JP2004344546A - Coupling device - Google Patents

Coupling device Download PDF

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Publication number
JP2004344546A
JP2004344546A JP2003147224A JP2003147224A JP2004344546A JP 2004344546 A JP2004344546 A JP 2004344546A JP 2003147224 A JP2003147224 A JP 2003147224A JP 2003147224 A JP2003147224 A JP 2003147224A JP 2004344546 A JP2004344546 A JP 2004344546A
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JP
Japan
Prior art keywords
tube
closing member
outer cylinder
insertion hole
rod
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
JP2003147224A
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Japanese (ja)
Inventor
Hiroto Suzuki
博人 鈴木
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.)
Top KK
Original Assignee
Top KK
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Filing date
Publication date
Application filed by Top KK filed Critical Top KK
Priority to JP2003147224A priority Critical patent/JP2004344546A/en
Publication of JP2004344546A publication Critical patent/JP2004344546A/en
Pending legal-status Critical Current

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Abstract

<P>PROBLEM TO BE SOLVED: To provide a coupling device capable of not only forming a sure communication in connecting a cylindrical connection end part provided on the tip of a syringe or a tube, etc., but also preventing a flow rate from becoming excessive inside a tube body. <P>SOLUTION: Along the axial center of an outer cylinder 15, the tube body 5 is provided. A closing member 18 for closing the outer cylinder 15 and the tube body 5 is provided and the closing member 18 is provided with an insertion hole 25 to which the tube body 5 is to be inserted. An energizing means 19 for energizing the closing member 18 in an advancing direction is provided. Inside the tube body 5, a bar-shaped body 7 extended along the axis of the tube body 5 is provided. The bar-shaped body 7 is provided with an interpolation part 8 positioned inside the tube body 5, whose diameter is smaller than the inner diameter of the tube body 5, and a fixation part 10 connected to the interpolation part and fixed to the inner surface of the tube body 5. <P>COPYRIGHT: (C)2005,JPO&NCIPI

Description

【0001】
【発明の属する技術分野】
本発明は、継ぎ手装置に関し、詳しくは、例えば、点滴の薬液流路に設けてシリンジやチューブ等を接続する継ぎ手装置に関する。
【0002】
【従来の技術】
従来、この種の継ぎ手装置は、円筒状の外筒内部に延設された中空の管体と、外筒内部において該管体に外挿されて進退方向に摺動自在の筒状部材とを備えている(例えば、特許文献1参照)。
【0003】
前記管体は、その先端近傍の周壁に開口する側孔が形成されており、前記筒状部材は、細管の先端部に位置するとき側孔を閉塞する。これにより、外筒の先端にシリンジのルアーテーパ部を挿着したとき、該ルアーテーパ部の先端に押圧された筒状部材が後退し、ルアーテーパ部が管体に外挿状態となって管体の側孔が開放されることで導通状態となる。また、外筒内部にはコイルスプリングが設けられており、該コイルスプリングによって後退時の筒状部材を前進方向に付勢する。これにより、外筒の先端から前記ルアーテーパ部を抜き取った際に、該コイルスプリングの付勢により筒状部材が前進し、管体の側孔が閉塞される。
【0004】
ところで、この種の継ぎ手装置は、点滴の薬液流路に設けられるが、薬液流路に別の薬液を混入させるために例えばシリンジがそのルアーテーパ部を介して接続される。そして、シリンジのピストンを押圧操作して薬液流路に別の薬液が注入されるが、管体内への薬液の残留が多く、点滴の薬液流路に所望の量の薬液が流入されない不都合がある。
【0005】
また、このときピストンの押圧操作を急激に行なうと、薬液の流量を適量に制限するものが何もないので、薬液流路の流量が一時的に過剰となり、点滴の薬液流路の流量が適量に維持できず、円滑な輸液に支障がでるおそれがある。
【0006】
【特許文献1】
特開平10−15079号公報
【0007】
【発明が解決しようとする課題】
かかる不都合を解消して、本発明は、シリンジやチューブ等の先端に設けられた筒状の接続端部を接続した際に確実な連通状態を形成することができるだけでなく、管体内への薬液の残量を小とし、また、管体内において流量が過剰となることを防止することができる継ぎ手装置を提供することを目的とする。
【0008】
【課題を解決するための手段】
