JP4098993B2 - Waterproof structure for floor slab and waterproof construction method - Google Patents

Waterproof structure for floor slab and waterproof construction method Download PDF

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JP4098993B2
JP4098993B2 JP2002065748A JP2002065748A JP4098993B2 JP 4098993 B2 JP4098993 B2 JP 4098993B2 JP 2002065748 A JP2002065748 A JP 2002065748A JP 2002065748 A JP2002065748 A JP 2002065748A JP 4098993 B2 JP4098993 B2 JP 4098993B2
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Prior art keywords
waterproof
thermoplastic resin
resin
floor slab
waterproof layer
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JP2002065748A
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JP2003261907A (en
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和成 岩本
宣彦 森元
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日鉄コンポジット株式会社
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Description

【0001】
【発明の属する技術分野】
本発明は、道路、橋等の床版上に防水層を配置し、その上にアスファルト舗装する床版用防水構造物およびこの防水構造物による防水施工法に関する。
【0002】
【従来の技術】
道路、橋等の床版はその使用環境において、様々な劣化要因の影響を受けている。道路、橋の床版に与える影響が大きい要因として認識されているものに雨水がある。湿潤状態の床版は乾燥状態のものより疲労寿命が約1/100となることが分っており、床版の疲労寿命に水が大きく影響していることから、床版防水は床版の耐久性を保持するために有効な手段である。
【0003】
床版の上にウレタン樹脂等の塗膜防水材からなる防水層を配置したのち、アスファルト混合物により舗装を行う防水法が注目を集めている。しかしながら、アスファルト混合物は防水層との接着性が不充分であるため、路面にひび割れ等の欠陥が発生するおそれがあった。このような欠陥を防止するために、防水層の上にアスファルト乳剤を塗布する方法が一般的に行われてきた。しかしながら、アスファルト乳剤は防水層との接着性が不充分であり、また、乾燥・固化に長時間を要するという問題があった。
【0004】
また、防水層とアスファルト混合物の接着に、エポキシ系樹脂等の液状の接着剤を用いる方法がある。しかしながら、トラック等の工事車両が通行する場合に、接着剤の硬化前では、タイヤに接着剤が付着するという問題が発生するおそれがある。また、接着剤の硬化後にアスファルト混合物により舗装するのでは、防水層とアスファルト混合物の接着が不十分になるおそれがある。
【0005】
また、特開平9−21113に熱可塑性樹脂粒状物を防水層上に散布し、加熱アスファルト混合物を用いて舗装する方法が提案されている。しかしながら、熱可塑性樹脂粒状物の均一散布がしづらく、また、風により散布した合成樹脂粒状物が飛散し、合成樹脂粒状物がない箇所ができ、部分的に接着の不充分な箇所ができるおそれがある。
【0006】
また、加熱アスファルト混合物により舗装する前に、熱可塑性樹脂をホットメルトアプリケーターにより加熱溶融し、防水層上に塗布し固着する方法もあるが、工事現場ごとにホットメルトアプリケーター等の設備が必要になりコストアップになり好ましくない。
【0007】
【発明が解決しようとする課題】
すなわち、本発明の課題は、従来技術の欠点を有さず、防水層とアスファルト混合物との良好な接着を施工面全面にわたり実現し、安価でかつ作業性のよい床版用防水構造物を提供することおよび防水構造物によるの防水施工法を提供することである。
【0008】
【課題を解決するための手段】
この課題の前者は、防水層;軟化点が60〜150℃である熱可塑性樹脂よりなる熱可塑性樹脂製シート状物または上述の熱可塑性樹脂が付着したまたは上述の熱可塑性樹脂が内在するシート状物;およびアスファルト混合物層を順に床版上に配置した床版用防水構造物によって解決された。
また後者の課題は、床版上に防水層を配置する工程、防水層上に熱可塑性樹脂製シート状物または熱可塑性樹脂が付着したまたは熱可塑性樹脂が内在するシート状物を配置する工程および加熱アスファルト混合物により舗装する工程を含み、使用される熱可塑性樹脂が60〜150℃の軟化点を有することを特徴とする、床版の防水施工法によって解決された。
【0009】
【発明の実施態様】
以下に、本発明を具体的に説明する。図1に示すように、本発明の床版用防水構造物1は、床版2の上に防水層3、熱可塑性樹脂製シート状物または熱可塑性樹脂が付着したまたは熱可塑性樹脂が内在するシート状物4およびアスファルト混合物の層5を順に設けた構成よりなる。
【0010】
本発明の防水施工法の一つの実施態様を示す。まず、床版2の上にエポキシ系樹脂、ウレタン系樹脂等をプライマーとして塗布するのが好ましい。プライマー塗布時にケイ砂等の骨材粒子を散布して、防水層3が床版2とずれ難くするのが好ましい。
【0011】
