JP2016052263A - Ridge arranging machine - Google Patents

Ridge arranging machine Download PDF

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JP2016052263A
JP2016052263A JP2014178908A JP2014178908A JP2016052263A JP 2016052263 A JP2016052263 A JP 2016052263A JP 2014178908 A JP2014178908 A JP 2014178908A JP 2014178908 A JP2014178908 A JP 2014178908A JP 2016052263 A JP2016052263 A JP 2016052263A
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pressing
fixed
outer peripheral
movable
peripheral portion
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JP6395256B2 (en
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功 皆川
Isao Minagawa
功 皆川
俊男 皆川
Toshio Minagawa
俊男 皆川
貴行 飯岡
Takayuki Iioka
貴行 飯岡
田中 雅文
Masafumi Tanaka
雅文 田中
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Fuji Trailer Co Ltd
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Fuji Trailer Co Ltd
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Abstract

PROBLEM TO BE SOLVED: To provide a ridge arranging machine that is formed by providing a through-hole between a mounting part and pressing face part of an outer peripheral portion of a rotation ridge arranging body, inserting and arranging a fixation end of a pressing plate in the through-hole, and fixing the fixation end to the mounting part of the rotation ridge arranging body, accordingly, the front end of the fixation end of the pressing plate is deeply inserted in the through-hole and the cut protrusion of a ridge surface by the front end of the fixation end can be avoided, and thereby the pressing plate can gradually perform tightening pressure of embankment while bending and operating in a curved shape from a flat shape to the inside by the existence of the through-hole.SOLUTION: A ridge arranging machine is formed as follows: a rotation direction front end of a pressing plate G is formed in a fixation end Gfixed in a mounting part 13a of an outer peripheral portion of a rotation ridge arranging body 13, and a rotation direction rear end is formed in a free end Gcapable of being separated from an outer peripheral portion of the rotation ridge arranging body; a pressing face part K is provided in an inner opposed position of the free end in the pressing plate of the outer peripheral portion of the rotation ridge arranging body; a through-hole F is provided between the mounting part of the outer peripheral portion of the rotation ridge arranging body and the pressing face part; and the fixation end of the pressing plate is inserted and arranged in the through-hole and the fixation end is fixed to the mounting part of the rotation ridge arranging body.SELECTED DRAWING: Figure 7

Description

本発明は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。   The present invention relates to a straightening machine used for wrinkle creation work, repair work, and the like.

従来、この種の整畦機として、特許第4154545号の如く、走行機体に連結機構により機枠を連結し、該機枠に旧畦上に土を盛り上げる盛土機構を設け、該盛土機構の進行方向後方位置に畦面を圧接回転により回転整畦可能な回転整畦体をもつ整畦機構を設け、上記回転整畦体の外周部分に複数個の圧締面体を間隔を置いて配設すると共に各々の圧締面体に回転方向前方位置の圧締面体側から隣り合う後方位置の圧締面体の圧締面部に至る可撓弾性をもつ圧締板体を配設した構造のものが知られている。   Conventionally, as a sorter of this kind, as shown in Japanese Patent No. 4154545, a machine frame is connected to a traveling machine body by a connection mechanism, and a banking mechanism for raising soil on the old fence is provided in the machine frame, and the traveling direction of the banking mechanism An adjusting mechanism having a rotating adjusting body capable of rotating and adjusting the surface of the surface by pressure contact rotation is provided at a rear position, and a plurality of pressing surface bodies are arranged at intervals on the outer peripheral portion of the rotating adjusting body. There is known a structure in which each pressing surface body is provided with a flexible elastic pressing plate body extending from the pressing surface body side at the front position in the rotational direction to the pressing surface portion of the adjacent pressing position body at the rear position. Yes.

一方、特許第3622164号及び特許第3493612号の如く、上記回転整畦体の外周部分に金属材や樹脂材により形成されて全表面が連続平滑面に形成された円錐状面や円筒状面をもつ固定面板体を配設した構造のものも知られている。   On the other hand, as disclosed in Japanese Patent No. 3622164 and Japanese Patent No. 3493612, a conical surface or a cylindrical surface, which is formed of a metal material or a resin material on the outer peripheral portion of the rotary adjuster and has an entire surface formed as a continuous smooth surface, is used. There is also known a structure in which a fixed face plate is provided.

特許第4154545号Japanese Patent No. 4154545 特許第3622164号Patent No. 3622164 特許第3493612号Japanese Patent No. 3493612

一般的に、畦の造成や畦の修復などの整畦作業においては、例えば、粘土質、砂質、間隙比率、含水比率、粒度などの圃場及び畦の土質性状や例えば、晴天、雨天などの整畦作業時の気象条件などによって畦の仕上状態に影響を及ぼすことが分かっている。   In general, in laying work such as cocoon creation and cocoon repair, for example, clay, sandy, void ratio, moisture content, particle size, etc., and soil soil properties, such as fine weather, rainy weather, etc. It is known that the finishing condition of the kite is affected by the weather conditions during the trimming operation.

例えば、複数個の圧締板体をもつ回転整畦体による整畦作業の場合には、比較的土質性状が砂質の土壌であって気象条件は乾き状態においての整畦作業に適することになり、一方、上記回転整畦体の外周部分に金属材や樹脂材により形成されて全表面が連続平滑面に形成された固定面板体をもつ回転整畦体による整畦作業の場合には、比較的粘土質の土壌であって濡れ状態での整畦作業に適するということが判明している。   For example, in the case of trimming work using a rotary trimming body having a plurality of pressing plate bodies, the soil is relatively sandy and the weather conditions are suitable for trimming work in a dry state. On the other hand, in the case of trimming work by a rotating trimming body having a fixed face plate formed of a metal material or a resin material on the outer peripheral portion of the rotating trimming body and having the entire surface formed as a continuous smooth surface, It has been found that it is a relatively clayey soil and is suitable for sizing work in a wet state.

すなわち、上記比較的粘土質の土壌であって濡れ状態において、上記複数個の圧締板体をもつ回転整畦体により整畦作業を行った場合、仕上状態において、畦の表面が波打ったり、畦の表皮土の部分剥離により凹凸を呈したりして、表土が比較的に崩れ易く、畦土の内部の圧締状態が低下することがあるという不都合を有している。   That is, in the case of the relatively clayey soil in a wet state, when the finishing operation is performed by the rotary adjustment body having the plurality of pressing plate bodies, the surface of the basket is wavy in the finished state. The surface soil is relatively easy to collapse due to the partial peeling of the surface soil of the koji, and the pressing condition inside the kneaded material may be lowered.

