JP6714885B2 - Medical valve - Google Patents

Medical valve Download PDF

Info

Publication number
JP6714885B2
JP6714885B2 JP2019014716A JP2019014716A JP6714885B2 JP 6714885 B2 JP6714885 B2 JP 6714885B2 JP 2019014716 A JP2019014716 A JP 2019014716A JP 2019014716 A JP2019014716 A JP 2019014716A JP 6714885 B2 JP6714885 B2 JP 6714885B2
Authority
JP
Japan
Prior art keywords
valve body
elastic valve
holding portion
groove
opening member
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.)
Active
Application number
JP2019014716A
Other languages
Japanese (ja)
Other versions
JP2019063609A (en
Inventor
裕之 中神
裕之 中神
慎吾 阪本
慎吾 阪本
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.)
Nipro Corp
Original Assignee
Nipro Corp
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 Nipro Corp filed Critical Nipro Corp
Priority to JP2019014716A priority Critical patent/JP6714885B2/en
Publication of JP2019063609A publication Critical patent/JP2019063609A/en
Application granted granted Critical
Publication of JP6714885B2 publication Critical patent/JP6714885B2/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Description

本発明は、輸液ルート等の医療分野における流体流路に用いられて、流体流路に対してシリンジ等の医療用接続具である雄コネクタを接続可能とする医療用弁に関するものである。 The present invention relates to a medical valve that is used for a fluid flow path in the medical field such as an infusion route and can connect a male connector that is a medical connector such as a syringe to the fluid flow path.

医療分野において輸液や採血等を行なう流体流路では、必要に応じてシリンジ等の雄コネクタを接続可能とするために医療用弁が利用される。例えば、流体流路の形成部材の一種である三方活栓やY形コネクタでは、一対の流路開口部間で流体流路が形成されると共に、残りの一つの流路開口部に医療用弁が装着されている。そして、この医療用弁を介して、シリンジ等の雄コネクタを流体流路に接続可能とすることにより、薬液の混注等を行うことが出来るようになっている。 In the medical field, a medical valve is used in a fluid flow path for infusion, blood collection, or the like so that a male connector such as a syringe can be connected as necessary. For example, in a three-way stopcock or a Y-shaped connector, which is a type of fluid flow path forming member, a fluid flow path is formed between a pair of flow path openings, and a medical valve is provided in the remaining one flow path opening. It is installed. Then, a male connector such as a syringe can be connected to the fluid flow path via the medical valve, so that a mixed injection of a drug solution can be performed.

ところで、このような医療用コネクタ等の医療用弁の一種として、特表平2−502976号公報(特許文献1)や特開2004−237133号公報(特許文献2)に記載されているスプリットセプタムタイプの医療用弁が知られている。この医療用弁は、流体流路の開口部分を構成するハウジングの開口部材に対して、中央部分にスリットが形成されたディスク状の弾性弁体を装着した構造とされている。そして、雄コネクタの先端部を弾性弁体のスリットに直接挿入することにより、雄コネクタを流体流路に対して連通状態で接続することが出来るようになっている。また、このようにして接続したシリンジ等の雄コネクタの先端部を弾性弁体から抜き取ることにより、抜き取りと同時に、弾性弁体の復元作用で流体流路を遮断状態に保持するようになっている。 By the way, as a kind of medical valve such as such a medical connector, a split septum described in Japanese Patent Publication No. 2-502976 (Patent Document 1) and Japanese Patent Laid-Open No. 2004-237133 (Patent Document 2). Types of medical valves are known. This medical valve has a structure in which a disc-shaped elastic valve body having a slit formed in a central portion is attached to an opening member of a housing which constitutes an opening portion of a fluid flow path. By directly inserting the tip of the male connector into the slit of the elastic valve body, the male connector can be connected to the fluid flow path in a communicating state. Further, by pulling out the tip end of the male connector such as the syringe connected in this way from the elastic valve body, at the same time as the pulling out, the restoring action of the elastic valve body holds the fluid flow path in a blocked state. ..

