JP5099427B2 - Seedling transport device - Google Patents

Seedling transport device Download PDF

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JP5099427B2
JP5099427B2 JP2007317903A JP2007317903A JP5099427B2 JP 5099427 B2 JP5099427 B2 JP 5099427B2 JP 2007317903 A JP2007317903 A JP 2007317903A JP 2007317903 A JP2007317903 A JP 2007317903A JP 5099427 B2 JP5099427 B2 JP 5099427B2
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pulleys
seedling
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endless belt
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伸明 平岡
盛次 妹尾
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MINORU SANGYO KABUSHIKI KAISHA
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本発明は、2つのベルト機構により苗を挟持して搬送するように構成された苗搬送装置に関するものである。   The present invention relates to a seedling transport device configured to sandwich and transport a seedling by two belt mechanisms.

従来の苗搬送装置として、特許文献1記載の移植機の苗搬送装置を例示する。この苗搬送装置50は、図6に示すように、上下一対のプーリー52,53と、該両プーリー52,53に巻き掛けられた無端ベルト54とを含むベルト機構51を2つ備えている。そして、両無端ベルト54の外周面における略上下方向に延びる部位同士が互いに対向するとともに該部位の間にポット苗Pの根部を挟持可能に配設されており、該対向する部位が下方に略等速度で移動するように回転駆動されることにより、該部位に挟持されたポット苗Pを下方に搬送するように構成されている。両無端ベルト54は、スポンジ質に形成されており、ポット苗Pの根部の形状に応じて変形し、該根部を包み込むように挟持するようになっている。   As a conventional seedling conveying device, the seedling conveying device of the transplanter described in Patent Document 1 is exemplified. As shown in FIG. 6, the seedling conveying device 50 includes two belt mechanisms 51 including a pair of upper and lower pulleys 52 and 53 and an endless belt 54 wound around the pulleys 52 and 53. And the part extended in the substantially up-down direction in the outer peripheral surface of both the endless belts 54 mutually opposes, and it arrange | positions so that the root part of the pot seedling P can be pinched | interposed between this part, and this opposing part is substantially below. By being rotationally driven so as to move at a constant speed, the pot seedling P sandwiched between the parts is transported downward. Both endless belts 54 are formed in a sponge form, are deformed according to the shape of the root of the pot seedling P, and are sandwiched so as to wrap the root.

特開2003−102211号公報JP 2003-102111 A

ところが、無端ベルト54がスポンジ質に形成されているため、次の課題がある。
(1)無端ベルト54が耐久性に欠けており寿命が短い。このため、無端ベルト54を交換する手間とコストが掛かる。
(2)使用後長期保管しておくと無端ベルト54にプーリー52,53への巻き掛け癖が付き、起動時に無端ベルト54がスリップし易いことがある。このため、両無端ベルト54を周方向に互いに少しずらさなければならず、手間が掛かる。
However, since the endless belt 54 is formed in a sponge, there are the following problems.
(1) The endless belt 54 lacks durability and has a short life. For this reason, it takes time and cost to replace the endless belt 54.
(2) If the product is stored for a long time after use, the endless belt 54 may be wound around the pulleys 52 and 53, and the endless belt 54 may easily slip during startup. For this reason, both endless belts 54 have to be slightly shifted from each other in the circumferential direction, which is troublesome.

