JPH0530864A - Soil-supply structure of seeding plant - Google Patents
Soil-supply structure of seeding plantInfo
- Publication number
- JPH0530864A JPH0530864A JP19051991A JP19051991A JPH0530864A JP H0530864 A JPH0530864 A JP H0530864A JP 19051991 A JP19051991 A JP 19051991A JP 19051991 A JP19051991 A JP 19051991A JP H0530864 A JPH0530864 A JP H0530864A
- Authority
- JP
- Japan
- Prior art keywords
- soil
- scraping
- feeding device
- bucket
- scraping member
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Pending
Links
- 238000010899 nucleation Methods 0.000 title description 4
- 239000002689 soil Substances 0.000 claims abstract description 95
- 238000007790 scraping Methods 0.000 claims abstract description 25
- 239000013013 elastic material Substances 0.000 claims abstract description 3
- 238000009331 sowing Methods 0.000 claims description 6
- 230000032258 transport Effects 0.000 description 7
- 241000196324 Embryophyta Species 0.000 description 5
- 241000592344 Spermatophyta Species 0.000 description 4
- 239000002184 metal Substances 0.000 description 2
- 239000011347 resin Substances 0.000 description 2
- 229920005989 resin Polymers 0.000 description 2
- 240000007594 Oryza sativa Species 0.000 description 1
- 235000007164 Oryza sativa Nutrition 0.000 description 1
- 230000003247 decreasing effect Effects 0.000 description 1
- 230000035784 germination Effects 0.000 description 1
- 235000009566 rice Nutrition 0.000 description 1
Landscapes
- Sowing (AREA)
- Cultivation Receptacles Or Flower-Pots, Or Pots For Seedlings (AREA)
Abstract
Description
【0001】[0001]
【産業上の利用分野】本発明は、作物の植え付け用の苗
を成育させる育苗箱内に土及び種を連続的に入れて行く
播種プラントに関する。BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a sowing plant in which soil and seeds are continuously put in a nursery box for growing seedlings for planting crops.
【0002】[0002]
【従来の技術】以上のような播種プラントの一例が特開
平2−104206号公報に開示されている。この播種
プラントにおいては搬送コンベア(前記公報の図4の
5)により育苗箱(前記公報の図4の1)を連続的に送
りながら、先ず床土用の土供給装置(前記公報の図4の
6)から育苗箱内に床土が供給される。次に播種装置
(前記公報の図4の8)により育苗箱の床土上に種が播
かれ、覆土用の土供給装置(前記公報の図4の9)によ
り覆土が育苗箱の種の上に被せられて行く。2. Description of the Related Art An example of the above seed plant is disclosed in Japanese Patent Laid-Open No. 2-104206. In this seeding plant, first, while continuously feeding the seedling raising box (1 in FIG. 4 of the publication) by a conveyer conveyor (5 in FIG. 4 of the publication), first, a soil supply device for floor soil (see FIG. 4 of the publication). From 6), bed soil is supplied into the nursery box. Next, seeds are sown on the floor soil of the nursery box by a seeding device (8 in FIG. 4 of the above publication), and the soil is covered on the seeds of the nursery box by a soil supplying device for covering soil (9 in FIG. 4 of the above publication). Go over.
【0003】以上の播種プラントにおいて、床土及び覆
土用の土供給装置への土の補給は次のように行われてい
る。つまり、前記公報の図4において図外の土貯留部の
土が搬送装置により受け取り部(前記公報の図4におけ
る19の下側の凹型の部分)に搬送される。そして、送
り込み装置(前記公報の図4の19)により受け取り部
内の土が掻き取られ持ち上げられて、搬送ベルト(前記
公報の図4の20,21)から床土及び覆土用の土供給
装置の各々のタンクに送り込まれるような構成である。In the above seed plant, the soil is replenished to the soil feeder for the soil and the soil cover as follows. That is, the soil in the soil storage portion (not shown in FIG. 4 of the publication) is transported to the receiving portion (the lower concave portion 19 in FIG. 4 of the publication) by the transport device. Then, the soil in the receiving portion is scraped off and lifted by the feeding device (19 in FIG. 4 of the publication), and the soil from the conveyor belt (20, 21 in FIG. It is configured to be sent to each tank.
