JPH0823098B2 - Mesh sheet - Google Patents

Mesh sheet

Info

Publication number
JPH0823098B2
JPH0823098B2 JP3061221A JP6122191A JPH0823098B2 JP H0823098 B2 JPH0823098 B2 JP H0823098B2 JP 3061221 A JP3061221 A JP 3061221A JP 6122191 A JP6122191 A JP 6122191A JP H0823098 B2 JPH0823098 B2 JP H0823098B2
Authority
JP
Japan
Prior art keywords
melting point
base material
mesh
point polymer
polymer
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
JP3061221A
Other languages
Japanese (ja)
Other versions
JPH04281040A (en
Inventor
増男 矢吹
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.)
Hagihara Industries Inc
Original Assignee
Hagihara Industries Inc
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 Hagihara Industries Inc filed Critical Hagihara Industries Inc
Priority to JP3061221A priority Critical patent/JPH0823098B2/en
Publication of JPH04281040A publication Critical patent/JPH04281040A/en
Publication of JPH0823098B2 publication Critical patent/JPH0823098B2/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

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  • Treatment Of Fiber Materials (AREA)
  • Control And Safety Of Cranes (AREA)
  • Woven Fabrics (AREA)

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、建築工事現場などで塗
料の飛散防止のために使われる飛散防止ネットやボルト
など落下物を防ぐ安全目的のために使われる安全ネット
等の工事用メッシュシート、また防風ネット、養生用メ
ッシュシート、娯楽施設などの目かくしネットなどに用
いる高強力な縁取りをしたメッシュシートに関するもの
である。
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention is a mesh sheet for construction such as a scattering net and a safety net used for the purpose of safety to prevent falling objects such as bolts, which is used for preventing paint from scattering at construction sites. The present invention also relates to a mesh sheet with a high-strength edging, which is used for a windproof net, a mesh sheet for curing, a blind net for entertainment facilities and the like.

【0002】[0002]

【従来の技術】従来のメッシュシートは、ポリエチレン
のモノフィラメントを織成し、粗メッシュ基材として使
用するのが主であった。これらの縁部は、縫込みロープ
を縫い込み、縁テープを二つ折りにし、ミシン縫製した
ものである。しかしながら、ミシン縫製は、縫糸によっ
てメッシュ基材と縁テープを点で接合するため、メッシ
ュ基材のモノフィラメントの滑りなどにより、接合強力
が小さい難点があった。また、後工程でハトメ金具を取
り付ける際に縫糸を切断し、糸がほつれ、そこから破れ
るという事故も多かった。
2. Description of the Related Art Conventional mesh sheets are mainly made of woven polyethylene monofilament and used as a coarse mesh substrate. These edges are sewn with a sewn rope, the edge tape is folded in two, and sewn with a sewing machine. However, in the sewing machine sewing, since the mesh base material and the edge tape are joined at a point by a sewing thread, there is a problem that the joining strength is small due to sliding of the monofilament of the mesh base material. In addition, there were many accidents where the sewing thread was cut when the eyelet metal fitting was attached in a later process, and the thread was frayed and torn from there.

【0003】[0003]

【発明が解決しようとする課題】本発明は、このような
欠点を補うために考えられたもので、端部の接着強力が
大きく、かつ後工程のハトメ金具を取り付けることによ
る物性の低下も起らないメッシュシートの提供を目的と
する。
SUMMARY OF THE INVENTION The present invention has been conceived in order to make up for such drawbacks, and has a large adhesive strength at the end portion, and the physical properties deteriorate due to the attachment of eyelet metal fittings in the subsequent process. The purpose is to provide a non-mesh sheet.

