JP2003304706A - Ridge-levelling machine - Google Patents

Ridge-levelling machine

Info

Publication number
JP2003304706A
JP2003304706A JP2002115736A JP2002115736A JP2003304706A JP 2003304706 A JP2003304706 A JP 2003304706A JP 2002115736 A JP2002115736 A JP 2002115736A JP 2002115736 A JP2002115736 A JP 2002115736A JP 2003304706 A JP2003304706 A JP 2003304706A
Authority
JP
Japan
Prior art keywords
ridge
compression
compressing
rotary
embankment
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.)
Granted
Application number
JP2002115736A
Other languages
Japanese (ja)
Other versions
JP3997473B2 (en
Inventor
Isao Minagawa
功 皆川
Toshio Minagawa
俊男 皆川
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 JP2002115736A priority Critical patent/JP3997473B2/en
Publication of JP2003304706A publication Critical patent/JP2003304706A/en
Application granted granted Critical
Publication of JP3997473B2 publication Critical patent/JP3997473B2/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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  • Soil Working Implements (AREA)

Abstract

<P>PROBLEM TO BE SOLVED: To provide a ridge-leveling machine increasing its compression partially with a compressing body by the presence of projected line parts on the surface of a compressing board body, and thereby performing ridge-levelling well. <P>SOLUTION: This ridge-leveling machine equipped with a traveling machine body 1, a machine frame 3 connected with the traveling machine body, a soil- piling mechanism 17 installed at the machine frame and piling the soil on an old ridge, and a rotary ridge-leveling mechanism 4 having a rotary ridge-leveling body 15 arranged with compressing board bodies G, E installed at a rear directional position in the progressing direction of a soil-piling mechanism, and having compressing surface parts formed by multiple number by taking an interval on the circumferential surface part from compressing surface parts K, D in the front directional position in rotating direction over the compressing surface of the compression surface part of the adjacent rear directional position, and capable of rotary ridge-levelling the ridge surface is provided by installing the projected line parts G<SB>1</SB>, E<SB>1</SB>extending in crossing direction toward the rotating direction on the surface of the compression board body. <P>COPYRIGHT: (C)2004,JPO

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 ridge trimming machine used, for example, in ridge construction work and restoration work.

【0002】[0002]

【従来の技術】従来、この種の整畦機として、例えば、
特許第2564230号公報に示す如く、走行機体に連
結機構により機枠を上下動自在に連結し、機枠に旧畦上
に土を盛り上げる盛土機構を設け、盛土機構により盛り
上げられる土の外方飛散を防ぐ土飛散防止体を設け、盛
土機構の進行方向後方位置に畦面を回転整畦可能な回転
整畦体からなる回転整畦機構を設けた構造が知られてい
る。
2. Description of the Related Art Conventionally, as an adjusting device of this type, for example,
As shown in Japanese Patent No. 2564230, a machine frame is vertically movably connected to a traveling machine body by a connecting mechanism, and a machine mechanism is provided on the machine frame to raise soil on an old ridge so that the earth scattered by the embankment mechanism is scattered outward. There is known a structure in which a soil scattering prevention body is provided and a rotary adjustment mechanism including a rotary adjustment body capable of rotational adjustment of a ridge surface is provided at a rear position in the traveling direction of the embankment mechanism.

【0003】[0003]

【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、旧畦、ほ場等の土質条件、天候等の作業条
件等によっては良好な整畦作業を行うことができないこ
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, there is a disadvantage in that it may not be possible to carry out good leveling work depending on soil conditions such as old ridges and fields, and working conditions such as weather. is doing.

