の
ため、ストロークエンド、即ちふるい面2の移動方向が
変わるところで急激な加減速が生じ、ふるい面上での土
砂の移動が大きくなるため、ふるい能力が向上する。ま
た、油圧シリンダ15の伸縮ロッドをレバーリンク17
を介してふるい枠3に連結する構造を採用することによ
り、レバーリンク17の交換によりふるい面2の振動ス
トロークを簡単に変更することが可能になる。If a hydraulic cylinder directly connected to the sieving frame 3 or connected via the links 17 and 19 is used as the vibrating device 15, the drive structure can be simplified and downsized, and the overall weight of the bucket can be reduced. Further, since the cylinder is driven, abrupt acceleration / deceleration occurs at the stroke end, that is, when the moving direction of the sieving surface 2 changes, and the movement of the earth and sand on the sieving surface increases, so that the sieving ability is improved. Further, the telescopic rod of the hydraulic cylinder 15 is connected to the lever link 17
By adopting the structure in which it is connected to the sieving frame 3 via, the vibration stroke of the sieving surface 2 can be easily changed by replacing the lever link 17.
【0014】この発明のふるい装置付きバケットは、円
弧状のふるい面を備えているので、ふるい面の面積を大
きくすることができ、更に円弧状のふるい面をその円弧
方向に往復振動させることで、ふるい面上の土砂がその
往復移動の移動端で傾斜したふるい面上を転動すること
となり、石や土砂のふるい面上の転がり運動が助長され
ることにより、平面的なふるい面を備えたものに比較し
て、ふるい能力が大幅に向上する。Since the bucket with a sieving device of the present invention is provided with the arcuate sieving surface, the area of the sieving surface can be increased, and the arcuate sieving surface can be reciprocally oscillated in the arc direction. , The soil on the sieving surface rolls on the sloping sieving surface at the moving end of the reciprocating movement, and the rolling movement on the sieving surface of stones and earth and sand is promoted to provide a flat sieving surface. The sieving ability is greatly improved in comparison with the ones.
【0015】ふるい面上での土砂の転動ないし移動を大
きくしてふるい性能を更に向上させるには、懸吊軸31
回りの揺動振動により、ふるい面2のバケット前方側の
部分を面方向及び面直角方向に振動させる構造を採用す
るのが好適である。In order to increase the rolling or movement of the earth and sand on the sieving surface and further improve the sieving performance, the suspension shaft 31
It is preferable to adopt a structure in which the portion of the sieving surface 2 on the front side of the bucket is vibrated in the surface direction and the direction perpendicular to the surface by the swing vibration around the surface.
【0016】これは例えば、円弧状のふるい面2の略円
弧中心軸とふるい枠3の後縁とを含む面の、前記円弧中
心軸より下方の位置に懸吊軸31を配置することにより
簡単に実現できる。また、円弧状のふるい面2のバケッ
ト前方側部分の曲率半径Rfを当該ふるい面の奥側部分
の曲率半径Rrより大きくし、かつ懸吊軸31を前記奥
側のふるい面の略円弧中心位置に設けることによっても
実現可能である。なお、バケット前方側部分を平面とし
た構造は、上記曲率半径Rfを無限大にしたものに相当
する。This is easy, for example, by arranging the suspension shaft 31 at a position below the arc center axis on the surface including the arc center axis of the arc-shaped sieving surface 2 and the rear edge of the sieving frame 3. Can be realized. Further, the radius of curvature Rf of the bucket front side portion of the arcuate sieving surface 2 is made larger than the radius of curvature Rr of the back side portion of the sieving surface, and the suspension shaft 31 is located at a substantially arcuate center position of the inner sieving surface. It can also be realized by providing the above. The structure in which the front portion of the bucket is a flat surface corresponds to an infinite radius of curvature Rf.
