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JP2010532264A - Method for manufacturing composite pattern wire mesh and wire mesh - Google Patents

Method for manufacturing composite pattern wire mesh and wire mesh Download PDF

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JP2010532264A
JP2010532264A JP2010514590A JP2010514590A JP2010532264A JP 2010532264 A JP2010532264 A JP 2010532264A JP 2010514590 A JP2010514590 A JP 2010514590A JP 2010514590 A JP2010514590 A JP 2010514590A JP 2010532264 A JP2010532264 A JP 2010532264A
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wire
mesh
twisted
wires
meshes
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デ ヨン リー,
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B21MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21FWORKING OR PROCESSING OF METAL WIRE
    • B21F27/00Making wire network, i.e. wire nets
    • B21F27/02Making wire network, i.e. wire nets without additional connecting elements or material at crossings, e.g. connected by knitting
    • B21F27/06Manufacturing on twister-gear machines
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B21MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21FWORKING OR PROCESSING OF METAL WIRE
    • B21F15/00Connecting wire to wire or other metallic material or objects; Connecting parts by means of wire
    • B21F15/02Connecting wire to wire or other metallic material or objects; Connecting parts by means of wire wire with wire
    • B21F15/04Connecting wire to wire or other metallic material or objects; Connecting parts by means of wire wire with wire without additional connecting elements or material, e.g. by twisting
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B21MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21FWORKING OR PROCESSING OF METAL WIRE
    • B21F27/00Making wire network, i.e. wire nets
    • B21F27/005Wire network per se
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04HBUILDINGS OR LIKE STRUCTURES FOR PARTICULAR PURPOSES; SWIMMING OR SPLASH BATHS OR POOLS; MASTS; FENCING; TENTS OR CANOPIES, IN GENERAL
    • E04H17/00Fencing, e.g. fences, enclosures, corrals
    • E04H17/02Wire fencing, e.g. made of wire mesh
    • E04H17/04Wire fencing, e.g. made of wire mesh characterised by the use of specially adapted wire, e.g. barbed wire, wire mesh, toothed strip or the like; Coupling means therefor
    • E04H17/05Wire mesh or wire fabric
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10STECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10S256/00Fences

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Architecture (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Manufacturing & Machinery (AREA)
  • Textile Engineering (AREA)
  • Wire Processing (AREA)
  • Fencing (AREA)

Abstract

主にフェンスに用いられる、第1及び第2網目100,200が合わさった複合柄の金網Aを得る。2本の縦針金が撚り合わさった撚り部110,120,130から縦針金を左右に分岐し、その延長線140,150,160と、隣の延長線との撚り合わせにより撚り部110,120,130を形成する。この際、撚り部中に分割用横針金170,180を供給するとともに、分割用横針金170,180を挟む上下にて、互いに相反する方向に撚りを加える。以上を反復して偶数個の第1網目100を千鳥状に形成する。第1網目100の最下部の撚り部130から左右に分岐し、その延長線160と、隣の延長線との撚り合わせにより撚り部210を形成し、この際、撚り部中に供給する区画用横針金220を挟んで上下にて、互いに相反する方向に撚り合わせがなされるようにする反復作業により偶数個の第2網目200を形成する。この反復により偶数個の第2網目200を形成する。
【選択図】図1
A wire net A having a composite pattern in which the first and second meshes 100 and 200 are used mainly for a fence is obtained. The vertical wire is branched to the left and right from the twisted portions 110, 120, and 130 in which two vertical wires are twisted together, and the twisted portions 110, 120, and 130 are formed by twisting the extension wires 140, 150, and 160 with the adjacent extension wires. At this time, the split horizontal wires 170 and 180 are supplied into the twisted portion, and twists are applied in directions opposite to each other on the upper and lower sides of the split horizontal wires 170 and 180. By repeating the above, even-numbered first meshes 100 are formed in a staggered pattern. For the section that branches from the lowermost twisted portion 130 of the first mesh 100 to the left and right, forms the twisted portion 210 by twisting the extension line 160 and the adjacent extension line, and supplies it into the twisted portion at this time The even number of second meshes 200 are formed by repetitive operations in which twisting is performed in opposite directions on the top and bottom of the horizontal wire 220. By repeating this, an even number of second meshes 200 are formed.
[Selection] Figure 1

