JPH04299124A - Molding method for laminated pipe joint made of frp - Google Patents

Molding method for laminated pipe joint made of frp

Info

Publication number
JPH04299124A
JPH04299124A JP3064701A JP6470191A JPH04299124A JP H04299124 A JPH04299124 A JP H04299124A JP 3064701 A JP3064701 A JP 3064701A JP 6470191 A JP6470191 A JP 6470191A JP H04299124 A JPH04299124 A JP H04299124A
Authority
JP
Japan
Prior art keywords
pipe
resin
mandrel
fibers
fiber
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.)
Pending
Application number
JP3064701A
Other languages
Japanese (ja)
Inventor
Norio Kajiwara
梶原 宣男
Shigeru Shimizu
茂 清水
Masayasu Shinobu
信夫 正廉
Hajime Naito
一 内藤
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.)
Sekisui Chemical Co Ltd
Original Assignee
Sekisui Chemical Co Ltd
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 Sekisui Chemical Co Ltd filed Critical Sekisui Chemical Co Ltd
Priority to JP3064701A priority Critical patent/JPH04299124A/en
Publication of JPH04299124A publication Critical patent/JPH04299124A/en
Pending legal-status Critical Current

Links

Landscapes

  • Moulding By Coating Moulds (AREA)

Abstract

PURPOSE:To manufacture at favorable productivity a laminated pipe joint made of FRP, which has a little nonuniform thickness. CONSTITUTION:A large number of the first connecting pins 74 are provided on the circumference of a pipe end part of a T-shaped mandrel pipe 70 and a guide 80 to the circumference of which a large number of the second connecting pins 81 are provided is fitted movably in a pipe axis direction at intervals further. The mandrel pipe is turned centering around a main pipe part shaft 73, a feed eye is moved, a resin impregnated roving fiber 60 (abbreviated to a fiber) is thrown on both of the second connecting pin and first connecting pin, the same is thrown on a main pipe part 71 and branch pipe part 72 of the mandrel pipe and wound round them in order helically at a fixed angle so that the same is thrown across alternately in a twill-like state. Then the guide provided with the second connecting pin is moved to the pipe end part side, through which tension of the fiber 61 thrown across is slackened and the fibers 63, 64 are wound round the same helically at a fixed angle. With this construction, the fiber thrown across is pressed against the surface of the mandrel pipe and finally the whole surface of the mandrel pipe is coated with the fiber which is wound helically round the whole surface at a fixed angle.

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、T字型のFRP製積層
管継手をフィラメントワインディング法により製造する
ための成形方法に関する。
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a method for manufacturing a T-shaped FRP laminated pipe joint by a filament winding method.

【0002】0002

【従来の技術】フィラメントワインディング法によるT
字型のFRP製積層管継手は、一般に、T字型のマンド
レル管を主管部軸を中心に回転させるとともにフィード
アイを移動させることにより、マンドレル管の外周に樹
脂含浸ロービング繊維をヘリカル状に巻き付けて積層し
樹脂を硬化させ脱型することにより製造される。この場
合、フィードアイの移動とマンドレル管の回転は、一般
にコンピューター制御で予め定められたプログラムによ
り行われる(例えば、特開平1−200939号公報参
照)。
[Prior art] T by filament winding method
Generally, the shape of a laminated FRP pipe joint is made by rotating a T-shaped mandrel pipe around the main pipe axis and moving the feed eye to helically wrap resin-impregnated roving fibers around the outer periphery of the mandrel pipe. It is manufactured by laminating layers, curing the resin, and removing the mold. In this case, the movement of the feed eye and the rotation of the mandrel tube are generally controlled by a computer according to a predetermined program (see, for example, Japanese Patent Laid-Open No. 1-200939).

【0003】0003

【発明が解決しようとする課題】このような成形方法に
おいて、得られるFRP製積層管継手のFRP層の肉厚
を出来るかぎり均一にするには、樹脂含浸ロービング繊
維を途中で設定角度を変えずに一定角度でT字型のマン
ドレル管に沿わせ、これをヘリカル状に巻き付けて積層
するのが好ましい。
[Problem to be solved by the invention] In such a molding method, in order to make the thickness of the FRP layer of the obtained FRP laminated pipe joint as uniform as possible, it is necessary to make the setting angle of the resin-impregnated roving fibers do not change midway. It is preferable that the material be placed along a T-shaped mandrel tube at a certain angle, and then helically wound and stacked.

【0004】しかし、このように樹脂含浸ロービング繊
維を一定角度でT字型のマンドレル管に巻き付けると、
このマンドレル管の全面を覆うことは不可能である。す
なわち、樹脂含浸ロービング繊維を途中で設定角度を変
えずに一定角度でT字型のマンドレル管に沿わせ、これ
をヘリカル状に巻き付ける場合は、巻き付けが進行する
につれてマンドレル管の主管部と枝管部とにかけて綾状
に交互に交差して架け渡された樹脂含浸ロービング繊維
が現れ、これが次第に増えていく。
However, when the resin-impregnated roving fibers are wound around a T-shaped mandrel tube at a certain angle,
It is impossible to cover the entire surface of this mandrel tube. In other words, when winding resin-impregnated roving fibers along a T-shaped mandrel at a constant angle without changing the set angle midway, in a helical manner, as the winding progresses, the main pipe and branch pipes of the mandrel pipe Resin-impregnated roving fibers that alternately intersect in a twill pattern appear and gradually increase in number.

