JP5769999B2 - Pavement structure - Google Patents

Pavement structure Download PDF

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JP5769999B2
JP5769999B2 JP2011076167A JP2011076167A JP5769999B2 JP 5769999 B2 JP5769999 B2 JP 5769999B2 JP 2011076167 A JP2011076167 A JP 2011076167A JP 2011076167 A JP2011076167 A JP 2011076167A JP 5769999 B2 JP5769999 B2 JP 5769999B2
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中島 観司
観司 中島
修身 中島
修身 中島
俊夫 杉井
俊夫 杉井
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株式会社シーマコンサルタント
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Description

本発明は、透水性及び保水性を備えた舗装構造に関する。   The present invention relates to a pavement structure having water permeability and water retention.

透水性及び保水性を兼備した舗装構造については、従来、様々な技術が提案されているが、本発明に関連するものとして、例えば、特許文献1記載の「舗装構造」がある。この舗装構造は、土と安定化処理剤との混合物を地盤上に打設して形成された路床と、土とセメント系固化剤と団粒化剤と石炭灰との混合物を路床上に打設して形成された路盤と、路盤上に形成された保水性アスファルト層とを備えている。保水性アスファルト層を通過した水分は路盤に吸い込まれ、路盤中の空隙に浸透してその中に保持されるため、これによって透水性、保水性が得られる。   As for the pavement structure having both water permeability and water retention, various techniques have been conventionally proposed. For example, as a pavement structure related to the present invention, there is a “pave structure” described in Patent Document 1. This pavement structure consists of a roadbed formed by placing a mixture of soil and stabilizing agent on the ground, and a mixture of soil, cement-based solidifying agent, aggregating agent and coal ash on the roadbed. A roadbed formed by placing and a water retention asphalt layer formed on the roadbed are provided. Moisture that has passed through the water-retaining asphalt layer is sucked into the roadbed, penetrates into the voids in the roadbed, and is retained therein, so that water permeability and water retention are obtained.

特開2006−37571号公報JP 2006-37571 A

特許文献1記載の舗装構造を構成する路床は緻密な構造で透水性がなく、路盤中に保持された水分が下方に移動しても路床に浸透することがないので、水分によって路床が損傷されることがない点において優れている。しかしながら、路盤中に保持される水分量には限界があるので、近年、頻発している集中豪雨やゲリラ豪雨などのように、短時間に大量の降雨が発生すると、路盤中に浸透できなくなった雨水が舗装面から溢れたり、流出したりすることがある。   The road bed constituting the pavement structure described in Patent Document 1 has a dense structure and is not permeable to water, and even if moisture held in the roadbed moves downward, it does not penetrate into the road bed. Is superior in that it is not damaged. However, since the amount of water retained in the roadbed is limited, it has become impossible to penetrate into the roadbed if a large amount of rainfall occurs in a short time, such as frequent heavy rains and guerrilla heavy rains in recent years. Rainwater may overflow or run out of the pavement surface.

また、前記舗装構造の場合、保水性を有するのは舗装層及び路盤であるため、夏場などに晴天が長期間続いて、舗装層及び路盤中に保持されていた水分が蒸発してしまうと、舗装面の温度上昇を抑制する効果が低下することがある。   In the case of the pavement structure, since it is the pavement layer and the roadbed that have water retention, fine weather continues in summer for a long time, and the moisture retained in the pavement layer and the roadbed evaporates. The effect which suppresses the temperature rise of a pavement surface may fall.

本発明が解決しようとする課題は、透水性及び保水性に優れ、舗装面の昇温抑制効果を比較的長期間に亘って維持することができる舗装構造を提供することにある。   The problem to be solved by the present invention is to provide a pavement structure that is excellent in water permeability and water retention and can maintain the temperature rise suppression effect of the pavement surface for a relatively long period of time.

本発明の舗装構造は、砂質系土材と固化剤と団粒化剤と水との混練物を地盤上に打設して形成された路床と、砕石と固化剤と団粒化剤と水との混練物を前記路床上に打設して形成された路盤と、ポーラスアスファルトを前記路盤上に打設して形成された舗装層と、を備えたことを特徴とする。   The pavement structure of the present invention includes a road bed formed by placing a kneaded product of a sandy soil material, a solidifying agent, a granulating agent, and water on the ground, and a crushed stone, a solidifying agent, and an aggregating agent. A roadbed formed by placing a kneaded product of water and water on the roadbed, and a pavement layer formed by placing porous asphalt on the roadbed.