Description

本発明は、主としてフェンスに用いられる複合柄の金網の製造方法及びその金網に関する。より詳細には、様々な形態の網目が組み合わさってなる様々な種類の金網を得ることに関する。   The present invention relates to a method of manufacturing a composite pattern wire mesh mainly used for a fence and the wire mesh. More specifically, it relates to obtaining various types of wire meshes in which various forms of meshes are combined.

金網は、主として、公園、畜舎、工場、ダム、軍事施設及び上水源保護区域等のフェンスに用いられる。フェンスとしての基本的な機能を十分に満たしながらも、施工費用が安価で、網目を通して視野を確保できるなどの長所を有する。   Wire mesh is mainly used for fences such as parks, barns, factories, dams, military facilities, and water source protection areas. While sufficiently fulfilling the basic function as a fence, it has the advantages of low construction costs and securing a field of view through the mesh.

しかしながら、現在生産されている金網は、四角目の金網、五角目の金網及び六角金 目の網等、それぞれ網目の形態が異なる3種類が全部である。これらは3種とも、それぞれ与えられるいずれかの形態の網目を、同一の大きさで上下左右に連続して繰り返し形成する構成を有する。そのため、各金網ごとに網目の形態は同一であり、さらには網目の形状による金網の種類は3つに過ぎない。需要者らにとって選択の幅が狭すぎる。のみならず、特には、網目の形態が変形されることなく長い間同一形状の金網が使用されてきた。そのため、デザイン面で価値が低下し、次第に需要者らにそっぽを向かれており、メーカによってはその対策が急がれているのが現状である。   However, there are currently three types of wire mesh that are produced in different ways, such as a square wire mesh, a pentagon wire mesh, and a hexagonal wire mesh. Each of these three types has a configuration in which a mesh of any given form is repeatedly formed in the same size in the vertical and horizontal directions. For this reason, the form of the mesh is the same for each wire mesh, and there are only three types of wire meshes depending on the shape of the mesh. The choice is too narrow for consumers. In addition, in particular, a wire net having the same shape has been used for a long time without changing the form of the mesh. As a result, the value of the design has declined, and it has gradually turned to consumers, and some manufacturers are urgently taking countermeasures.

韓国特許423531BKorean Patent 423531B 韓国実用新案372629Y1Korean utility model 372629Y1 米国特許6168118BUS Patent 6168118B 特開2001-207428AJP2001-207428A

本発明は、大きさと形態を別にする網目を複合的に配列して形成することによって、新しい美感的価値を与え、さらには撚り部の撚り回数や網目の個数を異ならしめることによって一層様々な形態の金網を得ることができる複合柄の金網の製造方法及びその金網を提供することを課題とする   The present invention provides a new aesthetic value by forming a mesh having different sizes and shapes in a composite arrangement, and further various forms by changing the number of twists and the number of meshes. It is an object of the present invention to provide a method of manufacturing a composite-patterned wire mesh capable of obtaining a wire mesh and a wire mesh thereof