また、スプリットセプタムタイプの医療用弁では、雄コネクタの着脱に際して弾性弁体が外れないように、開口部材の開口部に対して弾性弁体を強固に固定する必要がある。そこで、従来では、前記特許文献1,2にも示されているように、開口部材に設けた一対の爪状の環状係止突部で、弾性弁体の外周部分を厚さ方向両側から挟んで支持させた構造が採用されている。 Further, in a split septum type medical valve, it is necessary to firmly fix the elastic valve body to the opening of the opening member so that the elastic valve body does not come off when the male connector is attached or detached. Therefore, in the related art, as shown in Patent Documents 1 and 2, the outer peripheral portion of the elastic valve element is sandwiched from both sides in the thickness direction by a pair of claw-shaped annular locking projections provided on the opening member. The structure supported by is adopted.

ところが、ディスク状の弾性弁体の外周部分を一対の爪状の環状係止突部で挟んで支持させた従来構造では、部品の寸法誤差や組付誤差などに起因して、弾性弁体をハウジングに対して十分な固定力で組み付けることが難しい。特に、大径の雄ルアー等の雄コネクタが繰り返して挿し入れられるような場合には、雄ルアー等との摩擦力で弾性弁体が内方に押し込まれて変形することで、弾性弁体の外周部分が環状係止突部から外れて抜け落ちる不具合を防止することが未だ不十分であった。 However, in the conventional structure in which the outer peripheral portion of the disk-shaped elastic valve element is supported by being sandwiched by a pair of claw-shaped annular locking projections, the elastic valve element is not supported due to dimensional errors and assembly errors of parts. It is difficult to assemble with sufficient fixing force to the housing. In particular, when a male connector such as a large-diameter male lure is repeatedly inserted, the elastic valve body is pushed inward and deformed by the frictional force with the male lure, so that the elastic valve body It was still inadequate to prevent the problem that the outer peripheral portion comes off the annular locking projection and falls off.

特表平2−502976号公報Japanese Patent Publication No. 2-502976 特開2004−237133号公報JP, 2004-237133, A

ここにおいて、本発明は、上述の如き事情を背景として為されたものであって、その解決課題とするところは、弾性弁体のハウジング内方への抜け落ちの不具合が防止される、新規な構造の医療用弁を提供することにある。 Here, the present invention has been made against the background of the above-mentioned circumstances, and the problem to be solved is to provide a novel structure in which the problem of the elastic valve body falling off inside the housing is prevented. To provide medical valve.

以下、このような課題を解決するために為された本発明の態様を記載する。なお、以下に記載の各態様において採用される構成要素は、可能な限り任意の組み合わせで採用可能である。Hereinafter, embodiments of the present invention made to solve such problems will be described. In addition, the constituent elements adopted in the respective aspects described below can be adopted in any combination as much as possible.