上記課題を解決するために、本発明の苗搬送装置は、
上下一対のプーリーと、該両プーリーに巻き掛けられた無端ベルトとを含むベルト機構を2つ備え、前記両無端ベルトの外周面における略上下方向に延びる部位同士が互いに対向するとともに該部位の間にポット苗の根部を挟持可能に配設されており、該対向する部位が下方に略等速度で移動するように回転駆動されることにより、該部位に挟持されたポット苗を下方に搬送するように構成された苗搬送装置であって、
前記両ベルト機構は、
前記両無端ベルトが非スポンジ質に形成され、
前記上側のプーリー同士が略同一高さに支持され、
前記無端ベルトをそれぞれに巻き掛けた状態における該上側のプーリー同士の隙間が、前記根部の太さよりやや狭く設定され
前記下側のプーリー同士が略同一高さに支持され、
前記無端ベルトをそれぞれに巻き掛けた状態における該下側のプーリー同士の隙間が、同状態における前記上側のプーリー同士の隙間よりも狭く設定されている
In order to solve the above problems, the seedling conveying device of the present invention is
Two belt mechanisms including a pair of upper and lower pulleys and an endless belt wound around the two pulleys are provided, and portions extending substantially in the vertical direction on the outer peripheral surface of the both endless belts are opposed to each other. The root part of the pot seedling is arranged so as to be sandwiched between the two parts, and the opposing part is rotated so that it moves downward at a substantially constant speed, thereby transporting the pot seedling sandwiched in the part downward. A seedling transport device configured as follows:
The both belt mechanisms are
The both endless belts are formed non-spongey,
The upper pulleys are supported at substantially the same height,
The gap between the upper pulleys in the state where the endless belt is wound around each is set slightly narrower than the thickness of the root part ,
The lower pulleys are supported at substantially the same height,
The gap between the lower pulleys in the state where the endless belt is wound around is set narrower than the gap between the upper pulleys in the same state .

この構成によれば、前記無端ベルトが非スポンジ質に形成されているので、従来のスポンジ質のものに比べ、耐久性に優れるとともに長期保管しておいてもプーリーへの巻き掛け癖が付き難い。このため、メンテナンス性が向上する。また、前記無端ベルトをそれぞれに巻き掛けた状態における該上側のプーリー同士の隙間が、前記根部の太さよりやや狭く設定されているので、前記根部を確実に挟持した状態で前記隙間を介して前記対向する部位の間へポット苗を受け入れることができる。
また、前記下側のプーリー同士をこの構成とする理由は、前記苗搬送装置におけるポット苗の入口である前記上側のプーリー同士の隙間のところで前記両無端ベルトに挟まれたポット苗は、搬送途中に圧縮されて扁平になることがあり、該苗搬送装置におけるポット苗の出口である前記下側のプーリー同士の隙間が前記上側のプーリー同士の隙間よりも広いとポット苗を保持できなくなり、次の段階の装置へのポット苗の受け渡しに失敗してしまうことがあるからである。ここで、前記下側のプーリー同士の隙間を前記上側のプーリー同士の隙間よりどの程度狭く設定するかは、ポット苗の種類、根部の直径、土質等に応じて適宜調節することが好ましい。
According to this configuration, since the endless belt is formed in non-sponge, it has superior durability and is less likely to be wound around the pulley even if stored for a long period of time compared to a conventional sponge-like one. . For this reason, maintainability improves. Further, since the gap between the upper pulleys in the state where the endless belt is wound around each other is set slightly narrower than the thickness of the root portion, the gap is interposed through the gap in a state where the root portion is securely clamped. Pot seedlings can be received between opposing parts.
In addition, the reason why the lower pulleys have this configuration is that the pot seedling sandwiched between the endless belts in the gap between the upper pulleys, which is the entrance of the pot seedling in the seedling transporting device, is being transported. When the gap between the lower pulleys, which is the outlet of the pot seedling in the seedling transporting device, is wider than the gap between the upper pulleys, the pot seedling cannot be held, This is because the transfer of the pot seedling to the device at the stage may fail. Here, it is preferable to adjust how much the gap between the lower pulleys is set to be narrower than the gap between the upper pulleys according to the kind of pot seedling, the diameter of the root, the soil quality, and the like.