【0004】[0004]
【発明が解決しようとする課題】前述の送り込み装置は
一般に、ベルトやチェーン等の無端回動体の複数箇所に
土の掻き取り搬送用で金属製又は樹脂製のバケットを固
定して構成されており、この無端回動体を回転駆動して
各バケットにより受け取り部の土を掻き取り搬送して行
く。この場合、受け取り部の底部とバケット先端の通過
軌跡との間には、少し隙間が設けられている。これはバ
ケットの先端が受け取り部の底部に衝突して破損するの
を防止する為に設けられているのであるが、このような
隙間があるとバケットによって掻き取られない土が、ど
うしても受け取り部の底部に付着して固まった状態で滞
留する場合がある。このような状態において、何かの衝
撃により受け取り部の底部に付着している土の塊が底部
から外れてバケットに回収されてしまうと、この大きな
土の塊が送り込み装置からタンク及び土供給装置に送り
込まれてしまい、各部での詰まりの原因となる。本発明
は、播種プラントにおいて大きな土の塊がタンク及び土
供給装置に送り込まれて詰まりに発展することを防止す
ることを目的としている。The above-mentioned feeding device is generally constructed by fixing metal or resin buckets for scraping and conveying soil at a plurality of positions of an endless rotating body such as a belt or a chain. , The endless rotating body is rotationally driven to scrape and convey the soil in the receiving section by each bucket. In this case, a small gap is provided between the bottom of the receiving part and the passage of the bucket tip. This is provided to prevent the tip of the bucket from colliding with the bottom of the receiving part and being damaged, but if there is such a gap, the soil that cannot be scraped off by the bucket will inevitably fall into the receiving part. It may adhere to the bottom and stay in a solidified state. In such a state, if a lump of soil attached to the bottom of the receiving part comes off from the bottom and is collected in the bucket due to some impact, this large lump of soil is fed from the feeding device to the tank and the soil feeding device. It will be sent to and cause clogging in each part. It is an object of the present invention to prevent large soil blocks from being fed into tanks and soil supply devices and developing into clogs in a sowing plant.
【0005】[0005]
【課題を解決するための手段】本発明の特徴は以上のよ
うな播種プラントの土供給構造において、次のように構
成することにある。つまり、回転駆動される無端回動体
の複数箇所に、土の掻き取り搬送用のバケットを固定し
て前述の送り込み装置を構成すると共に、受け取り部の
底部に付着した土を掻き取る弾性材製の掻き取り部材
を、バケットの先端に設けてある。A feature of the present invention is that the soil supply structure of the seed plant as described above is configured as follows. That is, the above-described feeding device is configured by fixing buckets for scraping and conveying soil at a plurality of positions of the endless rotary body that is rotationally driven, and is made of an elastic material that scrapes the soil attached to the bottom of the receiving portion. A scraping member is provided at the tip of the bucket.
【0006】[0006]
【作用】前述のような掻き取り部材をバケットの先端に
設けておくと、送り込み装置の作動時において掻き取り
部材を備えたバケットが受け取り部を通過すると、この
バケットの先端の掻き取り部材が受け取り部の底部の土
を掻き取るのであり、この土が掻き取り部材を備えたバ
ケットに回収される。そして、この土が送り込み装置か
らタンクに供給されて行く。以上のように、送り込み装
置の作動時に受け取り部の底部の土を掻き取って行け
ば、受け取り部の底部に付着する土があまり大きな塊に
ならないうちに掻き取って回収することができる。この
ように、小さな土の塊の状態で回収してこの土の塊がタ
ンクに送り込まれても、特に詰まりに発展するようなこ
とはない。If the scraping member as described above is provided at the tip of the bucket, when the bucket equipped with the scraping member passes through the receiving portion during operation of the feeding device, the scraping member at the tip of the bucket receives the scraping member. The soil at the bottom of the section is scraped off, and this soil is collected in a bucket equipped with a scraping member. Then, this soil is supplied from the feeding device to the tank. As described above, if the soil at the bottom of the receiving portion is scraped when the feeding device is operated, the soil attached to the bottom of the receiving portion can be scraped and collected before it becomes a large lump. As described above, even when the small lump of soil is collected and sent into the tank, the lump of soil does not particularly develop.
【0007】そして、掻き取り部材が弾性体でありこの
掻き取り部材が受け取り部の底部に当たっても掻き取り
部材が弾性変形するので、受け取り部や送り込み装置等
の破損を招くこともない。Since the scraping member is an elastic body and the scraping member is elastically deformed even when the scraping member hits the bottom of the receiving portion, the receiving portion, the feeding device, etc. are not damaged.