上記の課題は、以下の複合柄の金網の製造方法及びその金網により解決することができる。それぞれ2本の縦針金が撚り合わされてなる複数個の撚り部から、それぞれ縦針金を左右に分岐し、隣り合う縦針金との撚り合わせにより撚り部を形成し、この際に撚り部中へと分割用横針金を供給して区画するという作業を反復することによって偶数個の第1網目を形成する。そして、第1網目の最下部の撚り部から縦針金を左右に分岐し隣り合う縦針金との撚り合わせにより撚り部を形成し、この際に撚り部中に区画用横針金を供給して区画するという作業を反復することによって偶数個の第2網目を形成する。これらの第1及び第2網目が組み合わさった金網を得ることは勿論のこと、撚り部の撚り回数や網目の個数を異ならせることによって一層様々な金網を得ることができる。   The above-described problems can be solved by the following method of manufacturing a composite pattern wire mesh and the wire mesh. From each of a plurality of twisted portions formed by twisting two vertical wires, each vertical wire is branched to the left and right, and a twisted portion is formed by twisting with adjacent vertical wires. The even number of first meshes are formed by repeating the operation of supplying and dividing the dividing wire. Then, the vertical wire is branched left and right from the lowermost twisted portion of the first mesh, and a twisted portion is formed by twisting together with the adjacent vertical wire. By repeating this operation, an even number of second meshes are formed. In addition to obtaining a wire mesh in which the first and second meshes are combined, various wire meshes can be obtained by varying the number of twists of the twisted portion and the number of meshes.

本発明の一実施例を示す斜視図である。It is a perspective view which shows one Example of this invention. 本発明の一実施例を示す正面構成図である。It is a front block diagram which shows one Example of this invention. 本発明の他の実施例を示す斜視図である。It is a perspective view which shows the other Example of this invention. 本発明他の実施例を示す正面構成図である。It is a front block diagram which shows the other Example of this invention. 本発明さらに他の実施例を示す斜視図である。It is a perspective view which shows other Example of this invention. 本発明さらに他の実施例を示す斜視図である。It is a perspective view which shows other Example of this invention. 本発明の使用状態図である。It is a use state figure of the present invention.

以下、本発明の好ましい実施例を、添付の図面を参照しつつ詳細に説明する。ただし、図面中、同一の構成要素には可能な限り同一の符号を付する。なお、下記の説明において、関連する公知技術や機能についての具体的な説明は、本発明の要旨がぼやけるのを避けるために省略するものとする。   Hereinafter, preferred embodiments of the present invention will be described in detail with reference to the accompanying drawings. In the drawings, the same components are denoted by the same reference numerals as much as possible. In the following description, specific descriptions of related known techniques and functions will be omitted in order to avoid blurring the gist of the present invention.

図1及び図2は、本発明の一実施例を示すものであり、第1及び第2網目100,200が組み合わさった複合柄の金網Aが、次のようにして得られる構成となっている。撚り部110,120,130と、この撚り部から縦針金を左右に分岐してなる延長線140,150,160と、撚り部を通過する分割用横針金170,180とにより複数個の第1網目100を形成する。第1網目100の最下部の延長線160が撚り合わされてなる撚り部210と、該撚り部を通過する数本の区画用横針金220とにより複数個の第2網目200を形成する。そして、第2網目200の下部に再び第1網目100を形成するという反復作業を行う。   FIGS. 1 and 2 show an embodiment of the present invention, and a composite pattern wire mesh A in which the first and second meshes 100 and 200 are combined is obtained as follows. Yes. A plurality of first lines are formed by the twisted portions 110, 120, and 130, the extension lines 140, 150, and 160 that branch the vertical wire from the twisted portion to the left and right, and the dividing horizontal wires 170 and 180 that pass through the twisted portion. A mesh 100 is formed. A plurality of second meshes 200 are formed by a twisted portion 210 formed by twisting the lowermost extension line 160 of the first mesh 100 and a plurality of partitioning transverse wires 220 passing through the twisted portion. Then, the repetitive operation of forming the first mesh 100 again below the second mesh 200 is performed.