【0005】このような綾状に交互に交差して架け渡さ
れた樹脂含浸ロービング繊維が現れると、この部分の樹
脂含浸ロービング繊維はマンドレル管の表面から浮いた
状態となりマンドレル管の表面に沿わなくなる。そのた
め、これ以上樹脂含浸ロービング繊維を一定角度でマン
ドレル管に巻き付けるわけにはいかない。
[0005] When resin-impregnated roving fibers that are strung across in a twill pattern appear, the resin-impregnated roving fibers in this part are suspended from the surface of the mandrel tube and do not follow the surface of the mandrel tube. . Therefore, it is no longer possible to wrap the resin-impregnated roving fibers around the mandrel tube at a fixed angle.

【0006】この場合、マンドレル管の主管部或いは枝
管部の一部には、樹脂含浸ロービング繊維が綾状に交差
して巻かれている部分と、一方向にしか巻かれていない
部分と、全く巻かれていない部分とが発生する。この発
生位置は、設定された巻き角度によって多少異なる。し
たがって、その後の工程で巻き角度を種々変更して、樹
脂含浸ロービング繊維が全く巻かれない部分及び一方向
にしか巻かれていない部分に、新たに樹脂含浸ロービン
グ繊維を巻き付けて全面を覆う必要がある。
[0006] In this case, a part of the main pipe part or branch pipe part of the mandrel pipe has a part in which the resin-impregnated roving fibers are wound in a twilled manner, and a part in which the resin-impregnated roving fibers are wound in only one direction. Some parts are not wound at all. This occurrence position differs somewhat depending on the set winding angle. Therefore, in the subsequent process, it is necessary to change the winding angle in various ways and wrap new resin-impregnated roving fibers in areas where resin-impregnated roving fibers are not wound at all or in areas where they are only wound in one direction to cover the entire surface. be.

【0007】ところが、全く巻かれない部分及び一方向
にしか巻かれていない部分がかなり多く発生発するため
、巻き付け角度を種々変更して樹脂含浸ロービング繊維
を巻き付ける操作は非常に面倒で時間を要する。しかも
、このような部分を覆う際には、どうしてもその他の部
分にも樹脂含浸ロービング繊維が巻き付けられるため、
全体として肉厚が著しく不均一となるという問題がある
However, since there are quite a lot of parts that are not wound at all and parts that are only wound in one direction, the operation of winding the resin-impregnated roving fibers while changing the winding angle variously is very troublesome and time-consuming. Moreover, when covering such areas, resin-impregnated roving fibers must be wrapped around other areas as well.
There is a problem in that the wall thickness as a whole becomes significantly non-uniform.

【0008】本発明は、上記の問題を解決するもので、
その目的とするところは、樹脂含浸ロービング繊維を一
定角度でT字型のマンドレル管にヘリカル状に巻付ける
際に、全面を比較的均一に覆うように樹脂含浸ロービン
グ繊維が巻き付けられ、それにより偏肉の少ない製品を
生産性良く得ることのできるFRP製積層管継手の成形
方法を提供することにある。
The present invention solves the above problems.
The purpose of this is that when the resin-impregnated roving fibers are helically wound around a T-shaped mandrel tube at a certain angle, the resin-impregnated roving fibers are wound so as to cover the entire surface relatively uniformly, thereby causing uneven distribution. To provide a method for forming a laminated pipe joint made of FRP, which can produce a product with a small amount of meat with good productivity.

【0009】[0009]

【課題を解決するための手段】本発明のFRP製積層管
継手の成形方法は、T字型のマンドレル管を主管部軸を
中心に回転させるとともにフィードアイを移動させるこ
とにより、マンドレル管の外周に樹脂含浸ロービング繊
維をヘリカル状に巻き付けて積層し樹脂を硬化させ脱型
してFRP製積層管継手を成形する方法において、マン
ドレル管の管端部の周囲に多数の第1係止ピンを設け、
さらに、周囲に多数の第2係止ピンを設けたガイドを管
軸方向に移動可能に一定の間隔をおいて管端部の外側方
に取り付け、樹脂含浸ロービング繊維を第2係止ピンと
第1係止ピンとの両方に引っ掛け、これをマンドレル管
の主管部と枝管部とにかけて綾状に交互に交差して架け
渡されるようにヘリカル状に順次巻き付け、その後、第
2係止ピンを設けたガイドを管端部側に移動させること
により、架け渡された樹脂含浸ロービング繊維の張力を
緩め、これに樹脂含浸ロービング繊維をヘリカル状に巻
き付けることにより、架け渡された樹脂含浸ロービング
繊維をマンドレル管の表面に押し付けることを特徴とし
ている。
[Means for Solving the Problems] The method for forming a laminated pipe joint made of FRP of the present invention involves rotating a T-shaped mandrel pipe around the main pipe axis and moving a feed eye. In the method of forming an FRP laminated pipe joint by wrapping resin-impregnated roving fibers in a helical shape and stacking them, curing the resin and demolding, a large number of first locking pins are provided around the pipe end of the mandrel pipe. ,
Furthermore, a guide provided with a large number of second locking pins around the periphery is attached to the outside of the tube end at regular intervals so as to be movable in the tube axis direction, and resin-impregnated roving fibers are attached to the second locking pins and the first locking pin. The second locking pin was hooked onto both the locking pins, and then wrapped around the main pipe and branch pipes of the mandrel pipe in a helical pattern so that they were crossed alternately in a twill pattern, and then a second locking pin was installed. By moving the guide to the end of the pipe, the tension of the resin-impregnated roving fibers is loosened, and by helically wrapping the resin-impregnated roving fibers around this, the resin-impregnated roving fibers are wrapped around the mandrel tube. It is characterized by being pressed against the surface of