【0004】[0004]

【課題を解決するための手段】すなわち、メッシュシー
トの端部にこれを被覆する縁テープを二つ折りにし、内
部から熱により溶着することで、メッシュ基材2と縁テ
ープ3を面接着することにより、上記課題を解決しよう
とするものである。より具体的には、高融点ポリマー5
を芯とし、その表面に低融点ポリマー4を有する糸状物
1を経糸、又は緯糸に用いた通気性を有するメッシュ基
材2と、この基材2の端部を被覆する縁テープ3が高融
点ポリマー9の基材に低融点ポリマー8を積層したもの
で構成されて、かつ縁テープ3が低融点ポリマー8層を
内側にして、前記メッシュ基材2の周縁を挾んで溶着し
てなることを特徴とするメッシュシートである。
Means for Solving the Problems That is, the edge tape covering the mesh sheet is folded in two at the end portion of the mesh sheet, and the mesh base material 2 and the edge tape 3 are surface-bonded by heat welding from the inside. Therefore, the above problem is solved. More specifically, high melting point polymer 5
A mesh base material 2 having air permeability as a core and a filament material 1 having a low melting point polymer 4 on its surface as a warp or a weft, and an edge tape 3 covering an end of the base material 2 have a high melting point. It is constituted by laminating the low melting point polymer 8 on the base material of the polymer 9, and the edge tape 3 is welded by sandwiching the peripheral edge of the mesh base material 2 with the low melting point polymer 8 layer inside. A characteristic mesh sheet.

【0005】また、高融点ポリマー5を芯とし、その表
面に低融点ポリマー4を有する糸状物1を経糸、又は緯
糸に用いた通気性を有するメッシュ基材2と、メッシュ
基材2の端部折返し部内に、高融点ポリマー基材9に低
融点ポリマー8が積層された補強テープ6を溶着してな
ることを特徴とするメッシュシートである。
A breathable mesh base material 2 having a high melting point polymer 5 as a core and a filamentous material 1 having a low melting point polymer 4 on its surface as a warp or a weft, and an end portion of the mesh base material 2 The mesh sheet is characterized in that a reinforcing tape 6 in which a low-melting polymer 8 is laminated on a high-melting polymer base material 9 is welded in a folded portion.

【0006】本発明のメッシュ基材2を構成する糸状物
1の高融点ポリマー5としては、例えば、ポリプロピレ
ン,ポリエチレンなどのポリオレフィン系樹脂、あるい
はナイロン等のポリアミド系樹脂,ポリエチレンテレフ
タレートなどポリエステル系樹脂などによって形成さ
れ、低融点ポリマー4としては、高融点ポリマーより融
点が10℃以上低く、好ましくは20℃以上低い樹脂で形成
する。例えばエチレン−酢酸ビニル共重合,エチレン−
アクリル酸共重合体,低密度ポリエチレン,直鎖状ポリ
エチレンなどである。
The high melting point polymer 5 of the filamentous material 1 constituting the mesh base material 2 of the present invention is, for example, a polyolefin resin such as polypropylene or polyethylene, or a polyamide resin such as nylon or a polyester resin such as polyethylene terephthalate. The low melting point polymer 4 is formed of a resin having a melting point lower than that of the high melting point polymer by 10 ° C. or more, preferably 20 ° C. or more. For example, ethylene-vinyl acetate copolymer, ethylene-
Acrylic acid copolymer, low density polyethylene, linear polyethylene, etc.

【0007】メッシュ基材2は、糸状物1を経,緯の両
方又は一方に使い通気性を保つように織成したもので、
平織,綾織,からみ織,などの特殊織物や、編み織りな
ど種々の織物が用いられ、粗目を構成すべく交叉してい
るものであれば、織組織を特に限定するものではない。
また、メッシュ基材2は、糸状物1を経,緯の両方に使
い、経,緯の交叉部で互いの低融点ポリマー4を溶着
し、目ズレを防いだものも使われる。
The mesh base material 2 is formed by weaving the filamentous material 1 for warp and / or weft so as to maintain air permeability.
There are no particular restrictions on the weave structure as long as it is made of a special woven fabric such as a plain weave, a twill weave, or a leno weave, or a variety of woven fabrics such as a knitted weave, which are crossed to form a coarse pattern.
Further, the mesh base material 2 is also used in which the filamentous material 1 is used for both warps and wefts, and the low melting point polymers 4 are welded to each other at the intersections of the warps and wefts to prevent misalignment.