砂質系土材と固化剤と団粒化剤と水との混練物を地盤上に打設すると、団粒化剤中のイオンの作用により、砂質系土材の粒子とセメント系固化剤の粒子とが立体的な団粒構造を形成して連続した空隙が発生するとともに、セメント系固化剤の作用によりこれらの空隙が外力で破壊されない程度に固化されるため、透水性及び保水性を兼備した路床が地盤上に形成される。   When a kneaded mixture of a sandy soil material, a solidifying agent, an aggregating agent, and water is placed on the ground, the sandy soil material particles and a cementitious solidifying agent are generated by the action of ions in the aggregating agent. As these particles form solid three-dimensional aggregate structures and continuous voids are generated, and these voids are solidified to the extent that they are not destroyed by external forces due to the action of the cement-based solidifying agent. A combined roadbed is formed on the ground.

また、砕石と固化剤と団粒化剤と水との混練物を路床上にすると、団粒化剤中のイオンの作用により、前述と同様に透水性及び保水性を兼備した路盤が路床上に形成される。さらに、ポーラスアスファルトを路盤上に打設すると、透水性及び保水性を有する舗装層が路盤上に形成される。   Moreover, when a kneaded mixture of crushed stone, solidifying agent, aggregating agent and water is placed on the roadbed, the roadbed having both water permeability and water retention as described above is formed on the roadbed by the action of ions in the aggregating agent. Formed. Furthermore, when porous asphalt is placed on the roadbed, a pavement layer having water permeability and water retention is formed on the roadbed.

従って、舗装面に降った雨水などの水分は、順次、舗装層、路盤及び路床に浸透していき、それぞれの団粒構造に存在する空隙中に保持される結果、従来の舗装構造よりも大量の水分を保持することが可能となるため、優れた透水性及び保水性を発揮する。   Therefore, moisture such as rain water that has fallen on the pavement surface sequentially penetrates the pavement layer, roadbed and roadbed, and is retained in the voids existing in each aggregate structure. Since a large amount of water can be retained, it exhibits excellent water permeability and water retention.

また、舗装層に保持されている水分は、日照によって蒸発する際に気化熱を奪うので、舗装面の昇温を抑制することができる。この場合、舗装層中の水分が蒸発減少すると、その下方に位置する路盤及び路床中の水分が上昇して舗装層中へ移動し、引き続き舗装面からの水分蒸発が継続されるので、昇温抑制効果を比較的長期間に亘って維持することができる。   Moreover, since the water | moisture content currently hold | maintained at the pavement layer takes away the heat of vaporization when it evaporates with sunlight, the temperature rise of a pavement surface can be suppressed. In this case, if the moisture in the pavement layer evaporates and decreases, the moisture in the roadbed and roadbed located below it rises and moves into the pavement layer, and the moisture evaporation from the pavement surface continues. The temperature suppression effect can be maintained over a relatively long period.

一方、前記団粒化剤が、アクリル酸・メタクリル酸ジメチルアミノエチル共重合物のマグネシウム塩とポリエチレンイミンとの複合体からなる高分子化合物を含むものであることが望ましい。   On the other hand, it is desirable that the aggregating agent contains a polymer compound composed of a composite of a magnesium salt of acrylic acid / dimethylaminoethyl methacrylate copolymer and polyethyleneimine.

このような団粒化剤を使用すれば、比較的強固な団粒構造を形成することができるので、舗装構造の耐久性向上に有効である。なお、団粒化剤は特に限定しないが、例えば、有限会社グローバル研究所の商品名「GB−2000」などが好適である。   If such an aggregating agent is used, a relatively strong aggregate structure can be formed, which is effective in improving the durability of the pavement structure. The aggregating agent is not particularly limited, but for example, trade name “GB-2000” of Global Research Institute, Inc. is suitable.

本発明により、透水性及び保水性に優れ、舗装面の昇温抑制効果を比較的長期間に亘って維持することができる舗装構造を提供することができる。   ADVANTAGE OF THE INVENTION By this invention, the pavement structure which is excellent in water permeability and water retention and can maintain the temperature rising inhibitory effect of a pavement surface over a comparatively long period can be provided.

本発明の実施形態である舗装構造を示す垂直断面図である。It is a vertical sectional view showing a pavement structure which is an embodiment of the present invention. 図1に示す舗装構造を構成する路床の施工手順を示す図である。It is a figure which shows the construction procedure of the roadbed which comprises the pavement structure shown in FIG. 図1に示す舗装構造を構成する路盤の施工手順を示す図である。It is a figure which shows the construction procedure of the roadbed which comprises the pavement structure shown in FIG.