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、走行機体に連結機構により機枠を連結し、該機枠に旧畦上に土を盛り上げる盛土機構を設け、該盛土機構の進行方向後方位置に畦面を圧接回転により回転整畦可能な回転整畦体をもつ整畦機構を設け、該回転整畦体の外周部分は上記畦面を回転整畦可能な圧締領域に形成されてなり、上記圧締領域は固定圧締領域及び可動圧締領域からなり、該固定圧締領域は固定面板体から構成され、該可動圧締領域は可動面板体から構成され、該可動面板体は可撓弾性を有する圧締板体からなり、該圧締板体の回転方向前方端部は上記回転整畦体の外周部分の取付部に固定される固定端部に形成されると共に回転方向後方端部は該回転整畦体の外周部分から離反可能な遊離端部に形成され、該回転整畦体の外周部分の該圧締板体の遊離端部の内面対向位置に圧締面部を設け、該回転整畦体の外周部分の取付部と上記圧締面部との間に通穴を設け、該通穴に該圧締板体の該固定端部を挿通配置して該固定端部を該回転整畦体の取付部に固定してなることを特徴とする整畦機にある。   SUMMARY OF THE INVENTION The present invention aims to solve such inconveniences. Among the present inventions, the invention according to claim 1 connects a machine frame to a traveling machine body by a connection mechanism, Is provided with a leveling mechanism having a rotary leveling body capable of rotating and leveling the surface by press-fitting rotation at a rear position in the advancing direction of the banking mechanism, and an outer peripheral portion of the rotary leveling body is The collar surface is formed in a pressure-clamping region capable of rotational adjustment, and the pressure-clamping region is composed of a fixed pressure-clamping region and a movable pressure-clamping region. The pressing area is composed of a movable face plate, and the movable face plate is made of a flexible elastic pressure plate. The front end of the pressure plate in the rotational direction is attached to the outer peripheral portion of the rotary adjuster. Formed at the fixed end fixed to the part, and the rear end in the rotational direction is the outer periphery of the rotating trimming body A clamping surface portion is provided at a position facing the inner surface of the free end portion of the pressing plate body at the outer peripheral portion of the rotary trimming body, and is attached to the outer peripheral portion of the rotary trimming body. A through hole is provided between the pressing portion and the pressing surface portion, and the fixed end portion of the pressing plate body is inserted into the through hole, and the fixed end portion is fixed to the mounting portion of the rotary adjusting body. It is in a sizing machine characterized by

又、請求項2記載の発明は、上記回転整畦体は畦の一方側面を整畦可能な側面整畦体及び畦の上面を整畦可能な上面整畦体からなり、上記側面整畦体及び上記上面整畦体の各々の外周部分は上記畦面を回転整畦可能な圧締領域に形成され、該側面整畦体及び該上面整畦体の該圧締領域は固定圧締領域及び可動圧締領域からなることを特徴とするものである。   According to a second aspect of the present invention, the rotary trimming body comprises a side trimming body capable of trimming one side surface of the scissors and a top surface trimming body capable of trimming the top surface of the scissors. And an outer peripheral portion of each of the upper surface trimming bodies is formed in a pressure-clamping region capable of rotating and trimming the collar surface, and the side surface trimming body and the pressure-clamping region of the upper surface trimming body include a fixed pressure-clamping region and It consists of a movable pressing area.

又、請求項3記載の発明は、上記回転整畦体の外周部分の圧締領域は一つの固定圧締領域及び複数の可動圧締領域、又は、複数の固定圧締領域及び複数の可動圧締領域からなることを特徴とするものである。   According to a third aspect of the present invention, the pressing region of the outer peripheral portion of the rotary trimming body includes one fixed pressing region and a plurality of movable pressing regions, or a plurality of fixed pressing regions and a plurality of moving pressures. It is characterized by comprising a tightening region.

本発明は上述の如く、請求項1記載の発明にあっては、走行機体を旧畦に沿って走行させ、一方では盛土機構が畦際の圃場泥土を旧畦上に連続的に盛り上げ、他方では整畦機構が駆動されて上記回転整畦体は回転し、上記回転整畦体の外周部分は上記畦面を回転整畦可能な圧締領域に形成され、圧締領域は固定圧締領域及び可動圧締領域からなるので、上記畦面は回転整畦体の外周部分の圧締領域としての固定圧締領域及び可動圧締領域により回転整畦されることになり、固定圧締領域及び可動圧締領域の固定及び可動の二種類の圧締により畦面を圧締することができ、固定及び可動の異なる圧締作用により畦面を圧締することができ、土質性状や整畦作業時の気象条件などに対する融通性を得ることができ、それだけ、整畦作業を良好に行うことができ、かつ、上記固定圧締領域は固定面板体から構成され、上記可動圧締領域は可動面板体から構成されているから、固定圧締領域においては固定面板体の連続する平滑な固定表面による圧接回転接触により整畦作業がなされ、可動圧締領域においては可動面板体の可動な表面による圧接回転接触により整畦作業がなされ、固定圧締領域の固定面板体及び可動圧締領域の可動面板体による固定及び可動の二種類の圧締により畦面を圧締することができ、固定及び可動の異なる圧締作用により畦面を圧締することができ、土質性状や整畦作業時の気象条件などに対する融通性を得ることができ、それだけ、整畦作業を良好に行うことができ、さらに、上記可動面板体は可撓弾性を有する圧締板体からなり、圧締板体の回転方向前方端部は上記回転整畦体の外周部分の取付部に固定される固定端部に形成されると共に回転方向後方端部は回転整畦体の外周部分から離反可能な遊離端部に形成され、回転整畦体の外周部分の圧締板体の遊離端部の内面対向位置に圧締面部を設けてなるから、回転整畦体の回転に伴い、圧締板体は自己の可撓弾性により畦面の圧接位置と復元位置との間でフラップ動作して徐々に盛土を締圧すると共に回転整畦体の外周部分の圧締板体の遊離端部の内面対向位置の圧締面部の存在により盛土を強く締圧し、圧締板体は可撓弾性を有しているので、圧締板体は平ら状から撓み動作しつつフラップ動作して盛土を徐々に締圧することができ、盛土を確実に締圧することができ、一層堅牢な畦を得ることができ、又、さらに、上記回転整畦体の外周部分の取付部と上記圧締面部との間に通穴を設け、通穴に圧締板体の固定端部を挿通配置して固定端部を回転整畦体の取付部に固定してなるから、圧締板体の固定端部の前端部は通穴内に没入して固定端部の前端部による畦面の削出を回避することができ、回転整畦体の回転を円滑に行うことができると共に通穴の存在により圧締板体は平ら状から内方へ湾曲状に撓み動作しつつ盛土を徐々に締圧することができ、圧締板体の内方へ湾曲状の撓み動作により盛土を掴持することになって盛土を確実に締圧することができ、一層堅牢な畦を得ることができると共に圧締板体への土の付着現象を抑制することができ、良好な整畦作業を行うことができる。   As described above, according to the present invention, the traveling machine body travels along the old dredge, while the embankment mechanism continuously raises the paddy field mud on the old dredge, The adjusting mechanism is driven to rotate the rotating adjuster, and the outer peripheral portion of the rotating adjuster is formed in a pressing region capable of rotating and adjusting the flange surface. Since the movable pressing area is composed of the movable pressing area, the flange surface is rotationally adjusted by the fixed pressing area and the moving pressing area as the pressing area of the outer peripheral portion of the rotating adjusting body. The heel surface can be clamped by two types of clamping, fixed and movable, and the heel surface can be clamped by different fixed and movable clamping actions. Therefore, it is possible to obtain flexibility for weather conditions, etc. The fixed pressing area is composed of a fixed face plate, and the movable pressing area is composed of a movable face plate, so that the fixed face plate is continuously and smoothly fixed in the fixed pressing area. Trimming work is performed by pressure contact rotation contact with the surface, and in the movable pressing area, the trimming work is performed by pressure contact rotation contact with the movable surface of the movable face plate body, and the fixed face plate body and the movable pressing area of the fixed pressing area are The saddle surface can be clamped by two types of fixed and movable pressing with a movable face plate, and the saddle surface can be clamped by different clamping actions. Therefore, it is possible to obtain the flexibility of the weather conditions and the like, and the trimming work can be performed well. Further, the movable surface plate body is composed of a compression plate body having flexible elasticity. Front end of rotation direction The rotation adjusting member is formed at a fixed end fixed to the mounting portion of the outer peripheral portion of the rotating adjuster and the rear end in the rotation direction is formed at a free end that can be separated from the outer peripheral portion of the rotating adjuster. Since the pressing surface portion is provided at the inner surface facing the inner surface of the free end portion of the pressing plate body at the outer peripheral portion of the body, the pressing plate body is deformed by its own flexible elasticity along with the rotation of the rotating trimming body. Flap operation is performed between the pressure contact position and the restoration position to gradually tighten the embankment, and the embankment is strengthened by the presence of the pressing surface portion at the position opposite to the inner surface of the free end of the pressing plate body on the outer periphery of the rotary adjuster. Since the clamping plate body is flexible and elastic, the clamping plate body can be bent from the flat shape to flap, and can gradually clamp the embankment, thereby securely clamping the embankment. And a more robust ridge can be obtained, and further, the outer peripheral portion of the rotary adjuster can be removed. Since a through hole is provided between the attaching part and the pressing surface part, the fixed end of the pressing plate body is inserted and arranged in the through hole, and the fixed end is fixed to the mounting part of the rotary adjusting body. The front end portion of the fixed end portion of the pressing plate body can be immersed in the through-hole, and the cutting of the surface by the front end portion of the fixed end portion can be avoided, so that the rotation adjusting body can be smoothly rotated. In addition, due to the presence of the through-holes, the pressing plate body can bend gradually from the flat to the inside while bending and gradually pressurize the embankment, and the inward bending of the pressing plate can be applied to the embankment. Grasping the embankment is ensured by gripping, and a more robust dredging can be obtained, and the adhesion phenomenon of the soil to the crushing plate body can be suppressed, and a good trimming work can be performed. It can be carried out.

