JP2002209403A - Ridge-leveling machine - Google Patents

Ridge-leveling machine

Info

Publication number
JP2002209403A
JP2002209403A JP2001008333A JP2001008333A JP2002209403A JP 2002209403 A JP2002209403 A JP 2002209403A JP 2001008333 A JP2001008333 A JP 2001008333A JP 2001008333 A JP2001008333 A JP 2001008333A JP 2002209403 A JP2002209403 A JP 2002209403A
Authority
JP
Japan
Prior art keywords
ridge
main
sub
shaft
traveling
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
Application number
JP2001008333A
Other languages
Japanese (ja)
Inventor
Isao Minagawa
功 皆川
Takeshi Iioka
毅 飯岡
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.)
Fuji Trailer Co Ltd
Original Assignee
Fuji Trailer Co Ltd
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 Fuji Trailer Co Ltd filed Critical Fuji Trailer Co Ltd
Priority to JP2001008333A priority Critical patent/JP2002209403A/en
Publication of JP2002209403A publication Critical patent/JP2002209403A/en
Pending legal-status Critical Current

Links

Abstract

PROBLEM TO BE SOLVED: To provide a ridge-leveling machine capable of performing a ridge- leveling work on an untreated ridge-leveling part with a sub ridge-leveling mechanism by transferring a mounting member to a side direction in its traveling direction with a transferring mechanism after performing the ridge-leveling work with a main ridge-leveling mechanism, for positioning the sub ridge- leveling mechanism as opposing to the ridge and traveling the traveling machine body along the old ridge. SOLUTION: This ridge-leveling machine is provided by linking a linking member 2 with the traveling machine body 1, installing a mounting member 7 at the linking member as freely transferable to a side direction in its traveling direction and the transferring mechanism 8 for transferring the mounting member, mounting a ridge-leveling machine body 9 at the mounting member, installing a power transmission mechanism 10 and arranging the main ridge- leveling mechanism 28 and the sub ridge-leveling mechanism 29 at the both sides of the ridge-leveling machine body in its traveling direction.

Description

【発明の詳細な説明】DETAILED DESCRIPTION OF THE INVENTION

【0001】[0001]

【発明の属する技術分野】本発明は例えば畦の造成作業
や修復作業等に用いられる整畦機に関するものである。
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a rowing machine used for, for example, ridge construction work or restoration work.

【0002】[0002]

【従来の技術】従来この種の整畦機として、例えば、特
開平9−74807号公報に示す構造のものが知られて
いる。
2. Description of the Related Art Conventionally, as this kind of levee control machine, for example, one having a structure disclosed in Japanese Patent Application Laid-Open No. 9-74807 is known.

【0003】これらの従来構造は、走行機体に取付部材
を連結し、該取付部材の進行方向両側部に主整畦機構及
び副整畦機構を配設して構成したものである。
[0003] In these conventional structures, a mounting member is connected to a traveling body, and a main levitation mechanism and a sub levitation mechanism are arranged on both sides in the traveling direction of the mounting member.

【0004】しかして、図14の如く、圃場M内におい
て、走行機体Sを矢印方向に回り走行しつつ走行機体の
一方側部の主整畦機構Qにより整畦作業を行うと共に走
行機体Sの前部から主整畦機構Qの作業部位までの未整
畦処理部分Tを副整畦機構Hにより走行機体Sの矢印方
向と反対方向に回り走行しつつ整畦作業を行うように構
成している。
[0004] As shown in FIG. 14, in the field M, the levitation work is performed by the main levitation mechanism Q on one side of the traveling machine S while traveling around the traveling machine S in the direction of the arrow, and It is configured to perform the levee work while traveling around the unaligned ridge processing portion T from the front part to the work site of the main ridge mechanism Q in the direction opposite to the arrow direction of the traveling machine S by the sub ridge mechanism H. I have.

【0005】[0005]

【発明が解決しようとする課題】しかしながら上記従来
構造の場合、上記主整畦機構及び副整畦機構は走行機体
のタイヤ等の車輪の存在により走行機体の側方からそれ
ぞれ大きく突出配置され、それだけ走行機体の作業運転
性が低下することがあると共に大型化して不使用時の保
管性を低下させることがあるという不都合を有してい
る。
However, in the case of the above-mentioned conventional structure, the main ridge mechanism and the sub-row mechanism are respectively disposed so as to protrude largely from the sides of the traveling body due to the presence of wheels such as tires of the traveling body. There is an inconvenience that the work drivability of the traveling machine body may be reduced, and the traveling body may be increased in size to reduce the storage property when not in use.

【0006】[0006]

【課題を解決するための手段】本発明はこのような不都
合を解決することを目的とするもので、本発明のうち
で、請求項1記載の発明は、走行機体に連結部材を連結
し、該連結部材に取付部材を進行方向に対して側方方向
に移動自在に設け、該取付部材を移動させる移動機構を
設け、該取付部材に整畦機体を取付け、該走行機体と整
畦機体との間に動力伝導機構を設け、該整畦機体の進行
方向両側部に主整畦機構及び副整畦機構を配設してな
り、上記主整畦機構は旧畦上に土を盛り上げる主盛土機
構及び該主盛土機構の進行方向後方位置に配置されて畦
の上面及び一方側面を回転整畦可能な主回転整畦体から
なり、上記副整畦機構は旧畦を削土可能な削土回転体及
び該削土回転体の進行方向後方位置に配置されて畦の上
面及び一方側面を回転整畦可能な副回転整畦体からな
り、該主回転整畦体及び副回転整畦体は外周部分に圧締
面部を間隔を置いて複数個形成すると共に該各圧締面部
に隣り合う回転方向後方位置の圧締面部に至る長さの圧
締板体の前部を取付けてなることを特徴とする整畦機に
ある。
SUMMARY OF THE INVENTION An object of the present invention is to solve such inconvenience, and among the present invention, the invention described in claim 1 connects a connecting member to a traveling body, The connecting member is provided with a mounting member movably in a lateral direction with respect to the traveling direction, a moving mechanism for moving the mounting member is provided, a ridge body is attached to the mounting member, and the traveling body and the ridge body are provided. A power transmission mechanism between them, and a main ridge mechanism and a sub ridge mechanism on both sides in the traveling direction of the ridge body, and the main ridge mechanism is a main embankment mechanism for raising soil on the old ridge. And a main rotary ridge that is arranged at a position rearward in the traveling direction of the main embankment mechanism and can rotate and control the upper surface and one side surface of the ridge. Body and the top of the ridge and one side are arranged at the rear position in the traveling direction of the shaving rotator The main rotating sub-flat and the sub-rotating flat are formed with a plurality of pressing surfaces at intervals on the outer peripheral portion, and the rotation direction adjacent to each pressing surface is formed. A ridge-removing machine characterized in that a front portion of a pressing plate body having a length reaching a pressing surface portion at a rear position is attached.

