JP4556359B2 - Artificial turf structure and artificial turf stadium - Google Patents

Artificial turf structure and artificial turf stadium Download PDF

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Publication number
JP4556359B2
JP4556359B2 JP2001225650A JP2001225650A JP4556359B2 JP 4556359 B2 JP4556359 B2 JP 4556359B2 JP 2001225650 A JP2001225650 A JP 2001225650A JP 2001225650 A JP2001225650 A JP 2001225650A JP 4556359 B2 JP4556359 B2 JP 4556359B2
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artificial turf
filler
specific gravity
layer
granular material
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JP2003034906A (en
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知幸 西川
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Sumitomo Rubber Industries Ltd
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Sumitomo Rubber Industries Ltd
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Description

【0001】
【発明の属する技術分野】
本発明は、人工芝のパイル間に充填材を充填してなる人工芝構造体であって、さらに詳しくいえば、直射日光などにより人工芝表面が高温になるのを効果的に防止し、快適なプレー性を維持できる人工芝構造体に関する。
【0002】
【従来の技術】
サッカーや野球などの運動競技施設に用いられる人工芝として、そのパイル間に弾性粒状物からなる充填材を充填したタイプのものが開発されている。一般にこの種の充填材は、安価かつ大量に入手できる廃タイヤなどの廃ゴム製品の粉砕物が用いられている。
【0003】
この弾性粒状物は、その真比重が1.0に近いため、プレーヤーのけり出しなどによって飛散しやすいため、充填材の厚みよりも人工芝のパイル長(芝丈)を充填材の表面から10〜30mm以上突出させ、充填材を飛散しにくくしている。
【0004】
【発明が解決しようとする課題】
しかしながら、上述した廃タイヤなどの廃ゴム製品の粉砕物からなる充填材は、一般に黒色に着色されているため、光による熱を吸収しやすい。したがって、夏場などは照りつける日光の熱を吸収して、人工芝の表面温度が上昇するため、プレーヤーへの体力的な負担が大きく、快適性が損なわれやすい。
【0005】
そこで、例えば特開平8−260410号公報のように、人工芝の下層に通水溝を配置して、人工芝下層の水量を調節管理するようにした人工芝も開示されてはいるが、これは設備構築が大掛かりなものになるばかりでなく、人工芝表面を均質に保ちにくい。
【0006】
他方で、充填材の一部に吸水性ポリマーなどの吸水性材料を含ませ、人工芝の保水性を高めるようにしたものもあるが、この種の吸水性材料はいつでも容易に安価に必要な量を入手できるとは限らない。
【0007】
本発明は上述した課題を解決するためになされてものであって、その目的は、低コストでありながらも、人工芝の温度上昇を効果的に抑制して年間を通じて快適なプレー性が得られる人工芝構造体を提供することにある。
【0008】
【課題を解決するための手段】
上述した目的を達成するため、本発明は人工芝のパイル間に弾性充填材を含む充填材が充填された人工芝構造体において、上記充填材は、色および/または比重の異なる複数種類の粒状物を含み、これら粒状物により少なくとも2以上の層が形成され、その下部側充填材は、廃タイヤなどの廃ゴム製品を粒状物とした弾性粒状物を含み、最上層には、上記下部側充填材よりも真比重が小さく、かつ、熱吸収率が低い黒色以外に着色されたゴムチップが多く含まれていることを特徴としている。
【0009】
これによれば、直射日光の影響を直接受ける最上層の充填材に、熱吸収率が低い黒色以外に着色されたゴムチップを多く含ませることにより、人工芝の温度上昇を効果的に抑制できるとともに、下部側よりも真比重を小さくしたことで、充填材が下部側へ潜り込むことを抑制でき、面倒なメンテナンスを必要とせず、年間を通じて安定した人工芝が得られる。
【0010】
