JP6182076B2 - Metal wire compact and method for producing the same - Google Patents

Metal wire compact and method for producing the same Download PDF

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JP6182076B2
JP6182076B2 JP2014001085A JP2014001085A JP6182076B2 JP 6182076 B2 JP6182076 B2 JP 6182076B2 JP 2014001085 A JP2014001085 A JP 2014001085A JP 2014001085 A JP2014001085 A JP 2014001085A JP 6182076 B2 JP6182076 B2 JP 6182076B2
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wire mesh
covering
overlapping
metal wire
mesh
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JP2015129456A (en
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和良 湯浅
和良 湯浅
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NIHON GLASS FIBER INDUSTRIAL CO., LTD.
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NIHON GLASS FIBER INDUSTRIAL CO., LTD.
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Description

本発明は、DPF(ディーゼル微粒子捕集フィルター)のパッキン兼緩衝材や、自動車のマフラーのガスケット等として用いられる金属線圧縮体に関する。   The present invention relates to a metal wire compact used as a DPF (diesel particulate collection filter) packing and cushioning material, an automobile muffler gasket, or the like.

従来の金属線圧縮体には、図8に示す従来例1(先行文献1)の金属線圧縮体81のように、筒状の金網80が圧縮成形機90等により筒長方向に圧縮されてなるものがある。   In a conventional metal wire compression body, a cylindrical wire mesh 80 is compressed in the cylinder length direction by a compression molding machine 90 or the like, as in the metal wire compression body 81 of Conventional Example 1 (prior art document 1) shown in FIG. There is something to be.

また、それ以外にも、図9に示す従来例2の金属線圧縮体82のように、筒状の金網80が、筒長方向の両側から内側に丸め込まれてから、圧縮成形機90等により筒長方向に圧縮されてなるものがある。   In addition to this, like the metal wire compression body 82 of the conventional example 2 shown in FIG. 9, the cylindrical wire mesh 80 is rolled inward from both sides in the cylinder length direction, and then compressed by a compression molding machine 90 or the like. Some are compressed in the tube length direction.

また、それ以外にも、図10に示す従来例3の金属線圧縮体83のように、金網80が、長さ方向に複数回巻かれてから、圧縮成形機90等により幅方向に圧縮されてなるものがある。なお、この金網80の両端は約45°にカットされており、それにより両端での結合力が強くなり剥がれ難くなるように図られている。   In addition, the wire mesh 80 is wound in the length direction a plurality of times and compressed in the width direction by the compression molding machine 90 or the like as in the metal wire compression body 83 of the conventional example 3 shown in FIG. There is something to become. Note that both ends of the wire mesh 80 are cut at about 45 °, so that the bonding force at both ends becomes strong and is difficult to peel off.

特開2013−19347号公報JP 2013-19347 A

しかしながら、このような従来例1〜3の金属線圧縮体81〜83では、巻き層等の層の境目が外部に露出するので、露出した層の境目でズレや割れが発生し易くなる。   However, in such metal wire compression bodies 81 to 83 of Conventional Examples 1 to 3, since the boundary between layers such as a wound layer is exposed to the outside, displacement and cracking easily occur at the boundary between the exposed layers.

具体的には、例えば、従来例3の金属線圧縮体83の場合、図11(a)に示すように、金網80の巻き層L,L・・の境目が外部に露出するので、圧縮して成形する際には、図11(b)に示すように、その境目でズレD1が発生し易い。また、更に、成形後には、図11(c)に示すように、巻き層L,L・・の境目で剥がれ易く、それにより、割れD2が発生し易い。   Specifically, for example, in the case of the metal wire compression body 83 of the conventional example 3, as shown in FIG. 11A, the boundary between the winding layers L, L,. When molding, as shown in FIG. 11B, the deviation D1 is likely to occur at the boundary. Further, after molding, as shown in FIG. 11 (c), it is easy to peel off at the boundary between the wound layers L, L,...

そして、そのようなズレD1や割れD2は、金属線圧縮体83が低密度であるほど、また、大径であるほど、発生し易い。そして、そのようなズレD1や割れD2が発生した場合、金属線圧縮体83の内側にDPF(ディーゼル微粒子捕集フィルター)やマフラー用パイプ等を挿入する際に、そのズレD1や割れD2で引っかかり易くなり、めくり上がり易くなってしまう。   And such a shift | offset | difference D1 and a crack D2 are easy to generate | occur | produce, so that the metal wire compression body 83 is a low density and it is large diameter. When such a deviation D1 or crack D2 occurs, when a DPF (diesel particulate collection filter), a muffler pipe, or the like is inserted inside the metal wire compression body 83, it is caught by the deviation D1 or crack D2. It becomes easy to turn up easily.