【0007】又、請求項2記載の発明にあっては、上記
動力伝導機構として、上記連結部材に走行機体の動力源
から動力を受ける入力軸を配設すると共に取付部材に出
力軸を配設し、該連結部材に入力軸を中心として垂直旋
回可能な入側旋回部材を配設し、該取付部材に出力軸を
中心として垂直旋回可能な出側旋回部材を配設し、該入
側旋回部材と出側旋回部材との間に中間軸を架設し、か
つ該入力軸と中間軸との間に入側伝導機構を配設すると
共に該出力軸と中間軸との間に出側伝導機構を配設して
構成したことを特徴とするものであり、又、請求項3記
載の発明は、上記主盛土機構の進行方向前方位置に上記
旧畦を削土可能な削土機構を設けてなることを特徴とす
るものであり、又、請求項4記載の発明は、上記副整畦
機構の副回転整畦体を着脱自在に設けてなることを特徴
とするものである。
Further, in the invention according to claim 2, as the power transmission mechanism, an input shaft receiving power from a power source of the traveling body is disposed on the connecting member, and an output shaft is disposed on the mounting member. An input-side turning member capable of turning vertically about the input shaft is provided on the connecting member, and an output-side turning member capable of turning vertically about the output shaft is provided on the mounting member; An intermediate shaft is provided between the member and the output-side turning member, and an input-side transmission mechanism is disposed between the input shaft and the intermediate shaft, and an output-side transmission mechanism is provided between the output shaft and the intermediate shaft. The invention according to claim 3 is provided with a shaving mechanism capable of shaving the old ridge at a position forward of the main embankment mechanism in the traveling direction. The invention according to claim 4 is characterized in that a sub-rotation ridge of the sub-row arrangement mechanism is provided. And it is characterized in by comprising detachably attached to.

【0008】[0008]

【発明の実施の形態】図1乃至図13は本発明の実施の
形態例を示し、1走行機体であって、この場合トラクタ
が用いられ、走行機体1の後部に三点リンク式の連結機
構2により連結部材3を上下動可能に連結している。
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS FIGS. 1 to 13 show an embodiment of the present invention, which is a one-travel vehicle, in which a tractor is used, and a three-point link type connecting mechanism is provided at the rear of the traveling vehicle 1. FIG. 2, the connecting member 3 is connected to be vertically movable.

【0009】この場合、上記連結機構2は、走行機体1
としてのトラクタの後部の左右下部に一対の下部リンク
4・4がピン4a・4aにより枢着突設され、走行機体
1に左右一対の油圧アーム5が作動軸5aを中心として
上下揺動操作自在に突設され、かつ、走行機体1の後部
の上部に上部リンク6がピン6aにより枢着突設され、
下部リンク4・4と油圧アーム5との間に吊下アーム5
bを架設し、しかして、左右一対の下部リンク4・4の
先端部にピン4b・4bにより連結部材3の下部両側部
を枢着連結すると共に上部リンク6の先端部にピン6b
により連結部材3の上部を連結し、これら三点支持及び
油圧アーム5の上下揺動により連結部材3を上下揺動自
在に設けて構成している。
In this case, the connecting mechanism 2 includes the traveling body 1
A pair of lower links 4.4 are pivotally mounted on the left and right lower portions of the rear of the tractor by pins 4a and 4a, and a pair of left and right hydraulic arms 5 are vertically oscillatingly operable on the traveling body 1 around an operating shaft 5a. , And an upper link 6 is pivotally mounted on a rear upper portion of the traveling body 1 by a pin 6a.
Suspension arm 5 between lower link 4 and hydraulic arm 5
b, and the lower ends of the connecting member 3 are pivotally connected to the distal ends of the pair of left and right lower links 4.4 by pins 4b.
The upper part of the connecting member 3 is connected by means of a three-point support and the vertical swinging of the hydraulic arm 5 so that the connecting member 3 is provided so as to be vertically swingable.

【0010】7は取付部材であって、上記連結部材3に
進行方向に対して側方方向に移動自在に配設され、取付
部材7を移動させる移動機構8を配設し、取付部材7に
整畦機体9を取り付け、走行機体1と整畦機体9との間
に動力伝導機構10を配設している。
Reference numeral 7 denotes a mounting member, which is provided on the connecting member 3 so as to be movable in a lateral direction with respect to the traveling direction, and a moving mechanism 8 for moving the mounting member 7 is provided. A ridge body 9 is attached, and a power transmission mechanism 10 is disposed between the traveling body 1 and the ridge body 9.

【0011】この場合、上記連結部材3を四角枠状に形
成し、連結部材3の上下位置にそれぞれコ状のガイドレ
ール3a・3aを進行方向に対して側方方向に開口側を
相対向状態にして横設し、ガイドレール3a・3aによ
り取付部材7を側方方向に移動自在に設け、取付部材7
に螺子軸11を回動自在に横設し、連結部材3にナット
体12を固定し、螺子軸11にハンドル13を取付け、
ハンドル13を正逆回動させることによりナット体12
と螺子軸11との螺着によって取付部材7を進行方向に
対して側方方向に往復移動自在に設けて構成している。
In this case, the connecting member 3 is formed in a rectangular frame shape, and U-shaped guide rails 3a, 3a are respectively provided at upper and lower positions of the connecting member 3 so that the opening sides are opposed to each other in the lateral direction with respect to the traveling direction. The mounting member 7 is movably provided in the lateral direction by the guide rails 3a.
, A screw shaft 11 is rotatably mounted laterally, a nut body 12 is fixed to the connecting member 3, a handle 13 is attached to the screw shaft 11,
By rotating the handle 13 forward and backward, the nut body 12 is rotated.
The mounting member 7 is provided so as to be reciprocally movable in the lateral direction with respect to the traveling direction by screwing the screw member 11 and the screw shaft 11.

【0012】又、この場合、上記動力伝導機構10とし
て、上記連結部材3に入力軸14を軸受15により横設
し、入力軸14と走行機体1の動力取出軸16とを自在
継手17により連結し、取付部材7に出力軸18を軸受
19により横設し、連結部材3にチェーンケース状の入
側旋回部材20を軸受21により入力軸14を中心とし
て垂直旋回自在に取付け、取付部材7にチェーンケース
状の出側旋回部材22を出力軸23を中心として軸受2
4により垂直旋回可能に取付け、入側旋回部材20と出
側旋回部材22との先端部間に中間軸25を架設し、か
つ入力軸14と中間軸25との間にチェーン機構からな
る入側伝導機構26を配設すると共に出力軸23と中間
軸25との間にチェーン機構からなる出側伝導機構27
を配設して構成している。
In this case, as the power transmission mechanism 10, an input shaft 14 is horizontally mounted on the connecting member 3 by a bearing 15, and the input shaft 14 and a power take-out shaft 16 of the traveling machine body 1 are connected by a universal joint 17. Then, an output shaft 18 is horizontally mounted on the mounting member 7 by a bearing 19, and an input side turning member 20 in a chain case shape is mounted on the connecting member 3 by a bearing 21 so as to be vertically rotatable about the input shaft 14. The output side revolving member 22 in the form of a chain is mounted on the bearing 2 around the output shaft 23.
4, an intermediate shaft 25 is installed between the distal ends of the entrance-side pivot member 20 and the exit-side pivot member 22 and a chain mechanism is provided between the input shaft 14 and the intermediate shaft 25 by a chain mechanism. A transmission mechanism 26 is provided between the output shaft 23 and the intermediate shaft 25.
Are arranged and configured.

