JPS58135723A - Manufacture of plastic lining corrugated metallic pipe - Google Patents
Manufacture of plastic lining corrugated metallic pipeInfo
- Publication number
- JPS58135723A JPS58135723A JP1749382A JP1749382A JPS58135723A JP S58135723 A JPS58135723 A JP S58135723A JP 1749382 A JP1749382 A JP 1749382A JP 1749382 A JP1749382 A JP 1749382A JP S58135723 A JPS58135723 A JP S58135723A
- Authority
- JP
- Japan
- Prior art keywords
- lining
- metallic pipe
- plastic
- corrugated
- corrugated metallic
- 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
Links
Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B21—MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
- B21C—MANUFACTURE OF METAL SHEETS, WIRE, RODS, TUBES OR PROFILES, OTHERWISE THAN BY ROLLING; AUXILIARY OPERATIONS USED IN CONNECTION WITH METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL
- B21C37/00—Manufacture of metal sheets, bars, wire, tubes or like semi-manufactured products, not otherwise provided for; Manufacture of tubes of special shape
- B21C37/06—Manufacture of metal sheets, bars, wire, tubes or like semi-manufactured products, not otherwise provided for; Manufacture of tubes of special shape of tubes or metal hoses; Combined procedures for making tubes, e.g. for making multi-wall tubes
- B21C37/15—Making tubes of special shape; Making tube fittings
- B21C37/154—Making multi-wall tubes
Landscapes
- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Lining Or Joining Of Plastics Or The Like (AREA)
- Application Of Or Painting With Fluid Materials (AREA)
Abstract
Description
【発明の詳細な説明】
本発明は、波付金属管の表面のブノス、チックライニン
グ方法に関する。DETAILED DESCRIPTION OF THE INVENTION The present invention relates to a method for bunosing and tick lining the surface of a corrugated metal pipe.
プラスチックをライニングした金属管は、ライニングに
供されるプラスチックの性質によって耐食性を与えた抄
美観を与えるなどの目的から金属直管の場合では実用に
供されてから既に久しくな7つている。Plastic-lined metal pipes have been put into practical use for a long time, in the case of straight metal pipes, for the purpose of providing corrosion resistance and aesthetic appearance due to the properties of the plastic used for the lining.
金属直管のプラスチックライニング方法としては、大別
するとプラスチック粉末宝加熱した金属管表向に融着さ
せる粉末塗装法と押出しなどによりプラスチックを金属
管に直接被覆させるいわゆるプラスチックパイプ被覆法
に分けられる。前者の範−には、流動浸漬法、フレーム
スプレー法などのほか、高電圧下でスプレーガンにより
プラスチック粉末を金属管に吹色つけ管表面に電気的に
付着させ先後加熱溶融する静電塗装法がある。まえ後者
のプラスチックパイプ被覆法のうち金属管外周表面に被
覆する場合には最も一般的なものとして押出被覆を行う
か熱収縮性のプラスチックチューブに金属管を通したの
ち加熱するなどの方法があり、また管内表面を被覆する
ときには熱膨張性チェープ管内に通して膨張させる方法
と冷承法がある。Methods for lining straight metal pipes with plastic can be roughly divided into powder coating methods, in which plastic powder is heated and fused to the surface of the metal pipe, and so-called plastic pipe coating methods, in which the metal pipes are directly coated with plastic by extrusion or the like. The former category includes the fluidized dipping method, flame spray method, etc., as well as the electrostatic coating method, in which plastic powder is colored on a metal tube using a spray gun under high voltage, and then electrically adhered to the tube surface and then heated and melted. There is. Of the latter methods of coating plastic pipes, the most common methods for coating the outer surface of metal pipes include extrusion coating or heating after passing the metal pipe through a heat-shrinkable plastic tube. When coating the inner surface of a tube, there are two methods: passing it through a thermally expandable tape tube and expanding it, and a cold application method.
更に粉末樹脂の懸濁液を金属管内外表面に吹付は加熱焼
成するディスパージョン法などもある。Furthermore, there is also a dispersion method in which a suspension of powdered resin is sprayed onto the inner and outer surfaces of a metal tube and then heated and baked.
