JP4257647B2 - Airtight inspection method for inner tube of double flexible tube - Google Patents

Airtight inspection method for inner tube of double flexible tube Download PDF

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JP4257647B2
JP4257647B2 JP2003338208A JP2003338208A JP4257647B2 JP 4257647 B2 JP4257647 B2 JP 4257647B2 JP 2003338208 A JP2003338208 A JP 2003338208A JP 2003338208 A JP2003338208 A JP 2003338208A JP 4257647 B2 JP4257647 B2 JP 4257647B2
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tube
gas
inspection
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inner tube
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JP2004279401A5 (en
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和男 小田
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Proterial Ltd
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Hitachi Metals Ltd
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Description

本発明は、2重可撓管の内管の気密を検査する技術分野に属するものである。   The present invention belongs to the technical field of inspecting the airtightness of the inner tube of a double flexible tube.

2重可撓管、例えば家屋内のガス配管に使用される樹脂で被覆された比較的小口径の2重可撓管は施工性が良好なことから多用される傾向にある。ガス用の2重可撓管の構造について、図5(a)に軸方向断面視を、図5(b)に、図5(a)のA−A断面視を示す。ガス用2重可撓管(以下2重可撓管と称する。)1は、例えば軸方向に波形形状が形成され可撓性を有するガスが流通する内管(いわゆるコルゲート管)1bと、内管1bの外周面との間に内管1bの軸心に沿い画成した空間1cを備えるとともに内管1bの外周に密設した可撓性を有する外管1aからなる。2重可撓管の外管1aは通常樹脂で形成されている。また、前記空間1cは、外管1aの内周に等角度で偏位して形成されている。上記構造の2重可撓管1によれば、例えば施工時に内管1bが破けた場合でも、漏洩したガスは該空間1cを流通し、2重可撓管1の端部に装着されたガス検出器で検出されることとなる。   Double flexible pipes, for example, double flexible pipes having a relatively small diameter and coated with a resin used for gas piping in a house, tend to be frequently used because of good workability. About the structure of the double flexible tube for gas, Fig.5 (a) shows an axial sectional view, and FIG.5 (b) shows the AA sectional view of Fig.5 (a). A gas double flexible tube (hereinafter referred to as a double flexible tube) 1 includes, for example, an inner tube (so-called corrugated tube) 1b in which a corrugated shape is formed in the axial direction and a flexible gas flows. A space 1c defined along the axial center of the inner tube 1b is provided between the outer surface of the tube 1b and a flexible outer tube 1a densely provided on the outer periphery of the inner tube 1b. The outer tube 1a of the double flexible tube is usually made of resin. The space 1c is formed at an equal angle on the inner circumference of the outer tube 1a. According to the double flexible tube 1 having the above structure, for example, even when the inner tube 1b is torn during construction, the leaked gas flows through the space 1c and is attached to the end of the double flexible tube 1. It will be detected by the detector.

上記2重可撓管1は、従来、次のように製造されていた。まず、ステンレス製薄板を筒状に成形し溶接して筒体を形成し、該筒体の外周を軸心方向に波打加工して内管1bを形成する(内管形成工程)。次いで、該内管1bの内部に気密検査用ガスを圧入し、該内管1bの両端を封止して真空チャンバーに装入し、真空チャンバーを負圧にし、気密検査用ガスの漏洩の有無を検知して該内管1bの気密を検査する(気密検査工程)。その後、前記気密検査工程で良品の内管1bに外管1aを周設する。(外管形成工程)。   Conventionally, the double flexible tube 1 has been manufactured as follows. First, a stainless steel thin plate is formed into a cylindrical shape and welded to form a cylindrical body, and the outer periphery of the cylindrical body is corrugated in the axial direction to form the inner pipe 1b (inner pipe forming step). Next, a gas for airtightness inspection is press-fitted into the inner tube 1b, both ends of the inner tube 1b are sealed and inserted into a vacuum chamber, the vacuum chamber is set to a negative pressure, and leakage of the gas for airtightness inspection is detected. Is detected to inspect the airtightness of the inner tube 1b (airtightness inspection process). Thereafter, the outer pipe 1a is provided around the good inner pipe 1b in the airtight inspection process. (Outer tube forming step).