【0017】[0017]
【発明の実施の形態】以下、図面に示す実施例を参照し
て、この発明の実施形態を説明する。図1及び図2は、
この発明の第1実施例を示した図である。図1はバケッ
トの縦断面図で、図に示すように、バケット1の底面は
部分円筒面になっており、この底面は金網やパンチング
メタルなどの多数の透孔を有するふるい面2となってい
る。このふるい面は、両側辺が円弧形で、前縁及び後縁
が直線のふるい枠3で支持されている。必要に応じてこ
のふるい枠にふるい面を支える桟を設けることができ
る。BEST MODE FOR CARRYING OUT THE INVENTION Embodiments of the present invention will be described below with reference to the examples shown in the drawings. 1 and 2 are
It is the figure which showed the 1st Example of this invention. FIG. 1 is a vertical cross-sectional view of a bucket. As shown in the figure, the bottom surface of the bucket 1 is a partially cylindrical surface, and this bottom surface is a sieving surface 2 having a large number of through holes such as wire mesh and punching metal. There is. The sieving surface is supported by a sieving frame 3 whose both sides are arcuate and whose front and rear edges are straight. If necessary, a crosspiece for supporting the sieving surface can be provided on this sieving frame.
【0018】この底面を除くバケットの周囲は、バケッ
ト枠4を形成しており、このバケット枠は溶接等で一体
化された2枚の側板5、5、奥板6及び掘削縁7を備え
た前板8とを備えている。側板5の下縁は円弧形で、そ
の上方部分には、内側に突出する懸吊軸31が植立され
ている。前記ふるい枠3の両側面には、上方に延びる揺
動腕32が一体に設けられており、この揺動腕32の上
端が懸吊軸31に枢着されている。懸吊軸31は、部分
円筒状のふるい面2の円筒の中心軸33と、ふるい枠3
の後縁3aとを含む面の前記中心軸33より下方に位置
している。A bucket frame 4 is formed around the periphery of the bucket except for the bottom surface, and the bucket frame is provided with two side plates 5 and 5, an inner plate 6 and an excavation edge 7 which are integrated by welding or the like. And a front plate 8. The lower edge of the side plate 5 has an arc shape, and a suspension shaft 31 protruding inward is erected in the upper portion thereof. Swing arms 32 extending upward are integrally provided on both side surfaces of the sieving frame 3, and the upper ends of the swing arms 32 are pivotally attached to the suspension shaft 31. The suspension shaft 31 includes a cylindrical central axis 33 of the partially cylindrical sieving surface 2 and the sieving frame 3.
It is located below the central axis 33 on the surface including the rear edge 3a.
【0019】懸吊軸31をこの位置に設けることによ
り、ふるい面2が懸吊軸31を中心に揺動したとき、そ
の後縁側はふるい面と略平行に往復揺動し、ふるい面の
前縁側は、懸吊軸31を中心とする円弧35がふるい面
2と斜めに交差する方向になるため、当該ふるい面の前
方部分は、その面方向及び面直角方向に振動することと
なる。By providing the suspension shaft 31 at this position, when the sieving surface 2 swings around the suspension shaft 31, the trailing edge side reciprocally swings substantially in parallel with the sieving surface, and the front edge side of the sieving surface. Since the arc 35 centering on the suspension shaft 31 intersects the sieving surface 2 at an angle, the front part of the sieving surface vibrates in the plane direction and the plane orthogonal direction.
【0020】このようにふるい面2の前方部分にその面
直角方向の振動成分を付与したときは、ふるい面2が振
動したときに、ふるい枠の前方部分に位置する土砂が上
方に跳ね上げられて、ふるい面上に落下するという運動
と、ふるい面の面方向の振動によってふるい面上を転動
するという運動とが行われるため、ふるい面2上の上下
層の反転を含む移動が万遍なく行われ、能率の良いふる
い動作が実現できる。When a vibration component perpendicular to the surface of the sieving surface 2 is applied to the front portion of the sieving surface 2 in this manner, when the sieving surface 2 vibrates, the earth and sand located in the front portion of the sieving frame is flipped up. As a result, a motion of falling on the sieving surface and a motion of rolling on the sieving surface due to vibration in the surface direction of the sieving surface are carried out, so movement including inverting the upper and lower layers on the sieving surface 2 is universal. It is possible to realize efficient sieving operation.
【0021】バケット枠の前板8は内板8aと外板8b
とで形成され、両板8a、8bの前縁が一体となって掘
削縁7を形成している。The front plate 8 of the bucket frame has an inner plate 8a and an outer plate 8b.
And the front edges of both plates 8a and 8b are integrated to form the excavation edge 7.
