JP2007319094A - Concurrent ridging-seeding machine - Google Patents

Concurrent ridging-seeding machine Download PDF

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JP2007319094A
JP2007319094A JP2006153712A JP2006153712A JP2007319094A JP 2007319094 A JP2007319094 A JP 2007319094A JP 2006153712 A JP2006153712 A JP 2006153712A JP 2006153712 A JP2006153712 A JP 2006153712A JP 2007319094 A JP2007319094 A JP 2007319094A
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machine
seeding
seeding machine
height
posture
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JP4948043B2 (en
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Kohei Shimamoto
講平 島本
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Agritecno Yazaki Co Ltd
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Agritecno Yazaki Co Ltd
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Abstract

<P>PROBLEM TO BE SOLVED: To solve a problem that conventional concurrent ridging and seeding machines each can change the height and posture of a seeding machine, can not change the longitudinal position of the seedling machine, can especially independently not change the seeding machine from a ridging shaping machine, can not accurately seed on completed ridges, can not give environments suitable for growth, such as sunlight, root respiration and drainage, to seeds, and thereby causes the reduction in the harvest of crops and the deterioration in crop quality. <P>SOLUTION: This concurrent ridging seeding machine 3 mounted on the rear portion of a rotary tiller 2 and having the ridging shaping machine 4 and the seeding machine 5 is characterized by disposing a position-adjusting mechanism 43 which can independently change the longitudinal position/height/posture of the seeding machine 5 on the basis of the rotary tiller 2 from the ridging shaping machine 4. <P>COPYRIGHT: (C)2008,JPO&INPIT

Description

本発明は、トラクタや管理機等の牽引車輌によって牽引されるロータリ耕耘装置の後部に装着されると共に、畝立て成形機と播種機とから成る畝立て同時播種機に関し、特に、播種を適正位置にて行うための、播種機の位置調節機構に関する。   The present invention relates to a vertical seeding machine that is mounted on a rear portion of a rotary tiller that is towed by a towing vehicle such as a tractor or a management machine, and more specifically, a vertical seeding machine including a vertical molding machine and a seeder. It is related with the position adjustment mechanism of a seeding machine for performing by.

従来より、畝立て同時播種機では、大豆等の播種床を形成する畝立て作業と、該播種床上に種子を送り出す播種作業とを連続して行うが、このうちの畝立て作業では、ロータリ耕耘装置の耕耘爪で土壌を耕起した後を、畝立て成形機の均平板が進行して地面を均すと共に、左右に並設した複数の均平板の間に尖端縁を納めた畝立器が、前記耕耘爪によって耕起された柔らかい地面に食い込みつつ進行し、この畝立器の両側板が、耕土をさらえて側方に逃がし盛り上げて畝を形成する。続く播種作業では、形成された畝の上を播種機の作溝器が進行して播種溝を形成し、該播種溝内には、駆動輪によって駆動される繰出装置から繰り出された種子が吐出され、その後を覆土体が進行して土をかぶせ、更にその上を鎮圧輪が転動し播種された部分を押圧するようにしている。
ところが、前記畝立て作業で均平して盛り上げただけの畝は、脆く、しかも土の状態や耕起条件によって表面に大きな凹凸が生じたり、牽引車両の機体が上下動したり、あるいは播種機の高さや姿勢が不適正な場合には、前記作溝器・覆土体・鎮圧輪等が深く侵入して畝が壊れたり、逆に畝表面への駆動輪の接地が不十分で繰出装置が動作しなかったり、あるいは、畝表面に対して播種機が斜め姿勢となって播種深さが不均一となり作物の正常な生育が妨げられることがあった。
そこで、従来の畝立て同時播種機では、ロータリ耕耘装置に横設されたツールバーより後方に支持杆を延出し、該支持杆に平行リンク機構を介して播種機を吊設する技術(例えば特許文献1)や、ロータリ耕耘装置に立設されたツールバーに支持杆の前端を昇降可能に外嵌し、該支持杆の後端に播種機を固定する技術(例えば特許文献2)が公知となっている。
実開昭51−64720号公報 特開2002−262601号公報
Conventionally, in a vertical seeding machine, a seeding operation for forming a seed bed such as soybeans and a seeding operation for sending seeds onto the seeding bed are continuously performed. After cultivating the soil with the device's tilling claws, the vertical plate of the vertical molding machine advances to level the ground, and the vertical edge has a sharp edge between multiple flat plates arranged side by side. However, it progresses while biting into the soft ground cultivated by the tilling claws, and both side plates of the erecting device are exposed to the cultivated soil and lifted to the side to form ridges. In the subsequent sowing operation, the soaking machine's grooving device proceeds on the formed ridge to form a sowing groove, and seeds fed from the feeding device driven by the drive wheel are discharged into the sowing groove. After that, the covering body progresses and covers the soil, and further, a pressure wheel rolls over the sowing portion so as to press the seeded portion.
However, the ridges that have been leveled and raised by the above-mentioned erection work are fragile, and the surface is greatly uneven due to soil conditions and tillage conditions, the towing vehicle body moves up and down, or the sowing machine. If the height or posture of the machine is not appropriate, the groover, covering body, pressure wheel, etc. will penetrate deeply and the heel may break, or conversely, the grounding of the drive wheel to the heel surface will be insufficient and the feeding device will be In some cases, the plant did not work, or the sowing machine was inclined with respect to the surface of the culm, so that the seeding depth was uneven and normal growth of the crops was hindered.
Therefore, in the conventional seeding simultaneous seeding machine, a technique for extending a supporting rod behind the toolbar horizontally installed on the rotary tiller and suspending the seeding device on the supporting rod via a parallel link mechanism (for example, Patent Documents). 1) and a technique (for example, Patent Document 2) in which a front end of a support rod is externally fitted to a toolbar standing on a rotary tiller so that the support rod can be moved up and down, and a seeder is fixed to the rear end of the support rod. Yes.
Japanese Utility Model Publication No. 51-64720 JP 2002-262601 A