すなわち本発明は、
(1) 液体流路に接続される開口部材にディスク状の弾性弁体が装着されており、該弾性弁体の外周部分に形成された薄肉部が該開口部材の内側と外側の爪部で挟まれると共に、該弾性弁体の該薄肉部よりも外周側が該開口部材で保持されることにより、該弾性弁体の外周部分が該開口部材で支持されて、該弾性弁体の中央部分に設けられたスリットに雄コネクタを繰り返し挿抜可能とされた医療用弁において、前記薄肉部外周側から前記開口部材の内側に向かって延びる筒状保持部と、該筒状保持部から外周に向かって広がるフランジ状部が設けられており、該筒状保持部が前記開口部材で径方向に挟まれて保持されていると共に、該フランジ状部が該開口部材で軸方向に挟まれて保持されており、該フランジ状部の上面と下面の少なくとも一方には係止凹部が形成されて該開口部材に対して凹凸係止されていることを特徴とする医療用弁、
(2) 前記フランジ状部には軸方向外方に向かって突出して、前記開口部材に係止される係止突部が設けられている(1)に記載の医療用弁、
(3) 前記筒状保持部が、前記開口部材の内側に向かって拡開している(1)又は(2)に記載の医療用弁
(4) 前記筒状保持部が前記開口部材の外側にも延びており、外側に向かって延びた該筒状保持部の先端が、前記薄肉部の内周側に位置する前記弾性弁体の中央部分の外面よりも軸方向内方に位置している(1)〜()の何れか1項に記載の医療用弁、
に関する。
That is, the present invention is
(1) A disk-shaped elastic valve body is attached to an opening member connected to the liquid flow path, and thin-walled portions formed on an outer peripheral portion of the elastic valve body are claws inside and outside the opening member. While being sandwiched, the outer peripheral side of the elastic valve body with respect to the thin-walled portion is held by the opening member, so that the outer peripheral portion of the elastic valve body is supported by the opening member and is held at the central portion of the elastic valve body. In a medical valve in which a male connector can be repeatedly inserted into and removed from a provided slit, a tubular holding portion extending from the outer peripheral side of the thin portion toward the inside of the opening member, and a tubular holding portion extending from the tubular holding portion to the outer periphery. And a tubular holding portion that is sandwiched and held in the radial direction by the opening member, and the flange-shaped portion that is axially sandwiched and held by the opening member. A medical valve, characterized in that a locking recess is formed on at least one of the upper surface and the lower surface of the flange-shaped portion and is recessed and convexly locked to the opening member.
(2) The medical valve according to (1), wherein the flange-shaped portion is provided with a locking projection that projects outward in the axial direction and is locked to the opening member.
(3) The medical valve according to (1) or (2), in which the tubular holding portion expands toward the inside of the opening member .
(4 ) The tubular holding portion extends to the outside of the opening member, and the tip of the tubular holding portion extending toward the outside of the elastic valve body positioned on the inner peripheral side of the thin portion. The medical valve according to any one of (1) to ( 3 ), which is located axially inward from the outer surface of the central portion,
Regarding

本発明に従う構造とされた医療用弁では、開口部材からの弾性弁体の脱落を効果的に防止することが可能になる。 In medical valve of construction according to the present invention, it is possible to effectively prevent the coming off of the elastic valve body from the open port member.

本発明の1実施形態としての医療用弁の斜視図。The perspective view of the medical valve as one embodiment of the present invention. 図1に示されている医療用弁の正面図。The front view of the medical valve shown by FIG. 図1に示されている医療用弁の平面図。The top view of the medical valve shown by FIG. 図3におけるIV−IV断面図。IV-IV sectional drawing in FIG. 図4における要部を拡大して示す断面図。Sectional drawing which expands and shows the principal part in FIG. 図1に示されている医療用弁に対して雄コネクタを挿入する途中の状態を説明するための説明図。Explanatory drawing for demonstrating the state in the middle of inserting the male connector with respect to the medical valve shown by FIG. 図1に示されている医療用弁に対して雄コネクタを最深部まで挿入した状態を説明するための説明図。Explanatory drawing for demonstrating the state which inserted the male connector to the deepest part with respect to the medical valve shown by FIG.

以下、本発明の実施形態について、図面を参照しつつ説明する。 Embodiments of the present invention will be described below with reference to the drawings.

先ず、図1〜5には、本発明の1実施形態としての医療用弁10が示されている。この医療用弁10は、流体流路の開口部分を構成する開口部材としてのハウジング12に対して、スリット14が形成された略ディスク状の弾性弁体16が装着された構造とされており、この弾性弁体16のスリット14に対して雄コネクタが繰り返し挿抜可能とされている。なお、以下の説明において、上下方向および軸方向の外内方向とは、何れも図2中の上下方向をいう。 First, FIGS. 1 to 5 show a medical valve 10 as one embodiment of the present invention. The medical valve 10 has a structure in which a substantially disk-shaped elastic valve body 16 in which a slit 14 is formed is attached to a housing 12 as an opening member that constitutes an opening portion of a fluid flow path, A male connector can be repeatedly inserted into and removed from the slit 14 of the elastic valve body 16. In the following description, the up-down direction and the axial inward/outward direction mean the up-down direction in FIG. 2.

