JP2018088894A - Protective cover material of plant body - Google Patents
Protective cover material of plant body Download PDFInfo
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- JP2018088894A JP2018088894A JP2016237141A JP2016237141A JP2018088894A JP 2018088894 A JP2018088894 A JP 2018088894A JP 2016237141 A JP2016237141 A JP 2016237141A JP 2016237141 A JP2016237141 A JP 2016237141A JP 2018088894 A JP2018088894 A JP 2018088894A
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- 230000001681 protective effect Effects 0.000 title claims abstract description 39
- 230000037431 insertion Effects 0.000 claims abstract description 28
- 238000003780 insertion Methods 0.000 claims abstract description 28
- 239000004744 fabric Substances 0.000 claims abstract description 15
- 238000009940 knitting Methods 0.000 claims description 36
- 230000035699 permeability Effects 0.000 abstract description 15
- 238000009434 installation Methods 0.000 abstract description 4
- 241000196324 Embryophyta Species 0.000 description 17
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- 229920003002 synthetic resin Polymers 0.000 description 8
- 239000000057 synthetic resin Substances 0.000 description 8
- 238000010586 diagram Methods 0.000 description 4
- 239000004745 nonwoven fabric Substances 0.000 description 3
- 229920002961 polybutylene succinate Polymers 0.000 description 3
- 239000004631 polybutylene succinate Substances 0.000 description 3
- 229920000728 polyester Polymers 0.000 description 3
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- 229920003023 plastic Polymers 0.000 description 2
- 229920000747 poly(lactic acid) Polymers 0.000 description 2
- 229920009537 polybutylene succinate adipate Polymers 0.000 description 2
- 239000004630 polybutylene succinate adipate Substances 0.000 description 2
- 229920001610 polycaprolactone Polymers 0.000 description 2
- 239000004632 polycaprolactone Substances 0.000 description 2
- 239000004626 polylactic acid Substances 0.000 description 2
- 229920005989 resin Polymers 0.000 description 2
- 239000011347 resin Substances 0.000 description 2
- 241001465754 Metazoa Species 0.000 description 1
- 229920003232 aliphatic polyester Polymers 0.000 description 1
- 229920000704 biodegradable plastic Polymers 0.000 description 1
- 230000008859 change Effects 0.000 description 1
- 238000001035 drying Methods 0.000 description 1
- 210000005069 ears Anatomy 0.000 description 1
- 230000007613 environmental effect Effects 0.000 description 1
- 239000003925 fat Substances 0.000 description 1
- 230000012010 growth Effects 0.000 description 1
- 230000006872 improvement Effects 0.000 description 1
- 230000003647 oxidation Effects 0.000 description 1
- 238000007254 oxidation reaction Methods 0.000 description 1
- 230000008635 plant growth Effects 0.000 description 1
- 229920001707 polybutylene terephthalate Polymers 0.000 description 1
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- 229920005672 polyolefin resin Polymers 0.000 description 1
- 230000000630 rising effect Effects 0.000 description 1
- 239000002689 soil Substances 0.000 description 1
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- 150000003890 succinate salts Chemical class 0.000 description 1
- 238000010257 thawing Methods 0.000 description 1
- 238000004804 winding Methods 0.000 description 1
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Abstract
Description
本発明は、露地栽培の植物苗等の植物体を低温や風から保護するための保護カバー材に関する。 The present invention relates to a protective cover material for protecting a plant body such as a plant seedling grown in an open field from low temperature and wind.