【0010】0010

【作用】本発明方法において、樹脂含浸ロービング繊維
をマンドレル管の管端部の第2係止ピンと第1係止ピン
との両方に引っ掛けた後、マンドレル管の主管部と枝管
部とにかけて綾状に交互に交差して架け渡されるように
一定角度でヘリカル状に順次巻き付け、その後第2係止
ピンを設けたガイドを管端部側に移動させると、多数の
架け渡された樹脂含浸ロービング繊維の張力が自然に緩
められる。
[Operation] In the method of the present invention, after the resin-impregnated roving fibers are hooked on both the second locking pin and the first locking pin at the end of the mandrel tube, they are hooked onto the main tube portion and branch portions of the mandrel tube to form a twilled shape. When the guide provided with the second locking pin is moved to the end of the pipe, a large number of resin-impregnated roving fibers are wrapped around the fibers in a helical manner at a fixed angle so as to alternately cross over the fibers. The tension is naturally released.

【0011】その後、これに樹脂含浸ロービング繊維を
上記と同じ一定角度でヘリカル状に順次巻き付けると、
架け渡された樹脂含浸ロービング繊維は緩んだ状態にあ
るので、その上に巻き付けられる樹脂含浸ロービング繊
維の張力によりマンドレル管に自然に押し付けられ、そ
れにより従来方法で一定角度で巻き付ける場合に発生す
る巻残り部分が、上記の押し付けられる樹脂含浸ロービ
ング繊維により覆われる。このようにして、最終的には
マンドレル管の全面が、一定角度でヘリカル状に巻付け
られる樹脂含浸ロービング繊維により覆われる。
[0011] Thereafter, when resin-impregnated roving fibers are sequentially wound helically at the same constant angle as above,
Since the strung resin-impregnated roving fibers are in a loose state, they are naturally pressed against the mandrel tube by the tension of the resin-impregnated roving fibers wound over them, thereby eliminating the curling that occurs when wrapping at an angle in the conventional method. The remaining portion is covered by the pressed resin-impregnated roving fibers. In this way, the entire surface of the mandrel tube is finally covered with the resin-impregnated roving fibers which are helically wound at a constant angle.

【0012】0012

【実施例】次ぎに、本発明方法の一例を図面により説明
する。図1は本発明方法を説明するための要部を示す正
面図、図2は本発明方法を説明するための要部を示す斜
視図、図3は本発明方法の概要を示す説明図である。図
3において、多数のロービング繊維11、12、13は
、それぞれ案内ロール21、22、23を経て、繊維送
りロール31と樹脂含浸ロール40と繊維送りロール3
2とをこの順に通される。多数のロービング繊維11、
12、13としては、一般にガラス繊維ロービングや炭
素繊維ロービングなどが用いられる。多数のロービング
繊維11、12、13は、便宜的に三本を図示している
が、実際には数十本が使用される。
[Example] Next, an example of the method of the present invention will be explained with reference to the drawings. FIG. 1 is a front view showing the main parts for explaining the method of the invention, FIG. 2 is a perspective view showing the main parts for explaining the method of the invention, and FIG. 3 is an explanatory diagram showing an outline of the method of the invention. . In FIG. 3, a large number of roving fibers 11, 12, 13 pass through guide rolls 21, 22, 23, respectively, a fiber feed roll 31, a resin impregnated roll 40, and a fiber feed roll 3.
2 and 2 in this order. a large number of roving fibers 11;
As 12 and 13, glass fiber roving, carbon fiber roving, etc. are generally used. Although three of the large number of roving fibers 11, 12, and 13 are illustrated for convenience, several dozen fibers are actually used.

【0013】含浸槽41には、一般に熱硬化性の不飽和
ポリエステル樹脂液やエポキシ樹脂液等の樹脂液が入れ
られており、多数のロービング繊維11、12、13が
含浸槽41の樹脂含浸ロール40に接して通過する際に
、この樹脂含浸ロール40により樹脂液が多数のロービ
ング繊維11、12、13に適量含浸される。このよう
にして形成された多数の樹脂含浸ロービング繊維11’
 、12’ 、13’ は、引き揃えられた状態でフィ
ードアイ50に通され、ここでテープ状に収束される。 引き続いて、T字型のマンドレル管70の外周に一定角
度でヘリカル状に巻き付けられる。
The impregnating tank 41 generally contains a resin liquid such as a thermosetting unsaturated polyester resin liquid or an epoxy resin liquid, and a large number of roving fibers 11, 12, 13 are attached to the resin-impregnated roll of the impregnating tank 41. 40, a large number of roving fibers 11, 12, 13 are impregnated with an appropriate amount of resin liquid by this resin-impregnated roll 40. A large number of resin-impregnated roving fibers 11' formed in this way
, 12', 13' are passed through the feed eye 50 in an aligned state, where they are converged into a tape shape. Subsequently, it is wound helically around the outer periphery of the T-shaped mandrel tube 70 at a constant angle.