【0008】このように織成されたメッシュ基材2の端
部の縁テープ3、又は補強テープ6の高融点ポリマー基
材9は、高密度ポリエチレン,ポリプロピレンなどのポ
リオレフィン系樹脂などのフラットヤーンの織布また、
ナイロン等のポリアミド系樹脂やポリエステル系樹脂の
フィラメントを織成したものが使用される。また低融点
ポリマー8としては高融点ポリマーより融点が10℃以上
低い樹脂で形成する。例えば低密度ポリエチレン,エチ
レン−酢酸ビニル共重合,エチレン−アクリル酸共重合
体,直鎖状ポリエチレンなどである。
The edge tape 3 at the end of the mesh base material 2 woven in this way or the high melting point polymer base material 9 of the reinforcing tape 6 is made of a flat yarn such as polyolefin resin such as high density polyethylene or polypropylene. Woven cloth also
A woven filament of polyamide resin such as nylon or polyester resin is used. The low melting point polymer 8 is made of a resin having a melting point lower than that of the high melting point polymer by 10 ° C. or more. For example, low density polyethylene, ethylene-vinyl acetate copolymer, ethylene-acrylic acid copolymer, linear polyethylene and the like.

【0009】メッシュ基材1の低融点ポリマー4と縁テ
ープ3又は補強テープ6の低融点ポリマー8は互いに融
点差が少なく、かつ、互いに溶融接着する樹脂を選定す
ることが望ましい。しかし、加熱により、縁テープ3又
は補強テープ6の低融点ポリマー8のみ溶融し、メッシ
ュ基材1の低融点ポリマー4と接着するもの、あるい
は、メッシュ基材1の低融点ポリマー4のみ溶融し、縁
テープ3又は補強テープ6の低融点ポリマーと接着する
ものも同じ目的効果を示す。
It is desirable that the low melting point polymer 4 of the mesh base material 1 and the low melting point polymer 8 of the edge tape 3 or the reinforcing tape 6 have a small difference in melting point from each other, and it is desirable to select a resin that melts and adheres to each other. However, by heating, only the low melting point polymer 8 of the edge tape 3 or the reinforcing tape 6 is melted and adhered to the low melting point polymer 4 of the mesh substrate 1, or only the low melting point polymer 4 of the mesh substrate 1 is melted, The edge tape 3 or the reinforcing tape 6 adhered to the low melting point polymer has the same purpose and effect.

【0010】本発明に係る縁部加工において、熱風で溶
着する場合は、熱風吹出しノズルをメッシュ基材1の端
部に走らせ、その回りを二つ折りした縁テープ3で被覆
し接着するので、メッシュ基材2は通気性に優れたもの
ほど熱風は通り易く、好適である。一方の縁テープ3
は、通気性に劣るものが低融点ポリマー8の溶融に効果
的であり、好適である。
In the edge processing according to the present invention, in the case of welding with hot air, the hot air blowing nozzle is run to the end of the mesh base material 1 and the periphery thereof is covered with the edge tape 3 folded in two and adhered to the mesh. It is preferable that the base material 2 has excellent air permeability because hot air can easily pass therethrough. One edge tape 3
Is preferably inferior in air permeability because it is effective in melting the low melting point polymer 8.

【0011】また、縁部を更に強化する目的で、メッシ
ュ基材1の端部を折返し、その折返し部にロープを入
れ、縁テープ3を熱溶着する方法もある。また、縁部加
工は高周波ウエルダーによって、低融点ポリマーを発
熱、溶着させる方法もとれる。
There is also a method in which the end portion of the mesh base material 1 is folded back, a rope is inserted in the folded back portion, and the edge tape 3 is heat-welded for the purpose of further strengthening the edge portion. Further, the edge processing can be performed by a method of heating and welding the low melting point polymer with a high frequency welder.