露地栽培では、植物苗の成長に対して、気温、風、天候といった気候の影響が大きく作用するため、従来より植物苗を覆うように保護カバーを設けるといった対策が講じられている。例えば、植物苗の周囲に複数の支柱を立てて支柱の周囲に透明な合成樹脂フィルムからなるカバー材で被覆することで、植物苗全体を袋状のカバー材で保護することができる。こうしたフィルムからなるカバー材で被覆することで保温性を高めるとともに風による影響を防止することができるが、通気性が悪くなるため、内部の気温が必要以上に温度上昇してしまうことが避けられない。そのため、植物苗に適切な気温となるようにカバー材の取り外し等が必要となる。また、強風により吹き飛ばされないようにカバー材の下部を土壌内に埋設するといった対策が必要となり、カバー材を取り扱う上で利便性の向上が望まれている。 In outdoor cultivation, the effects of climate such as temperature, wind, and weather have a large effect on the growth of plant seedlings. Therefore, measures have been taken to provide a protective cover so as to cover plant seedlings. For example, the whole plant seedling can be protected with a bag-like cover material by standing a plurality of support columns around the plant seedling and covering the support with a cover material made of a transparent synthetic resin film. Covering with such a cover material made of film can increase the heat retention and prevent the influence of wind, but the air permeability is worsened, so the internal temperature can be prevented from rising more than necessary. Absent. Therefore, it is necessary to remove the cover material so that the temperature is appropriate for the plant seedling. Further, it is necessary to take measures such as embedding the lower part of the cover material in the soil so that it is not blown off by strong winds, and improvement in convenience is desired in handling the cover material.
こうした保護カバー材としては、例えば、特許文献1では、適度な通気性を有する不織布の両端部を重合接着して上下端を開口した筒状に形成された苗の霜除けカバーが記載されている。また、特許文献2では、プラスチックの硬質素材を用いて作成された細目の網材を使用した半球形の網部を有する苗保護あみ帽が記載されている。 As such a protective cover material, for example, Patent Document 1 describes a seedling defrosting cover formed in a cylindrical shape having both upper and lower ends opened by polymerizing and bonding both end portions of a nonwoven fabric having appropriate air permeability. Further, Patent Document 2 describes a seedling protective net cap having a hemispherical net portion using a fine net material made of a plastic hard material.
上述した特許文献では、不織布や網材といった通気性を有する素材からなる保護カバー材を用いているが、不織布の場合には、雨に濡れた場合などに通気性が失われるといった欠点があり、網材の場合には、所定形状の網目が多数形成されているため、通気性の調整を行うことができないといった欠点がある。また、硬質のプラスチック材料で成形されているため、柔軟性が小さくなって設置スペースの変化に柔軟に対応することが難しい。 In the above-mentioned patent document, a protective cover material made of a material having air permeability such as a nonwoven fabric or a net material is used. However, in the case of a nonwoven fabric, there is a drawback that the air permeability is lost when it gets wet in the rain, In the case of a net material, there are drawbacks in that air permeability cannot be adjusted because a large number of meshes of a predetermined shape are formed. In addition, since it is formed of a hard plastic material, the flexibility becomes small and it is difficult to flexibly respond to changes in installation space.
そこで、本発明は、保温性及び通気性を調整することができるとともに設置スペースの変化に対応する柔軟性を有する保護カバー材を提供することを目的とするものである。 Therefore, an object of the present invention is to provide a protective cover material that can adjust heat retention and air permeability and has flexibility to cope with changes in installation space.
本発明に係る植物体の保護カバー材は、メッシュ状に編成された複数の編成体の両側端部を連結して形成された筒状編地からなる植物体の保護カバー材であって、前記編成体は、鎖編糸により経方向に編成されて所定間隔を空けて配列された複数の鎖編列を備え、経挿入糸が1つ置きに配列された前記鎖編列の編目に挿入して折り返すように掛止して緯方向に交互に掛け渡されているとともに掛け渡された前記鎖編列の間に配列された前記鎖編列の編目に挿入して通過するように編み込んでメッシュ状に編成されている。さらに、前記編成体は、両側端部において対向配置された前記鎖編列に連結糸を編み込んで連結されている。さらに、前記経挿入糸は、白色のフラットヤーンからなる。 The plant protective cover material according to the present invention is a plant protective cover material comprising a tubular knitted fabric formed by connecting both side ends of a plurality of knitted bodies knitted in a mesh shape, The knitted body includes a plurality of chain knitting rows that are knitted in the warp direction by chain knitting yarns and arranged at predetermined intervals, and is inserted and folded into the stitches of the chain knitting rows in which every other warp insertion yarn is arranged. Are knitted so as to be inserted and passed through the stitches of the chain stitch rows arranged between the chain stitch rows that are suspended and alternately wound in the weft direction. ing. Furthermore, the knitted body is connected by knitting a connecting yarn to the chain knitting rows arranged opposite to each other at both end portions. Further, the warp insertion yarn is made of a white flat yarn.