上記、従来の製造方法によれば、内管1bの気密検査は、内管1bが単体の状態で行われるので比較的容易に高確度な検査を行うことができるが、該気密検査工程で、本来連続的に実施できるその上流の内管形成工程と下流の外管形成工程を分離しているため工業生産上の効率が低下し不経済であるという問題があった。   According to the above-described conventional manufacturing method, the airtight inspection of the inner tube 1b can be performed with relatively high accuracy because the inner tube 1b is performed in a single state, but in the airtight inspection step, Since the upstream inner pipe forming process and the downstream outer pipe forming process, which can be carried out continuously, are separated, there is a problem that the efficiency in industrial production is lowered and it is uneconomical.

内管形成工程と外管形成工程を連続して2重可撓管1を製造する場合には、外管1aが周設された状態で、2重可撓管1の状態で内管1bのみの気密を検査する必要がある。さらに、2重可撓管1を経済的に製造するためには、該気密検査工程を効率的に行う必要がある。   When the double flexible tube 1 is manufactured by continuously performing the inner tube forming step and the outer tube forming step, only the inner tube 1b is provided in the state of the double flexible tube 1 with the outer tube 1a being provided around the outer tube 1a. It is necessary to check the airtightness. Furthermore, in order to economically manufacture the double flexible tube 1, it is necessary to efficiently perform the airtight inspection process.

例えば2重管の内管の気密を検査する方法の一例が、下記特許文献1及び2に開示されている。特許文献1の気密検査方法は、主に地中に埋設された2重ガス管の内管の気密を検査することを目的とした方法であって、「内管と外管からなる二重管において、前記内管と外管により形成された空間を測定区画において遮断すると共に、この遮断した空間内に検査用ガスを圧入する、前記内管内に空気流を作り、この状態で前記検査用ガス検知部を内管内に挿入して移動させる、前記ガス検知部で検知されたガス濃度の変化位置を漏洩箇所と特定する」ものである。   For example, Patent Documents 1 and 2 below disclose an example of a method for inspecting the airtightness of an inner pipe of a double pipe. The airtight inspection method of Patent Document 1 is a method mainly intended to inspect the airtightness of the inner pipe of a double gas pipe buried in the ground, and “a double pipe composed of an inner pipe and an outer pipe”. In this, the space formed by the inner tube and the outer tube is blocked in the measurement section, and an inspection gas is injected into the blocked space, an air flow is created in the inner tube, and the inspection gas is in this state. The detection part is inserted into the inner tube and moved, and the change position of the gas concentration detected by the gas detection part is specified as a leak location ".

また、特許文献2の気密検査方法は、主に核融合炉の多重真空配管の内管の気密を検査することを目的とした方法であって、「気体が流れる管の外側を、該内管の外径よりも大きな内径を有する間で囲み、該内管と外管の隙間(中間部)の両端の上流側から下流側へも気体が流れる構造を有する多重管の該内管の気体漏洩箇所を探知する方法において、該内管及び該中間部に粘性流の性質を有する搬送ガスを該内管及び中間部の上流側から供給し、かつ、該中間部の平均圧力が該内管の平均圧力よりも大きくなるように設定し、該中間部の上流側から漏洩検査用ガスを搬送ガスに混入させ、該内管の漏洩箇所を通って該内管に流入した漏洩検査用ガスを検出する」ものである。
特開平10−281915号公報 特開2001−4479号公報
Further, the airtight inspection method of Patent Document 2 is a method mainly intended to inspect the airtightness of the inner tube of the multiple vacuum piping of a fusion reactor, and “the outside of the tube through which the gas flows is connected to the inner tube. Gas leakage of the inner pipe of the multiple pipe having a structure in which the gas flows from the upstream side to the downstream side of both ends of the gap between the inner pipe and the outer pipe (intermediate portion) In the method of detecting a location, a carrier gas having a viscous flow property is supplied to the inner pipe and the intermediate section from the upstream side of the inner pipe and the intermediate section, and the average pressure in the intermediate section is Set to be higher than the average pressure, mix the leak test gas from the upstream side of the intermediate part into the carrier gas, and detect the leak test gas flowing into the inner pipe through the leak point of the inner pipe To do.
Japanese Patent Laid-Open No. 10-281915 JP 2001-4479 A

