JP2009235308A - Sealing tape with reinforcing thread - Google Patents

Sealing tape with reinforcing thread Download PDF

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JP2009235308A
JP2009235308A JP2008085753A JP2008085753A JP2009235308A JP 2009235308 A JP2009235308 A JP 2009235308A JP 2008085753 A JP2008085753 A JP 2008085753A JP 2008085753 A JP2008085753 A JP 2008085753A JP 2009235308 A JP2009235308 A JP 2009235308A
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water
yarn
soluble
tape
paper
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Kazuo Inomata
一雄 猪股
Osamu Konishi
税 小西
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Nitivy Co Ltd
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Nitivy Co Ltd
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Abstract

<P>PROBLEM TO BE SOLVED: To provide a sealing tape with reinforcing thread with which a trouble of peeling off from a bonded surface scarcely occurs, considering the fact that water-soluble thread has been used as reinforcing thread for a conventionally used sealing tape with reinforcing thread, however, owing to poor dimensional stability of the water-soluble thread against moisture, the trouble of peeling off from the bonded surface has frequently been occurring during storage or after use of the product. <P>SOLUTION: Blended yarns composed of a water-soluble staple fiber and a cellulose-based natural fiber or a cellulose-based regenerated staple fiber are disposed between a sheet of upper paper and a sheet of lower paper as warp yarns and weft yarns, or a sheet of fabric composed of the blend yarn is disposed in between. The bonded article made by bonding the upper paper and the lower paper with a water-soluble or water-dispersed adhesive is used as a base material for the sealing tape. <P>COPYRIGHT: (C)2010,JPO&INPIT

Description

本発明は、補強糸入りガムテープに関し、さらに詳しくは水分散性良好で寸法安定性に優れたガムテープに関する。   The present invention relates to a gummed tape with reinforcing yarn, and more particularly to a gummed tape with good water dispersibility and excellent dimensional stability.

従来、ガムテープの基材として紙が用いられているが、紙だけでは強度が弱く、強度の要求される用途では補強糸で補強した糸入りの紙が基材として用いられている。   Conventionally, paper is used as the base material for the gum tape, but the paper alone has low strength, and in applications where strength is required, paper containing yarn reinforced with reinforcing yarn is used as the base material.

また、資源の再利用を目的としてダンボールなどの梱包材を原料として使用した場合において、ダンボールを溶解再利用しようとする際、ガムテープ材が水やアルカリ液に溶解しない場合、ガムテープを除去してから叩解槽に投入しなければならなかった。そこでこのような手間を省くこと、およびガムテープをも一緒に溶解して資源として利用しようとする試みもなされている。
特許第3082775号
Also, when packing materials such as cardboard are used as raw materials for the purpose of recycling resources, when the cardboard material is not dissolved in water or alkaline solution when attempting to dissolve and reuse the cardboard, the gummed tape must be removed. I had to put it in the beating tank. Therefore, attempts have been made to save such time and to dissolve the gummed tape together and use it as a resource.
Japanese Patent No. 3087775

上述したように、ガムテープ材が水やアルカリ液に溶解するものであれば、ダンボールからテープを剥がすことなく叩解槽に投入できるので手間を省けるという効果があった。しかしながら、ガムテープの補強糸として水溶性糸を用いた場合には、水溶性糸は湿分の存在によって収縮を起こし、テープ全体が縮むという欠点を有していた。テープが縮むことはテープの保管時の湿度管理に注意を払わなければならなかったし、テープとダンボールなどの接合面の形状が崩れたりテープの剥離という現象も生じていた。   As described above, if the gummed tape material is soluble in water or an alkaline solution, there is an effect that labor can be saved because it can be put into the beating tank without peeling the tape from the cardboard. However, when a water-soluble yarn is used as a reinforcing yarn for a gum tape, the water-soluble yarn has a drawback that it shrinks due to the presence of moisture and the entire tape shrinks. When the tape shrinks, attention must be paid to the humidity control during storage of the tape, and the shape of the joining surface of the tape and the corrugated cardboard collapses or the phenomenon of peeling of the tape occurs.