【0012】[0012]

【作用】メッシュシートの端部にこれを被覆する縁テー
プを二つ折りにし、又は補強テープ6をメッシュシート
で挾んで、内部から熱により溶着することで、メッシュ
基材2と縁テープ3又は補強テープ6を面接着する。こ
れにより、メッシュ基材2の縁部が縁テープ3又は補強
テープ6と低融点ポリマー同志で容易、かつ確実に接着
一体化され、縁部の強度が大となる。
The mesh base material 2 and the edge tape 3 or the reinforcing tape is formed by folding the edge tape covering the end portion of the mesh sheet in two, or by sandwiching the reinforcing tape 6 with the mesh sheet and welding it by heat from the inside. The tape 6 is surface-bonded. As a result, the edge portion of the mesh base material 2 is easily and surely bonded and integrated with the edge tape 3 or the reinforcing tape 6 by the low melting point polymer, and the edge strength is increased.

【0013】[0013]

【実施例】以下、図面により本発明の実施例を説明す
る。図1(A)(B)に糸状物の構造例を示した。図1(A)の
糸状物1は芯鞘構造モノフィラメントであり、芯鞘が同
心円になっている。このような構造が望ましいが、芯と
鞘が変形していても同じ効果は得られる。また、断面が
完全な円形になっていることも絶対条件でなく、楕円あ
るいは多角形などでも良い。また(B)は(A)の糸状物複数
個を溶融接着したものである。
Embodiments of the present invention will be described below with reference to the drawings. An example of the structure of the filamentous material is shown in FIGS. The filament 1 in FIG. 1 (A) is a monofilament structure monofilament, and the core and sheath are concentric circles. Although such a structure is desirable, the same effect can be obtained even if the core and the sheath are deformed. Further, the fact that the cross section is a perfect circle is not an absolute requirement, and may be an ellipse or a polygon. In addition, (B) is a plurality of filaments (A) melt-bonded.

【0014】図2(A)(B)にメッシュ基材2の例を示し
た。これらは、図1(A)(B)の糸状物1をそれぞれ織成し
たもので、経緯に使った例である。なお、本発明におけ
るメッシュ基材2は単に織成したものに限らず、経緯の
交叉部を接着したものも含まれる。
An example of the mesh substrate 2 is shown in FIGS. 2 (A) and 2 (B). These are woven fabrics of the filamentous material 1 of FIGS. 1 (A) and 1 (B), respectively, and are examples used for the background. In addition, the mesh base material 2 in the present invention is not limited to the woven material, but may include the one in which the crossing portions of the background are adhered.

【0015】図3(A)(B)は縁テープ3を示している。
(A)の縁テープ3は高融点ポリマー繊維3aを織成し、そ
の両側にフィルム3b,3bを貼り合わせたシートである。
これは(B)のように高融点ポリマー9を芯とし、その両
側に低融点ポリマー8を貼り合わせたシートとしてもよ
く、本発明にはこれも含まれる。
3A and 3B show the edge tape 3.
The edge tape 3 of (A) is a sheet in which the high melting point polymer fiber 3a is woven and the films 3b and 3b are attached to both sides thereof.
This may be a sheet in which the high melting point polymer 9 is the core and the low melting point polymer 8 is attached to both sides thereof as in (B), and the present invention also includes this.

【0016】図4は、本発明のメッシュシートの縁部の
構造例を示す図である。 (A1)はメッシュ基材2の端部の折返しのない場合で、縁
テープ3で縁部を挾んで溶着している。(A2)は補強のた
めロープ7をメッシュ基材2端部へ同時に折込んだもの
である。製品としては、20〜50cm間隔で縁部にハトメ金
具を取付ける。 (B1)は、メッシュ基材2の端部を折返した場合で、折り
代幅と縁テープの幅はこの図に限定するものではない。
(B2)は補強のためロープ7をメッシュ基材2の端部を折
返すと同時に折込んだ状態である。製品としては、この
例でも縁部に20〜50cm間隔でハトメ金具を取付ける。 (C1)は、補強テープ6を挾んでメッシュ基材2の端部を
折返した例である。(C2)は、これに更に補強のためロー
プ7を同時に折込んだ状態である。
FIG. 4 is a diagram showing a structural example of the edge portion of the mesh sheet of the present invention. (A 1 ) is a case where the end portion of the mesh base material 2 is not folded, and the edge portion is sandwiched by the edge tape 3 and welded. (A 2 ) is a rope 7 simultaneously folded into the end of the mesh substrate 2 for reinforcement. As a product, eyelet metal fittings are attached to the edges at intervals of 20 to 50 cm. (B 1 ) is a case where the end portion of the mesh base material 2 is folded back, and the folding margin width and the width of the edge tape are not limited to this figure.
(B 2 ) shows a state in which the rope 7 is folded at the same time when the end of the mesh base material 2 is folded back for reinforcement. As a product, eyelet metal fittings are attached to the edges at intervals of 20 to 50 cm in this example as well. (C 1 ) is an example in which the reinforcing tape 6 is sandwiched and the end portion of the mesh base material 2 is folded back. (C 2 ) is a state in which the rope 7 is simultaneously folded in for further reinforcement.