いずれかの従来技術を用いることにより、播種機の高さを、駆動輪が畝表面に接地して駆動されるが畝は壊さない程度に調節したり、あるいは、播種機の姿勢を、畝表面に対して略水平に保って播種深さを均一に維持することは可能であるが、播種機の前後位置を自由には変更できず、特に、畝立て成形機と独立しては変更できなかった。そのため、完成した畝上に正確に播種することができず、日当たりや根の呼吸、排水性等といった生長に適した環境を種子に与えることができないことから、作物の収穫量の減少や品質の低下を招く、という問題があった。これは、前記畝立て作業では、土の硬さ・粒度・含水量等の条件に応じて、前後方向での畝の形成位置が大きく変化するからであり、例えば、土が柔らかくて流動しやすい場合には、土が高速で後方に流れるため畝は通常よりも後方に形成され、逆に、土が硬くて流動しにくい場合には、土の移動が遅くなり畝は通常よりも前方に形成される。このため、畝立て同時播種機では、播種位置が常に完成直後の畝上にあるように播種機の前後位置を調節する必要がある。   By using any of the conventional techniques, the height of the sowing machine is adjusted so that the driving wheel is grounded on the surface of the cocoon but driven so that the cocoon does not break. It is possible to keep the seeding depth uniform by keeping it almost horizontal, but the front and rear positions of the seeder cannot be changed freely, especially not independently from the vertical molding machine. It was. For this reason, seeds cannot be accurately sown on the finished culm, and the environment suitable for growth such as sunlight, root respiration and drainage cannot be given to the seeds. There was a problem of causing a drop. This is because, in the above-mentioned erection operation, the position where the cocoon is formed changes greatly in the front-rear direction depending on conditions such as the hardness, particle size, and moisture content of the soil. For example, the soil is soft and easily flows. In some cases, since the soil flows backward at high speed, the ridge is formed behind the normal. Conversely, when the soil is hard and difficult to flow, the movement of the soil is slowed and the ridge is formed forward than usual. Is done. For this reason, it is necessary to adjust the front and rear positions of the seeder so that the seeding position is always on the seedling immediately after completion.

本発明の解決しようとする課題は以上の如くであり、次にこの課題を解決するための手段を説明する。
すなわち、請求項1においては、ロータリ耕耘装置の後部に装着されると共に、畝立て成形機と播種機を備えた畝立て同時播種機において、前記ロータリ耕耘装置に対する前記播種機の前後位置・高さ・姿勢を、前記畝立て成形機とは独立して変更可能な位置調節機構を設けたものである。
請求項2においては、前記位置調節機構は、高さ・姿勢調節機構と前後位置調節機構とから構成され、該前後位置調節機構は、前記ロータリ耕耘装置に設けたガイド体と、該ガイド体に沿って前後方向にスライド可能な移動体とを備えており、該移動体に、前記高さ・姿勢調節機構を介して前記播種機を装着するものである。
The problem to be solved by the present invention is as described above. Next, means for solving the problem will be described.
That is, in Claim 1, in the simultaneous seeding machine equipped with the vertical forming machine and the seeding machine, the front / rear position / height of the seeding machine with respect to the rotary fielding device is mounted at the rear of the rotary fielding device. A position adjustment mechanism that can change the posture independently of the vertical molding machine is provided.
According to a second aspect of the present invention, the position adjusting mechanism includes a height / posture adjusting mechanism and a front / rear position adjusting mechanism. The front / rear position adjusting mechanism includes a guide body provided in the rotary tiller, and a guide body. And a moving body that can slide in the front-rear direction. The seeder is attached to the moving body via the height / posture adjusting mechanism.

本発明は、以上のように構成したので、以下に示す効果を奏する。
すなわち、請求項1においては、ロータリ耕耘装置の後部に装着されると共に、畝立て成形機と播種機を備えた畝立て同時播種機において、前記ロータリ耕耘装置に対する前記播種機の前後位置・高さ・姿勢を、前記畝立て成形機とは独立して変更可能な位置調節機構を設けたので、播種機の前後位置も自由に変更することができ、完成した畝上に正確に播種して、日当たりや根の呼吸、排水性等といった生長に適した環境を種子に与えることができるため、作物の収穫量の増加や品質の向上を図ることができる。
請求項2においては、前記位置調節機構は、高さ・姿勢調節機構と前後位置調節機構とから構成され、該前後位置調節機構は、前記ロータリ耕耘装置に設けたガイド体と、該ガイド体に沿って前後方向にスライド可能な移動体とを備えており、該移動体に、前記高さ・姿勢調節機構を介して前記播種機を装着するので、前後位置調節機構をガイド体と移動体とから成る簡単な構成で形成することができ、畝立て同時播種機の部品コストを低減すると共にメンテナンス性を向上させることができる。
Since this invention was comprised as mentioned above, there exists an effect shown below.
That is, in Claim 1, in the simultaneous seeding machine equipped with the vertical forming machine and the seeding machine, the front / rear position / height of the seeding machine with respect to the rotary fielding device is mounted at the rear of the rotary fielding device. -Since the position adjustment mechanism that can change the posture independently of the above-described vertical molding machine is provided, the front and rear positions of the seeding machine can be freely changed, and the seeding is accurately seeded on the finished paddle, Since seeds can be given an environment suitable for growth, such as sunlight, root respiration, drainage, etc., it is possible to increase crop yield and improve quality.
According to a second aspect of the present invention, the position adjusting mechanism includes a height / posture adjusting mechanism and a front / rear position adjusting mechanism. The front / rear position adjusting mechanism includes a guide body provided in the rotary tiller, and a guide body. A movable body that is slidable in the front-rear direction, and the seeder is attached to the movable body via the height / posture adjusting mechanism. Therefore, it is possible to reduce the component cost of the simultaneous seeding machine and improve the maintainability.

次に、発明の実施の形態を説明する。
図1は本発明に関わる畝立て同時播種機をトラクタの後部に装着した状態の斜視図、図2は播種機が後方にある場合の畝立て同時播種機の側面図、図3は位置調節機構の側面図、図4は播種機の側面図、図5は前後位置調節機構の斜視図、図6は播種機が前方にある場合の畝立て同時播種機の側面図である。
Next, embodiments of the invention will be described.
FIG. 1 is a perspective view of a state in which a vertical seeding machine according to the present invention is mounted on the rear part of a tractor, FIG. 2 is a side view of the vertical seeding machine when the seeding machine is behind, and FIG. 3 is a position adjusting mechanism. 4 is a side view of the seeding machine, FIG. 5 is a perspective view of the front-rear position adjusting mechanism, and FIG. 6 is a side view of the simultaneous seeding machine when the seeding machine is in front.

まず、トラクタ1の後部に本発明に係わる畝立て同時播種機3を装着した場合の全体構成について、図1乃至図4により説明する。
トラクタ1の後部の作業機装着装置にはロータリ耕耘装置2が昇降自在に装着され、該ロータリ耕耘装置2の後部に、畝立て成形機4と複数の播種機5とから成る畝立て同時播種機3が装着されている。
First, the whole structure at the time of mounting | wearing the rearing simultaneous seeding machine 3 concerning this invention with the rear part of the tractor 1 is demonstrated with reference to FIG.
A rotary tiller 2 is mounted on the work machine mounting device at the rear of the tractor 1 so that the rotary tiller 2 can be moved up and down. At the rear of the rotary tiller 2, a vertical seeding machine comprising a vertical molding machine 4 and a plurality of seeders 5. 3 is installed.