【0004】[0004]

【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、走行機体と、該走行機体に
連結される機枠と、該機枠に設けられ、旧畦上に土を盛
り上げる盛土機構と、該盛土機構の進行方向後方位置に
設けられ、外周面部分に圧締面部を間隔を置いて複数個
形成され、回転方向前方位置の圧締面部から隣る後方位
置の圧締面部の圧締面に至る圧締板体が配設され、畦面
を回転整畦可能な回転整畦体をもつ回転整畦機構とを備
えてなり、上記圧締板体の表面に回転方向に対して交差
する方向に延びる凸条部を設けてなることを特徴とする
整畦機にある。
SUMMARY OF THE INVENTION The present invention is intended to solve such inconvenience, and the invention according to claim 1 of the present invention relates to a traveling machine body and a connection to the traveling machine body. The machine frame, the embankment mechanism provided on the machine frame to raise the soil on the old ridge, and the rear side in the traveling direction of the embankment mechanism, and a plurality of compression surface portions are formed on the outer peripheral surface portion at intervals. And a compression plate that extends from the compression surface at the front position in the rotational direction to the compression surface of the adjacent compression surface at the rear position is arranged, and the rotation adjustment with the rotation adjustment body that can adjust the rotation of the ridge surface is performed. A ridge trimming machine, comprising: a ridge mechanism, wherein a ridge portion extending in a direction intersecting a rotational direction is provided on a surface of the pressing plate body.

【0005】又、請求項2記載の発明は、上記凸条部は
上記圧締板体に折曲により形成されていることを特徴と
するものであり、又、請求項3記載の発明にあっては、
上記圧締板体は可撓性板材により形成されていることを
特徴とするものである。
The invention according to claim 2 is characterized in that the above-mentioned ridges are formed by bending the above-mentioned pressing plate body, and there is also the invention according to claim 3 Is
The pressing plate body is formed of a flexible plate material.

【0006】[0006]

【発明の実施の形態】図1乃至図6は本発明の実施の形
態例を示し、1は走行機体であって、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により機枠3を上下動可能に連結して構成してい
る。
1 to 6 show an embodiment of the present invention, in which reference numeral 1 denotes a traveling machine body, in which a tractor is used, and a three-point link type connection is provided at a rear portion of the traveling machine body 1. The machine frame 3 is connected by the mechanism 2 so as to be vertically movable.

【0007】4は回転整畦機構であって、この場合、上
記機枠3に支持ブラケット5を突設し、支持ブラケット
5に軸受筒部6を設け、軸受筒部6の後部に軸受部7を
設け、軸受部7に駆動軸8を軸受し、一方、機枠3に走
行機体1に設けられた動力取出軸9により自在継手10
を介して回転する主軸11を軸受すると共に主軸11に
より伝導機構12を介して回転する伝達軸13を横設
し、上記駆動軸8の一方端部と伝達軸13との間に自在
継手14を架設し、駆動軸8の他方端部に畦W面を回転
整畦可能な回転整畦体15を配設して構成している。
Reference numeral 4 denotes a rotation adjusting mechanism. In this case, a supporting bracket 5 is projectingly provided on the machine frame 3, a bearing tubular portion 6 is provided on the supporting bracket 5, and a bearing portion 7 is provided at a rear portion of the bearing tubular portion 6. And the drive shaft 8 is supported by the bearing portion 7, while the universal joint 10 is mounted on the machine frame 3 by the power takeoff shaft 9 provided on the traveling machine body 1.
The main shaft 11 rotating through the bearing is provided with a transmission shaft 13 which is rotated by the main shaft 11 via the transmission mechanism 12, and a universal joint 14 is provided between one end of the drive shaft 8 and the transmission shaft 13. It is constructed by arranging and arranging a rotation adjusting body 15 capable of adjusting the rotation of the ridge W surface on the other end of the drive shaft 8.