【0022】奥板6の背後側には、シリンダ室13が設
けられ、バケット枠4にトラニオン構造でヘッドエンド
を枢着した油圧シリンダ15の伸縮ロッド16の先端
が、基端を奥板6の背面に枢着したレバーリンク17の
中間部に連結されている。レバーリンク17は、図2に
示すように左右に設けられ、左右のレバーリンクの中間
を繋ぐ連結バー18の中央に伸縮ロッド16の先端が枢
着されている。各レバーリンクの先端は、それぞれ連結
リンク19を介してふるい枠3の後縁3aに枢支連結さ
れている。A cylinder chamber 13 is provided on the rear side of the back plate 6, and the tip end of the telescopic rod 16 of the hydraulic cylinder 15 having the head end pivotally attached to the bucket frame 4 by the trunnion structure has the base end of the back plate 6. It is connected to an intermediate portion of a lever link 17 pivotally attached to the back surface. The lever links 17 are provided on the left and right as shown in FIG. 2, and the tip of the telescopic rod 16 is pivotally attached to the center of the connecting bar 18 connecting the middle of the left and right lever links. The tip of each lever link is pivotally connected to the rear edge 3a of the sieving frame 3 via a connecting link 19.
【0023】シリンダ室13の背面には、ブラケット2
0が溶接され、このブラケットに、バケットをパワーシ
ョベルのアーム21の先端21a及びフロントリンク2
2の先端に枢着する連結ピン23、24を挿通するピン
孔が設けられている。On the rear surface of the cylinder chamber 13, the bracket 2
No. 0 is welded to the bracket, and the bucket is attached to the bracket with the tip 21a of the arm 21 of the power shovel and the front link 2
A pin hole is provided through which the connecting pins 23 and 24 pivotally attached to the tip of 2 are inserted.
【0024】この第1実施例において、アーム21及び
フロントリンク22の操作によって土砂を掘削ないしす
くい上げて、その後油圧シリンダ15でふるい面2を振
動させることによってふるい作業を行う。ふるい面2は
懸吊軸31回りに往復揺動する。ふるい面におけるスト
ロークは20〜40mmである。In the first embodiment, the arm 21 and the front link 22 are operated to excavate or scoop up the earth and sand, and then the sieving surface 2 is vibrated by the hydraulic cylinder 15 to perform the sieving operation. The sieving surface 2 swings back and forth around the suspension shaft 31. The stroke on the sieving surface is 20-40 mm.
【0025】図3はこの発明の第2実施例を示したもの
である。この第2実施例のふるい面2は、その前方部分
が平面(曲率半径Rfが無限大)で後方部分が曲率半径
Rr(有限値)の部分円筒状で、懸吊軸31はその後方
部分のふるい面の円弧中心位置に配置されている。ふる
い面2の曲率半径は、連続的にRrからRfに変化させ
てもよく、また適宜な箇所で階段的に変化させてもよ
い。ふるい面をこのような部分円筒状の曲面とすること
で、バケットの種々の底面の形状に合せたふるい面とす
ることができる。FIG. 3 shows a second embodiment of the present invention. In the sieving surface 2 of the second embodiment, the front part thereof is a plane (curvature radius Rf is infinite) and the rear part is a partial cylindrical shape having a radius of curvature Rr (finite value), and the suspension shaft 31 is of the rear part. It is located at the center of the arc of the sieving surface. The radius of curvature of the sieving surface 2 may be continuously changed from Rr to Rf, or may be changed stepwise at an appropriate place. By forming the sieving surface into such a partially cylindrical curved surface, it is possible to obtain a sieving surface that matches various shapes of the bottom surface of the bucket.
【0026】そして懸吊軸31がふるい面2の後部の円
弧中心に位置しているため、ふるい面の後部はその面方
向に振動し、曲率半径がRrより大きくなった前方部分
は、そのふるい面が懸吊軸31を中心とする円弧35と
斜めに交差するため、第1実施例の場合と同様に、面方
向と面直角方向の振動が付与され、従って第1実施例の
ものと同様に、ふるい面2上の土砂の移動が万遍なく行
われ、良好なふるい性能が発揮されることになる。Since the suspension shaft 31 is located at the center of the arc of the rear part of the sieving surface 2, the rear part of the sieving surface vibrates in the surface direction, and the front part having a radius of curvature larger than Rr has its sieving surface. Since the surface obliquely intersects the circular arc 35 centered on the suspension shaft 31, vibration is imparted in the surface direction and the surface-perpendicular direction, as in the case of the first embodiment, and thus is similar to that of the first embodiment. Moreover, the movement of the earth and sand on the sieving surface 2 is evenly performed, and good sieving performance is exhibited.