図1、図2に示すように、このうちのロータリ耕耘装置2においては、左右中央にギアボックス6が配置され、該ギアボックス6より前方に入力軸が突出され、該入力軸は、ユニバーサルジョイント7やドライブ軸等を介してトラクタ1のPTO軸と連結され、トラクタ1からの動力をギアボックス6内に伝達するようにしている。該ギアボックス6の側面より両側方にはビーム8・8が突出され、該ビーム8・8のそれぞれの中途部には本体プレート9がUボルト29・29によって固定され、該本体プレート9の左右略中央部の前端からは左右の支持杆11・11が前方に突設されており、該支持杆11・11は、それぞれ左右のピン12・12によってトラクタ1のロアリンク10・10に連結されている。更に、該支持杆11・11近傍の本体プレート9前部からは正面視門型状のマスト13が立設され、該マスト13上部の連結杆13aの左右略中央部には左右の取付プレート14・14が固設されており、該取付プレート14・14の前端間に、トラクタ1のトップリンク16がピン15によって連結されている。このようなトップリンク16、マスト13、ロアリンク10・10を介することにより、ロータリ耕耘装置2をトラクタ1の後部に確実に連結支持した上で牽引できるようにしている。   As shown in FIGS. 1 and 2, in the rotary tiller 2, a gear box 6 is disposed at the center of the left and right, and an input shaft projects forward from the gear box 6, and the input shaft is a universal joint. 7 and a drive shaft are connected to the PTO shaft of the tractor 1 to transmit power from the tractor 1 into the gear box 6. Beams 8 and 8 protrude from both sides of the side surface of the gear box 6, and a body plate 9 is fixed to each middle part of the beams 8 and 8 by U bolts 29 and 29. Left and right support rods 11 and 11 project forward from the front end of the substantially central portion, and the support rods 11 and 11 are connected to the lower links 10 and 10 of the tractor 1 by left and right pins 12 and 12, respectively. ing. Further, a frontal portal-type mast 13 is erected from the front part of the main body plate 9 in the vicinity of the support rods 11 and 11, and left and right mounting plates 14 are provided at substantially the left and right central portions of the connection rod 13a on the mast 13. 14 is fixed, and the top link 16 of the tractor 1 is connected by a pin 15 between the front ends of the mounting plates 14 and 14. By using the top link 16, the mast 13, and the lower links 10, 10, the rotary tiller 2 can be pulled and connected to the rear portion of the tractor 1 with certainty.

前記ビーム8・8の外側端には、チェーンケース17上部とサイドサポート18の上部が固設され、これらチェーンケース17下部とサイドサポート18下部の間に耕耘爪軸19が横架され、該耕耘爪軸19上にナタ爪よりなる多数の耕耘爪20・20・・・が側面視で放射状に植設されている。該耕耘爪20の回転軌跡21の上方は、ゴム等の軟質材から成る耕耘カバー22によって覆われ、該耕耘カバー22は前記本体プレート9の後端より垂設されて耕土が飛散しないようにしている。これにより、耕耘爪軸19は、前記入力軸よりギアボックス6内のギア、ビーム8内の伝動軸、チェーンケース17内のスプロケット、チェーンを介して回転駆動され、耕耘爪20・20・・・が回転して耕耘できるようにしている。   An upper part of the chain case 17 and an upper part of the side support 18 are fixed to the outer ends of the beams 8 and 8, and a tilling claw shaft 19 is horizontally mounted between the lower part of the chain case 17 and the lower part of the side support 18. A number of tilling claws 20, 20... Made of nail claws are planted radially on 19. The upper part of the rotation trajectory 21 of the tillage claw 20 is covered with a tillage cover 22 made of a soft material such as rubber, and the tillage cover 22 is suspended from the rear end of the main body plate 9 so that the tillage is not scattered. Yes. Thereby, the tilling claw shaft 19 is rotationally driven from the input shaft through the gear in the gear box 6, the transmission shaft in the beam 8, the sprocket in the chain case 17, and the chain. Can be rotated and cultivated.

図1乃至図3に示すように、前記ビーム8・8を挟んで、前記支持杆11・11と反対側の本体プレート9後部には左右の連結杆23・23が固設され、該連結杆23・23の後部23a・23aには第1ツールバー24が左右方向に延設されており、該第1ツールバー24の後面には固定板26が配設されている。そして、該固定板26を、上下のボルト27・27によって後面から前記後部23a・23a側に締め付けることにより、第1ツールバー24を連結杆23・23に固定するようにしている。   As shown in FIGS. 1 to 3, left and right connecting rods 23 and 23 are fixed to the rear of the body plate 9 opposite to the support rods 11 and 11 with the beams 8 and 8 interposed therebetween. A first toolbar 24 extends in the left-right direction at the rear portions 23 a of the 23 and 23, and a fixing plate 26 is disposed on the rear surface of the first toolbar 24. The first tool bar 24 is fixed to the connecting rods 23 and 23 by tightening the fixing plate 26 from the rear surface to the rear parts 23a and 23a with upper and lower bolts 27 and 27.

そして、前記畝立て成形機4においては、この第1ツールバー24の左右端と左右略中央の3箇所に3個の畝立器28が装着されている。該畝立器28においては、第1ツールバー24に係止具30がボルト31によって左右摺動可能に固定され、該係止具30の後面には縦パイプ33が固設され、該縦パイプ33には、吊杆34が側面のボルト32・32によって上下摺動可能に挿着されている。そして、該吊杆34の下端には畝立てを行う畝立板35が固着され、該畝立板35では、尖端板35aと、該尖端板35a後部に平面視でハ字状に後方に拡がる両側板35b・35bとから成り、該両側板35b・35bの後下部は下すぼまりに傾斜して支持フレーム36によって連結されている。これにより、該支持フレーム36によって剛性を高めた畝立板35を上下左右にスライドさせ、第1ツールバー24に対する左右位置と高さとを自由に変更することができ、形成する畝の幅・高さ・形状に適した位置に畝立板35を配置できるようにしている。   In the upright molding machine 4, three uprights 28 are attached to the left and right ends of the first tool bar 24 and at three locations substantially in the center of the left and right. In the upright 28, a locking tool 30 is fixed to the first tool bar 24 by a bolt 31 so as to be slidable left and right, and a vertical pipe 33 is fixed to the rear surface of the locking tool 30. A hanging rod 34 is inserted by side bolts 32 and 32 so as to be slidable up and down. And the standing board 35 which performs a standing is fixed to the lower end of this hanging hook 34, and in this standing board 35, it spreads back in the cross-sectional shape in the planar view at the pointed board 35a and this pointed board 35a. It consists of both side plates 35b and 35b, and the rear lower portions of the side plates 35b and 35b are inclined by a downward recess and connected by a support frame 36. As a result, the upright plate 35 whose rigidity is increased by the support frame 36 can be slid up and down and left and right, and the left and right positions and heights with respect to the first toolbar 24 can be freely changed. The upright plate 35 can be arranged at a position suitable for the shape.