又、請求項2記載の発明にあっては、上記回転整畦体は畦の一方側面を整畦可能な側面整畦体及び畦の上面を整畦可能な上面整畦体からなり、上記側面整畦体及び上記上面整畦体の各々の外周部分は上記畦面を回転整畦可能な圧締領域に形成され、側面整畦体及び上面整畦体の圧締領域は固定圧締領域及び可動圧締領域からなるので、上記畦面は回転整畦体の外周部分の圧締領域としての固定圧締領域及び可動圧締領域により回転整畦されることになり、固定圧締領域及び可動圧締領域の固定及び可動の二種類の圧締により畦面を圧締することができ、固定及び可動の異なる圧締作用により畦面を圧締することができ、土質性状や整畦作業時の気象条件などに対する融通性を得ることができ、それだけ、整畦作業を良好に行うことができる。   According to a second aspect of the present invention, the rotary trimming body comprises a side trimming body capable of trimming one side surface of the collar and an upper surface trimming body capable of trimming the upper surface of the collar. The outer periphery of each of the trimming body and the upper surface trimming body is formed in a clamping area where the collar surface can be rotationally trimmed, and the clamping area of the side trimming body and the upper surface trimming body is a fixed clamping area and Since the movable pressing area is composed of the movable pressing area, the flange surface is rotationally adjusted by the fixed pressing area and the moving pressing area as the pressing area of the outer peripheral portion of the rotating adjusting body. The heel surface can be clamped by two types of clamping, fixed and movable, and the heel surface can be clamped by different fixed and movable clamping actions. As a result, it is possible to obtain flexibility for weather conditions and the like, and to perform the trimming work well.

又、請求項3記載の発明は、上記回転整畦体の外周部分の圧締領域は一つの固定圧締領域及び複数の可動圧締領域、又は、複数の固定圧締領域及び複数の可動圧締領域からなるので、例えば、固定圧締領域、可動圧締領域、固定圧締領域の繰り返し、固定圧締領域、可動圧締領域、可動圧締領域、固定圧締領域の繰り返しによる固定及び可動の二種類の圧締により畦面を圧締することができ、固定及び可動の異なる圧締作用により畦面を圧締することができ、土質性状や整畦作業時の気象条件などに対する融通性を得ることができ、それだけ、整畦作業を良好に行うことができる。   According to a third aspect of the present invention, the pressing region of the outer peripheral portion of the rotary trimming body includes one fixed pressing region and a plurality of movable pressing regions, or a plurality of fixed pressing regions and a plurality of moving pressures. Since it consists of clamping regions, for example, fixed and movable by repeating a fixed pressing region, a movable pressing region, a fixed pressing region, a fixed pressing region, a movable pressing region, a movable pressing region, and a fixed pressing region. The claw surface can be clamped by two types of crushing, and the claw surface can be clamped by different fixed and movable crushing actions, and it is flexible for soil properties and weather conditions during trimming work. Therefore, the trimming work can be performed well.

本発明の実施の第一形態例の全体側面図である。1 is an overall side view of a first embodiment of the present invention. 本発明の実施の第一形態例の部分拡大側面図である。It is a partial expanded side view of the first embodiment of the present invention. 本発明の実施の第一形態例の部分平面図である。It is a fragmentary top view of the 1st example of an embodiment of the invention. 本発明の実施の第一形態例の部分後面図である。It is a partial rear view of the first embodiment of the present invention. 本発明の実施の第一形態例の前断面図である。It is a front sectional view of the first embodiment of the present invention. 本発明の実施の第一形態例の部分拡大断面図である。It is a partial expanded sectional view of the first embodiment of the present invention. 本発明の実施の第一形態例の部分拡大分解斜視図である。It is a partial expansion disassembled perspective view of the first embodiment of the present invention. 本発明の実施の第一形態例の使用状態の部分拡大断面図である。It is a partial expanded sectional view of the use condition of the 1st example of embodiment of this invention. 本発明の実施の第一形態例の使用状態の部分拡大断面図である。It is a partial expanded sectional view of the use condition of the 1st example of embodiment of this invention. 本発明の実施の第二形態例の部分拡大分解斜視図である。It is a partial expansion disassembled perspective view of the second embodiment of the present invention. 本発明の実施の第二形態例の使用状態の部分拡大断面図である。It is a partial expanded sectional view of the use condition of the 2nd embodiment of this invention. 本発明の実施の第三形態例の部分拡大分解斜視図である。It is a partial expansion disassembled perspective view of the third embodiment of the present invention. 本発明の実施の第三形態例の使用状態の部分拡大断面図である。It is a partial expanded sectional view of the use condition of the 3rd embodiment of this invention.

図1乃至図13は本発明の実施の形態例を示し、図1乃至図9は第一形態例、図10、図11は第二形態例、図12、図13は第三形態例である。   1 to 13 show an embodiment of the present invention, FIGS. 1 to 9 show a first embodiment, FIGS. 10 and 11 show a second embodiment, and FIGS. 12 and 13 show a third embodiment. .

図1乃至図9の第一形態例において、1は走行機体であって、この場合、図1、図2、図3の如く、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により機枠3を上下動可能に連結している。   In the first embodiment shown in FIGS. 1 to 9, 1 is a traveling machine body. In this case, a tractor is used as shown in FIGS. The machine frame 3 is coupled by the coupling mechanism 2 so as to be movable up and down.