本発明は、メッシュ状に編成された筒状編地からなっているので、柔軟性及び伸縮性を持たせることができ、設置スペースに合わせて植物体を囲うように容易に設置することが可能となる。また、鎖編糸により経方向に編成されて所定間隔を空けて配列された複数の鎖編列に対して、経挿入糸を1つ置きに配列された前記鎖編列の編目に挿入して折り返すように掛止して緯方向に交互に掛け渡すようにしているので、掛け渡された経挿入糸が面状に形成されて風避けとして機能するとともに経挿入糸の間に多数の隙間が形成されて空気が出入りして保温性及び通気性を確保することができる。また、経挿入糸は、編地を緯方向に引張ることで隙間の大きさを調整することが可能となっており、掛け渡された鎖編列の間に配列された鎖編列の編目に挿入して通過するように編み込んでいるので、編地を緯方向に引張った場合でも通過した鎖編列部分では隙間が確保されて、通気性の調整及び確実な確保を実現することができる。 Since the present invention consists of a tubular knitted fabric knitted in a mesh shape, it can have flexibility and stretchability, and can be easily installed so as to surround the plant body according to the installation space It becomes. Further, with respect to a plurality of chain stitch rows that are knitted in the warp direction by the chain stitch yarn and arranged at predetermined intervals, the warp insertion yarns are inserted into the stitches of the chain stitch row arranged every other time and turned back. Since the thread is inserted in the weft direction alternately, the stretched warp insertion thread is formed in a plane shape and functions as a wind avoidance, and a number of gaps are formed between the warp insertion threads. Thus, air can enter and exit to ensure heat retention and air permeability. The warp insertion yarn can be adjusted in the size of the gap by pulling the knitted fabric in the weft direction, and is inserted into the stitches of the chain stitch rows arranged between the stretched chain stitch rows. Therefore, even when the knitted fabric is pulled in the weft direction, a gap is ensured in the chain knitting row portion that has passed through, and air permeability adjustment and secure ensuring can be realized.
以下、本発明について詳しく説明する。図1は、本発明に係る植物体の保護カバー材に関する外観斜視図である。植物体の保護カバー材Aは、メッシュ状に編成したシート状の編成体Bを二重に重ね合わせるとともに両側端部の耳部Cに沿って形成された連結部Dにより連結して筒状に構成されている。この例では、経編機により編成体Bを二重に所定幅で編成するとともに経方向に沿って両側端部で編成糸により耳部C及び連結部Dを編成することで、筒状の経編地を製造することができ、得られた経編地を経方向に所定長さずつ切断することで、保護カバー材Aを作成することができる。 The present invention will be described in detail below. FIG. 1 is an external perspective view of a plant protective cover material according to the present invention. A protective cover material A for a plant body is formed by overlapping a sheet-like knitted body B knitted in a mesh shape and connecting them by connecting portions D formed along the ear portions C at both end portions to form a cylindrical shape. It is configured. In this example, the knitted body B is double knitted with a predetermined width by a warp knitting machine, and the ear part C and the connecting part D are knitted with knitting yarns at both end portions along the warp direction. A knitted fabric can be manufactured, and the protective cover material A can be produced by cutting the obtained warp knitted fabric by a predetermined length in the warp direction.