より詳細には、ハウジング12は、全体として略筒形状とされており、何れも略筒形状とされた外側保持部18と内側保持部20とハウジング本体22とからなる3つの部材の組合せ構造をもって構成されている。即ち、本実施形態では、ハウジング本体22の上方に内側保持部20が非接着で組み付けられると共に、内側保持部20の外周側に外側保持部18が重ね合わされて、ハウジング本体22と外側保持部18とが固着されることにより、ハウジング12が構成されている。 More specifically, the housing 12 has a substantially tubular shape as a whole, and has a combined structure of three members including an outer holding portion 18, an inner holding portion 20, and a housing body 22 which are all substantially tubular. It is configured. That is, in the present embodiment, the inner holding portion 20 is assembled above the housing body 22 by non-adhesion, and the outer holding portion 18 is superposed on the outer peripheral side of the inner holding portion 20, so that the housing body 22 and the outer holding portion 18 are overlapped. The housing 12 is formed by fixing and.

ハウジング本体22は、軸方向で上下に延びる中央筒状部24の外周側に周壁部26が設けられて、それぞれの上端部分が上底部28で連結されることにより構成されている。この中央筒状部24の軸方向寸法は周壁部26の軸方向寸法より大きくされており、周壁部26の内部において、中央筒状部24が周壁部26よりも下方へ突出している。 The housing body 22 is configured such that a peripheral wall portion 26 is provided on the outer peripheral side of a central cylindrical portion 24 that extends vertically in the axial direction, and upper end portions of the peripheral wall portions 26 are connected by an upper bottom portion 28. The axial dimension of the central tubular portion 24 is larger than the axial dimension of the peripheral wall portion 26, and the central tubular portion 24 projects below the peripheral wall portion 26 inside the peripheral wall portion 26.

さらに、上底部28の上面における径方向中間部分には、周方向の全周に亘って延びる円環形状の固定用溝30が形成されており、上底部28の上面に開口している。そして、固定用溝30の外周側の壁部が、外側保持部18と内側保持部20をそれぞれハウジング本体22に対して径方向で位置決めする環状の支持壁32とされている。なお、固定用溝30の内外両壁の対向内面には所定の傾斜角度が付されており、固定用溝30の断面形状が開口方向に向かって次第に拡径されている。 Further, a ring-shaped fixing groove 30 extending over the entire circumference in the circumferential direction is formed in the radial middle portion on the upper surface of the upper bottom portion 28, and opens on the upper surface of the upper bottom portion 28. The outer peripheral wall portion of the fixing groove 30 serves as an annular support wall 32 that positions the outer holding portion 18 and the inner holding portion 20 in the radial direction with respect to the housing body 22. The inner surfaces of the fixing groove 30 facing each other on the inner and outer walls are provided with a predetermined inclination angle, and the cross-sectional shape of the fixing groove 30 is gradually expanded toward the opening direction.

更にまた、支持壁32の上面には、上方に向かって突出する溶着用突部34が一体形成されている。なお、かかる溶着用突部34は、外側保持部18とハウジング本体22との組付けの際に超音波で溶融されることから、製品状態では実質的に消失しているが、図4では、説明および理解を容易とするために、溶着用突部34を破線で仮想的に図示している。また、かかる溶着用突部34は、外側保持部18側から、ハウジング本体22の支持壁32に重ね合わされるように設けられてもよい。 Furthermore, a welding projection 34 is integrally formed on the upper surface of the support wall 32 so as to project upward. In addition, since the welding protrusion 34 is melted by ultrasonic waves when the outer holding portion 18 and the housing body 22 are assembled, the welding protrusion 34 substantially disappears in a product state, but in FIG. For ease of explanation and understanding, the welding projection 34 is virtually illustrated by a broken line. Further, the welding projection 34 may be provided so as to be superposed on the support wall 32 of the housing body 22 from the outer side holding portion 18 side.

また、周壁部26の上端近くの外周面には、軸直角方向に広がる円環形状の段差面36が形成されている一方、段差面36よりも下側には、軸方向に延びる凹部38が、周方向の全周に亘って複数形成されている。これら複数個の凹部38で外周面に凹凸が付されることにより、使用者が医療用弁10におけるハウジング本体22の外周面を容易に把持できるようにされている。一方、周壁部26の内周面には、ロック溝40が形成されており、医療用弁10に対して下方からルアーロック式のコネクタ等を接続することができるようにされている。 An annular step surface 36 that extends in the direction perpendicular to the axis is formed on the outer peripheral surface near the upper end of the peripheral wall portion 26, while a recess 38 that extends in the axial direction is provided below the step surface 36. , Are formed over the entire circumference in the circumferential direction. By making the outer peripheral surface uneven by the plurality of recesses 38, the user can easily grasp the outer peripheral surface of the housing main body 22 in the medical valve 10. On the other hand, a lock groove 40 is formed on the inner peripheral surface of the peripheral wall portion 26 so that a luer lock type connector or the like can be connected to the medical valve 10 from below.