【0008】この場合、上記回転整畦体15は、畦Wの
上面W1を整畦可能な上面整畦部15a及び畦Wの一方
側面W2を整畦可能な側面整畦部15bからなり、この
上面整畦部15a及び側面整畦部15bは、互いに結合
されて鼓状をなすローター枠体16aの外周面部に間隔
置いて圧締面部K・Dを形成すると共に隣り合う圧締面
部K・Dの間を通穴F・Cとして形成し、上面整畦部1
5a及び側面整畦部15bの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の外
面に至る長さの圧締板体G・Eをボルト等の取付体Qに
より配設し、この圧締板体G・Eは可撓性を有するナイ
ロン樹脂や塩化ビニール樹脂等の合成樹脂やステンレス
やバネ鋼等の等の金属からなる外的負荷により弾性的に
撓み得る材質の可撓性板材により形成され、かつ、圧締
板体G・Eの表面に回転方向に対して交差する方向に延
びる凸条部G1・E1を圧締板体G・Eの折曲により形成
し、ローター枠体16aの中心軸筒16bを駆動軸8に
挿通固定し、しかして、主軸11の回転により回転整畦
体15を図6中矢印方向に回転させ、回転整畦体15の
上面整畦部15a及び側面整畦部15bの外周面の圧締
板体G・Eの回転接触により畦Wの上面W1及び一方側
面W2を締圧整畦するように構成している。
In this case, the rotary ridge body 15 is composed of an upper surface ridge portion 15a capable of adjusting the upper surface W 1 of the ridge W and a side surface ridge portion 15b capable of adjusting one side surface W 2 of the ridge W. The upper surface side ridges 15a and the side surface ridges 15b are joined to each other to form the pressing surface portions KD at the outer peripheral surface of the drum-shaped rotor frame 16a, and the adjacent pressing surface portions K. Formed as through holes F and C between D and upper surface ridge portion 1
5a and the side ridges 15b in the direction of rotation in the front in the rotational direction from the pressing surface portion K / D side to the outer surface of the adjoining rearward pressing surface portion K / D. It is arranged by a mounting body Q, and the compression plate bodies G and E are elastic by an external load made of a flexible synthetic resin such as nylon resin or vinyl chloride resin or a metal such as stainless steel or spring steel. A ridge portion G 1 · E 1 formed of a flexible plate material of a material that can bend in the direction of the pressing plate body G · E and extending in a direction intersecting the rotation direction. Formed by bending E, the central shaft cylinder 16b of the rotor frame 16a is inserted and fixed to the drive shaft 8, and the rotation of the main shaft 11 causes the rotary ridge 15 to rotate in the direction of the arrow in FIG. Rotation of the compression plate members G and E on the outer peripheral surfaces of the upper surface trimming portion 15a and the side surface trimming portion 15b of the trimming body 15. The upper surface W 1 of the ridge W and the one side surface W 2 of the ridge W are configured to be tightened by the contact.

【0009】17は盛土機構であって、この場合、上記
軸受筒部6に中間軸18を軸受し、中間軸18の一方端
部と駆動軸8との間に歯車機構8aを設け、中間軸18
の他方端部に盛土ローター19を設け、機枠3に盛土ロ
ーター19の上方を覆うカバー体20を配設し、中間軸
18の回転により盛土ローター19を図中矢印方向に回
転させるように構成している。
Reference numeral 17 denotes an embankment mechanism. In this case, the bearing cylinder portion 6 bears an intermediate shaft 18, and a gear mechanism 8a is provided between one end of the intermediate shaft 18 and the drive shaft 8. 18
Is provided with the embankment rotor 19 on the other end, the cover body 20 is provided on the machine frame 3 to cover the embankment rotor 19 from above, and the intermediate shaft 18 is rotated to rotate the embankment rotor 19 in the direction of the arrow in the figure. is doing.

【0010】21は土飛散防止体であって、この場合、
上記畦Wの上面W1上を車軸24を中心として転動可能
な転動盤体22により形成され、この転動盤体22は上
下動機構23としての平行リンク機構により上記畦Wの
上面W1の起伏に倣って上下動自在に設けられ、盛土機
構17により盛り上げられる土の外方飛散を防ぐように
構成されている。
Reference numeral 21 is a soil scattering prevention body, and in this case,
An upper surface W 1 of the ridge W is formed by a rolling disc body 22 which can roll around an axle 24. The rolling disc body 22 is formed by a parallel link mechanism as an up-and-down moving mechanism 23. It is provided so as to be movable up and down in accordance with the undulations of 1 , and is configured to prevent scattering of the soil piled up by the embankment mechanism 17 to the outside.