お、本発明における「着色」とは、充填材に顔料を塗布したり、練り込んだりして人工的に着色した状態や、もみ殻や木屑のように自然な状態で充填材が持つ固有色などを含む。
【0011】
より好ましい態様としては、上記最上層に含まれる上記ゴムチップの真比重は0.3〜1.0であり、かつ、上記最上層の層厚さが5〜20mmであることが好ましい。これによれば、真比重が、1.0を超えると、充填材が下層に潜り込みやすく、熱吸収抑制効果が低下するし、0.3未満では飛散が激しく下層が表面に露出しやすい。いずれであっても、熱吸収抑制効果が得られにくい。
【0012】
また、層厚さが20mmを超えると、全体的な比重が小さくなり、充填材が蹴り出しなどによって移動しやすく、平坦性が損なわれやすい。逆に、層厚さが5mm未満であると、下層に対するカバーリング性が悪くなり、経時的な使用によって下層が露出し、熱吸収抑制効果が低下する。
【0013】
本発明によれば、上記下部側充填材は、廃タイヤなどの廃ゴム製品を粒状物とした弾性粒状物を含み、上記最上層に含まれる充填材には、黒色以外に色されたゴムチップが用いられることにより、安価かつ大量に入手できるリサイクル品を利用することができる。
【0014】
これ以外に、上記最上層に充填される充填材には、もみ殻、おがくず、木屑の粉砕品、コルク粉砕品などの木質粒状物が用いられていてもよく、これによれば、水分の吸収性がよく、温度上昇を効果的に抑制でき、さらに天然材料を使用することで、プレーヤーの口に入っても安全である。
【0015】
本発明には、上述した人工芝構造体によって構築された人工芝競技場も含まれる。すなわち、本発明は、テニスコート、サッカー競技場、野球場、陸上競技場など種々の人工芝競技施設に適用可能である。
【0016】
【発明の実施の形態】
次に、本発明の実施の形態について図面を参照しながら説明する。図1に示すように、本発明の人工芝構造体1は、基布2に所定間隔でパイル3がタフティングされ、裏面にパイル3の抜け止め防止処理が施された人工芝1を下地上に敷設し、そのパイル3間に充填材4を充填することにより構築される。
【0017】
この実施形態において、基布2は、例えばポリプロピレン(PP)、ポリエチレン(PE)、ナイロン(NY)、ポリエチレンテレフタレート(PET)など樹脂製の基布原糸を一軸延伸または短繊維を寄り合わせて長繊維としたものを織り込んで布状にしたものであってよく、それらを1枚または2枚重ねて用いるが、2枚重ねの方が寸歩安定性が高く、敷設後に外力によってシワになりにくいのでより好適である。
【0018】
基布2を2枚重ねにする場合、その下側の基布には、合成繊維を綿状にしたものをパンチング加工した基布を用いることにより、寸法安定性やシワ防止性がよりよくなる。
【0019】
パイル3は、例えばポリプロピレン(PP)、ポリエチレン(PE)、ナイロン(NY)、ポリエチレンテレフタレート(PET)などの合成樹脂製のスプリットヤーンまたはモノフィラメントヤーンであってよく、その太さは好ましくは5000〜10000dtexである。なお、モノフィラメントヤーンを用いた場合の太さは、単糸を複数本合わせた合計太さである。
【0020】
この実施形態において、パイル3はポリプロピレン製のスプリットヤーンを用いている。また、パイル3の抜け止め防止処理としては、SBRラテックスゴム、ウレタン樹脂などを基布2の裏面に塗布する方法が用いられている。
【0021】
本発明の人工芝1は、基布2からパイル先端までパイル長さHを30〜60mmとした、いわゆるロングパイル人工芝であり、そのパイル3間に充填材4が充填材4表面からパイル先端までのパイル突出高さh2が10mm以上になるように充填されている。これによれば、充填材4の飛散が効果的に防止される。
【0022】
充填材4は、下層41と上層42とをそれぞれ所定の厚さになるように充填した2層構造となっている。この実施形態において、上層42は、実質的な最上層であり、各充填材層の厚さは上述したパイル突出高さh2が10mm以上突出するようにすれば、仕様に応じて適宜選択されてよい。
【0023】
この実施形態において、下層41は、弾性粒状物411と硬質粒状物412との混合物からなり、人工芝が必要とする弾力性が得られるように所定の厚みをもって充填されている。なお、弾性粒状物411と硬質粒状物412の混合比は仕様によって任意に選択される。
【0024】
弾性粒状物411は、廃ゴム製品などのリサイクル品が好適に用いられるが、廃ゴム製品のリサイクル品の中でもより好ましくは、窓枠などの廃ゴム製品の方が匂い等が少なく好適である。硬質粒状物412は、各種セラミックスや石類などであってよく、特に限定されないが、より好ましくは硅砂が好適である。
【0025】
弾性粒状物411は、粒径が0.3〜3.0mmのものが80%以上含まれていることが好ましい。すなわち、粒径が3.0mmを超えると、人工芝のパイル間での収まりが悪く、粒径が0.3mm未満になると、風や降雨などによって、飛散、流出するおそれがある。
【0026】