波付金属管に対するプラスチックライニングは、その金
属表面が平滑でないことから本質的に均一膜厚のライニ
ングを行うことは困難であるか、波の高さHとその波の
ピッチPの関係H/P(以下これを波高比と称する)が
充分にI」〜さい11自であるときは略直管と同様に取
扱うことが可能である。Plastic lining for corrugated metal pipes is essentially difficult to line with a uniform thickness because the metal surface is not smooth, or the relationship between the height H of the corrugations and the pitch P of the corrugations H/P When the wave height ratio (hereinafter referred to as the wave height ratio) is sufficiently between I'' and 11, it can be handled almost in the same way as a straight pipe.
例えば、−例として金属管をロール方式で波付加工する
ことが行われているが、この時には波高比が0.2〜0
.5程贋のものが製造されており、この範囲の波高比の
波付金属管の場合では従来の直管2イニング技術をその
11応用することが可能なことが多い。For example, metal pipes are corrugated using a roll method, but in this case the wave height ratio is 0.2 to 0.
.. About 5 fakes are manufactured, and in the case of corrugated metal pipes with a wave height ratio in this range, it is often possible to apply the conventional straight pipe 2-inning technique.
波付金属管における波高比が徐々に大きくなるに従がい
、均一ライニング層は形成しがたくなり、道には連続し
九ライニング層の形成自体も不可能となる場合も起り始
め、従来法では処理しきれなくなる。As the wave height ratio in corrugated metal pipes gradually increases, it becomes difficult to form a uniform lining layer, and there are cases where it becomes impossible to form a continuous lining layer, which is difficult to achieve with conventional methods. It becomes too much to handle.
これの一対策法として、金属製直管に予めライニングを
施し次いでこれを波付加工し、要すれば更に管軸方向へ
圧縮する方法も考えられるが、この方法によるとライニ
ング層と金属面とに剥離が生じたり、ライニング層の特
に管表面の山部と谷部における応力歪が残留しどれが時
間の経過と共にライニング層に対してクラックを発生さ
せる原因となり好ましくない。One possible solution to this problem is to line a straight metal pipe in advance, then apply corrugation to it, and compress it further in the pipe axis direction if necessary. However, with this method, the lining layer and the metal surface are This is undesirable because peeling may occur in the lining layer, or residual stress strain remains in the lining layer, particularly in the peaks and valleys of the tube surface, which may cause cracks to occur in the lining layer over time.
本発明は、上述の如き従来法における技術的課題に対処
してこれを解決すぺ〈鋭意研究し、波高比が大きい場合
でも比較的ライニング層の厚さを均一とし嵐好な性能を
有するプラスチックライニング波付金属管の製造方法を
見出した。The present invention addresses and solves the technical problems of the conventional methods as described above.Through extensive research, we have developed a plastic that has a relatively uniform lining layer thickness even when the wave height ratio is large and has excellent performance. We have discovered a method for manufacturing lined corrugated metal tubes.
以下図面を参照しながら本発明を説明する。第1図は波
付金属管の横断面を示し丸もので波高Hと波のピッチP
を示したものである。The present invention will be described below with reference to the drawings. Figure 1 shows the cross section of a corrugated metal tube, which is round and has a wave height H and a wave pitch P.
This is what is shown.
従来方法によっては製造しきれなかったような波^比H
/ P s例えば0.5よに大きいプラスチックライニ
ング波付金属管を製造するにあたっては、先ず従来法に
よって2イニング処理を行うことのできる波付金属管に
プラスチックライニングを施し、その後第2図(IL)
ないしく麹で示した如くこれを軸方向に所定の波高比に
達するまで圧縮を行うことによってプラスチックライニ
ング波付v Jll ’gr を得るのである。陶、こ
の圧縮工程は、第3図に示すごとく、波付金属管の内側
にガイドバイツーを挿入して行うこともできる。Wave ratio H that could not be manufactured using conventional methods
/ P s For example, when manufacturing a plastic-lined corrugated metal tube larger than 0.5, a plastic lining is first applied to a corrugated metal tube that can be subjected to two-inning treatment by a conventional method, and then the plastic lining is applied as shown in FIG. )
Or, as shown in koji, by compressing this in the axial direction until a predetermined wave height ratio is reached, a corrugated plastic lining v Jll 'gr is obtained. This compression step can also be carried out by inserting a guide by two inside the corrugated metal tube, as shown in FIG.