【図1】第1実施例のバケットの縦断面図FIG. 1 is a vertical sectional view of a bucket according to a first embodiment.
【図2】第1実施例のバケットの横断面図(A−A矢
視)FIG. 2 is a transverse cross-sectional view of the bucket of the first embodiment (viewed from the arrow AA).
【図3】第2実施例のバケットの縦断面図FIG. 3 is a vertical sectional view of a bucket according to a second embodiment.
2 ふるい面 3 ふるい枠 4 バケット枠 15 油圧シリンダ 20 ブラケット 23 揺動中心軸 31 懸吊軸 32 揺動腕 Rf 曲率半径(無限大) Rr 曲率半径 2 sieving surface 3 sieve frames 4 bucket frame 15 hydraulic cylinder 20 bracket 23 Swing center axis 31 Suspended shaft 32 swinging arms Rf radius of curvature (infinity) Rr radius of curvature
Claims (5)
と、このふるい面を保持するふるい枠と、バケットの外
周部を形成しているバケット枠に装着されて前記ふるい
枠に連結されている加振装置(15)とを備えているパワー
ショベルのふるい装置付きバケットにおいて、バケット
前後方向の円弧状の曲面を形成している前記ふるい面
(2)と、前記ふるい枠(3)の円弧状の縁から上方に延びる
揺動腕(32)と、この揺動腕の先端と前記バケット枠(4)
とを枢着している前記軸方向の懸吊軸(31)とを備え、前
記ふるい面は前記懸吊軸を中心として揺動振動すること
を特徴とする、ふるい装置付きバケット。1. A sieving surface arranged at the bottom of a bucket, a sieving frame that holds this sieving surface, and a bucket frame that forms the outer peripheral portion of the bucket and is connected to the sieving frame. In a bucket with a sieving device for a power shovel equipped with a vibrating device (15), the sieving surface forming an arcuate curved surface in the front-back direction of the bucket.
(2), a swing arm (32) extending upward from the arc-shaped edge of the sieve frame (3), the tip of the swing arm and the bucket frame (4)
A bucket with a sieving device, comprising: the suspension shaft (31) in the axial direction pivotally attached to the sieving surface, and the sieving surface oscillates about the suspension shaft.
るブラケット(20)を有するバケット枠(4)の底部にふる
い面(2)を備え、このふるい面を保持するふるい枠(3)が
前記バケット枠に一方向に往復動自在に支持され、前記
ふるい枠を前記一方向に往復振動させる加振装置(15)を
備えているパワーショベルのふるい装置付きバケットに
おいて、ふるい面(2)がバケット前後方向の円弧状の曲
面であり、前記バケット枠は両側面上部に懸吊軸(31)を
備え、この懸吊軸に前記ふるい枠が懸吊支持され、前記
バケット枠の前記アームへの連結側端部に加振装置(15)
を備え、当該加振装置が前記ふるい枠(3)を前記懸吊軸
回りに往復揺動させることを特徴とする、パワーショベ
ルのふるい装置付きバケット。2. A sieving surface (2) is provided at the bottom of a bucket frame (4) having a bracket (20) connected to the arm tip of a power shovel, and a sieving frame (3) holding this sieving surface is the bucket. In a bucket with a sieving device of a power shovel, which is supported by a frame so as to be reciprocally movable in one direction and equipped with a vibrating device (15) for reciprocally vibrating the sieving frame in the one direction, the sieving surface (2) is the front and rear of the bucket. Direction is an arcuate curved surface, the bucket frame is provided with suspension shafts (31) at the upper portions of both side surfaces, and the screen frame is suspended and supported by the suspension shaft, and the bucket frame is connected to the arm. Vibrating device at the end (15)
A bucket with a sieving device for a power shovel, characterized in that the vibrating device reciprocally swings the sieving frame (3) around the suspension shaft.
前方側の前記ふるい面をその面方向及び面直角方向に振
動させることを特徴とする、請求項1又は2記載のふる
い装置付きバケット。3. The sieving device according to claim 1, wherein the oscillating vibration around the suspension shaft vibrates the sieving surface on the front side of the bucket in a plane direction and a direction perpendicular to the plane. bucket.