【0008】[0008]
【発明の効果】以上のように、受け取り部の底部に付着
する土を小さな塊の状態で適時掻き取って回収すること
により、大きな土の塊が回収されてタンク等での詰まり
に発展することを未然に防止することができた。これに
より、土の詰まりにより作業を中断するようなことが少
なくなり、播種プラント全体の作業能率を向上させるこ
とができた。この場合に、受け取り部や送り込み装置等
の破損を招くことがないので、耐久性の低下を伴うこと
もない。As described above, the soil attached to the bottom of the receiving portion is scraped and collected in a small lump state at a suitable time, so that a large lump of soil is collected and the tank is clogged. Was able to be prevented. As a result, the work is less likely to be interrupted due to soil clogging, and the work efficiency of the entire sowing plant can be improved. In this case, the receiving part, the feeding device, and the like are not damaged, so that the durability is not deteriorated.
【0009】[0009]
【実施例】以下、本発明の実施例を図面に基づいて説明
する。図1に稲用の播種プラントの全体が示されてお
り、搬送コンベア1上を空の育苗箱2が紙面左方から紙
面右方に送られて来る。そして、先ず床土用の土供給装
置3から空の育苗箱2内に土が供給され敷き詰められて
育苗箱2内に床土が形成され、余分な床土が回転式のブ
ラシ4により掻き落とされて行く。次に、播種装置5か
ら育苗箱2内の床土上に種籾が播かれて行き、覆土用の
土供給装置6から育苗箱2内の種籾上に土が供給されて
覆土が形成されて行く。以上のようにして、播種の終了
した育苗箱2はさらに紙面右方に送られ複数段に積み重
ねられて、発芽室(図外)に送られる。Embodiments of the present invention will be described below with reference to the drawings. FIG. 1 shows the whole planting plant for rice, and an empty seedling raising box 2 is sent on a conveyor 1 from the left side of the paper to the right side of the paper. Then, first, the soil is supplied from the soil supplying device 3 for the floor soil to the empty seedling raising box 2 and spread, and the floor soil is formed in the seedling raising box 2, and the excess floor soil is scraped off by the rotary brush 4. Go away. Next, seed paddy is sown from the seeding device 5 on the bed soil in the seedling raising box 2, and soil is supplied from the soil supplying device 6 for covering soil to the seed pad in the seedling raising box 2 to form cover soil. .. As described above, the seedling-raising box 2 that has been sown is further sent to the right side of the paper, stacked in multiple stages, and sent to the germination chamber (not shown).
【0010】前述の床土用及び覆土用の土供給装置3,
6には各々、土を一時貯留しておくタンク7,8が設け
られており、タンク7,8の下部から土供給装置3,6
が土を順次取り出して行く。次に、このタンク7,8に
土を補給して行く構成について説明する。The soil supplying device 3 for the above-mentioned floor soil and covering soil
6 are provided with tanks 7 and 8 for temporarily storing soil, respectively.
Takes out the soil one by one. Next, a structure for replenishing the tanks 7 and 8 with soil will be described.
【0011】図1に示すように、土の貯留用として土貯
留部9が設けられており、この土貯留部9の土がベルト
コンベア型式の第1搬送装置10により受け取り部11
に送り込まれる。又、床土用の土供給装置3からの土供
給時、ブラシ4による掻き取り時及び覆土用の土供給装
置6からの土供給時において、育苗箱2からこぼれた土
がベルトコンベア型式の第2搬送装置12により回収さ
れ搬送されて、受け取り部11に送り込まれる。As shown in FIG. 1, a soil storage section 9 is provided for storing soil, and the soil in this soil storage section 9 is received by a first conveyor device 10 of a belt conveyor type and a receiving section 11 is provided.
Sent to. In addition, when soil is supplied from the soil supply device 3 for floor soil, when scraped by the brush 4, and when soil is supplied from the soil supply device 6 for covering soil, soil spilled from the seedling raising box 2 is of the belt conveyor type. 2 The transport device 12 collects and transports it, and sends it to the receiving unit 11.