これら3個の畝立器28の間には均平板37が介設されている。該均平板37の前縁は前記耕耘カバー22の後縁に蝶番などで連結されると共に、均平板37の平面視略中央部には吊杆41の下端が固定されている。そして、該吊杆41の上部は、ボルト42・42によって縦パイプ40に上下摺動可能に挿着され、該縦パイプ40は、前記第1ツールバー24にボルト39によって左右摺動可能に固定された係止具38の後面に固設されている。これにより、均平板37についても、前記畝立器28と同様に、上下左右にスライドさせ、第1ツールバー24に対する左右位置と高さとを自由に変更することができ、畝形成に適した状態に地面を均せるようにしている。   A flat plate 37 is interposed between the three uprights 28. The front edge of the flat plate 37 is connected to the rear edge of the tillage cover 22 with a hinge or the like, and the lower end of the hanging rod 41 is fixed to the approximate center of the flat plate 37 in plan view. The upper part of the hanging rod 41 is slidably attached to the vertical pipe 40 by bolts 42 and 42, and the vertical pipe 40 is fixed to the first toolbar 24 by a bolt 39 so as to be slidable left and right. It is fixed to the rear surface of the locking member 38. As a result, the flat plate 37 can also be slid up and down and left and right as in the case of the stand 28, and the left and right positions and heights with respect to the first toolbar 24 can be freely changed. I try to level the ground.

図1、図2、図4に示すように、前記播種機5は、前記第1ツールバー24に位置調節機構43を介して連結された第2ツールバー25に装着されている。該第2ツールバー25は左右方向に延設されており、播種機5においては、前上部の嵌合体45が前記第2ツールバー25に外嵌され、フックネジ46によって左右位置調節可能に固定されると共に、該嵌合体45からは播種フレーム47が垂設されている。該播種フレーム47の下部には平行リンク48・49の前部が回動自在に枢支され、該平行リンク48・49の後端には揺動フレーム50が枢結されると共に、平行リンク48・49の対角線上には付勢バネ51が介装され、前記揺動フレーム50は、常に下方に回動するように付勢されている。   As shown in FIGS. 1, 2, and 4, the seeding machine 5 is mounted on a second toolbar 25 that is connected to the first toolbar 24 via a position adjustment mechanism 43. The second tool bar 25 extends in the left-right direction. In the seeder 5, the front upper fitting body 45 is externally fitted to the second tool bar 25 and fixed by a hook screw 46 so that the left-right position can be adjusted. A seeding frame 47 is suspended from the fitting body 45. The front portions of the parallel links 48 and 49 are pivotally supported at the lower portion of the seeding frame 47, and the swing frame 50 is pivotally connected to the rear ends of the parallel links 48 and 49. A biasing spring 51 is interposed on the diagonal line 49, and the swing frame 50 is always biased to rotate downward.

該揺動フレーム50の前面より下方には、作溝器である作溝ディスク52の支持杆53が突出され、該支持杆53の下端に作溝ディスク52の回転軸54が軸支されている。この作溝ディスク52は、前方が閉じた平面視V字状の2枚ディスクから構成されると共に、作溝ディスク52の外側には、前記支持杆53より後斜め下方に突出した掻き落とし板55が配設され、該掻き落とし板55によって、付着した土等を除去するようにしている。そして、作溝ディスク52後部の空間内には、播種ガイドパイプ56の先部が挿入され、作溝ディスク52間に播種できるようにしている。   Below the front surface of the swing frame 50, a support rod 53 of a groove forming disk 52, which is a groove generator, protrudes, and a rotating shaft 54 of the groove forming disk 52 is pivotally supported at the lower end of the support rod 53. . The grooving disk 52 is composed of two discs having a V-shape in plan view with the front closed, and on the outside of the grooving disk 52 is a scraping plate 55 that projects obliquely downward and rearward from the support rod 53. Is disposed and the scraping plate 55 removes adhered soil and the like. The tip of the sowing guide pipe 56 is inserted into the space behind the grooving disk 52 so that the sowing can be performed between the grooving disks 52.

前記揺動フレーム50からは、作溝ディスク52後方で種子落下位置の後方に、覆土体である覆土ディスク57が突設支持されており、該覆土ディスク57によって種子が軽く覆土されるようにしている。更に、揺動フレーム50の後端からは支持杆58が後方に突出され、該支持杆58の後端に鎮圧輪59が軸支されており、該鎮圧輪59によって、覆土後の種子が鎮圧される。本実施例では、鎮圧輪59は駆動輪としても機能する構成となっており、この鎮圧輪59の回動軸は側方へ突出してチェーンケース60内に挿入され、該チェーンケース60内のスプロケット及びチェーンを介して、前記揺動フレーム50に横架した播種装置61の入力軸62が駆動されるようにしている。なお、鎮圧輪59の側部にはラグ59a・59a・・・が突設されており、畝44の上面に対して滑らないようにすると共に、スクレーパ63を付設して付着土を除去し、作業効率の向上を図るようにしている。   From the swing frame 50, a soil covering disk 57, which is a soil covering body, protrudes and is supported behind the grooving disk 52 and behind the seed dropping position, so that the seed is lightly covered with the soil covering disk 57. Yes. Further, a support rod 58 protrudes rearward from the rear end of the swing frame 50, and a pressure reducing wheel 59 is pivotally supported on the rear end of the support rod 58, and the seed after covering is pressed down by the pressure reduction wheel 59. Is done. In this embodiment, the pressure-reducing wheel 59 also functions as a drive wheel. The rotation shaft of the pressure-reducing wheel 59 protrudes sideways and is inserted into the chain case 60, and the sprocket in the chain case 60. In addition, the input shaft 62 of the seeding device 61 laid horizontally on the swing frame 50 is driven via the chain. In addition, lugs 59a, 59a,... Are protruded from the side of the pressure reducing wheel 59 so as not to slide with respect to the upper surface of the flange 44, and a scraper 63 is attached to remove the adhered soil. The work efficiency is improved.

これにより、前記揺動フレーム50に付設された作溝ディスク52、覆土ディスク57、鎮圧輪59は、畝表面の凹凸に従って、前記平行リンク48・49が下方に付勢された状態で回動しながら上下動するので、播種作業においてトラクタ1の機体が上下動等しても、各々の条毎に、しかも畝表面に対して、略水平を保ちながら上下するため、播種深さを均一に保ち、しかも、播種装置61の繰出装置の駆動も確実に確保することができる。   As a result, the groove forming disk 52, the covering soil disk 57, and the pressure reducing wheel 59 attached to the swing frame 50 rotate in a state where the parallel links 48 and 49 are urged downward according to the unevenness of the surface of the ridge. Therefore, even if the body of the tractor 1 moves up and down during the sowing operation, it moves up and down with respect to the surface of the cocoon and with respect to the surface of the cocoon. And the drive of the feeding apparatus of the sowing apparatus 61 can also be ensured reliably.