い枠の後縁とを含む面の、前記円弧中心軸より下方の位
置に前記懸吊軸が配置されている、請求項3記載のふる
い装置付きバケット。4. The suspension shaft according to claim 3, wherein the suspension shaft is arranged at a position lower than the circular arc central axis on a surface including a substantially circular arc central axis of the sieving surface and a rear edge of the sieving frame. Bucket with sieving device.
率半径(Rf)が当該ふるい面の奥側部分の曲率半径(Rr)よ
り大きく、かつ前記懸吊軸は前記奥側のふるい面の略円
弧中心位置に設けられている、請求項3記載のふるい装
置付きバケット。5. The radius of curvature (Rf) of the bucket front side portion of the sieving surface is larger than the curvature radius (Rr) of the back side portion of the sieving surface, and the suspension shaft is substantially the same as the back side sieving surface. The bucket with a sieving device according to claim 3, which is provided at a center position of the arc.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP2001240769A JP2003047913A (en) | 2001-08-08 | 2001-08-08 | Bucket equipped with sieving apparatus |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP2001240769A JP2003047913A (en) | 2001-08-08 | 2001-08-08 | Bucket equipped with sieving apparatus |
Publications (1)
Publication Number | Publication Date |
---|---|
JP2003047913A true JP2003047913A (en) | 2003-02-18 |
Family
ID=19071325
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
JP2001240769A Pending JP2003047913A (en) | 2001-08-08 | 2001-08-08 | Bucket equipped with sieving apparatus |
Country Status (1)
Country | Link |
---|---|
JP (1) | JP2003047913A (en) |
Cited By (10)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN107855273A (en) * | 2017-10-27 | 2018-03-30 | 安徽省正宇粮食机械有限公司 | A kind of multipurpose device for vibration screening |
CN109092651A (en) * | 2018-07-06 | 2018-12-28 | 胡江波 | A kind of agricultural peanut sorting unit |
CN109261479A (en) * | 2018-09-03 | 2019-01-25 | 赵伟 | A kind of continuity sand-gravel separation device being automatically drained out stone |
CN110252642A (en) * | 2019-06-26 | 2019-09-20 | 温世燕 | A kind of wheat of flour processing manufactory crosses sieve apparatus |
JP2020111980A (en) * | 2019-01-15 | 2020-07-27 | 株式会社アクティオ | Detachable type sieve tool for heavy equipment and method for repairing solid ballast in track |
CN111558525A (en) * | 2020-06-03 | 2020-08-21 | 武春利 | Preparation and processing technology of environment-friendly coating |
CN111921838A (en) * | 2020-07-02 | 2020-11-13 | 陈燕昌 | Building thickness sand grain separator |
CN112547494A (en) * | 2020-12-04 | 2021-03-26 | 唐山森普矿山装备有限公司 | Slack coal screening equipment |
CN113083658A (en) * | 2021-04-01 | 2021-07-09 | 王怀权 | Seed dispersion devices for agricultural |
CN118122615A (en) * | 2024-05-07 | 2024-06-04 | 新乡市阿瑞尔机械有限公司 | High-precision powder screening device |
Citations (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPH0547052U (en) * | 1991-11-29 | 1993-06-22 | 新キャタピラー三菱株式会社 | Rocking bucket |
JPH05507330A (en) * | 1990-03-06 | 1993-10-21 | モディグ、クリフォード | Bucket assembly with sieving function |
JP2000301069A (en) * | 1999-04-19 | 2000-10-31 | Okada Aiyon Corp | Sieving method and its device |
JP2002309609A (en) * | 2001-04-17 | 2002-10-23 | Muroto Tekkosho:Kk | Vibrating bucket of power shovel |
JP2005097973A (en) * | 2003-09-25 | 2005-04-14 | Iwao Kayano | Bucket provided with sieve function |
-
2001
- 2001-08-08 JP JP2001240769A patent/JP2003047913A/en active Pending
Patent Citations (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPH05507330A (en) * | 1990-03-06 | 1993-10-21 | モディグ、クリフォード | Bucket assembly with sieving function |