【0011】25は削土機構であって、上記盛土機構1
7の進行方向前方位置に設けられ、この場合、上記軸受
筒部6の前端部にチェーンケース26を突設し、チェー
ンケース26の先端部に支持軸27を回転自在に設け、
支持軸27に削土ローター28を取付け、上記中間軸1
8と支持軸27との間にチェーン機構29及び歯車機構
30を介装し、チェーンケース32を引上機構31によ
り弾性支持し、削土ローター28の回転により盛土ロー
ター19の前方位置の旧畦Wを予め削土するように構成
している。
Reference numeral 25 denotes an earth cutting mechanism, which is the embankment mechanism 1 described above.
7 is provided at a front position in the traveling direction, in which case, a chain case 26 is projectingly provided at a front end portion of the bearing tubular portion 6, and a support shaft 27 is rotatably provided at a tip end portion of the chain case 26,
The earth cutting rotor 28 is attached to the support shaft 27, and the intermediate shaft 1
8 and the support shaft 27, a chain mechanism 29 and a gear mechanism 30 are interposed, a chain case 32 is elastically supported by a lifting mechanism 31, and the rotation of the earth cutting rotor 28 causes the old ridge in front of the embankment rotor 19. It is configured to excavate W in advance.

【0012】この実施の形態例は上記構成であるから、
走行機体1を旧畦に沿って走行し、動力取出軸9を回転
すると、一方では盛土機構17の盛土ローター19が畦
際のほ場M土や旧畦Wの泥土を旧畦上に連続的に跳ね上
げて盛り上げ、他方では走行機体1の動力取出軸9を駆
動源として回転整畦機構4が駆動され、回転整畦体15
は畦面に回転接触して畦W面を回転整畦により締め付け
ることができ、走行機体1の走行速度に対して回転整畦
体15の回転速度を高めることにより回転整畦体15は
畦W面に回転滑り接触し、この回転すべり接触により畦
W面を円滑かつ強固に締圧整畦することができ、この回
転整畦体15に圧締面部K・Dを通穴F・Cを存して間
隔を置いて複数個形成すると共に側面整畦部15b及び
上面整畦部15a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
圧締板体G・Eを配設して構成しているから、回転整畦
体15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、回転整畦体15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、この際、上記圧締板体G・Eの表面に回転方向に
対して交差する方向に延びる凸条部G1・E1を設けてな
るから、この凸条部G1・E1の存在により圧締板体G・
Eによる締圧力が部分的に増加することになり、それだ
け良好な整畦を行うことができる。
Since this embodiment has the above-mentioned configuration,
When the traveling machine body 1 is driven along the old ridge and the power take-off shaft 9 is rotated, the embankment rotor 19 of the embankment mechanism 17 continuously splashes the field M soil on the edge of the ridge and the mud of the old ridge W onto the old ridge. On the other hand, the rotation adjusting mechanism 4 is driven by using the power takeoff shaft 9 of the traveling machine body 1 as a drive source, and the rotation adjusting body 15 is raised.
Can make a rotational contact with the ridge surface and tighten the ridge W surface with the rotary ridge, and by increasing the rotation speed of the rotary ridge body 15 with respect to the traveling speed of the traveling machine body 1, the rotary ridge body 15 can have the ridge W. The rotary sliding contact makes it possible to smoothly and firmly adjust the ridge W surface by this rotary sliding contact. The rotary ridge body 15 has the pressing surface portions K and D through holes F and C. And a plurality of them are formed at intervals, and the side surface ridges 15b and the upper surface ridges 15a are located at the front side in the rotational direction by the pressing surface portions KD.
Since the compression plate members G and E having a length from the side to the rearwardly adjacent compression plate surfaces K and D are arranged, the traveling machine body in the direction of the arrow of the rotary ridge 15 is shown. 1, the pressing plate bodies G and E gradually press the embankment and are strongly pressed by the pressing surface portions K and D through the pressing plate bodies G and E. The clamping area is intermittently clamped by the existence of the individual clamping surfaces K and D, and the clamping area is larger than that of the structure in which the entire outer peripheral surface of the rotary ridge 15 is clamped by the existence of the plurality of clamping surfaces K and D. The tightening pressure can be increased due to the decrease in the ridge, and the ridge can be tightened more strongly, and at this time, the ridge extending in the direction intersecting the rotation direction on the surface of the pressing plate bodies G and E. Since the portions G 1 and E 1 are provided, the presence of the ridges G 1 and E 1 causes the pressing plate G.
The tightening pressure due to E will be partially increased, and thus good trimming can be performed.