硬質粒状物412は、粒径が0.1〜1.2mmのものが80%以上を占めていることが好ましい。すなわち、粒径が0.1mm未満ないしは1.2mmを超えると、弾性粒状物411と分離しやすくなり、分離した硬質粒状物412は、人工芝下部に移動して、人工芝の弾力性が低下する。
【0027】
この実施形態において、下層41は弾性粒状物411と硬質粒状物412との混合層から構成されているが、これ以外に、弾性粒状物411と硬質粒状物412との単体物からなる層を積層した複数層であってもよい。この場合、各層の層厚および層数は、人工芝の仕様に応じて適宜選択される。
【0028】
次に、最上層(上層)42について説明する。最上層42に充填される充填材421の基本的構成としては、上記下層41よりも真比重が小さく、かつ、熱吸収率の低い弾性粒状物であればよい。より具体的な態様としては、真比重が0.3〜1.0であり、その層厚さh1が5〜20mmであることが好ましい。
【0029】
すなわち、真比重が1.0を超えると、充填材421が下層側に潜り込み、熱吸収抑制効果が低下する。また、0.3未満であると、逆に飛散が激しく、下層が表面に露出しやすくなり、結果的に熱吸収抑制効果が期待できなくなる。
【0030】
さらに、層厚さh1が5mm未満であると、下層41に対するカバーリング性が悪くなり、経時的な使用によって下層が露出し、熱吸収抑制効果が低下する。逆に、層厚さh1が20mmを超えると、全体的な比重が小さくなり、充填材421が蹴り出しなどによって移動しやすく、平坦性が損なわれやすい。
【0031】
上記充填材421の具体的な材質としては、上記条件を満足するものであれば特に限定されないが、その一例として以下の例1〜例3が例示される。
〔例1〕着色された発泡ゴムの粉砕品
着色の方法としては、原材料に直接着色料を練り込んで着色する方法や、廃ゴム製品などの黒色ゴムを用いる場合は、その表面を着色する方法などがあるが、剥がれて変色するおそれがなく、その効果を維持することができることからすれば、後者よりも前者の方がより好ましい。
〔例2〕ウレタン、ポリエチレンなどの合成樹脂発泡体の粉砕品
着色の方法は、上記例1と同じ方法を用いることができる。連続気泡となるように発泡させることで、発泡層が水分を吸収することによる温度上昇抑制効果も奏される。
〔例3〕木屑、コルクの粉砕品、おがくず、もみ殻などの天然材料
元々多孔質構造であるため水分吸収性を有し、その保水効果による温度上昇抑制効果がある。天然材料であるため、飛散しても目立たず、プレーヤーの口に入っても無害である。
【0032】
上述した例1〜例3以外であっても、上記下層41よりも真比重が小さく、かつ、熱吸収率の低い弾性粒状物であれば任意に選択して使用できる。また、この実施形態において、最上層42は弾性粒状物の単体物から構成されているが、これ以外の粒状物と混合した混合物であってもよい。
【0033】
この実施形態において、充填材4は、下層41と上層42の2層構造となっているが、この間に中間層を設けてもよく、少なくとも下層41と上層(最上層)42を有するものであれば、その他の変形例も本発明には含まれる。
【0034】
本発明の人工芝構造体は、野球競技場、サッカー場、テニスコートなどの各種人工芝グラウンドに適用することができる。また、他の人工芝施設であっても、本発明によって得られる人工芝性状が適用可能なものであれば任意に選択して施工してもよい。
【0035】
【実施例】
次に、本発明のより具体的な実施例について、比較例とともに説明する。まず、下記の方法にて充填材入り人工芝を作製した。
【0036】
(充填材入り人工芝の作製)
▲1▼:人工芝の作製
ポリプロピレン製スプリットヤーン7800dtex(幅12mm)をポリプロピレン製平織り布からなる基布にパイル長50mmでタフト後、裏面からSBRラテックスゴムを一様に塗布して抜け止め防止加工を施して、人工芝を製造した。
▲2▼:充填材の充填
▲1▼で作製された人工芝を下地上に敷設して、下層充填材を20mm厚になるように充填した。充填材は粒径が0.2〜3.0mmのものが全体の90%以上を占める廃タイヤの粉砕品を使用した。さらに、その下層充填材の上に実施例1〜5、比較例1〜4の各条件で上層充填材を充填した。
▲3▼:散水
一部の実施例および一部の比較例については、表面に水分が浮かばない程度に散水を行った後、以下の各種評価を行った。
【0037】
(表面温度の観察)
まず、実施例1〜5および比較例1〜4の人工芝を10時から16時までの間炎天下に放置して、その表面温度を測定した。
(粒状物の移動状況の観察)
次に、実施例1〜5および比較例1〜4の人工芝を敷設後、そのままの状態で1週間放置した後、最上層の粒状物の保持状態を観察した。以下に各評価結果を示す。
【0038】
《実施例1》
〔人工芝仕様〕
粒状物材質:発泡ゴム,色:ベージュ(着色),粒径:0.2〜3.0mmが90%以上,真比重:0.8,厚み:10mm,散水:なし
〔評価結果〕最高表面温度:65℃,粒状物の飛散状態:著しい飛散なし
【0039】
《実施例2》
〔人工芝仕様〕
粒状物材質:ポリエチレン発泡体,色:白,粒径:0.2〜3.0mmが90%以上,真比重:0.3,厚み:10mm,散水:なし
〔評価結果〕最高表面温度:63℃,粒状物の飛散状態:著しい飛散なし