JPH0547052U (en) * | 1991-11-29 | 1993-06-22 | 新キャタピラー三菱株式会社 | Rocking bucket |
JP2000301069A (en) * | 1999-04-19 | 2000-10-31 | Okada Aiyon Corp | Sieving method and its device |
JP2002309609A (en) * | 2001-04-17 | 2002-10-23 | Muroto Tekkosho:Kk | Vibrating bucket of power shovel |
JP2005097973A (en) * | 2003-09-25 | 2005-04-14 | Iwao Kayano | Bucket provided with sieve function |
Cited By (11)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN107855273A (en) * | 2017-10-27 | 2018-03-30 | 安徽省正宇粮食机械有限公司 | A kind of multipurpose device for vibration screening |
CN109092651A (en) * | 2018-07-06 | 2018-12-28 | 胡江波 | A kind of agricultural peanut sorting unit |
CN109092651B (en) * | 2018-07-06 | 2021-12-28 | 安徽乐方食品有限公司 | Peanut sorting unit is used to agricultural |
CN109261479A (en) * | 2018-09-03 | 2019-01-25 | 赵伟 | A kind of continuity sand-gravel separation device being automatically drained out stone |
JP2020111980A (en) * | 2019-01-15 | 2020-07-27 | 株式会社アクティオ | Detachable type sieve tool for heavy equipment and method for repairing solid ballast in track |
CN110252642A (en) * | 2019-06-26 | 2019-09-20 | 温世燕 | A kind of wheat of flour processing manufactory crosses sieve apparatus |
CN111558525A (en) * | 2020-06-03 | 2020-08-21 | 武春利 | Preparation and processing technology of environment-friendly coating |
CN111921838A (en) * | 2020-07-02 | 2020-11-13 | 陈燕昌 | Building thickness sand grain separator |
CN112547494A (en) * | 2020-12-04 | 2021-03-26 | 唐山森普矿山装备有限公司 | Slack coal screening equipment |
CN113083658A (en) * | 2021-04-01 | 2021-07-09 | 王怀权 | Seed dispersion devices for agricultural |
CN118122615A (en) * | 2024-05-07 | 2024-06-04 | 新乡市阿瑞尔机械有限公司 | High-precision powder screening device |
Similar Documents
Publication | Publication Date | Title |
---|---|---|
JP2005330765A (en) | Loading device | |
JP2003047913A (en) | Bucket equipped with sieving apparatus | |
WO2004113623A1 (en) | Blade installation structure for bulldozer | |
WO1996014476A1 (en) | Working vehicle | |
JP6423825B2 (en) | Sieve structure | |
JP7385451B2 (en) | Sieve structure of sieve bucket | |
JP3730748B2 (en) | Skeleton bucket with sieve device | |
JP2002309609A (en) | Vibrating bucket of power shovel | |
JPH08226237A (en) | Crashing device | |
JP3219274U (en) | Bucket equipment | |
JP4112752B2 (en) | Work vehicle outrigger | |
CN217974558U (en) | Anti-tipping device and engineering machinery | |
JP3380193B2 (en) | Sorting device | |
JPH08209694A (en) | Leader support device | |
JPH0735875Y2 (en) | Vibration generator for attachment | |
JP2001348904A (en) | Dozer device for working machine | |
JPH1133420A (en) | Jaw crusher | |
JP2005163375A (en) | Arm of construction machinery | |
JPH0449262Y2 (en) | ||
JP3535433B2 (en) | Work machine | |
JP4564725B2 (en) | Bulldozer blade | |
JPH0533570Y2 (en) | ||
JP2587671Y2 (en) | Civil work bucket | |
JP2875742B2 (en) | Backhoe boom structure | |
JP3075136U (en) | Bucket with sieve function |
Legal Events
Date | Code | Title | Description |
---|---|---|---|
A621 | Written request for application examination |
Free format text: JAPANESE INTERMEDIATE CODE: A621 Effective date: 20080711 |
|
A977 | Report on retrieval |
Free format text: JAPANESE INTERMEDIATE CODE: A971007 Effective date: 20100729 |
|
A131 | Notification of reasons for refusal |
Free format text: JAPANESE INTERMEDIATE CODE: A131 Effective date: 20100914 |
|
A02 | Decision of refusal |
Free format text: JAPANESE INTERMEDIATE CODE: A02 Effective date: 20110208 |