【0017】実施例1 図1(A)に示した糸状物1の高融点ポリマー5が高密度
ポリエチレン(MI:1,融点130℃,軟化点126℃)で、低融
点ポリマー4が低密度ポリエチレン(MI:2,融点109℃,
軟化点87℃)である芯鞘構造モノフィラメントを経糸と
し、また前記芯鞘構造モノフィラメントを並べて接着し
た図1(B)の芯鞘構造モノフィラメント連糸を緯糸と
し、経糸密度26本/inch,緯糸密度21本/inchで、スルー
ザー織機にて織成し、メッシュ基材2とした。また、高
密度ポリエチレン(MI:0.7,融点129℃,軟化点124℃)の
フラットヤーン(1000d,強度5.5g/d)を密度、経10本/in
ch,緯10本/inchになるようにスルーザー織機にて織成
し、両側に低密度ポリエチレン(MI:9,融点105℃,軟化
点90℃)を押し出しラミネートし、縁テープ3を得た。
Example 1 The high melting point polymer 5 of the filament 1 shown in FIG. 1 (A) is high density polyethylene (MI: 1, melting point 130 ° C., softening point 126 ° C.), and the low melting point polymer 4 is low density polyethylene. (MI: 2, melting point 109 ° C,
The core-sheath structure monofilament having a softening point of 87 ° C.) is used as the warp, and the core-sheath structure monofilament continuous yarn of FIG. 1 (B) in which the core-sheath structure monofilament is arranged and adhered is used as the weft, and the warp density is 26 / inch, the weft density 21 mesh / inch was woven with a through-saw loom to obtain a mesh base material 2. In addition, high-density polyethylene (MI: 0.7, melting point 129 ° C, softening point 124 ° C) flat yarn (1000d, strength 5.5g / d) was used for the density of 10 yarns / in.
Weaving was performed with a through-saw loom so that the ch and weft were 10 strands / inch, and low density polyethylene (MI: 9, melting point 105 ° C, softening point 90 ° C) was extruded and laminated on both sides to obtain edge tape 3.

【0018】メッシュ基材2の端部にロープ7を折り込
みながら3cmの幅に折返し、縁テープ(7cm幅)を二つに
折返し被覆した。メッシュ基材2の折返し部中央に熱風
吹出しノズルを挾み、ノズルから熱風を吹出しながら縁
部を熱接着した。更に、縁部に30cm間隔にハトメ金具を
取付け、メッシュシート製品を仕上げた。このメッシュ
シート10の平面図を図5に示した。縁部の拡大断面は図
4の(B2)に相当する。仕上がったメッシュシート10は、
ハトメ金具11の回りの損傷がなかった。またハトメ強力
試験結果は、縫製したものが53kgであったが、熱接着し
たものは64.5kgであった(測定方法:JIS A 8952)。
While folding the rope 7 into the end of the mesh base material 2, the mesh base material 2 was folded back to a width of 3 cm, and the edge tape (7 cm width) was folded back to cover it in two. A hot air blowing nozzle was sandwiched in the center of the folded back portion of the mesh substrate 2, and hot air was blown from the nozzle to thermally bond the edges. Furthermore, eyelet fittings were attached to the edges at intervals of 30 cm to finish the mesh sheet product. A plan view of the mesh sheet 10 is shown in FIG. The enlarged cross section of the edge portion corresponds to (B 2 ) in FIG. The finished mesh sheet 10 is
There was no damage around the eyelet fitting 11. The eyelet strength test result was 53 kg for the sewn product and 64.5 kg for the heat-bonded product (measurement method: JIS A 8952).