前記両上側のプーリーは、径方向へ延びる凸部が外周に一定間隔をおいて列設されることにより、該外周に該凸部と、該凸部間に形成される凹部とからなる凹凸が形成されており、前記外周の周方向における前記凸部の長さは、同周方向における前記凹部の長さと比較して同一に又は短く設定されており、前記径方向における前記凸部の高さは、前記無端ベルトが巻き掛けられたときに該無端ベルトの内周面が前記凹部の底に接しないように設定されており、
該両上側のプーリー同士の隙間において、一方の前記上側のプーリーの前記凸部に対して、他方の前記上側のプーリーの前記凹部が対峙するように、該両上側のプーリーを同期させて回転駆動するように構成された態様を例示する。
The upper pulleys have convex portions extending in the radial direction arranged at regular intervals on the outer periphery, so that the outer periphery has irregularities including the convex portions and concave portions formed between the convex portions. The length of the convex portion in the circumferential direction of the outer circumference is set to be the same or shorter than the length of the concave portion in the circumferential direction, and the height of the convex portion in the radial direction Is set so that the inner peripheral surface of the endless belt does not contact the bottom of the recess when the endless belt is wound around,
In the gap between the upper pulleys, the upper pulleys are driven to rotate synchronously so that the concave portion of the other upper pulley faces the convex portion of one upper pulley. The aspect comprised so that is illustrated.

この構成によれば、前記隙間において、一方の前記上側のプーリーの前記凸部に対して、他方の前記上側のプーリーの前記凹部が対峙するようになっているので、いずれか一方の前記上側のプーリーの内周面側には前記凹部によるスペースが存在し、これにより前記無端ベルトが該スペース側にたわむことができる。このため、該隙間内に前記根部が挟持されたときに該根部に無理な力が加わることを防止することができる。   According to this configuration, in the gap, the concave portion of the other upper pulley is opposed to the convex portion of the one upper pulley. A space is formed by the concave portion on the inner peripheral surface side of the pulley, whereby the endless belt can be bent toward the space side. For this reason, when the said root part is clamped in this clearance gap, it can prevent that an excessive force is added to this root part.

本発明の苗搬送装置によれば、メンテナンス性が向上するという優れた効果を奏する。   According to the seedling conveying device of the present invention, there is an excellent effect that the maintainability is improved.

図1〜図5は本発明を具体化した一実施形態の苗搬送装置1を備えた移植機10を示している。本例の移植機10は、図1に示すように、圃場を走行自在に支持された機体11と、ポット苗箱(図示略)から苗取出装置(図示略)により一列ずつ取り出された野菜・花等のポット苗Pを一本ずつ搬送する苗搬送装置1と、圃場に植付溝を形成する溝掘器12と、苗搬送装置1により搬送されてきたポット苗Pを受け取って溝掘器12の後方で前記植付溝に植え付ける植付装置13と、該植付装置13の後方で前記植付溝を埋め戻すための左右一対の土寄輪14とを備えている。なお、各図において、矢印Fは機体前側を指し示している。   FIGS. 1-5 has shown the transplanting machine 10 provided with the seedling conveyance apparatus 1 of one Embodiment which actualized this invention. As shown in FIG. 1, the transplanter 10 of this example includes a machine body 11 that is supported so as to be able to run in a farm field, and a vegetable / plant that is taken out from a pot seedling box (not shown) by a seedling extraction device (not shown) one by one. A seedling transport device 1 that transports pot seedlings P such as flowers one by one, a groove excavator 12 that forms a planting groove in the field, and a pot seedling P that has been transported by the seedling transport device 1 to receive a trench seedling device 12 is provided with a planting device 13 for planting in the planting groove behind 12 and a pair of left and right earthen wheels 14 for backfilling the planting groove behind the planting device 13. In each figure, the arrow F indicates the front side of the aircraft.