次に、防水層3をプライマー上に塗布する。本発明で用いる防水層3としては、業界において慣用されるものであり、例えばポリウレタン系樹脂、アクリル系樹脂、アクリルウレタン系樹脂、ポリウレア系樹脂、クロロプレン系樹脂等の樹脂を使用することができる。
防水層3の塗布は、スプレー塗装、はけ塗り、ロール塗装等により行うことができる。
【0012】
続いて、防水層3上にシート状物4を配置する。使用された熱可塑性樹脂が60〜150℃の軟化点を有する、本発明に用いるシート状物4は、施工時に防水層との接着が良好である熱可塑性樹脂製シート状物または熱可塑性樹脂が付着したまたは熱可塑性樹脂が内在するシート状物、例えば熱可塑性樹脂繊維だけでまたは比較的に多量の熱可塑性繊維の混ざった混紡繊維で製造された織物、編み物または不織布;非熱可塑性繊維(ポリプロピレン繊維またはセルロース繊維等)または熱可塑性繊維で製造された織物、編み物または不織布に熱可塑性樹脂を塗布または含浸させたシート状物;熱可塑性樹脂製繊維および/または非熱可塑性繊維を含有するかまたは含有しない専らまたは主に熱可塑性樹脂で製造されたフイルム状物がある。本発明で使用する熱可塑性樹脂または熱可塑性樹脂繊維は、ポリオレフィン、例えば高密度ポリエチレン等、ポリエステル系樹脂、ポリアミド系樹脂、ポリアクリル系樹脂、塩ビ系樹脂等の合成樹脂またはそれらで製造された繊維、好ましいのはポリエステル系樹脂、ポリアミド系樹脂、ポリアクリル系樹脂、塩ビ系樹脂よりなるもの、特に好ましくはポリアミド系樹脂よりなるものである。本発明で言う非熱可塑性繊維は加熱アスファルイトの熱で溶融しない物質よりなる繊維であり、防水層に特に強い補強が望まれる場合に使用するのが有効である。その種類は無機系繊維、例えばセラミックス繊維等;合成樹脂繊維、例えばポリプロピレン繊維、セルロース繊維;天然繊維、例えば綿、麻等である。
フィルム状物は加工が容易であることから安価である点で有利であるが、施工時の通気性を考慮して2mm〜50mm程度の穴のあるものが特に有利である。
織布、編製布および不織布は、目付けが5g/m2 〜500g/m2 のものが、加熱アスファルト混合物による舗装時に、熱可塑性樹脂が織布、不織布のすきまを介して、防水層とアスファルト混合物の接着が良好となることから好ましい。不織布は、織物および編製布に比較して安価である点で有利である。
【0013】
また、本発明のシート状物は、熱可塑性樹脂繊維だけでまたは比較的に多量の熱可塑性繊維の混ざった混紡繊維で製造された織物、編み物または不織布;非熱可塑性繊維または熱可塑性繊維で製造された織物、編み物または不織布に熱可塑性樹脂を塗布または含浸させたシート状物が特に好ましい。
【0014】
本発明に用いる熱可塑性樹脂シート状物4および塗布または含浸用樹脂に用いる熱可塑性樹脂としては、ポリアミド系樹脂、酢酸ビニル系樹脂等の合成樹脂または天然ゴム、あるいはアスファルトを用いることができ、中でもポリアミド系樹脂が接着性が良好であることから好ましい。また、これらの熱可塑性樹脂には、軟化点等の樹脂物性の調整のためにロジンなどの樹脂を配合してもよい。また、ワックス、熱安定剤等の添加物を配合してもよい。
【0015】
熱可塑性樹脂は、舗装前には乾いた状態であり、かつ、加熱アスファルト混合物による舗装時には溶融する必要性があることから、軟化点が60℃〜150℃であることが好ましい。より好ましい軟化点は、80℃から120℃である。
【0016】
熱可塑性樹脂のシート状物への付着または保有量は、使用場所、樹脂の種類等に依存して、100g/m2 〜1kg/m2 が好ましく、100g/m2 未満の場合は接着性が不十分となり、1kg/m2 を超える場合は、コスト高となり好ましくない。
【0017】
織物、編み物または不織布に熱可塑性樹脂を塗布または含浸させる場合には、例えば、塗布ノズルと加熱溶融タンクを有する通常のホットメルトアプリケータを用いて塗布するかまたは加熱溶融槽に織物、編み物または不織布を浸漬させることで含浸させることができる。
【0018】
防水層3上に本発明に従うシート状物4を配置後、例えば、150℃〜180℃に加熱したアスファルト混合物5により舗装する。本発明のアスファルト混合物5としては、通常の舗装用のアスファルトと慣用される骨材との混合物を用いることができる。
【0019】
【発明の効果】
本発明の床版用防水構造物と防水施工法によれば、熱可塑性樹脂粒状物を用いる場合のように、散布時に不均一になるおそれがなく、床版上の防水層とアスファルト混合物との良好な接着が施工面全範囲にわたって実現する。また、工事現場ごとにホットメルトアプリケータ等の設備が不用である。
【0020】
また、従来のアスファルト乳剤を用いる場合のように乾燥、固化の時間が不用で、また、液状接着剤を用いる方法のように、工事車両通行時にタイヤに接着剤が付着するおそれがなく、作業性が良好である。
【0021】
【図面の簡単な説明】
【図1】図1は本発明に従う床版用防水構造物の一実施態様を図示したものである。
【符号の説明】
1・・・床版の防水構造
2・・・床版
3・・・防水層
4・・・シート状物
5・・・アスファルト混合物
[0001]
BACKGROUND OF THE INVENTION
The present invention relates to a waterproof structure for floor slabs in which a waterproof layer is disposed on a floor slab such as a road and a bridge, and asphalt pavement thereon, and a waterproof construction method using the waterproof structure.
[0002]
[Prior art]