【0014】上記のフィードアイ50は、ドーナツ状の
アイ等の公知のフィードアイを使用することができる。 しかし、テープ状に良好に収束されるように、例えば口
径を大きくしたドーナツ状のアイや長円状のアイを用い
たり、或いは多数の隙間を有する櫛状のピンとこのピン
と直交し接近して配設された一対のスリットバーとから
なるフィードアイを用いその各隙間とスリットとをこの
順に通すようにする等、特別に工夫をしたフィードアイ
を使用するのが好ましい。
[0014] As the feed eye 50 described above, a known feed eye such as a donut-shaped eye can be used. However, in order to converge well into a tape shape, for example, a donut-shaped eye with a large diameter or an oval-shaped eye is used, or a comb-shaped pin with a large number of gaps is arranged orthogonally to the pin and close to it. It is preferable to use a specially devised feed eye, such as using a feed eye consisting of a pair of slit bars provided so as to pass through each gap and the slit in this order.

【0015】なお、このフィードアイ50は、図では省
略しているが、トラバース台に取付けられ、上下方向、
左右方向、前後方向に移動可能に構成され、さらに水平
な中心軸及びこの中心軸に対して垂直な中心軸に対して
それぞれ正逆方向に回動可能に構成されている。そして
、フィードアイ50の移動及びマンドレル管70の回転
は、コンピューター制御で予め定められたプログラムに
より作動するようになされている。
Although not shown in the figure, this feed eye 50 is attached to a traverse table, and is
It is configured to be movable in the left-right direction and the front-back direction, and further configured to be rotatable in forward and reverse directions about a horizontal center axis and a center axis perpendicular to this center axis. The movement of the feed eye 50 and the rotation of the mandrel tube 70 are controlled by a computer according to a predetermined program.

【0016】また、T字型のマンドレル管70は、図1
及び図2に示すように、分解及び組立てが可能な主管部
71と枝管部72とから構成され、主管部71には回転
軸73が通されており、T字型のマンドレル管70は回
転軸73により主管部軸を中心に回転可能になされてい
る。そして、主管部71の両端部及び枝管部72の管端
部には、その周囲に多数の第1係止ピン74が規則正し
く突設されている。図1においては各2本が示され、他
のピンは省略されている。この第1係止ピン74は予め
適当な部材の周囲に突設しておき、これを主管部71の
両端及び枝管部72の管端に嵌め込むようにして設けて
もよい。
Further, the T-shaped mandrel tube 70 is shown in FIG.
As shown in FIG. 2, it is composed of a main pipe section 71 and a branch pipe section 72 that can be disassembled and assembled.A rotating shaft 73 is passed through the main pipe section 71, and a T-shaped mandrel pipe 70 is A shaft 73 allows rotation around the main pipe shaft. A large number of first locking pins 74 are regularly protruded from both ends of the main pipe part 71 and the pipe ends of the branch pipe part 72 around the ends thereof. In FIG. 1, two pins are shown, and the other pins are omitted. The first locking pin 74 may be provided in advance to protrude around a suitable member, and then fitted into both ends of the main pipe section 71 and the pipe ends of the branch pipe section 72.

【0017】さらに、主管部71の両端部及び枝管部7
2の管端部には、周囲に多数の第2係止ピン81を規則
正しく突設したガイド80が、一定の間隔をおいて取付
けられている。この場合、この主管部71のガイド80
は回転軸73に通され、管軸方向に移動可能に取付けら
れており、また枝管部72のガイド80は固定軸75に
通され、管軸方向に移動可能に取付けられている。そし
て、このガイド80は、通常は止めネジ或いは止めキー
等で回転軸73及び固定軸75に動かないように固定さ
れている。
Furthermore, both ends of the main pipe section 71 and the branch pipe section 7
A guide 80 having a large number of second locking pins 81 projecting regularly around the periphery is attached to the end of the tube 2 at regular intervals. In this case, the guide 80 of this main pipe section 71
is passed through the rotating shaft 73 and is attached so as to be movable in the tube axis direction, and the guide 80 of the branch pipe section 72 is passed through the fixed shaft 75 and is attached so as to be movable in the tube axis direction. The guide 80 is usually fixed to the rotating shaft 73 and the fixed shaft 75 using a set screw or a set key so as not to move.

【0018】以下、テープ状の樹脂含浸ロービング繊維
(以下、繊維と略称する)60を、例えば主管部軸に対
して±20〜55度の範囲の一定角度で、T字型のマン
ドレル管70にヘリカル状に巻き付けて積層する場合に
ついて述べる。この場合、繊維60は、一方(図1にお
いて左側)の主管部71→枝管部72→他方(図1にお
いて右側)の主管部71→枝管部72→一方(図1にお
いて左側)の主管部71へとヘリカル状に巻き付けてい
くパスライン(枝管部軸側のパスライン)と、一方(図
1において左側)の主管部71→他方(図1において右
側)の主管部71→一方(図1において左側)の主管部
71へとヘリカル状に巻き付けていくパスライン(主管
部軸側のパスライン)とに、分けてプログラムが設定さ
れる。
Hereinafter, a tape-shaped resin-impregnated roving fiber (hereinafter abbreviated as fiber) 60 is attached to a T-shaped mandrel tube 70 at a constant angle in the range of ±20 to 55 degrees with respect to the main tube axis, for example. The case of helical winding and lamination will be described. In this case, the fibers 60 are connected to one (left side in FIG. 1) main pipe section 71 → branch pipe section 72 → other (right side in FIG. 1) main pipe section 71 → branch pipe section 72 → one (left side in FIG. 1) main pipe section 72 The pass line (the pass line on the axis side of the branch pipe part) that wraps around the section 71 in a helical manner, and the main pipe part 71 on one side (on the left side in Fig. 1) → the main pipe part 71 on the other side (on the right side in Fig. 1) → on the other side ( Programs are set separately for a pass line (pass line on the shaft side of the main pipe part) that winds helically around the main pipe part 71 (on the left side in FIG. 1).