本発明者らは湿分の影響を受けにくく、かつ、水やアルカリ液中でバラバラになりやすい補強糸入りガムテープ材を得るため鋭意研究した結果、補強糸を構成するタテ糸、ヨコ糸に水溶性糸とセルロース系繊維からなる混紡糸を用いること、および該混紡糸をタテ糸、ヨコ糸として配置したメッシュ品もしくは織物を用いることにより、目的とするガムテープ材が得られることを見出し、本発明を完成した。   As a result of earnest research to obtain a gum tape material containing a reinforcing yarn that is not easily affected by moisture and is likely to fall apart in water or an alkaline solution, the present inventors have found that the warp yarn and the horizontal yarn constituting the reinforcing yarn are water-soluble. It has been found that by using a blended yarn composed of yarn and cellulosic fibers, and using a mesh product or woven fabric in which the blended yarn is arranged as a warp yarn or a weft yarn, a desired gum tape material can be obtained. completed.

すなわち、本発明の要旨とするところは、上紙と下紙の間に水溶性ステープルとセルロース系の天然繊維もしくはセルロース系の再生繊維ステープルから構成される混紡糸をタテ糸、ヨコ糸として配置するか、もしくは平織組織の織物を配し、上紙と下紙の貼り合わせ用接着剤として水溶性または水分散性の接着剤を用いて接合してガムテープ用の基材とし、ガムテープ基材の片面に再湿性接着剤層を設けたことを特徴とする補強糸入りガムテープにある。   That is, the gist of the present invention is that a blended yarn composed of a water-soluble staple and a cellulose-based natural fiber or a cellulose-based regenerated fiber staple is disposed between the upper paper and the lower paper as a warp yarn and a weft yarn. Or a plain weave fabric is used, and a water-soluble or water-dispersible adhesive is used as the adhesive for bonding the upper and lower papers to form a base material for the gum tape. The present invention is a gummed tape with a reinforcing yarn, characterized in that a rewetable adhesive layer is provided on the adhesive tape.

本発明によれば、水溶性糸のみからなる糸で補強したガムテープに比べ、湿分に対する寸法安定性に優れているため、保管時のトラブルも少なく、梱包材料として使用した際もテープの収縮による接合面での剥離という現象も起こりにくいガムテープが得られる。   According to the present invention, compared to a gum tape reinforced with a yarn made of only water-soluble yarns, it has superior dimensional stability against moisture, so there are few troubles during storage, and even when used as a packaging material, the tape shrinks. A gummed tape that is less likely to peel off at the joint surface is obtained.

以下に本発明を詳細に説明する。本発明でいうガムテープとは、通常用いられている片面に再湿性接着剤層を設けた紙製のテープのことである。テープは強度が弱いため、補強糸を用いることが多い。補強糸としては通常の天然繊維、再生繊維、合成繊維が用いられている。これらの補強糸を使ったガムテープは十分な強力を有し、湿分に対する寸法安定性にも優れているが、資源として再利用することはできなかった。   The present invention is described in detail below. The gum tape as used in the field of this invention is the paper tape which provided the rewet adhesive layer on the single side normally used. Since the strength of the tape is weak, a reinforcing thread is often used. Ordinary natural fibers, regenerated fibers, and synthetic fibers are used as the reinforcing yarns. Gum tapes using these reinforcing yarns have sufficient strength and excellent dimensional stability against moisture, but cannot be reused as resources.

すなわち、このようなガムテープを梱包材としてダンボールの梱包に用いた場合、ガムテープは水やアルカリ液に溶解しないため、使用済みのダンボールからガムテープを剥がしてから叩解槽に投入しなければならないという面倒な作業を経て初めてダンボールを資源として利用できるのであった。   That is, when such a gum tape is used as a packaging material for packaging cardboard, the gum tape does not dissolve in water or alkaline solution, so it is troublesome that the gum tape must be peeled off from the used cardboard and then put into the beating tank. It was only after work that cardboard could be used as a resource.

そこで考え出されたのが水溶性糸で補強したガムテープである。このガムテープを使用すれば使用済みのダンボールからガムテープを剥がすことなくそのまま叩解槽に投入し、資源として利用できるようになったのである。しかるに、水溶性糸は湿分に対する寸法安定性が悪く、テープが収縮するという現象が起こり、保管中のトラブルやダンボールとの接合面でテープが剥がれるという現象も生じていた。   Thus, a gum tape reinforced with water-soluble yarn was conceived. If this gum tape was used, it was put into the beating tank as it was without peeling the gum tape from the used cardboard, and it became possible to use it as a resource. However, the water-soluble yarn has poor dimensional stability against moisture, causing a phenomenon that the tape contracts, and troubles during storage and a phenomenon that the tape is peeled off at the joint surface with the cardboard.