4は盛土機構であって、この場合、図3、図4の如く、盛土ロータ5からなり、盛土ロータ5はロータ胴5aの外周に複数個の掻上刃5b・・を突設すると共にロータ胴5aに取付軸5cを突設してなり、上記機枠3に整畦機体6を突設し、整畦機体6に盛土ロータ5の上方及び畦Wの上方を覆う形状のカバー部材6aが取り付けられ、機枠3に走行機体1に設けられた動力取出軸1aにより回転する主軸7を軸受し、整畦機体6に中間軸8を畦造成方向と平行にして回転自在に設け、中間軸8に取付軸5cを連結し、主軸7の回転によりギヤ列9、自在継手10、ギヤ列11、中間軸8を経て盛土ロータ5を回転させ、盛土ロータ5の回転により畦W際の圃場Mの土を削出軌跡Nをもって削出して旧畦Wに向けて跳ね上げて盛り上げるように構成している。   Reference numeral 4 denotes a banking mechanism. In this case, as shown in FIGS. 3 and 4, the banking rotor 5 comprises a banking rotor 5, and the banking rotor 5 has a plurality of scraping blades 5b. A mounting shaft 5c protrudes from the body 5a, and a trimming machine body 6 projects from the machine frame 3, and a cover member 6a having a shape covering the top of the embankment rotor 5 and the top of the ridge W is provided on the trimming machine body 6. The main shaft 7 is mounted on the machine frame 3 and rotated by the power take-off shaft 1a provided on the traveling machine body 1, and the intermediate shaft 8 is rotatably provided in the adjusting machine body 6 in parallel with the rod forming direction. 8, the mounting shaft 5 c is connected, the main shaft 7 rotates to rotate the embankment rotor 5 through the gear train 9, the universal joint 10, the gear train 11, and the intermediate shaft 8, and the embankment rotor 5 rotates to rotate the filling field 5. To excavate the soil with the excavation trajectory N and jump up toward the old fence W It is configured.

12は整畦機構であって、この場合、図2、図4、図6、図7、図8、図9の如く、畦W面を外周部分の圧接回転により回転整畦可能な回転整畦体13と回転機構14とからなり、回転整畦体13の外周部分は上記畦W面を回転整畦可能な圧締領域Eに形成され、圧締領域Eは固定圧締領域E及び可動圧締領域Eから構成されている。 Reference numeral 12 denotes an adjusting mechanism. In this case, as shown in FIGS. 2, 4, 6, 7, 7, 8 and 9, the rotational adjusting device can rotate and adjust the W surface by press-rotating the outer peripheral portion. consists of a body 13 rotating mechanism 14., the outer peripheral portion of the rotary Seiaze body 13 is formed the ridge W surface in the rotation Seiaze possible squeezing region E, squeezing region E is a fixed pressure clamping regions E F and a movable and a clamping region E M.

この場合、図8、図9の如く、上記固定圧締領域Eは固定面板体FPから構成され、上記可動圧締領域Eは可動面板体MPから構成され、かつ、この場合、図6、図7、図8の如く、上記可動面板体MPは可撓弾性を有する圧締板体Gからなり、圧締板体Gの回転方向前方端部は上記回転整畦体13の外周部分の取付部13aに固定される固定端部Gに形成されると共に回転方向後方端部は回転整畦体13の外周部分から離反可能な遊離端部Gに形成され、回転整畦体13の外周部分の圧締板体Gの遊離端部Gの内面対向位置としての固定面板体FPの表面の一部に圧締面部Kを設けてなり、この場合、その裏面に圧締面部Kの受圧強度を補強する桟材Kが溶接され、更に、この場合、図6、図7、図8、図9の如く、上記回転整畦体13の外周部分の取付部13aと上記圧締面部Kとの間に通穴Fを設け、通穴Fに圧締板体Gの固定端部Gを外方から内方に挿通配置して固定端部Gを回転整畦体13の取付部13aに固定して構成している。 In this case, FIG. 8, as shown in FIG. 9, the fixing pressure clamping region E F is composed of a fixed surface plate body FP, the movable squeezing region E M consists moving surface plate body MP, and, in this case, FIG. 6 7 and 8, the movable face plate MP is composed of a compression plate G having flexible elasticity, and the front end portion in the rotation direction of the compression plate G is an outer peripheral portion of the rotary adjuster 13. the rotation direction rear end portion is formed into a fixed end portion G 1 which is fixed to the mounting portion 13a is formed on the free end G 2 can be separated from the outer peripheral portion of the rotary Seiaze body 13, the rotating Seiaze 13 It is provided clamping surface portion K in a part of the fixed surface plate body FP surface of the inner surface facing the position of the free end G 2 of the clamping plate member G in the outer peripheral portion, in this case, clamping surface K on the back surface welded crosspieces K 1 is to reinforce the pressure strength, further, in this case, 6, 7, 8, as shown in FIG. 9, the Provided throughbore F between the mounting portion 13a and the clamping surface portion K of the outer peripheral portion of UtateSeiazetai 13, the fixed end portion G 1 of the clamping plate member G from the outside inwardly throughbore F and placed through constitutes a fixed end G 1 fixed to the mounting portion 13a of the rotary Seiaze body 13.

又、この場合、図6、図7、図8の如く、上記回転整畦体13は畦Wの一方側面W2を整畦可能な側面整畦体15及び畦Wの上面W1を整畦可能な上面整畦体16からなり、かつ、回転整畦体13はその回転軸線Oを角度θの斜め上向き方向に配置され、回転整畦体13を回転機構14により回転軸線Oを中心として図中、矢印方向Vに強制回転され、さらに、側面整畦体15及び上面整畦体16は互いに着脱自在に設けられ、上記側面整畦体15及び上記上面整畦体16の各々の外周部分は上記畦W面を回転整畦可能な圧締領域Eに形成され、側面整畦体15及び上面整畦体16の圧締領域Eは固定圧締領域E及び可動圧締領域Eから構成されている。 Further, in this case, 6, 7, as shown in FIG. 8, the rotating Seiaze body 13 Seiaze the upper surface W 1 of one side W 2 of Seiaze possible side Seiaze body 15 and ridge W of ridge W The rotation adjusting body 13 is composed of a possible upper surface adjusting body 16, and the rotation adjusting body 13 is arranged with its rotation axis O in an obliquely upward direction with an angle θ, and the rotation adjusting body 13 is illustrated around the rotation axis O by the rotation mechanism 14. The side trimming body 15 and the top surface trimming body 16 are detachably provided to each other, and the outer peripheral portions of the side surface trimming body 15 and the top surface trimming body 16 are respectively formed the ridges W surface in the rotation Seiaze possible squeezing region E, squeezing region E side Seiaze body 15 and the upper surface Seiaze body 16 consists fixed pressure clamping regions E F and the movable squeezing region E M Has been.