【0040】
《実施例3》
〔人工芝仕様〕
粒状物材質:おがくず,色:薄茶,粒径:0.2〜3.0mmが90%以上,真比重:0.4,厚み:10mm,散水:なし
〔評価結果〕最高表面温度:69℃,粒状物の飛散状態:著しい飛散なし
【0041】
《実施例4》
〔人工芝仕様〕
粒状物材質:発泡ゴム,色:ベージュ(着色),粒径:0.2〜3.0mmが90%以上,真比重:0.8,厚み:10mm,散水:あり
〔評価結果〕最高表面温度:58℃,粒状物の飛散状態:著しい飛散なし
【0042】
《実施例5》
〔人工芝仕様〕
粒状物材質:おがくず,色:薄茶,粒径:0.2〜3.0mmが90%以上,真比重:0.4,厚み:10mm,散水:あり
〔評価結果〕最高表面温度:55℃,粒状物の飛散状態:著しい飛散なし
【0043】
〈比較例1〉
〔人工芝仕様〕
粒状物材質:タイヤ粉砕品,色:黒,粒径:0.2〜3.0mmが90%以上,真比重:1.1,厚み:10mm,散水:なし
〔評価結果〕最高表面温度:72℃,粒状物の飛散状態:著しい飛散なし
【0044】
〈比較例2〉
〔人工芝仕様〕
粒状物材質:発泡ゴム,色:ベージュ(着色),粒径:0.2〜3.0mmが90%以上,真比重:0.8,厚み:25mm,散水:なし
〔評価結果〕最高表面温度:65℃,粒状物の飛散状態:飛散により平坦性悪い
【0045】
〈比較例3〉
〔人工芝仕様〕
粒状物材質:発泡ゴム,色:ベージュ(着色),粒径:0.2〜3.0mmが90%以上,真比重:0.8,厚み:3mm,散水:なし
〔評価結果〕最高表面温度:70℃,粒状物の飛散状態:飛散により下層露出
【0046】
〈比較例4〉
〔人工芝仕様〕
粒状物材質:ポリエチレン発泡体,色:白,粒径:0.2〜3.0mmが90%以上,真比重:0.2,厚み:10mm,散水:なし
〔評価結果〕最高表面温度:63℃,粒状物の飛散状態:飛散により平坦性悪い
【0047】
参考までに、上記実施例1〜5と比較例1〜4の結果のまとめを表1に示す。
【0048】
【表1】

Figure 0004556359
【0049】
実施例と比較例とを比較検討した結果、以下のような知見を得た。
・実施例1〜5は比較例1と比較して、熱吸収率の低い弾性粒状物の効果により、表面温度が低い。
・比較例2は、実施例1〜5と同様に表面温度は低くはなるが、最上層の厚みが大きいため、飛散により平坦性が悪い。
・比較例3は、最上層の充填厚みが小さいために、温度上昇の抑制効果が小さい。
・比較例4は、最上層の真比重が小さく、飛散により平坦性が損なわれやすい。
・実施例4,5は、散水による保水効果が働き、実施例1,2と同じ仕様であるにもかかわらず、より温度上昇抑止効果が高い。
【0050】
【発明の効果】
以上説明したように、本発明によれば、人工芝のパイル間に弾性充填材を含む充填材が充填された人工芝構造体において、上記充填材は、色および/または比重の異なる複数種類の粒状物を含み、これら粒状物により少なくとも2以上の層が形成され、その最上層には、下部側充填材よりも真比重が小さく、かつ、熱吸収率が低い特定の充填材が多く含まれていることにより、充填材の飛散を効果的に抑制するとともに、人工芝の表面温度の上昇も抑えることができる。
【図面の簡単な説明】
【図1】本発明の一実施形態に係る人工芝の部分断面図。
【符号の説明】
1 人工芝
2 基布
3 パイル
4 充填材
41 下層
411 弾性粒状物
412 硬質粒状物
42 上層(最上層)[0001]
BACKGROUND OF THE INVENTION
The present invention relates to an artificial turf structure in which a filler is filled between piles of artificial turf. More specifically, the artificial turf surface is effectively prevented from becoming hot due to direct sunlight, etc. The present invention relates to an artificial turf structure that can maintain a playability.
[0002]
[Prior art]
Artificial turf used for athletic facilities such as soccer and baseball has been developed with a filler filled with elastic granular material between its piles. Generally, a pulverized product of a waste rubber product such as a waste tire which is inexpensive and can be obtained in large quantities is used for this type of filler.