【0013】かつ、この場合、上記隣り合う圧締面部K
・K、D・Dの間に通穴F・Cを形成しているので、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、又、この場
合、上記凸条部G1・E1は上記圧締板体G・Eに折曲に
より形成されているので、容易に製作することができ、
又、この場合、上記圧締板体G・Eは可撓性を有する金
属や合成樹脂等の可撓性板材により形成されているの
で、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15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, the adjacent pressing surface portions K are
-Since the through holes F and C are formed between K and D and D, the through holes F and C will clamp the ridge surface more intermittently, and the tightening can be done more strongly. In this case, since the ridges G 1 and E 1 are formed by bending the pressure plate bodies G and E, they can be easily manufactured.
Further, in this case, since the pressing plate bodies G and E are formed of a flexible plate material such as a flexible metal or a synthetic resin, the pressing plate bodies G and E are bent to form an embankment. It is possible to gradually tighten the pressure, suppress the adhesion of soil to the rotary rectifying body 15, and perform good rectifying work.

【0014】又、この際、上記盛土機構17の進行方向
前方位置に旧畦Wを削土可能な削土機構25を備えてな
るから、削土機構25により旧畦面を予め削土でき、こ
の削土された畦面上に盛土機構17の盛土ローター19
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
できる。
Further, at this time, since the earth cutting mechanism 25 capable of cutting the old ridge W is provided at the front position in the traveling direction of the embankment mechanism 17, the earth cutting mechanism 25 can cut the old ridge surface in advance. The embankment rotor 19 of the embankment mechanism 17 is placed on the excavated ridge surface.
As a result, the embankment will be embanked, so that the binding property between the old embankment and the embankment can be enhanced, and a stronger embankment can be obtained.

【0015】尚、本発明は上記実施の形態例に限られる
ものではなく、機枠3、回転整畦機構4、回転整畦体1
5、盛土機構17、圧締面部K、D、圧締板体G・E、
凸条部G1・E1等の構造や形状等は適宜変更して設計さ
れるものである。
The present invention is not limited to the above embodiment, but the machine frame 3, the rotary adjusting mechanism 4 and the rotary adjusting body 1 are not limited thereto.
5, embankment mechanism 17, compression surface parts K, D, compression plate bodies GE,
The ridges G 1 and E 1 and the like are designed by appropriately changing the structure and shape.

【0016】[0016]