かかる目的を達成するために、本発明は、管状の被接続物を挿入して接続可能に開口する接続部を先端に備える有底円筒状の外筒と、該外筒の軸心に沿って延設されて後端が外筒の底部外方に連通し、先端が前記接続部から所定距離を存して該外筒内部に位置すると共に該接続部に向って軸線方向に開口する中空の管体と、前記外筒にその軸線方向に進退自在に収納されて前進位置において該外筒及び前記管体を閉塞する弾性材料による閉塞部材と、該閉塞部材における前記管体の先端に対向する位置に、該閉塞部材の後退に伴って前記管体が挿通する挿通孔と、該閉塞部材を前進方向に付勢する付勢手段とを備える継ぎ手装置において、前記管体は、その内部に挿着されて該管体の軸線に沿って延びる棒状体を備え、該棒状体は、前記管体内部に位置して該管体の内径より小径とされ該管体の内面との間に空隙を形成する内挿部と、該内挿部の一部に形成され、前記空隙との連通を維持して管体内面に固定される固定部とを備えることを特徴とする。
【0009】
本発明の継ぎ手装置は、例えばシリンジやチューブに備えるルアーテーパ部等の被接続物を外筒の接続部に挿入したとき、前記閉塞部材が押圧されて後退される。これに伴い、前記管体が前記挿通孔に挿通される。これによって、該管体の先端の開口部の閉塞が解除され、シリンジやチューブ等に連通する。そして、被接続物を前記外筒の接続部から抜き取った場合には、前記付勢手段の付勢力によって閉塞部材が前進される。これにより、閉塞部材の挿通孔から管体が抜け、閉塞部材が外筒を閉塞する。
【0010】
本発明の継ぎ手装置においては、前記管体が前記棒状体を備えている。該棒状体は、管体の内部にあって該棒状体の内挿部と管体との間に薬液等が流通する空隙を形成している。
【0011】
このように、管体の内部に前記棒状体が挿着されいることにより、該管体内部(棒状体の内挿部と管体との間の空隙の内部)に残留する薬液等の量を少量とすることができる。これにより、管体の内部へのシリンジや他の輸液チューブから注入された薬液の減少を小とすることができる。また、管体内部を流動する薬液の流量を前記空隙を通過する量に減少させることができ、管体を流動する薬液等の流量が過剰となることが防止できる。即ち、例えば、本発明の継ぎ手装置が点滴等の輸液流路に設けられているとき、シリンジ等を本発明の継ぎ手装置に接続して別の薬液を輸液流路に注入する場合に、シリンジのピストンの押圧操作が急激に行なわれても、輸液流路への急激な薬液の流入を確実に防止でき、輸液流路への他の薬液の適量注入を極めて容易に行なうことができる。
【0012】
また、本発明において、前記棒状体は、前記内挿部の先端に連設されて前記管体の先端開口部から延出する延出部を備え、前記閉塞部材の挿通孔は、その内径が前記棒状体の延出部の外径より小とされ、該閉塞部材が前進位置において前記外筒の接続部を閉塞したとき前記棒状体の延出部が前記挿通孔に挿入して該挿通孔を閉塞することを特徴とする。
【0013】
本発明によれば、閉塞部材が外筒の接続部を閉塞しているときに棒状体の延出部が前記挿通孔に挿入された状態となり、該挿通孔は棒状体の延出部によって閉塞される。そして、例えばシリンジやチューブに備えるルアーテーパ部等の被接続物を外筒の接続部に挿入し、前記閉塞部材が押圧されて後退したとき、挿通孔は棒状体の延出部に案内されて管体が挿通される。このように、前記棒状体に前記延出部を設けておくことにより、閉塞部材の挿通孔に確実に管体を案内することができ、シリンジやチューブの接続を円滑に行なうことができる。
【0014】
また、このとき、前記棒状体の延出部には、前記管体の先端開口部を開放する位置において該管体の外径と略同径に拡径された拡径部が形成され、該拡径部は、前記閉塞部材が前記外筒の接続部を閉塞したときに前記挿通孔に挿入して該挿通孔を閉塞することが好ましい。前記延出部の前記拡径部が管体の外径と略同径であることにより、前記閉塞部材が後退して前記挿通孔に管体が挿通するとき、該挿通孔が急激に拡径変形されることがなく、閉塞部材の後退移動をスムーズに行なうことができ、しかも、挿通孔への管体の挿通に伴う挿通孔の損傷を防止して閉塞部材の耐久性を向上させることができる。
【0015】
また、本発明において、前記閉塞部材は、前記挿通孔を備えて前記外筒の接続部に挿脱自在に嵌合する栓部と、該栓部の後端に連設されて前記管体の周壁に液密に密着する円筒状の管体密着部とを備え、該管体密着部の外周に、該管体密着部を前記管体に圧接する環状の圧接部材を設けたことを特徴とする。
【0016】
本発明の継ぎ手装置においては、前記管体に前記棒状体を設けることで薬液等の流量を制限している。このため、シリンジや他の輸液チューブからの流量と管体内部の流量との差が大きいと、管体の先端近傍の液圧が上昇し、管体と管体密着部との間に薬液等が侵入して液漏れが生じるおそれがある。そこで、本発明は、圧接部材を設けて密着度を増加させたので、管体と管体密着部との間への薬液等の侵入を確実に防止することができる。
【0017】
また、本発明において、前記管体は、その外径が後端に向かって次第に拡径するテーパ状に形成されていることを特徴とする。前記閉塞部材が管体に沿って後退したとき、管体の後端側が拡径されていることによって管体密着部による管体への圧接力を増加させることができる。これにより、管体と管体密着部とが確実に密着して管体と管体密着部との間への薬液等の侵入を確実に防止することができる。
【0018】
【発明の実施の形態】
本発明の一実施形態を図面に基づいて説明する。図1は本実施形態の継ぎ手装置を示す説明的断面図、図2は棒状体を示す説明的断面図、図3は閉塞部材の説明的断面図、図4は図1の継ぎ手装置の接続状態を示す説明的断面図、図5は他の実施形態の継ぎ手装置を示す説明的断面図、図6は図5の継ぎ手装置の接続状態を示す説明的断面図である。
【0019】
本実施形態の継ぎ手装置1は、図1に示すように、3方活栓2の一つのポート3に設けられている。該ポート3には筒状の管体支持部4を介して金属製の管体5が挿着されている。該管体5はパイプ状に形成され、基端が前記ポート3に連通されている。該管体5の先端には、その軸線方向に向って開口する開口部6が形成されており、該管体5の内部には、該管体5の軸線に沿って延びる棒状体7が装着されている。
【0020】
該棒状体7は、図1及び図2に示すように、管体5の内部に位置して該管体5の内径より小径とされた内挿部8と、内挿部8の先端側に連設された延出部9と、内挿部8の後端側に連設された固定部10とによって構成されている。内挿部8は、管体5の内径より小径であることによって管体5の内面との間に空隙を形成している。延出部9は、管体5の先端から延出しており、管体5の開口部6を閉塞しない位置で管体5の外径と略同径に拡径された拡径部11を備えている。拡径部11における管体5の開口部6に対向する側は、開口部6に向かって縮径するテーパ面とされている。固定部10は、図2に示すように、大略楕円状に形成されて、管体5の内面に当接して接着或いは圧接嵌合される一対の当接部12と、該当接部12の両側において平坦に形成されて管体5の内面との間に空隙を形成する平坦部13とを備えている。
【0021】
また、図1に示すように、前記管体支持部4の外周には、円筒状の外筒支持部14を介して外筒15が連結支持されている。該外筒15の先端には、図示しないシリンジやチューブの先端に設けられた円筒状の接続端部16(図4参照)を挿着する挿着部17が形成されている。
【0022】
該外筒15の内部には、図1に示すように、ゴム製の閉塞部材18が収納されている。該閉塞部材18は、管体5に沿って進退自在に設けられ、外筒15内部に設けられた付勢手段としてのコイルスプリング19によって、前進方向に付勢されている。該閉塞部材18は、その外周に装着された後述する圧接部材20のフランジ部21が、外筒15の挿着部17の内周に突設された規制凸部22に突き当って抜け止めされている。
【0023】
該閉塞部材18は、図1及び図3に示すように、管体5の先端側を閉塞する栓部23と、該栓部23の後方に連設されて管体5の外周に密着する円筒状の管体密着部24とによって構成されている。該閉塞部材18の栓部23には、管体5が挿通される挿通孔25が形成されている。該挿通孔25は、図1に示すように、閉塞部材18が前進位置にあるとき前記棒状体7の延出部9に形成された拡径部11が嵌合して閉鎖状態となる。図4に示すように、閉塞部材18が後退すると、挿通孔25は棒状体7の拡径部11に案内されて管体5が挿通する。