上記の如き構造とされたハウジング本体22の上方において、外側保持部18が外周側に組み付けられる一方、内側保持部20が内周側に組み付けられる。 Above the housing main body 22 having the above-described structure, the outer holding portion 18 is mounted on the outer peripheral side, while the inner holding portion 20 is mounted on the inner peripheral side.

外側保持部18は、下方の大径筒部42と上方の小径筒部44とが径方向に広がる段差状の環状肩部46で一体的に接続された構造とされている。換言すれば、外側保持部18の軸方向中間部分には環状肩部46が設けられており、この環状肩部46よりも上側が小径筒部44とされている一方、下側が大径筒部42とされている。なお、後述の説明から理解されるように、本実施形態では、外側保持部18における小径筒部44および環状肩部46により弾性弁体16を内側保持部20との間で支持していると共に、大径筒部42により外側支持部18がハウジング本体22に対して補助的に固定されるようになっている。 The outer holding portion 18 has a structure in which the lower large-diameter tubular portion 42 and the upper small-diameter tubular portion 44 are integrally connected by a stepped annular shoulder portion 46 that expands in the radial direction. In other words, an annular shoulder portion 46 is provided in the axially intermediate portion of the outer holding portion 18, and the upper side of the annular shoulder portion 46 is the small diameter tubular portion 44, while the lower side is the large diameter tubular portion. It is 42. As will be understood from the following description, in the present embodiment, the elastic valve element 16 is supported between the inner holding portion 20 and the small diameter tubular portion 44 and the annular shoulder portion 46 of the outer holding portion 18. The outer supporting portion 18 is auxiliary fixed to the housing body 22 by the large-diameter cylindrical portion 42.

ここにおいて、小径筒部44の内周面および外周面は、軸方向外方に行くに従って次第に小径となるテーパ形状とされている。そして、小径筒部44の内径寸法が最大となる基端部分(最下部)では、その内径寸法が固定用溝30の外周側壁の開口径よりも小さく且つ固定用溝30の内周側壁の開口径よりも大きくされている。一方、小径筒部44の内径寸法が最小となる先端部分(最上部)では、その内径寸法が弾性弁体16の外径寸法と略等しいか僅かに大きくされている。 Here, the inner peripheral surface and the outer peripheral surface of the small-diameter cylindrical portion 44 are tapered so that the diameter gradually decreases toward the outer side in the axial direction. Then, at the base end portion (lowermost portion) where the inner diameter dimension of the small-diameter tubular portion 44 is maximum, the inner diameter dimension is smaller than the opening diameter of the outer peripheral side wall of the fixing groove 30 and the inner peripheral side wall of the fixing groove 30 is opened. It is larger than the caliber. On the other hand, at the tip portion (uppermost portion) where the inner diameter dimension of the small-diameter tubular portion 44 is the smallest, the inner diameter dimension is substantially equal to or slightly larger than the outer diameter dimension of the elastic valve body 16.

さらに、外側保持部18における小径筒部44の先端部分は内周側へ屈曲状に広がる円環状の先端壁部48とされていると共に、先端壁部48の内周縁部には、軸方向内方に折り返されるようにして下方へ延びる外側の爪部としての外側係合爪50が形成されている。なお、本実施形態では、外側係合爪50が周方向の全周に亘る円環形状で形成されており、外側係合爪50の外周側には、径方向で所定幅をもって周方向に延びる外側保持溝52が、軸方向下方に開口する円環状溝として形成されている。 Further, the tip portion of the small-diameter cylindrical portion 44 in the outer holding portion 18 is an annular tip wall portion 48 that expands in a curved shape toward the inner peripheral side, and the inner peripheral edge portion of the tip wall portion 48 has an axially inner portion. An outer engaging claw 50 is formed as an outer claw portion that extends downward so as to be folded back in one direction. In the present embodiment, the outer engagement claw 50 is formed in an annular shape over the entire circumference in the circumferential direction, and the outer engagement claw 50 extends in the circumferential direction with a predetermined width in the radial direction on the outer peripheral side. The outer holding groove 52 is formed as an annular groove that opens downward in the axial direction.