苗搬送装置1は、図2〜図4に示すように、上下一対のプーリー4,5と、該両プーリー4,5に巻き掛けられた可撓性の無端ベルト6(本例ではゴム製)とを含むベルト機構2,3を備えている。両無端ベルト6,6の外周面における略上下方向に延びる部位同士が互いに対向するとともに該部位の間にポット苗Pの根部Paを挟持可能に配設されており、該対向する部位が下方に略等速度で移動するように回転駆動されることにより、該部位に挟持されたポット苗Pを下方に搬送するように構成されている。機体外側のベルト機構2には、その無端ベルト6の内周側に、該無端ベルト6を機体内側へ付勢する上下一対のテンションプーリー7,8が回転自在に配設されることにより、前記対向する部位に一定の張力を付与し、該対向する部位においてポット苗Pを確実に挟持させるようにしている。   The seedling conveying device 1 includes a pair of upper and lower pulleys 4 and 5 and a flexible endless belt 6 wound around the pulleys 4 and 5 (made of rubber in this example) as shown in FIGS. Belt mechanisms 2 and 3 are included. The parts extending substantially in the vertical direction on the outer peripheral surfaces of the endless belts 6 and 6 face each other and are arranged so that the root part Pa of the pot seedling P can be sandwiched between the parts. By being rotationally driven so as to move at a substantially constant speed, the pot seedling P sandwiched between the parts is transported downward. In the belt mechanism 2 outside the machine body, a pair of upper and lower tension pulleys 7 and 8 for urging the endless belt 6 toward the inside of the machine body are rotatably disposed on the inner peripheral side of the endless belt 6. A constant tension is applied to the opposing parts so that the pot seedlings P are securely held at the opposing parts.

両ベルト機構2,3は、両無端ベルト6,6が非スポンジ質に形成され、上側のプーリー4,4同士が略同一高さに支持され、無端ベルト6をそれぞれに巻き掛けた状態における該上側のプーリー4,4同士の隙間S(図2及び図3(a)参照。)が、ポット苗Pの根部Paの太さ(本例では根部Paの直径)よりやや狭く設定されている。   Both belt mechanisms 2, 3 are such that both endless belts 6, 6 are formed in a non-spongeous manner, the upper pulleys 4, 4 are supported at substantially the same height, and the endless belt 6 is wound around each other. A gap S (see FIGS. 2 and 3A) between the upper pulleys 4 and 4 is set to be slightly narrower than the thickness of the root portion Pa of the pot seedling P (in this example, the diameter of the root portion Pa).

また、下側のプーリー5,5同士は、略同一高さに支持され、無端ベルト6をそれぞれ巻き掛けた状態における該下側のプーリー5,5同士の隙間So(図2参照。)が、隙間S以下の広さに設定されている。この構成とする理由は、苗搬送装置1におけるポット苗Pの入口である上側のプーリ4,4同士の隙間Sのところで両無端ベルト6,6に挟まれたポット苗Pは、搬送途中における両無端ベルト6,6による圧縮や、テンションプーリー7,8のところでの圧縮等により、徐々に扁平になることがあり、苗搬送装置1におけるポット苗Pの出口である下側のプーリー5,5同士の隙間Soが隙間Sよりも広いとポット苗Pを保持できなくなり、植付装置13へのポット苗Pの受け渡しに失敗してしまうことがあるからである。この隙間Soは、隙間Sよりも狭く設定されることが好ましい。ここで、隙間Soを隙間Sよりもどの程度狭く設定するかは、ポット苗Pの種類、根部Paの直径、土質等に応じて適宜調節することが好ましい。   Further, the lower pulleys 5 and 5 are supported at substantially the same height, and a gap So (see FIG. 2) between the lower pulleys 5 and 5 in a state where the endless belt 6 is wound around, respectively. The width is set to be smaller than the gap S. The reason for this configuration is that the pot seedling P sandwiched between the endless belts 6 and 6 at the gap S between the upper pulleys 4 and 4 that are the entrances of the pot seedling P in the seedling transporting apparatus 1 The lower pulleys 5, 5, which are the outlets of the pot seedlings P in the seedling transport device 1, may be gradually flattened due to compression by the endless belts 6, 6 or compression at the tension pulleys 7, 8. This is because if the gap So is larger than the gap S, the pot seedling P cannot be held, and delivery of the pot seedling P to the planting device 13 may fail. The gap So is preferably set narrower than the gap S. Here, how narrow the gap So is set than the gap S is preferably adjusted as appropriate according to the type of the pot seedling P, the diameter of the root Pa, the soil quality, and the like.