Floor slabs such as roads and bridges are affected by various deterioration factors in the usage environment. Rainwater is recognized as a factor that has a large impact on road and bridge decks. Wet floor slabs are known to have a fatigue life of about 1/100 that of dry slabs, and water greatly affects the fatigue life of floor slabs. This is an effective means for maintaining durability.
[0003]
A waterproofing method in which a waterproof layer made of a waterproof coating material such as urethane resin is disposed on a floor slab, and then paved with an asphalt mixture has attracted attention. However, since the asphalt mixture has insufficient adhesion to the waterproof layer, there is a possibility that defects such as cracks may occur on the road surface. In order to prevent such defects, a method of applying an asphalt emulsion on a waterproof layer has been generally performed. However, the asphalt emulsion has problems of insufficient adhesion to the waterproof layer and takes a long time to dry and solidify.
[0004]
There is also a method of using a liquid adhesive such as an epoxy resin for bonding the waterproof layer and the asphalt mixture. However, when a construction vehicle such as a truck passes, there is a possibility that a problem may occur that the adhesive adheres to the tire before the adhesive is cured. In addition, when paving with an asphalt mixture after the adhesive is cured, the waterproof layer and the asphalt mixture may not be sufficiently bonded.
[0005]
Japanese Patent Laid-Open No. 9-21113 proposes a method in which a thermoplastic resin granular material is dispersed on a waterproof layer and paved using a heated asphalt mixture. However, it is difficult to uniformly disperse the thermoplastic resin particles, and the synthetic resin particles dispersed by the wind may be scattered, resulting in the absence of the synthetic resin particles and the possibility of partially insufficient adhesion. There is.
[0006]
In addition, there is a method in which a thermoplastic resin is heated and melted with a hot melt applicator before being paved with a heated asphalt mixture, and then applied onto a waterproof layer and fixed, but equipment such as a hot melt applicator is required at each construction site. This increases the cost and is not preferable.
[0007]
[Problems to be solved by the invention]
That is, the object of the present invention is to provide a waterproof structure for floor slabs that has low defects and good workability without realizing the disadvantages of the prior art, realizing good adhesion between the waterproof layer and the asphalt mixture over the entire construction surface. And providing a waterproof construction method with a waterproof structure.