図1,図2,図3に示すように、本実施形態の舗装構造10は、砂質系土材20とセメント系固化剤21と団粒化剤22と水23との混練物24を地盤11上に打設して形成された路床12と、砕石25とセメント系固化剤21と団粒化剤22と水23との混練物26を路床12上に打設して形成された路盤13と、ポーラスアスファルトを路盤13上に打設して形成された舗装層14と、を備えている。   As shown in FIGS. 1, 2, and 3, the pavement structure 10 of the present embodiment is obtained by mixing a kneaded material 24 of a sandy soil material 20, a cement-based solidifying agent 21, an aggregating agent 22 and water 23. 11 is formed by placing a kneaded material 26 of the road bed 12 formed on the road 11, the crushed stone 25, the cement solidifying agent 21, the aggregating agent 22, and the water 23 on the road bed 12. A roadbed 13 and a pavement layer 14 formed by placing porous asphalt on the roadbed 13 are provided.

図1,図2に示すように、1立方メートルの砂質系土材20に対し、80〜120kgのセメント系固化剤21、2リットル程度の団粒化剤22及び適量の水23を混合して形成された混練物24を地盤11上に打設して転圧すると、混練物24が固化する過程において、団粒化剤22中のイオンの作用により、砂質系土材20の粒子とセメント系固化剤21の粒子とが立体的な団粒構造を形成して混練物24中に連続した空隙が発生するとともに、セメント系固化剤21の作用によりこれらの空隙が外力で破壊されない程度に固化されるため、透水性及び保水性を兼備した路床12が地盤11上に形成される。   As shown in FIGS. 1 and 2, 80 to 120 kg of cement-based solidifying agent 21, 2 liters of agglomerating agent 22 and an appropriate amount of water 23 are mixed with 1 cubic meter of sandy earth material 20. When the formed kneaded material 24 is cast on the ground 11 and rolled, the particles of the sandy soil material 20 and the cement are caused by the action of ions in the aggregating agent 22 in the process of solidifying the kneaded material 24. The solidification agent 21 particles form a three-dimensional aggregate structure to generate continuous voids in the kneaded material 24, and the cementation solidification agent 21 solidifies to such an extent that these voids are not destroyed by external force. Therefore, the road bed 12 having both water permeability and water retention is formed on the ground 11.

次に、図1,図3に示すように、1立方メートルの砕石25に対し60〜120kgのセメント系固化剤21と、2〜4リットル程度の団粒化剤22と、適量の水23を混合して形成された混練物26を路床12上に打設して転圧すると、混練物26が固化する過程において、団粒化剤22中のイオンの作用により、砕石25とセメント系固化剤21の粒子とが立体的な団粒構造を形成して混練物26中に連続した空隙が発生するとともに、セメント系固化剤21の作用によりこれらの空隙が外力で破壊されない程度に固化されるため、透水性及び保水性を兼備した路盤13が路床12上に形成される。   Next, as shown in FIGS. 1 and 3, 60 to 120 kg of cement-based solidifying agent 21, about 2 to 4 liters of aggregating agent 22, and an appropriate amount of water 23 are mixed with crushed stone 25 of 1 cubic meter. When the kneaded material 26 formed in this manner is placed on the road bed 12 and rolled, the crushed stone 25 and the cement-based solidifying agent are produced by the action of ions in the aggregating agent 22 in the process of solidifying the kneaded material 26. 21 particles form a three-dimensional aggregate structure and continuous voids are generated in the kneaded material 26, and the voids are solidified to the extent that they are not destroyed by the external force by the action of the cement-based solidifying agent 21. A roadbed 13 having both water permeability and water retention is formed on the roadbed 12.

この後、ポーラスアスファルトを路盤13上に打設して固化させると、透水性及び保水性を有する舗装層14が路盤上13上に形成され、舗装構造10が完成する。   Thereafter, when porous asphalt is cast on the roadbed 13 and solidified, a pavement layer 14 having water permeability and water retention is formed on the roadbed 13 and the pavement structure 10 is completed.

図1に示す舗装構造10において、舗装面14aに降った雨水などの水分は、順次、舗装層14、路盤13及び路床12に浸透していき、それぞれの団粒構造に存在する空隙中に保持される。舗装構造10においては、舗装層14、路盤13及び路床12の3つの層が透水性及び保水性を有しているため、従来の舗装構造よりも大量の水分を保持することが可能であり、優れた透水性及び保水性を発揮する。   In the pavement structure 10 shown in FIG. 1, moisture such as rain water that has fallen on the pavement surface 14 a sequentially permeates the pavement layer 14, the roadbed 13, and the road bed 12, and in the voids existing in each aggregate structure. Retained. In the pavement structure 10, since the three layers of the pavement layer 14, the roadbed 13, and the roadbed 12 have water permeability and water retention, it is possible to hold a larger amount of moisture than the conventional pavement structure. Excellent water permeability and water retention.