上記特許文献1及び2の気密検査方法は、比較的大口径で大きな空隙の空間(中間部)を有する2重管の内管の気密を検査するものであり、比較的小口径、例えば口径が50mm程度の2重可撓管の内管の気密を効率的に検査するのに適当な方法ではない。
本発明は、上記2重可撓管の経済的な製造という要求に対し本願発明者らが鋭意検討しなされたものであり、2重可撓管の内管の気密検査を効率的に行いうる気密検査方法を提供するものである。
The airtight inspection methods of Patent Documents 1 and 2 inspect the airtightness of the inner pipe of a double pipe having a relatively large aperture and a large space (intermediate portion). This is not a suitable method for efficiently inspecting the airtightness of the inner tube of a double flexible tube of about 50 mm.
The present invention has been intensively studied by the inventors of the present invention in response to the demand for economical production of the above-mentioned double flexible tube, and can perform an airtight inspection of the inner tube of the double flexible tube efficiently. An airtight inspection method is provided.

本発明の気密検査方法は、可撓性を有する内管と、前記内管の外周面との間に内管の軸心に沿い画成した空間を有するとともに前記内管の外周に周設された可撓性を有する外管からなる2重可撓管の前記内管の気密を検査する方法であって、巻回された2重可撓管の前記空間を密閉するとともに該空間に前記外管が膨張可能な圧力の気密検査用ガスを供給し、前記空間より前記内管の内部を低圧にし、前記内管から漏洩した気密検査用ガスを検出することを特徴としている。
The airtightness inspection method of the present invention has a space defined along the axis of the inner tube between the flexible inner tube and the outer peripheral surface of the inner tube, and is provided around the outer periphery of the inner tube. A method of inspecting the airtightness of the inner tube of a double flexible tube comprising a flexible outer tube, wherein the space of the wound double flexible tube is sealed and the outer tube is sealed in the space. A gas tightness inspection gas having a pressure capable of expanding the tube is supplied, the inside of the inner tube is set to a low pressure from the space, and the gas for airtightness inspection leaking from the inner tube is detected.

本発明によれば、巻回された2重可撓管の空間を密閉するとともに該空間に外管が膨張可能な圧力の気密検査用ガスを圧入し、2重可撓管の内管の内部を該空間より低圧にし、前記内管から漏洩した気密検査用ガスを検出するという極めて単純な方法により、2重可撓管の状態において前記内管のみの気密を確度よく効率的に検査することができ、経済的な2重可撓管の製造という要求に応ずることが可能となる。 According to the present invention, the space of the wound double flexible tube is sealed, and the gas for airtightness inspection with a pressure capable of expanding the outer tube is injected into the space, and the inside of the inner tube of the double flexible tube is injected. The air tightness of only the inner pipe is accurately and efficiently inspected in the state of a double flexible pipe by a very simple method of lowering the pressure from the space and detecting the gas for airtight inspection leaked from the inner pipe. This makes it possible to meet the demand for economical production of double flexible tubes.

本発明の2重可撓管の内管の気密検査方法ついて以下図面を参照して説明する。図1は、本発明の気密検査方法の具体的な実施態様の一例を示す概略構成図である。図2は、図1の封止継手の部分拡大断面図である。図3、4、6は、さらに好適な気密検査方法の具体的な実施態様の一例を示す概略構成図である。なお、以下の説明で気密検査の対象とする2重可撓管は、上記説明した2重可撓管1と同一のものである。   The method for inspecting the inner tube of the double flexible tube of the present invention will be described below with reference to the drawings. FIG. 1 is a schematic configuration diagram showing an example of a specific embodiment of the airtightness inspection method of the present invention. FIG. 2 is a partially enlarged cross-sectional view of the sealed joint of FIG. 3, 4, and 6 are schematic configuration diagrams illustrating an example of a specific embodiment of a more preferable airtight inspection method. In the following description, the double flexible tube that is the target of the airtight inspection is the same as the double flexible tube 1 described above.