本発明方法に従ってプラスチックライニング波付金属管
の製造を行えば、プラスチックライニングが施された金
属直管を加工して製造する従来法に比較して、プラスチ
ックライニング層特にその山部ないしは谷部に集中する
応力の絶対値が小さくなりライニング層のプラスブック
は充分にその応力を吸収してクラックの発生を起さない
ばかりでなく、2イニング層の厚みは当初のライニング
操作の場面で容易に調節することができる。If a plastic-lined corrugated metal tube is manufactured according to the method of the present invention, the plastic lining layer is concentrated particularly in its peaks or valleys, compared to the conventional method of manufacturing a plastic-lined metal straight tube by processing. The absolute value of the stress caused by the lining becomes smaller, and the plus book of the lining layer not only absorbs the stress sufficiently and does not cause cracks, but also the thickness of the second lining layer can be easily adjusted during the initial lining operation. be able to.
圧縮を行うにあたって、金属管の波高比を充分に大きく
し丸いときであって、または2イニング層と金属管表面
間の接着強度が小さくて剥離を起すことが危惧される場
合には、プラスチックのライニングに先立って金属管表
面に接着剤の塗布を行う。When compressing, when the wave height ratio of the metal tube is sufficiently large to make it round, or when there is a risk of peeling due to low adhesive strength between the second lining layer and the surface of the metal tube, use a plastic lining. Prior to this, adhesive is applied to the surface of the metal tube.
この目的のために使用する接着剤として妹、例えばボリ
アイド系樹脂、アクリル系樹脂、変性ポリエチレ/ある
いはエチレン酢酸ビニル系樹脂などの幾分可塑性のある
合成樹脂接着剤の利用が考えられる。As adhesives for this purpose, it is possible to use synthetic resin adhesives with some plasticity, such as polyamide resins, acrylic resins, modified polyethylene/or ethylene vinyl acetate resins.
金属管表面に2イニングするプラ)チックとしては、特
に限定されるものではなく、圧縮工程で受ける応力歪を
充分に吸収し得るものであれはいずれも使用し得るが、
例えばポリエチレン、架橋ポリエチレン、ボリアイド、
ポリテトラフロロエチレン、ポリプロピレン、ベントン
(商゛品名)、ポリ塩化ビニル及びこれらのうちから°
選ばれた2種以上の混合物ないしはこれらの樹脂を主成
分とし他の改質成分を含んだ合成樹脂を使用する。There are no particular restrictions on the plastic used to coat the surface of the metal tube, and any material can be used as long as it can sufficiently absorb the stress and strain received during the compression process.
For example, polyethylene, crosslinked polyethylene, bolyaid,
Polytetrafluoroethylene, polypropylene, bentone (trade name), polyvinyl chloride, and from these
A mixture of two or more selected types or a synthetic resin containing these resins as main components and other modifying components is used.
本発明に従ってプラスチックライニング波付金属管を製
造するにあたって、波高比の大きい金属管を得るときに
は、予めライニング加工する波付金属管における波高比
が約0.2以上のものを使用すると圧線加工が行゛い島
い。岡、金属管VCおける波の形状は独立円弧蓋であっ
てもスパイフル型であっても喪い。When manufacturing a plastic-lined corrugated metal tube according to the present invention, if a metal tube with a large wave height ratio is to be obtained, use a corrugated metal tube to be lined in advance with a wave height ratio of about 0.2 or more, so that pressure wire processing is possible. It's a lonely island. Oka, the shape of the wave in a metal pipe VC is different whether it is an independent arc lid or a spiffle type.
以下実施例によって本発明の詳細な説明する。The present invention will be explained in detail below with reference to Examples.
実施例
外1125m11%肉厚0.3−の鋼管(これをAとす
る)を外径25■、内径20■、波jli2.2■、ピ
ッチ5 wh (H/ P −0,44)に波付加工し
九(これをBとする)。次いでBを更に軸方向に圧縮し
て波嵩2.7■、ピッチ2.71111(H/P=1)
とした波付鋼管(これをCとする)を得た。Exception: A 1125 m 11% wall thickness 0.3 - steel pipe (this is referred to as A) is corrugated to an outer diameter of 25 mm, an inner diameter of 20 mm, a wave jli of 2.2 mm, and a pitch of 5 wh (H/P -0,44). Processed nine (this is called B). Next, B is further compressed in the axial direction to have a wave volume of 2.7 cm and a pitch of 2.71111 (H/P = 1).
