JP2570968Y2 - Drainage material for civil engineering - Google Patents
Drainage material for civil engineeringInfo
- Publication number
- JP2570968Y2 JP2570968Y2 JP1993069095U JP6909593U JP2570968Y2 JP 2570968 Y2 JP2570968 Y2 JP 2570968Y2 JP 1993069095 U JP1993069095 U JP 1993069095U JP 6909593 U JP6909593 U JP 6909593U JP 2570968 Y2 JP2570968 Y2 JP 2570968Y2
- Authority
- JP
- Japan
- Prior art keywords
- civil engineering
- core material
- drainage
- synthetic resin
- drainage material
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Expired - Fee Related
Links
Landscapes
- Investigation Of Foundation Soil And Reinforcement Of Foundation Soil By Compacting Or Drainage (AREA)
Description
【0001】[0001]
【産業上の利用分野】本考案は、埋め立て等の土木工事
の際に軟弱地盤から余剰の土中水を抜き取るために用い
られる土木用排水材に関するものである。BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a drainage material for civil engineering used for draining excess soil water from soft ground at the time of civil engineering work such as reclamation.
【0002】[0002]
【従来の技術】近年、土中水を効果的に排水して盛土を
補強する地盤改良が盛んに行われるようになってきてい
る。この工法は、一般的には長尺の排水材を土中に水平
又は垂直或いは傾斜させて埋設して、土圧に対して通水
路を確保することで土中の余剰水を排水するものであ
る。2. Description of the Related Art In recent years, ground improvement for reinforcing drainage by effectively draining soil water has been actively performed. In this method, a long drainage material is generally buried horizontally, vertically, or inclined in the soil, and a drainage channel is established to secure excess water in the soil by securing a water passage for earth pressure. is there.
【0003】この排水材には、比較的嵩高な不織布が用
いられることが多いが、埋設時の土圧が高くなると不織
布の繊維間隙が押しつぶされ通水路が封鎖され良好な排
水が行われなくなることがあった。そこで、土圧による
影響を少なくする目的で比較的剛直な波板状や突起部を
有する合成樹脂成型板扱いの排水材も使用されている
が、巻物にできない等の点で長尺資材として取り扱いが
不便で、輸送や施工に非効率なものであった。A relatively bulky nonwoven fabric is often used as the drainage material. However, when the earth pressure at the time of embedding increases, the fiber gap of the nonwoven fabric is crushed, the water passage is closed, and good drainage cannot be performed. was there. In order to reduce the influence of earth pressure, drainage material treated as a synthetic resin molded plate having a relatively rigid corrugated shape or projections is used, but it is treated as a long material because it cannot be rolled. However, it was inconvenient and inefficient for transportation and construction.
【0004】[0004]
【考案が解決しようとする課題】したがって、本考案
は、土中での耐圧性が高く優れた排水機能と補強機能を
有し、且つ長尺物として取り扱いの容易な土木用排水材
を提供しようとするものである。SUMMARY OF THE INVENTION Accordingly, the present invention is to provide a drainage material for civil engineering that has a high pressure resistance in the soil, has an excellent drainage function and a reinforcing function, and is easy to handle as a long object. It is assumed that.
【0005】[0005]
【課題を解決するための手段】本考案の構成は、前後の
両地組織3が合成樹脂製の繊度200〜1,000dr
のモノフィラメントからなる連結糸4で連結された厚み
5〜30mmの立体構造二重編地を芯材とし、この芯材
の両面に多数の通水孔5を形成した厚み50〜200μ
mの合成樹脂製の可撓性シート2を貼合したことを特徴
とする土木用排水材である。According to the structure of the present invention, both front and rear ground structures 3 are made of synthetic resin and have a fineness of 200 to 1,000 dr.
Thickness connected by connecting yarn 4 made of monofilament
A three-dimensional structure double knitted fabric of 5 to 30 mm is used as a core material, and a large number of water passage holes 5 are formed on both surfaces of the core material.
m is a drainage material for civil engineering characterized by laminating a flexible sheet 2 made of synthetic resin having a thickness of m .
【0006】本考案の土木用排水材1の芯材に用いられ
る立体構造二重編地は、従来のダブルラッシェル編機や
モケット織機で編織成することができる。前後の両地組
織3は、任意の組織を組み合わせることが可能であっ
て、例えば、メッシュ状或いは平板状の組み合わせであ
る。また、前後の両地組織3の編成に用いる糸条は、そ
の耐久性や強度の点で合成樹脂製のモノフィラメント、
マルチフィラメント、フラットヤ−ン等が好適にであ
り、鎖糸と挿入糸が異種の糸条であっても差し支えな
い。The three-dimensional structure double knitted fabric used as the core material of the civil engineering drainage material 1 of the present invention can be woven by a conventional double Raschel knitting machine or moquette loom. The front and rear ground structures 3 can be combined with any structure, and are, for example, a mesh or flat plate combination. In addition, the yarn used for knitting the front and rear ground structures 3 is made of a synthetic resin monofilament in terms of durability and strength.