また、該播種装置61は種子ホッパ83を有し、該種子ホッパ83の直下には目皿タイプの繰出装置84が配設されている。該繰出装置84においては、繰出ケース85内に形成された収納部86に円盤状の繰出回転体87が収納され、該繰出回転体87の中央には回転軸88の上端が装着されている。該回転軸88の下端にはベベルギア89が固設され、該ベベルギア89は前記入力軸62に固設されたベベルギア90と噛合されており、前記鎮圧輪59から入力軸62に入力された動力が、ベベルギア89・90、回転軸88を介して繰出回転体87に伝達され、該繰出回転体87が回転駆動される。   The seeding device 61 has a seed hopper 83, and an eye plate type feeding device 84 is disposed immediately below the seed hopper 83. In the feeding device 84, a disc-shaped feeding rotary body 87 is stored in a storage portion 86 formed in the feeding case 85, and the upper end of the rotary shaft 88 is attached to the center of the feeding rotary body 87. A bevel gear 89 is fixed to the lower end of the rotary shaft 88, and the bevel gear 89 is engaged with a bevel gear 90 fixed to the input shaft 62, and the power input from the pressure reducing wheel 59 to the input shaft 62 is received. The bevel gears 89 and 90 and the rotating shaft 88 are transmitted to the feeding rotary body 87, and the feeding rotary body 87 is rotationally driven.

繰出回転体87には複数の図示せぬ搬送孔が穿孔されており、前記種子ホッパ83から流下してきた多数の種子91の一部は、回転する繰出回転体87の搬送孔内に入ると、前記収納部86に形成された繰出口86aまで搬送され、該繰出口86aに連通された前記播種ガイドパイプ56を通って、作溝ディスク52間に播種されるようにしている。   A plurality of unillustrated transport holes are perforated in the feeding rotary body 87, and when a part of the large number of seeds 91 flowing down from the seed hopper 83 enters the transport holes of the rotating feed rotary body 87, It is conveyed to the feeding port 86a formed in the storage part 86, and is sowed between the grooving disks 52 through the sowing guide pipe 56 communicated with the feeding port 86a.

そして、前記繰出ケース85は、全体が合成樹脂等の透明材料で構成されており、全方向から繰出回転体87の外周面を外から目視できるようにしている。更に、該繰出回転体87の外周面87aを等間隔に複数のエリア87bに分割し、少なくとも該エリア87bを彩色することで、遠方からでも、繰出ケース85内での繰出回転体87の回転状況を一目で確認できるようにしている。なお、前記外周面87aの一部のみにエリア87bを設けるようにしてもよい。   The entire feeding case 85 is made of a transparent material such as a synthetic resin so that the outer peripheral surface of the feeding rotating body 87 can be seen from the outside from all directions. Furthermore, the outer peripheral surface 87a of the feeding rotating body 87 is divided into a plurality of areas 87b at equal intervals, and at least the area 87b is colored, so that the rotating state of the feeding rotating body 87 in the feeding case 85 can be obtained even from a distance. Can be confirmed at a glance. In addition, you may make it provide the area 87b only in a part of said outer peripheral surface 87a.

なお、本実施例においては、繰出ケース85全体を透明材料で構成したが、繰出ケース85の一部のみを透明材料で構成してもよい。また、繰出ケース85内部に繰出回転体87を遮蔽する部品がある場合は、繰出ケース85及び該繰出ケース85内部の部品の全体又は一部を透明材料で構成してもよい。また、完全な透明材料でなく、半透明性の材料を用いてもよい。あるいは、繰出ケース85を透明材料又は半透明材料に構成するのではなく、繰出ケース85の側面又は前後面で駆動部や種子の搬送に影響を与えない部分に開口部を設け、内部の繰出回転体87の一部を目視できるように構成することもできる。   In the present embodiment, the entire feeding case 85 is made of a transparent material, but only a part of the feeding case 85 may be made of a transparent material. Further, when there is a part that shields the feeding rotary body 87 inside the feeding case 85, the feeding case 85 and all or a part of the parts inside the feeding case 85 may be made of a transparent material. Further, a translucent material may be used instead of a completely transparent material. Alternatively, the feeding case 85 is not formed of a transparent material or a semi-transparent material, but an opening is provided in a portion of the feeding case 85 that does not affect the driving unit and the seed conveyance on the side surface or the front and back surfaces, and the feeding rotation inside. It can also comprise so that a part of body 87 can be visually observed.

いずれにしても、繰出ケース85の外から繰出回転体87の全体又は一部が目視できる構造であればよく、繰出ケース85は上記構造に限定されるものではない。更に、本実施例の繰出装置は目皿タイプであるが、スライドロール等のロールタイプでもよく、繰出回転体の回転で種子の繰出を確認可能な構造のものであればよい。   In any case, it is sufficient that the whole or a part of the feeding rotary body 87 is visible from the outside of the feeding case 85, and the feeding case 85 is not limited to the above structure. Furthermore, although the feeding device of the present embodiment is of the eye plate type, it may be of a roll type such as a slide roll as long as it can confirm the feeding of the seed by the rotation of the feeding rotating body.

すなわち、繰出ケース85と、該繰出ケース85に収納されると共に外面に形成された搬送孔に種子91を入れて回転することにより種子を一定量ずつ搬送して繰り出す繰出回転体87とを具備する繰出装置84において、前記繰出ケース85の全体又は一部を透明材料又は半透明材料で構成したり、あるいは繰出ケース85の側面又は前後面に開口部を設けることにより、該繰出ケース85の外側から前記繰出回転体87の全体又は一部を目視可能とするとともに、前記繰出回転体87の目視可能な部位の外周面87aに回転方向に非一様な色彩を設けることで、該色彩の動きを繰出ケース85の外側から見ることにより、繰出回転体87の回転状況を明確に確認することができ、種子が正確に投下されているか否かを容易に確実に確認することができる。しかも、繰出ケース85を透明材料又は半透明材料で構成し、繰出回転体87に彩色を施すだけで済むので、センサ等の高価な部品を別に設ける必要がなく、低コストで繰出回転体87の回転状況を確認することができるのである。   That is, it comprises a feeding case 85 and a feeding rotating body 87 that feeds and feeds the seeds by a fixed amount by rotating the seed 91 in a feeding hole formed on the outer surface and housed in the feeding case 85. In the feeding device 84, the whole or a part of the feeding case 85 is made of a transparent material or a translucent material, or an opening is provided on the side surface or the front and rear surfaces of the feeding case 85, so that the feeding case 85 can be opened from the outside. The whole or a part of the feeding rotary body 87 can be visually confirmed, and a non-uniform color is provided in the rotation direction on the outer peripheral surface 87a of the visible part of the feeding rotary body 87, whereby the movement of the color is controlled. By looking from the outside of the feeding case 85, the rotation state of the feeding rotary body 87 can be clearly confirmed, and it is easily and reliably confirmed whether or not the seeds are accurately dropped. It is possible. In addition, since the feeding case 85 is made of a transparent material or a semi-transparent material, it is only necessary to color the feeding rotating body 87, so that it is not necessary to separately provide expensive parts such as a sensor, and the feeding rotating body 87 can be manufactured at low cost. The rotation status can be confirmed.