本発明のガムテープは上記のトラブルをすべて解決する。本発明では補強用織物として水溶性ステープルとセルロース系繊維ステープルとの混紡糸を使用する。本発明で使用する水溶性糸のステープルとしては、80℃以下、好ましくは50℃以下の温度で溶解する糸が使用される。すなわち、叩解処理温度で溶解すればよい。低ケン化のポリビニルアルコール系繊維、カルボキシメチルセルロース繊維、カチオン可染ポリエステル繊維、アルギン酸繊維等が挙げられるが、なかでも工業的に生産されている低ケン化のポリビニルアルコール系繊維が好ましく用いられる。繊維の原料となるポリビニルアルコールのケン化度は80モル%以上、97モル%以下のものが好ましい。低ケン化ポリビニルアルコールは通常の湿式紡糸法、半溶融紡糸法、乾式紡糸法などの方法で糸条化される。得られた糸は所望の長さにカットして使用される。   The gummed tape of the present invention solves all the above problems. In the present invention, a blended yarn of water-soluble staples and cellulosic fiber staples is used as the reinforcing fabric. As the water-soluble yarn staple used in the present invention, a yarn that dissolves at a temperature of 80 ° C. or lower, preferably 50 ° C. or lower is used. Namely, what is necessary is just to melt | dissolve at the beating process temperature. Low saponified polyvinyl alcohol fibers, carboxymethyl cellulose fibers, cationic dyeable polyester fibers, alginic acid fibers, and the like can be mentioned. Among them, industrially produced low saponified polyvinyl alcohol fibers are preferably used. The saponification degree of polyvinyl alcohol as a raw material of the fiber is preferably 80 mol% or more and 97 mol% or less. The low saponified polyvinyl alcohol is formed into a yarn by a method such as a normal wet spinning method, a semi-melt spinning method, or a dry spinning method. The obtained yarn is cut into a desired length and used.

本発明で使用されるセルロース系繊維とは、紙の原料として用いられるものが好ましい。具体的には天然繊維では綿、再生繊維ではレーヨンステープルが挙げられる。水溶性ステープルとセルロース系繊維ステープルの混紡比は重量比で20:80〜80:20が好ましく、より好ましくは40:60〜60:40である。水溶性ステープルの混率が20%未満では湿分に対する寸法安定性は良くなるが水溶性ステープルが溶解した後のセルロース系繊維ステープルのバラけ程度が悪くなるので好ましくなく、80%を超えるとバラけやすくなるが湿分に対する寸法安定性が悪くなるので好ましくない。   The cellulosic fibers used in the present invention are preferably those used as a raw material for paper. Specifically, natural fibers include cotton, and regenerated fibers include rayon staples. The blend ratio of the water-soluble staple and the cellulosic fiber staple is preferably 20:80 to 80:20, more preferably 40:60 to 60:40, by weight. If the mixing ratio of the water-soluble staple is less than 20%, the dimensional stability against moisture is improved. However, the degree of looseness of the cellulosic fiber staple after the water-soluble staple is dissolved is not preferable, and if it exceeds 80%, it is not preferable. Although it becomes easy, it is not preferable because the dimensional stability against moisture is deteriorated.

混紡糸の撚数は製織に耐えられる撚数であればよい。撚数が少ないほど水溶性ステープルが溶解した後のバラけはよくなる。撚数が多いほどバラけにくくなるので撚数は100T/M〜400T/Mが好ましいが特段の制限はない。混紡糸の太さは製織に耐えられるなら細いほど好ましいが、補強の効果が示される強度を持たせる太さにしなければならない。   The number of twists of the blended yarn may be any number that can withstand weaving. The smaller the number of twists, the better the dispersion after the water-soluble staple is dissolved. The larger the number of twists, the more difficult it is to break up. The thickness of the blended yarn is preferably as thin as it can withstand weaving. However, the thickness of the blended yarn must be strong enough to provide the reinforcing effect.