なお、小径筒部44の外周面には、例えばルアーロックコネクタの雌ねじ部が螺合する雄ねじ部54が形成されている。雄ねじ部54は、例えばISO594で規定された、ルアーロックコネクタの雌ねじ部との接続が可能な二条ねじとされる。 It should be noted that, on the outer peripheral surface of the small-diameter cylindrical portion 44, for example, a male screw portion 54 with which a female screw portion of a luer lock connector is screwed is formed. The male screw portion 54 is, for example, a double thread screw that can be connected to the female screw portion of the luer lock connector defined by ISO594.

また、外側保持部18の外径寸法は、本実施形態のような雄ねじ部54を形成しない場合には、小径筒部44の外径が6.0〜7.0mmの範囲内で設定されることが好ましく、本実施形態のように雄ねじ部54を形成する場合には、ねじ山を含んだ小径筒部44の外径が7.2〜8.0mmの範囲内で設定されることが好ましい。 The outer diameter of the outer holding portion 18 is set within the range of 6.0 to 7.0 mm for the outer diameter of the small-diameter tubular portion 44 when the male screw portion 54 is not formed as in the present embodiment. It is preferable that when the male screw portion 54 is formed as in the present embodiment, the outer diameter of the small-diameter cylindrical portion 44 including the screw thread is preferably set within the range of 7.2 to 8.0 mm. ..

さらに、外側保持部18の環状肩部46における下面には、下方に開口する嵌合溝56が形成されている。また、環状肩部46下面の内周縁部には、軸方向下方に突出する係止凸部58が形成されている。特に本実施形態では、嵌合溝56が周方向の全周に延びる環状溝とされていると共に、係止凸部58も周方向の全周に延びる環状凸部とされている。 Further, a fitting groove 56 that opens downward is formed on the lower surface of the annular shoulder portion 46 of the outer holding portion 18. Further, on the inner peripheral edge of the lower surface of the annular shoulder portion 46, a locking convex portion 58 that projects downward in the axial direction is formed. In particular, in this embodiment, the fitting groove 56 is an annular groove extending over the entire circumference in the circumferential direction, and the locking projection 58 is also an annular projection extending over the entire circumference in the circumferential direction.

一方、内側保持部20は、全体として軸方向の内方から外方に行くに従って小径となるテーパ筒形状とされており、内側保持部20の下端部は一定の厚さ寸法(図4中の上下方向)で外周側に延び出す環状基端部60とされている。この環状基端部60は、ハウジング本体22の固定用溝30に嵌まり込む大きさと形状を有していると共に、軸方向厚さ寸法が固定用溝30の深さ寸法よりも小さくされている。 On the other hand, the inner holding portion 20 has a tapered tubular shape whose diameter decreases as it goes from the inner side to the outer side in the axial direction as a whole, and the lower end portion of the inner holding portion 20 has a constant thickness dimension (see FIG. 4). It is an annular base end portion 60 that extends outward in the vertical direction). The annular base end portion 60 has such a size and shape that it fits into the fixing groove 30 of the housing body 22, and has an axial thickness dimension smaller than the depth dimension of the fixing groove 30. ..

また、内側保持部20の軸方向上側部分には、雁首状の屈曲断面で内周側へ狭まった環状の受座部62が形成されている。また、受座部62の内周縁部には、軸方向上方に向かって突出した環状の、内側の爪部としての内側係合爪64が形成されている。なお、内側係合爪64の先端は、その内面が内周側に凸となる湾曲断面形状とされており、かかる湾曲断面形状は、例えば略一定の曲率半径を有することが好ましい。 Further, an annular seat portion 62 having a gooseneck-shaped bent cross section and narrowed toward the inner peripheral side is formed in an axially upper portion of the inner holding portion 20. In addition, an inner engagement claw 64 as an inner claw portion is formed on the inner peripheral edge of the seat portion 62 so as to project axially upward. The tip of the inner engagement claw 64 has a curved cross-sectional shape whose inner surface is convex toward the inner peripheral side, and the curved cross-sectional shape preferably has, for example, a substantially constant radius of curvature.