【0024】
また、図1及び図3に示すように、前記管体密着部24の外周には、金属製の圧接部材20が装着されている。圧接部材20は、管体密着部24の外周全周を締め付けており、管体密着部24を管体5に押し当てて密着させている。更に、圧接部材20には、栓部23側において鍔状に張り出すフランジ部21が形成されている。該フランジ部21は、前記コイルスプリング19のスプリングシートとしてゴム製の閉塞部材18との接触による閉塞部材18の損傷を防止して確実に付勢力を付与し、且つ、前述したように外筒15の挿着部17の内周に突設された規制凸部22に突き当って閉塞部材18の抜け出しを防止する。該圧接部材20によって、管体密着部24と管体5との液密状態が維持され、閉塞部材18の進退移動時の液漏れを確実に防止することができる。
【0025】
以上の構成からなる継ぎ手装置1によれば、図4に示すように、前記外筒15の挿着部17に図示しないシリンジやチューブの先端に設けられた接続端部16を挿着したとき、該接続端部16に押圧された閉塞部材18が後退する。このとき、前記棒状体7の延出部9に拡径部11が形成されていることによって、閉塞部材18の挿通孔25の急激な拡径変形がなく円滑に管体5の挿通が行なわれる。これにより、閉塞部材18の後退移動をスムーズに行なうことができ、挿通孔25への挿通に伴う挿通孔25の損傷が防止されるので閉塞部材18の耐久性を向上させることができる。
【0026】
そして、挿通孔25を貫通した管体5の開口部6が開放され、接続端部16と3方活栓2のポート3とが管体5を介して連通する。このとき、接続端部16から管体5に向かって薬液が注入されると、管体5が前記棒状体7を備えて薬液の流量が制限されることによって、薬液が3方活栓2内に急激に注入されることが防止される。また、薬液の流量が管体5の棒状体7により制限されると、管体5の周囲の液圧が上昇し、閉塞部材18と管体5との間に薬液が侵入しようとするが、該閉塞部材18の管体密着部24が前記圧接部材20により管体5に圧接されていることにより、管体密着部24と管体5との間への薬液の侵入が防止される。
【0027】
その後、前記外筒15の挿着部17から接続端部16を引き抜いたときには、コイルスプリング19の付勢力によって閉塞部材18が前進し、管体5が挿通孔25から抜けた時点で、挿通孔25に棒状体7の拡径部11が挿着され、該管体5の開口部6が閉塞される。
【0028】
次に、本発明の他の実施形態を説明する。図5及び図6に示すように、他の実施形態の継ぎ手装置26は、前述した実施形態と同様に、3方活栓2の一つのポート3に設けられているが、前述した実施形態の管体5とは異なる形状の管体27を備えている。また、前述した実施形態と同様の構成については、図5及び図6において、図1及び図4と同一の符号を付してその説明を省略する。
【0029】
他の実施形態の継ぎ手装置26に設けられた管体27は、図5及び図6に示すように、硬質合成樹脂(例えばポリアセタール)によって形成されており、内部に前記棒状体7が挿着されている。
【0030】
該管体27は、その外径が後端に向かって次第に拡径するテーパ状に形成されている。該管体27の後端部には、鍔状に張り出して円筒状の外筒支持部14の端縁に当接された鍔部28が形成されている。該鍔部28の後方には、外筒支持部14と管体支持部4との間に介挿して固定する固定脚部29が一体に連設されている。該鍔部28は、コイルスプリング19の後端に当接するスプリングシートとされ、コイルスプリング19と外筒支持部14との接触による外筒支持部14の損傷を防止する。
【0031】
このように構成された管体27は、拡径された後端により曲げ強度が向上され、挿通孔25への管体27の挿通時に管体27の折れ曲がり等を確実に防止することができる。
【0032】
また、図6に示すように、前記外筒15の挿着部17に図示しないシリンジやチューブの先端に設けられた接続端部16を挿着したとき、該接続端部16に押圧された閉塞部材18が後退すると、該閉塞部材18の管体密着部24が管体27の拡径された部分に圧着され、管体密着部24と管体27との密着度を向上させることができる。これにより、接続端部16から管体27に向かって注入された薬液の流量が、管体27の棒状体7により制限されて管体27の周囲の液圧が上昇しても、管体密着部24と管体27との間への薬液の侵入を一層確実に防止することができる。
【0033】
なお、本実施形態においては、前記棒状体7の延出部9に拡径部11を備えるものを示したが、それ以外には、図示しないが、拡径部11を備えずに内挿部8ど同径の延出部を管体5,27の先端から延出させても良い。この場合には、閉塞部材18の挿通孔25の内径を延出部の外径(内挿部8の外径)より小とすることは言うまでもない。また、図示しないが、前記棒状体7には延出部9を設けなくてもよい。
【図面の簡単な説明】
【図1】本発明の一実施形態の継ぎ手装置を示す説明的断面図。
【図2】棒状体を示す説明的断面図。
【図3】閉塞部材の説明的断面図。
【図4】図1の継ぎ手装置の接続状態を示す説明的断面図。
【図5】他の実施形態の継ぎ手装置を示す説明的断面図。
【図6】図5の継ぎ手装置の接続状態を示す説明的断面図。
【符号の説明】
1,26…継ぎ手装置、5,27…管体、7…棒状体、8…内挿部、9…延出部、10…固定部、11…拡径部、15…外筒、16…接続端部(被接続物)、17…接続部、18…閉塞部材、19…コイルスプリング(付勢手段)、20…圧接部材、23…栓部、24…管体密着部、25…挿通孔。
[0001]
TECHNICAL FIELD OF THE INVENTION
The present invention relates to a joint device, and more particularly, to a joint device that is provided in, for example, a liquid medicine flow path for infusion and connects a syringe, a tube, and the like.
[0002]
[Prior art]
Conventionally, this type of joint device includes a hollow tube extending inside a cylindrical outer cylinder and a tubular member that is inserted inside the outer tube and slidable in the reciprocating direction inside the outer cylinder. (For example, see Patent Document 1).
[0003]
