JPH0310722B2 - - Google Patents

Info

Publication number
JPH0310722B2
JPH0310722B2 JP16657183A JP16657183A JPH0310722B2 JP H0310722 B2 JPH0310722 B2 JP H0310722B2 JP 16657183 A JP16657183 A JP 16657183A JP 16657183 A JP16657183 A JP 16657183A JP H0310722 B2 JPH0310722 B2 JP H0310722B2
Authority
JP
Japan
Prior art keywords
vinyl chloride
gloves
glove
chloride resin
stockinette
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 - Lifetime
Application number
JP16657183A
Other languages
Japanese (ja)
Other versions
JPS6059107A (en
Inventor
Hiroshi Kondo
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.)
MIE KAGAKU KOGYO KK
Original Assignee
MIE KAGAKU KOGYO 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 MIE KAGAKU KOGYO KK filed Critical MIE KAGAKU KOGYO KK
Priority to JP58166571A priority Critical patent/JPS6059107A/en
Publication of JPS6059107A publication Critical patent/JPS6059107A/en
Publication of JPH0310722B2 publication Critical patent/JPH0310722B2/ja
Granted legal-status Critical Current

Links

Classifications

    • AHUMAN NECESSITIES
    • A41WEARING APPAREL
    • A41DOUTERWEAR; PROTECTIVE GARMENTS; ACCESSORIES
    • A41D19/00Gloves
    • A41D19/015Protective gloves
    • A41D19/01529Protective gloves with thermal or fire protection
    • AHUMAN NECESSITIES
    • A41WEARING APPAREL
    • A41DOUTERWEAR; PROTECTIVE GARMENTS; ACCESSORIES
    • A41D2500/00Materials for garments
    • A41D2500/10Knitted
    • AHUMAN NECESSITIES
    • A41WEARING APPAREL
    • A41DOUTERWEAR; PROTECTIVE GARMENTS; ACCESSORIES
    • A41D2500/00Materials for garments
    • A41D2500/50Synthetic resins or rubbers

Landscapes

  • Physics & Mathematics (AREA)
  • Thermal Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Textile Engineering (AREA)
  • Laminated Bodies (AREA)
  • Gloves (AREA)

Description

【発明の詳細な説明】 本発明は冷凍室や寒冷地に於ける各種作業用及
び自転車やバイク乗車用などに使用される防寒手
袋の製造方法に関するものである。
DETAILED DESCRIPTION OF THE INVENTION The present invention relates to a method for manufacturing cold-protective gloves used for various types of work in freezers and cold regions, as well as for riding bicycles and motorcycles.

従来の防寒手袋としては、皮製の手袋や内側に
布を貼付したゴム製の手袋の他、防水性を有する
外手袋と保温性を有する内手袋とを接着剤を使用
して点接着により貼り合わせた構造のものなどが
使用されている。ところが皮製の手袋は通水性が
あるので水のある所では使用できず、ゴム製の手
袋は通水を防げる代わりに保温性に欠ける欠点が
ある。また外手袋と内手袋とを接着剤を使用して
貼り合わせた構造では、例えば外手袋としてメリ
ヤス編みの生地の表面を塩化ビニル樹脂若しくは
ゴムを被覆した構成のものを、また内手袋として
メリヤス編みの生地にスポンジを被着した構成の
ものを使用して、この内手袋のスポンジの表面に
接着剤を塗布し外手袋に挿入して点接着した構造
や、手型の表面に所望の厚さに塩化ビニル樹脂を
コートして熱処理し塩化ビニル樹脂皮膜を形成
し、その皮膜の表面に接着剤を塗布しその上から
予め縫製されている布製の手袋を被せて接着した
後、反転剥離して製造した構造を有していた。と
ころがこれらの手袋は外手袋と内手袋との貼り合
わせ作業に多くの手間が掛かり、コスト高となる
と共に生産性が上がらず、また貼り合わせに接着
剤を使用するため作業環境が悪く、更に手袋の使
用中に接着部分が剥離して来たり、風合、柔軟性
に難があるなどの欠点を含んでいた。
Conventional winter gloves include leather gloves and rubber gloves with cloth attached to the inside, as well as waterproof outer gloves and heat-retaining inner gloves that are bonded together using adhesive. Those with a combined structure are used. However, leather gloves are water permeable, so they cannot be used in places where there is water, while rubber gloves can prevent water from passing through, but have the disadvantage of lacking heat retention. In addition, in a structure in which an outer glove and an inner glove are bonded together using an adhesive, for example, the outer glove is made of stockinette fabric and the surface is coated with vinyl chloride resin or rubber, and the inner glove is made of stockinette fabric. A structure in which a sponge is coated on the fabric of the inner glove is used, and adhesive is applied to the surface of the sponge of the inner glove, and the sponge is inserted into the outer glove and dot-glued, or the desired thickness is applied to the surface of the hand shape. Coat the surface with vinyl chloride resin and heat treat it to form a vinyl chloride resin film, apply an adhesive to the surface of the film, cover it with pre-sewn cloth gloves, adhere it, and then peel it off. It had a manufactured structure. However, these gloves require a lot of work to attach the outer glove and inner glove, which increases costs and reduces productivity.Also, since adhesive is used for bonding, the work environment is poor, and the gloves It had drawbacks such as the adhesive part peeling off during use and problems with texture and flexibility.