図2は、保護カバー材Aの使用態様の一例を示す説明図である。この例では、植物体を栽培する農地において植物体の周囲に4本の支柱Tを打ち込んで立設させ、支柱Tを囲むように筒状の保護カバー材Aを挿着して保護カバー材Aを支柱Tにより張設した状態に設定する。植物体は保護カバー材Aにより囲まれた内側空間に配置された状態となって、植物体が直接風に晒されることがなくなり、保温性が高まるとともに根元の乾燥を抑止することができる。 FIG. 2 is an explanatory view showing an example of a usage mode of the protective cover material A. In this example, in a farmland where plants are cultivated, four support posts T are driven to stand around the plant bodies, and a cylindrical protective cover material A is inserted so as to surround the support posts T, thereby protecting the cover material A. Is set to be stretched by the column T. A plant body will be in the state arrange | positioned in the inner space enclosed by the protective cover material A, and a plant body will not be directly exposed to a wind, but heat retention can improve and it can suppress root | origin drying.
保護カバー材Aを設置する支柱Tは、地上に立設する部分の長さが保護カバー材Aの経方向の長さよりも長くなるように設定し、保護カバー材Aの上端よりも上に支柱Tが突き出るようにすることが好ましい。そして、保護カバー材Aの上端部分に紐等を絡めて支柱Tに紐等を巻き付けて固定することで、保護カバー材Aをずり下がることなく取り付けることができる。保護カバー材Aは、支柱Tに取り付けた状態では、経方向が上下方向となっており、上下方向に伸縮させることで、苗木の成長に合わせて保護カバー材Aの高さを調整することが可能となる。 The support column T for installing the protective cover material A is set so that the length of the portion standing on the ground is longer than the length of the protective cover material A in the longitudinal direction, and the support column A is above the upper end of the protective cover material A. It is preferable that T protrudes. Then, the protective cover material A can be attached without sliding down by tying a string or the like around the upper end portion of the protective cover material A and winding the string or the like around the support column T and fixing it. When the protective cover material A is attached to the support column T, the warp direction is the vertical direction, and the height of the protective cover material A can be adjusted according to the growth of the seedlings by expanding and contracting in the vertical direction. It becomes possible.
また、保護カバー材Aは、経編地からなる編成体Bにより筒状に構成されているため、面状に形成された編成体Bにより風避けとして機能するとともに編成体Bに形成された多数の隙間から空気が出入りして十分な通気性を確保することができる。また、後述するように、編成体Bは、緯方向に引張られることで多数の隙間の大きさが変化するようになっており、隙間の大きさを調整することで、通気性を調整することが可能となる。そのため、保護カバー材Aの内側に出入りする空気の流れを調整することで、保護カバー材Aにより囲まれた内側空間の温度や湿度といった環境条件を調整することができる。 Further, since the protective cover material A is formed in a cylindrical shape by a knitted body B made of warp knitted fabric, the protective cover material A functions as a wind evasion by the knitted body B formed in a planar shape and is formed in a large number on the knitted body B. Air can enter and exit through the gaps to ensure sufficient air permeability. Further, as will be described later, the knitted body B is adapted to change the size of a large number of gaps by being pulled in the weft direction, and to adjust the air permeability by adjusting the size of the gaps. Is possible. Therefore, by adjusting the flow of air entering and exiting the inside of the protective cover material A, environmental conditions such as the temperature and humidity of the inner space surrounded by the protective cover material A can be adjusted.
図3は、編成体Bの一部拡大図であり、図4は、保護カバー材Aを作成する経編地を編成するための編組織図である。編成体Bは、鎖編糸L1(白抜きの糸で表示)により経方向に編成されて所定間隔を空けて配列された複数の鎖編列を備えている。そして、経挿入糸L2(黒糸で表示)が1つ置きに配列された鎖編列の編目に挿入して折り返すように掛止して緯方向に交互に掛け渡されて編み込まれており、掛け渡された鎖編列の間に配列された鎖編列の編目に挿入して通過するように編み込んでメッシュ状の経編地に編成されている。そのため、鎖編列の間において緯方向に掛け渡された経挿入糸が面状に形成されて風避けとして機能して保温性が確保されるとともに経挿入糸の間に多数の隙間が形成されて通気性が確保されるようになる。 FIG. 3 is a partially enlarged view of the knitted body B, and FIG. 4 is a knitting structure diagram for knitting a warp knitted fabric for forming the protective cover material A. The knitted body B includes a plurality of chain knitting rows that are knitted in the warp direction by chain knitting yarns L1 (indicated by white yarns) and arranged at predetermined intervals. Then, warp insertion yarns L2 (indicated by black yarn) are inserted into the stitches of the chain stitch rows arranged every other one, hooked so as to be folded, and alternately stretched in the weft direction and knitted. They are knitted so as to pass through the stitches of the chain stitch rows arranged between the passed chain stitch rows, and are knitted into a mesh-like warp knitted fabric. Therefore, warp insertion yarns stretched in the weft direction between the chain knitting rows are formed in a plane shape, functioning as wind avoidance to ensure heat retention, and a number of gaps are formed between the warp insertion yarns Breathability is ensured.