そこで、ズレや割れを発生し難くすることを目的とする。さらに、後述するように、重ね用金網を巻き、被せ用金網を被せる一連の作業をし易くし、成形後に分解され難くすることも目的とする。 In view of this, an object is to make it difficult for displacement and cracking to occur. Furthermore, as will be described later, another object of the present invention is to make it easy to perform a series of operations of winding a superposed metal mesh and covering the superposed metal mesh, and making it difficult to be disassembled after molding.

上記目的を達成するため、本発明の金属線圧縮体は、重ね用金網が、長さ方向に複数回巻かれて複数の巻き層状に重ねられた状態で圧縮されてなる重ね部と、被せ用金網が、重ね用金網の幅方向の側部に前記複数の巻き層を跨ぐ形で被せられた状態で圧縮されてなる被せ部とを含み、一本の材料用金網の一端側の部分が被せ用金網であり、材料用金網の被せ用金網よりも他端側の部分が重ね用金網であることを特徴とする In order to achieve the above object, the metal wire compression body of the present invention comprises an overlapped portion formed by compressing an overlapping wire mesh in a state of being wound in a plurality of times in the length direction and being stacked in a plurality of winding layers. wire mesh, viewed contains a width direction is compressed in a state of being covered in a manner to cross the plurality of winding layers on the side and becomes covered portion of the overlapped wire mesh, the one end portion of the wire mesh for one material It is a covering wire mesh, The part of the other end side rather than the covering wire mesh of the material wire mesh is a wire mesh for overlapping .

すなわち、重ね用金網と被せ用金網とは、一体に形成されている。重ね用金網を巻き、被せ用金網を被せる一連の作業がし易くなる点、及び成形後に分解され難くなる点で、一体に形成されていることが好ましいからである That is, the wire mesh for covering the overlapping wire mesh, that is formed on one body. Winding a lap wire mesh, that the series of operations covering the wire mesh for covering is easily, and in that it hardly decomposed after molding, because it is preferably formed integrally.

また、本発明の金属線圧縮体の製造方法は、一本の材料用金網の一端側の部分を被せ用金網とし、材料用金網の被せ用金網よりも他端側の部分を重ね用金網とし、重ね用金網を幅方向に折ることで被せ用金網よりも重ね用金網を幅狭にし、被せ用金網を長さ方向に巻き、その外周側に重ね用金網を複数回巻くことで重ね用金網を複数の巻き層状に重ね、被せ用金網を幅方向に折ることで重ね用金網の幅方向の側部に被せ用金網を前記複数の巻き層を跨ぐ形で被せてから、材料用金網を被せ用金網側からオス型で圧縮して金属線圧縮体を成形することを特徴とする Further , in the method for producing a metal wire compressed body according to the present invention, a portion of one material wire mesh on one end side is used as a covering wire mesh, and a portion on the other end side of the material wire mesh is used as an overlapping wire mesh. The folding wire mesh is made narrower than the covering wire mesh by folding the overlapping wire mesh in the width direction, the covering wire mesh is wound in the length direction, and the overlapping wire mesh is wound around the outer peripheral side multiple times. Are stacked in a plurality of winding layers, and the covering wire mesh is folded in the width direction so that the covering wire mesh is placed on the side in the width direction across the plurality of winding layers, and then the material wire mesh is covered. from use wire mesh side is packed with a male characterized by forming a metal wire compacts.

重ね用金網及び被せ用金網の材質は、特に限定されないが、鉄、銅、アルミニウム及びそれらの合金を例示する。それらの中でも、耐熱性及び耐食性に優れている点で、ステンレス鋼であることが好ましい。   The material of the overlapping wire mesh and the covering wire mesh is not particularly limited, and examples thereof include iron, copper, aluminum, and alloys thereof. Among these, stainless steel is preferable because it is excellent in heat resistance and corrosion resistance.