そこで本発明者は前述の如き従来の防寒手袋の
諸欠点に鑑み鋭意研究の結果、本発明に係る防寒
手袋の製造方法を完成したものである。
Therefore, the present inventor has completed intensive research in view of the various drawbacks of the conventional cold-proof gloves as described above, and has completed a method for manufacturing cold-proof gloves according to the present invention.

即ち本発明は内側からメリヤス編みの基布、塩
化ビニル樹脂発泡層、塩化ビニル樹脂若しくウレ
タン樹脂の層より成る三層一体構造を有している
ことを特徴とする防寒手袋であつて、離型紙上に
発泡剤入り塩化ビニルプラスチゾルを塗布し、メ
リヤス編み基布と貼り合わせ、熱処理して作製し
た片面に塩化ビニル樹脂発泡層を有するメリヤス
編みの基布を裁断して手袋を縫製し、その手袋を
メリヤス側を内側としてアルミニウム製手型へ被
せ、その手袋の表面に塩化ビニルプラスチゾル若
しくはウレタン樹脂系エマルジヨンを塗布し熱処
理して表面に塩化ビニル樹脂若しくはウレタン樹
脂の層を有する防寒手袋を製造することを特徴と
する防寒手袋の製造方法を提供するものである。
That is, the present invention provides cold protection gloves having a three-layer integrated structure consisting of a stockinette-knitted base fabric, a polyvinyl chloride resin foam layer, and a polyvinyl chloride resin or urethane resin layer from the inside. A vinyl chloride plastisol containing a foaming agent is applied onto the paper pattern, and the fabric is laminated with a stockinette knitted base fabric and heat treated.The stockinette knitted base fabric, which has a vinyl chloride resin foam layer on one side, is cut and sewn into gloves. A glove is placed over an aluminum hand mold with the stocked side inside, and vinyl chloride plastisol or urethane resin emulsion is applied to the surface of the glove and heat treated to produce cold protection gloves having a layer of vinyl chloride resin or urethane resin on the surface. The present invention provides a method for manufacturing cold protection gloves characterized by the following.

以下、図面に基づいて本発明に係る防寒手袋の
製造方法を説明する。
Hereinafter, a method for manufacturing cold protection gloves according to the present invention will be explained based on the drawings.

第1図は塩化ビニル樹脂発泡層を有するメリヤ
ス編みの基布を製造する工程を説明する図であつ
て図中1はメリヤス編みの基布、2は塩化ビニル
プラスチゾル層、3は離型紙、4は貼り合わせ用
ロール、5は加熱炉、6は冷却部、7は片面に塩
化ビニル樹脂発泡層を有するメリヤス編みの基布
の巻取りを示す。第2図は片面に塩化ビニル樹脂
発泡層を有するメリヤス編みの基布を裁断して縫
製された手袋の一部切断斜視図A及び基布の断面
図B、第3図は本発明に係る防寒手袋の完成品の
一部切断斜視図A及びその断面構造を示す図Bで
ある。
FIG. 1 is a diagram illustrating the process of manufacturing a stockinette knitted base fabric having a vinyl chloride resin foam layer, in which 1 is a stockinette knitted base fabric, 2 is a vinyl chloride plastisol layer, 3 is release paper, and 4 5 shows a laminating roll, 5 a heating furnace, 6 a cooling section, and 7 a winding of a stockinette knitted base fabric having a polyvinyl chloride resin foam layer on one side. Fig. 2 is a partially cutaway perspective view A of a glove cut and sewn from a stockinette knitted base fabric having a polyvinyl chloride resin foam layer on one side, and a cross-sectional view B of the base fabric, and Fig. 3 is a cold protection according to the present invention. FIG. 1 is a partially cutaway perspective view A of a completed glove and a view B showing its cross-sectional structure.