ここで、第1網目100の始点における撚り部110はそれぞれ、2本の縦針金が撚り合わされてなる。この撚り部110から縦針金を左右に分岐し、この針金と、隣の縦針金とを2回撚り合わせた状態で、これらの縦針金の間に分割用横針金170を供給する。この後、再び2回撚り合わせることによって撚り部120を形成する。続いて、撚り部120から縦針金を左右に分岐し、再び、隣りの縦針金と2回撚り合わせた状態で、これらの縦針金の間に分割用横針金180を供給する。この後、再び2回撚り合わせることによって撚り部130を形成する。このように繰り返すことで、それぞれ分割用横針金170,180を挟持している上下1対の小さい四角形状の第1網目100が、上下にずれて配置された独特の形態を有することとなる。   Here, each of the twisted portions 110 at the starting point of the first mesh 100 is formed by twisting two vertical wires. A vertical wire is branched from the twisted portion 110 to the left and right, and a split horizontal wire 170 is supplied between the vertical wires in a state where the wire and the adjacent vertical wire are twisted twice. Then, the twist part 120 is formed by twisting twice again. Subsequently, the vertical wire is branched left and right from the twisted portion 120, and the split horizontal wire 180 is supplied between these vertical wires in a state where the vertical wire is twisted twice with the adjacent vertical wire again. Then, the twist part 130 is formed by twisting twice again. By repeating in this way, a pair of upper and lower small square first meshes 100 holding the dividing horizontal wires 170 and 180 respectively have a unique form in which they are arranged shifted vertically.

ただし、第1網目100を形成するために撚り部110,120,130を撚り合わせる際には、撚り部相互間で相反する方向に撚られるようにしなければならず、各撚り部110,120,130についても、同様に、各撚り部を通過する分割用横針金170,180を挟んで上下部が相反する方向に撚られるようにしなければならい。さらには、網目100を偶数個にしなければならない。このようにしてこそ、連続した作業が可能になる。   However, when the twisted portions 110, 120, and 130 are twisted together to form the first mesh 100, the twisted portions 110, 120, 130 must be twisted in opposite directions between the twisted portions. Similarly, regarding 130, the upper and lower parts must be twisted in opposite directions across the horizontal wires 170 and 180 for splitting that pass through each twisted part. Furthermore, the mesh 100 must be an even number. Only in this way, continuous work becomes possible.

その理由は次のとおりである。金網製造装置を用いた金網の製造時に、各縦針金は供給部から引き出され、それぞれ一対の半月ギアを通過し、半月ギアが定位置で一対が共に回転するか、または、スライディング作動により隣りの半月ギアと対をなして共に回転するようにする。このようにすることにより、延長線140,150,160を挟んで上下にて、相異なる撚り部110,120,130が形成される。この過程で、半月ギアは、その構造的な特性上、一マス以上のスライディング作動が不可能である。また、回転により撚り部110,120,130を撚る際に、半月ギア後方の供給部においても縦針金が同一回数だけ撚られる。そのため、いずれか一方への回転による撚りの後に、いずれか他方へ回転させ、以前の撚り部における撚り回数と同一の回数の撚り合わせが行われるようにしなければならない。このようにしてこそ、当該供給部で撚り合わされている横針金がそれ以上撚られることなく直ちに解かれるということが繰り返される。このようにして、連続作業が可能になるわけである。   The reason is as follows. During the production of a wire mesh using a wire mesh production apparatus, each vertical wire is pulled out from the supply unit and passes through a pair of half-moon gears. Pair with half-moon gear and rotate together. By doing in this way, the different twist parts 110, 120, and 130 are formed in the upper and lower sides across the extension wires 140, 150, and 160. In this process, the half-moon gear cannot slide more than one mass due to its structural characteristics. Further, when twisting the twisted portions 110, 120, and 130 by rotation, the vertical wire is twisted the same number of times in the supply portion behind the half moon gear. Therefore, after twisting by rotation to either one, it is necessary to rotate to either one so that the same number of twists as the number of twists in the previous twisted part is performed. In this way, it is repeated that the horizontal wire twisted in the supply section is immediately unwound without further twisting. In this way, continuous work is possible.

また、第1網目100は、最下部の撚り部130から縦針金を左右に分岐し、隣り合う縦針金と撚り合わせることで完成する。この後、このように撚り合わせた撚り部210について4回、引き続き撚りを加えてから、当該撚り部をなす2本の縦針金の間に区画用横針金220を供給する。そして、この後、再び4回、撚りを加える。このように反復することで、区画用横針金220により区画された直方形の第2網目200が形成される。   Further, the first mesh 100 is completed by branching the vertical wire left and right from the lowermost twisted portion 130 and twisting it with the adjacent vertical wire. Thereafter, the twisted portion 210 thus twisted is continuously twisted four times, and then the dividing horizontal wire 220 is supplied between the two vertical wires forming the twisted portion. And after this, a twist is added 4 times again. By repeating in this way, the rectangular second mesh 200 partitioned by the partitioning wire 220 is formed.