The tubular body has a side hole opened in a peripheral wall near the distal end thereof, and the tubular member closes the side hole when located at the distal end of the thin tube. Thus, when the luer taper portion of the syringe is inserted into the distal end of the outer cylinder, the tubular member pressed by the distal end of the luer taper portion is retracted, and the luer taper portion is in an externally inserted state in the tubular body, and the side of the tubular body When the hole is opened, it becomes conductive. Further, a coil spring is provided inside the outer cylinder, and the coil spring urges the tubular member at the time of retreat in the forward direction. Thus, when the luer taper portion is extracted from the distal end of the outer cylinder, the cylindrical member moves forward by the bias of the coil spring, and the side hole of the tube is closed.
[0004]
By the way, this type of joint device is provided in a chemical liquid flow path for drip, and a syringe, for example, is connected via a luer taper portion to mix another chemical liquid into the chemical liquid flow path. Then, another liquid medicine is injected into the liquid medicine flow path by pressing the piston of the syringe, but a large amount of the liquid medicine remains in the tubular body, and there is a disadvantage that a desired amount of the liquid medicine does not flow into the liquid medicine flow path of the drip. .
[0005]
At this time, if the piston is pressed rapidly, there is nothing to limit the flow rate of the chemical to an appropriate amount, so the flow rate of the chemical flow path temporarily becomes excessive, and the flow rate of the drip in the chemical flow path becomes an appropriate amount. May not be maintained, which may hinder smooth infusion.
[0006]
[Patent Document 1]
JP-A-10-15079
[Problems to be solved by the invention]
The present invention solves such inconvenience, and the present invention not only can form a reliable communication state when a cylindrical connection end provided at the tip of a syringe, a tube, or the like, but also can form a chemical solution into a tube. It is an object of the present invention to provide a joint device capable of reducing the remaining amount of the pipe and preventing an excessive flow rate in the pipe.
[0008]
[Means for Solving the Problems]
In order to achieve such an object, the present invention provides a bottomed cylindrical outer cylinder having a connecting portion that is inserted and opened so as to be connectable by inserting a tubular connected object, along a shaft center of the outer cylinder. An extended hollow rear end communicates with the outside of the bottom of the outer cylinder, and a distal end is located inside the outer cylinder at a predetermined distance from the connection portion and opens in the axial direction toward the connection portion. A tube, a closing member made of an elastic material that is housed in the outer tube so as to be able to advance and retreat in the axial direction and closes the outer tube and the tube at the advanced position, and opposes a tip of the tube in the closing member. A joint having a through hole through which the tube is inserted as the closing member retreats and a biasing means for biasing the closing member in a forward direction, wherein the tube is inserted into the inside thereof. A rod-shaped body attached and extending along the axis of the tube, wherein the rod-shaped body is An inner insertion portion that is located at the portion and has a smaller diameter than the inner diameter of the tube body and forms a gap between the inner surface of the tube body and a part of the inner insertion portion, which maintains communication with the gap. And a fixing portion fixed to the inner surface of the tube.