本発明によれば、重ね用金網の側部に被せ用金網を複数の層を跨ぐ形で被せるので、層の境目が外部に露出しない。そのため、層の境目でズレや割れが発生し難い。さらに、重ね用金網と被せ用金網とは、一体に形成されているので、重ね用金網を巻き、被せ用金網を被せる一連の作業がし易くなり、成形後に分解され難くなる。 According to the present invention, since the covering wire mesh is placed on the side of the overlapping wire mesh so as to straddle the plurality of layers, the boundary between the layers is not exposed to the outside. For this reason, misalignment and cracking hardly occur at the boundary between layers. Further, since the overlapping wire mesh and the covering wire mesh are integrally formed, a series of operations for winding the overlapping wire mesh and covering the covering wire mesh are facilitated, and are difficult to be disassembled after molding.

(a)は実施例1の金属線圧縮体が設置されたDPFを示す側面断面図、(b)は金属線圧縮体を示す斜視図、(c)は金属線圧縮体を示す一部断面の斜視図である。(A) is side surface sectional drawing which shows DPF in which the metal wire compression body of Example 1 was installed, (b) is a perspective view which shows a metal wire compression body, (c) is a partial cross section which shows a metal wire compression body It is a perspective view. 実施例1の金属線圧縮体の製造手順を(a)〜(c)に示す側面図である。It is a side view which shows the manufacturing procedure of the metal wire compression body of Example 1 to (a)-(c). 実施例1の金属線圧縮体の製造手順を(d)〜(f)に示す側面図である。It is a side view which shows the manufacturing procedure of the metal wire compression body of Example 1 to (d)-(f). 実施例1の金属線圧縮体の製造手順を(g)(h)に示す側面図である。It is a side view which shows the manufacturing procedure of the metal wire compression body of Example 1 to (g) (h). 実施例1の金属線圧縮体の製造手順を(i)〜(k)に示す側面図である。It is a side view which shows the manufacture procedure of the metal wire compression body of Example 1 to (i)-(k). (a)は実施例2の金属線圧縮体が設置されたマフラーを示す側面断面図、(b)は金属線圧縮体を示す斜視図、(c)は金属線圧縮体を示す一部断面の斜視図である。(A) is side surface sectional drawing which shows the muffler in which the metal wire compression body of Example 2 was installed, (b) is a perspective view which shows a metal wire compression body, (c) is a partial cross section which shows a metal wire compression body It is a perspective view. 実施例2の金属線圧縮体の製造手順を(i)〜(k)に示す側面図である。It is a side view which shows the manufacture procedure of the metal wire compression body of Example 2 to (i)-(k). 従来例1の金属線圧縮体の製造手順を(a)〜(d)に示す側面図である。It is a side view which shows the manufacture procedure of the metal wire compression body of the prior art example 1 to (a)-(d). 従来例2の金属線圧縮体の製造手順を(a)〜(d)に示す側面図である。It is a side view which shows the manufacture procedure of the metal wire compression body of the prior art example 2 to (a)-(d). 従来例3の金属線圧縮体の製造手順を(a)〜(d)に示す側面図である。It is a side view which shows the manufacture procedure of the metal wire compression body of the prior art example 3 to (a)-(d). (a)は、従来例3の金属線圧縮体を示す斜視図、(b)はその金属線圧縮体にズレが発生したときを示す側面端面図、(c)は割れが発生したときを示す側面端面図である。(A) is a perspective view which shows the metal wire compression body of the prior art example 3, (b) is a side end view which shows when the metal line compression body generate | occur | produced, (c) shows when a crack generate | occur | produces. It is a side surface end view.

以下、本発明の金属線圧縮体を図面を参照に説明する。   The metal wire compression body of the present invention will be described below with reference to the drawings.

図1〜5に示す金属線圧縮体1は、DPF(ディーゼル微粒子捕集フィルター)30の外面とその格納容器31の内面との間に設置されるパッキン兼緩衝材ある。この金属線圧縮体1は、材料用金網10をプレス成型して作るメッシュリングである。   The metal wire compact 1 shown in FIGS. 1 to 5 is a packing and cushioning material installed between the outer surface of a DPF (diesel particulate collection filter) 30 and the inner surface of its storage container 31. The metal wire compression body 1 is a mesh ring made by press-molding a metal mesh 10 for material.