【0019】実施例2 図1の糸状物1の高融点ポリマー5が高密度ポリエチレ
ン(MI:1,融点130℃,軟化点126℃)で、低融点ポリマー
4がEVA(エチレン-酢酸ビニル共重合樹脂)(MI:4,融
点76℃,軟化点46℃)である芯鞘構造モノフィラメント
を、糸密度28本/inchで経緯に平織し、メッシュ基材2
を得た。また、高密度ポリエチレン(MI:0.7,融点129
℃,軟化点124℃)のフラットヤーン(1000d,強度5.5g/
d)を経緯に10本/inchに織成し、両側にEVA(MI:20,
融点83℃,軟化点57℃)を押し出しラミネートし、補強
テープ6を得た。
Example 2 The high melting point polymer 5 of the filament 1 in FIG. 1 is high density polyethylene (MI: 1, melting point 130 ° C., softening point 126 ° C.), and the low melting point polymer 4 is EVA (ethylene-vinyl acetate copolymer). Resin) (MI: 4, melting point 76 ° C, softening point 46 ° C) core-sheath structure monofilament is plain woven in the weft at a yarn density of 28 filaments / inch to form a mesh substrate 2
I got In addition, high-density polyethylene (MI: 0.7, melting point 129
℃, softening point 124 ℃) flat yarn (1000d, strength 5.5g /
Weaved 10 pieces / inch with the process of d) and EVA (MI: 20,
A reinforcing tape 6 was obtained by extruding and laminating a melting point of 83 ° C and a softening point of 57 ° C.

【0020】メッシュ基材2の端部を3cm折り返し、補
強テープ6の3cm幅のものとロープ7を挾込み、高周波
ウエルダーにより接着した。更に、ハトメ金具を30cm間
隔で取り付け、メッシュシートに仕上げた。このメッシ
ュシートの平面図は図5に示したものと大差ないので省
略する。このシートの縁部の拡大断面は図4の(C2)に相
当する。仕上がったメッシュシートは、ハトメ部の損傷
もなく、ハトメ強力も縫製した時の47kgに比べて強く、
53kgであった(測定方法:JIS A 8952)。
The end portion of the mesh base material 2 was folded back by 3 cm, the reinforcing tape 6 having a width of 3 cm and the rope 7 were inserted, and they were bonded by a high-frequency welder. Furthermore, eyelet metal fittings were attached at intervals of 30 cm to finish the mesh sheet. The plan view of this mesh sheet is not so different from that shown in FIG. The enlarged cross section of the edge of this sheet corresponds to (C 2 ) in FIG. The finished mesh sheet has no damage to the eyelet part and the eyelet strength is stronger than 47 kg when sewn,
It was 53 kg (measurement method: JIS A 8952).

【0021】[0021]

【発明の効果】本発明のメッシュシートは以上のような
構造としたことにより、高強力な縁取りをした製品を安
定に供給できることとなった。したがって、安全ネット
としての信頼性を高めることができた。
EFFECTS OF THE INVENTION The mesh sheet of the present invention having the above-mentioned structure can stably supply a product having a high-strength edging. Therefore, the reliability as a safety net could be improved.

【図面の簡単な説明】[Brief description of drawings]

【図1】糸状物の断面図である。FIG. 1 is a cross-sectional view of a filamentous material.

【図2】メッシュ基材の端部拡大斜視図である。FIG. 2 is an enlarged perspective view of an end portion of a mesh base material.

【図3】縁テープの端面拡大図である。FIG. 3 is an enlarged end view of the edge tape.

【図4】メッシュシート縁部の断面図である。FIG. 4 is a cross-sectional view of an edge portion of a mesh sheet.