[0009]
In the joint device of the present invention, when an object to be connected, such as a luer taper provided in a syringe or a tube, is inserted into the connection of the outer cylinder, the closing member is pressed and retracted. Accordingly, the tube is inserted into the insertion hole. Thereby, the closing of the opening at the distal end of the tube is released, and the tube communicates with the syringe, the tube, and the like. Then, when the object to be connected is pulled out from the connection portion of the outer cylinder, the closing member is advanced by the urging force of the urging means. Thereby, the pipe body comes out of the insertion hole of the closing member, and the closing member closes the outer cylinder.
[0010]
In the joint device according to the aspect of the invention, the pipe body includes the rod-shaped body. The rod-like body has a space inside the tube and between the insertion portion of the rod-like body and the pipe, through which a drug solution or the like flows.
[0011]
As described above, since the rod is inserted into the tube, the amount of the drug solution or the like remaining in the tube (in the space between the insertion portion of the rod and the tube) is reduced. Can be small. Thus, the decrease in the amount of the medicinal solution injected from the syringe or other infusion tube into the inside of the tube can be reduced. Further, the flow rate of the drug solution flowing inside the tube can be reduced to the amount passing through the gap, and the flow rate of the drug solution flowing through the tube can be prevented from becoming excessive. That is, for example, when the joint device of the present invention is provided in an infusion channel such as a drip, when a syringe or the like is connected to the joint device of the present invention to inject another drug solution into the infusion channel, Even if the piston is pressed suddenly, it is possible to reliably prevent a rapid inflow of the drug solution into the infusion channel, and to inject an appropriate amount of another drug solution into the infusion channel very easily.
[0012]
Further, in the present invention, the rod-shaped body includes an extending portion which is connected to a distal end of the inner insertion portion and extends from a distal end opening of the tubular body, and an insertion hole of the closing member has an inner diameter. When the closing member closes the connecting portion of the outer cylinder at the advanced position, the extending portion of the rod is inserted into the insertion hole to make the insertion hole smaller than the outer diameter of the extension of the rod. Is closed.
[0013]
According to the present invention, when the closing member closes the connecting portion of the outer cylinder, the extending portion of the rod is inserted into the insertion hole, and the insertion hole is closed by the extending portion of the rod. Is done. Then, for example, a connected object such as a luer taper portion provided in a syringe or a tube is inserted into the connection portion of the outer cylinder, and when the closing member is pressed and receded, the insertion hole is guided by the extending portion of the rod-shaped body and the pipe is guided. The body is inserted. In this way, by providing the extending portion in the rod-shaped body, the pipe can be reliably guided to the insertion hole of the closing member, and the connection of the syringe or the tube can be performed smoothly.
[0014]
Also, at this time, the extending portion of the rod-shaped body is formed with a diameter-enlarging portion which is expanded to have substantially the same diameter as the outer diameter of the tube at a position where the tip opening of the tube is opened. It is preferable that the enlarged diameter portion is inserted into the insertion hole to close the insertion hole when the closing member closes the connection portion of the outer cylinder. The enlarged diameter portion of the extension portion has substantially the same diameter as the outer diameter of the tubular body, so that when the closing member retreats and the tubular body is inserted into the insertion hole, the diameter of the insertion hole rapidly increases. It is possible to smoothly perform the backward movement of the closing member without being deformed, and also to prevent the insertion hole from being damaged due to the insertion of the pipe into the insertion hole, thereby improving the durability of the closing member. it can.
[0015]
Further, in the present invention, the closing member is provided with the insertion hole, and is fitted to the connecting portion of the outer cylinder so as to be removably fitted to the connecting portion. A cylindrical tube contact portion that is in close contact with the peripheral wall in a liquid-tight manner, and an annular pressure contact member that presses the tube contact portion against the tube is provided on the outer periphery of the tube contact portion. I do.
[0016]
In the joint device of the present invention, the flow rate of a chemical solution or the like is limited by providing the rod-shaped body in the pipe. For this reason, if there is a large difference between the flow rate from the syringe or other infusion tube and the flow rate inside the tube, the fluid pressure near the distal end of the tube will increase, and a chemical solution, etc. May enter and cause liquid leakage. Therefore, in the present invention, the pressure contact member is provided to increase the degree of close contact, so that the intrusion of a chemical solution or the like between the tube and the tube close contact portion can be reliably prevented.
[0017]
Further, in the present invention, the outer diameter of the tube is tapered so that the diameter gradually increases toward a rear end. When the closing member retreats along the pipe, the rear end side of the pipe is enlarged in diameter, so that the pressure contact force on the pipe by the pipe contact portion can be increased. Thereby, the pipe body and the pipe body contact portion are securely brought into close contact with each other, and it is possible to reliably prevent a chemical solution or the like from entering between the tube body and the tube body contact portion.
[0018]
BEST MODE FOR CARRYING OUT THE INVENTION
An embodiment of the present invention will be described with reference to the drawings. 1 is an explanatory sectional view showing a joint device of the present embodiment, FIG. 2 is an explanatory sectional view showing a rod-like body, FIG. 3 is an explanatory sectional view of a closing member, and FIG. 4 is a connection state of the joint device of FIG. FIG. 5 is an explanatory sectional view showing a joint device of another embodiment, and FIG. 6 is an explanatory sectional view showing a connection state of the joint device of FIG.