[実施態様1]
2重可撓管1は、図1に示すように、所定の長さ、好ましくは出荷する単位長さで切断された2重可撓管1と、前記2重可撓管1の一方端を封止する封止継手2と、他方端を封止する封止継手3と、前記一方端の封止継手2に連結し、前記2重可撓管1の空間1cに気密検査用ガスを供給する気密検査用ガス供給手段4と、前記2重可撓管1の内管1bの内部を低圧にするとともに前記気密検査用ガスを検知する気密検査用ガス検出手段(いわゆるリークガスディテクター)5とからなる構成により気密検査される。前記一方端を封止する封止継手2と気密検査用ガス供給手段4及び気密検査用ガス検出手段5は、所定のタイミングで開閉するバルブ9a及び9bを介して連結されている。なお、前記気密検査用ガスの選択は特に限定されものではなく、例えばヘリウム、水素など種々のガスのひとつを選択することができる。
[Embodiment 1]
As shown in FIG. 1, the double flexible tube 1 has a double flexible tube 1 cut at a predetermined length, preferably a unit length to be shipped, and one end of the double flexible tube 1. A sealing joint 2 for sealing, a sealing joint 3 for sealing the other end, and a sealing joint 2 at the one end are connected to supply gas for airtightness inspection into the space 1c of the double flexible tube 1. Gas supply means 4 for airtight inspection, gas detection means for gas tightness inspection (so-called leak gas detector) 5 for detecting the gas for airtight inspection while making the inside of the inner tube 1b of the double flexible tube 1 low in pressure, Airtight inspection is carried out by the structure consisting of The sealing joint 2 that seals the one end, the gas supply means 4 for airtightness inspection, and the gas detection means 5 for airtightness inspection are connected via valves 9a and 9b that open and close at a predetermined timing. The selection of the gas for airtight inspection is not particularly limited, and one of various gases such as helium and hydrogen can be selected.

前記2重可撓管は、図2に示すように、その内管1bが所定の長さ露出するようにその外管1aの一方端部が剥離されている。
前記2重可撓管1の一方端を封止する封止継手2は、該2重可撓管1の空間1cの一方端を密閉可能なシール対21、22と、該空間1cと流通可能な流体通路23aを備えた第1の挿着口23を備えている。前記一方のシール22は内管1bの一方端に密着可能に、他方のシール21は外管1aの一方端に密着可能になされている。さらに封止継手2は、内管1bの一方端を密閉可能な端部を備えるとともに内管1bの内部と流通可能な流体通路24aを備えた第2の挿着口24とを有している。
前記2重可撓管1の他方端を封止する封止継手3は、前記空間1cの他方端を密閉するとともに内管1bの他方端を密閉する。
As shown in FIG. 2, one end of the outer tube 1a is peeled off so that the inner tube 1b is exposed for a predetermined length.
The sealing joint 2 that seals one end of the double flexible tube 1 can be circulated with the seal pair 21 and 22 that can seal one end of the space 1c of the double flexible tube 1 and the space 1c. A first insertion port 23 having a fluid passage 23a is provided. The one seal 22 can be in close contact with one end of the inner tube 1b, and the other seal 21 can be in close contact with one end of the outer tube 1a. Further, the sealed joint 2 includes an end portion capable of sealing one end of the inner tube 1b and a second insertion port 24 including a fluid passage 24a that can flow through the inside of the inner tube 1b. .
A sealing joint 3 that seals the other end of the double flexible tube 1 seals the other end of the space 1c and the other end of the inner tube 1b.

前記第1の挿着口23の流体通路23aは、前記気密検査用ガス供給手段4に連結されており、気密検査用ガス供給手段4は、該流体通路23aを介し密閉された空間1cへ気密検査用ガスを供給する。また、前記第2の挿着口24の流体通路24aは、前記気密検査用ガス検知手段5に連結されており、気密検査用ガス検知手段5は、該流体通路24aを介して内管1bの内部の空気を吸引し、前記空間1cより内管1bの内部を低圧にする。もって、内管1bにガス漏洩可能な欠陥がある場合には内管1bの内部へ気密検査用ガスが漏洩し、該気密検査用ガスは前記気密検査用ガス検知手段5で検知され、内管1bの気密の良否が確認される。   The fluid passage 23a of the first insertion port 23 is connected to the gas supply means 4 for airtight inspection, and the gas supply means 4 for airtight inspection is airtight to the space 1c sealed through the fluid passage 23a. Supply inspection gas. The fluid passage 24a of the second insertion port 24 is connected to the gas detection means 5 for airtight inspection, and the gas detection means 5 for airtight inspection is connected to the inner pipe 1b via the fluid passage 24a. The air inside is sucked, and the inside of the inner tube 1b is brought to a low pressure from the space 1c. Therefore, if there is a defect in the inner pipe 1b that allows gas leakage, the gas for airtight inspection leaks into the inner pipe 1b, and the gas for airtight inspection is detected by the gas detecting means 5 for airtight inspection. The airtightness of 1b is confirmed.