図中、7は片面に塩化ビニル樹脂発泡層8を有
するメリヤス編みの基布であり、塩化ビニル樹脂
発泡層8の厚さとしては1〜5mmの間が好まし
く、またメリヤス編みの基布7の素材としてはナ
イロン、エステル、アクリル、コツトンなどが使
用される。ここで、塩化ビニル樹脂発泡層8の厚
さを1〜5mmが好ましいとしたのは、1mm未満で
は保温効果が小さく、また5mmを超えると物を掴
む感覚が鈍くなり好ましくないからである。9は
上述の如き片面に塩化ビニル樹脂発泡層8を有す
る基布7を裁断縫製して完成した第2図Aに示す
如き手袋の表面に形成される塩化ビニル樹脂若し
くはウレタン樹脂の層であり、この塩化ビニル樹
脂若しくはウレタン樹脂の層9は第2図Aに示す
如き手袋を基布7のメリヤス側を内側としてアル
ミニウム製手型(図示なし)へ被せ、その手袋の
表面に塩化ビニルプラスチゾル若しくはウレタン
樹脂系エマルジヨンを塗布して熱処理することに
より得られる。尚この塩化ビニル樹脂若しくはウ
レタン樹脂の層9の表面には第3図Aに示す滑り
止め加工(斜線部)が施されていることが好まし
い。
In the figure, 7 is a stockinette knitted base fabric having a vinyl chloride resin foam layer 8 on one side, and the thickness of the vinyl chloride resin foam layer 8 is preferably between 1 and 5 mm. Materials used include nylon, ester, acrylic, and cotton. The reason why the thickness of the vinyl chloride resin foam layer 8 is preferably 1 to 5 mm is that if it is less than 1 mm, the heat retention effect will be small, and if it exceeds 5 mm, the sense of gripping something will become dull, which is not preferable. Reference numeral 9 denotes a layer of vinyl chloride resin or urethane resin formed on the surface of the glove as shown in FIG. This layer 9 of vinyl chloride resin or urethane resin is obtained by placing a glove as shown in FIG. It is obtained by applying a resin emulsion and heat-treating it. The surface of the vinyl chloride resin or urethane resin layer 9 is preferably provided with an anti-slip finish (shaded area) as shown in FIG. 3A.

次に、本発明に係る防寒手袋の製造方法につき
実施例を挙げ更に説明する。
Next, the method for manufacturing cold protection gloves according to the present invention will be further explained with reference to Examples.

実施例 1 (1) 片面に厚さ3mmの塩化ビニル樹脂発泡層を有
するコツトン製メリヤス編みの基布を裁断縫製
して第2図Aに示す如き手袋を得る。
Example 1 (1) Gloves as shown in FIG. 2A were obtained by cutting and sewing a cotton stockinette base fabric having a 3 mm thick polyvinyl chloride resin foam layer on one side.

(2) 縫製された手袋をアルミニウム製手型にメリ
ヤス側を内側として被せる。
(2) Place the sewn glove over the aluminum hand pattern with the stocked side inside.

(3) アルミニウム製手型にセツトされた手袋の表
面に下記成分の塩化ビニルプラスチゾルを塗布
する。
(3) Apply vinyl chloride plastisol with the following ingredients to the surface of the glove set in the aluminum hand mold.

塩化ビニルプラスチゾル成分 (重量部) 塩化ビニル樹脂1300〜2000 商品名PX−
NO(住友化学(株)製) 70 塩化ビニル樹脂1300 商品名EX−13(住友化
学(株)製) 30 可塑剤 DOP 120 安定剤 商品名KR−69E−1(共同薬品(株)製)
2 安定剤 商品名EPOXY(新日本理化(株)製) 2 ゲル化剤 商品名アエロジル(日本アエロジル
(株)製)Vis V6 1000〜10000 5 (4) 塩化ビニルプラスチゾルを塗布した手袋を下
記条件で熱処理して塩化ビニル樹脂発泡体の表
面に塩化ビニル樹脂の非発泡層を形成せしめ、
アルミニウム製手型より外して第3図Aに示す
如き防寒手袋を得た。
Vinyl chloride plastisol component (parts by weight) Vinyl chloride resin 1300-2000 Product name PX-
NO (manufactured by Sumitomo Chemical Co., Ltd.) 70 Vinyl chloride resin 1300 Product name EX-13 (manufactured by Sumitomo Chemical Co., Ltd.) 30 Plasticizer DOP 120 Stabilizer Product name KR-69E-1 (manufactured by Kyodo Yakuhin Co., Ltd.)
2 Stabilizer Product name: EPOXY (manufactured by Shin Nihon Rika Co., Ltd.) 2 Gelling agent Product name: Aerosil (Nippon Aerosil)
Co., Ltd.) Vis V 6 1000-10000 5 (4) Heat-treat gloves coated with vinyl chloride plastisol under the following conditions to form a non-foamed layer of vinyl chloride resin on the surface of the vinyl chloride resin foam,
The gloves were removed from the aluminum mold to obtain winter gloves as shown in FIG. 3A.