【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、走行機体を旧畦に沿って走行すると、一
方では盛土機構が畦際や旧畦の泥土を旧畦上に盛り上
げ、他方では回転整畦機構が駆動され、回転整畦体は畦
面に回転接触して畦面を回転整畦により締め付けること
になり、この回転整畦体に圧締面部を間隔を置いて複数
個形成すると共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を配設
して構成しているから、回転整畦体の回転に伴い圧締板
体は徐々に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、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、この
際、上記圧締板体の表面に回転方向に対して交差する方
向に延びる凸条部を設けてなるから、この凸条部の存在
により圧締板体による締圧力が部分的に増加することに
なり、それだけ良好な整畦を行うことができる。
As described above, according to the invention of claim 1, when the traveling machine body travels along the old ridge, the embankment mechanism moves the ridge and the mud of the old ridge to the old ridge. On the other hand, the rotation adjustment mechanism is driven on the other hand, the rotation adjustment body comes into rotational contact with the ridge surface and tightens the ridge surface with the rotation adjustment ridge, and the compression adjustment surface portion is spaced from the rotation adjustment ridge. Since a plurality of pressing plates are formed and the length from the pressing surface side at the front position in the rotation direction to the pressing surface part at the rear position adjacent to each other is arranged, it is possible to rotate the rotation adjusting body. Along with this, the pressing plate gradually presses the embankment, and is strongly pressed by the pressing surface portion through the pressing plate member. Due to the presence of the clamping surface area, the clamping pressure area is smaller than that of the structure in which the clamping pressure is applied on the entire outer peripheral surface of the rotary ridge. The tightening pressure can be increased by means of this, and the ridges can be tightened as much as that, and at this time, the ridges extending in the direction intersecting the rotational direction are provided on the surface of the pressing plate body, Due to the presence of the ridges, the tightening pressure by the pressing plate partly increases, and thus good rectification can be performed.

【0017】又、請求項2記載の発明にあっては、上記
凸条部は上記圧締板体に折曲により形成されているの
で、容易に製作することができ、又、請求項3記載の発
明にあっては、上記圧締板体は可撓性を有する金属や合
成樹脂等の可撓性板材により形成されているので、圧締
板体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 the invention according to claim 2, since the projecting ridge portion is formed by bending the pressing plate body, it can be easily manufactured. In the invention, since the pressing plate body is formed of a flexible plate material such as a flexible metal or a synthetic resin, the pressing plate body flexes and gradually presses the embankment. Therefore, it is possible to suppress the adhesion phenomenon of the soil to the rotary trimming body, and it is possible to perform good trimming work.

【0018】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 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 exemplary 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拡大平面図である。FIG. 3 is an enlarged plan view of the embodiment of the present invention.

【図4】本発明の実施の形態例の全体後面図である。FIG. 4 is an overall rear view of the embodiment of the present invention.

【図5】本発明の実施の形態例の前面図である。FIG. 5 is a front view of the embodiment of the present invention.

【図6】本発明の実施の形態例の部分拡大断面図であ
る。
FIG. 6 is a partially enlarged cross-sectional view of an exemplary embodiment of the present invention.

【符号の説明】[Explanation of symbols]

W 畦 W1 上面 W2 側面 K 圧締面部 D 圧締板体 G1 凸状部 E1 凸条部 1 走行機体 2 連結機構 3 機枠 4 回転整畦機構 15 回転整畦体 17 盛土機構W ridge W 1 upper surface W 2 side surface K compression surface portion D compression plate body G 1 convex portion E 1 convex ridge portion 1 traveling machine body 2 connection mechanism 3 machine frame 4 rotary ridge mechanism 15 rotary ridge body 17 embankment mechanism

Claims (3)

