JPH051274A - Water-swellable sealant - Google Patents

Water-swellable sealant

Info

Publication number
JPH051274A
JPH051274A JP3183075A JP18307591A JPH051274A JP H051274 A JPH051274 A JP H051274A JP 3183075 A JP3183075 A JP 3183075A JP 18307591 A JP18307591 A JP 18307591A JP H051274 A JPH051274 A JP H051274A
Authority
JP
Japan
Prior art keywords
rubber
water
organic compound
cellulose
swellable
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.)
Granted
Application number
JP3183075A
Other languages
Japanese (ja)
Other versions
JPH0786194B2 (en
Inventor
Hisao Motomura
久男 本村
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
NIPPON SEAL PACK KK
Original Assignee
NIPPON SEAL PACK KK
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by NIPPON SEAL PACK KK filed Critical NIPPON SEAL PACK KK
Priority to JP3183075A priority Critical patent/JPH0786194B2/en
Publication of JPH051274A publication Critical patent/JPH051274A/en
Publication of JPH0786194B2 publication Critical patent/JPH0786194B2/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Landscapes

  • Building Environments (AREA)
  • Sealing Material Composition (AREA)
  • Compositions Of Macromolecular Compounds (AREA)
  • Polyurethanes Or Polyureas (AREA)

Abstract

PURPOSE:To provide a sealant which is excellent in water-swellability, mechanical strengths, and chemical stability and used for waterproofing, water-stopping, or effecting airtightness in the fields of civil engineering and construction. CONSTITUTION:The sealant is prepd. by compounding a blend of a natural rubber with a synthetic rubber, a urethane prepolymer prepd. by reacting a polyether polyol having hydrophilic groups with an isocyanate compd., and a curing agent consisting of water, an organometallic compd., and cellulose.

Description

【発明の詳細な説明】Detailed Description of the Invention

【0001】[0001]

【産業上の利用分野】本発明は、各種土木・建築分野に
おいて防水・止水あるいは気密保持のために使用する水
膨潤性止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 water-swellable waterproof material used for waterproofing / waterproofing or airtightness in various civil engineering / construction fields.

【0002】[0002]

【従来の技術】従来、シールド工法等で用いられる止水
材としては、特開昭54-7463 号公報等にあるように天然
ゴムあるいはブチルゴムに吸水性物質を加えたものがあ
る。この吸水性物質はポリビニルアルコール(ポリ酢酸
ビニル部分加水分解物を含む)やポリアクリル酸エステ
ル、ポリアクリル酸塩などの吸水性樹脂や水膨潤性ウレ
タン樹脂からなり、必要に応じて、一般に使用される添
加剤、例えば、タール、アスファルト、動植物油脂類、
DOP、DBP等の可塑剤、炭酸カルシウム、クレイ、
タルク、二酸化チタン等の充填剤等や着色剤、抗酸化剤
を含有させる。
2. Description of the Related Art Conventionally, as a water blocking material used in a shield construction method or the like, there is a material obtained by adding a water absorbing material to natural rubber or butyl rubber as disclosed in JP-A-54-7463. This water-absorbing substance consists of water-absorbing resin such as polyvinyl alcohol (including partial hydrolysis product of polyvinyl acetate), polyacrylic acid ester, polyacrylic acid salt, etc., and water-swelling urethane resin. Additives such as tar, asphalt, animal and vegetable oils and fats,
Plasticizer such as DOP, DBP, calcium carbonate, clay,
It contains a filler such as talc and titanium dioxide, a coloring agent, and an antioxidant.

【0003】前記特開昭54-7463 号公報等にある止水材
は、吸水性物質のみからなるものと比べて成形性がよ
く、また、強度が強いのでテープ状あるいは線状等の形
に成形して使用するのに好ましく、ゴムのみからなるも
のに比べて止水性がよく、工事の際の若干の誤差を補填
できる。
The water-blocking material disclosed in JP-A-54-7463 and the like has better moldability than that made of only a water-absorbing substance, and since it has high strength, it has a tape-like or linear shape. It is preferable to be used after molding and has better water-stopping property than that made of only rubber, and can compensate for some errors during construction.