次に、本発明に係わる前記位置調節機構43について、図1乃至図3、図5、図6により説明する。
位置調節機構43は、前後位置調節機構64と高さ・姿勢調節機構65とから構成される。図1,図3、図5に示すように、このうちの前後位置調節機構64においては、前記第1ツールバー24の左右略中央部に2個のガイド体66が配置されている。該ガイド体66の下部には側面視で下方に開いたコ字状の係止部66aが形成され、該係止部66aの前後面には複数のネジ68が上下方向に固設されており、係止部66aを第1ツールバー24に上から嵌合させた後、固定板67に開口した四隅の固定孔67aに前記ネジ68を挿通させるようにして、該固定板67を前記第1ツールバー24下面に当接した上で、前記ネジ68にナット69を下方より螺嵌させることにより、ガイド体66を第1ツールバー24に左右位置調節可能に固定することができる。
Next, the position adjusting mechanism 43 according to the present invention will be described with reference to FIGS. 1 to 3, 5, and 6. FIG.
The position adjustment mechanism 43 includes a front / rear position adjustment mechanism 64 and a height / posture adjustment mechanism 65. As shown in FIGS. 1, 3, and 5, in the front-rear position adjusting mechanism 64, two guide bodies 66 are disposed at the substantially right and left central portions of the first toolbar 24. A U-shaped locking portion 66a opened downward in a side view is formed at the lower portion of the guide body 66, and a plurality of screws 68 are fixed vertically on the front and rear surfaces of the locking portion 66a. After the engaging portion 66a is fitted to the first tool bar 24 from above, the screws 68 are inserted into the fixing holes 67a at the four corners opened in the fixing plate 67 so that the fixing plate 67 is attached to the first tool bar 24. 24, the guide body 66 can be fixed to the first tool bar 24 so that the left and right positions thereof can be adjusted by screwing the nut 69 onto the screw 68 from below.

該ガイド体66の上部には、前後方向に向いた角パイプ状のガイド部66bが形成され、左右の該ガイド部66bには、平面視で前方が開いたコ字状の移動体70の左右の摺動部70a・70aが挿通され、該移動体70が前記ガイド部66b・66bに沿って前後にスライドできるようにしている。そして、前記摺動部70a・70aの後端間は連結部70bによって連結されており、左右方向に延設された該連結部70bの左右略中央部に、前記高さ・姿勢調節機構65が装着されるようにしている。   In the upper part of the guide body 66, square pipe-shaped guide portions 66b facing in the front-rear direction are formed, and the left and right guide portions 66b have left and right sides of the U-shaped moving body 70 opened forward in plan view. The sliding portions 70a and 70a are inserted so that the movable body 70 can slide back and forth along the guide portions 66b and 66b. The rear ends of the sliding portions 70a and 70a are connected by a connecting portion 70b, and the height / posture adjusting mechanism 65 is provided at a substantially right and left central portion of the connecting portion 70b extending in the left-right direction. It is supposed to be installed.

更に、前記左右のガイド部66bの上下面には、平面視で同一位置にそれぞれピン孔66cが開口されると共に、左右の摺動部70aの上下面にも平面視で同一位置となるようにピン孔70cがそれぞれ開口され、該ピン孔70c・70cは、間隔をおいて前後方向に複数個穿孔されている。前記ガイド体66のピン孔66cに移動体70のピン孔70cが重なるようにして移動体70を前後方向にスライドさせた後、これらピン孔66c・66c・70c・70cに係止ピン71を挿通させることにより、ガイド体66に対する移動体70の前後位置を所定位置に固定できるようにしている。   Further, the upper and lower surfaces of the left and right guide portions 66b are respectively provided with pin holes 66c at the same position in plan view, and the upper and lower surfaces of the left and right sliding portions 70a are also at the same position in plan view. Pin holes 70c are respectively opened, and a plurality of pin holes 70c and 70c are formed in the front-rear direction at intervals. After the moving body 70 is slid in the front-rear direction so that the pin hole 70c of the moving body 70 overlaps the pin hole 66c of the guide body 66, the locking pin 71 is inserted into the pin holes 66c, 66c, 70c, 70c. By doing so, the front-rear position of the moving body 70 with respect to the guide body 66 can be fixed at a predetermined position.

なお、この移動体70は、その位置が無段階に調節可能な構成としてもよい。例えば、前記ガイド体66のガイド部66bに設けたネジ孔にボルトを螺挿し、該ボルトの先部を摺動部70aの外側面に押圧することにより、無段階にスライドさせた後の移動体70を所定位置に固定することができ、これにより、簡単な構造で固定位置の微調整が可能となる。また、移動体70のスライドをギア駆動によって行うことにより、移動体70の前後位置を無段階に調節可能な構成としてもよい。例えば、前記移動体70の摺動部70aに、該摺動部70aの長手方向にわたって外向きのラックを設け、該ラックに係合するピニオンには、前後位置調節用のハンドルの支軸に固定されたギアを噛合させるのである。このハンドルを回動操作すると、移動体70は前後方向に無段階にスライドされ、ハンドル操作を停止すると、移動体70も所定位置に停止する。停止した後は、ハンドルをフック等で係止することにより、移動体70は複数のギアを介して確実に固定される。   The moving body 70 may be configured such that its position can be adjusted steplessly. For example, the moving body after being continuously stepped by screwing a bolt into a screw hole provided in the guide portion 66b of the guide body 66 and pressing the tip of the bolt against the outer surface of the sliding portion 70a. 70 can be fixed at a predetermined position, which enables fine adjustment of the fixed position with a simple structure. Moreover, it is good also as a structure which can adjust the front-back position of the moving body 70 in a stepless manner by sliding the moving body 70 by gear drive. For example, the sliding portion 70a of the moving body 70 is provided with an outward rack over the longitudinal direction of the sliding portion 70a, and the pinion engaged with the rack is fixed to the support shaft of the handle for adjusting the front-rear position. The gears are engaged. When the handle is turned, the moving body 70 is slid stepwise in the front-rear direction. When the handle operation is stopped, the moving body 70 also stops at a predetermined position. After stopping, the moving body 70 is securely fixed via a plurality of gears by locking the handle with a hook or the like.

前記高さ・姿勢調節機構65においては、前記移動体70の連結部70bの左右略中央に、側面視で前方に開いたコ字状のヒッチ72が嵌合され、上下方向に挿通するヒッチピン72aによって、ヒッチ72が移動体70後部の連結部70bに連結されている。更に、ヒッチピン72aによって係止しただけでは、移動体70とヒッチ72との間にガタが発生するので、締め付けボルト72bにより押圧体72cを押さえて、ヒッチ72と移動体70間のガタを無くすようにしている。   In the height / posture adjustment mechanism 65, a U-shaped hitch 72 that opens forward in a side view is fitted in the left and right center of the connecting portion 70 b of the moving body 70, and a hitch pin 72 a that is inserted vertically. Thus, the hitch 72 is connected to the connecting portion 70b at the rear of the moving body 70. Furthermore, since the play is generated between the moving body 70 and the hitch 72 only by being locked by the hitch pin 72a, the pressing body 72c is pressed by the tightening bolt 72b to eliminate the play between the hitch 72 and the moving body 70. I have to.