[0003]
Since the true specific gravity of this elastic granular material is close to 1.0, it is likely to be scattered by the player's protrusion, etc., so the pile length (turf height) of the artificial turf is 10 It protrudes by 30 mm or more to make it difficult for the filler to scatter.
[0004]
[Problems to be solved by the invention]
However, since the filler made of pulverized waste rubber products such as the above-mentioned waste tires is generally colored black, it easily absorbs heat from light. Therefore, in summer, the surface temperature of the artificial turf is increased by absorbing the heat of sunlight that shines on, so that the physical burden on the player is great and the comfort is easily impaired.
[0005]
Therefore, for example, as disclosed in Japanese Patent Application Laid-Open No. 8-260410, an artificial turf in which a water flow groove is arranged in the lower layer of the artificial turf so as to adjust and manage the water amount of the artificial turf lower layer is disclosed. Not only does the construction of the equipment become a big thing, it is difficult to keep the artificial turf surface homogeneous.
[0006]
On the other hand, some of the fillers contain a water-absorbing material such as a water-absorbing polymer to improve the water retention of artificial turf, but this kind of water-absorbing material is always necessary easily and inexpensively. The quantity is not always available.
[0007]
The present invention has been made in order to solve the above-described problems, and an object of the present invention is to provide a comfortable playability throughout the year by effectively suppressing the temperature increase of the artificial turf even at a low cost. It is to provide an artificial turf structure.
[0008]
[Means for Solving the Problems]
In order to achieve the above-mentioned object, the present invention provides an artificial turf structure in which a filler including an elastic filler is filled between piles of artificial turf, and the filler includes a plurality of types having different colors and / or specific gravity. including particulates, at least 2 or more layers formed by these granules, the lower side filler comprises a resilient granules was granules of waste rubber products such as tires, the uppermost layer, the lower It is characterized in that it contains a lot of colored rubber chips other than black having a true specific gravity smaller than that of the side filler and a low heat absorption rate.
[0009]
According to this, it is possible to effectively suppress the temperature increase of the artificial turf by including a lot of colored rubber chips other than black, which has a low heat absorption rate, in the uppermost filler that is directly affected by direct sunlight. By making the true specific gravity smaller than the lower side, it is possible to prevent the filler from entering the lower side, and no troublesome maintenance is required, and a stable artificial grass can be obtained throughout the year.
[0010]
Your name, the "colored" in the present invention, or coated with a pigment to filler, state and artificially colored Dari kneaded, inherent with the filling material in a natural state as rice husk and wood chips Including color.
[0011]
As a more preferred embodiment, it is preferable that the true specific gravity of the rubber chip contained in the uppermost layer is 0.3 to 1.0, and the layer thickness of the uppermost layer is 5 to 20 mm. According to this, when the true specific gravity exceeds 1.0, the filler tends to sink into the lower layer, and the heat absorption suppressing effect is lowered. When the true specific gravity is less than 0.3, scattering is severe and the lower layer is easily exposed on the surface. In any case, it is difficult to obtain a heat absorption suppressing effect.
[0012]
On the other hand, when the layer thickness exceeds 20 mm, the overall specific gravity is reduced, the filler is easily moved by kicking or the like, and the flatness is easily impaired. On the contrary, if the layer thickness is less than 5 mm, the covering property for the lower layer is deteriorated, and the lower layer is exposed by use over time, and the heat absorption suppressing effect is lowered.
[0013]
According to the present invention, the lower-side filler comprises a resilient granules waste rubber products such as tires and the granules above is Ru charge Hamazai that contained in the uppermost layer, is deposited color other than black By using rubber chips, it is possible to use recycled products that are inexpensive and available in large quantities.
[0014]
In addition to this, the filler filled in the uppermost layer may include woody particulates such as rice husks, sawdust, crushed wood chips, and crushed corks. According to this, moisture absorption It has good characteristics, can effectively suppress the temperature rise, and it is safe to enter the player's mouth by using natural materials.
[0015]
The present invention also includes an artificial turf stadium constructed by the artificial turf structure described above. That is, the present invention is applicable to various artificial turf sports facilities such as tennis courts, soccer stadiums, baseball stadiums, and athletic stadiums.
[0016]
DETAILED DESCRIPTION OF THE INVENTION
Next, embodiments of the present invention will be described with reference to the drawings. As shown in FIG. 1, an artificial turf structure 1 according to the present invention has an artificial turf 1 with a pile 3 tufted at a predetermined interval on a base cloth 2 and a pile 3 on the back surface that is prevented from being detached. It is constructed by laying on the pile 3 and filling the filler 3 between the piles 3.