ガムテープに用いられる上紙、下紙は通常ガムテープに用いられている材質のものを用いることができる。また補強糸を間に挟んで上紙と下紙を貼り合わせる接着剤は水溶性接着剤が好ましく用いられる。例示すれば、ポリビニルアルコール、ポリアクリルアミド、ポリアクリル酸、ポリアクリル酸エステル、ポリビニルエーテル、セルロース誘導体、加工デンプン、ニカワ等が挙げられる。   The upper paper and lower paper used for the gum tape can be made of the materials usually used for the gum tape. In addition, a water-soluble adhesive is preferably used as the adhesive that bonds the upper paper and the lower paper with the reinforcing yarn interposed therebetween. For example, polyvinyl alcohol, polyacrylamide, polyacrylic acid, polyacrylic ester, polyvinyl ether, cellulose derivative, modified starch, glue and the like can be mentioned.

本発明で用いられる再湿性接着剤層を構成する接着剤としては、水分散性の良好な接着剤を用いることができる。例示すれば、ポリアクリルアミド、ポリアクリル酸、ポリアクリル酸エステルなどの水溶性樹脂からなる水溶性接着剤が挙げられ、その他にも水分散性のよい酢酸ビニル系接着剤、水溶性ホットメルト樹脂等が挙げられる。   As the adhesive constituting the rewet adhesive layer used in the present invention, an adhesive having good water dispersibility can be used. Examples include water-soluble adhesives made of water-soluble resins such as polyacrylamide, polyacrylic acid, and polyacrylic acid esters, as well as water-dispersible vinyl acetate adhesives, water-soluble hot melt resins, etc. Is mentioned.

本発明で用いる補強糸の形態は、混紡糸を製織した平織のメッシュ組織のものを上紙と下紙の間に挟んで接着剤で一体化するという方法で本発明の目的を達することができる。また該混紡糸をタテ糸、ヨコ糸とし、それをほぼ直角に交差させ、上紙と下紙に挟んで接着剤にて一体化するという方法をも採用できる。   The form of the reinforcing yarn used in the present invention can achieve the object of the present invention by a method in which a plain weave mesh structure woven with blended yarn is sandwiched between an upper paper and a lower paper and integrated with an adhesive. . Further, it is possible to adopt a method in which the blended yarns are warp yarns and weft yarns, intersected at substantially right angles, and sandwiched between upper paper and lower paper and integrated with an adhesive.

以下、実施例にて本発明を説明する。   The present invention will be described below with reference to examples.

(実施例1)
ケン化度93モル%のポリビニルアルコールの33%水溶液を乾式紡糸し、カットして得られた水溶性ステープル50部と綿50部からなる紡績糸を作製した。紡績糸の繊度は200 dtex×3、撚数は上撚/下撚=S300/Z400T/Mであった。この紡績糸を水温20℃から60℃まで変化させて、定長下で片端を固定し、もう一方の糸端は引張試験機のセンサー部に連結させ、温水中に浸漬した際に生じる収縮力の最大値を測定した。
Example 1
A 33% aqueous solution of polyvinyl alcohol having a saponification degree of 93 mol% was dry-spun, and a spun yarn comprising 50 parts of water-soluble staple and 50 parts of cotton obtained by cutting was produced. The fineness of the spun yarn was 200 dtex × 3, and the number of twists was upper twist / lower twist = S300 / Z400 T / M. This spun yarn is changed from a water temperature of 20 ° C. to 60 ° C., one end is fixed under a constant length, and the other yarn end is connected to a sensor part of a tensile tester and contracted when it is immersed in warm water. The maximum value of was measured.

また、この紡績糸を用いて、上記温水中に浸漬した際の収縮率を測定した。測定法は次の通りである。試料の片端に0.01cN/dtexの荷重を掛けて原糸長を測定し、その後荷重をかけたまま、それぞれの各温度の水中に浸漬した際の糸長を測定し、各水温での収縮率を算出した。結果を表1に示した。   Further, using this spun yarn, the shrinkage rate when immersed in the warm water was measured. The measuring method is as follows. Measure the yarn length by applying a load of 0.01 cN / dtex to one end of the sample, then measure the yarn length when immersed in water at each temperature with the load applied, and shrinkage at each water temperature Was calculated. The results are shown in Table 1.