この金属線圧縮体1は、重ね用金網11が、長さ方向に複数回巻かれて複数の巻き層L,L・・状に重ねられた状態で圧縮されてなる重ね部1aと、被せ用金網12が、重ね用金網11の幅方向の側部に前記複数の巻き層L,L・・を跨ぐ形で被せられた状態で圧縮されてなる被せ部1bとを含んでいる。そして、この金属線圧縮体1の軸線方向の一方側の内周側には、DPF30の端面の外周部を嵌め込むための凹部1cが凹設されている。   The metal wire compression body 1 includes a superposed portion 1a in which a superposed wire mesh 11 is wound in a plurality of times in the length direction and is compressed in a state of being superposed in a plurality of winding layers L, L. The wire mesh 12 includes a covered portion 1b that is compressed in a state where the wire mesh 12 is placed on the side portion in the width direction of the overlapping wire mesh 11 so as to straddle the plurality of wound layers L, L. A concave portion 1c for fitting the outer peripheral portion of the end face of the DPF 30 is provided on the inner peripheral side on one side of the metal wire compressed body 1 in the axial direction.

その金属線圧縮体1は、次に示す手順で製造する。
[1]まず、図2(a)に示す一本の筒状の材料用金網10を用意する。その材料用金網10は、直径0.1〜0.2mmのステンレス鋼線を編んだもの(丸編品)である。そして、その材料用金網10の一端側の部分を被せ用金網12とし、材料用金網10の被せ用金網12よりも他端側の部分を重ね用金網11とする。
The metal wire compact 1 is manufactured by the following procedure.
[1] First, one cylindrical material wire mesh 10 shown in FIG. 2A is prepared. The material wire mesh 10 is a knitted stainless steel wire having a diameter of 0.1 to 0.2 mm (circular knitted product). A portion of the material wire mesh 10 on one end side is a covering wire mesh 12, and a portion on the other end side of the material wire mesh 10 than the covering wire mesh 12 is an overlapping wire mesh 11.

[2]次に、図2(b)に示すように、その筒状の材料用金網10を潰して径方向に平たくすることで、二重シート状にする。そして、被せ用金網12と重ね用金網11との間に切れ目13を、幅の半分程度にまで入れる。 [2] Next, as shown in FIG. 2 (b), the cylindrical metal wire mesh 10 is crushed and flattened in the radial direction to form a double sheet. Then, a cut 13 is made between the covering wire mesh 12 and the overlapping wire mesh 11 to about half the width.

[3]次に、図2(c)に示すように、二重シート状の重ね用金網11を幅方向(下方)に折ることで、重ね用金網11を四重シート状にする。これにより、一端側の被せ用金網12(二重)よりも、他端側の重ね用金網11(四重)の方が幅狭になる。 [3] Next, as shown in FIG. 2 (c), the double-sheet-shaped overlapping wire mesh 11 is folded in the width direction (downward) to make the overlapping wire-mesh 11 into a quadruple sheet shape. As a result, the overlapping wire mesh 11 (quadruple) on the other end side is narrower than the covering wire mesh 12 (double) on the one end side.

[4]次に、図3(d)(e)に示すように、圧縮成形機20の軸材22に、被せ用金網12を巻く。このとき、被せ用金網12は、きっちり一重(一周)に巻くことが好ましい。 [4] Next, as shown in FIGS. 3D and 3E, the covering wire mesh 12 is wound around the shaft member 22 of the compression molding machine 20. At this time, it is preferable that the covering wire mesh 12 is wound tightly (one round).

[5]次に、図3(f)に示すように、被せ用金網12の外周側に、重ね用金網11を複数回巻くことで、図4(g)に示すように、重ね用金網11を複数の巻き層L,L・・状に重ねる。なお、このとき、重ね用金網11(四重シート状)の端部は、解ける心配がある場合等には、幅方向に捩っておくとよい。 [5] Next, as shown in FIG. 3 (f), the overlapping wire mesh 11 is wound around the outer periphery of the covering wire mesh 12 a plurality of times, and as shown in FIG. Are stacked in a plurality of winding layers L, L. At this time, the end of the overlapping wire mesh 11 (quadruple sheet shape) may be twisted in the width direction when there is a fear of being unraveled.

[6]次に、図4(h)に示すように、被せ用金網12を幅方向(下方)に折ることで、重ね用金網11の幅方向側の一方の側部(上側部)に被せ用金網12を、前記複数の巻き層L,L・・を跨ぐ形で被せる。 [6] Next, as shown in FIG. 4 (h), the covering wire mesh 12 is folded in the width direction (downward) to cover one side portion (upper portion) of the overlapping wire mesh 11 in the width direction. The wire mesh 12 is covered so as to straddle the plurality of wound layers L, L.