【0013】28は主整畦機構、29は副整畦機構であ
って、整畦機体9の進行方向両側部にそれぞれ配置され
てなり、この主整畦機構28は旧畦上に土を盛り上げる
主盛土機構30及び主盛土機構30の進行方向後方位置
に配置されて畦の上面及び一方側面を回転整畦可能な主
回転整畦体31からなり、また、副整畦機構29は旧畦
を削土可能な削土回転体32及び削土回転体32の進行
方向後方位置に配置されて畦Wの上面W1及び一方側面
2を回転整畦可能な副回転整畦体33からなり、主回
転整畦体31及び副回転整畦体33は外周部分に圧締面
部K・Dを間隔を置いて複数個、この場合、八個形成す
ると共に各圧締面部K・Dに隣り合う回転方向後方位置
の圧締面部K・Dに至る長さの合成樹脂やステンレス等
の金属製の可撓性板材からなる圧締板体G・Eの前部を
取付け、上記圧締面部K・Dの間に通穴F・Cを形成し
て構成している。
Reference numeral 28 denotes a main ridge mechanism, and 29 denotes a sub ridge mechanism, which are disposed on both sides in the traveling direction of the ridge body 9, respectively. The main banking mechanism 30 and the main banking mechanism 30 are arranged at the rearward position in the traveling direction, and are composed of a main rotary ridge body 31 capable of rotating and leveling the upper surface and one side surface of the ridge. consists soil can Kezudo rotating body 32 and the Kezudo rotating body 32 traveling rearward position to be arranged ridge W of the top surface W 1 and on the other hand side W 2 rotating Seiaze possible sub rotating Seiaze body 33, a main The rotation ridge body 31 and the sub-rotation ridge body 33 are formed with a plurality of pressing surface portions KD at an outer peripheral portion at intervals, in this case, eight, and the rotation direction adjacent to each pressing surface portion KD. A flexible plate made of metal such as synthetic resin or stainless steel that extends to the pressing surface portions K and D at the rear position. The front portions of the pressing plates G and E made of a material are attached, and through holes F and C are formed between the pressing surface portions K and D.

【0014】この場合、上記主整畦機構28の主盛土機
構30は、盛土ロータ35からなり、ロータ胴35aの
外周に複数個の掻上刃35bを突設すると共にロータ胴
35aに取付軸35cを突設してなり、上記整畦機体9
に盛土ロータ35をその回転軸線を畦造成方向と平行に
して回転自在に取付け、整畦機体9に上記出力軸23に
より回転する主軸36を軸受し、盛土ロータ35を主軸
36より変向用ギヤ列37及びチェーン機構38を介し
て回転させ、この盛土ロータ35の回転により畦際の圃
場面Mの土を削出軌跡Nをもって削出して旧畦に向けて
跳ね上げて盛り上げるように構成している。
In this case, the main embankment mechanism 30 of the main ridge arrangement mechanism 28 includes an embankment rotor 35, a plurality of scraping blades 35b protruding around the outer periphery of the rotor body 35a, and a mounting shaft 35c attached to the rotor body 35a. And the above-mentioned ridge machine 9
The embankment rotor 35 is rotatably mounted with its axis of rotation parallel to the ridge forming direction, and a main shaft 36 which is rotated by the output shaft 23 is mounted on the ridge body 9, and the embankment rotor 35 is shifted from the main shaft 36 by a gear for turning. By rotating through the row 37 and the chain mechanism 38, the soil of the field scene M at the ridge is cut out with the cutout locus N by the rotation of the embankment rotor 35, and the soil is flipped up toward the old ridge to build up. I have.

【0015】39はカバー部材であって、この場合上記
整畦機体9に取り付けられ、上記盛土ロータ35の上方
及び畦Wの上方を覆う形状に形成され、カバー部材39
の畦側に側部カバー部材39aが上下動自在に取り付け
られている。
A cover member 39 is attached to the ridge body 9 in this case, and is formed in a shape to cover the upper part of the embankment rotor 35 and the upper part of the ridge W.
A side cover member 39a is attached to the ridge side so as to be vertically movable.

【0016】又、上記主整畦機構28の主回転整畦体3
1は、畦Wの一方側面W2を整畦可能な側面整畦部31
a及び畦Wの上面W1を整畦可能な上面整畦部31bと
を着脱自在に設け、回転軸線Pを畦Wの一方側面W2
側方から畦W側へ斜め上方に向かう所定角度θの上向き
方向に配置され、主回転整畦体31を回転機構40によ
り回転軸線Pを中心として矢印方向に強制回転するよう
に構成している。
Also, the main rotary ridge body 3 of the main ridge mechanism 28 described above.
1, Seiaze one side W 2 of the ridge W possible side Seiaze 31
provided upper surface W 1 of a and ridge W detachably and Seiaze capable top Seiaze portion 31b, a predetermined angle toward the rotation axis P obliquely upward from one side of the side surface W 2 of the ridge W to furrow W side θ is arranged in the upward direction, and the main rotation ridge body 31 is forcibly rotated in the arrow direction about the rotation axis P by the rotation mechanism 40.

【0017】又、この場合、上記整畦機体9のカバー部
材39の側部にブラケット41を突設し、ブラケット4
1に軸受筒42を取付け、この軸受筒42に駆動軸43
を回転自在に横設し、整畦機体9の後部に枠体44を設
け、枠体44内に歯車機構44a及びチェーン機構44
bを内装し、枠体44の下部に伝導軸45を横設し、伝
導軸45と主軸36とを歯車機構44aとチェーン機構
44bとにより伝導連結すると共に駆動軸43と伝導軸
45とを伸縮自在な自在継手47により連結し、駆動軸
43に主回転整畦体31の中心に配置したロータ軸31
cを連結し、しかして、主軸36の回転により主回転整
畦体31を図中矢印方向に回転させ、回転整畦体31の
側面整畦部31a及び上面整畦部31bの外周部分の圧
締板体G・Eの回転接触により畦Wの一方側面W2及び
畦Wの上面W1を締圧整畦するように構成している。
In this case, a bracket 41 is provided on the side of the cover member 39 of the ridge body 9 to protrude therefrom.
1 and a drive shaft 43
Is rotatably mounted horizontally, a frame 44 is provided at the rear of the ridge body 9, and a gear mechanism 44 a and a chain mechanism 44 are provided in the frame 44.
b, a transmission shaft 45 is horizontally provided below the frame body 44, the transmission shaft 45 and the main shaft 36 are conductively connected by the gear mechanism 44a and the chain mechanism 44b, and the drive shaft 43 and the transmission shaft 45 are expanded and contracted. The rotor shaft 31 is connected to the drive shaft 43 at the center of the main rotary ridge 31 by a universal joint 47.
Then, the main rotating ridge body 31 is rotated in the direction of the arrow in the figure by the rotation of the main shaft 36, and the pressure of the outer peripheral portion of the side ridge portion 31a and the upper surface ridge portion 31b of the rotating ridge member 31 is increased. the upper surface W 1 of one side W 2 and ridge W of ridge W are configured to tighten voltage rectifier ridge by rolling contact of the clamping plate member G · E.