このような第2網目200の形成時にも、撚り部210の撚りの開始点では、以前の第1網目100における最下部の撚り部130の撚り方向とは相反する方向に撚られるようにしなければならならない。また、区画用横針金220を挟む上下間では、互いに相反する方向に撚られるようにしなければならない。さらには、第2網目200の個数を偶数個にしなければならならない。このようにしてこそ、いずれか一方に過度に撚られることなく連続した作業が可能になる。   Even when the second mesh 200 is formed as described above, the twisting point of the twisted portion 210 must be twisted in a direction opposite to the twisting direction of the lowermost twisted portion 130 in the first mesh 100. Must not. Moreover, between the upper and lower sides which pinch | interpose the horizontal wire 220 for divisions, you have to make it twist in the mutually opposing direction. Furthermore, the number of second meshes 200 must be an even number. Only in this way, continuous work can be performed without excessive twisting of either one.

したがって、本発明により得られる第1網目100は、以下のとおりとなる。各撚り部110,120,130の左右の撚り部間の間隔により左右幅に変化を与えることはできない。しかし、各分割用横針金170,180を挟むようにして、上下の延長部140,150,160の間には、各撚り部ごとにその上下に与えられる2回の撚りにより、正方形の小さくて特徴的な第1網目100が千鳥状に形成される。また、第1網目100の下方には、各区画用横針金220を挟むようにして、上下に与えられる4回の撚りにより、縦長の直方形の第2網目200が形成される。なお、第1網目100及び第2網目200をそれぞれ偶数個に形成するならば、網目100,200の個数にかかわらずに連続した反復作業が可能になる。そのため、上記に限定されず、第1及び第2網目をそれぞれ2個にする配列構成、第1網目は2個にし第2網目は4個にする配列構成、または、第1網目は4個にし第2網目は2個にする配列構成等の配列構成も可能である。このように、網目の個数を異ならせることによって多種多様の、複合柄の金網Aを得ることができる。   Therefore, the first mesh 100 obtained by the present invention is as follows. The left-right width cannot be changed by the spacing between the left and right twisted portions of each twisted portion 110, 120, 130. However, a square is small and distinctive between the upper and lower extension parts 140, 150, 160 by two twists applied to the upper and lower parts of the upper and lower extension parts 140, 150, 160 so as to sandwich the dividing wire 170, 180. The first mesh 100 is formed in a staggered pattern. In addition, a vertically long second rectangular mesh 200 is formed below the first mesh 100 by four twists applied vertically so as to sandwich the horizontal wire 220 for each section. If the first mesh 100 and the second mesh 200 are formed in even numbers, continuous repetitive work is possible regardless of the number of the meshes 100, 200. Therefore, the present invention is not limited to the above, and an arrangement configuration in which each of the first and second meshes is two, an arrangement configuration in which the first mesh is two and the second mesh is four, or the first mesh is four. An array configuration such as an array configuration in which the second mesh is two is also possible. In this way, a wide variety of composite-patterned wire mesh A can be obtained by varying the number of meshes.