Multifilaments, flat yarns and the like are suitable, and the chain yarn and the inserted yarn may be of different types.
【0007】用いられる合成樹脂は特に限定されるもの
ではないが、連続生産での安定品質と経済的に量産し得
ることにおいて熱可塑性合成樹脂が該当し、例えば、エ
チレン、プロピレン、1−ブテン、4−メチル−1−ペ
ンテン等のα−オレフィンの単独重合体もしくは相互共
重合体またはこれらのα−オレフィンと他のコモノマ−
の共重合体からなるポリオレフィン系樹脂、ポリエステ
ル系樹脂、ポリアミド系樹脂、ポリ塩化ビニル系樹脂、
ポリ塩化ビニリデン−ビニル共重合体樹脂等が挙げられ
る。[0007] The synthetic resin used is not particularly limited, but a thermoplastic synthetic resin corresponds to stable quality in continuous production and economical mass production. Examples thereof include ethylene, propylene, 1-butene, and the like. Homopolymers or mutual copolymers of α-olefins such as 4-methyl-1-pentene or these α-olefins and other comonomers
Polyolefin-based resin consisting of a copolymer, polyester-based resin, polyamide-based resin, polyvinyl chloride-based resin,
And polyvinylidene chloride-vinyl copolymer resin.
【0008】前後の両地組織3は、連結糸4によって連
結され立体構造を呈するものであるが、その間隔や方向
は連結糸の物性を考慮して任意に選択することができ、
垂直または斜め或いは交差などが可能である。そこで掛
け渡しとなる連結糸4は、非吸水性、耐候性や耐久性の
点で合成樹脂製の繊度200〜1,000dr、より好ましくは35
0〜750drのモノフィラメントが用いられる。これは、低
繊度側であると土圧に対して芯材の立体構造が保持され
ずへたりを起こすことで排水性阻害要因になるし、高繊
度側であると編織成効率に影響するものとなる。The front and rear ground structures 3 are connected by a connecting yarn 4 to exhibit a three-dimensional structure. The spacing and direction can be arbitrarily selected in consideration of the physical properties of the connecting yarn.
It can be vertical, diagonal, or intersecting. Therefore, the connecting yarn 4 to be bridged is made of a synthetic resin having a fineness of 200 to 1,000 dr, more preferably 35, in terms of non-water absorption, weather resistance and durability.
A monofilament of 0 to 750dr is used. This is because when the fineness is low, the three-dimensional structure of the core material is not maintained against the earth pressure, causing the drainage to be impeded, and when the fineness is high, the knitting and weaving efficiency is affected. Becomes
【0009】また、用いられる合成樹脂は、特には制限
されるものではないが、モノフィラメントとした際の剛
直性、強靱性、硬度においてポリアミド系樹脂が最も好
ましい。更に厚みに関して、耐圧性及び運搬を含む施工
時の取扱いにおいて5〜30mm厚み、より好ましくは7〜
20mm厚みである。The synthetic resin used is not particularly limited, but a polyamide resin is most preferable in terms of rigidity, toughness and hardness when formed into a monofilament. Further, regarding the thickness, in handling during construction including pressure resistance and transportation, 5 to 30 mm thickness, more preferably 7 to 30 mm
It is 20mm thick.
【0010】芯材の両面には、多数の通水孔5を有する
合成樹脂製の可撓性シ−ト2を貼合するものであるが、
貼合方法は、接着剤、ヒ−トシ−ル、ラミネ−ト、ホッ
トメルトウェブ或いは粉体融着等の手段により積層する
ことができる。可撓性シ−ト2の厚みは、50〜200μmが
好適であり、50μm未満であると強度が弱く土中での破
損が生じやすく、200μmを越えると柔軟性に劣り資材と
して巻回し難いものとなる。A flexible sheet 2 made of a synthetic resin having a large number of water holes 5 is bonded to both sides of the core material.
The laminating method can be performed by means of an adhesive, heat seal, laminate, hot melt web or powder fusion. The thickness of the flexible sheet 2 is preferably from 50 to 200 μm, and if it is less than 50 μm, the strength is weak and it is easy to break in the soil, and if it exceeds 200 μm, it is inferior in flexibility and difficult to wind as a material. Becomes
【0011】可撓性シ−ト2が有する多数の通水孔5
は、シ−ト単体に穿設した後に芯材と貼合しても、芯材
と貼合した後に穿設しても差し支えない。通水孔5の形
状は、丸孔、楕円孔、スリット孔等を問わず、その大き
さは土砂類の粒度に応じて設定されるもので、孔数も任
意である。A large number of water holes 5 of the flexible sheet 2
May be bonded to the core material after perforating the sheet alone, or may be perforated after bonding to the core material. Regardless of the shape of the water passage hole 5, such as a round hole, an elliptical hole, a slit hole, etc., the size is set according to the particle size of the earth and sand, and the number of holes is arbitrary.