図5は、編成体Bを緯方向に引張った状態を示す模式図である。編成体Bは、鎖編糸L1が経方向に編成された鎖編列が所定間隔を空けて配列され、経挿入糸L2が1つ置きに配列された鎖編列の編目に挿入して折り返すように掛止して緯方向に交互に掛け渡され、掛け渡された鎖編列の間に配列された鎖編列の編目に挿入して通過するように編み込まれてメッシュ状に編成されている(図5(a))が、緯方向に引張られると、経挿入糸L2が鎖編列の間で緯方向に引張られて鎖編列がジグザグに変形して縮んだ状態となって緯方向に伸長した状態となる(図5(b))。そのため、編成体Bは、鎖編列の間に掛け渡された経挿入糸により面状に形成されており、全体として柔軟性を備えるとともに緯方向への伸縮性を備えている。 FIG. 5 is a schematic diagram showing a state in which the knitted body B is pulled in the weft direction. In the knitted body B, the chain knitting yarns L1 knitted in the warp direction are arranged at predetermined intervals, and the warp insertion yarns L2 are inserted into the stitches of the chain knitting rows arranged every other warp. It is hooked and alternately stretched in the weft direction, and is knitted so as to be inserted and passed through the stitches of the chain stitch rows arranged between the stretched chain stitch rows (FIG. 5). When (a)) is pulled in the weft direction, the warp insertion yarn L2 is pulled in the weft direction between the chain knitting rows, and the chain knitting row is deformed and contracted in a zigzag manner, (FIG. 5B). Therefore, the knitted body B is formed in a planar shape by warp insertion yarns stretched between chain knitting rows, and has flexibility as a whole and elasticity in the weft direction.
また、緯方向に引張った状態では、鎖編列に掛け渡されて面状に形成された経挿入糸L2の間の隙間が狭くなるが、経挿入糸L2を挿入した鎖編列部分では経挿入糸L2の間に鎖編糸L1の交絡部分が挟み込まれて空隙が確保されるようになり、通気性が確実に確保されるようになる。したがって、編成体Bを緯方向に引張る量を調整することで、経挿入糸L2の間に形成される隙間の大きさを調整して通気性を調整することができ、最大限引張った状態でも通気性を確保することが可能となる。 Further, in a state where the warp direction is pulled, the gap between the warp insertion yarns L2 formed in a planar shape by being stretched over the chain stitch row becomes narrow, but the warp insertion yarns are inserted in the chain stitch row portion into which the warp insertion yarn L2 is inserted. The entangled portion of the chain knitting yarn L1 is sandwiched between L2 to secure a gap, and air permeability is reliably ensured. Therefore, by adjusting the amount by which the knitted body B is pulled in the weft direction, the size of the gap formed between the warp insertion yarns L2 can be adjusted to adjust the air permeability, Air permeability can be ensured.