【0012】受け取り部11の土はバケット型式の送り
込み装置13により掻き取られて持ち上げられて行く。
図1及び図3に示すように、送り込み装置13は無端の
ゴムベルト13a(無端回動体に相当)に、金属製又は
樹脂製の多数のバケット13bを連結した構造をしてお
り、図1においてゴムベルト13aが時計周りに回転駆
動されている。そして、送り込み装置13の各バケット
13bにより掻き取られ持ち上げられた土は、正逆に繰
り返し駆動されるベルトコンベア型式の第3搬送装置1
4によりタンク7,8に振り分けて送り込まれて行く。The soil in the receiving portion 11 is scraped off and lifted by a bucket type feeding device 13.
As shown in FIGS. 1 and 3, the feeding device 13 has a structure in which a large number of metal or resin buckets 13b are connected to an endless rubber belt 13a (corresponding to an endless rotating body). 13a is driven to rotate clockwise. The soil scraped off and lifted by each bucket 13b of the feeding device 13 is a belt conveyor type third transport device 1 that is repeatedly driven in the normal and reverse directions.
It is distributed to tanks 7 and 8 by 4 and sent.
【0013】図1及び図4に示すように、受け取り部1
1の底部は送り込み装置13のバケット13bの先端の
通過軌跡に沿って円弧状に形成されている。これに対し
て、図2,3,4に示すように送り込み装置13のバケ
ット13bにおいて、何組かのバケット13bの先端に
バケット13bの横幅よりも少し広く、受け取り部11
の横幅に略等しいだけの横幅を持つゴム板製の掻き取り
部材18が固定されている。As shown in FIGS. 1 and 4, the receiving portion 1
The bottom of No. 1 is formed in an arc shape along the passage of the tip of the bucket 13b of the feeding device 13. On the other hand, as shown in FIGS. 2, 3 and 4, in the bucket 13b of the feeding device 13, the tip of some of the buckets 13b is slightly wider than the lateral width of the bucket 13b, and the receiving portion 11
A scraping member 18 made of a rubber plate and having a lateral width substantially equal to the lateral width is fixed.
【0014】後述するように送り込み装置13は常時作
動しているわけではなく、タンク7,8の土の量により
作動及び停止を繰り返している。従って、送り込み装置
13が作動している間において、掻き取り部材18を備
えたバケット13bが受け取り部11を通過すると、こ
のバケット13bの先端の掻き取り部材18が受け取り
部11の底部の土を掻き取り、この土が掻き取り部材1
8を備えたバケット13bに回収される。そして、この
土が送り込み装置13及び第3搬送装置14を介して、
タンク7,8に供給されて行く。As will be described later, the feeding device 13 does not always operate, but it repeatedly operates and stops depending on the amount of soil in the tanks 7 and 8. Therefore, when the bucket 13b provided with the scraping member 18 passes through the receiving portion 11 while the feeding device 13 is operating, the scraping member 18 at the tip of the bucket 13b scrapes the soil at the bottom of the receiving portion 11. Take this soil and scrape it 1
8 is collected in the bucket 13b. Then, this soil passes through the feeding device 13 and the third transport device 14,
It is supplied to tanks 7 and 8.
【0015】図1に示すように、タンク7,8内には土
が満杯になったことを検出する接触式のセンサー15
a,16a、及びタンク7,8内の土が所定量まで減少
したことを検出する接触式のセンサー15b,16bが
設けられており、以上のような作業時においてタンク7
又は8が満杯になると、送り込み装置13、第1,2,
3搬送装置10,12,14が自動的に停止するように
構成されている。そしてタンク7又は8内の土が所定量
まで少なくなると、送り込み装置13、第1,2,3搬
送装置10,12,14が自動的に作動するように構成
されている。この場合、送り込み装置13が作動状態に
あるか停止状態にあるかを表示する表示ランプ17が設
けられている。As shown in FIG. 1, a contact type sensor 15 for detecting that the tanks 7 and 8 are filled with soil.
a, 16a, and contact-type sensors 15b, 16b for detecting that the soil in the tanks 7, 8 has decreased to a predetermined amount are provided, and the tank 7 can be used during the above-mentioned work.
Or when the 8 is full, the feeding device 13, the first, second,
The three transfer devices 10, 12, and 14 are configured to automatically stop. Then, when the soil in the tank 7 or 8 is reduced to a predetermined amount, the feeding device 13 and the first, second, third conveying devices 10, 12, 14 are automatically operated. In this case, a display lamp 17 is provided to indicate whether the feeding device 13 is in the operating state or in the stopped state.