【0012】[0012]
【作用】本考案の土木用排水材1は、立体構造二重編地
を芯材に、その両面に透水可能な可撓性シ−ト2を貼合
したものであるから、可撓性シ−ト2の通水孔5から流
入した余剰の土中水が芯材内を通して排水される際に、
芯材が土中における圧力に対して水路となる間隙が確保
されることで良好な排水がおこなえるものである。The drainage material for civil engineering 1 of the present invention is formed by bonding a three-dimensionally double knitted fabric to a core material and adhering flexible sheets 2 which can be permeable to both sides thereof. -When excess soil water flowing from the water hole 5 of the port 2 is drained through the core material,
Good drainage can be performed by securing a gap in which the core becomes a water channel against the pressure in the soil.
【0013】[0013]
【実施例】以下、実施例にて説明を加える。[Embodiment] Hereinafter, an embodiment will be described.
【0014】実施例1 14Gダブルラッシェル機を用いて、前後の両地組織3を
編成するにあたり、鎖糸に総繊度350dr/46fのポリエス
テル製マルチフィラメントを、挿入糸に繊度750drのポ
リプロピレン製フラットヤ−ンを用いて、平板状の平坦
な地組織とした。前後の両地組織間を掛け渡しするため
の連結糸4は、ナイロン6製の繊度500drのモノフィラメ
ントを選択し、図1に示す編成組織で厚み10mmの立体構
造二重編地の芯材を得た。図1中、L1とL5は挿入糸、
L2とL4は鎖糸、L3は連結糸を表す。ここで、芯材の
連結糸4は前後の両地組織間を略垂直に連結したもので
ある。 Example 1 In knitting the front and rear fabrics 3 using a 14G double Raschel machine, a multifilament made of polyester having a total fineness of 350dr / 46f is used for the chain yarn, and a flat yarn made of polypropylene having a fineness of 750dr is used for the inserted yarn. A flat ground texture was obtained by using the As the connecting yarn 4 for bridging between the front and rear fabrics, a monofilament made of nylon 6 and having a fineness of 500dr is selected to obtain a core material of a three-dimensional structure double knitted fabric having a knitting structure shown in Fig. 1 and a thickness of 10mm. Was. In FIG. 1, L1 and L5 are insertion yarns,
L2 and L4 represent chain yarns, and L3 represents a connecting yarn. Here, the connecting yarn 4 of the core material connects the front and rear ground structures substantially vertically.
【0015】次に、厚み150μmのポリプロピレン製のシ
−トに直径約1mmの通水孔5を10mm間隔で千鳥状に穿設
配列したものを可撓性シ−ト2として、エポキシ系接着
剤を部分的に塗布して、芯材の両面に貼合して実施例1
の土木用排水材1とした。実施例1の部分断面を図2に
示す。Next, a flexible sheet 2 in which water holes 5 having a diameter of about 1 mm are arranged in a zigzag pattern at intervals of 10 mm on a polypropylene sheet having a thickness of 150 μm is used as an epoxy adhesive. Example 1 was partially applied and laminated on both sides of a core material.
Of the civil engineering drainage material 1. FIG. 2 shows a partial cross section of the first embodiment.
【0016】実施例2 14Gダブルラッシェル機を用いて、前後の両地組織3を
編成するにあたり、鎖糸に繊度400drの高密度ポリエチ
レン製モノフィラメントを、挿入糸に繊度700drの高密
度ポリエチレン製モノフィラメントを用いて、小さなメ
ッシュ状の地組織とした。前後の両地組織間を掛け渡し
するための連結糸4は、ナイロン6製の繊度450drのモノ
フィラメントを選択し、厚み7mmの立体構造二重編地の
芯材を得た。ここで、連結糸4は前後の両地組織間を襷
掛け状に連結したものである。 Example 2 In knitting the front and rear fabrics 3 using a 14G double Raschel machine, a high-density polyethylene monofilament having a fineness of 400 dr is used for the chain yarn and a high-density polyethylene monofilament having a fineness of 700 dr is used for the insertion yarn. It was used as a small mesh ground structure. As the connecting yarn 4 for bridging between the front and rear fabrics, a monofilament made of nylon 6 having a fineness of 450 dr was selected to obtain a core material of a three-dimensional structure double knitted fabric having a thickness of 7 mm. Here, the connecting yarn 4 connects the front and rear ground structures in a cross-like manner.