また、舗装層14に保持されている水分は、日照によって蒸発する際に気化熱を奪うので、舗装面14aの昇温を抑制することができる。この場合、舗装層14中の水分が蒸発減少すると、その下方に位置する路盤13及び路床12中の水分が上昇して舗装層14中へ移動し、引き続き舗装面14aからの水分蒸発が継続されるので、昇温抑制効果を比較的長期間に亘って維持することができる。   Moreover, since the water | moisture content currently hold | maintained at the pavement layer 14 takes away the heat of vaporization when it evaporates with sunlight, the temperature rise of the pavement surface 14a can be suppressed. In this case, when the water content in the pavement layer 14 is reduced by evaporation, the water content in the roadbed 13 and the road bed 12 located below the water layer rises and moves into the pavement layer 14, and the water evaporation from the pavement surface 14 a continues. Therefore, the temperature rise suppression effect can be maintained over a relatively long period.

さらに、団粒化剤22として、アクリル酸・メタクリル酸ジメチルアミノエチル共重合物のマグネシウム塩とポリエチレンイミンとの複合体からなる高分子化合物を含むもの(有限会社グローバル研究所の商品名「GB−2000」)を使用したところ、路床12及び路盤13中に比較的強固な団粒構造が形成され、舗装構造10の耐久性向上に有効であった。   Further, the aggregating agent 22 includes a polymer compound comprising a complex of a magnesium salt of acrylic acid / dimethylaminoethyl methacrylate copolymer and polyethyleneimine (trade name “GB- 2000 ”), a relatively strong aggregate structure was formed in the road bed 12 and the road bed 13, which was effective in improving the durability of the pavement structure 10.

なお、路盤13を形成するための混練物24あるいは路床12を形成するための混練物26の配合比率はいずれも例示であってこれらに限定するものではないので、施工現場の状況に応じて適宜変更することができる。   In addition, since the mixture ratio of the kneaded material 24 for forming the roadbed 13 or the kneaded material 26 for forming the roadbed 12 is only an example and is not limited thereto, it depends on the situation at the construction site. It can be changed as appropriate.

本発明の舗装構造は、車道、歩道などの一般道路あるいは公園、広場、駐車場などの舗装手段として広く利用することができる。   The pavement structure of the present invention can be widely used as a general road such as a roadway and a sidewalk, or a pavement means such as a park, a plaza, and a parking lot.

10 舗装構造
11 地盤
12 路床
13 路盤
14 舗装層
14a 舗装面
20 砂質系土材
21 セメント系固化剤
22 団粒化剤
23 水
24,26 混練物
25 砕石
DESCRIPTION OF SYMBOLS 10 Pavement structure 11 Ground 12 Subgrade 13 Subbase 14 Pavement layer 14a Pavement surface 20 Sandy earth material 21 Cement-based solidifying agent 22 Aggregating agent 23 Water 24, 26 Kneaded material 25 Crushed stone

Claims (2)

砂質系土材とセメント系固化剤と団粒化剤と水との混練物を地盤上に打設して形成された路床と、砕石とセメント系固化剤と団粒化剤と水との混練物を前記路床上に打設して形成された路盤と、ポーラスアスファルトを前記路盤上に打設して形成された舗装層と、を備えたことを特徴とする舗装構造。   A road bed formed by placing a kneaded mixture of sandy soil material, cement solidifying agent, aggregating agent and water on the ground, crushed stone, cement solidifying agent, aggregating agent and water A pavement structure comprising: a roadbed formed by placing the kneaded material on the roadbed; and a pavement layer formed by placing porous asphalt on the roadbed. 前記団粒化剤が、アクリル酸・メタクリル酸ジメチルアミノエチル共重合物のマグネシウム塩とポリエチレンイミンとの複合体からなる高分子化合物を含むものである請求項1記載の舗装構造。   The pavement structure according to claim 1, wherein the aggregating agent comprises a polymer compound composed of a composite of a magnesium salt of acrylic acid / dimethylaminoethyl methacrylate copolymer and polyethyleneimine.
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JP2016079592A (en) * 2014-10-10 2016-05-16 株式会社シーマコンサルタント Pavement structure
JP6203157B2 (en) * 2014-10-15 2017-09-27 中川 武志 Permeable pavement structure
JP2020094352A (en) * 2018-12-11 2020-06-18 太平洋セメント株式会社 Porous pavement
JP2021195721A (en) * 2020-06-09 2021-12-27 株式会社シーマコンサルタント Roadbed construction method and roadbed structure

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