【0018】又、この場合、副整畦機構29は、上記整
畦機体9のカバー部材39の側部にブラケット48を取
付け、ブラケット48の側部に支点ピン49により揺動
アーム32aを上下揺動自在に取付け、揺動アーム32
aに削土回転体32を上下揺動自在に取付け、削土回転
体32の軸と上記歯車機構44aの軸とをフレキシブル
ワイヤ46により連結し、挿通ピン50及び複数個の挿
通穴51との選択により削土回転体32を作業位置及び
上昇退避位置に選択配置可能に構成され、かつ、副回転
整畦体33は主回転整畦体31と同じ構造に構成され、
畦Wの一方側面W2を整畦可能な側面整畦部33a及び
畦Wの上面W1を整畦可能な上面整畦部33bとを着脱
自在に設けると共に、回転軸線Pを畦Wの一方側面W2
の側方から畦W側へ斜め上方に向かう所定角度θの上向
き方向に配置し、副回転整畦体33を回転機構52によ
り回転軸線Pを中心として矢印方向に強制回転するよう
に構成している。
In this case, the sub levee mechanism 29 mounts a bracket 48 on the side of the cover member 39 of the levee body 9 and swings the swing arm 32 a up and down by a fulcrum pin 49 on the side of the bracket 48. Moveable, swing arm 32
a, the shaving rotator 32 is vertically swayable, the shaft of the shaving rotator 32 and the shaft of the gear mechanism 44a are connected by a flexible wire 46, and the insertion pin 50 and the plurality of insertion holes 51 are connected to each other. The earth-removing rotator 32 is configured to be selectable at the working position and the ascending / retracting position by selection, and the sub-rotating ridge 33 is configured to have the same structure as the main rotary ridge 31.
While with the side surface W 2 Seiaze possible side Seiaze portion 33a and an upper surface W 1 of the ridge W Seiaze possible top Seiaze portion 33b and the detachably provided in a ridge W, one of the ridges W axis of rotation P Side W 2
Is arranged in the upward direction at a predetermined angle θ obliquely upward from the side to the ridge W side, and the sub-rotating ridge member 33 is configured to be forcibly rotated in the arrow direction about the rotation axis P by the rotation mechanism 52. I have.

【0019】この場合、ブラケット48に軸受筒53を
取付け、この軸受筒53に駆動軸54を回転自在に横設
し、駆動軸54と伝導軸45とを伸縮自在な自在継手5
5により連結し、この駆動軸54に副回転整畦体33の
中心に配置したロータ軸33cを着脱自在に連結し、し
かして、主軸36の回転により副回転整畦体33を主回
転整畦体31と同方向の図中矢印方向に回転させ、副回
転整畦体33の側面整畦部33a及び上面整畦部33b
の外周部分の圧締板体G・Eの回転接触により畦Wの一
方側面W2及び畦Wの上面W1を締圧整畦するように構成
している。
In this case, a bearing tube 53 is mounted on a bracket 48, a drive shaft 54 is horizontally mounted on the bearing tube 53 so as to be rotatable, and the drive shaft 54 and the transmission shaft 45 are expandable and contractible.
5 and a rotor shaft 33c disposed at the center of the sub-rotating ridge member 33 is detachably connected to the drive shaft 54. By rotating the main shaft 36, the sub-rotating ridge member 33 is connected to the main rotary ridge member. In the same direction as the body 31 in the direction of the arrow in the figure, the side ridge part 33a and the top ridge part 33b of the sub-rotation ridge body 33
The upper surface W 1 of one side W 2 and ridge W of ridge W are configured to tighten voltage rectifier ridge by rolling contact of the clamping plate member G · E of the outer peripheral portion of the.

【0020】56は削土機構であって、この場合カバー
部材39に中間軸57を進行方向前後方向に軸架すると
共に保持枠58を中間軸57と同心上に上下揺動自在に
枢着し、保持枠58の先端部にロータ軸59を回転自在
に取付け、ロータ軸59に複数個のナギナタ状の刃体を
もつ削土ロータ60を取付け、主軸36と中間軸57と
の間にチェーン機構61を掛回すると共に中間軸57と
ロータ軸59との間にチェーン機構62を架設し、これ
により主盛土機構30の進行方向前方位置の旧畦を削土
するように構成している。
Reference numeral 56 denotes a soil removal mechanism. In this case, an intermediate shaft 57 is mounted on the cover member 39 in the front-rear direction in the traveling direction, and a holding frame 58 is pivotally mounted on the intermediate shaft 57 so as to be vertically swingable. A rotor shaft 59 is rotatably mounted on the tip of the holding frame 58, and a shaving rotor 60 having a plurality of cutting blades is mounted on the rotor shaft 59, and a chain mechanism is provided between the main shaft 36 and the intermediate shaft 57. A chain mechanism 62 is installed between the intermediate shaft 57 and the rotor shaft 59 so as to cut the old ridge at a position forward of the main embankment mechanism 30 in the traveling direction.