図3及び図4は、本発明の他の実施例である。第1網目300を得るための撚り部310,320,330の撚り回数と、第2網目400を得るための撚り部410の撚り回数とを異ならせることで、第1及び第2網目300,400の形態を変形させて、新たな形態の複合柄の金網Bを得ることができることを示している。   3 and 4 show another embodiment of the present invention. By differentiating the number of twists of the twisted portions 310, 320, and 330 for obtaining the first mesh 300 and the number of twists of the twisted portion 410 for obtaining the second mesh 400, the first and second meshes 300 and 400 are obtained. It is shown that a complex-patterned wire mesh B of a new form can be obtained by deforming the form of

すなわち、以下のとおりである。各網目300,400に備えられる各撚り部310,320,330,410が互いに相反する方向に撚られるようにし、かつ、各網目300,400を偶数個としている。このようにして連続した作業を可能にしつつ、次のようにする。第1網目300における撚り部310,320,330については、分割用横針金370,380を挟んで上下にてそれぞれ4回撚られるようにする。これにより、縦長の直方形の第1網目を形成することができる。一方、第2網目400に備えられる撚り部410については、区画用横針金420を挟んで上下にてそれぞれ2回撚られるようにする。これにより、正方形の第2網目400を形成することができる。   That is, it is as follows. The twisted portions 310, 320, 330, 410 provided in the meshes 300, 400 are twisted in directions opposite to each other, and the meshes 300, 400 are an even number. In this way, while performing continuous work, the following is performed. The twisted portions 310, 320, and 330 in the first mesh 300 are twisted four times on the upper and lower sides of the dividing wire 370 and 380, respectively. Thereby, a vertically long rectangular first mesh can be formed. On the other hand, the twisted portion 410 provided in the second mesh 400 is twisted twice on the upper and lower sides of the partitioning horizontal wire 420. Thereby, the square second mesh 400 can be formed.

この場合も、同様に、第1及び第2網目をそれぞれ2個にする配列、第1網目は2個とし第2網目は4個にする配列、または、第1網目は4個とし第2網目は2個にする配列等、網目の個数を異ならせて配列することによって、多種多様な複合柄の金網Bを得ることができる。   In this case, similarly, an arrangement in which the first and second meshes are each two, an arrangement in which the first mesh is two and the second mesh is four, or a first mesh is four and the second mesh is four. Can be obtained by arranging the meshes with different numbers of meshes, such as arranging them in two, etc.

図5は、本発明のさらに他の実施例である。第1網目500に備えられる分割用横針金570,580と、第2網目600に備えられる区画用横針金620とについて、凹部と凸部が反復して形成される波状にすることもできることを示す。   FIG. 5 shows still another embodiment of the present invention. It shows that for the dividing horizontal wires 570 and 580 provided in the first mesh 500 and the dividing horizontal wire 620 provided in the second mesh 600, the concave and convex portions can be formed in a wave shape repeatedly. .

すなわち、次のとおりとすることができる。各横針金570,580,620は、撚り部510,520,530,610の撚りの中へと、縦針金の間に供給されて、各網目500,600をそれぞれ区画するものである。波状にするならば、当該撚り部510,520,530,610との結束がより堅固になり、金網Cの強度が向上する。また、網目500,600の大きさを変化させることなく、新たな美感的価値を与えることができる。   That is, it can be as follows. The horizontal wires 570, 580, and 620 are supplied between the vertical wires into the twists of the twisted portions 510, 520, 530, and 610, thereby dividing the meshes 500 and 600, respectively. If it is made wavy, the binding with the twisted portions 510, 520, 530, and 610 becomes more firm, and the strength of the wire mesh C is improved. Further, a new aesthetic value can be given without changing the size of the meshes 500 and 600.

図6は、本発明のさらに他の実施例である。第1網目700に備えられる分割用横針金770,780と、第2網目800に備えられる区画用横針金820とについて、2本の針金を撚り合わせた撚り線とすることもできることを示す。   FIG. 6 shows still another embodiment of the present invention. It shows that the dividing wire 770, 780 provided in the first mesh 700 and the partitioning wire 820 provided in the second mesh 800 can be a stranded wire formed by twisting two wires.

このような撚り線とした横針金770,780,820も同様、その撚り部710,720,730,810との結束がより堅固になり、金網Dの強度が向上する。また、網目700,800の大きさを変化させることなく、新たな美感的価値を与えることができる。   In the same manner, the horizontal wires 770, 780, and 820 made of such a stranded wire are more firmly bound to the twisted portions 710, 720, 730, and 810, and the strength of the wire mesh D is improved. Further, a new aesthetic value can be given without changing the size of the meshes 700 and 800.