【0004】[0004]

【発明の解決しよとする課題】しかし、前記の吸水性樹
脂を用いたものは止水材自体の膨潤度が低いか、あるい
は海水などの電解質成分を含む溶液に対しては膨潤度が
極端に低下をきたし漏水しやすい欠点があった。また水
膨潤性ウレンタン樹脂を使用したものは耐海水膨潤度の
低下は改善されるものの高度の膨潤性、耐熱強度、化学
的安定性などの面においてはいまだ満足するものは開発
されていない。
However, those using the above water-absorbent resin have a low swelling degree of the water blocking material itself, or have an extremely high swelling degree with respect to a solution containing an electrolyte component such as seawater. However, there was a drawback that water was easily leaked. Further, although the water swelling urethane resin is used, the deterioration of the swelling resistance in seawater is improved, but the one having satisfactory swelling property, heat resistance and chemical stability has not been developed yet.

【0005】本発明の目的は前記従来例の不都合を解消
し、膨潤性、機械的強度、化学的安定性に優れた水膨潤
性止水材を提供することにある。
It is an object of the present invention to provide a water-swellable water-stopping material which eliminates the above-mentioned disadvantages of the prior art and is excellent in swelling property, mechanical strength and chemical stability.

【0006】[0006]

【課題を解決するための手段】本発明者は前記のごとき
欠点を改良するために鋭意検討を重ねた結果、天然ゴム
及び合成ゴムの適当な比率からなる複合ゴムと、親水基
を有したポリエーテルポリオールとイソシアネートから
なるウレンタンプレポリマーとに、水および金属有機化
合物と吸水性充填剤を兼ねたセルロースとを硬化剤とし
て反応・硬化させたことを特徴とする組成物が、膨潤
性、機械的強度、化学的安定性に優れた水膨潤性止水材
として有用であることを見出した。
The present inventor has conducted extensive studies in order to improve the above-mentioned drawbacks, and as a result, a composite rubber having an appropriate ratio of natural rubber and synthetic rubber, and a poly-rubber having a hydrophilic group have been obtained. A composition characterized by reacting and curing, as a curing agent, water and a metal organic compound and cellulose that also functions as a water-absorbent filler, to a urethane prepolymer consisting of an ether polyol and an isocyanate, is swelling, mechanical It has been found that it is useful as a water-swelling waterproofing material having excellent strength and chemical stability.

【0007】すなわち、本発明の膨潤性止水材組成物中
の複合ゴムの成分は、天然ゴムと1種または1種以上の
合成ゴムからなり、これらの比率は天然ゴムと合成ゴム
の重量比が15:85〜98:2 の範囲で好ましくは18:82〜
95:5の範囲であり、前記範囲を越えるかもしくはゴム
単体で使用した場合は耐熱面での良好な機械的強度が得
られない。本発明で用いられる天然ゴムとは、ゴム植物
の樹液から取ったものを指し、合成ゴムはネオプレンゴ
ム、イソプレンゴム、スチレンブタジエンゴム、ブチル
ゴム、クロロプレンゴム、ブタジエンゴム、アクリルニ
トリリル・ブタンジエンゴム、エチレン・プロピレンゴ
ムなどの1種あるいは1種以上からなる。
That is, the component of the composite rubber in the swelling waterproofing material composition of the present invention is composed of natural rubber and one or more synthetic rubbers, and their ratio is the weight ratio of the natural rubber and the synthetic rubber. In the range of 15:85 to 98: 2, preferably 18:82 to
It is in the range of 95: 5, and if it exceeds the above range or if it is used as a rubber alone, good mechanical strength in terms of heat resistance cannot be obtained. Natural rubber used in the present invention refers to those taken from the sap of a rubber plant, synthetic rubber is neoprene rubber, isoprene rubber, styrene butadiene rubber, butyl rubber, chloroprene rubber, butadiene rubber, acrylic nitrylyl butanediene rubber, It is composed of one or more of ethylene / propylene rubber and the like.