上記構成によれば、前記封止継手2及び3で前記空間1cを密閉するとともに、気密検査用ガス供給手段4で該空間1cに気密検査用ガスを供給し、気密検査用ガス検出手段5で前記空間1cより前記内管1bの内部を低圧にする一方で、気密検査用ガス検出手段5で前記内管1bから漏洩した気密検査用ガスを検出し、2重可撓管1の内管1bの気密を検査することが可能となる。   According to the above configuration, the space 1 c is sealed with the sealing joints 2 and 3, the gas for gas tightness inspection is supplied to the space 1 c with the gas supply means 4 for gas tightness inspection, and the gas detection means 5 for gas tightness inspection with the gas tightness inspection gas detection means 5. While the inside of the inner pipe 1b is set to a low pressure from the space 1c, the gas for gas tightness inspection leaked from the inner pipe 1b is detected by the gas detecting means 5 for gas tightness inspection, and the inner pipe 1b of the double flexible tube 1 is detected. It becomes possible to inspect the airtightness.

[実施態様2]
本発明の気密検査方法の、望ましい態様の一例について図3を参照し説明する。なお図において、上記説明と同様な構成については同一符号を付し、詳細な説明を省略する。
望ましい態様において、2重可撓管1は、上記と同様な2重可撓管1と、封止継手2と、気密検査用ガス供給手段4と、気密検査用ガス検出手段5とを備え、さらに、前記2重可撓管1の他方端を封止する封止継手2´と、前記他方端の封止継手2´に連結し、前記2重可撓管1の内管1bの内部に搬送ガスを供給する搬送ガス供給手段7と、前記2重可撓管1の空間1cが気密検査用ガスに置換されたこと検出する置換検出手段6とからなる構成により気密検査される。なお、前記他方端を封止する封止継手2´と搬送ガス供給手段7及び置換検出手段6は、所定のタイミングで開閉するバルブ9c及び9dを介して連結されている。
[Embodiment 2]
An example of a desirable mode of the airtightness inspection method of the present invention will be described with reference to FIG. In the figure, the same components as those described above are denoted by the same reference numerals, and detailed description thereof is omitted.
In a desirable mode, the double flexible tube 1 includes a double flexible tube 1 similar to the above, a sealing joint 2, a gas supply means 4 for airtightness inspection, and a gas detection means 5 for airtightness inspection, Further, a sealing joint 2 ′ for sealing the other end of the double flexible tube 1 and a sealing joint 2 ′ at the other end are connected to each other inside the inner tube 1 b of the double flexible tube 1. An airtight inspection is performed by a configuration including a carrier gas supply unit 7 that supplies a carrier gas and a replacement detection unit 6 that detects that the space 1c of the double flexible tube 1 has been replaced with an airtight inspection gas. The sealing joint 2 'that seals the other end, the carrier gas supply means 7, and the replacement detection means 6 are connected via valves 9c and 9d that open and close at a predetermined timing.

前記2重可撓管1の他方端を封止する封止継手2´は、基本的に、図2を参照して説明した封止継手2と同様な構造を有している。すなわち、封止継手2´は、図2に示すように、該2重可撓管1の空間1cの他方端を密閉可能なシール対21´、22´と、該空間1cと流通可能な流体通路23´aを備えた第3の挿着口23´を備えている。前記一方のシール22´は内管1bの他方端に密着可能に、他方のシール21´は外管1aの他方端に密着可能になされている。さらに封止継手2´は、内管1bの他方端を密閉可能な端部を備えるとともに内管1bの内部と流通可能な流体通路24´aを備えた第4の挿着口24´とを有している。   The sealing joint 2 ′ for sealing the other end of the double flexible tube 1 basically has the same structure as the sealing joint 2 described with reference to FIG. That is, as shown in FIG. 2, the sealing joint 2 ′ includes a seal pair 21 ′ and 22 ′ that can seal the other end of the space 1 c of the double flexible tube 1, and a fluid that can flow through the space 1 c. A third insertion opening 23 'having a passage 23'a is provided. The one seal 22 'can be brought into close contact with the other end of the inner tube 1b, and the other seal 21' can be brought into close contact with the other end of the outer tube 1a. Further, the sealing joint 2 ′ includes an end portion capable of sealing the other end of the inner tube 1b and a fourth insertion port 24 ′ including a fluid passage 24′a capable of flowing through the inner tube 1b. Have.