[0019]
The joint device 1 of the present embodiment is provided at one port 3 of a three-way cock 2 as shown in FIG. A metal tube 5 is inserted into the port 3 via a tube support 4. The tube 5 is formed in a pipe shape, and has a base end connected to the port 3. An opening 6 that opens in the axial direction is formed at the tip of the tube 5, and a rod 7 extending along the axis of the tube 5 is mounted inside the tube 5. Have been.
[0020]
As shown in FIGS. 1 and 2, the rod-shaped body 7 has an insertion portion 8 located inside the tube 5 and having a diameter smaller than the inner diameter of the tube 5, and a distal end side of the insertion portion 8. The extension portion 9 is provided continuously, and the fixed portion 10 is provided continuously on the rear end side of the insertion portion 8. The inner insertion portion 8 has a smaller diameter than the inner diameter of the tubular body 5 so as to form a gap between itself and the inner surface of the tubular body 5. The extending portion 9 extends from the distal end of the tube 5, and includes a diameter-enlarging portion 11 that is expanded to have substantially the same diameter as the outer diameter of the tube 5 at a position where the opening 6 of the tube 5 is not closed. ing. The side of the enlarged diameter portion 11 facing the opening 6 of the tubular body 5 is a tapered surface that decreases in diameter toward the opening 6. As shown in FIG. 2, the fixing part 10 is formed in a substantially elliptical shape, and a pair of abutting parts 12 which are in contact with the inner surface of the tube body 5 and which are bonded or press-fitted. And a flat portion 13 which is formed flat and forms an air gap with the inner surface of the tube 5.
[0021]
As shown in FIG. 1, an outer cylinder 15 is connected and supported on the outer periphery of the tube support 4 via a cylindrical outer cylinder support 14. At the distal end of the outer cylinder 15, an insertion portion 17 for inserting a cylindrical connection end portion 16 (see FIG. 4) provided at the distal end of a syringe or a tube (not shown) is formed.
[0022]
As shown in FIG. 1, a rubber closing member 18 is housed inside the outer cylinder 15. The closing member 18 is provided so as to be able to advance and retreat along the tube 5 and is urged in the forward direction by a coil spring 19 as an urging means provided inside the outer cylinder 15. The closing member 18 is prevented from coming off by a flange portion 21 of a press-contact member 20, which will be described later, mounted on the outer periphery of the closing member 18 abuts on a regulating protrusion 22 provided on the inner periphery of the insertion portion 17 of the outer cylinder 15. ing.
[0023]
As shown in FIGS. 1 and 3, the closing member 18 includes a plug 23 that closes the distal end side of the tube 5, and a cylinder that is connected to the rear of the plug 23 and closely adheres to the outer periphery of the tube 5. And a tubular contact portion 24. The plug 23 of the closing member 18 is formed with an insertion hole 25 through which the tube 5 is inserted. As shown in FIG. 1, when the closing member 18 is at the forward position, the enlarged diameter portion 11 formed on the extending portion 9 of the rod 7 is fitted into the insertion hole 25 to be in a closed state. As shown in FIG. 4, when the closing member 18 is retracted, the insertion hole 25 is guided by the enlarged diameter portion 11 of the rod 7, and the tube 5 is inserted.
[0024]
As shown in FIGS. 1 and 3, a metal pressure contact member 20 is mounted on the outer periphery of the tubular body contact portion 24. The press-contact member 20 tightens the entire outer periphery of the tubular body contact portion 24, and presses the tubular body contact portion 24 against the tubular body 5 to make the tubular body closely contact with the tubular body 5. Further, the pressing member 20 is formed with a flange portion 21 that protrudes in a flange shape on the plug portion 23 side. The flange portion 21 serves as a spring seat for the coil spring 19 to prevent damage to the closing member 18 due to contact with the rubber closing member 18 to reliably apply a biasing force. Of the insertion member 17 to prevent the closing member 18 from coming off. The pressure contact member 20 maintains the liquid tight state between the tube contact portion 24 and the tube 5, and can reliably prevent liquid leakage when the closing member 18 moves forward and backward.
[0025]
According to the joint device 1 having the above configuration, as shown in FIG. 4, when the connection end 16 provided at the tip of a syringe or a tube (not shown) is inserted into the insertion portion 17 of the outer cylinder 15, The closing member 18 pressed by the connection end 16 is retracted. At this time, since the enlarged-diameter portion 11 is formed in the extending portion 9 of the rod-shaped body 7, the insertion of the tube 5 is performed smoothly without a sudden increase in the diameter of the insertion hole 25 of the closing member 18. . Thereby, the retreating movement of the closing member 18 can be performed smoothly, and damage to the insertion hole 25 due to insertion into the insertion hole 25 is prevented, so that the durability of the closing member 18 can be improved.
[0026]
Then, the opening 6 of the tube 5 penetrating the insertion hole 25 is opened, and the connection end 16 and the port 3 of the three-way cock 2 communicate with each other through the tube 5. At this time, when the chemical is injected from the connection end 16 toward the pipe 5, the pipe 5 is provided with the rod-shaped body 7 and the flow rate of the chemical is restricted, so that the chemical is injected into the three-way cock 2. A rapid injection is prevented. Further, when the flow rate of the chemical solution is restricted by the rod-shaped body 7 of the tube 5, the liquid pressure around the tube 5 increases, and the chemical solution tries to enter between the closing member 18 and the tube 5. Since the tube contact portion 24 of the closing member 18 is pressed against the tube 5 by the pressure contact member 20, the intrusion of the chemical solution between the tube contact portion 24 and the tube 5 is prevented.