熱処理条件 半ゲル化 120℃−2分 滑り止め加工 本Cure 190℃−10分 冷 却 実施例 2 (1) 片面に厚さ2mmの塩化ビニル樹脂発泡層を有
するナイロン製メリヤス編みの基布を裁断縫製
して第2図Aに示す如き手袋を得る。
Heat treatment conditions Semi-gelling 120℃ - 2 minutes Non-slip processing Book Cure 190℃ - 10 minutes cooling Example 2 (1) Cutting a nylon stockinette knitted base fabric with a 2mm thick vinyl chloride resin foam layer on one side. A glove as shown in FIG. 2A is obtained by sewing.

(2) 縫製された手袋をアルミニウム製手型にメリ
ヤス側を内側として被せる。
(2) Place the sewn glove over the aluminum hand pattern with the stockinated side inside.

(3) アルミニウム製手型にセツトされた手袋の表
面に下記成分のウレタン樹脂系エマルジヨンを
塗布する。
(3) Apply a urethane resin emulsion containing the following ingredients to the surface of the glove set in the aluminum hand mold.

ウレタン樹脂系エマルジヨン成分 (重量部) ウレタン樹脂系エマルジヨン(大日精化(株)製)
100 促進剤 商品名UM−30(大日精化(株)製) 5 触媒 商品名cat#7(大日精化(株)製) 0.5 増粘剤 商品名WH−10(大日精化(株)製) 10 (4) ウレタン樹脂系エマルジヨンを塗布した手袋
を下記条件で熱処理して塩化ビニル樹脂発泡体
の表面にウレタン樹脂を形成せしめ、アルミニ
ウム製手型より外して第3図Aに示す如き防寒
手袋を得た。
Urethane resin emulsion component (parts by weight) Urethane resin emulsion (manufactured by Dainichiseika Co., Ltd.)
100 Accelerator Product name UM-30 (manufactured by Dainichiseika Chemical Co., Ltd.) 5 Catalyst Product name cat #7 (manufactured by Dainichiseika Chemical Co., Ltd.) 0.5 Thickener Product name WH-10 (manufactured by Dainichiseika Chemical Co., Ltd.) ) 10 (4) Gloves coated with urethane resin emulsion were heat-treated under the following conditions to form urethane resin on the surface of the vinyl chloride resin foam, and removed from the aluminum mold to form cold-protective gloves as shown in Figure 3A. I got it.

熱処理条件 半ゲル化 100℃−10分 滑り止め加工 微細繊維植毛 本Cure 150℃−10分 以上に詳述した如き本発明に係る防寒手袋の製
造方法は、下記の如き効果を有しており、その実
用的、工業的価値の非常に大きなものである。
Heat treatment conditions Semi-gelling 100°C - 10 minutes Anti-slip processing Fine fiber flocked book Cure 150°C - 10 minutes The method for manufacturing cold protection gloves according to the present invention as detailed above has the following effects, It has great practical and industrial value.

防寒手袋としては、 (1) 内側がメリヤス編みの基布であるので手袋へ
の挿入感が優れていること。
As a cold-weather glove, (1) The inside is made of stockinette fabric, so it feels good when inserted into the glove.

(2) 基布の外側に塩化ビニル樹脂発泡層を有して
いるので保温性に優れていること。
(2) It has excellent heat retention as it has a polyvinyl chloride resin foam layer on the outside of the base fabric.

(3) 表面層が塩化ビニル樹脂若しくはウレタン樹
脂の層により覆われているので防水性に優れて
おり、特に表面がウレタン樹脂の場合には低温
でも柔軟性の低下が少ないと共に丈夫であり、
且つ耐油性にも優れているので多方面の分野で
使用することが可能であること。
(3) Since the surface layer is covered with a layer of vinyl chloride resin or urethane resin, it has excellent waterproof properties, and especially when the surface is made of urethane resin, there is little loss of flexibility even at low temperatures and it is durable.
It also has excellent oil resistance, so it can be used in a variety of fields.

(4) 更に塩化ビニル樹脂発泡層の厚さを厚くすれ
ばチエーンソーや搾岩機を使用する際の防振手
袋としても使用可能であること。
(4) Furthermore, by increasing the thickness of the polyvinyl chloride resin foam layer, it can also be used as vibration-proof gloves when using a chainsaw or rock crusher.