[0017]
In this embodiment, the base fabric 2 is made of, for example, a base fabric yarn made of resin such as polypropylene (PP), polyethylene (PE), nylon (NY), polyethylene terephthalate (PET), uniaxially stretched or short fibers are brought close together. It may be made into a cloth by weaving what is made of fiber, and one or two of them are used in layers, but the two-layers are more stable in steps and are less likely to wrinkle due to external force after laying. Therefore, it is more preferable.
[0018]
When two base fabrics 2 are stacked, by using a base fabric obtained by punching synthetic fiber in the form of cotton, dimensional stability and wrinkle prevention properties are improved.
[0019]
The pile 3 may be a split yarn or a monofilament yarn made of a synthetic resin such as polypropylene (PP), polyethylene (PE), nylon (NY), polyethylene terephthalate (PET), and preferably has a thickness of 5000 to 10000 dtex. It is. The thickness when the monofilament yarn is used is the total thickness of a plurality of single yarns.
[0020]
In this embodiment, the pile 3 uses a split yarn made of polypropylene. Further, as the pile 3 retaining prevention process, a method of applying SBR latex rubber, urethane resin or the like to the back surface of the base fabric 2 is used.
[0021]
The artificial turf 1 of the present invention is a so-called long pile artificial turf having a pile length H of 30 to 60 mm from the base fabric 2 to the pile tip, and the filler 4 is placed between the piles 3 from the surface of the filler 4 to the pile tip. The pile protrusion height h2 is filled up to 10 mm or more. According to this, scattering of the filler 4 is effectively prevented.
[0022]
The filler 4 has a two-layer structure in which the lower layer 41 and the upper layer 42 are filled to a predetermined thickness. In this embodiment, the upper layer 42 is a substantially uppermost layer, and the thickness of each filler layer is appropriately selected according to the specifications so long as the above-described pile protrusion height h2 protrudes 10 mm or more. Good.
[0023]
In this embodiment, the lower layer 41 is made of a mixture of elastic granular material 411 and hard granular material 412, and is filled with a predetermined thickness so as to obtain the elasticity required by the artificial turf. The mixing ratio of the elastic granular material 411 and the hard granular material 412 is arbitrarily selected according to the specification.
[0024]
As the elastic granular material 411, a recycled product such as a waste rubber product is preferably used. Among the recycled products of the waste rubber product, a waste rubber product such as a window frame is more preferable because it has less smell. The hard granular material 412 may be various ceramics, stones, and the like, and is not particularly limited, but is preferably cinnabar sand.
[0025]
The elastic granular material 411 preferably contains 80% or more particles having a particle diameter of 0.3 to 3.0 mm. That is, when the particle size exceeds 3.0 mm, the fit between the piles of the artificial turf is poor, and when the particle size is less than 0.3 mm, there is a risk of scattering or outflow due to wind or rain.
[0026]
The hard granular material 412 preferably has a particle size of 0.1 to 1.2 mm occupies 80% or more. That is, when the particle size is less than 0.1 mm or exceeds 1.2 mm, it becomes easy to separate from the elastic granular material 411, and the separated hard granular material 412 moves to the lower part of the artificial turf, and the elasticity of the artificial turf is lowered. To do.
[0027]
In this embodiment, the lower layer 41 is composed of a mixed layer of elastic granular material 411 and hard granular material 412, but in addition to this, a layer composed of a single body of elastic granular material 411 and hard granular material 412 is laminated. A plurality of layers may be used. In this case, the layer thickness and the number of layers of each layer are appropriately selected according to the specifications of the artificial turf.
[0028]
Next, the uppermost layer (upper layer) 42 will be described. The basic structure of the filler 421 filled in the uppermost layer 42 may be an elastic granular material having a true specific gravity smaller than that of the lower layer 41 and a low heat absorption rate. As a more specific aspect, it is preferable that the true specific gravity is 0.3 to 1.0 and the layer thickness h1 is 5 to 20 mm.
[0029]
That is, when the true specific gravity exceeds 1.0, the filler 421 sinks into the lower layer side, and the heat absorption suppressing effect is lowered. On the other hand, if it is less than 0.3, the scattering is intense and the lower layer is easily exposed on the surface, and as a result, the effect of suppressing heat absorption cannot be expected.
[0030]
Furthermore, when the layer thickness h1 is less than 5 mm, the covering property with respect to the lower layer 41 is deteriorated, and the lower layer is exposed by use over time, and the heat absorption suppressing effect is lowered. On the other hand, when the layer thickness h1 exceeds 20 mm, the overall specific gravity is reduced, the filler 421 is easily moved by kicking or the like, and the flatness is easily impaired.
[0031]
The specific material of the filler 421 is not particularly limited as long as it satisfies the above conditions, but examples thereof include the following Examples 1 to 3.