【0008】本発明の膨潤性止水材組成物中のウレタン
プレポリマーは、親水基を有したポリエーテルポリオー
ルとイソシアネートとからなり、詳しくはエチレン・プ
ロピレン共重合ポリオールからなるポリエーテルポリオ
ールとT.D.I(2.4−トルエンジイソシアネートと
2.6−トルエンジイソシアネートからなる)が挙げられ
る。
The urethane prepolymer in the swellable waterproof composition of the present invention comprises a polyether polyol having a hydrophilic group and an isocyanate, more specifically, a polyether polyol comprising an ethylene / propylene copolymer polyol and T.I. D. I (2.4-toluene diisocyanate and
2.6-toluene diisocyanate).

【0009】本発明における硬化剤の1つである金属有
機化合物としては、けい素有機化合物、チタン有機化合
物、アルミニウム有機化合物、ジルコニウム有機化合物
などが挙げられる。具体的なけい素有機化合物として
は、アルコキシシラン類(メチルトリエトキシシラン、
メチルトリイソプロポキシシラン、メチルトリブトキシ
シラン、メチルトリフェノキシシラン、フェニルトリエ
トキシシラン、テトラ(2−エチルヘキシル)シリケー
ト、テトラトリデシルシリケートなど)の他、アルコキ
シ基に不飽和基またはエポキシ基をもつシラン類(γ−
メタクリロキシプロピルトリメトキシシラン、γ−グリ
シドキシプロピルトリメトキシシラン、長鎖アルキルト
リアルコキシシランなど)やアルコキシシランイソシア
ネート類などの1種あるいは1種以上のものが挙げられ
る。
Examples of the metal organic compound which is one of the curing agents in the present invention include silicon organic compounds, titanium organic compounds, aluminum organic compounds and zirconium organic compounds. Specific silicon organic compounds include alkoxysilanes (methyltriethoxysilane,
In addition to methyltriisopropoxysilane, methyltributoxysilane, methyltriphenoxysilane, phenyltriethoxysilane, tetra (2-ethylhexyl) silicate, tetratridecylsilicate, etc., silane having an unsaturated group or epoxy group in the alkoxy group. Class (γ-
Methacryloxypropyltrimethoxysilane, γ-glycidoxypropyltrimethoxysilane, long-chain alkyltrialkoxysilane, etc.) and alkoxysilane isocyanates, and the like, or one or more of them.

【0010】チタン有機化合物としては、アルコキシチ
タン類(テトラーi−プロポキシチタン、テトラ−n−
ブトキシチタンなど)、チタンアシレート類(トリ−n
−ブトキシチタンモノステアレート,i−プロポキシチ
タンジメタクリレート−i−ステアレ−トなど)、チタ
ンキレート類(ジヒドロキシビス(ラクトン)チタン、
エチレングリコラトチタンビスジオクチルフォスフェー
トなど)などの1種あるいは1種以上のものが挙げられ
る。
As the titanium organic compound, alkoxy titaniums (tetra-i-propoxy titanium, tetra-n-
Butoxytitanium, etc., titanium acylates (Tri-n)
-Butoxytitanium monostearate, i-propoxytitanium dimethacrylate-i-stearate, etc.), titanium chelates (dihydroxybis (lactone) titanium,
Ethylene glycolato titanium bis dioctyl phosphate, etc.) or one or more kinds thereof.

【0011】アルミニウム有機化合物としては、アルミ
ニウムアルコラート類(アルミニウムイソプロピレー
ト、モノsec-ブトキシアルミニウムジイソプロピレート
など)、アルミニウムキレート類(エチルアセテートア
ルミニウムジイソプロピレート、アルミニウムトリス(
エチルアセトアセテートなど)などの1種あるいは1種
以上のものが挙げられる。
Aluminum organic compounds include aluminum alcoholates (aluminum isopropylate, mono-sec-butoxyaluminum diisopropylate, etc.), aluminum chelates (ethyl acetate aluminum diisopropylate, aluminum tris (
(Ethyl acetoacetate, etc.) and the like.