【図5】本発明のメッシュシートの一部省略平面図であ
る。
FIG. 5 is a partially omitted plan view of the mesh sheet of the present invention.

【符号の説明】[Explanation of symbols]

1 糸状物 2 メッシュ基材 3 縁テープ 4 低融点ポリマー 5 高融点ポリマー 6 補強テープ 7 ロープ 8 低融点ポリマー 9 高融点ポリマー 10 メッシュシート 1 Filament 2 Mesh base material 3 Edge tape 4 Low melting point polymer 5 High melting point polymer 6 Reinforcing tape 7 Rope 8 Low melting point polymer 9 High melting point polymer 10 Mesh sheet

Claims (2)

【特許請求の範囲】[Claims] 【請求項1】 高融点ポリマー5を芯とし、その表面に
低融点ポリマー4を有する糸状物1を経糸、又は緯糸に
用いた通気性を有するメッシュ基材2と、この基材2の
端部を被覆する縁テープ3が高融点ポリマー9の基材に
低融点ポリマー8を積層したもので構成され、かつ縁テ
ープ3が低融点ポリマー8層を内側にして、前記メッシ
ュ基材2の周縁を挾んで溶着してなることを特徴とする
メッシュシート。
1. A breathable mesh base material 2 having a high melting point polymer 5 as a core and a filamentous material 1 having a low melting point polymer 4 on its surface as a warp or a weft, and an end portion of the base material 2. The edge tape 3 covering the base material of the high melting point polymer 9 is laminated with the low melting point polymer 8 and the edge tape 3 has the low melting point polymer 8 layer inside and the peripheral edge of the mesh base material 2 is A mesh sheet characterized by being sandwiched and welded.
【請求項2】 高融点ポリマー5を芯とし、その表面に
低融点ポリマー4を有する糸状物1を経糸、又は緯糸に
用いた通気性を有するメッシュ基材2と、メッシュ基材
2の端部折返し部内に、高融点ポリマー基材9に低融点
ポリマー8が積層された補強テープ6を溶着してなるこ
とを特徴とするメッシュシート。
2. An air-permeable mesh base material 2 having a high melting point polymer 5 as a core and a filamentous material 1 having a low melting point polymer 4 on its surface as a warp or a weft, and an end portion of the mesh base material 2. A mesh sheet comprising a high-melting polymer substrate 9 and a low-melting polymer 8 laminated on the reinforcing tape 6 in the folded-back portion.
JP3061221A 1991-03-02 1991-03-02 Mesh sheet Expired - Lifetime JPH0823098B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP3061221A JPH0823098B2 (en) 1991-03-02 1991-03-02 Mesh sheet

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP3061221A JPH0823098B2 (en) 1991-03-02 1991-03-02 Mesh sheet

Publications (2)

Publication Number Publication Date
JPH04281040A JPH04281040A (en) 1992-10-06
JPH0823098B2 true JPH0823098B2 (en) 1996-03-06

Family

ID=13164934

Family Applications (1)

Application Number Title Priority Date Filing Date
JP3061221A Expired - Lifetime JPH0823098B2 (en) 1991-03-02 1991-03-02 Mesh sheet

Country Status (1)

Country Link
JP (1) JPH0823098B2 (en)

Families Citing this family (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2703705B2 (en) * 1993-02-15 1998-01-26 マルコ株式会社 Knitted or woven fabric made of shape memory alloy
JP2002159216A (en) * 2000-11-28 2002-06-04 Hagihara Industries Inc Synthetic resin sheet for protective cover
JP4657310B2 (en) * 2008-02-07 2011-03-23 株式会社今井美装店 Anti-scattering device for high-pressure water and paint film
JP6184123B2 (en) * 2013-02-15 2017-08-23 萩原工業株式会社 Sheet body
JP6232234B2 (en) * 2013-09-09 2017-11-15 株式会社大京建設 Mesh sheet for building repair work and its connecting enclosure

Also Published As

Publication number Publication date
JPH04281040A (en) 1992-10-06

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