この場合、上記側面整畦体15にあっては、図6、図7、図8の如く、中心筒軸15aに四個の桟材15b・・を放射状に突設し、四個の桟材15b・・の先端部に略円錐形状の固定面板体FPを圧締領域Eの固定圧締領域Eに対応して固定すると共に固定面板体FPの内周面に補強リング材15cを固定し、整畦機体6に駆動軸17を回転軸線Oを角度θの斜め上向き方向にして配置し、上記回転機構14として、駆動軸17を上記ギア列11を介して回転させ、駆動軸17は六角軸状に形成され、駆動軸17に挿通可能な六角穴をもつ上記中心筒軸15aを挿通し、中心筒軸15aを固定ピン15dにより駆動軸17に固定し、かつ、この場合、図8、図9の如く、上記可動面板体MPとしての可撓弾性を有する圧締板体Gの回転方向前方端部の固定端部Gを上記側面整畦体15の外周部分の取付部15eにリベット15fにより固定すると共に側面整畦体15の外周部分の圧締板体Gの回転方向後方端部の側面整畦体15の外周部分から離反可能な遊離端部Gの内面対向位置としての固定面板体FPの表面の一部に圧締面部Kを設けて構成され、この場合、その裏面に圧締面部Kの受圧強度を補強する桟材Kが溶接され、更に、この場合、上記側面整畦体15の外周部分の取付部15eと上記圧締面部Kとの間に通穴Fを形成し、通穴Fに圧締板体Gの固定端部Gを外方から内方に挿通配置して固定端部Gを側面整畦体15の取付部15eに固定して構成している。 In this case, as shown in FIGS. 6, 7 and 8, the side surface trimming body 15 is provided with four crosspieces 15b... Projecting radially on the central cylinder shaft 15a. the reinforcing ring member 15c is fixed to the inner peripheral surface of the fixing surface plate body FP with a fixed surface plate body FP of substantially conical shape tip of 15b · · to fix in response to fixing pressure clamping region E F of the clamping region E The drive shaft 17 is arranged on the rectifying machine body 6 with the rotation axis O obliquely upward at an angle θ, and the drive shaft 17 is rotated via the gear train 11 as the rotation mechanism 14, and the drive shaft 17 is hexagonal. The central cylindrical shaft 15a having a hexagonal hole that can be inserted into the drive shaft 17 is inserted through the shaft, and the central cylindrical shaft 15a is fixed to the drive shaft 17 by a fixing pin 15d. In this case, FIG. As shown in FIG. 9, the rotational direction of the pressing plate G having flexible elasticity as the movable surface plate MP. The rotation direction rear end of the clamping plate member G in the outer peripheral portion of the side surface Seiaze body 15 with a fixed end G 1 of Katatan portion fixed by a rivet 15f to the mounting portion 15e of the outer peripheral portion of the side surface Seiaze 15 from the outer peripheral portion of the side surface Seiaze body 15 on a part of the surface of the fixed surface plate body FP as the inner surface facing the position of the free end G 2 possible away of configured to provide a clamping surface portion K, in this case, on the back surface crosspieces K 1 is welded to reinforce the pressure strength of the clamping surface portion K, further, in this case, the throughbore F between the attachment portion 15e and the clamping surface portion K of the outer peripheral portion of the side surface Seiaze 15 formed, configured to secure the fixed end G 1 of the clamping plate member G the fixed end G 1 and placed through from the outside inward to the attachment portion 15e of the side Seiaze body 15 in throughbore F ing.

又、この場合、上記上面整畦体16にあっては、図6、図7、図8の如く、中心筒軸16aに四個の桟材16b・・を放射状に突設し、四個の桟材16b・・の先端部に略円錐形状の固定面板体FPを圧締領域Eの固定圧締領域Eに対応して固定し、上記回転機構14として、上記駆動軸17に挿通可能な六角穴をもつ上記中心筒軸16aを挿通し、中心筒軸16aを固定ピン16cにより駆動軸17に固定し、かつ、この場合、図6、図7、図8、図9の如く、上記可動面板体MPとしての可撓弾性を有する圧締板体Gの回転方向前方端部の固定端部Gを上記上面整畦体16の外周部分の取付部16dにリベット16eにより固定すると共に上面整畦体16の外周部分の圧締板体Gの回転方向後方端部の上面整畦体16の外周部分から離反可能な遊離端部Gの内面対向位置としての固定面板体FPの表面の一部に圧締面部Kを設けて構成され、この場合、その裏面に圧締面部Kの受圧強度を補強する桟材Kが溶接され、更に、この場合、上記上面整畦体16の外周部分の取付部16dと上記圧締面部Kとの間に通穴Fを形成し、通穴Fに圧締板体Gの固定端部Gを外方から内方に挿通配置して固定端部Gを上面整畦体16の取付部16dに固定して構成している。 Further, in this case, in the upper surface adjusting body 16, as shown in FIGS. 6, 7, and 8, four crosspieces 16 b.. crosspieces 16b · · of the tip of the fixed surface plate body FP of generally conical shape and fixed in correspondence with the fixing pressure clamping region E F of the clamping region E, as the rotation mechanism 14, which can be inserted into the drive shaft 17 The central cylindrical shaft 16a having a hexagonal hole is inserted, and the central cylindrical shaft 16a is fixed to the drive shaft 17 by a fixing pin 16c. In this case, as shown in FIG. 6, FIG. 7, FIG. Jomen Sei with the fixed end G 1 of the rotation direction front end portion of the圧締Ita object G having a flexible elasticity as a plane Ita body MP is fixed by rivets 16e to body protrusion portions (16d) of the peripheral portion of the Jomen Seiaze 16 The outer peripheral portion of the upper surface trimming body 16 at the rear end in the rotation direction of the pressing plate G at the outer peripheral portion of the housing 16 Is configured to provide a clamping surface portion K on a part of the surface of the fixed surface plate body FP as the inner surface position facing away possible free end G 2, in this case, to reinforce the pressure strength of the clamping surface K on the back surface crosspieces K 1 are welded, further, in this case, between the attachment portion 16d and the clamping surface portion K of the outer peripheral portion of the upper surface Seiaze 16 form a throughbore F, clamping plate throughbore F the fixed end portion G 1 body G insertion fixed end G 1 arranged from the outside inwardly and fixed to the mounting portion 16d of the upper surface Seiaze body 16 constitutes.

この場合、上記圧締板体Gは可撓弾性を有するナイロン樹脂や塩化ビニール樹脂等の合成樹脂板により製作され、無負荷時には板状に略平らとなり、外的負荷により弧状に撓み得ると共に負荷解除により自己弾性により略平らに復元変形する材質が用いられている。尚、圧締板体Gは板バネに用いられるバネ鋼製等の金属板材や他の樹脂板材を用いることもある。   In this case, the pressing plate G is made of a synthetic resin plate such as a nylon resin or a vinyl chloride resin having flexible elasticity, and is substantially flat in a plate shape when no load is applied, and can be bent in an arc shape by an external load. A material which is restored and deformed substantially flat by self-elasticity when released is used. The pressing plate G may be made of a metal plate such as spring steel used for a plate spring or other resin plate.

18は削土機構であって、この場合、図3、図5の如く、上記中間軸8に保持枠19の基部を中間軸8と同心上に枢着し、保持枠19の先端部にロータ軸20を回転自在に取付け、ロータ軸20に複数個のナギナタ状の刃体をもつ削土ロータ21を取付け、削土ロータ21の上部にカバー22を配置し、中間軸8とロータ軸20との間にチェーン機構23を架設し、上記盛土機構4の盛土ロータ5の進行方向前方位置の旧畦Wの上面W部分を削土ロータ21によって削出軌跡Sをもって回転削土するように構成したものである。 3 and 5, in this case, as shown in FIGS. 3 and 5, the base portion of the holding frame 19 is pivotally attached to the intermediate shaft 8 concentrically with the intermediate shaft 8, and the rotor is attached to the distal end portion of the holding frame 19. A shaft 20 is rotatably mounted, a grounding rotor 21 having a plurality of naginata-shaped blades is mounted on the rotor shaft 20, a cover 22 is disposed on the top of the grounding rotor 21, and the intermediate shaft 8 and the rotor shaft 20 configured bridged chain mechanism 23, rotates Kezudo with a former ridge W upper surface W 1 moiety cutting out path S by Kezudo rotor 21 of traveling forward position of the embankment rotor 5 of the embankment mechanism 4 between It is a thing.