【0012】ジルコニウム有機化合物としては、アルコ
キシジルコニウム類、例えばジルコニウム−n−ブトキ
シドやアルコキシキレート類、例えばアセチルアセトン
ジルコニウムブトキシドなどの1種あるいは1種以上の
ものが挙げられ、しかも複数の異種金属有機化合物の組
み合わせを妨げるものではない。また前記に掲げたけい
素、チタン、アルミニウム、ジルコニウムの各種金属有
機化合物の配合量はウレタンプレポリマーとセルロース
との総量に対して10%以下が好ましく、20%を越えた場
合はウレタン自体の弾力性が低下し漏水が起こる。
Examples of the zirconium organic compound include one or more of alkoxyzirconiums such as zirconium-n-butoxide and alkoxychelates such as acetylacetone zirconium butoxide, and a plurality of different metal organic compounds. It does not prevent the combination. Further, the compounding amount of various organic metal compounds of silicon, titanium, aluminum and zirconium listed above is preferably 10% or less with respect to the total amount of urethane prepolymer and cellulose, and when 20% is exceeded, the elasticity of urethane itself is increased. And the water leaks.

【0013】セルロースについては、天然パルプ、天然
結晶セルロース、メチルセルロース、ヒドロキシプロピ
ルメチルセルロース、エチルセルロース、カルボキシメ
チルセルロース、エチルヒドロキシエチルセルロース、
ニトロセルロース、セルロースアセテートなどの1種あ
るいは1種以上のものが挙げられる。
Regarding cellulose, natural pulp, natural crystalline cellulose, methyl cellulose, hydroxypropylmethyl cellulose, ethyl cellulose, carboxymethyl cellulose, ethyl hydroxyethyl cellulose,
One or more of nitrocellulose and cellulose acetate may be mentioned.

【0014】この他、ゴム配合物に添加物として使用さ
れる各種充填剤(例えばカーボンブラック、炭酸カルシ
ウムなど)、加硫剤(例えば硫黄、酸化鉛など)、改質
材(熱可塑性樹脂)、着色剤、安定剤、老化防止剤など
の一般的公知の物質を添加できることはいうまでもな
い。
In addition, various fillers (eg, carbon black, calcium carbonate, etc.) used as additives to the rubber compound, vulcanizing agents (eg, sulfur, lead oxide, etc.), modifiers (thermoplastic resins), It goes without saying that generally known substances such as colorants, stabilizers and antiaging agents can be added.

【0015】[0015]

【作用】本発明の組成物はゴム物質、水膨潤ウレタン樹
脂および水、金属有機化合物、セルロース、さらに添加
剤を加え、混練機などで混練、成型した後に加硫、硬化
させるものであるが、従来の止水材においてはゴム成分
と吸水性樹脂もしくは膨潤性ウレタン樹脂とが架橋構造
をとっておらず、長期の耐熱環境試験などで機械的強度
(引っ張り、伸び)や膨潤性能の低下が起こり易いが、
本発明の組成物の構造は、膨潤性ウレタン樹脂が硬化剤
である水分による硬化と同時にセルロース及び金属有機
化合物とも架橋反応を起こし3次元構造をとるものと考
えられ、さらに金属有機化合物がゴム物質とも架橋する
ために機械的、熱的安定性が得られるだけでなく、耐溶
出性の安定化も図れる。
The composition of the present invention is one in which a rubber substance, a water-swelling urethane resin and water, a metal organic compound, cellulose, and an additive are added, and the mixture is kneaded and molded by a kneader, and then vulcanized and cured. In the conventional waterproof material, the rubber component and the water-absorbent resin or swelling urethane resin do not have a cross-linking structure, and mechanical strength (tensileness, elongation) and swelling performance may decrease in a long-term heat resistance environment test. Easy,
The structure of the composition of the present invention is considered to have a three-dimensional structure in which the swelling urethane resin undergoes a crosslinking reaction with cellulose and a metal organic compound at the same time as it is cured by water as a curing agent, and the metal organic compound is a rubber substance. Since they are crosslinked, not only mechanical and thermal stability can be obtained, but also elution resistance can be stabilized.