両上側のプーリー4は、径方向へ延びる凸部4aが外周に一定間隔をおいて列設されることにより、該外周に該凸部4aと、該凸部4a間に形成される凹部4bとからなる凹凸が形成されており、図2に示すように、前記外周の周方向における凸部4aの長さLaは、同周方向における凹部4bの長さLbと比較して同一に設定されており、前記径方向における凸部4aの高さH(凹部4bの深さに対応)は、無端ベルト6が巻き掛けられたときに該無端ベルト6の内周面が凹部4bの底に接しないように設定されている。そして、図2に示すように、該両上側のプーリー4,4同士の隙間Sにおいて、一方の上側のプーリー4の凸部4aに対して、他方の上側のプーリー4の凹部4bが対峙するように、該両上側のプーリー4,4を同期させて回転駆動するように構成されている。   The pulleys 4 on both upper sides are formed by arranging convex portions 4a extending in the radial direction at regular intervals on the outer periphery, so that the convex portions 4a and the concave portions 4b formed between the convex portions 4a are formed on the outer periphery. As shown in FIG. 2, the length La of the convex portion 4a in the circumferential direction of the outer periphery is set to be the same as the length Lb of the concave portion 4b in the circumferential direction. The height H of the convex portion 4a in the radial direction (corresponding to the depth of the concave portion 4b) is such that the inner peripheral surface of the endless belt 6 does not contact the bottom of the concave portion 4b when the endless belt 6 is wound around. Is set to Then, as shown in FIG. 2, in the gap S between the upper pulleys 4, 4, the concave portion 4 b of the other upper pulley 4 faces the convex portion 4 a of the other upper pulley 4. In addition, the pulleys 4 and 4 on both upper sides are configured to be driven to rotate synchronously.

両無端ベルト6,6は、図2〜図5に示すように、それぞれの外周面に周長方向に列設された突部列20を備えており、該両無端ベルト6,6におけるそれぞれの突部列20は、外周面の対向時に互いに対峙しないように、外周面における周幅方向の位置が互いにずれるように配置されている(図3参照。)。これにより、前記対向する部位において、両無端ベルト6,6の突部列20同士が干渉し合うことを防止するようにしている。なお、本例では、突部列20の構成要素である各突部21は、円錐状に形成されている。   As shown in FIGS. 2 to 5, both endless belts 6, 6 are provided with protrusion rows 20 arranged in the circumferential direction on the respective outer peripheral surfaces, The protrusion rows 20 are arranged so that the positions in the circumferential width direction on the outer circumferential surface are shifted from each other so as not to face each other when the outer circumferential surfaces face each other (see FIG. 3). This prevents the protrusion rows 20 of the endless belts 6 and 6 from interfering with each other at the facing portions. In this example, each protrusion 21 which is a component of the protrusion row 20 is formed in a conical shape.

特に、本例においては、両無端ベルト6,6は、同一仕様の共通ベルトからなるとともに、該共通ベルトの軸方向の向きを互いに反転させたものであり、該共通ベルトは、周面の周幅方向の中心線C(図3参照)を対称線とする線対称の位置に突部列20を備えていないように構成されている。これにより、無端ベルト6の製造、管理等のコストを低減することができる。   In particular, in the present example, both endless belts 6 and 6 are made of a common belt having the same specifications, and the axial directions of the common belt are reversed with respect to each other. The protrusion row 20 is not provided at a line-symmetrical position with a center line C in the width direction (see FIG. 3) as a symmetry line. Thereby, costs, such as manufacture and management of endless belt 6, can be reduced.