【0019】先ず、繊維60は、プログラムにしたがっ
て、マンドレル管70の一方の主管部71にある第2係
止ピン81から第1係止ピン74へと引っ掛けられ、隣
接する第1係止ピン同士の間を通された後、一定の角度
で主管部71から枝管部72へと巻き付けられ、さらに
枝管部72にある第1係止ピン74に引っ掛けられ(こ
の場合、枝管部72の第2係止ピン81は使用しない)
、そこで方向転換して枝管部72から他方(図1におい
て右側)の主管部71へと巻付けられる。引き続いて、
他方の主管部71にある第1係止74ピンから第2係止
ピン81へと引っ掛けられ、そこで方向転換して他方の
主管部71にある第1係止ピン74へと引っ掛けられた
後、上記と同様なプロセスが繰り返されてヘリカル状に
順次巻付けられる(枝管部軸側のパスライン)。なお、
この場合、T字型のマンドレル管70の肩口に巻く押し
付け用の繊維60のパスライン(枝管部軸側のパスライ
ン)を、予め1パスだけ残しておくようにプログラムが
設定される。
First, the fiber 60 is hooked from the second locking pin 81 to the first locking pin 74 on one main pipe portion 71 of the mandrel tube 70 according to the program, and the adjacent first locking pins are hooked together. After being passed through the gap, it is wound from the main pipe part 71 to the branch pipe part 72 at a certain angle, and is further hooked on the first locking pin 74 on the branch pipe part 72 (in this case, the first locking pin 74 of the branch pipe part 72 (Second locking pin 81 is not used)
There, it changes direction and is wound from the branch pipe section 72 to the other main pipe section 71 (on the right side in FIG. 1). Subsequently,
After being hooked from the first locking pin 74 on the other main pipe section 71 to the second locking pin 81, changing direction there and hooking on the first locking pin 74 on the other main pipe section 71, The same process as above is repeated to sequentially wind the pipe in a helical shape (pass line on the shaft side of the branch pipe). In addition,
In this case, the program is set so that only one pass line (pass line on the branch pipe shaft side) of the pressing fiber 60 wound around the shoulder of the T-shaped mandrel tube 70 is left in advance.

【0020】このように、例えば主管部軸に対して±2
0〜55度の範囲の一定角度で、ヘリカル状に順次巻き
付けられていくと、設定角度により多少範囲は異なるが
、枝管部72の管端部から中途にかけては、繊維60が
良好にマンドレル管の表面に沿ってヘリカル状に巻き付
けられていく(この場合、T字型のマンドレル管を用い
るので、枝管部軸に対しては±70〜35度の範囲の一
定角度でヘリカル状に順次巻き付けられていくことにな
る)。しかし、主管部71と枝管部72との合流部分か
ら枝管部72の中途にかけては、繊維60が綾状に交互
に交差して架け渡されるようにヘリカル状に巻き付けら
れていき、マンドレル管70の表面から浮いてくる。6
1は綾状に交互に交差して架け渡された繊維を示す。こ
の時、繊維60は、一方の主管部71にある第1係止7
4ピンの外側(主管部71の端面側)の位置にある。
In this way, for example, ±2 with respect to the main pipe axis.
When the fibers 60 are sequentially wound in a helical manner at a fixed angle in the range of 0 to 55 degrees, the range varies somewhat depending on the set angle, but from the end of the branch pipe section 72 to the middle, the fibers 60 are well wrapped around the mandrel pipe. (In this case, since a T-shaped mandrel tube is used, the tube is wound helically along the surface of the branch tube at a constant angle within the range of ±70 to 35 degrees.) ). However, from the confluence of the main pipe section 71 and the branch pipe section 72 to the middle of the branch pipe section 72, the fibers 60 are wound helically so as to alternately cross over each other in a twill pattern. It floats from the surface of 70. 6
1 indicates fibers that are alternately crossed and spanned in a twilled manner. At this time, the fiber 60 is attached to the first lock 7 in one main pipe portion 71.
It is located on the outside of the 4-pin (on the end surface side of the main pipe portion 71).

【0021】次いで、この繊維60は、方向転換して第
1係止ピン74に引っ掛けられ、第1係止ピン74の内
側の近くでほぼ周方向に1回巻き付けられる。62はほ
ぼ周方向に1回巻き付けられた繊維を示す。そして、こ
の繊維60は、再び方向転換して一方の主管部71にあ
る第1係止74ピンを経て第2係止ピン81に引っ掛け
られる。このように、繊維60を第1係止ピン74の内
側でほぼ周方向に巻き付ける操作は、綾状に交互に交差
して架け渡された繊維60が後述のように緩められた際
に、この部分の繊維60がばらばらに分離するの防止す
るのに有効である。しかし、この周方向に巻き付ける操
作は必ずしも必要としない。また、繊維60を巻き付け
る代わりにプラスチックバンド等を巻き付けてもよい。 この部分は後で切断除去されるので製品とはならず、異
種の材料でも支障はない。
The fiber 60 is then turned around and hooked onto the first locking pin 74, and is wound approximately once around the inside of the first locking pin 74 in the circumferential direction. 62 indicates a fiber wound approximately once in the circumferential direction. Then, the fiber 60 changes direction again and is hooked onto the second locking pin 81 via the first locking pin 74 on one main pipe portion 71. In this way, the operation of winding the fibers 60 approximately circumferentially inside the first locking pin 74 is performed when the fibers 60 that are strung across in a twill pattern are loosened as described below. This is effective in preventing the fibers 60 of the portion from separating into pieces. However, this circumferential winding operation is not necessarily required. Moreover, instead of wrapping the fiber 60, a plastic band or the like may be wrapped. Since this part will be cut and removed later, it will not become part of the product, and different materials can be used without any problem.