【0016】[0016]

【実施例】実施例1を挙げて試料作成方法を説明する。
天然ゴム95部とネオプレンゴム5部、エチレンプロピレ
ン共重合のポリオールとトルエンジイソシアネートから
なるウレタンプレポリマー(商品名TP-645P)120 部、硫
黄0.5 部、炭酸カルシウム10部、カーボンブラック10部
と水2部、メチルトリブトキシシラン1部、結晶セルロ
ース(商品名アビセル)30部、さらに添加剤として老化
防止剤0.1 部を加える。
EXAMPLE A method for preparing a sample will be described with reference to Example 1.
Natural rubber 95 parts, neoprene rubber 5 parts, urethane prepolymer (trade name TP-645P) consisting of ethylene propylene copolymer polyol and toluene diisocyanate 120 parts, sulfur 0.5 parts, calcium carbonate 10 parts, carbon black 10 parts and water 2 Parts, 1 part of methyltributoxysilane, 30 parts of crystalline cellulose (trade name Avicel), and 0.1 part of an antioxidant as an additive.

【0017】これをニーダーを用いて100 度Cで混練を
行い必要な形状に成型した後、オーブンにて140 度C-6
0 分加硫・硬化させたものを、下記の試験方法にて膨潤
度、引っ張り強度、伸びおよび実装状態での止水性能試
験を行い評価した。
This is kneaded with a kneader at 100 ° C to form a desired shape, and then 140 ° C-6 in an oven.
The 0 minute vulcanized and cured product was evaluated by performing the swelling degree, the tensile strength, the elongation, and the water stopping performance test in the mounted state by the following test methods.

【0018】以下、実施例2〜10および従来例1〜2、
比較例はゴム成分、金属有機化合物やセルロース、その
他添加剤の種類や量が変更になること以外は、前記実施
例1と同様の方法で試料を作成したものであり、その配
合組成及び試験結果を下記表1に示す。
Hereinafter, Examples 2 to 10 and Conventional Examples 1 and 2,
In Comparative Example, a sample was prepared in the same manner as in Example 1 except that the type and amount of rubber component, metal organic compound, cellulose, and other additives were changed, and their composition and test results. Is shown in Table 1 below.

【0019】試験方法 1)一般物性である引張り強度、引張り伸び率の測定
は、JIS6301に準じる。 2)耐熱性は試料を環境温度70度C×50日加熱後、前記
1)方法の測定を行い初期値に対する引張り強度及び引
張り伸び残率を算出した。 3)水膨潤性能は、長さ50mm×巾20mm×厚み5mmの試料
を純水および3%濃度食塩水中に7日浸漬し試験前後の
体積変化率で算出した。 4)質量変化は、前記3)の寸法試料を70度Cの温水中
に3日間浸漬した後、取り出し50度C×10日間乾燥し試
験前後の重量差から算出した。
Test method 1) The tensile strength and tensile elongation, which are general physical properties, are measured according to JIS6301. 2) Regarding heat resistance, after heating the sample at an ambient temperature of 70 ° C. for 50 days, the measurement of the method 1) was performed to calculate the tensile strength and the residual tensile elongation ratio with respect to the initial values. 3) The water swelling performance was calculated by the volume change rate before and after the test in which a sample having a length of 50 mm, a width of 20 mm, and a thickness of 5 mm was immersed in pure water and 3% concentration saline for 7 days. 4) The change in mass was calculated from the weight difference before and after the test after immersing the dimension sample of 3) in hot water of 70 ° C for 3 days, taking it out and drying it at 50 ° C for 10 days.

【0020】[0020]

【表1】 [Table 1]

【0021】[0021]

【発明の効果】以上述べたように本発明の水膨潤性止水
材は、その組成物がゴム物質、膨潤性ウレタン樹脂、充
填剤とが硬化剤を介して互いに反応し架橋することで3
次元マトリックス構造となり、止水材としての機械的強
度、膨潤性能の面での熱的安定性が得られる他、各分子
中の官能基が互いに結合しあっていることで化学的にも
安定となり溶出が抑えられるものである。
As described above, in the water-swellable water-stopping material of the present invention, the composition of the rubber substance, the swelling urethane resin, and the filler reacts with each other through the curing agent and crosslinks.
It has a dimensional matrix structure, which provides mechanical stability as a waterproofing material and thermal stability in terms of swelling performance, and also becomes chemically stable because the functional groups in each molecule are bonded to each other. The elution is suppressed.