該ヒッチ72から上方に調節フレーム73・73が立設され、該調節フレーム73の下後部に設けた枢支軸73aに、回動フレーム74・74が枢支されている。調節フレーム73・73の上部と回動フレーム74・74の上部はそれぞれピン75・76によって枢支され、このうちのピン75には姿勢調節ハンドル77のネジ部77aが螺挿されており、該姿勢調節ハンドル77を回動することにより、回動フレーム74・74が枢支軸73aを中心にして前後回動できるようにしている。   Adjustment frames 73 and 73 are erected upward from the hitch 72, and pivot frames 74 and 74 are pivotally supported on a pivot shaft 73 a provided at the lower rear portion of the adjustment frame 73. The upper portions of the adjustment frames 73 and 73 and the upper portions of the rotation frames 74 and 74 are pivotally supported by pins 75 and 76, respectively, and screw portions 77a of the posture adjustment handle 77 are screwed into the pins 75, By rotating the posture adjustment handle 77, the rotation frames 74 and 74 can be rotated back and forth around the pivot shaft 73a.

前記回動フレーム74・74の後端両側にはガイド杆78・78が垂設されると共に、回動フレーム74・74の後部間にはネジ杆79が回動自在に枢支され、該ネジ杆79の上端に高さ調節ハンドル80が設けられ、ネジ杆79の下端はバー取付体81に対して螺挿されている。該バー取付体81の前両側にはパイプ82・82が上下方向に左右平行に固設され、該パイプ82・82に前記ガイド杆78・78が挿入されており、前記高さ調節ハンドル80を回動すると、バー取付体81がパイプ82・82にガイドされながら昇降されるようにしている。なお、バー取付体81の後部には嵌合部92が形成されており、該嵌合部92を前記第2ツールバー25の左右中央にセットした後、取付金具を合わせて、ボルトで第2ツールバー25に固定できるようにしている。   Guide rods 78 and 78 are vertically suspended on both sides of the rear ends of the rotating frames 74 and 74, and a screw rod 79 is pivotally supported between the rear portions of the rotating frames 74 and 74. A height adjustment handle 80 is provided at the upper end of the collar 79, and the lower end of the screw collar 79 is screwed into the bar mounting body 81. On both front sides of the bar mounting body 81, pipes 82 and 82 are fixed in parallel in the vertical direction, and the guide rods 78 and 78 are inserted into the pipes 82 and 82. The height adjusting handle 80 is When rotated, the bar mounting body 81 is moved up and down while being guided by the pipes 82 and 82. A fitting portion 92 is formed at the rear portion of the bar mounting body 81. After the fitting portion 92 is set at the center of the left and right sides of the second toolbar 25, the mounting brackets are put together and the second toolbar is attached with bolts. Can be fixed to 25.

これにより、姿勢調節ハンドル77と高さ調節ハンドル80とを回動操作すると、バー取付体81は、枢支軸73aを中心に前後回動すると共に、パイプ82・82にガイドされながら昇降するので、移動体70に対するバー取付体81の姿勢と高さ、すなわちバー取付体81後部に固定された前記第2ツールバー25の姿勢と高さを自在に変更させることができる。   As a result, when the posture adjusting handle 77 and the height adjusting handle 80 are rotated, the bar attachment body 81 rotates back and forth around the pivot shaft 73a and is lifted and lowered while being guided by the pipes 82 and 82. The posture and height of the bar mounting body 81 with respect to the moving body 70, that is, the posture and height of the second toolbar 25 fixed to the rear portion of the bar mounting body 81 can be freely changed.

以上のような構成において、土が流動しやすく畝立て作業時に土が高速で後方に流れ、畝が通常よりも後方に形成される場合には、図2、図3に示すように、前記前後位置調節機構64を用いて播種機5を後方に移動させる。すなわち、前記第1ツールバー24に固定したガイド体66から左右の前記係止ピン71を脱着した後、該ガイド体66のガイド部66b・66bに沿って、前記移動体70の摺動部70a・70aを後方に移動させ、播種機5の播種位置が畝の形成位置上に来た所で、ガイド体66のピン孔66cと移動体70のピン孔70cとに係止ピン71を挿通し、移動体70後端の連結部70bを適切な後方位置に変更するのである。続いて、前記高さ・姿勢調節機構65の姿勢調節ハンドル77を回動操作して、回動フレーム74を枢支軸73aを中心にして前後回動させ、前記連結部70bに対する回動フレーム74の前後角を変更し、更に、高さ調節ハンドル80を回動操作して、バー取付体81を回動フレーム74を基準に昇降させ、前記回動フレーム74に対するバー取付体81の高さを変更する。   In the above configuration, when the soil is easy to flow and the soil flows backward at a high speed during the erection operation, and the ridge is formed rearward than usual, as shown in FIGS. The seeder 5 is moved backward using the position adjusting mechanism 64. That is, after the left and right locking pins 71 are detached from the guide body 66 fixed to the first tool bar 24, the sliding portions 70a of the movable body 70 are moved along the guide portions 66b and 66b of the guide body 66. 70a is moved backward, and when the seeding position of the seeder 5 is on the formation position of the ridge, the locking pin 71 is inserted into the pin hole 66c of the guide body 66 and the pin hole 70c of the mobile body 70, The connecting part 70b at the rear end of the moving body 70 is changed to an appropriate rear position. Subsequently, the posture adjusting handle 77 of the height / posture adjusting mechanism 65 is rotated to rotate the rotating frame 74 back and forth about the pivot shaft 73a, and the rotating frame 74 with respect to the connecting portion 70b. Further, the height adjusting handle 80 is rotated to raise and lower the bar mounting body 81 with reference to the rotating frame 74, and the height of the bar mounting body 81 relative to the rotating frame 74 is increased. change.

逆に、土が流動しにくく畝立て作業時には土が低速で後方に流れ、畝が通常よりも前方に形成される場合には、図6に示すように、前記前後位置調節機構64を用いて播種機5を前方に移動させる。すなわち、前記第1ツールバー24に固定したガイド体66から左右の前記係止ピン71を脱着した後、該ガイド体66のガイド部66b・66bに沿って、移動体70の摺動部70a・70aを前方に移動させ、播種機5の播種位置が畝の形成位置上に来た時点で、ガイド体66のピン孔66cと移動体70のピン孔70cとに係止ピン71を挿通し、移動体70後端の連結部70bを適切な前方位置に変更するのである。その後は、後方位置に変更する場合と同様に、高さ・姿勢調節機構65を用いて、連結部70bに対する回動フレーム74の前後角と、該回動フレーム74に対するバー取付体81の高さを変更する。   Conversely, when the soil is difficult to flow and the soil flows backward at a low speed during the erection work and the ridge is formed forward than usual, the front / rear position adjusting mechanism 64 is used as shown in FIG. The seeding machine 5 is moved forward. That is, after the left and right locking pins 71 are removed from the guide body 66 fixed to the first toolbar 24, the sliding portions 70a and 70a of the moving body 70 are moved along the guide portions 66b and 66b of the guide body 66. Is moved forward, and when the seeding position of the seeder 5 comes on the formation position of the cocoon, the locking pin 71 is inserted into the pin hole 66c of the guide body 66 and the pin hole 70c of the movable body 70, and moved. The connecting part 70b at the rear end of the body 70 is changed to an appropriate front position. Thereafter, as in the case of changing to the rear position, using the height / posture adjustment mechanism 65, the front and rear angles of the rotating frame 74 with respect to the connecting portion 70b and the height of the bar mounting body 81 with respect to the rotating frame 74 are used. To change.