かかる構造とされた外側保持部18および内側保持部20がハウジング本体22に対して組み付けられることにより、ハウジング12が構成されている。即ち、ハウジング本体22における固定用溝30の底面に、環状基端部60を含む内側保持部20の軸方向内方の端面が重ね合わされることで、内側保持部20がハウジング本体22に対して支持されている。 The housing 12 is configured by assembling the outer holding portion 18 and the inner holding portion 20 having such a structure with the housing body 22. That is, the inner holding portion 20 is positioned relative to the housing body 22 by overlapping the axially inner end surface of the inner holding portion 20 including the annular base end portion 60 on the bottom surface of the fixing groove 30 in the housing body 22. It is supported.

そして、かかる内側保持部20に対して外側保持部18が外周側から覆うように設けられる。その際、嵌合溝56の底面が、小径筒部44の軸方向基端側の端面として、ハウジング本体22の支持壁32の上面に重ね合わされて支持されている。そして、支持壁32の上面に設けられた溶着用突部34を超音波で溶融させることにより、外側保持部18とハウジング本体22とが固着されるようになっている。 The outer holding portion 18 is provided so as to cover the inner holding portion 20 from the outer peripheral side. At this time, the bottom surface of the fitting groove 56 is superposed on and supported by the upper surface of the support wall 32 of the housing body 22 as the end surface of the small-diameter cylindrical portion 44 on the axially proximal end side. Then, by melting the welding projection 34 provided on the upper surface of the support wall 32 with ultrasonic waves, the outer holding portion 18 and the housing body 22 are fixed to each other.

また、かかる組付け時には、外側保持部18の軸方向上端は内側保持部20の軸方向上端よりも、軸方向上方に位置している。更に、外側保持部18の軸方向下端は、ハウジング本体22の段差面36に対して軸方向で僅かな離隔距離をもって重ね合わされている。 Further, at the time of such assembling, the axial upper end of the outer holding portion 18 is located axially above the axial upper end of the inner holding portion 20. Furthermore, the lower end of the outer holding portion 18 in the axial direction is superposed on the step surface 36 of the housing body 22 with a small distance in the axial direction.

上記の如き外側保持部18と内側保持部20とハウジング本体22との組付け時には、固定用溝30の開口部分に対して外側保持部18における小径筒部44の軸方向内方の端部が嵌まり込んで、固定用溝30の外周側の壁面に嵌合されている。これにより、本実施形態では、固定用溝30に対して、内側保持部20と外側保持部18の各軸方向内方の端部が嵌まり込んでおり、それによって、内側保持部20と外側保持部18がハウジング本体22に対して径方向で位置決めされている。 When the outer holding portion 18, the inner holding portion 20, and the housing main body 22 are assembled as described above, the axially inward end portion of the small-diameter cylindrical portion 44 of the outer holding portion 18 with respect to the opening portion of the fixing groove 30 is disposed. It fits in and is fitted to the wall surface on the outer peripheral side of the fixing groove 30. As a result, in the present embodiment, the axially inward ends of the inner holding portion 20 and the outer holding portion 18 are fitted into the fixing groove 30, whereby the inner holding portion 20 and the outer holding portion The holding portion 18 is positioned in the radial direction with respect to the housing body 22.