[7]次に、図5(i)に示すように、その材料用金網10を巻いた軸材22を、圧縮成形機20のメス型23の内側にセットする。 [7] Next, as shown in FIG. 5 (i), the shaft member 22 around which the metal wire mesh 10 is wound is set inside the female die 23 of the compression molding machine 20.

[8]次に、図5(j)に示すように、メス型23にオス型21を被せる。これにより、材料用金網10をオス型21で被せ用金網12側から圧縮して、金属線圧縮体1を成形する。なお、このオス型21には、金属線圧縮体1に凹部1cを形成するための凸部21cが設けられている。 [8] Next, as shown in FIG. 5 (j), the female die 23 is covered with the male die 21. Thereby, the metal wire mesh 10 is compressed from the covering wire mesh 12 side by the male die 21 to form the metal wire compressed body 1. The male mold 21 is provided with a convex portion 21 c for forming the concave portion 1 c in the metal wire compressed body 1.

[9]次に、図5(k)に示すように、圧縮成形機20を開いて、金属線圧縮体1を取り出す。 [9] Next, as shown in FIG. 5 (k), the compression molding machine 20 is opened and the metal wire compact 1 is taken out.

本実施例1によれば、重ね用金網11の幅方向側の側部(上側部)に被せ用金網12を、複数の巻き層L,L・・を跨ぐ形で被せるので、巻き層L,L・・の境目が外部に露出しない。そのため、圧縮して成形する際には、巻き層L,L・・の境目でズレが発生し難くまた、成形後には、巻き層L,L・・の境目で割れが発生し難い。   According to the first embodiment, the covering wire mesh 12 is placed on the side portion (upper portion) on the width direction side of the overlapping wire mesh 11 so as to straddle the plurality of winding layers L, L. The border of L ... is not exposed to the outside. For this reason, when molding by compression, it is difficult for displacement to occur at the boundary between the wound layers L, L,..., And cracking is difficult to occur at the boundary between the wound layers L, L,.

そのため、金属線圧縮体1が低密度である場合や、大径である場合にも、ズレや割れが発生し難い。よって、金属線圧縮体1の内側にDPF30を挿入する際に、ズレや割れで引っかかりめくり上がる、といった問題も発生し難い。   Therefore, even when the metal wire compressed body 1 has a low density or has a large diameter, displacement and cracking hardly occur. Therefore, when the DPF 30 is inserted inside the metal wire compressed body 1, it is difficult to cause a problem that the DPF 30 is caught due to displacement or cracking.

図6,7に示す金属線圧縮体2は、マフラー40のパイプの外面と排気管41の内面との間に設置されるガスケットである。この金属線圧縮体2は、実施例1と同様、重ね部2aと被せ部2bとを含んでいる。具体的には、この金属線圧縮体2は、実施例1と比較して、内周側に凹部1cを備えていない点で相違し、その他の点で同様である。   The metal wire compression body 2 shown in FIGS. 6 and 7 is a gasket installed between the outer surface of the pipe of the muffler 40 and the inner surface of the exhaust pipe 41. Similar to the first embodiment, the metal wire compression body 2 includes an overlapping portion 2a and a covering portion 2b. Specifically, the metal wire compressed body 2 is different from the first embodiment in that the concave portion 1c is not provided on the inner peripheral side, and the other points are the same.

その金属線圧縮体2の製造方法は、図7に示すように、オス型21に凹部1cを形成するための凸部21cが設けられていない点で相違し、その他の点で同様である。また、被せ用金網12については、図7(i)に示すように、重ね用金網11の幅方向の一方の側部(上側部)に被せるのに加え、他方の側部(下側部)にも延ばして被せることが好ましい。   As shown in FIG. 7, the manufacturing method of the metal wire compressed body 2 is different in that the convex portion 21c for forming the concave portion 1c is not provided in the male die 21, and is the same in other points. Further, as shown in FIG. 7 (i), the covering wire mesh 12 is covered with one side portion (upper portion) in the width direction of the overlapping wire mesh 11, and the other side portion (lower side portion). It is preferable to extend the cover.

本実施例2によれば、マフラー40に用いるガスケットにおいても実施例1と同様の効果を得ることができる。   According to the second embodiment, the same effect as that of the first embodiment can be obtained in the gasket used for the muffler 40.