[0008]
[Means for Solving the Problems]
The former of this subject is a waterproof layer; a sheet made of a thermoplastic resin made of a thermoplastic resin having a softening point of 60 to 150 ° C., or a sheet having the above-mentioned thermoplastic resin attached thereto or containing the above-mentioned thermoplastic resin. And a floor slab waterproof structure in which an asphalt mixture layer is placed on the floor slab in turn.
Further, the latter problem includes a step of disposing a waterproof layer on the floor slab, a step of disposing a sheet of thermoplastic resin or a sheet of thermoplastic resin attached to the waterproof layer or containing the thermoplastic resin, and It has been solved by a waterproof construction method for floor slabs, comprising a step of paving with a heated asphalt mixture, characterized in that the thermoplastic resin used has a softening point of 60-150 ° C.
[0009]
DETAILED DESCRIPTION OF THE INVENTION
The present invention will be specifically described below. As shown in FIG. 1, the waterproof structure 1 for floor slabs of the present invention has a waterproof layer 3, a thermoplastic resin sheet-like material or a thermoplastic resin attached on the floor slab 2, or contains a thermoplastic resin. It consists of the structure which provided the sheet-like material 4 and the layer 5 of the asphalt mixture in order.
[0010]
1 shows one embodiment of the waterproof construction method of the present invention. First, it is preferable to apply an epoxy resin, a urethane resin or the like on the floor slab 2 as a primer. It is preferable to disperse aggregate particles such as silica sand at the time of applying the primer so that the waterproof layer 3 is not easily displaced from the floor slab 2.
[0011]
Next, the waterproof layer 3 is applied on the primer. The waterproof layer 3 used in the present invention is commonly used in the industry. For example, a resin such as a polyurethane resin, an acrylic resin, an acrylic urethane resin, a polyurea resin, or a chloroprene resin can be used.
The waterproof layer 3 can be applied by spray coating, brush coating, roll coating, or the like.
[0012]
Subsequently, the sheet-like material 4 is disposed on the waterproof layer 3. The used thermoplastic resin has a softening point of 60 to 150 ° C., and the sheet-like material 4 used in the present invention is made of a thermoplastic resin sheet-like material or thermoplastic resin that has good adhesion to the waterproof layer during construction. Non-thermoplastic fibers (polypropylene) made of sheet-like material with attached or thermoplastic resin, such as woven fabrics, knitted fabrics or non-woven fabrics made only of thermoplastic resin fibers or blended fibers mixed with a relatively large amount of thermoplastic fibers; Fibers or cellulose fibers) or woven fabrics, knitted fabrics or non-woven fabrics made of thermoplastic fibers coated or impregnated with thermoplastic resin; contain thermoplastic resin fibers and / or non-thermoplastic fibers or There are films that are not contained exclusively or mainly made of thermoplastic resins. The thermoplastic resin or thermoplastic resin fiber used in the present invention is a polyolefin, for example, a high density polyethylene, a polyester resin, a polyamide resin, a polyacrylic resin, a synthetic resin such as a vinyl chloride resin, or a fiber made thereof. Preferred are those made of polyester resin, polyamide resin, polyacrylic resin, and vinyl chloride resin, particularly preferably polyamide resin. The non-thermoplastic fiber referred to in the present invention is a fiber made of a material that is not melted by the heat of heated asphalt, and it is effective to use it when particularly strong reinforcement is desired for the waterproof layer. The types are inorganic fibers such as ceramic fibers; synthetic resin fibers such as polypropylene fibers and cellulose fibers; natural fibers such as cotton and hemp.
A film-like product is advantageous in that it is easy to process and is inexpensive, but a film having a hole of about 2 mm to 50 mm is particularly advantageous in consideration of air permeability during construction.
Woven, knitted fabric and nonwoven fabric having a basis weight that is 5g / m 2 ~500g / m 2 , at the time of paving by heating asphalt mixture, a thermoplastic resin through a woven fabric, the gaps of the nonwoven fabric, a waterproof layer and asphalt mixture This is preferable because of good adhesion. Nonwoven fabrics are advantageous in that they are less expensive than woven and knitted fabrics.