鎖編列を編成する鎖編糸L1は、生分解性合成樹脂材料からなるものが好ましく、例えば、ポリ乳酸、ポリブチレンサクシネート、ポリブチレンサクシネートアジペート、ポリカプロラクトン、ポリブチレンテレフタレートアジペート、ポリブチレンテレフタレートサクシネートといった脂肪族ポリエステル又は芳香脂肪族ポリエステルが挙げられる。こうした加水分解型の生分解性合成樹脂材料以外にも、酸化型の生分解性合成樹脂材料を用いてもよい。そして、モノフィラメント、マルチフィラメント、フラットヤーン、スリットヤーンといった形態の糸を使用することができる。 The chain knitting yarn L1 for knitting the chain knitting is preferably made of a biodegradable synthetic resin material. For example, polylactic acid, polybutylene succinate, polybutylene succinate adipate, polycaprolactone, polybutylene terephthalate adipate, polybutylene terephthalate Aliphatic polyesters such as succinates or araliphatic polyesters. In addition to the hydrolyzable biodegradable synthetic resin material, an oxidized biodegradable synthetic resin material may be used. A yarn in the form of a monofilament, a multifilament, a flat yarn, or a slit yarn can be used.
経挿入糸L2としては、生分解性合成樹脂材料からなるものが好ましく、例えば、ポリ乳酸、ポリブチレンサクシネート、ポリブチレンサクシネートアジペート、ポリカプロラクトン、ポリブチレンテレフタレートアジペート、ポリブチレンテレフタレートサクシネートといった脂肪族ポリエステル又は芳香脂肪族ポリエステルが挙げられる。こうした加水分解型の生分解性合成樹脂材料以外にも、酸化型の生分解性合成樹脂材料を用いてもよい。特に、ポリブチレンサクシネート系樹脂材料(例;三菱化学株式会社製PBS系樹脂材料)や酸化促進剤を含むポリオレフィン系樹脂材料(例;ピーライフ・ジャパン・インク株式会社製生分解性プラスチック)が好ましい。 The transinsertion yarn L2 is preferably made of a biodegradable synthetic resin material. For example, fats such as polylactic acid, polybutylene succinate, polybutylene succinate adipate, polycaprolactone, polybutylene terephthalate adipate, polybutylene terephthalate succinate Group polyester or araliphatic polyester. In addition to the hydrolyzable biodegradable synthetic resin material, an oxidized biodegradable synthetic resin material may be used. In particular, polybutylene succinate-based resin materials (eg, PBS-based resin materials manufactured by Mitsubishi Chemical Corporation) and polyolefin-based resin materials containing an oxidation accelerator (eg, biodegradable plastic manufactured by PLife Japan Inc.) preferable.
また、経挿入糸L2は、フラットヤーンのような細幅のテープ状に形成された形態のものが通気性及び保温性の点で好ましい。上述した生分解性合成樹脂材料は、テープ状に形成することで、糸長方向の引張強度が大きいが、糸長方向と直交する方向には引き裂き強度が小さくなり、経挿入糸L2も糸長方向と直交する幅方向に容易に引き裂かれて、ささくれだった状態になる。そのため、保護カバー材Aが農地に残留した場合でも分解されて農地に悪影響を及ぼすことがほとんどない。また、経挿入糸L2として白色のフラットヤーンを用いることで、保護カバー材A全体が白色となり、内側の植物体が外側から視認しにくくなるため、害獣による食害を防止することができる。 In addition, the warp insertion yarn L2 is preferably in the form of a narrow tape like a flat yarn in terms of air permeability and heat retention. The above-described biodegradable synthetic resin material is formed in a tape shape, so that the tensile strength in the yarn length direction is large, but the tear strength is reduced in the direction perpendicular to the yarn length direction, and the warp insertion yarn L2 is also the yarn length. It is easily torn in the width direction perpendicular to the direction, and is in a state of fluttering. Therefore, even when the protective cover material A remains on the farmland, the protective cover material A is hardly decomposed and hardly affects the farmland. Further, by using a white flat yarn as the warp insertion yarn L2, the entire protective cover material A becomes white, and the inner plant body is difficult to visually recognize from the outside, so that it is possible to prevent food damage caused by harmful animals.