【0021】この実施の形態例は上記構成であるから、
図1乃至図8の如く、移動機構8により取付部材7を進
行方向に対して一方側方方向に移動し、主整畦機構28
を畦Wに対向位置させ、走行機体1を旧畦に沿って走行
すると共に動力取出軸16を回転すると、主盛土機構3
0の盛土ロータ35が畦際の圃場泥土を旧畦上に連続的
に跳ね上げて盛り上げ、カバー部材39は盛土ロータ3
5の上方及び畦側方への泥土飛散を防止し、跳ね上げら
れた泥土は外方飛散を防がれて自重落下し、他方では、
走行機体1の動力取出軸16を駆動源として動力伝導機
構10を介して主整畦機構28の主回転整畦体31は回
転機構40により回転し、主回転整畦体31の外周部分
に圧締面部K・Dを間隔を置いて複数個形成すると共に
各圧締面部K・Dに回転方向前方位置の圧締面部K・D
側から隣り合う後方位置の圧締面部K・Dに至る長さの
可撓性材からなる圧締板体G・Eの前部を配設している
ので、図8の如く、主回転整畦体31の図中矢印方向と
しての走行機体1の前進を助長する方向の回転に伴い圧
締板体G・Eは徐々に盛土を締圧すると共に圧締面部K
・Dにより圧締板体G・Eを介して強く締圧され、この
複数個の圧締面部K・Dの存在により断続的に締圧さ
れ、複数個の圧締面部K・Dの存在により、主回転整畦
体31の全外周面で締圧する構造に比べて締圧面積が小
さくなることにより締圧力を大きくすることができ、そ
れだけ強固に畦を締め付けることができ、走行機体1の
走行速度に対して主回転整畦体31の回転速度を高める
ことにより主回転整畦体31の圧締板体Gは畦面に回転
滑り接触し、この回転すべり接触により畦Wの一方側面
2及び畦Wの上面W1を円滑かつ強固に締圧整畦するこ
とができる。
Since this embodiment has the above configuration,
As shown in FIGS. 1 to 8, the mounting member 7 is moved in one side direction with respect to the traveling direction by the moving mechanism 8, and the main levee mechanism 28 is moved.
When the traveling body 1 travels along the old ridge and the power take-off shaft 16 is rotated, the main embankment mechanism 3 is positioned.
The embankment rotor 35 of No. 0 continuously jumps up the field mud on the ridge onto the old ridge and raises it.
5 prevent the mud from scattering upwards and to the side of the ridge, and the splashed mud is prevented from scattering outward and falls by its own weight.
The main rotation ridge body 31 of the main ridge mechanism 28 is rotated by the rotation mechanism 40 via the power transmission mechanism 10 using the power take-out shaft 16 of the traveling body 1 as a drive source, and a pressure is applied to the outer peripheral portion of the main rotation ridge body 31. A plurality of tightening surface portions KD are formed at intervals, and each pressing surface portion KD has a pressing surface portion KD at a position forward in the rotation direction.
Since the front portions of the compression plate bodies G and E made of a flexible material having a length extending from the side to the adjacent compression surface portions K and D at the rear position are arranged, as shown in FIG. With the rotation of the ridge 31 in the direction that promotes the advancement of the traveling body 1 in the direction of the arrow in the drawing, the pressing plates GE gradually tighten the embankment and the pressing surface portion K.
・ D is strongly tightened by the pressing plates G and E via the pressing plates G and E, and is intermittently pressed by the presence of the plurality of pressing surfaces KD. The tightening pressure can be increased by reducing the tightening area as compared with a structure in which tightening is performed on the entire outer peripheral surface of the main rotating ridge body 31, so that the ridge can be firmly tightened and the traveling body 1 travels. By increasing the rotation speed of the main rotary ridge body 31 with respect to the speed, the pressing plate G of the main rotary ridge body 31 comes into rotational sliding contact with the ridge surface, and one side surface W 2 of the ridge W is formed by this rotary sliding contact. and it can be clamped voltage rectifier ridge top surface W 1 smoothly and firmly the ridge W.

【0022】このようにして、走行機体1を図14の反
時計回りに進行して主整畦機構28により畦Wの整畦作
業を行った後、図9乃至図13の如く、移動機構8によ
り取付部材7を進行方向に対して他方側方方向に移動
し、副整畦機構29を畦Wに対向位置させると共に削土
回転体体32を上昇退避位置から作業位置に配置し、走
行機体1を図14中の時計回り方向に旧畦に沿って走行
すると共に動力取出軸16を回転すると、削土回転体体
32は旧畦を削土し、他方では、走行機体1の動力取出
軸16を駆動源として動力伝導機構10を介して副整畦
機構29の副回転整畦体33は回転機構52により回転
し、主整畦機構28によりなされなかった未整畦処理部
分Tの整畦作業を行うことができ、副回転整畦体33の
外周部分に圧締面部K・Dを間隔を置いて複数個形成す
ると共に各圧締面部K・Dに回転方向前方位置の圧締面
部K・D側から隣り合う後方位置の圧締面部K・Dに至
る長さの可撓性材からなる圧締板体G・Eの前部を配設
しているので、副回転整畦体33の図中矢印方向として
の走行機体1の前進を助長する方向の回転に伴い圧締板
体G・Eは徐々に盛土を締圧すると共に圧締面部K・D
により圧締板体G・Eを介して強く締圧され、この複数
個の圧締面部K・Dの存在により断続的に締圧され、複
数個の圧締面部K・Dの存在により、副回転整畦体31
の全外周面で締圧する構造に比べて締圧面積が小さくな
ることにより締圧力を大きくすることができ、それだけ
強固に畦を締め付けることができ、走行機体1の走行速
度に対して副回転整畦体33の回転速度を高めることに
より副回転整畦体33の圧締板体Gは畦面に回転滑り接
触し、回転すべり接触により畦Wの一方側面W2及び畦
Wの上面W1を円滑かつ強固に締圧整畦することができ
る。
In this way, after the traveling body 1 is advanced counterclockwise in FIG. 14 and the ridge W is laid by the main ridge mechanism 28, the moving mechanism 8 is moved as shown in FIGS. By moving the mounting member 7 in the other side direction with respect to the traveling direction, the auxiliary ridge mechanism 29 is positioned to face the ridge W, and the earth-removing rotator 32 is arranged from the raised / retracted position to the working position. 1 along the old ridge in the clockwise direction in FIG. 14 and rotating the power take-out shaft 16, the earth-removing rotator 32 cuts the old ridge, and on the other hand, the power take-out shaft of the traveling machine 1. The sub-rotating ridge body 33 of the sub-ribbing mechanism 29 is rotated by the rotating mechanism 52 via the power transmission mechanism 10 using the drive source 16 as a driving source, and the levee of the unprocessed ridge processing portion T that has not been made by the main levee mechanism 28 The work can be performed, and the pressing surface portion・ A plurality of Ds are formed at intervals, and the length from the pressing surface portion KD at the front position in the rotation direction to the pressing surface portion KD at the rear position adjacent to each pressing surface portion KD can be adjusted. Since the front portions of the compression plates G and E made of a flexible material are disposed, the pressure is generated in accordance with the rotation of the sub-rotating ridge body 33 in the direction that promotes the advance of the traveling body 1 in the direction of the arrow in the drawing. The tightening plate bodies G and E gradually tighten the embankment, and the pressing surfaces KD
Is strongly tightened through the pressing plate bodies G and E, and is intermittently tightened by the presence of the plurality of pressing surfaces KD. Rotating ridge 31
The tightening pressure can be increased by reducing the tightening pressure area as compared with the structure in which tightening is performed on the entire outer peripheral surface, and the ridge can be firmly tightened accordingly. clamping plate member G auxiliary rotary Seiaze body 33 by increasing the rotational speed of the Azetai 33 rotates sliding contact with the ridge surface, the top surface W 1 of one side W 2 and ridge W of ridge W by the rotation sliding contact The ridge can be smoothed and firmly adjusted.