[Example 1] As a method of coloring a pulverized product of colored foamed rubber, a method of coloring by coloring a raw material directly into a raw material, or a method of coloring the surface when black rubber such as a waste rubber product is used However, the former is more preferable than the latter because there is no possibility of peeling and discoloration and the effect can be maintained.
[Example 2] As a method for coloring a pulverized product of a synthetic resin foam such as urethane and polyethylene, the same method as in Example 1 can be used. The foaming layer absorbs moisture by foaming so as to form open cells, and an effect of suppressing temperature rise is also exhibited.
[Example 3] Natural materials such as wood chips, cork pulverized products, sawdust, rice husks, etc. are originally porous structures, so they have water absorption and are effective in suppressing temperature rise due to their water retention effect. Because it is a natural material, it is inconspicuous even if it is scattered, and it is harmless even if it enters the player's mouth.
[0032]
Even if it is except Example 1-Example 3 mentioned above, if it is an elastic granular material with a true specific gravity smaller than the said lower layer 41 and a low heat absorption rate, it can select arbitrarily and can be used. Moreover, in this embodiment, although the uppermost layer 42 is comprised from the simple substance of the elastic granular material, the mixture mixed with the granular material other than this may be sufficient.
[0033]
In this embodiment, the filler 4 has a two-layer structure of a lower layer 41 and an upper layer 42, but an intermediate layer may be provided between them, as long as it has at least the lower layer 41 and the upper layer (uppermost layer) 42. For example, other modifications are also included in the present invention.
[0034]
The artificial turf structure of the present invention can be applied to various artificial turf grounds such as a baseball stadium, a soccer field, and a tennis court. Moreover, even if it is other artificial turf facilities, as long as the artificial turf property obtained by this invention is applicable, you may select and construct.
[0035]
【Example】
Next, more specific examples of the present invention will be described together with comparative examples. First, an artificial turf with a filler was produced by the following method.
[0036]
(Production of artificial grass with filler)
(1): Artificial turf preparation Polypropylene split yarn 7800dtex (width 12mm) tufted to a base fabric made of polypropylene plain woven fabric with a pile length of 50mm, and then SBR latex rubber is uniformly applied from the back to prevent slipping To produce artificial turf.
(2): Filling of filler The artificial turf prepared in (1) was laid on the base, and the lower layer filler was filled to a thickness of 20 mm. The filler used was a pulverized product of waste tires with a particle size of 0.2 to 3.0 mm accounting for 90% or more of the total. Furthermore, the upper layer filler was filled on the lower layer filler under the conditions of Examples 1 to 5 and Comparative Examples 1 to 4.
{Circle around (3)} Sprinkling For some examples and some comparative examples, the following various evaluations were performed after watering was carried out to such an extent that water did not float on the surface.
[0037]
(Observation of surface temperature)
First, the artificial turf of Examples 1 to 5 and Comparative Examples 1 to 4 was left under the hot sun from 10:00 to 16:00, and the surface temperature was measured.
(Observation of movement of granular materials)
Next, after laying the artificial turf of Examples 1 to 5 and Comparative Examples 1 to 4, the artificial turf was left as it was for one week, and then the state of holding the uppermost granular material was observed. Each evaluation result is shown below.
[0038]
Example 1
[Artificial grass specifications]
Granule material: foam rubber, color: beige (colored), particle size: 0.2 to 3.0 mm is 90% or more, true specific gravity: 0.8, thickness: 10 mm, watering: none [Evaluation Result] Maximum surface temperature : 65 ° C, granular material scattering state: no significant scattering [0039]
Example 2
[Artificial grass specifications]
Granule material: Polyethylene foam, color: white, particle size: 0.2 to 3.0 mm is 90% or more, true specific gravity: 0.3, thickness: 10 mm, watering: none [Evaluation result] Maximum surface temperature: 63 ℃, granular material scattering state: no significant scattering [0040]
Example 3
[Artificial grass specifications]
Granule material: sawdust, color: light brown, particle size: 0.2 to 3.0 mm is 90% or more, true specific gravity: 0.4, thickness: 10 mm, watering: none [evaluation result] Maximum surface temperature: 69 ° C, Particulate matter scattering state: no significant scattering [0041]
Example 4
[Artificial grass specifications]
Granule material: foamed rubber, color: beige (colored), particle size: 0.2 to 3.0 mm is 90% or more, true specific gravity: 0.8, thickness: 10 mm, watering: [Evaluation result] Maximum surface temperature : 58 ° C, particulate scattering state: no significant scattering [0042]