[0027]
Thereafter, when the connection end portion 16 is pulled out from the insertion portion 17 of the outer cylinder 15, the closing member 18 moves forward by the urging force of the coil spring 19, and when the tube 5 comes out of the insertion hole 25, the insertion hole is removed. The enlarged diameter portion 11 of the rod 7 is inserted into the rod 25, and the opening 6 of the tube 5 is closed.
[0028]
Next, another embodiment of the present invention will be described. As shown in FIGS. 5 and 6, the joint device 26 of the other embodiment is provided in one port 3 of the three-way cock 2 similarly to the above-described embodiment. A tube 27 having a shape different from that of the body 5 is provided. 5 and 6, the same reference numerals as those in FIGS. 1 and 4 denote the same parts, and a description thereof will be omitted.
[0029]
As shown in FIGS. 5 and 6, the pipe 27 provided in the joint device 26 of another embodiment is formed of a hard synthetic resin (for example, polyacetal), and the rod-shaped body 7 is inserted therein. ing.
[0030]
The tubular body 27 is formed in a tapered shape whose outer diameter gradually increases toward the rear end. At the rear end of the tubular body 27, a flange portion 28 is formed, which protrudes in a flange shape and is in contact with the edge of the cylindrical outer cylinder support portion 14. At the rear of the flange portion 28, a fixed leg portion 29 which is interposed and fixed between the outer cylinder support portion 14 and the tube body support portion 4 is integrally and continuously provided. The flange 28 is a spring seat that abuts on the rear end of the coil spring 19 to prevent the outer cylinder support 14 from being damaged due to the contact between the coil spring 19 and the outer cylinder support 14.
[0031]
The bending strength of the tubular body 27 configured as described above is improved by the enlarged rear end, and the bending of the tubular body 27 when the tubular body 27 is inserted into the insertion hole 25 can be reliably prevented.
[0032]
As shown in FIG. 6, when a connection end 16 provided at the tip of a syringe or a tube (not shown) is inserted into the insertion portion 17 of the outer cylinder 15, the obstruction pressed by the connection end 16. When the member 18 retreats, the tube contact portion 24 of the closing member 18 is pressed against the enlarged diameter portion of the tube 27, and the degree of adhesion between the tube contact portion 24 and the tube 27 can be improved. As a result, even if the flow rate of the chemical solution injected from the connection end 16 toward the pipe 27 is restricted by the rod 7 of the pipe 27 and the fluid pressure around the pipe 27 rises, the pipe tightly adheres. Invasion of the chemical solution between the portion 24 and the tube 27 can be more reliably prevented.
[0033]
In this embodiment, the rod-shaped body 7 is provided with the enlarged-diameter portion 11 in the extending portion 9, but other than that, although not shown, the insertion portion without the enlarged-diameter portion 11 is provided. The extension portions having the same diameter may be extended from the distal ends of the tubular bodies 5 and 27. In this case, it goes without saying that the inner diameter of the insertion hole 25 of the closing member 18 is smaller than the outer diameter of the extension portion (the outer diameter of the inner insertion portion 8). Although not shown, the rod-shaped body 7 does not need to be provided with the extension 9.
[Brief description of the drawings]
FIG. 1 is an explanatory sectional view showing a joint device according to an embodiment of the present invention.
FIG. 2 is an explanatory sectional view showing a rod-shaped body.
FIG. 3 is an explanatory sectional view of a closing member.
FIG. 4 is an explanatory sectional view showing a connection state of the joint device of FIG. 1;
FIG. 5 is an explanatory sectional view showing a joint device according to another embodiment.
FIG. 6 is an explanatory sectional view showing a connection state of the joint device of FIG. 5;
[Explanation of symbols]
1, 26 ... joint device, 5, 27 ... pipe, 7 ... rod, 8 ... insertion part, 9 ... extension part, 10 ... fixing part, 11 ... large diameter part, 15 ... outer cylinder, 16 ... connection Ends (objects to be connected), 17: connecting portions, 18: closing members, 19: coil springs (biasing means), 20: press-contact members, 23: plug portions, 24: tube contact portions, 25: insertion holes.

Claims (5)

管状の被接続物を挿入して接続可能に開口する接続部を先端に備える有底円筒状の外筒と、該外筒の軸心に沿って延設されて後端が外筒の底部外方に連通し、先端が前記接続部から所定距離を存して該外筒内部に位置すると共に該接続部に向って軸線方向に開口する中空の管体と、前記外筒にその軸線方向に進退自在に収納されて前進位置において該外筒及び前記管体を閉塞する弾性材料による閉塞部材と、該閉塞部材における前記管体の先端に対向する位置に、該閉塞部材の後退に伴って前記管体が挿通する挿通孔と、該閉塞部材を前進方向に付勢する付勢手段とを備える継ぎ手装置において、
前記管体は、その内部に挿着されて該管体の軸線に沿って延びる棒状体を備え、
該棒状体は、前記管体内部に位置して該管体の内径より小径とされ該管体の内面との間に空隙を形成する内挿部と、該内挿部の一部に形成され、前記空隙との連通を維持して管体内面に固定される固定部とを備えることを特徴とする継ぎ手装置。
A cylindrical outer cylinder with a bottom provided with a connecting portion at the front end, which is openably connectable by inserting a tubular connected object, and a rear end extending along the axis of the outer cylinder and having a rear end outside the bottom of the outer cylinder. A hollow pipe body whose tip is located inside the outer cylinder at a predetermined distance from the connection part and opens in the axial direction toward the connection part, and A closing member made of an elastic material that is retractably housed and closes the outer cylinder and the tube at the forward position, and a position facing the tip of the tube in the closing member, with the closing member retreating, In a joint device including an insertion hole through which a pipe is inserted, and an urging unit that urges the closing member in a forward direction,
The tubular body includes a rod-like body inserted therein and extending along an axis of the tubular body,
The rod-shaped body is formed inside the tubular body, has an inner diameter smaller than the inner diameter of the tubular body and forms a gap between the inner surface of the tubular body, and a part of the inner inserted portion. And a fixing portion that is fixed to the inner surface of the pipe while maintaining communication with the gap.