この実施の第一形態例は上記構成であるから、図1、図2、図3、図8、図9の如く、走行機体1を旧畦Wに沿って図中、矢印方向Qに走行させると共に動力取出軸1aを回転すると、一方では盛土機構4の盛土ロータ5が畦W際の圃場M泥土を旧畦W上に連続的に跳ね上げて盛り上げ、カバー部材6aは盛土ロータ5の上方及び畦W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1aを駆動源として整畦機構12が駆動され、上記回転整畦体13は矢印方向Vに回転し、上記回転整畦体13の外周部分は上記畦W面を回転整畦可能な圧締領域Eに形成され、圧締領域Eは固定圧締領域E及び可動圧締領域Eからなるので、上記畦W面は回転整畦体13の外周部分の圧締領域Eとしての固定圧締領域E及び可動圧締領域Eにより回転整畦されることになり、固定圧締領域E及び可動圧締領域Eの固定及び可動の二種類の圧締により畦W面を圧締することができ、この場合、固定圧締領域E及び可動圧締領域Eの固定及び可動の二種類の交互の圧締により畦W面を圧締することができ、固定及び可動の異なる圧締作用により畦W面を圧締することができ、土質性状や整畦作業時の気象条件などに対する融通性を得ることができ、それだけ、整畦作業を良好に行うことができる。 Since the first embodiment of the present embodiment has the above-described configuration, the traveling machine body 1 travels in the arrow direction Q in the drawing along the old fence W as shown in FIGS. 1, 2, 3, 8, and 9. At the same time, when the power take-out shaft 1a is rotated, the embankment rotor 5 of the embankment mechanism 4 continuously raises and raises the field M mud at the time of dredging W onto the old dredge W, and the cover member 6a is located above the embankment rotor 5 and The mud scattered to the side of the kite W is prevented from splashing, and the mud thus splashed is prevented from scattering outward and falls by its own weight. On the other hand, the grading mechanism 12 is driven by the power take-off shaft 1a of the traveling machine body 1 as a drive source. The rotary trimming body 13 rotates in the arrow direction V, and the outer peripheral portion of the rotary trimming body 13 is formed in a clamping area E capable of rotationally trimming the collar W surface, and the clamping area E is fixed. since consisting squeezing region E F and the movable squeezing region E M, the ridge W face the outer peripheral portion of the rotary Seiaze 13 It would be rotated Seiaze by fixing pressure clamping regions E F and the movable squeezing region E M as squeezing region E, the solid of pressure clamping regions E F and the fixed and movable movable squeezing region E M two kinds of the ridges W surface can be clamped by clamping, in this case, pressing the ridges W surface by a fixed and two kinds of alternating clamping the movable fixed pressure clamping regions E F and the movable squeezing region E M It is possible to press the heel W surface by different fixed and movable pressing actions, and to obtain flexibility for soil properties and weather conditions at the time of finishing work. It can be done well.

又、この場合、図6、図7、図8、図9の如く、上記固定圧締領域Eは固定面板体FPから構成され、上記可動圧締領域Eは可動面板体MPから構成されているから、固定圧締領域Eにおいては固定面板体FPの連続する平滑な固定表面による圧接回転接触により整畦作業がなされ、可動圧締領域Eにおいては可動面板体MPの可動な表面による圧接回転接触により整畦作業がなされ、固定圧締領域Eの固定面板体FP及び可動圧締領域Eの可動面板体MPによる固定及び可動の二種類の圧締により畦W面を圧締することができ、固定及び可動の異なる圧締作用により畦W面を圧締することができ、土質性状や整畦作業時の気象条件などに対する融通性を得ることができ、それだけ、整畦作業を良好に行うことができ、又、この場合、図6、図7、図8、図9の如く、上記可動面板体MPは可撓弾性を有する圧締板体Gからなり、圧締板体Gの回転方向前方端部は上記回転整畦体13の外周部分の取付部13aに固定される固定端部Gに形成されると共に回転方向後方端部は回転整畦体13の外周部分から離反可能な遊離端部Gに形成され、回転整畦体13の外周部分の圧締板体Gの遊離端部Gの内面対向位置に圧締面部Kを設けてなるから、回転整畦体13の回転に伴い、図8、図9の如く、圧締板体Gは自己の可撓弾性により畦W面の圧接位置と復元位置との間でフラップ動作して徐々に盛土を締圧すると共に回転整畦体13の外周部分の圧締板体Gの遊離端部Gの内面対向位置の圧締面部Kの存在により盛土を強く締圧し、圧締板体Gは可撓弾性を有しているので、圧締板体Gは平ら状から撓み動作しつつフラップ動作して盛土を徐々に締圧することができ、盛土を確実に締圧することができ、一層堅牢な畦Wを得ることができ、又、この場合、図8、図9の如く、上記回転整畦体13の外周部分の取付部13aと上記圧締面部Kとの間に通穴Fを設け、通穴Fに圧締板体Gの固定端部Gを外方から内方に挿通配置して固定端部Gを回転整畦体13の取付部13aに固定してなるから、図8及び図9の如く、圧締板体Gの固定端部Gの前端部は通穴F内に没入して固定端部Gの前端部による畦W面の削出を回避することができ、回転整畦体13の回転を円滑に行うことができると共に通穴Fの存在により圧締板体Gは平ら状から内方へ湾曲状に撓み動作しつつ盛土を徐々に締圧することができ、圧締板体Gの内方へ湾曲状の撓み動作により盛土を掴持することになって盛土を確実に締圧することができ、一層堅牢な畦Wを得ることができると共に圧締板体Gへの土の付着現象を抑制することができ、良好な整畦作業を行うことができる。 Further, in this case, FIG. 6, as shown in FIG. 7, 8, 9, the fixing pressure clamping region E F is composed of a fixed surface plate body FP, the movable squeezing region E M consists moving surface plate body MP since it has, fixed pressure in the clamping region E F Seiaze work done by pressure rolling contact by successive smooth fixing surface of the fixing surface plate body FP, movable surface of the movable surface plate body MP in the movable clamping region E M by Seiaze work done by pressure rolling contact, a fixed pressure clamping region E F of the pressure fixing and ridges W surface by two kinds of pressing the movable by the movable surface plate body MP fixed surface plate body FP and the movable squeezing region E M It can be tightened, and the W surface can be clamped by different clamping actions, fixed and movable, and it can provide flexibility for soil properties and weather conditions during trimming work. Work well, and 6, 7, 8, and 9, the movable face plate MP is composed of a pressure-clamping plate G having flexible elasticity, and the front end portion in the rotation direction of the pressure-clamping plate G is the rotation. the rotation direction rear end portion is formed into a fixed end portion G 1 which is fixed to the mounting portion 13a of the outer peripheral portion of Seiazetai 13 formed at the free end G 2 can be separated from the outer peripheral portion of the rotary Seiaze 13 is, because formed by providing a clamping surface portion K on the inner surface opposite the position of the free end G 2 of the clamping plate member G in the outer peripheral portion of the rotary Seiaze body 13, with the rotation of the rotary Seiaze body 13, FIG. 8, As shown in FIG. 9, the pressing plate body G flaps between the pressure contact position and the restoring position of the ridge W surface by its own flexible elasticity to gradually clamp the embankment, and at the outer peripheral portion of the rotary grading body 13. clamping pressure is strongly embankment due to the presence of clamping surface K of the inner surface facing the position of the free end G 2 of the clamping plate member G, pressing plate member G is flexible elastic Therefore, the pressing plate body G can be bent from the flat shape to perform the flap operation to gradually press the embankment, and can securely press the embankment, thereby obtaining a more robust ridge W. In this case, as shown in FIGS. 8 and 9, a through hole F is provided between the mounting portion 13 a on the outer peripheral portion of the rotary trimming body 13 and the pressing surface portion K. since the fixed end G 1 of the clamping plate member G made a through fixed end G 1 arranged from the outside inwardly and fixed to the mounting portion 13a of the rotary Seiaze body 13, in FIGS. 8 and 9 as the front end of the fixed end G 1 of the clamping plate member G can be avoided Kezude of ridges W surface by immersion to the front end of the fixed end portion G 1 in the throughbore F, rotating Seiaze The body 13 can rotate smoothly, and the presence of the through-hole F causes the pressing plate G to bend inwardly from the flat shape and gradually tighten the embankment. In addition, the embankment can be reliably clamped by gripping the embankment by a curved bending operation toward the inside of the clamping plate G, and a more robust ridge W can be obtained. The adhesion phenomenon of the soil to the pressing plate G can be suppressed, and a good trimming operation can be performed.