Example 5
[Artificial grass specifications]
Granule material: sawdust, color: light brown, particle size: 0.2 to 3.0 mm is 90% or more, true specific gravity: 0.4, thickness: 10 mm, watering: [evaluation result] Maximum surface temperature: 55 ° C, Particulate matter scattering state: no significant scattering [0043]
<Comparative example 1>
[Artificial grass specifications]
Granule material: Tire pulverized product, color: black, particle size: 0.2 to 3.0 mm is 90% or more, true specific gravity: 1.1, thickness: 10 mm, water spray: none [Evaluation result] Maximum surface temperature: 72 ℃, granular material scattering state: no significant scattering [0044]
<Comparative example 2>
[Artificial grass specifications]
Granule material: foam rubber, color: beige (colored), particle size: 0.2 to 3.0 mm is 90% or more, true specific gravity: 0.8, thickness: 25 mm, watering: none [Evaluation Result] Maximum surface temperature : 65 ° C., granular material scattering state: poor flatness due to scattering [0045]
<Comparative Example 3>
[Artificial grass specifications]
Granule material: foamed rubber, color: beige (colored), particle size: 0.2-3.0 mm is 90% or more, true specific gravity: 0.8, thickness: 3 mm, watering: none [Evaluation result] Maximum surface temperature : 70 ° C, granular material scattering state: lower layer exposure due to scattering
<Comparative example 4>
[Artificial grass specifications]
Granule material: polyethylene foam, color: white, particle size: 0.2 to 3.0 mm is 90% or more, true specific gravity: 0.2, thickness: 10 mm, watering: none [Evaluation result] Maximum surface temperature: 63 ℃, granular material scattering state: poor flatness due to scattering [0047]
For reference, a summary of the results of Examples 1-5 and Comparative Examples 1-4 is shown in Table 1.
[0048]
[Table 1]
Figure 0004556359
[0049]
As a result of comparing and examining Examples and Comparative Examples, the following findings were obtained.
-Compared with the comparative example 1, Examples 1-5 have low surface temperature by the effect of an elastic granular material with a low heat absorption rate.
In Comparative Example 2, the surface temperature is low as in Examples 1 to 5, but the flatness is poor due to scattering because the thickness of the uppermost layer is large.
-Since the filling thickness of the uppermost layer is small, the comparative example 3 has the small effect of suppressing a temperature rise.
In Comparative Example 4, the true specific gravity of the uppermost layer is small, and the flatness is easily impaired by scattering.
In Examples 4 and 5, the water retention effect by watering works, and the temperature rise inhibiting effect is higher despite the same specifications as in Examples 1 and 2.
[0050]
【The invention's effect】
As described above, according to the present invention, in the artificial turf structure in which the filler including the elastic filler is filled between the piles of the artificial turf, the filler has a plurality of types having different colors and / or specific gravity. These granular materials form at least two or more layers, and the uppermost layer contains many specific fillers having a lower true specific gravity and a lower heat absorption rate than the lower side fillers. As a result, scattering of the filler can be effectively suppressed, and an increase in the surface temperature of the artificial turf can be suppressed.
[Brief description of the drawings]
FIG. 1 is a partial cross-sectional view of an artificial turf according to an embodiment of the present invention.
[Explanation of symbols]
DESCRIPTION OF SYMBOLS 1 Artificial grass 2 Base cloth 3 Pile 4 Filler 41 Lower layer 411 Elastic granular material 412 Hard granular material 42 Upper layer (uppermost layer)

Claims (3)

人工芝のパイル間に弾性充填材を含む充填材が充填された人工芝構造体において、
上記充填材は、色および/または比重の異なる複数種類の粒状物を含み、これら粒状物により少なくとも2以上の層が形成され、その下部側充填材は、廃タイヤなどの廃ゴム製品を粒状物とした弾性粒状物を含み、最上層には、上記下部側充填材よりも真比重が小さく、かつ、熱吸収率が低い黒色以外に着色されたゴムチップが多く含まれていることを特徴とする人工芝構造体。
In an artificial turf structure filled with a filler including an elastic filler between piles of artificial turf,
The filler includes a plurality of kinds of granular materials having different colors and / or specific gravity, and at least two or more layers are formed by the granular materials, and the lower-side filler is formed of granular waste rubber products such as waste tires. includes a resilient granules was, the uppermost layer, characterized in that the true specific gravity than the lower side filler is small and rubber chips the heat absorption rate is colored other than low black is contained in a large amount Artificial grass structure.
上記最上層に含まれる上記ゴムチップの真比重は0.3〜1.0であり、かつ、上記最上層の層厚さが5〜20mmである請求項1に記載の人工芝構造体。2. The artificial turf structure according to claim 1, wherein a true specific gravity of the rubber chip included in the uppermost layer is 0.3 to 1.0, and a layer thickness of the uppermost layer is 5 to 20 mm. 上記請求項1または2に記載の人工芝構造体によって構築された人工芝競技場。An artificial turf stadium constructed by the artificial turf structure according to claim 1 or 2 .
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