A corrugated steel pipe (referred to as C) was obtained.
以上の如春り、B及びCの鋼管に対し外径18箇、厚さ
0.5−のI#脹性架礎ポリエチレンチューブ(この外
面は接着層として厚さ0.2−の変性ポリエチレンがラ
ミネートされている)をそれぞれ挿入し、加圧・加熱し
てライニング処理を行ったところ、A及びBは完全にラ
イニングが施されたがCの場合は波付管の山部において
チューブが充分に伸びきれず破損を起しライニングを行
うことは不可能であった。For the above-mentioned steel pipes B and C, 18 I# inflatable polyethylene tubes with an outer diameter and a thickness of 0.5 mm (the outer surface is coated with modified polyethylene of a thickness of 0.2 mm as an adhesive layer). When the lining process was performed by applying pressure and heating, A and B were completely lined, but in case C, the tube was not fully lined at the peak of the corrugated tube. It was impossible to line it because it could not be stretched completely and broke.
而し、て得たムは先ずBと同形状になるまで波付加工を
行ったのち、圧縮してOと同形状になるまで加工した。The obtained mold was first corrugated until it had the same shape as B, and then compressed and processed until it had the same shape as O.
一方のBもCと同形状になる壕で圧縮加工した。B, on the other hand, was also compressed with a trench that had the same shape as C.
以上のようにして得たプラスチックライニング波付鋼管
をそれぞれOC〜80Cの熱履歴を30分間ずつ5回与
えるヒートサイクル試験に付したところ、Bは何ら変化
がなかったの(対しムにはWhen the plastic-lined corrugated steel pipes obtained as described above were subjected to a heat cycle test in which a thermal history of OC to 80C was applied five times for 30 minutes each, there was no change in B (in contrast,
第1図は波付金属管の断面図、第2図も)、(1:+)
及び第3図は波付金属管を圧縮する場面の説明用断Ii
wAである。
l・・・波付金属管、 2・・・圧縮用ガイド代理人弁
理士 佐 藤 正 年Figure 1 is a cross-sectional view of a corrugated metal tube, Figure 2 is also), (1:+)
and Fig. 3 is an explanatory cross-section Ii of a scene in which a corrugated metal tube is compressed.
It is wA. l... Corrugated metal pipe, 2... Compression guide representative patent attorney Masatoshi Sato
Claims (1)
で管を軸方向に波高比(波高/ピッチ)が少なくとも0
.5になるまで圧縮することを%徴とする内面をプラス
チックライニングされた波付金属管の製造方法。A corrugated metal tube is processed with plastic lining, and then the tube is axially lined with a wave height ratio (wave height/pitch) of at least 0.
.. A method for manufacturing a corrugated metal tube whose inner surface is lined with plastic, characterized by compressing the tube to a temperature of 5%.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP1749382A JPS58135723A (en) | 1982-02-08 | 1982-02-08 | Manufacture of plastic lining corrugated metallic pipe |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP1749382A JPS58135723A (en) | 1982-02-08 | 1982-02-08 | Manufacture of plastic lining corrugated metallic pipe |
Publications (1)
Publication Number | Publication Date |
---|---|
JPS58135723A true JPS58135723A (en) | 1983-08-12 |
Family
ID=11945522
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
JP1749382A Pending JPS58135723A (en) | 1982-02-08 | 1982-02-08 | Manufacture of plastic lining corrugated metallic pipe |
Country Status (1)
Country | Link |
---|---|
JP (1) | JPS58135723A (en) |
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US5430318A (en) * | 1993-06-14 | 1995-07-04 | Sharp Microelectronics Technology, Inc. | BiCMOS SOI structure having vertical BJT and method of fabricating same |
Citations (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPS5087954A (en) * | 1973-12-10 | 1975-07-15 |
-
1982
- 1982-02-08 JP JP1749382A patent/JPS58135723A/en active Pending
Patent Citations (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPS5087954A (en) * | 1973-12-10 | 1975-07-15 |
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US5430318A (en) * | 1993-06-14 | 1995-07-04 | Sharp Microelectronics Technology, Inc. | BiCMOS SOI structure having vertical BJT and method of fabricating same |
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