【0022】その後、第2係止ピン81に引っ掛けられ
た繊維60を第1係止ピン74の方へ方向転換させると
同時に、止めネジ或いは止めキーを操作してガイド80
の固定を緩めると、繊維60の張力によりガイド80は
主管部71の管端部側に移動し、それにより一方の主管
部側に架け渡された繊維61の張力が緩められる。そし
て、これに繊維60が主管部軸側のパスラインで、主管
部71の表面に沿って1パスだけヘリカル状に巻き付け
られる。63は1パスだけヘリカル状に巻き付けられた
繊維を示す。この時、一方の主管部71の管端部から巻
き付けられた繊維60は、他方の主管部71の管端部の
第2係止ピン81に引っ掛けられ、方向転換して第1係
止ピン74の内側の近くでほぼ周方向に1回巻き付けら
れる。この周方向に巻き付ける操作は必ずしも必要とし
ない。また、繊維60を巻き付ける代わりにプラスチッ
クバンド等を巻き付けてもよい。以後上記と同様のプロ
セスで他方の主管部側の架け渡された繊維61の張力が
緩められ、これに繊維60が主管部軸側のパスラインで
、主管部71に沿って1パスだけヘリカル状に巻き付け
られる。63’ は1パスだけヘリカル状に巻き付けら
れた繊維を示す。
Thereafter, the direction of the fiber 60 hooked on the second locking pin 81 is changed toward the first locking pin 74, and at the same time, the guide 80 is operated by operating the set screw or locking key.
When the fixation of the guide 80 is loosened, the tension of the fibers 60 moves the guide 80 toward the tube end side of the main tube section 71, thereby loosening the tension of the fibers 61 spanning one main tube section. Then, the fiber 60 is helically wound around the fiber 60 for one pass along the surface of the main pipe portion 71 along the pass line on the main pipe shaft side. 63 indicates a fiber that is helically wound for only one pass. At this time, the fiber 60 wound from the pipe end of one main pipe part 71 is hooked on the second locking pin 81 at the pipe end of the other main pipe part 71, changes direction, and moves to the first locking pin 74. It is wrapped approximately once in the circumferential direction near the inside of the tube. This circumferential winding operation is not necessarily required. Moreover, instead of wrapping the fiber 60, a plastic band or the like may be wrapped. Thereafter, in the same process as above, the tension of the fibers 61 bridged on the other main pipe side is loosened, and the fibers 60 are helically shaped for one pass along the main pipe part 71 on the pass line on the main pipe axis side. wrapped around. 63' indicates a fiber wound helically for only one pass.

【0023】引き続いて、前にマンドレル管70の肩口
に巻くために残しておいたパスラインに沿って繊維60
が1パスだけヘリカル状に巻き付けられる。64は肩口
に1パスだけヘリカル状に巻き付けられた繊維を示す。 これにより綾状に交互に交差して架け渡された上記繊維
61がマンドレル管70の表面に良好に押し付けられる
。最後に、繊維60は主管部71の表面に沿ってヘリカ
ル状に順次巻き付けられる(主管部軸側のパスライン)
。このようにして、全面の巻き付けが終了する。なお、
設定角度の関係から、一般にマンドレル管70の肩口の
コーナーに巻き付け不可能な部分が僅かに生じるが、こ
の部分は初めの設定角度を変更して繊維60が巻き付け
られる。これは従来方法と同様である。
Subsequently, the fiber 60 is rolled along the pass line previously left for winding around the shoulder of the mandrel tube 70.
is wound helically in just one pass. 64 indicates a fiber wound helically around the shoulder for one pass. As a result, the fibers 61, which are strung across in a twill pattern, are pressed against the surface of the mandrel tube 70 in a good manner. Finally, the fibers 60 are sequentially wound helically along the surface of the main pipe section 71 (pass line on the axis side of the main pipe section).
. In this way, the wrapping of the entire surface is completed. In addition,
Due to the setting angle, there is generally a slight portion at the shoulder corner of the mandrel tube 70 that cannot be wrapped, but the fiber 60 is wound around this portion by changing the initial setting angle. This is similar to the conventional method.

【0024】このようにして、繊維60はT字型のマン
ドレル管70の外周に、予め決められたパターンで一定
角度でヘリカル状に巻き付けられ所望の厚さに積層され
、その後は公知の工程、例えばマンドレル管の端部の不
要な積層繊維を切断除去する工程などを経て、加熱炉等
に入れられ加熱硬化され、最後にマンドレル70から脱
型される。かくして、T字型のFRP製積層管継手が成
形される。
In this way, the fibers 60 are helically wound around the outer periphery of the T-shaped mandrel tube 70 at a constant angle in a predetermined pattern and are laminated to a desired thickness. For example, after going through a step of cutting and removing unnecessary laminated fibers at the end of the mandrel tube, it is placed in a heating furnace or the like to be heated and hardened, and finally demolded from the mandrel 70. In this way, a T-shaped FRP laminated pipe joint is formed.