以上のように構成された本例の苗搬送装置1によれば、無端ベルト6が非スポンジ質に形成されているので、従来のスポンジ質のものに比べ、耐久性に優れるとともに長期保管しておいてもプーリー4,5,7,8への巻き掛け癖が付き難い。このため、メンテナンス性が向上する。また、無端ベルト6をそれぞれに巻き掛けた状態における該上側のプーリー4,4同士の隙間Sが、根部Paの太さよりやや狭く設定されているので、根部Paを確実に挟持した状態で隙間Sを介して前記対向する部位の間へポット苗Pを受け入れることができる。   According to the seedling conveying apparatus 1 of the present example configured as described above, since the endless belt 6 is formed in a non-sponge quality, it is superior in durability and stored for a long period of time as compared with a conventional sponge-type one. However, it is difficult for the pulleys 4, 5, 7, and 8 to be wound around the pulleys. For this reason, maintainability improves. Further, the gap S between the upper pulleys 4 and 4 in the state where the endless belt 6 is wound around is set slightly narrower than the thickness of the root Pa, so that the gap S is securely clamped in the state where the root Pa is securely clamped. The pot seedling P can be received between the opposing parts via the.

また、隙間Sにおいて、一方の上側のプーリー4の凸部4aに対して、他方の上側のプーリー4の凹部4bが対峙するようになっているので、いずれか一方の上側のプーリー4の内周面側には凹部4bによるスペースが存在し、これにより無端ベルト6が該スペース側にたわむことができる。このため、該隙間S内に根部Paが挟持されたときに該根部Paに無理な力が加わることを防止することができる。   Further, in the gap S, the concave portion 4b of the other upper pulley 4 faces the convex portion 4a of the one upper pulley 4, so that the inner circumference of one of the upper pulleys 4 is A space is formed by the concave portion 4b on the surface side, whereby the endless belt 6 can be bent toward the space side. For this reason, it is possible to prevent an excessive force from being applied to the root portion Pa when the root portion Pa is sandwiched in the gap S.

なお、本発明は前記実施形態に限定されるものではなく、例えば以下のように、発明の趣旨から逸脱しない範囲で適宜変更して具体化することもできる。
(1)無端ベルト6の材料を適宜変更すること。
(2)無端ベルト6の外周面に形成された突部21の形状、大きさ、配設間隔等や、突部列20の列数、配設間隔等を適宜変更すること。
In addition, this invention is not limited to the said embodiment, For example, it can also be suitably changed and embodied as follows, for example in the range which does not deviate from the meaning of invention.
(1) Change the material of the endless belt 6 as appropriate.
(2) The shape, size, arrangement interval, and the like of the protrusions 21 formed on the outer peripheral surface of the endless belt 6, the number of the protrusion rows 20, the arrangement interval, and the like are appropriately changed.

本発明を具体化した一実施形態に係る苗搬送装置を備えた移植機の要部を示す斜視図である。It is a perspective view which shows the principal part of the transplanting machine provided with the seedling conveying apparatus which concerns on one Embodiment which actualized this invention. 同苗搬送装置の後面図である。It is a rear view of the seedling conveying apparatus. 同苗搬送装置の無端ベルトの断面図であり、(a)は図2のIIIa−IIIa線断面図、(b)は図2のIIIb−IIIb線断面図である。It is sectional drawing of the endless belt of the seedling conveyance apparatus, (a) is the IIIa-IIIa sectional view taken on the line of FIG. 2, (b) is the IIIb-IIIb sectional view taken on the line of FIG. 図2のIV−IV線断面図である。It is the IV-IV sectional view taken on the line of FIG. 同無端ベルトの一部を示す斜視図である。It is a perspective view which shows a part of the endless belt. 従来の苗搬送装置の後面図である。It is a rear view of the conventional seedling conveying apparatus.