【0022】そして、かかる組成物を止水材として用い
ることにより、止水性能が優れ、漏水することなく、し
かも長期の環境においても止水材の機械的強度の低下が
少なく信頼性の高い気密保持が得られるものである。
By using such a composition as a water blocking material, the water blocking performance is excellent, water leakage does not occur, and the mechanical strength of the water blocking material does not deteriorate even in a long-term environment, and it is highly reliable and airtight. That is what gives retention.

フロントページの続き (51)Int.Cl.5 識別記号 庁内整理番号 FI 技術表示箇所 E04B 1/684 Continuation of front page (51) Int.Cl. 5 Identification code Office reference number FI Technical display area E04B 1/684

Claims (6)

【特許請求の範囲】[Claims] 【請求項1】 天然ゴムと合成ゴムとの複合ゴムと、親
水基を有するポリエーテルポリオールとイソシアネート
からなるウレンタンプレポリマーとに、水および金属有
機化合物とセルロースからなる硬化剤を含有させたこと
を特徴とする水膨潤性止水材組成物。
1. A composite rubber of natural rubber and synthetic rubber, a urethane polyol having a hydrophilic group and an urethane prepolymer made of isocyanate, and a curing agent made of water and a metal organic compound and cellulose contained therein. A water-swellable water blocking material composition characterized by the above.
【請求項2】 合成ゴムが、ネオプレンゴム、イソプレ
ンゴム、ブチルゴム、クロロプレンゴム、アクリル−ニ
トリルブタジエンゴム、エチレン・プロピレンゴム、ブ
タジエンゴム、スチレン・ブタジエンゴム、アクリルゴ
ムの1種あるいは1種以上からなる請求項1記載の水膨
潤性止水材。
2. The synthetic rubber is one or more of neoprene rubber, isoprene rubber, butyl rubber, chloroprene rubber, acrylic-nitrile butadiene rubber, ethylene / propylene rubber, butadiene rubber, styrene / butadiene rubber, and acrylic rubber. The water-swellable water blocking material according to claim 1.
【請求項3】 複合ゴムを構成する天然ゴムと合成ゴム
の比が15:85〜98:2 (重量部)の範囲にある請求項1
記載の水膨潤性止水材。
3. The ratio of natural rubber to synthetic rubber constituting the composite rubber is in the range of 15:85 to 98: 2 (parts by weight).
The water-swellable waterproof material described.
【請求項4】 ウレタンプレポリマーが、アルキレンオ
キサイド共重合のポリエーテルポリオールとイソシアネ
ートからなる請求項1記載の水膨潤性止水材。
4. The water-swellable waterproof material according to claim 1, wherein the urethane prepolymer comprises an alkylene oxide copolymerized polyether polyol and an isocyanate.
【請求項5】 金属有機化合物が、けい素有機化合物、
チタン有機化合物、アルミニウム有機化合物、ジルコニ
ウム有機化合物の1種あるいは1種以上からなる請求項
1記載の水膨潤性止水材。
5. The metal organic compound is a silicon organic compound,
The water-swellable water-stop material according to claim 1, comprising one or more of a titanium organic compound, an aluminum organic compound, and a zirconium organic compound.
【請求項6】 セルロースが、天然パルプ、天然結晶セ
ルロースおよびセルロースエーテル、セルロースエステ
ル、ニトロセルロースの1種あるいは1種以上からなる
請求項1記載の水膨潤性止水材。
6. The water-swellable waterproof material according to claim 1, wherein the cellulose comprises one or more of natural pulp, natural crystalline cellulose and cellulose ether, cellulose ester, and nitrocellulose.
JP3183075A 1991-06-26 1991-06-26 Water-swellable waterproof material Expired - Lifetime JPH0786194B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP3183075A JPH0786194B2 (en) 1991-06-26 1991-06-26 Water-swellable waterproof material

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP3183075A JPH0786194B2 (en) 1991-06-26 1991-06-26 Water-swellable waterproof material

Publications (2)

Publication Number Publication Date
JPH051274A true JPH051274A (en) 1993-01-08
JPH0786194B2 JPH0786194B2 (en) 1995-09-20

Family

ID=16129321

Family Applications (1)

Application Number Title Priority Date Filing Date
JP3183075A Expired - Lifetime JPH0786194B2 (en) 1991-06-26 1991-06-26 Water-swellable waterproof material