前記第3の挿着口23´の流体通路23´aは、前記置換検出手段6に連結されており、置換検出手段6は、気密検査用ガス供給手段4で前記空間1cに気密検査用ガスが供給され、該空間1cが気密検査用ガスで置換されたことを検出し、前記バルブ9cを閉じ、空間1cを密閉する。
また、前記第4の挿着口24´の流体通路24´aは、前記搬送ガス供給手段7に連結されており、搬送ガス供給手段7は、前記内管1bの内部へ該流体通路24´aを介して搬送ガスを供給する。なお、搬送ガスの選択は特に限定されるものではないが、気密検査用ガスより比重の重いガス、具体的に説明すれば、例えば気密検査用ガスとしてヘリウムを使用する場合には搬送ガスには窒素を使用すれば望ましい。
The fluid passage 23 ′ a of the third insertion port 23 ′ is connected to the replacement detection means 6, and the replacement detection means 6 is connected to the space 1 c with an airtight inspection gas supply means 4. Is detected, and it is detected that the space 1c has been replaced with the gas for airtightness inspection, the valve 9c is closed, and the space 1c is sealed.
The fluid passage 24'a of the fourth insertion port 24 'is connected to the carrier gas supply means 7, and the carrier gas supply means 7 enters the fluid passage 24' to the inside of the inner pipe 1b. A carrier gas is supplied via a. Although the selection of the carrier gas is not particularly limited, a gas having a higher specific gravity than the gas for airtight inspection, specifically, for example, when helium is used as the gas for airtight inspection, It is desirable to use nitrogen.

上記構成によれば、2重可撓管1の内管1bの気密は以下のようにして検査される。
所定長さの2重可撓管1を準備する。2重可撓管1の一方端に封止継手2を、他方端に封止継手2´を接続し、2重可撓管1の両端を封止する。気密検査用ガス検出手段5で内管1bの内部空気を吸引する。内管1bの内部が所定の圧力に達した後に、気密検査用ガス供給手段4で空間1cに気密検査用ガスを供給する。置換検出手段6は、該空間1cが気密検査用ガスで置換されたことを検出しバルブ9cを閉じる。その後バルブ9dを開き、所定量の搬送ガスを内管1bの内部に供給する。この時、内管1bの内部に気密検査用ガスが漏洩していれば、該気密検査用ガスは、該運搬ガスにより一方端へ速やかに運搬され、該一方端に連結された気密検査用ガス検出手段5で速やかに検出することができるので、内管1bの気密検査を確度よく効率的に行うことが可能となる。
According to the above configuration, the airtightness of the inner tube 1b of the double flexible tube 1 is inspected as follows.
A double flexible tube 1 having a predetermined length is prepared. A sealing joint 2 is connected to one end of the double flexible tube 1 and a sealing joint 2 ′ is connected to the other end, and both ends of the double flexible tube 1 are sealed. The air detection test gas detection means 5 sucks the internal air of the inner pipe 1b. After the inside of the inner pipe 1b reaches a predetermined pressure, the gas for airtight inspection is supplied to the space 1c by the gas supply means 4 for airtight inspection. The replacement detection means 6 detects that the space 1c has been replaced with the gas for airtightness inspection, and closes the valve 9c. Thereafter, the valve 9d is opened, and a predetermined amount of carrier gas is supplied into the inner pipe 1b. At this time, if the gas for airtightness inspection leaks into the inner pipe 1b, the gas for airtightness inspection is quickly transported to one end by the transport gas, and the gas for airtightness inspection connected to the one end. Since it can detect rapidly with the detection means 5, it becomes possible to perform the airtight test | inspection of the inner pipe | tube 1b accurately and efficiently.