なお、本発明は前記実施例の構成に限定されるものではなく、発明の趣旨から逸脱しない範囲で適宜変更して具体化することもできる。   In addition, this invention is not limited to the structure of the said Example, In the range which does not deviate from the meaning of invention, it can change suitably and can be actualized.

1 金属線圧縮体(パッキン兼緩衝材)
1a 重ね部
1b 被せ部
2 金属線圧縮体(ガスケット)
2a 重ね部
2b 被せ部
10 材料用金網
11 重ね用金網
12 被せ用金網
21 オス型
L 巻き層
1 Metal wire compact (packing and cushioning material)
1a Overlapping part 1b Covering part 2 Metal wire compression body (gasket)
2a Stacking part 2b Covering part 10 Material wire mesh 11 Stacking wire mesh 12 Covering wire mesh 21 Male L Lound layer

Claims (2)

重ね用金網(11)が、長さ方向に複数回巻かれて複数の巻き層(L)状に重ねられた状態で圧縮されてなる重ね部(1a,2a)と、被せ用金網(12)が、重ね用金網(11)の幅方向の側部に前記複数の巻き層(L)を跨ぐ形で被せられた状態で圧縮されてなる被せ部(1b,2b)とを含み、
一本の材料用金網(10)の一端側の部分が被せ用金網(12)であり、材料用金網(10)の被せ用金網(12)よりも他端側の部分が重ね用金網(11)である金属線圧縮体。
The overlapping wire mesh (11) is compressed in a state where the wire mesh (11) is wound a plurality of times in the length direction and stacked in a plurality of wound layers (L), and the covering wire mesh (12). Includes a covered portion (1b, 2b) that is compressed in a state where the plurality of wound layers (L) are placed on the side portions in the width direction of the overlapping wire mesh (11),
One part of the wire mesh (10) for the material is a covering wire mesh (12), and the part of the material wire mesh (10) on the other side of the covering wire mesh (12) is the overlapping wire mesh (11). ) der Rukin genus line compression body.
一本の材料用金網(10)の一端側の部分を被せ用金網(12)とし、材料用金網(10)の被せ用金網(12)よりも他端側の部分を重ね用金網(11)とし、
重ね用金網(11)を幅方向に折ることで被せ用金網(12)よりも重ね用金網(11)を幅狭にし、
被せ用金網(12)を長さ方向に巻き、その外周側に重ね用金網(11)を複数回巻くことで重ね用金網(11)を複数の巻き層(L)状に重ね、被せ用金網(12)を幅方向に折ることで重ね用金網(11)の幅方向の側部に被せ用金網(12)を前記複数の巻き層(L)を跨ぐ形で被せてから、
材料用金網(10)を被せ用金網(12)側からオス型(21)で圧縮して金属線圧縮体(1,2)を成形する金属線圧縮体の製造方法。
A part of one material wire mesh (10) on one end side is a covering wire mesh (12), and a part of the material wire mesh (10) on the other side of the covering wire mesh (12) is an overlapping wire mesh (11). age,
The folding wire mesh (11) is made narrower than the covering wire mesh (12) by folding the overlapping wire mesh (11) in the width direction,
The covering wire mesh (12) is wound in the length direction, and the overlapping wire mesh (11) is wound around the outer peripheral side a plurality of times to overlap the overlapping wire mesh (11) in a plurality of winding layers (L). After covering the plurality of wound layers (L) with the covering wire mesh (12) on the side portion in the width direction of the overlapping wire mesh (11) by folding (12) in the width direction,
A method of manufacturing a metal wire compressed body in which a metal wire compression body (10) is formed by compressing a metal wire compression body (1, 2) by compressing with a male die (21) from the covering wire mesh (12) side.
JP2014001085A 2014-01-07 2014-01-07 Metal wire compact and method for producing the same Active JP6182076B2 (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2021037515A (en) * 2019-08-30 2021-03-11 日本ピラー工業株式会社 Method for manufacturing metal mesh mold

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS57181336U (en) * 1981-05-11 1982-11-17
JPH07121427B2 (en) * 1990-07-03 1995-12-25 日本メッシュ工業株式会社 Method for manufacturing short tubular laminated mesh member

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2021037515A (en) * 2019-08-30 2021-03-11 日本ピラー工業株式会社 Method for manufacturing metal mesh mold
JP7202991B2 (en) 2019-08-30 2023-01-12 日本ピラー工業株式会社 METHOD FOR MANUFACTURING METAL MESH MOLDED BODY

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