図7は、本発明をフェンスに用いた場合を示すものである。本発明により得られる複合柄の金網Aは、大きさと形態が異なる第1及び第2網目100,200が合わさって調和をなし、従来にはなかった独特で新しい美感的価値を有することは勿論、外観上安定感を与え、その利用価値を高めることができる。   FIG. 7 shows a case where the present invention is used for a fence. The composite patterned wire mesh A obtained by the present invention is harmonized by combining the first and second meshes 100 and 200 having different sizes and shapes, and of course has a unique and new aesthetic value that has not existed before. It gives a sense of stability in appearance and can increase its utility value.

本発明においては、撚り部110,120,130と、該撚り部を通過する分割用横針金170,180と、上下延長線140,150,160とにより、偶数個の第1網目100をジグザグに形成させる。また、第1網目100から延在する撚り部210を形成する過程で、その撚り部を適正間隔で通過する多数本の区画用横針金220により偶数個の第2網目200を形成させる。このようにして、以下のような効果が得られる。大きさと形態が異なる2種の網目100,200が複合して配列形成された複合柄の金網Aを得ることができる。また、撚り部110,120,130,210の撚り回数や網目100,200の個数を異ならせることによって、全体としての形状が異なる多種の金網を得ることができる。そのため、従来にはなかった新しく多様な形態の複合柄の金網を提供できる。さらには、金網の利用価値を高めることができる等の効果が得られる。   In the present invention, the even number of first meshes 100 are zigzag by the twisted portions 110, 120, 130, the dividing horizontal wires 170, 180 that pass through the twisted portions, and the vertical extension lines 140, 150, 160. Let it form. Further, in the process of forming the twisted portion 210 extending from the first mesh 100, an even number of second meshes 200 are formed by a large number of dividing wire 220 passing through the twisted portion at an appropriate interval. In this way, the following effects can be obtained. It is possible to obtain a wire net A having a composite pattern in which two types of meshes 100 and 200 having different sizes and shapes are combined and formed. In addition, by varying the number of twists of the twisted portions 110, 120, 130, and 210 and the number of meshes 100 and 200, various types of wire meshes having different shapes as a whole can be obtained. Therefore, it is possible to provide a new and various forms of composite pattern wire mesh that has not existed before. Furthermore, the effect that the utility value of a wire mesh can be raised is acquired.

A 複合柄の金網、 100 第1網目、 110,120,130 撚り部、
140,150,160 延長線、 170,180 分割用横針金、
200 第2網目、 210 撚り部、 220 区画用横針金
A wire mesh of composite pattern, 100 1st mesh, 110, 120, 130 twisted part,
140, 150, 160 extension line, 170, 180 horizontal wire for splitting,
200 2nd mesh, 210 twisted portion, 220 section wire

Claims (5)