[0013]
In addition, the sheet-like product of the present invention is produced from a woven fabric, a knitted fabric or a non-woven fabric made of only a thermoplastic resin fiber or a blended fiber mixed with a relatively large amount of thermoplastic fiber; non-thermoplastic fiber or thermoplastic fiber. Particularly preferred is a sheet-like material obtained by applying or impregnating a thermoplastic resin to a woven fabric, knitted fabric or non-woven fabric.
[0014]
As the thermoplastic resin sheet 4 used in the present invention and the thermoplastic resin used for the coating or impregnation resin, synthetic resins such as polyamide resins and vinyl acetate resins or natural rubber, or asphalt can be used. Polyamide resins are preferred because of their good adhesiveness. Further, these thermoplastic resins may be blended with a resin such as rosin in order to adjust the resin physical properties such as the softening point. Moreover, you may mix | blend additives, such as a wax and a heat stabilizer.
[0015]
Since the thermoplastic resin is in a dry state before paving and needs to melt when paving with a heated asphalt mixture, the softening point is preferably 60 ° C to 150 ° C. A more preferable softening point is 80 ° C to 120 ° C.
[0016]
The adhesion or holding amount of the thermoplastic resin to the sheet-like material is preferably 100 g / m 2 to 1 kg / m 2 depending on the place of use, the type of resin, etc., and the adhesiveness is less than 100 g / m 2. When it becomes insufficient and exceeds 1 kg / m 2 , the cost is increased, which is not preferable.
[0017]
When a thermoplastic resin is applied to or impregnated into a woven fabric, knitted fabric or nonwoven fabric, for example, it is applied using a normal hot melt applicator having an application nozzle and a heated melting tank, or the woven fabric, knitted fabric or nonwoven fabric is applied to a heated melting bath. Can be impregnated by dipping.
[0018]
After disposing the sheet-like material 4 according to the present invention on the waterproof layer 3, for example, it is paved with an asphalt mixture 5 heated to 150 to 180 ° C. As the asphalt mixture 5 of the present invention, a mixture of ordinary paving asphalt and commonly used aggregate can be used.
[0019]
【The invention's effect】
According to the waterproof structure for floor slabs and the waterproof construction method of the present invention, there is no risk of non-uniformity during spraying, as in the case of using thermoplastic resin particulates, and the waterproof layer on the floor slab and the asphalt mixture Good adhesion is achieved over the entire construction surface. In addition, equipment such as a hot melt applicator is not required for each construction site.
[0020]
In addition, there is no need for drying and solidifying time as in the case of using conventional asphalt emulsion, and there is no risk of the adhesive adhering to the tire when passing through the construction vehicle as in the case of using a liquid adhesive. Is good.
[0021]
[Brief description of the drawings]
FIG. 1 illustrates one embodiment of a waterproof structure for floor slabs according to the present invention.
[Explanation of symbols]
DESCRIPTION OF SYMBOLS 1 ... Waterproof structure of floor slab 2 ... Floor slab 3 ... Waterproof layer 4 ... Sheet-like material 5 ... Asphalt mixture

Claims (2)

防水層;軟化点が60〜150℃である熱可塑性樹脂繊維で製造された織物、編み物または不織物;およびアスファルト混合物層を順に床版上に配置した床版用防水構造物。Waterproof structure for floor slab in which a woven fabric, a knitted fabric or a nonwoven fabric made of thermoplastic resin fibers having a softening point of 60 to 150 ° C., and an asphalt mixture layer are sequentially arranged on the floor slab. 床版上に防水層を配置する工程、防水層上に軟化点が60〜150℃である熱可塑性樹脂繊維で製造された織物、編み物または不織物を配置する工程および加熱アスファルト混合物により舗装する工程を含む、床版の防水施工法。A step of disposing a waterproof layer on the floor slab, a step of disposing a woven fabric, a knitted fabric or a non-woven fabric made of thermoplastic resin fibers having a softening point of 60 to 150 ° C., and a step of paving with a heated asphalt mixture Waterproofing method for floor slabs, including
JP2002065748A 2002-03-11 2002-03-11 Waterproof structure for floor slab and waterproof construction method Expired - Fee Related JP4098993B2 (en)

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JP3956757B2 (en) 2002-04-24 2007-08-08 三菱化学産資株式会社 Floor slab waterproof structure
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