【0023】又、この場合、上記圧締面部K・Dの間に
通穴F・Cを形成すると共に圧締板体G・Eを可撓性板
材により形成しているので、通穴F・Cにより一層断続
的に畦面を締圧することになり、それだけ強固に締圧す
ることができると共に可撓性により圧締板体G・Eは撓
み動作しつつ盛土を徐々に締圧することができ、回転整
畦体13の外周部分への土の付着現象を抑制することが
でき、畦の上面W1と一方側面W2との畦角部を良好に締
圧することができ、良好な整畦作業を行うことができ、
一層堅牢な畦を得ることができる。
In this case, since the through holes F and C are formed between the pressing surfaces K and D and the pressing plates GE are formed of a flexible plate material, the through holes F and C are formed. C makes it possible to more intermittently press the ridge surface, so that it is possible to tighten more firmly, and the flexibility allows the pressing plate bodies G and E to flexibly compress the embankment while flexing. deposition phenomenon of soil to the outer peripheral portion of the rotary Seiaze body 13 can be suppressed, it can be pressed satisfactorily tighten the ridge corners of the upper surface W 1 of the ridge on the other hand with the side surface W 2, good Seiaze work Can do
More robust ridges can be obtained.

【0024】この場合、上記動力伝導機構10として、
上記連結部材3に走行機体1の動力源から動力を受ける
入力軸14を配設すると共に取付部材7に出力軸23を
配設し、連結部材3に入力軸14を中心として垂直旋回
可能な入側旋回部材20を配設し、取付部材7に出力軸
23を中心として垂直旋回可能な出側旋回部材27を配
設し、入側旋回部材20と出側旋回部材27との間に中
間軸25を架設し、かつ、入力軸14と中間軸25との
間に入側伝導機構26を配設すると共に出力軸23と中
間軸25との間に出側伝導機構27を配設しているか
ら、取付部材7を移動機構8により側方方向に移動させ
たとしても、走行機体1の動力源から整畦機体9側への
動力を円滑に伝導することができると共に構造の簡素化
を図ることができる。
In this case, as the power transmission mechanism 10,
An input shaft 14 for receiving power from the power source of the traveling body 1 is provided on the connecting member 3, and an output shaft 23 is provided on the mounting member 7, so that the connecting member 3 can rotate vertically about the input shaft 14. Side pivoting member 20, an outgoing pivoting member 27 capable of vertical pivoting about the output shaft 23 on the mounting member 7, and an intermediate shaft between the inward pivoting member 20 and the outgoing pivoting member 27. 25, an input-side transmission mechanism 26 is disposed between the input shaft 14 and the intermediate shaft 25, and an output-side transmission mechanism 27 is disposed between the output shaft 23 and the intermediate shaft 25. Therefore, even if the mounting member 7 is moved in the lateral direction by the moving mechanism 8, the power from the power source of the traveling body 1 to the ridge body 9 can be smoothly transmitted and the structure is simplified. be able to.

【0025】又、この場合、削土機構56により旧畦面
を予め削土でき、この削土された畦面上に主盛土機構3
0により盛土することになるから、旧畦土と盛土との結
着性を高めることができ、それだけ強固な畦を得ること
ができ、又、この場合、上記副整畦機構29の副回転整
畦体33を着脱自在に設けてなるから、主整畦機構28
により整畦作業を行うとき、副回転整畦体33を取り外
すことができ、それだけ主回転整畦体31により良好に
整畦作業を行うことができる。
In this case, the old ridge surface can be previously shaved by the shaving mechanism 56, and the main embankment mechanism 3 is placed on the shaved ridge surface.
0, the embankment is filled, so that the binding property between the old ridge and the embankment can be enhanced, and a firm ridge can be obtained accordingly. Since the ridge 33 is provided detachably, the main ridge mechanism 28
When performing the ridge work, the sub-rotation ridge body 33 can be removed, and the main rotation ridge body 31 can perform the ridge work better.

【0026】尚、本発明は上記実施の形態例に限られる
ものではなく、例えば主盛土機構30して、畦造成方向
に対して交差する方向の回転軸線をもつ回転ロータを採
用することもでき、又、圧締面部K・D及び通穴F・C
の個数や形状、圧締板体G・Eの大きさや材質等は適宜
変更して設計される。
The present invention is not limited to the above-described embodiment. For example, the main embankment mechanism 30 may employ a rotary rotor having a rotation axis in a direction intersecting the ridge formation direction. , And the pressing surfaces KD and through holes FC
The number, shape, size, material, etc. of the clamping plates G and E are appropriately changed and designed.

【0027】又、この場合、上記移動機構8としてハン
ドル13をもつ手動機構を用いているので、一層、移動
機構8の構造を簡素化することができる。
In this case, since the manual mechanism having the handle 13 is used as the moving mechanism 8, the structure of the moving mechanism 8 can be further simplified.

【0028】又、上記移動機構8として、図示省略して
いるが、電動モータをもつ電動機構を採用することもで
きる。
Although not shown, an electric mechanism having an electric motor may be employed as the moving mechanism 8.

【0029】[0029]