[実施態様3]
本発明の気密検査方法の、望ましい態様の別の例について図4を参照し説明する。なお図において、上記説明と同様な構成については同一符号を付し、詳細な説明を省略する。
望ましい態様において、2重可撓管1は、上記と同様な封止継手2及び封止継手3と、気密検査用ガス供給手段4と、気密検査用ガス検出手段5とを備え、さらに、コイル状に巻回した2重可撓管1とからなる構成により気密検査される。このように、2重可撓管1をコイル状に巻回した状態で気密検査すれば、検査する場所をとらず経済的に2重可撓管1の気密検査を行うことができる。なお、2重可撓管1をコイル状に巻回した状態で気密検査する場合には、内管1bの欠陥が曲げられた外管1aで閉塞される可能性がある。その閉塞を回避するため、空間1cに供給する気密検査用ガスの圧力を0.5〜0.2(Mpa)程度とし外管1aを膨張させれば望ましい。
[Embodiment 3]
Another example of a desirable mode of the airtightness inspection method of the present invention will be described with reference to FIG. In the figure, the same components as those described above are denoted by the same reference numerals, and detailed description thereof is omitted.
In a desirable embodiment, the double flexible tube 1 includes a sealing joint 2 and a sealing joint 3 similar to those described above, a gas supply means 4 for airtight inspection, and a gas detection means 5 for airtight inspection, and further includes a coil. An airtight inspection is performed by a configuration including the double flexible tube 1 wound in a shape. As described above, if the airtight inspection is performed in a state where the double flexible tube 1 is wound in a coil shape, the airtight inspection of the double flexible tube 1 can be performed economically without taking place for inspection. In the case of performing an airtight inspection in a state where the double flexible tube 1 is wound in a coil shape, a defect of the inner tube 1b may be blocked by the bent outer tube 1a. In order to avoid the blockage, the pressure of the gas for airtight inspection supplied to the space 1c is set to 0. 0-5 . It is desirable to expand the outer tube 1a to about 2 (Mpa).

[実施態様4]
本発明の気密検査方法の、望ましい態様の別の例について図6を参照し説明する。なお、図6において上記説明と同一構成要素については同一符号を付した。
[Embodiment 4]
Another example of a desirable mode of the airtightness inspection method of the present invention will be described with reference to FIG. In FIG. 6, the same components as those described above are denoted by the same reference numerals.

実施態様4において、2重可撓管1は、該2重可撓管1の一方端を封止する封止継手2と、他方端を封止する封止継手2´と、前記一方端の封止継手2にバルブ9aを介し連結される気密検査用ガス供給手段4と、前記両端を封止する封止継手2、2´へともにバルブ9bを介して連結される気密検査用ガス検出手段5と、前記他方端の封止継手2´にバルブ9cを介し連結される置換検出手段6とからなる構成により気密検査される。   In Embodiment 4, the double flexible tube 1 includes a sealing joint 2 that seals one end of the double flexible tube 1, a sealing joint 2 ′ that seals the other end, Gas supply means 4 for airtightness inspection connected to the sealing joint 2 via a valve 9a, and gas detection means for airtightness inspection connected to the sealing joints 2 and 2 'for sealing both ends via a valve 9b. 5 and a replacement detection means 6 connected to the sealing joint 2 'at the other end via a valve 9c is subjected to an airtight inspection.

上記構成によれば、気密検査用ガス検出手段5を両端の封止継手2、2´に連結しているので、例えば他方端の封止継手2’に近い内管1bに欠陥があった場合でも、その欠陥は時間遅れすることなく検出される。すなわち、封止継手2から空間1cへ供給された気密検査用ガスは、空間1cを通じて他方端へ移動し、前記他方端側の欠陥から内管1bへ漏洩し、封止継手2’を通じて気密検査用ガス検出手段5で検出されるので、気密検査用ガス検出手段5を一方端の封止継手2のみに連結した場合より短時間に気密検査用ガスの漏洩を検出することができる。   According to the above configuration, since the gas detection means 5 for airtightness inspection is connected to the sealing joints 2 and 2 'at both ends, for example, when the inner pipe 1b near the sealing joint 2' at the other end is defective. But the defect is detected without time delay. That is, the gas for airtightness inspection supplied from the sealing joint 2 to the space 1c moves to the other end through the space 1c, leaks from the defect on the other end side to the inner tube 1b, and passes through the sealing joint 2 ′ for airtightness inspection. Since the gas detection means 5 detects the leakage of the gas for the airtightness inspection in a shorter time than when the gas detection means 5 for the airtightness inspection is connected only to the sealed joint 2 at one end.