又、この場合、図6、図7、図8の如く、上記回転整畦体13は畦Wの一方側面Wを整畦可能な側面整畦体15及び畦Wの上面Wを整畦可能な上面整畦体16からなり、上記側面整畦体15及び上記上面整畦体16の各々の外周部分は上記畦W面を回転整畦可能な圧締領域Eに形成され、側面整畦体15及び上面整畦体16の圧締領域Eは固定圧締領域E及び可動圧締領域Eからなるので、上記畦W面は回転整畦体13の外周部分の圧締領域Eとしての固定圧締領域E及び可動圧締領域Eにより回転整畦されることになり、固定圧締領域E及び可動圧締領域Eの固定及び可動の二種類の圧締により畦W面を圧締することができ、固定及び可動の異なる圧締作用により畦W面を圧締することができ、土質性状や整畦作業時の気象条件などに対する融通性を得ることができ、それだけ、整畦作業を良好に行うことができる。 Further, in this case, 6, 7, as shown in FIG. 8, the rotating Seiaze body 13 Seiaze the upper surface W 1 of one side W 2 of Seiaze possible side Seiaze body 15 and ridge W of ridge W The outer surface of each of the side surface adjusting body 15 and the upper surface adjusting body 16 is formed in a pressing region E capable of rotating and adjusting the surface W, and the side surface adjusting body 16. since clamping region of the body 15 and the upper surface Seiaze body 16 E consists of a fixed pressure clamping regions E F and the movable squeezing region E M, the ridge W surface as squeezing region E of the outer peripheral portion of the rotary Seiaze 13 fixing pressure by tightening region E F and the movable squeezing region E M would be rotated Seiaze, fixed pressure clamping regions E F and the movable squeezing region E M ridge W by fixed and movable two kinds of pressing of The surface can be clamped, and the 畦 W surface can be clamped by different clamping actions, fixed and movable. Weather conditions can be obtained flexibility for such, it only can be well Seiaze work.

又、この場合、図3、図4、図5の如く、削土機構18により旧畦W面を予め削土でき、この削土された畦W面上に盛土機構4により盛土することになるから、旧畦W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Wを得ることができる。   Further, in this case, as shown in FIGS. 3, 4 and 5, the old dredging W surface can be ground in advance by the earth cutting mechanism 18, and the embankment mechanism 4 fills the earth on the ground surface. Therefore, the binding property between the old dredged W soil and the embankment can be improved, and a solid dredged W can be obtained.

図10、図11の第二形態例は別例構造を示し、この場合、上記回転整畦体13の外周部分の圧締領域Eは一つの固定圧締領域E及び複数、この場合、二つの連続する可動圧締領域Eから構成されている。 10, the second embodiment of FIG. 11 shows another example structure, in this case, squeezing area of the outer peripheral portion of the rotary Seiaze body 13 E one fixed pressure clamping regions E F and a plurality, in this case, the two One of and a movable squeezing region E M consecutive.

この第二形態例にあっては、図10、図11の如く、固定圧締領域E、可動圧締領域E、可動圧締領域E、固定圧締領域Eの繰り返しによる固定及び可動の二種類の圧締により畦W面を圧締することができ、固定及び可動の異なる圧締作用により畦W面を圧締することができ、土質性状や整畦作業時の気象条件などに対する融通性を得ることができ、それだけ、整畦作業を良好に行うことができる。 In this second embodiment, as shown in FIGS. 10 and 11, the fixed pressure region E F , the movable pressure region E M , the movable pressure region E M , and the fixed pressure region E F can be fixed by repetition. The movable W type can be clamped by two types of movable pressing, and the fixed W can be pressed by different fixed and movable pressing actions, such as soil properties and weather conditions during trimming work. As a result, it is possible to obtain the flexibility to perform the trimming work well.

図12、図13の第三形態例は別例構造を示し、この場合、上記回転整畦体13の外周部分の圧締領域Eは複数、この場合、二つの固定圧締領域E及び複数、この場合、二つの離間する可動圧締領域Eから構成されている。 The third embodiment shown in FIGS. 12 and 13 shows another structure. In this case, there are a plurality of pressing regions E in the outer peripheral portion of the rotary trimming body 13, in this case, two fixed pressing regions EF and a plurality of fixing regions E F. in this case, and a movable squeezing region E M to two spaced apart.

この第三形態例にあっては、図12、図13の如く、固定圧締領域E、可動圧締領域E、固定圧締領域E、及び、可動圧締領域Eの繰り返しによる固定及び可動の二種類の圧締により畦W面を圧締することができ、固定及び可動の異なる圧締作用により畦W面を圧締することができ、土質性状や整畦作業時の気象条件などに対する融通性を得ることができ、それだけ、整畦作業を良好に行うことができる。 In the third embodiment, as shown in FIGS. 12 and 13, the fixed pressing region E F , the movable pressing region E M , the fixed pressing region E F , and the movable pressing region E M are repeated. Two types of clamping, fixed and movable, can be used to clamp the W surface, and the W surface can be pressed using different fixing and moving methods. Flexibility with respect to conditions and the like can be obtained, and accordingly, the trimming operation can be performed well.