【発明の効果】本発明は上述の如く、請求項1記載の発
明にあっては、移動機構により取付部材を進行方向に対
して側方方向に移動し、主整畦機構を畦に対向位置さ
せ、走行機体を旧畦に沿って走行すると、主盛土機構は
泥土を旧畦上に盛り上げ、他方では、動力伝導機構を介
して主整畦機構の主回転整畦体は回転し、主回転整畦体
の外周部分に圧締面部を間隔を置いて複数個形成すると
共に各圧締面部に回転方向前方位置の圧締面部側から隣
り合う後方位置の圧締面部に至る長さの圧締板体の前部
を配設しているので、主回転整畦体の回転に伴い圧締板
体は盛土を締圧すると共に圧締面部により圧締板体を介
して強く締圧され、この複数個の圧締面部の存在により
断続的に締圧され、複数個の圧締面部の存在により、主
回転整畦体の全外周面で締圧する構造に比べて締圧面積
が小さくなることにより締圧力を大きくすることがで
き、それだけ強固に畦を締め付けることができ、そし
て、主整畦機構により畦の整畦作業を行った後、移動機
構により取付部材を進行方向に対して側方方向に移動
し、副整畦機構を畦に対向位置させ、走行機体を旧畦に
沿って走行すると、削土回転体は旧畦を削土し、他方で
は、動力伝導機構を介して副整畦機構の副回転整畦体は
回転し、主整畦機構によりなされなかった未整畦処理部
分の整畦作業を行うことができ、副回転整畦体の外周部
分に圧締面部を間隔を置いて複数個形成すると共に各圧
締面部に回転方向前方位置の圧締面部側から隣り合う後
方位置の圧締面部に至る長さの圧締板体の前部を配設し
ているので、副回転整畦体の圧締板体は盛土を締圧する
と共に圧締面部により圧締板体を介して強く締圧され、
この複数個の圧締面部の存在により断続的に締圧され、
複数個の圧締面部の存在により、副回転整畦体の全外周
面で締圧する構造に比べて締圧面積が小さくなることに
より締圧力を大きくすることができ、それだけ強固に畦
を締め付けることができる。
As described above, according to the first aspect of the present invention, the mounting member is moved in the lateral direction with respect to the traveling direction by the moving mechanism, and the main ridge mechanism is opposed to the ridge. The main embankment mechanism raises the mud on the old ridge when the traveling body travels along the old ridge.On the other hand, the main rotation ridge of the main ridge mechanism rotates through the power transmission mechanism, and A plurality of pressing surfaces are formed at intervals on the outer peripheral portion of the ridge, and a pressing plate having a length from the pressing surface at the front position in the rotation direction to the pressing surface at the adjacent rear position is formed on each pressing surface. Since the front part of the body is arranged, the pressing plate body presses the embankment with the rotation of the main rotating ridge and is strongly pressed by the pressing surface portion through the pressing plate body. The pressure is intermittently tightened due to the presence of the pressing surface part, and the entire outer circumference of the main rotary ridge The tightening pressure can be increased by reducing the tightening pressure area compared to the structure where tightening is performed in the same way, the ridge can be tightened accordingly, and after performing the ridge work by the main ridge mechanism When the mounting member is moved in the lateral direction with respect to the traveling direction by the moving mechanism, the sub-row ridge mechanism is positioned opposite the ridge, and the traveling body travels along the old ridge, the shaving rotator cuts the old ridge. On the other hand, the sub-rotating ridge body of the sub-levee mechanism rotates through the power transmission mechanism, and it is possible to perform the levee work of the unaligned ridge processing part that was not performed by the main levee mechanism. A plurality of pressing surfaces are formed at intervals on the outer peripheral portion of the rotary ridge. A pressure is applied to each pressing surface from the pressing surface at the front position in the rotation direction to the pressing surface at the adjacent rear position. Since the front part of the tightening plate is arranged, the pressing plate of the sub-rotating ridge Pressurized strongly tightened via a clamping plate body by clamping face with pressure clamping,
The pressure is intermittently tightened due to the presence of the plurality of pressing surfaces,
Due to the presence of multiple pressing surfaces, the tightening pressure can be increased by reducing the tightening pressure area compared to the structure in which pressing is performed on the entire outer peripheral surface of the sub-rotating ridge, and the ridges can be firmly tightened accordingly Can be.

【0030】又、請求項2記載の発明にあっては、上記
動力伝導機構として、上記連結部材に走行機体の動力源
から動力を受ける入力軸を配設すると共に取付部材に出
力軸を配設し、連結部材に入力軸を中心として垂直旋回
可能な入側旋回部材を配設し、取付部材に出力軸を中心
として垂直旋回可能な出側旋回部材を配設し、入側旋回
部材と出側旋回部材との間に中間軸を架設し、かつ、入
力軸と中間軸との間に入側伝導機構を配設すると共に出
力軸と中間軸との間に出側伝導機構を配設しているか
ら、取付部材を移動機構により側方方向に移動させたと
しても、走行機体の動力源から整畦機体側への動力を円
滑に伝導することができると共に構造の簡素化を図るこ
とができ、又、請求項3記載の発明にあっては、上記主
盛土機構の進行方向前方位置に上記旧畦を削土可能な削
土機構を設けてなるから、削土機構により旧畦面を予め
削土でき、この削土された畦面上に主盛土機構により盛
土することになるから、旧畦土と盛土との結着性を高め
ることができ、それだけ強固な畦を得ることができ、
又、請求項4記載の発明にあっては、上記副整畦機構の
副回転整畦体を着脱自在に設けてなるから、主整畦機構
により整畦作業を行うとき、副回転整畦体を取り外すこ
とができ、それだけ主回転整畦体により良好に整畦作業
を行うことができる。
According to the second aspect of the present invention, as the power transmission mechanism, an input shaft receiving power from a power source of the traveling body is provided on the connecting member, and an output shaft is provided on the mounting member. The connecting member is provided with an input-side turning member capable of turning vertically about the input shaft, and the mounting member is provided with an output-side turning member capable of turning vertically about the output shaft. An intermediate shaft is provided between the input shaft and the intermediate shaft, and an output transmission mechanism is provided between the output shaft and the intermediate shaft. Therefore, even if the mounting member is moved in the lateral direction by the moving mechanism, it is possible to smoothly transmit the power from the power source of the traveling body to the ridge body side and to simplify the structure. According to the third aspect of the present invention, the traveling direction of the main embankment mechanism is provided. Is provided with a soil excavation mechanism that can excavate the old ridges in one direction, so that the old levee surface can be excavated in advance by the soil excavation mechanism, and embankment by the main embankment mechanism on this excavated ridge surface. Therefore, it is possible to enhance the binding between the old ridge and the embankment, and to obtain a strong ridge,
Further, in the invention according to claim 4, since the sub-rotating ridge body of the sub-ribbling mechanism is detachably provided, the sub-rotating levee body is used when the levying work is performed by the main levee mechanism. Can be removed, and the main rotating levee body can perform the levee work better.

【0031】以上の如く、所期の目的を充分達成するこ
とができる。
As described above, the intended purpose can be sufficiently achieved.

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

【図1】本発明の実施の形態例の全体側面図である。FIG. 1 is an overall side view of an embodiment of the present invention.

【図2】本発明の実施の形態例の拡大側面図である。FIG. 2 is an enlarged side view of the embodiment of the present invention.

【図3】本発明の実施の形態例の平面図である。FIG. 3 is a plan view of the embodiment of the present invention.

【図4】本発明の実施の形態例の拡大側断面図である。FIG. 4 is an enlarged side sectional view of the embodiment of the present invention.

【図5】本発明の実施の形態例の縦断面図である。FIG. 5 is a longitudinal sectional view of the embodiment of the present invention.

【図6】本発明の実施の形態例の後面図である。FIG. 6 is a rear view of the embodiment of the present invention.

【図7】本発明の実施の形態例の前面図である。FIG. 7 is a front view of the embodiment of the present invention.

【図8】本発明の実施の形態例の部分拡大断面図であ
る。
FIG. 8 is a partially enlarged cross-sectional view of the embodiment of the present invention.

【図9】本発明の実施の形態例の縦断面図である。FIG. 9 is a longitudinal sectional view of the embodiment of the present invention.

【図10】本発明の実施の形態例の平面図である。FIG. 10 is a plan view of the embodiment of the present invention.

【図11】本発明の実施の形態例の後面図である。FIG. 11 is a rear view of the embodiment of the present invention.

【図12】本発明の実施の形態例の側面図である。FIG. 12 is a side view of the embodiment of the present invention.

【図13】本発明の実施の形態例の前面図である。FIG. 13 is a front view of the embodiment of the present invention.