【0025】上述の例では、例えば主管部軸に対して±
20〜55度の範囲の一定角度で繊維60を巻き付ける
場合について説明したが、例えば主管部軸に対して±5
5〜65度の範囲の一定角度で繊維60巻き付ける場合
(この場合は、枝管部軸に対しては±35〜25度の範
囲の一定角度でヘリカル状に順次巻き付けられていくこ
とになる)については、次ぎのような方法が採用される
In the above example, for example, ±
Although we have described the case where the fiber 60 is wound at a constant angle in the range of 20 to 55 degrees,
When 60 fibers are wound at a constant angle in the range of 5 to 65 degrees (in this case, the fibers are sequentially wound in a helical shape at a constant angle in the range of ±35 to 25 degrees with respect to the branch pipe axis) For this, the following method is adopted.

【0026】この場合も、繊維60は、枝管部軸側のパ
スラインと主管部軸側のパスラインとに分けてプログラ
ムが設定される。そして、繊維60は、プログラムにし
たがって、前に説明した±20〜55度の巻き角度の場
合と同様な工程でマンドレル管70に巻き付けられる。 但し、主管部71の両端部の第2係止ピン81は使用せ
ずに、枝管部72の第2係止ピンが使用される。そして
、マンドレル管70の主管部71と枝管部72とにかけ
て綾状に交互に交差して架け渡された繊維60は、枝管
部72のガイド80を管端部側に移動させることにより
その張力が緩められる。なお、この場合は、巻き角度が
大きくなるにつれて主管部軸側のパスラインが少なくな
り、巻き角度が主管部軸に対して60度を越えると、架
け渡された繊維60は、枝管部軸側のパスラインだけで
マンドレル管70の表面に押し付けられ、ヘリカル状に
所望の厚さに積層される。
In this case as well, the fibers 60 are programmed separately into pass lines on the branch pipe shaft side and pass lines on the main pipe shaft side. The fiber 60 is then wound around the mandrel tube 70 according to the program in a process similar to the winding angle of ±20 to 55 degrees previously described. However, the second locking pins 81 at both ends of the main pipe section 71 are not used, but the second locking pins on the branch pipe section 72 are used. The fibers 60, which are strung across the main pipe part 71 and the branch pipe part 72 of the mandrel pipe 70 in a twilled manner, are moved by moving the guide 80 of the branch pipe part 72 toward the pipe end side. The tension is released. In this case, as the winding angle increases, the number of pass lines on the main pipe axis side decreases, and when the winding angle exceeds 60 degrees with respect to the main pipe axis, the spanned fibers 60 will cross the branch pipe axis. They are pressed against the surface of the mandrel tube 70 only by the side pass lines, and are laminated in a helical manner to a desired thickness.

【0027】[0027]

【発明の効果】上述の通り、本発明の成形方法によれば
、T字型のマンドレル管に一定角度でヘルカル状に樹脂
含浸ロービング繊維を巻付ける際に、マンドレル管の主
管部と枝管部とにかけて綾状に交互に交差して架け渡さ
れる樹脂含浸ロービング繊維の張力を緩めて、これをマ
ンドレル管の表面に沿わせることができるので、全く巻
かれない部分が発生しない。
Effects of the Invention As described above, according to the forming method of the present invention, when winding resin-impregnated roving fibers in a helical shape at a constant angle around a T-shaped mandrel pipe, the main pipe part and the branch pipe part of the mandrel pipe are By loosening the tension of the resin-impregnated roving fibers, which are strung together in a twilled manner, the fibers can be made to follow the surface of the mandrel tube, so there are no unwound portions.

【0028】したがって、従来方法のように、その後の
工程で巻き角度を種々変更して、全く巻かれない部分に
樹脂含浸ロービング繊維を巻き付けて全面を覆う操作は
必要がなく、生産性が向上する。しかも、余分な部分に
巻付けられる樹脂含浸ロービング繊維が少なくなり、そ
れにより偏肉の少ないT字型のFRP製積層管継手を得
ることができる。
[0028] Therefore, unlike the conventional method, there is no need to vary the winding angle in subsequent steps and wrap the resin-impregnated roving fibers around the parts that are not wound at all to cover the entire surface, improving productivity. . In addition, the amount of resin-impregnated roving fibers wound around the excess portion is reduced, thereby making it possible to obtain a T-shaped FRP laminated pipe joint with less uneven thickness.

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

【図1】本発明方法を説明するための要部を示す正面図
[Fig. 1] Front view showing main parts for explaining the method of the present invention

【図2】本発明方法を説明するための要部を示す斜視図
[Fig. 2] A perspective view showing the main parts for explaining the method of the present invention.