そして、該バー取付体81には第2ツールバー25を介して播種機5が連結されていることから、前後位置調節機構64、高さ・姿勢調節機構65によって、前記第1ツールバー24に対する播種機5の前後位置・高さ・姿勢を自在に変更することができるのである。しかも、前述した如く、畝立器28や均平板37等から成る畝立て成形機4も、第1ツールバー24に対する左右位置・高さを自在に変更でき、播種機5の前後位置調節機構64、高さ・姿勢調節機構65とは互いに独立して調節可能な構成となっている。   Since the seeder 5 is connected to the bar mounting body 81 via the second tool bar 25, the seeder for the first tool bar 24 is controlled by the front / rear position adjusting mechanism 64 and the height / posture adjusting mechanism 65. The front / rear position, height, and posture of 5 can be freely changed. Moreover, as described above, the vertical molding machine 4 composed of the vertical tool 28, the leveling plate 37 and the like can also freely change the horizontal position / height relative to the first toolbar 24, and the front / rear position adjustment mechanism 64 of the seeder 5 can be changed. The height / posture adjusting mechanism 65 can be adjusted independently of each other.

すなわち、ロータリ耕耘装置2の後部に装着されると共に、畝立て成形機4と播種機5を備えた畝立て同時播種機3において、前記ロータリ耕耘装置2に対する前記播種機5の前後位置・高さ・姿勢を、前記畝立て成形機4とは独立して変更可能な位置調節機構43を設けたので、播種機5の前後位置も自由に変更することができ、完成した畝上に正確に播種して、日当たりや根の呼吸、排水性等といった生長に適した環境を種子に与えることができるため、作物の収穫量の増加や品質の向上を図ることができる。   That is, the front and rear position and height of the sowing machine 5 with respect to the rotary tiller 2 in the simultaneous sowing machine 3 that is mounted on the rear portion of the rotary tiller 2 and includes the tapping machine 4 and the sowing machine 5. -Since the position adjustment mechanism 43 that can change the posture independently of the above-described vertical molding machine 4 is provided, the front and rear positions of the seeding machine 5 can be freely changed, so that the seeding can be accurately seeded on the finished basket. Thus, the environment suitable for growth such as sunlight, root respiration, drainage, and the like can be given to the seeds, so that the crop yield can be increased and the quality can be improved.

更に、前記位置調節機構43は、高さ・姿勢調節機構65と前後位置調節機構64とから構成され、該前後位置調節機構64は、前記ロータリ耕耘装置2に設けたガイド体66と、該ガイド体66に沿って前後方向にスライド可能な移動体70とを備えており、該移動体70に、前記高さ・姿勢調節機構65を介して前記播種機5を装着するので、前後位置調節機構64をガイド体66と移動体70とから成る簡単な構成で形成することができ、畝立て同時播種機3の部品コストを低減すると共にメンテナンス性を向上させることができる。   Further, the position adjustment mechanism 43 includes a height / posture adjustment mechanism 65 and a front / rear position adjustment mechanism 64, and the front / rear position adjustment mechanism 64 includes a guide body 66 provided in the rotary tiller 2 and the guide. A movable body 70 slidable in the front-rear direction along the body 66, and the seeder 5 is attached to the movable body 70 via the height / posture adjusting mechanism 65. 64 can be formed with a simple configuration including the guide body 66 and the moving body 70, and the parts cost of the simultaneous seeding machine 3 can be reduced and maintainability can be improved.

本発明に係わる位置調節機構は、畝立て同時播種機だけでなく、複数の処理を連続して行うために各処理機間の前後位置・高さ・姿勢の調節が重要な、播種マルチ、マルチ同時土壌消毒機等の複合作業機に、汎用的に適用することができる。   The position adjustment mechanism according to the present invention is not limited to a simultaneous seeding machine, and so as to continuously perform a plurality of processes, it is important to adjust the front / rear position, height, and posture between the processing machines. It can be applied universally to complex working machines such as simultaneous soil disinfecting machines.

本発明に関わる畝立て同時播種機をトラクタの後部に装着した状態の斜視図である。It is a perspective view of the state which equipped the rear part of the tractor with the seeding simultaneous seeding machine concerning the present invention. 播種機が後方にある場合の畝立て同時播種機の側面図である。It is a side view of a seeding simultaneous seeding machine in case a seeding machine exists in the back. 位置調節機構の側面図である。It is a side view of a position adjustment mechanism. 播種機の側面図である。It is a side view of a seeder. 前後位置調節機構の斜視図である。It is a perspective view of the front-back position adjustment mechanism. 播種機が前方にある場合の畝立て同時播種機の側面図である。It is a side view of a seeding simultaneous seeding machine in case a seeder is ahead.

符号の説明Explanation of symbols

2 ロータリ耕耘装置
3 畝立て同時播種機
4 畝立て成形機
5 播種機
43 位置調節機構
64 前後位置調節機構
65 高さ・姿勢調節機構
66 ガイド体
70 移動体
2 rotary tiller 3 simultaneous seeding machine 4 seeding machine 5 seeding machine 43 seeding machine 43 position adjusting mechanism 64 front / rear position adjusting mechanism 65 height / posture adjusting mechanism 66 guide body 70 moving body

Claims (2)

ロータリ耕耘装置の後部に装着されると共に、畝立て成形機と播種機を備えた畝立て同時播種機において、前記ロータリ耕耘装置に対する前記播種機の前後位置・高さ・姿勢を、前記畝立て成形機とは独立して変更可能な位置調節機構を設けたことを特徴とする畝立て同時播種機。   In the vertical seeding machine equipped with a vertical molding machine and a seeder, the vertical position, height, and posture of the seeder with respect to the rotary tiller are set in the vertical molding. A vertical seeding machine characterized by a position adjustment mechanism that can be changed independently of the machine. 前記位置調節機構は、高さ・姿勢調節機構と前後位置調節機構とから構成され、該前後位置調節機構は、前記ロータリ耕耘装置に設けたガイド体と、該ガイド体に沿って前後方向にスライド可能な移動体とを備えており、該移動体に、前記高さ・姿勢調節機構を介して前記播種機を装着することを特徴とする請求項1記載の畝立て同時播種機。
The position adjusting mechanism includes a height / posture adjusting mechanism and a front / rear position adjusting mechanism, and the front / rear position adjusting mechanism slides in the front / rear direction along the guide body provided in the rotary tiller. The seeding simultaneous seeding machine according to claim 1, wherein the seeding machine is mounted on the mobile body via the height / posture adjustment mechanism.
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