【0016】尚、特許請求の範囲の項に図面との対照を
便利にする為に符号を記すが、該記入により本発明は添
付図面の構成に限定されるものではない。It should be noted that reference numerals are added to the claims for convenience of comparison with the drawings, but the present invention is not limited to the structures of the accompanying drawings by the entry.
【図1】播種プラントにおける搬送コンベア、タンク及
び送り込み装置付近の側面図FIG. 1 is a side view of a conveyor, a tank, and a feeding device in a seed plant.
【図2】送り込み装置の下端部及び土の受け取り部付近
の平面図FIG. 2 is a plan view of the lower end portion of the feeding device and the soil receiving portion.
【図3】送り込み装置における掻き取り部材を備えたバ
ケット付近の斜視図FIG. 3 is a perspective view of the vicinity of a bucket provided with a scraping member in the feeding device.
【図4】送り込み装置の下端部及び土の受け取り部付近
の側面図FIG. 4 is a side view of the lower end portion of the feeding device and the vicinity of the soil receiving portion.
1 搬送コンベア 2 育苗箱 3,6 土供給装置 7,8 タンク 9 土貯留部 10 搬送装置 11 受け取り部 13 送り込み装置 13a 送り込み装置の無端回動体 13b 送り込み装置のバケット 18 掻き取り部材 1 Transport Conveyor 2 Nursery Box 3,6 Soil Supply Device 7,8 Tank 9 Soil Storage Section 10 Transport Device 11 Receiving Section 13 Feeding Device 13a Endless Rotating Body of Feeding Device 13b Bucket of Feeding Device 18 Scraping Member
Claims (1)
(7),(8)と、搬送コンベア(1)上を送られる育
苗箱(2)内に前記タンク(7),(8)内の土を入れ
ていく土供給装置(3),(6)とを備えると共に、土
貯留部(9)から搬送装置(10)により搬送されて来
る土を受け取る受け取り部(11)と、この受け取り部
(11)内の土を掻き取って前記タンク(7),(8)
に送り込む送り込み装置(13)とを備えた播種プラン
トの土供給構造であって、 回転駆動される無端回動体(13a)の複数箇所に、土
の掻き取り搬送用のバケット(13b)を固定して前記
送り込み装置(13)を構成すると共に、前記受け取り
部(11)の底部に付着した土を掻き取る弾性材製の掻
き取り部材(18)を、前記バケット(13b)の先端
に設けてある播種プラントの土供給構造。Claims: 1. Tanks (7), (8) for temporarily storing floor soil or covering soil, and the tank (7) in a nursery box (2) sent on a conveyor (1). , (8), and soil receiving devices (3), (6) for storing the soil, and a receiving part (11) for receiving the soil transported by the transport device (10) from the soil storage part (9). ) And the soil in the receiving part (11) by scraping the tank (7), (8)
And a feeding device (13) for feeding the soil to a soil sowing structure of a sowing plant, wherein buckets (13b) for scraping and conveying soil are fixed to a plurality of positions of an endless rotating body (13a) which is rotationally driven. The feeding device (13) is configured by the above, and a scraping member (18) made of an elastic material for scraping the soil adhered to the bottom of the receiving portion (11) is provided at the tip of the bucket (13b). Soil supply structure of sowing plant.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP19051991A JPH0530864A (en) | 1991-07-31 | 1991-07-31 | Soil-supply structure of seeding plant |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP19051991A JPH0530864A (en) | 1991-07-31 | 1991-07-31 | Soil-supply structure of seeding plant |
Publications (1)
Publication Number | Publication Date |
---|---|
JPH0530864A true JPH0530864A (en) | 1993-02-09 |
Family
ID=16259444
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
JP19051991A Pending JPH0530864A (en) | 1991-07-31 | 1991-07-31 | Soil-supply structure of seeding plant |
Country Status (1)
Country | Link |
---|---|
JP (1) | JPH0530864A (en) |
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN113348818A (en) * | 2021-06-08 | 2021-09-07 | 重庆市农业科学院 | Rape seedling-raising seeder with feeding function |
-
1991
- 1991-07-31 JP JP19051991A patent/JPH0530864A/en active Pending
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN113348818A (en) * | 2021-06-08 | 2021-09-07 | 重庆市农业科学院 | Rape seedling-raising seeder with feeding function |
CN113348818B (en) * | 2021-06-08 | 2022-06-03 | 重庆市农业科学院 | Rape seedling-raising seeder with feeding function |
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