(比較例1)
ケン化度93モル%のポリビニルアルコールの33%水溶液を乾式紡糸して得られた水溶性フィラメントの3本合撚糸を作製した。合撚糸の繊度は200×3dtex、撚数は上撚/下撚=S200/Z300T/Mであった。この合撚糸を水温20℃から60℃まで変化させて、定長下で片端を固定し、もう一方の糸端は引張試験機のセンサー部に連結させ、温水中に浸漬した際に生じる収縮力の最大値を測定した。
(Comparative Example 1)
Three twisted yarns of water-soluble filaments obtained by dry spinning a 33% aqueous solution of polyvinyl alcohol having a saponification degree of 93 mol% were prepared. The fineness of the twisted yarn was 200 × 3 dtex, and the number of twists was upper twist / lower twist = S200 / Z300 T / M. This twisted yarn is changed from a water temperature of 20 ° C. to 60 ° C., one end is fixed under a constant length, the other yarn end is connected to a sensor part of a tensile tester, and the contraction force generated when immersed in warm water. The maximum value of was measured.

また、この合撚糸を用いて、実施例1と同様の方法で収縮率を算出した。結果を表1に示した。   Moreover, shrinkage rate was computed by the method similar to Example 1 using this twisted yarn. The results are shown in Table 1.

表1から、比較例1のポリビニルアルコールの合撚糸はかなり大きな収縮力および収縮率を示すが、実施例1の混紡糸はこれに比べて収縮力も収縮率も小さいものとなることを確認した。   From Table 1, it was confirmed that the twisted yarn and shrinkage rate of the polyvinyl alcohol of Comparative Example 1 showed considerably large shrinkage force and shrinkage rate, but the blended yarn of Example 1 had smaller shrinkage force and shrinkage rate than this.

(実施例2)
実施例1で作製したポリビニルアルコール系水溶性ステープルと綿糸からなる混紡糸を用いて補強糸入りガムテープを作製した。紙巾は50mmであった。補強糸入りガムテープの製法は従来法と同様で、補強糸として上記混紡糸を10mm間隔で斜め格子状の織布をテープ素材でサンドイッチして接合した。テープ片面に粘着剤を塗布して補強糸入りガムテープとした。
(Example 2)
A gummed tape with reinforcing yarn was produced using the blended yarn comprising the polyvinyl alcohol-based water-soluble staple and cotton yarn produced in Example 1. The paper width was 50 mm. The production method of the gummed tape containing the reinforcing yarn was the same as that of the conventional method, and the above-mentioned blended yarn was joined as a reinforcing yarn by sandwiching a woven fabric in an oblique lattice shape with a tape material at intervals of 10 mm. A pressure-sensitive adhesive was applied to one side of the tape to obtain a gummed tape with reinforcing yarn.

段ボール紙を50×250mmに切取り、作製した混紡糸補強ガムテープを150mm貼り合わせ、高湿度下(30℃、80%RH雰囲気下)で1日放置した場合における形態安定性を観察した。   Corrugated cardboard paper was cut to 50 × 250 mm, 150 mm of the prepared mixed-spun reinforced gummed tape was bonded together, and morphological stability was observed when left for 1 day under high humidity (30 ° C., 80% RH atmosphere).

また、上記と同様に段ボールと貼り合わせたテープに水を噴霧して形態安定性を観察した。さらに、下記の温湿度条件に放置し、剥離強力を測定した。水噴霧は霧吹き容器にて20℃の水道水を噴霧した。水噴霧後30分間放置し、その後20℃、65%RHの雰囲気中で1日乾燥させたものを試料とした。剥離強力の測定は、定速引張試験機を使用した。つかみ間隔は200mm、引張速度は100mm/min.であった。測定結果を表2に示した。   In addition, form stability was observed by spraying water onto the tape bonded to the cardboard in the same manner as described above. Furthermore, it was left to stand under the following temperature and humidity conditions, and the peel strength was measured. Water spray sprayed 20 degreeC tap water with the spray container. A sample was allowed to stand for 30 minutes after spraying with water, and then dried for one day in an atmosphere of 20 ° C. and 65% RH. The peel strength was measured using a constant speed tensile tester. The holding interval is 200 mm, and the pulling speed is 100 mm / min. Met. The measurement results are shown in Table 2.