符号の説明Explanation of symbols

1 苗搬送装置
2 機体外側のベルト機構
3 機体内側のベルト機構
4 上側のプーリー
4a 凸部
4b 凹部
5 下側のプーリー
6 無端ベルト
10 移植機
La 上側のプーリー4の周方向における凸部4aの長さ
Lb 同周方向における凹部4bの長さ
H 上側のプーリー4の径方向における凸部4aの高さ
P ポット苗
Pa 根部
S 苗搬送装置の入口の隙間
So 苗搬送装置の出口の隙間
DESCRIPTION OF SYMBOLS 1 Seedling device 2 Belt mechanism outside the machine body 3 Belt mechanism inside the machine body 4 Upper pulley 4a Convex part 4b Concave part 5 Lower pulley 6 Endless belt 10 Transplanter La Length of the convex part 4a in the circumferential direction of the upper pulley 4 Lb Length of the concave portion 4b in the same circumferential direction H Height of the convex portion 4a in the radial direction of the upper pulley 4 P Pot seedling Pa Root S Clearance at the entrance of the seedling transport device So Clearance at the exit of the seedling transport device

Claims (2)

上下一対のプーリーと、該両プーリーに巻き掛けられた無端ベルトとを含むベルト機構を2つ備え、前記両無端ベルトの外周面における略上下方向に延びる部位同士が互いに対向するとともに該部位の間にポット苗の根部を挟持可能に配設されており、該対向する部位が下方に略等速度で移動するように回転駆動されることにより、該部位に挟持されたポット苗を下方に搬送するように構成された苗搬送装置であって、
前記両ベルト機構は、
前記両無端ベルトが非スポンジ質に形成され、
前記上側のプーリー同士が略同一高さに支持され、
前記無端ベルトをそれぞれに巻き掛けた状態における該上側のプーリー同士の隙間が、前記根部の太さよりやや狭く設定され
前記下側のプーリー同士が略同一高さに支持され、
前記無端ベルトをそれぞれに巻き掛けた状態における該下側のプーリー同士の隙間が、同状態における前記上側のプーリー同士の隙間よりも狭く設定された苗搬送装置。
Two belt mechanisms including a pair of upper and lower pulleys and an endless belt wound around the two pulleys are provided, and portions extending substantially in the vertical direction on the outer peripheral surface of the both endless belts are opposed to each other. The root part of the pot seedling is arranged so as to be sandwiched between the two parts, and the opposing part is rotated so that it moves downward at a substantially constant speed, thereby transporting the pot seedling sandwiched in the part downward. A seedling transport device configured as follows:
The both belt mechanisms are
The both endless belts are formed non-spongey,
The upper pulleys are supported at substantially the same height,
The gap between the upper pulleys in the state where the endless belt is wound around each is set slightly narrower than the thickness of the root part ,
The lower pulleys are supported at substantially the same height,
The seedling conveying apparatus in which a gap between the lower pulleys in a state where the endless belt is wound around is set narrower than a gap between the upper pulleys in the same state .
前記両上側のプーリーは、径方向へ延びる凸部が外周に一定間隔をおいて列設されることにより、該外周に該凸部と、該凸部間に形成される凹部とからなる凹凸が形成されており、前記外周の周方向における前記凸部の長さは、同周方向における前記凹部の長さと比較して同一に又は短く設定されており、前記径方向における前記凸部の高さは、前記無端ベルトが巻き掛けられたときに該無端ベルトの内周面が前記凹部の底に接しないように設定されており、
該両上側のプーリー同士の隙間において、一方の前記上側のプーリーの前記凸部に対して、他方の前記上側のプーリーの前記凹部が対峙するように、該両上側のプーリーを同期させて回転駆動するように構成された請求項1記載の苗搬送装置。
The upper pulleys have convex portions extending in the radial direction arranged at regular intervals on the outer periphery, so that the outer periphery has irregularities including the convex portions and concave portions formed between the convex portions. The length of the convex portion in the circumferential direction of the outer circumference is set to be the same or shorter than the length of the concave portion in the circumferential direction, and the height of the convex portion in the radial direction Is set so that the inner peripheral surface of the endless belt does not contact the bottom of the recess when the endless belt is wound around,
In the gap between the upper pulleys, the upper pulleys are driven to rotate synchronously so that the concave portion of the other upper pulley faces the convex portion of one upper pulley. The seedling transport device according to claim 1, which is configured to perform.
JP2007317903A 2006-12-11 2007-12-10 Seedling transport device Expired - Fee Related JP5099427B2 (en)

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