Country Status (1)

Country Link
JP (1) JPH0786194B2 (en)

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2008156626A (en) * 2006-11-30 2008-07-10 Sanyo Chem Ind Ltd Method for producing polyalkylene polyol
JP2011207938A (en) * 2010-03-29 2011-10-20 Sanyo Chem Ind Ltd Active hydrogen component for polyurethane resin production
CN107916089A (en) * 2017-11-27 2018-04-17 广东普赛达密封粘胶有限公司 A kind of slow expansion type water-expandable polyurethane fluid sealant and preparation method thereof

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5437199A (en) * 1977-08-29 1979-03-19 Sanyo Chem Ind Ltd Preparation of polyurethane foam
JPS5751778A (en) * 1980-09-12 1982-03-26 Sanyo Chem Ind Ltd Caulking material composition
JPS59164332A (en) * 1983-03-10 1984-09-17 Saitama Gomme Kogyo Kk Production of water-swellable water-stopping agent
JPS61241338A (en) * 1982-06-25 1986-10-27 Dainichi Seika Kogyo Kk Water swellable resin
JPS62256884A (en) * 1986-04-30 1987-11-09 C I Kasei Co Ltd Water-swelling waterproofing material

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5437199A (en) * 1977-08-29 1979-03-19 Sanyo Chem Ind Ltd Preparation of polyurethane foam
JPS5751778A (en) * 1980-09-12 1982-03-26 Sanyo Chem Ind Ltd Caulking material composition
JPS61241338A (en) * 1982-06-25 1986-10-27 Dainichi Seika Kogyo Kk Water swellable resin
JPS59164332A (en) * 1983-03-10 1984-09-17 Saitama Gomme Kogyo Kk Production of water-swellable water-stopping agent
JPS62256884A (en) * 1986-04-30 1987-11-09 C I Kasei Co Ltd Water-swelling waterproofing material

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2008156626A (en) * 2006-11-30 2008-07-10 Sanyo Chem Ind Ltd Method for producing polyalkylene polyol
JP2011207938A (en) * 2010-03-29 2011-10-20 Sanyo Chem Ind Ltd Active hydrogen component for polyurethane resin production
CN107916089A (en) * 2017-11-27 2018-04-17 广东普赛达密封粘胶有限公司 A kind of slow expansion type water-expandable polyurethane fluid sealant and preparation method thereof

Also Published As

Publication number Publication date
JPH0786194B2 (en) 1995-09-20

Similar Documents

Publication Publication Date Title
US4546017A (en) Organopolysiloxane composition curable to an elastomer and use thereof
CA2937570C (en) Air-water barrier silicone coatings
US3986999A (en) Storable organosiloxane compositions for producing fungi-resistant rubbery masses
CN107216845A (en) A kind of environment-friendly type end siloxy group polyurethane sealant and preparation method thereof
CA1160788A (en) Direct adhesion polysiloxane moulding and sealant compositions
EP0326704A2 (en) Polymeric compositions
JPS582988B2 (en) Method for manufacturing swellable adhesive water stop material
JP3597199B2 (en) Polysiloxane aggregate crosslinked by condensation, method for producing the same, and surface-modified filler
CA1195795A (en) Organopolysiloxane molding compositions
JPH051274A (en) Water-swellable sealant
JPS57147570A (en) Swelling water cut-off material
EP0900834A1 (en) Water-swellable elastomer composition
CN109294483B (en) Sealant applied to sealing of underwater optical electronic equipment and preparation method thereof
JP2878089B2 (en) Water expansion rubber waterproof material
JP2002167459A (en) Rubber foam
JPH0149313B2 (en)
JP2835102B2 (en) Water-swellable water-stopping material and method for producing the same
KR940005187B1 (en) Waterproof agent and producing method thereof
JP2627075B2 (en) Water-swellable elastomer composition
JPH0393878A (en) Water-swelling water-sealing material and preparation thereof
JPH11199857A (en) Water-swelling composite sealant
JPH0688068A (en) Water-swellable composition
JPH08319414A (en) Water-swellable urethane composition
SU804670A1 (en) Composition for mastic hermetic and its preparation method
JPS62256884A (en) Water-swelling waterproofing material