【図14】整畦作業の説明平面図である。FIG. 14 is an explanatory plan view of the levee work.

【符号の説明】[Explanation of symbols]

W 畦 W1 上面 W2 側面 T 未整畦処理部分 K 圧締面部 D 圧締面部 G 圧締板体 E 圧締板体 1 走行機体 2 連結機構 3 連結部材 8 移動機構 10 動力伝導機構 14 入力軸 18 出力軸 20 入側旋回部材 22 出側旋回部材 25 中間軸 26 入側伝導機構 27 出側伝導機構 28 主整畦機構 29 副整畦機構 30 主盛土機構 31 主回転整畦体 32 削土回転体 33 副回転整畦体 56 削土機構W ridge W 1 top surface W 2 side surface T Unaligned ridge processing portion K pressing surface portion D pressing surface portion G pressing plate body E pressing plate body 1 traveling body 2 connecting mechanism 3 connecting member 8 moving mechanism 10 power transmission mechanism 14 input Shaft 18 Output shaft 20 Inlet turning member 22 Outlet turning member 25 Intermediate shaft 26 Inlet power transmission mechanism 27 Outlet power transmission mechanism 28 Main ridge arrangement mechanism 29 Secondary ridge arrangement mechanism 30 Main embankment mechanism 31 Main rotating ridge body 32 Shaving Rotating body 33 Sub-rotating ridge body 56 Earth removal mechanism

Claims (4)

【特許請求の範囲】[Claims] 【請求項1】 走行機体に連結部材を連結し、該連結部
材に取付部材を進行方向に対して側方方向に移動自在に
設け、該取付部材を移動させる移動機構を設け、該取付
部材に整畦機体を取付け、該走行機体と整畦機体との間
に動力伝導機構を設け、該整畦機体の進行方向両側部に
主整畦機構及び副整畦機構を配設してなり、上記主整畦
機構は旧畦上に土を盛り上げる主盛土機構及び該主盛土
機構の進行方向後方位置に配置されて畦の上面及び一方
側面を回転整畦可能な主回転整畦体からなり、上記副整
畦機構は旧畦を削土可能な削土回転体及び該削土回転体
の進行方向後方位置に配置されて畦の上面及び一方側面
を回転整畦可能な副回転整畦体からなり、該主回転整畦
体及び副回転整畦体は外周部分に圧締面部を間隔を置い
て複数個形成すると共に該各圧締面部に隣り合う回転方
向後方位置の圧締面部に至る長さの圧締板体の前部を取
付けてなることを特徴とする整畦機。
1. A connecting member is connected to a traveling body, a mounting member is provided on the connecting member so as to be movable in a lateral direction with respect to a traveling direction, and a moving mechanism for moving the mounting member is provided. The ridge body is attached, a power transmission mechanism is provided between the traveling body and the ridge body, and a main ridge mechanism and a sub ridge mechanism are arranged on both sides in the traveling direction of the ridge body. The main ridge mechanism comprises a main embankment mechanism for raising the soil on the old ridge and a main rotary ridge body arranged at a position rearward in the traveling direction of the main embankment mechanism and capable of rotating and adjusting the upper surface and one side surface of the ridge. The ridge setting mechanism is composed of a sub-rotation ridge that is capable of shaving the old ridge and a sub-rotation ridge that is arranged at the rear position in the direction of travel of the rotator and can rotate and control the top and one side of the ridge. When the main rotating ridge and the sub-rotating ridge are formed with a plurality of pressing surfaces at intervals on the outer peripheral portion. A levitation machine comprising a front portion of a pressing plate body having a length reaching a pressing surface portion at a rearward position in the rotation direction adjacent to each pressing surface portion.
【請求項2】 上記動力伝導機構として、上記連結部材
に走行機体の動力源から動力を受ける入力軸を配設する
と共に取付部材に整畦機構の駆動源となる出力軸を配設
し、該連結部材に入力軸を中心として垂直旋回可能な入
側旋回部材を配設し、該取付部材に出力軸を中心として
垂直旋回可能な出側旋回部材を配設し、該入側旋回部材
と出側旋回部材との間に中間軸を架設し、かつ該入力軸
と中間軸との間に入側伝導機構を配設すると共に該出力
軸と中間軸との間に出側伝導機構を配設して構成したこ
とを特徴とする請求項1記載の整畦機。
2. As the power transmission mechanism, an input shaft receiving power from a power source of the traveling body is disposed on the connecting member, and an output shaft serving as a drive source of the ridge arrangement mechanism is disposed on a mounting member. The connecting member is provided with an input-side turning member capable of vertical turning about the input shaft, and the mounting member is provided with an output-side turning member capable of turning vertically about the output shaft. An intermediate shaft is provided between the input shaft and the intermediate shaft, and an input-side transmission mechanism is provided between the input shaft and the intermediate shaft, and an output-side transmission mechanism is provided between the output shaft and the intermediate shaft. 2. The ridge-removing machine according to claim 1, wherein the ridge-removing machine is configured as follows.
【請求項3】 上記主盛土機構の進行方向前方位置に上
記旧畦を削土可能な削土機構を設けてなることを特徴と
する請求項1又は2記載の整畦機。
3. The leveling machine according to claim 1, further comprising a shaving mechanism capable of shaving the old ridge at a position forward of the main embankment mechanism in the traveling direction.
【請求項4】 上記副盛土機構の副回転整畦体を着脱自
在に設けてなることを特徴とする請求項1〜3のいずれ
か1項に記載の整畦機。
4. The levee control device according to claim 1, wherein the sub-rotating ridge of the sub-filling mechanism is detachably provided.
JP2001008333A 2001-01-16 2001-01-16 Ridge-leveling machine Pending JP2002209403A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP2001008333A JP2002209403A (en) 2001-01-16 2001-01-16 Ridge-leveling machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP2001008333A JP2002209403A (en) 2001-01-16 2001-01-16 Ridge-leveling machine

Publications (1)

Publication Number Publication Date
JP2002209403A true JP2002209403A (en) 2002-07-30

Family

ID=18875965

Family Applications (1)

Application Number Title Priority Date Filing Date
JP2001008333A Pending JP2002209403A (en) 2001-01-16 2001-01-16 Ridge-leveling machine

Country Status (1)

Country Link
JP (1) JP2002209403A (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2012200170A (en) * 2011-03-24 2012-10-22 Fuji Trailer Manufacturing Co Ltd Levee reshaping machine
JP2012217400A (en) * 2011-04-11 2012-11-12 Fuji Trailer Manufacturing Co Ltd Levee-shaping machine

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2012200170A (en) * 2011-03-24 2012-10-22 Fuji Trailer Manufacturing Co Ltd Levee reshaping machine
JP2012217400A (en) * 2011-04-11 2012-11-12 Fuji Trailer Manufacturing Co Ltd Levee-shaping machine

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