なお、上記実施の形態例においては、上記回転整畦体13は側面整畦体15及び上面整畦体16からなり、この側面整畦体15及び上面整畦体16のいずれにも、固定圧締領域E及び可動圧締領域Eからなる構造としているが、側面整畦体15又は上面整畦体16のいずれか一方については、固定圧締領域Eのみ、すなわち、固定面板体FPの連続する平滑な固定表面のみによる整畦作業がなされ、又は、側面整畦体15又は上面整畦体16のいずれか一方については、可動圧締領域Eのみ、すなわち、可動面板体MPの可動な表面のみによる整畦作業とすることもできる。 In the above-described embodiment, the rotary trimming body 13 includes a side trimming body 15 and a top trimming body 16, and a fixed pressure is applied to both the side trimming body 15 and the top trimming body 16. Although a structure composed of a clamping region E F and the movable squeezing region E M, for either side Seiaze member 15 or top Seiaze body 16, a fixed pressure clamping region E F only, i.e., the fixed surface plate body FP only Seiaze work by continuous smooth fixing surface is made, or, for one either side Seiaze member 15 or top Seiaze body 16, only the movable squeezing region E M, i.e., the moving surface plate body MP It is also possible to perform a trimming operation using only a movable surface.

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、上記回転整畦体13の回転軸線Oを傾けずに水平方向とした構造、回転整畦体13の構造、圧締面体K及び圧締板体Gの個数や形状、圧締板体G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 structure in which the rotation axis O of the rotary adjuster 13 is horizontal without tilting, the structure of the rotary adjuster 13, and the pressing surface The number and shape of K and the pressing plate body G, the size and material of the pressing plate body G, and the like are designed as appropriate.

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.

W 畦
1 上面
2 一方側面
E 圧締領域
固定圧締領域
可動圧締領域
FP 固定面板体
MP 可動面板体
K 圧締面部
G 圧締板体
固定端部
遊離端部
F 通穴
1 走行機体
2 連結機構
3 機枠
4 盛土機構
12 整畦機構
13 回転整畦体
13a 取付部
15 側面整畦体
16 上面整畦体
W 畦 W 1 upper surface W 2 one side E pressing area E F fixed pressing area E M movable pressing area FP fixed surface plate MP movable surface plate K pressing surface G pressing plate G G 1 fixed end G 2 free End F Through-hole 1 Traveling machine body 2 Coupling mechanism 3 Machine frame 4 Filling mechanism 12 Leveling mechanism 13 Rotating leveling body 13a Mounting portion 15 Side surface leveling body 16 Top surface leveling body

Claims (3)

走行機体に連結機構により機枠を連結し、該機枠に旧畦上に土を盛り上げる盛土機構を設け、該盛土機構の進行方向後方位置に畦面を圧接回転により回転整畦可能な回転整畦体をもつ整畦機構を設け、該回転整畦体の外周部分は上記畦面を回転整畦可能な圧締領域に形成されてなり、上記圧締領域は固定圧締領域及び可動圧締領域からなり、該固定圧締領域は固定面板体から構成され、該可動圧締領域は可動面板体から構成され、該可動面板体は可撓弾性を有する圧締板体からなり、該圧締板体の回転方向前方端部は上記回転整畦体の外周部分の取付部に固定される固定端部に形成されると共に回転方向後方端部は該回転整畦体の外周部分から離反可能な遊離端部に形成され、該回転整畦体の外周部分の該圧締板体の遊離端部の内面対向位置に圧締面部を設け、該回転整畦体の外周部分の取付部と上記圧締面部との間に通穴を設け、該通穴に該圧締板体の該固定端部を挿通配置して該固定端部を該回転整畦体の取付部に固定してなることを特徴とする整畦機。   Rotation adjustment that connects the machine frame to the traveling machine body with a linkage mechanism, and provides a banking mechanism that raises the soil on the old ridge, and the ridge surface can be rotationally adjusted by press-fitting rotation at a rear position in the traveling direction of the banking mechanism. An adjusting mechanism having a body is provided, and an outer peripheral portion of the rotating adjusting body is formed in a pressing area capable of rotating and adjusting the flange surface, and the pressing area includes a fixed pressing area and a movable pressing area. The fixed pressing region is composed of a fixed face plate, the movable pressing region is made of a movable face plate, and the movable face plate is made of a flexible elastic plate, and the pressing plate The front end portion in the rotational direction of the body is formed at a fixed end portion fixed to the mounting portion of the outer peripheral portion of the rotary adjuster and the rear end in the rotational direction is free to be separated from the outer peripheral portion of the rotary adjuster. An inner surface facing position of the free end portion of the pressing plate body at the outer peripheral portion of the rotary trimming body formed at the end portion A pressing surface portion is provided, a through hole is provided between the mounting portion of the outer peripheral portion of the rotary trimming body and the pressing surface portion, and the fixed end portion of the pressing plate body is inserted and disposed in the through hole. A straightening machine, wherein the fixed end is fixed to a mounting part of the rotary straightening body. 上記回転整畦体は畦の一方側面を整畦可能な側面整畦体及び畦の上面を整畦可能な上面整畦体からなり、上記側面整畦体及び上記上面整畦体の各々の外周部分は上記畦面を回転整畦可能な圧締領域に形成され、該側面整畦体及び該上面整畦体の該圧締領域は固定圧締領域及び可動圧締領域からなることを特徴とする請求項1記載の整畦機。   The rotary adjuster is composed of a side adjuster that can adjust one side surface of the rod and a top adjuster that can adjust the upper surface of the rod, and each outer periphery of the side adjuster and the upper adjuster. The portion is formed in a pressing region capable of rotationally adjusting the flange surface, and the pressing region of the side surface adjusting body and the upper surface adjusting member includes a fixed pressing region and a movable pressing region. The dressing machine according to claim 1. 上記回転整畦体の外周部分の圧締領域は一つの固定圧締領域及び複数の可動圧締領域、又は、複数の固定圧締領域及び複数の可動圧締領域からなることを特徴とする請求項1又は2記載の整畦機。   The pressing area of the outer peripheral portion of the rotary trimming body is composed of one fixed pressing area and a plurality of movable pressing areas, or a plurality of fixed pressing areas and a plurality of movable pressing areas. Item 3. An apparatus according to item 1 or 2.
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Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS615112A (en) * 1984-06-16 1986-01-10 Sasagawa Noki Kk Formation of footpath
JP2001148904A (en) * 2000-10-23 2001-06-05 Matsuyama Plow Mfg Co Ltd Side-repairing body for rigding machine
JP2001275407A (en) * 2000-03-31 2001-10-09 Fuji Trailer Seisakusho:Kk Levee preparation machine
JP3493612B2 (en) * 1995-11-17 2004-02-03 株式会社富士トレーラー製作所 Rowing machine
JP3622164B2 (en) * 1996-11-01 2005-02-23 株式会社富士トレーラー製作所 Straightener
JP2005198602A (en) * 2004-01-19 2005-07-28 Sasaki Corporation Levee-forming machine
JP4154545B2 (en) * 1998-07-22 2008-09-24 株式会社富士トレーラー製作所 Straightener

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS615112A (en) * 1984-06-16 1986-01-10 Sasagawa Noki Kk Formation of footpath
JP3493612B2 (en) * 1995-11-17 2004-02-03 株式会社富士トレーラー製作所 Rowing machine
JP3622164B2 (en) * 1996-11-01 2005-02-23 株式会社富士トレーラー製作所 Straightener
JP4154545B2 (en) * 1998-07-22 2008-09-24 株式会社富士トレーラー製作所 Straightener
JP2001275407A (en) * 2000-03-31 2001-10-09 Fuji Trailer Seisakusho:Kk Levee preparation machine
JP2001148904A (en) * 2000-10-23 2001-06-05 Matsuyama Plow Mfg Co Ltd Side-repairing body for rigding machine
JP2005198602A (en) * 2004-01-19 2005-07-28 Sasaki Corporation Levee-forming machine

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