【0017】次に、芯材の両面に、低密度ポリエチレン
を溶融押出ラミネ−ト法で50μm厚みで被覆積層して可
撓性シ−ト2をなし、その後に通水孔5として長さ10mm
のスリット孔を20mm間隔で開設して実施例2の土木用排
水材1とした。実施例2の部分断面を図3に示す。Next, a low-density polyethylene is coated on both sides of the core material by a melt extrusion laminating method to a thickness of 50 μm to form a flexible sheet 2.
Were opened at intervals of 20 mm to obtain a civil engineering drainage material 1 of Example 2. FIG. 3 shows a partial cross section of the second embodiment.
【0018】[0018]
【考案の効果】本考案の土木用排水材は、芯材が合成樹
脂製糸条の二重編地であって、その両面に可撓性シ−ト
を貼合したものであるから、排水材として充分な可撓性
を有し、比較的広幅且つ長尺に製造することができ、巻
回可能なため保管、輸送、施工において取り扱いが容易
なものとなる。[Effects of the Invention] The drainage material for civil engineering according to the present invention is a double knitted fabric made of synthetic resin thread, and flexible sheets are bonded to both surfaces thereof. It has sufficient flexibility, can be manufactured to be relatively wide and long, and can be wound, so that it is easy to handle in storage, transportation, and construction.
【0019】また、芯材の立体構造二重編地は、前後の
両地組織を適度の剛性を有する連結糸で連結しているこ
とにより、付与される圧縮弾性で地組織間の空隙は土圧
に対して確保され、可撓性シ−トの通水孔から流れ込む
余剰の土中水の排水不良を防止しうる効果を奏するもの
となる。Further, in the three-dimensional structure double knitted fabric of the core material, since the front and rear ground structures are connected by a connecting yarn having an appropriate rigidity, a gap between the ground structures is provided by the compression elasticity provided. It is ensured against the pressure, and has an effect of preventing poor drainage of excess soil water flowing from the water passage hole of the flexible sheet.
【図1】実施例1で用いた芯材の編成組織図を示す。FIG. 1 shows a knitting structure diagram of a core material used in Example 1.
【図2】実施例1の土木用排水材の部分断面図を示す。FIG. 2 is a partial cross-sectional view of the civil engineering drainage material of Example 1.
【図3】実施例2の土木用排水材の部分断面図を示す。FIG. 3 is a partial sectional view of a civil engineering drainage material according to a second embodiment.
1 土木用排水材 2 可撓性シ−ト 3 地組織 4 連結糸 5 通水孔 L1、L5 挿入糸 L2、L4 鎖糸 L3 連結糸 DESCRIPTION OF SYMBOLS 1 Drainage material for civil engineering 2 Flexible sheet 3 Ground structure 4 Connecting thread 5 Water hole L1, L5 Insert thread L2, L4 Chain thread L3 Connecting thread
Claims (1)
00〜1,000drのモノフィラメントからなる連結
糸4で連結された厚み5〜30mmの立体構造二重編地
を芯材とし、この芯材の両面に多数の通水孔5を形成し
た厚み50〜200μmの合成樹脂製の可撓性シート2
を貼合したことを特徴とする土木用排水材。1. A fabric 2 having a fineness 2 made of a synthetic resin.
A core material is a three-dimensionally structured double knitted fabric having a thickness of 5 to 30 mm connected by a connecting yarn 4 made of a monofilament of 00 to 1,000 dr, and a large number of water holes 5 are formed on both surfaces of the core material.
Flexible sheet 2 made of synthetic resin having a thickness of 50 to 200 μm
A drainage material for civil engineering characterized by laminating.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP1993069095U JP2570968Y2 (en) | 1993-12-24 | 1993-12-24 | Drainage material for civil engineering |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP1993069095U JP2570968Y2 (en) | 1993-12-24 | 1993-12-24 | Drainage material for civil engineering |
Publications (2)
Publication Number | Publication Date |
---|---|
JPH0738226U JPH0738226U (en) | 1995-07-14 |
JP2570968Y2 true JP2570968Y2 (en) | 1998-05-13 |
Family
ID=13392713
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
JP1993069095U Expired - Fee Related JP2570968Y2 (en) | 1993-12-24 | 1993-12-24 | Drainage material for civil engineering |
Country Status (1)
Country | Link |
---|---|
JP (1) | JP2570968Y2 (en) |
Families Citing this family (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
KR102523635B1 (en) * | 2021-04-13 | 2023-04-19 | 조창건 | Water drain for constructing ground |
Family Cites Families (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JP2765327B2 (en) * | 1992-01-14 | 1998-06-11 | 株式会社大林組 | Ground surface drainage method |
-
1993
- 1993-12-24 JP JP1993069095U patent/JP2570968Y2/en not_active Expired - Fee Related
Also Published As
Publication number | Publication date |
---|---|
JPH0738226U (en) | 1995-07-14 |
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