それぞれ2本の縦針金が撚り合わされてなる複数個の撚り部(110,120,130)から、それぞれ縦針金を左右に分岐し、隣り合う縦針金との撚り合わせにより撚り部(110,120,130)を形成し、この撚り部をなす2本の縦針金の間に分割用横針金(170,180)を通し、この際に分割用横針金(170,180)を挟む上下間では互いに相反する方向に撚りが加えられるようにし、以上のことを繰り返すことで偶数個の第1網目(100)が千鳥状に形成されるようにする段階と、
第1網目の最下部の撚り部(130)から縦針金を左右に分岐し、隣り合う縦針金との撚り合わせにより撚り部を形成し、この撚り部をなす2本の縦針金の間に区画用横針金(220)を通し、この際にそれぞれ区画用横針金(220)を挟んで上下にて互いに相反する方向に撚りが加えられるようにし、このようなことを繰り返すことで偶数個の第2網目(200)が形成されるようにする段階とからなる複合柄の金網の製造方法。
Each vertical wire is branched to the left and right from a plurality of twisted portions (110, 120, 130) each formed by twisting two vertical wires, and a twisted portion (110, 120, 130) is formed by twisting with adjacent vertical wires. Pass the splitting wire (170,180) between the two vertical wires that form the part, and at this time, twist between the upper and lower sides sandwiching the splitting wire (170,180) so that they are opposite to each other. Repeating the process so that the even number of first meshes (100) are formed in a staggered pattern,
A vertical wire is branched to the left and right from the lowermost twisted portion (130) of the first mesh, and a twisted portion is formed by twisting together with adjacent vertical wires, and is defined between the two vertical wires forming the twisted portion. Through which the twisting is applied in the direction opposite to each other across the sectioning wire (220), and by repeating this, an even number of first wires are inserted. A method of manufacturing a composite-patterned wire mesh comprising the step of forming a second mesh (200).
それぞれ2本の縦針金が撚り合わされてなる複数個の撚り部から、それぞれ縦針金を左右に分岐し、隣り合う縦針金との撚り合わせにより撚り部を形成し、この撚り部をなす2本の縦針金の間に分割用横針金を通し、この際に、左右に分岐する部分がなす延長線を挟む上下間、及び、分割用横針金を挟む上下間にて、互いに相反する方向に撚りが加えられるようにし、以上のことを繰り返すことで偶数個の第1網目が千鳥状に形成されるようにする段階と、
第1網目の最下部の撚り部から縦針金を左右に分岐し、隣り合う縦針金との撚り合わせにより撚り部を形成し、この撚り部をなす2本の縦針金の間に区画用横針金を通し、この際にそれぞれ区画用横針金を挟んで上下にて互いに相反する方向に撚りが加えられるようにし、このようなことを繰り返すことで偶数個の第2網目が形成されるようにする段階とからなる複合柄の金網の製造方法。
Each of the two vertical wires is twisted together to divide the vertical wire to the left and right, and a twisted portion is formed by twisting with the adjacent vertical wires. A split horizontal wire is passed between the vertical wires, and at this time, twists are made in opposite directions between the upper and lower sides sandwiching the extension line formed by the left and right branch portions and the upper and lower sides sandwiching the split horizontal wire. And repeating the above so that an even number of first meshes are formed in a staggered pattern,
A vertical wire is branched left and right from the lowermost twisted portion of the first mesh, a twisted portion is formed by twisting with the adjacent vertical wire, and the horizontal wire for partitioning between the two vertical wires forming this twisted portion In this case, twists are applied in directions opposite to each other on the upper and lower sides of the partitioning wire, and by repeating this, an even number of second meshes are formed. A method of manufacturing a composite pattern wire mesh comprising steps.
前記第1及び第2網目に備えられる撚り部は、それぞれ、分割用横針金及び区画用横針金を挟んで上下にて、同一回数の撚りが加えられようにすることを特徴とする請求項2に記載の複合柄の金網。   The twisted portion provided in the first and second meshes is configured such that the same number of twists are applied to the upper and lower sides of the dividing wire and the partitioning wire, respectively. A metal wire with a composite pattern as described in 1. 前記第1網目に備えられる分割用横針金と、第2網目に備えられる区画用横針金とについて、凹部と凸部とが反復されてなる波状に形成したことを特徴とする請求項2または3に記載の複合柄の金網。   4. The dividing horizontal wire provided in the first mesh and the dividing horizontal wire provided in the second mesh are formed in a wave shape in which a concave portion and a convex portion are repeated. A metal wire with a composite pattern as described in 1. 前記第1網目に備えられる分割用横針金と、第2網目に備えられる区画用横針金とについて、2本の針金が撚り合わされてなる撚り線としたことを特徴とする請求項2または3に記載の複合柄の金網。   4. The split wire provided for the first mesh and the dividing wire provided for the second mesh are stranded wires formed by twisting two wires together. The composite pattern wire mesh described.
JP2010514590A 2007-07-05 2008-04-14 Method for manufacturing composite pattern wire mesh and wire mesh Ceased JP2010532264A (en)

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