なお、上記した実施態様において、気密検査用ガス供給手段4で気密検査用ガスを前記空間1cへ供給するタイミングと、気密検査用ガス検出手段5で前記内管1bの内部の空気を吸引するタイミングは適宜に設定すればよい。例えば、内管1bの内部の空気を吸引しつつ、同時に気密検査用ガスを空間1cへ供給すれば気密検査を早く行うことができる。   In the above embodiment, the timing for supplying the gas for airtight inspection to the space 1c by the gas supply means for airtight inspection 4 and the timing for sucking the air in the inner pipe 1b by the gas detection means for airtight inspection 5 May be set appropriately. For example, if the gas for airtight inspection is simultaneously supplied to the space 1c while sucking the air inside the inner tube 1b, the airtight inspection can be performed quickly.

本発明は2重可撓管のみならず、3重或いは4重など複数の管を内蔵する管の内部の機密検査に適用され、さらに上記実施態様のような家庭用のガス管のみならず大型の管の気密検査に適用されうる。   The present invention is applied not only to a double flexible tube but also to a security inspection inside a tube containing a plurality of tubes such as a triple or a quadruple, and further to a large gas as well as a home gas tube as in the above embodiment. It can be applied to air tightness inspection of tubes.

本発明の2重可撓管の気密検査を行う構成の一例を示す概略構成図である。It is a schematic block diagram which shows an example of the structure which performs the airtight test | inspection of the double flexible tube of this invention. 図1の封止継手の詳細を示す要部拡大断面図である。It is a principal part expanded sectional view which shows the detail of the sealing joint of FIG. 本発明の2重可撓管の気密検査を行う構成の別例を示す概略構成図である。It is a schematic block diagram which shows another example of the structure which performs the airtight test | inspection of the double flexible tube of this invention. 本発明の2重可撓管の気密検査を行う構成の別例を示す概略構成図である。It is a schematic block diagram which shows another example of the structure which performs the airtight test | inspection of the double flexible tube of this invention. 2重可撓管の構造を説明する概略構造図である。It is a schematic structure figure explaining the structure of a double flexible tube. 本発明の2重可撓管の気密検査を行う構成の別例を示す概略構成図である。It is a schematic block diagram which shows another example of the structure which performs the airtight test | inspection of the double flexible tube of this invention.

符号の説明Explanation of symbols

1 2重可撓管、1a 外管、1b 内管、1c 空間
2(2´) 封止継手
3 封止継手
4 気密検査用ガス供給手段
5 気密検査用ガス検出手段
6 置換検出手段
7 搬送ガス供給手段
9(9a,9b,9c,9d) バルブ
DESCRIPTION OF SYMBOLS 1 Double flexible tube, 1a outer tube, 1b inner tube, 1c space 2 (2 ') Sealing joint 3 Sealing joint 4 Gas supply means for airtight inspection 5 Gas detection means for airtight inspection 6 Replacement detection means 7 Carrier gas Supply means 9 (9a, 9b, 9c, 9d) Valve

Claims (2)

可撓性を有する内管と、前記内管の外周面との間に内管の軸心に沿い画成した空間を有するとともに前記内管の外周に周設された可撓性を有する外管からなる2重可撓管の前記内管の気密を検査する方法であって、巻回された2重可撓管の前記空間を密閉するとともに該空間に前記外管が膨張可能な圧力の気密検査用ガスを供給し、前記空間より前記内管の内部を低圧にし、前記内管から漏洩した気密検査用ガスを検出することを特徴とする2重可撓管の気密検査方法。 A flexible outer tube that has a space defined along the axis of the inner tube between the inner tube having flexibility and the outer peripheral surface of the inner tube and is provided around the outer periphery of the inner tube A method for inspecting the airtightness of the inner tube of a double flexible tube comprising: sealing the space of the wound double flexible tube and airtight at a pressure that allows the outer tube to expand into the space An airtight inspection method for a double flexible tube, characterized in that an inspection gas is supplied, the pressure inside the inner tube is lowered from the space, and an airtight inspection gas leaking from the inner tube is detected. 前記内管から漏洩した気密検査用ガスを内管の両端で検出する請求項1に記載の2重可撓管の気密検査方法。The airtight inspection method for a double flexible tube according to claim 1, wherein the gas for airtight inspection leaked from the inner tube is detected at both ends of the inner tube.
JP2003338208A 2003-02-27 2003-09-29 Airtight inspection method for inner tube of double flexible tube Expired - Lifetime JP4257647B2 (en)

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