図4の編組織図に示すように、二重の編成体Bは、一枚は鎖編糸L1及び経挿入糸L2により編成され、もう一枚は鎖編糸L1’及び経挿入糸L2’により編成されて互いに重なり合うように二重に形成されていき、鎖編糸L1及び経挿入糸L2により編成される編地の両側端では編成糸L3により耳部が編成され、鎖編糸L1’及び経挿入糸L2’により編成される編地の両側端部では編成糸L3’により耳部が編成される。また、二重に編成される編成体Bには、両側端部の互いに対向配置された鎖編列に連結糸L4が交互に掛け渡すように編み込まれて連結部が形成される。こうして二重の編成体Bの両側端部が連結されて筒状の経編地が編成されるようになる。 As shown in the knitting structure diagram of FIG. 4, one double knitted body B is knitted with a chain knitting yarn L1 and warp insertion yarn L2, and the other is a chain knitting yarn L1 ′ and warp insertion yarn L2 ′. Are formed so as to overlap each other, and at both ends of the knitted fabric knitted by the chain knitting yarn L1 and the warp insertion yarn L2, ears are knitted by the knitting yarn L3, and the chain knitting yarn L1 ′ And the ear | edge part is knitted by the knitting yarn L3 'in the both ends of the knitted fabric knitted by the warp insertion yarn L2'. Further, the knitted body B knitted doubly is knitted so that the connecting yarns L4 are alternately wound around the chain knitting rows arranged opposite to each other at both side end portions to form a connecting portion. In this way, both end portions of the double knitted body B are connected to form a cylindrical warp knitted fabric.
耳部に用いる編成糸L3及びL3’としては、経挿入糸L2と同じ素材からなる糸を用いることが好ましく、連結糸L4としては、鎖編糸L1と同じ素材からなる糸を用いることが好ましい。 As the knitting yarns L3 and L3 ′ used for the ear part, it is preferable to use a yarn made of the same material as the warp insertion yarn L2, and as the connecting yarn L4, it is preferable to use a yarn made of the same material as the chain stitch yarn L1. .
A・・・植物体の保護カバー材、B・・・編成体、C・・・耳部、D・・・連結部、L1、L1’・・・鎖編糸、L2、L2’・・・経挿入糸、L3、L3’・・・編成糸、L4・・・連結糸 A ... Protective cover material for plant body, B ... Knitted body, C ... Ear part, D ... Connection part, L1, L1 '... Chain knitting yarn, L2, L2' ... Warp insertion yarn, L3, L3 '... Knitting yarn, L4 ... Connection yarn
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JP2021013374A (en) * | 2019-03-13 | 2021-02-12 | 保土谷アグロテック株式会社 | Cylindrical object for protecting seedling and protection and rearing method of seedling using the cylindrical object for protecting seedling |
Citations (4)
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JPS56103080U (en) * | 1979-12-31 | 1981-08-12 | ||
JP2000279039A (en) * | 1999-03-29 | 2000-10-10 | Kanebo Synthetic Fibers Ltd | Tool for protecting young tree and method for setting the same |
WO2006045140A1 (en) * | 2004-10-28 | 2006-05-04 | Gale Pacific Limited | A knitted fabric |
JP2011188828A (en) * | 2010-03-16 | 2011-09-29 | Masao Hasegawa | Sheet material for protecting bark and bark protector using the same |
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JPS56103080U (en) * | 1979-12-31 | 1981-08-12 | ||
JP2000279039A (en) * | 1999-03-29 | 2000-10-10 | Kanebo Synthetic Fibers Ltd | Tool for protecting young tree and method for setting the same |
WO2006045140A1 (en) * | 2004-10-28 | 2006-05-04 | Gale Pacific Limited | A knitted fabric |
JP2011188828A (en) * | 2010-03-16 | 2011-09-29 | Masao Hasegawa | Sheet material for protecting bark and bark protector using the same |
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Publication number | Priority date | Publication date | Assignee | Title |
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JP2021013374A (en) * | 2019-03-13 | 2021-02-12 | 保土谷アグロテック株式会社 | Cylindrical object for protecting seedling and protection and rearing method of seedling using the cylindrical object for protecting seedling |
JP7474075B2 (en) | 2019-03-13 | 2024-04-24 | 保土谷アグロテック株式会社 | Protective cylinder for seedlings and method for protecting and growing seedlings using said protective cylinder |
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