【特許請求の範囲】[Claims] 【請求項1】 走行機体と、該走行機体に連結される機
枠と、該機枠に設けられ、旧畦上に土を盛り上げる盛土
機構と、該盛土機構の進行方向後方位置に設けられ、外
周面部分に圧締面部を間隔を置いて複数個形成され、回
転方向前方位置の圧締面部から隣る後方位置の圧締面部
の圧締面に至る圧締板体が配設され、畦面を回転整畦可
能な回転整畦体をもつ回転整畦機構とを備えてなり、上
記圧締板体の表面に回転方向に対して交差する方向に延
びる凸条部を設けてなることを特徴とする整畦機。
1. A traveling machine body, a machine frame connected to the traveling machine body, an embankment mechanism provided on the machine frame for raising soil on an old ridge, and provided at a rear position in a traveling direction of the embankment mechanism and having an outer periphery. A plurality of compression surface portions are formed on the surface portion at intervals, and a compression plate body is arranged from the compression surface portion at the front position in the rotation direction to the compression surface of the compression surface portion at the rear position next to the ridge surface. And a rotation adjusting mechanism having a rotation adjusting body capable of performing rotation adjustment, wherein the surface of the pressing plate is provided with a ridge portion extending in a direction intersecting the rotation direction. Arranging machine.
【請求項2】 上記凸条部は上記圧締板体に折曲により
形成されていることを特徴とする請求項1記載の整畦
機。
2. The ridge trimming machine according to claim 1, wherein the ridge portion is formed by bending the pressure plate body.
【請求項3】 上記圧締板体は可撓性板材により形成さ
れていることを特徴とする請求項1又は2記載の整畦
機。
3. The ridge trimming machine according to claim 1, wherein the pressing plate body is formed of a flexible plate material.
JP2002115736A 2002-04-18 2002-04-18 Straightener Expired - Fee Related JP3997473B2 (en)

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Application Number Priority Date Filing Date Title
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JP2003304706A true JP2003304706A (en) 2003-10-28
JP3997473B2 JP3997473B2 (en) 2007-10-24

Family

ID=29396896

Family Applications (1)

Application Number Title Priority Date Filing Date
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Country Status (1)

Country Link
JP (1) JP3997473B2 (en)

Cited By (13)

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JP2006296365A (en) * 2005-04-25 2006-11-02 Kobashi Kogyo Co Ltd Levee-plastering machine
JP2008154595A (en) * 2008-02-13 2008-07-10 Kobashi Kogyo Co Ltd Levee-plastering machine
JP2010051281A (en) * 2008-08-29 2010-03-11 Kobashi Kogyo Co Ltd Levee arranging body of levee coating machine
JP2010119319A (en) * 2008-11-18 2010-06-03 Kobashi Kogyo Co Ltd Blade plate for ridge-smoothening body of ridge-coating machine and ridge-smoothening body using the same
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JP2015144613A (en) * 2015-04-09 2015-08-13 小橋工業株式会社 Ridging body for ridge coating machine
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Cited By (13)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2006296365A (en) * 2005-04-25 2006-11-02 Kobashi Kogyo Co Ltd Levee-plastering machine
JP2008154595A (en) * 2008-02-13 2008-07-10 Kobashi Kogyo Co Ltd Levee-plastering machine
JP2010051281A (en) * 2008-08-29 2010-03-11 Kobashi Kogyo Co Ltd Levee arranging body of levee coating machine
JP2010119319A (en) * 2008-11-18 2010-06-03 Kobashi Kogyo Co Ltd Blade plate for ridge-smoothening body of ridge-coating machine and ridge-smoothening body using the same
JP2010154807A (en) * 2008-12-27 2010-07-15 Matsuyama Plow Mfg Co Ltd Furrow coating machine
JP2016005444A (en) * 2014-06-20 2016-01-14 株式会社富士トレーラー製作所 Ridge forming machine
JP2016005445A (en) * 2014-06-20 2016-01-14 株式会社富士トレーラー製作所 Ridge forming machine
JP2015144613A (en) * 2015-04-09 2015-08-13 小橋工業株式会社 Ridging body for ridge coating machine
JP2018023314A (en) * 2016-08-10 2018-02-15 株式会社富士トレーラー製作所 Ridge forming machine
JP2018023316A (en) * 2016-08-10 2018-02-15 株式会社富士トレーラー製作所 Ridge-forming machine
JP2018023315A (en) * 2016-08-10 2018-02-15 株式会社富士トレーラー製作所 Ridge forming machine
JP2017074063A (en) * 2016-12-13 2017-04-20 小橋工業株式会社 Ridging body for ridge coating machine
JP2020188818A (en) * 2020-08-26 2020-11-26 株式会社富士トレーラー製作所 Ridge leveling machine

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