【図3】本発明方法の概要を示す説明図[Fig. 3] Explanatory diagram showing an overview of the method of the present invention

【符号の説明】[Explanation of symbols]

60  樹脂含浸ロービング繊維 61  綾状に架け渡された樹脂含浸ロービング繊維7
0  T字型のマンドレル管 71  マンドレル管の主管部 72  マンドレル管の枝管部 73  回転軸 74  第1係止ピン 75  固定軸 80  ガイド 81  第2係止ピン
60 Resin-impregnated roving fibers 61 Resin-impregnated roving fibers 7 strung across in a twilled manner
0 T-shaped mandrel tube 71 Mandrel tube main tube section 72 Mandrel tube branch tube section 73 Rotating shaft 74 First locking pin 75 Fixed shaft 80 Guide 81 Second locking pin

Claims (1)

【特許請求の範囲】[Claims] 【請求項1】  T字型のマンドレル管を主管部軸を中
心に回転させるとともにフィードアイを移動させること
により、マンドレル管の外周に樹脂含浸ロービング繊維
をヘリカル状に巻き付けて積層し樹脂を硬化させ脱型し
てFRP製積層管継手を成形する方法において、マンド
レル管の管端部の周囲に多数の第1係止ピンを設け、さ
らに、周囲に多数の第2係止ピンを設けたガイドを管軸
方向に移動可能に一定の間隔をおいて管端部の外側方に
取り付け、樹脂含浸ロービング繊維を第2係止ピンと第
1係止ピンとの両方に引っ掛け、これをマンドレル管の
主管部と枝管部とにかけて綾状に交互に交差して架け渡
されるようにヘリカル状に順次巻き付け、その後、第2
係止ピンを設けたガイドを管端部側に移動させることに
より、架け渡された樹脂含浸ロービング繊維の張力を緩
め、これに樹脂含浸ロービング繊維をヘリカル状に巻き
付けることにより、架け渡された樹脂含浸ロービング繊
維をマンドレル管の表面に押し付けることを特徴とする
FRP製積層管継手の成形方法。
[Claim 1] By rotating a T-shaped mandrel pipe around the axis of the main pipe part and moving the feed eye, resin-impregnated roving fibers are helically wound and laminated around the outer periphery of the mandrel pipe, and the resin is cured. In the method of demolding and forming an FRP laminated pipe joint, a guide is provided in which a large number of first locking pins are provided around the tube end of the mandrel tube, and a large number of second locking pins are further provided around the tube end. The resin-impregnated roving fibers are attached to the outside of the tube end at regular intervals so as to be movable in the tube axis direction, and the resin-impregnated roving fibers are hooked to both the second locking pin and the first locking pin. Wrap it in a helical manner so that it crosses over the branch pipe part alternately in a twill pattern, and then the second
By moving the guide provided with the locking pin to the pipe end side, the tension of the resin-impregnated roving fibers bridged is loosened, and by helically wrapping the resin-impregnated roving fibers around this, the bridged resin A method for forming a laminated FRP pipe joint, characterized by pressing impregnated roving fibers onto the surface of a mandrel pipe.
JP3064701A 1991-03-28 1991-03-28 Molding method for laminated pipe joint made of frp Pending JPH04299124A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP3064701A JPH04299124A (en) 1991-03-28 1991-03-28 Molding method for laminated pipe joint made of frp

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP3064701A JPH04299124A (en) 1991-03-28 1991-03-28 Molding method for laminated pipe joint made of frp

Publications (1)

Publication Number Publication Date
JPH04299124A true JPH04299124A (en) 1992-10-22

Family

ID=13265715

Family Applications (1)

Application Number Title Priority Date Filing Date
JP3064701A Pending JPH04299124A (en) 1991-03-28 1991-03-28 Molding method for laminated pipe joint made of frp

Country Status (1)

Country Link
JP (1) JPH04299124A (en)

Similar Documents

Publication Publication Date Title
US4273601A (en) Method for the production of elongated resin impregnated filament composite structures
EP0357710B1 (en) Storage tanks with fabricated support ribs
US4857124A (en) Fiber-reinforced plastic strut connecting link
US4401495A (en) Method of winding composite panels
US4463044A (en) Composite panel of varied thickness
US20120279635A1 (en) Methods for producing a part made from a composite material, obtained by depositing layers of reinforcing fibers urged onto a mandrel
JPH0544908B2 (en)
US20070289700A1 (en) Method and apparatus for producing off-axis composite prepreg material
JP3732953B2 (en) Pull-out molding method and pull-out molding machine for resin reinforced fiber
US3700527A (en) Transverse filament reinforcing tape and methods and apparatus for the production thereof
US4459171A (en) Mandrel for forming a composite panel of varied thickness
JPH04299125A (en) Molding method of laminated pipe joint made of frp
CA2121466C (en) Process and apparatus for forming frp formed product with spiral groove
JPH04299124A (en) Molding method for laminated pipe joint made of frp
JPH05168375A (en) Material for fishing rod and its production
JPH04299126A (en) Molding method of laminated pipe joint made of frp
JPH06278216A (en) Production of tubular member such as golf shaft of fishing rod
US3676246A (en) Method for longitudinal reinforcing plastic pipes
US20220242062A1 (en) Fibre-Reinforced Composite Tubular Shafts and Manufacture Thereof
JP2675862B2 (en) Manufacturing method of fiber-reinforced resin filament with spiral recess
US7513970B2 (en) Method and apparatus for production of a reinforcement bar
JPH07164542A (en) Production device for fiber-reinforced resin component part and method thereof
JPS5941227A (en) Manufacture of seamless lightweight frp torus
JPS6221620B2 (en)
JPS61211005A (en) Resin impregnated fiber reinforced molding material and manufacture thereof