製造方法としては (1) 接着剤を一切使用していないので、接着剤の
使用に基づく作業環境の悪さを解消できるこ
と。
The manufacturing method is as follows: (1) Since no adhesive is used, the poor working environment caused by the use of adhesive can be eliminated.

(2) 貼り合わせ作業が無いので工数を大幅に削減
できコストダウンが図れること。
(2) Since there is no bonding work, man-hours can be significantly reduced and costs can be reduced.

【図面の簡単な説明】[Brief explanation of the drawing]

第1図は塩化ビニル樹脂発泡層を有するメリヤ
ス編みの基布を製造する工程を説明する図、第2
図は片面に塩化ビニル樹脂発泡層を有するメリヤ
ス編みの基布を裁断して縫製された手袋の一部切
断斜視図A及び基布の断面図Bであり、第3図は
本発明に係る防寒手袋の完成品の一部切断斜視図
A及びその断面構造を示す図Bである。 1……メリヤス編みの基布、2……塩化ビニル
樹脂発泡層、3……離型紙、4……貼り合わせ用
ロール、5……加熱炉、6……冷却部、7……基
布、8……塩化ビニル樹脂発泡層、9……塩化ビ
ニル樹脂若しくはウレタン樹脂の層。
Figure 1 is a diagram explaining the process of manufacturing a stockinette knitted base fabric having a polyvinyl chloride resin foam layer, Figure 2
The figure is a partially cutaway perspective view A of a glove cut and sewn from a stockinette knitted base fabric having a polyvinyl chloride resin foam layer on one side, and a cross-sectional view B of the base fabric. FIG. 1 is a partially cutaway perspective view A of a completed glove and a view B showing its cross-sectional structure. DESCRIPTION OF SYMBOLS 1... Stockinette knitted base fabric, 2... Vinyl chloride resin foam layer, 3... Release paper, 4... Roll for lamination, 5... Heating furnace, 6... Cooling section, 7... Base fabric, 8... Vinyl chloride resin foam layer, 9... Vinyl chloride resin or urethane resin layer.

Claims (1)

【特許請求の範囲】[Claims] 1 離型紙上に発泡剤入り塩化ビニルプラスチゾ
ルを塗布し、メリヤス編み基布と貼り合わせ、熱
処理して作製した片面に塩化ビニル樹脂発泡層を
有するメリヤス編みの基布を裁断して手袋を縫製
し、その手袋をメリヤス側を内側としてアルミニ
ウム製手型へ被せ、その手袋の表面に塩化ビニル
プラスチゾル若しくはウレタン樹脂系エマルジヨ
ンを塗布し熱処理して表面に塩化ビニル樹脂若し
くはウレタン樹脂の層を有する防寒手袋を製造す
ることを特徴とする防寒手袋の製造方法。
1 Apply vinyl chloride plastisol containing a foaming agent onto release paper, bond it to a stockinette knitted base fabric, and heat treat it.The stockinette knitted base fabric, which has a vinyl chloride resin foam layer on one side, is cut and sewn into gloves. The glove is placed over an aluminum hand mold with the knitted side inside, and the surface of the glove is coated with vinyl chloride plastisol or urethane resin emulsion and heat treated to produce cold protection gloves having a layer of vinyl chloride resin or urethane resin on the surface. A method for manufacturing cold protection gloves.
JP58166571A 1983-09-12 1983-09-12 Winter glove and its production Granted JPS6059107A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP58166571A JPS6059107A (en) 1983-09-12 1983-09-12 Winter glove and its production

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP58166571A JPS6059107A (en) 1983-09-12 1983-09-12 Winter glove and its production

Publications (2)

Publication Number Publication Date
JPS6059107A JPS6059107A (en) 1985-04-05
JPH0310722B2 true JPH0310722B2 (en) 1991-02-14

Family

ID=15833726

Family Applications (1)

Application Number Title Priority Date Filing Date
JP58166571A Granted JPS6059107A (en) 1983-09-12 1983-09-12 Winter glove and its production

Country Status (1)

Country Link
JP (1) JPS6059107A (en)

Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS6414119U (en) * 1987-07-09 1989-01-25
JPH0535266U (en) * 1991-10-11 1993-05-14 丸山工業株式会社 Laminated sheet

Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS50149761A (en) * 1974-05-22 1975-12-01

Family Cites Families (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5392427U (en) * 1977-12-06 1978-07-28

Patent Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS50149761A (en) * 1974-05-22 1975-12-01

Also Published As

Publication number Publication date
JPS6059107A (en) 1985-04-05

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