(比較例2)
比較例1で用いたポリビニルアルコール系フィラメント糸からなる合撚糸を実施例2と同様にして補強糸入りガムテープを作製し、実施例2と同様の試験を実施した。結果を表2に示した。
(Comparative Example 2)
A gummed tape with a reinforcing yarn was produced in the same manner as in Example 2 by using the twisted yarn made of the polyvinyl alcohol filament yarn used in Comparative Example 1, and the same test as in Example 2 was performed. The results are shown in Table 2.

表2に示す結果より、比較例2のポリビニルアルコール系フィラメント糸からなる補強糸入りガムテープは、高湿度下で合撚糸が収縮することで接着面が変形し、一部剥離するという不具合が条件によっては認められ、この条件下で放置した比較例2の補強糸入りガムテープは剥離強力も低下した。これに対し、実施例2のポリビニルアルコール系ステープルと綿糸で作製した混紡糸を補強糸とするガムテープは、高湿度下でも外観上の変形は認められず、また、水噴霧→乾燥過程での変形も軽微にとどまり、剥離強力の低下も微少であることを確認した。   From the results shown in Table 2, the rubber tape with reinforcing yarn made of the polyvinyl alcohol filament yarn of Comparative Example 2 has a problem that the bonded surface is deformed and partially peeled due to shrinkage of the twisted yarn under high humidity depending on conditions. It was recognized, and the peel strength of the gummed tape with reinforcing yarn of Comparative Example 2 which was allowed to stand under these conditions was also reduced. On the other hand, the appearance of the gum tape using the blended yarn made of the polyvinyl alcohol staple and cotton yarn of Example 2 as the reinforcing yarn is not observed even under high humidity, and the water spray → deformation during the drying process. It was confirmed that the decrease in peel strength was slight.

(実施例3)
実施例2および比較例2で作製した補強糸入りガムテープを再生可能な段ボールに貼り付け、再生時のパルプ離解性を観察したところ、両方のサンプルともに再生時のパルプの離解性は問題なく、分散性は良好であり、再生可能なパルプ叩解液が調製できた。
(Example 3)
Affixed gum tape with reinforcing yarn produced in Example 2 and Comparative Example 2 was attached to a recyclable corrugated cardboard, and the pulp disintegration property during regeneration was observed. Was good and a recyclable pulp beating liquid could be prepared.

Claims (1)

上紙と下紙の間に水溶性ステープルとセルロース系の天然繊維もしくはセルロース系の再生繊維ステープルから構成される混紡糸をタテ糸、ヨコ糸として配置するか、もしくは平織組織の織物を配し、上紙と下紙の貼り合わせ用接着剤として水溶性または水分散性の接着剤を用いて接合してガムテープ用の基材とし、ガムテープ基材の片面に再湿性接着剤層を設けたことを特徴とする補強糸入りガムテープ。   Between the upper paper and the lower paper, a blended yarn composed of a water-soluble staple and a cellulose-based natural fiber or a cellulose-based recycled fiber staple is arranged as a warp yarn, a weft yarn, or a plain weave fabric is arranged. A base material for a gum tape is bonded by using a water-soluble or water-dispersible adhesive as an adhesive for bonding the upper paper and the lower paper, and a rehumidifying adhesive layer is provided on one side of the gum tape base. Characteristic rubber tape with reinforcing yarn.
JP2008085753A 2008-03-28 2008-03-28 Sealing tape with reinforcing thread Withdrawn JP2009235308A (en)

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2014005687A (en) * 2012-06-26 2014-01-16 Ishikawa Toki Tekkosho:Kk Decorative material for inner wall of house
JP2014152416A (en) * 2013-02-08 2014-08-25 Daio Kakoshi Kogyo Kk Yarn-containing paper sheet

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2014005687A (en) * 2012-06-26 2014-01-16 Ishikawa Toki Tekkosho:Kk Decorative material for inner wall of house
JP2014152416A (en) * 2013-02-08 2014-08-25 Daio Kakoshi Kogyo Kk Yarn-containing paper sheet

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