前記棒状体は、前記内挿部の先端に連設されて前記管体の先端開口部から延出する延出部を備え、
前記閉塞部材の挿通孔は、その内径が前記棒状体の延出部の外径より小とされ、該閉塞部材が前進位置において前記外筒の接続部を閉塞したとき前記棒状体の延出部が前記挿通孔に挿入して該挿通孔を閉塞することを特徴とする請求項1記載の継ぎ手装置。
The rod-shaped body is provided with an extending portion that is connected to a distal end of the insertion portion and extends from a distal end opening of the tubular body,
The insertion hole of the closing member has an inner diameter smaller than the outer diameter of the extending portion of the rod-shaped body, and the extending portion of the rod-shaped body is closed when the closing member closes the connection portion of the outer cylinder at the forward position. 2. The joint device according to claim 1, wherein the plug is inserted into the insertion hole to close the insertion hole.
前記棒状体の延出部には、前記管体の先端開口部を開放する位置において該管体の外径と略同径に拡径された拡径部が形成され、
該拡径部は、前記閉塞部材が前記外筒の接続部を閉塞したときに前記挿通孔に挿入して該挿通孔を閉塞することを特徴とする請求項2記載の継ぎ手装置。
The extending portion of the rod-shaped body is formed with a diameter-enlarging portion which is expanded to have substantially the same diameter as the outer diameter of the tube at a position where the tip opening of the tube is opened,
The joint device according to claim 2, wherein the enlarged diameter portion is inserted into the insertion hole to close the insertion hole when the closing member closes the connection portion of the outer cylinder.
前記閉塞部材は、前記挿通孔を備えて前記外筒の接続部に挿脱自在に嵌合する栓部と、該栓部の後端に連設されて前記管体の周壁に液密に密着する円筒状の管体密着部とを備え、
該管体密着部の外周に、該管体密着部を前記管体に圧接する環状の圧接部材を設けたことを特徴とする請求項1乃至3の何れか1項記載の継ぎ手装置。
The closing member is provided with the insertion hole, and is fitted to the connecting portion of the outer cylinder so as to be removably fitted to the plug. And a cylindrical pipe contact portion that
The joint device according to any one of claims 1 to 3, wherein an annular pressure-contact member that presses the tube-contact portion to the tube is provided on an outer periphery of the tube-contact portion.
前記管体は、その外径が後端に向かって次第に拡径するテーパ状に形成されていることを特徴とする請求項1乃至4の何れか1項記載の継ぎ手装置。The joint device according to any one of claims 1 to 4, wherein the tubular body is formed in a tapered shape whose outer diameter gradually increases toward a rear end.
JP2003147224A 2003-05-26 2003-05-26 Coupling device Pending JP2004344546A (en)

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Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3123099A (en) * 1964-03-03 High pressure fluid coupling
US4671540A (en) * 1984-02-27 1987-06-09 Swagelok Company Coupling
JPH0712693U (en) * 1993-07-29 1995-03-03 日東工器株式会社 Pipe fitting
JPH07293773A (en) * 1994-04-26 1995-11-10 Toyo Eng Corp Fluid coupling
JPH1015079A (en) * 1996-03-29 1998-01-20 Becton Dickinson & Co Adapter with valve for medical instrument
JPH10507946A (en) * 1994-10-27 1998-08-04 アボツト・ラボラトリーズ Intravenous fluid tube infusion device with valve
JPH10238680A (en) * 1996-12-27 1998-09-08 Japan Steel Works Ltd:The Automatic joint
US6168137B1 (en) * 1996-12-30 2001-01-02 Joseph R. Paradis Swabbable check valve

Patent Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3123099A (en) * 1964-03-03 High pressure fluid coupling
US4671540A (en) * 1984-02-27 1987-06-09 Swagelok Company Coupling
JPH0712693U (en) * 1993-07-29 1995-03-03 日東工器株式会社 Pipe fitting
JPH07293773A (en) * 1994-04-26 1995-11-10 Toyo Eng Corp Fluid coupling
JPH10507946A (en) * 1994-10-27 1998-08-04 アボツト・ラボラトリーズ Intravenous fluid tube infusion device with valve
JPH1015079A (en) * 1996-03-29 1998-01-20 Becton Dickinson & Co Adapter with valve for medical instrument
JPH10238680A (en) * 1996-12-27 1998-09-08 Japan Steel Works Ltd:The Automatic joint
US6168137B1 (en) * 1996-12-30 2001-01-02 Joseph R. Paradis Swabbable check valve

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