また、かかる組付け時には、内側保持部20の受座部62は、外側係合爪50の先端壁部48に対して軸方向で略対向して配置されている。そして、内側保持部20の内側係合爪64が、外側保持部18の外側係合爪50と、軸方向で隙間を隔てて対向位置されている。これら内側係合爪64と外側係合爪50は、軸方向の投影で互いに少なくとも一部が重なり合うことが望ましく、好適には、径方向の半分以上の領域において軸方向の投影で互いに重なり合うようにされる。特に本実施形態では、外側係合爪50の内周端(径方向内側端部)の軸方向延長線上に、内側係合爪64の内面である湾曲面が位置するようにされている。 Further, at the time of such assembly, the seat portion 62 of the inner holding portion 20 is arranged so as to substantially face the tip end wall portion 48 of the outer engagement claw 50 in the axial direction. Then, the inner engagement claw 64 of the inner holding part 20 is positioned to face the outer engagement claw 50 of the outer holding part 18 with a gap in the axial direction. It is desirable that the inner engagement claw 64 and the outer engagement claw 50 at least partially overlap each other when projected in the axial direction, and it is preferable that they overlap each other when projected in the axial direction in a region of half or more in the radial direction. To be done. In particular, in the present embodiment, the curved surface, which is the inner surface of the inner engagement claw 64, is located on the axial extension line of the inner peripheral end (radially inner end) of the outer engagement claw 50.

また、内側保持部20の外径寸法は外側保持部18の内径寸法よりも小さくされており、図4等に示されるように、外側保持部18と内側保持部20との間の装着用スペースに弾性弁体16が装着される。 Further, the outer diameter dimension of the inner holding portion 20 is smaller than the inner diameter dimension of the outer holding portion 18, and as shown in FIG. 4 and the like, a mounting space between the outer holding portion 18 and the inner holding portion 20. The elastic valve body 16 is attached to the.

かかる弾性弁体16は略ディスク形状とされており、中央部分66にスリット14が形成されている。また、弾性弁体16の外周部分には軸方向内外に突出する筒状保持部68が設けられており、筒状保持部68の外周面が外側保持部18の内周面に重ね合わせられている一方、筒状保持部68の内周面が内側保持部20の外周面に重ね合わせられている。更に、中央部分66と筒状保持部68とが周方向の全周に亘って延びる環状連結部70で接続されていることにより、弾性弁体16は一体成形品として形成されている。換言すれば、弾性弁体16の外周部分において、筒状保持部68が環状連結部70の外周側に形成されている。 The elastic valve body 16 has a substantially disc shape, and the slit 14 is formed in the central portion 66. A cylindrical holding portion 68 that projects inward and outward in the axial direction is provided on the outer peripheral portion of the elastic valve body 16, and the outer peripheral surface of the cylindrical holding portion 68 is superposed on the inner peripheral surface of the outer holding portion 18. On the other hand, the inner peripheral surface of the cylindrical holding portion 68 is superposed on the outer peripheral surface of the inner holding portion 20. Further, since the central portion 66 and the cylindrical holding portion 68 are connected by the annular connecting portion 70 extending over the entire circumference in the circumferential direction, the elastic valve body 16 is formed as an integrally molded product. In other words, in the outer peripheral portion of the elastic valve body 16, the cylindrical holding portion 68 is formed on the outer peripheral side of the annular connecting portion 70.

なお、図4に示される雄コネクタの未挿入状態では、弾性弁体16における中央部分66の上端面とハウジング12の上端面が同一平面状に位置するようにされている。また、本実施形態では、スリット14は、弾性弁体16の厚さ方向に貫通する直線状とされているが、中央から放射状に延びる3本以上のスリットなどでも良い。 When the male connector shown in FIG. 4 is not inserted, the upper end surface of the central portion 66 of the elastic valve body 16 and the upper end surface of the housing 12 are located on the same plane. Further, in the present embodiment, the slit 14 has a linear shape penetrating in the thickness direction of the elastic valve body 16, but may be three or more slits extending radially from the center.

この環状連結部70は、弾性弁体16の中央部分66よりも厚さ寸法を小さくすることにより形成されており、即ち弾性弁体16における軸方向外面側および内面側の外周部分には、それぞれ周方向の全周に亘って延びる溝状の外側環状溝72および内側環状溝74が形成されている。これら両環状溝72,74により弾性弁体16の外周部分には括れが形成されており、この括れ部分、即ち両環状溝72,74の底部の軸方向間が薄肉部としての環状連結部70とされている。 The annular connecting portion 70 is formed by making the thickness dimension smaller than that of the central portion 66 of the elastic valve body 16, that is, the outer peripheral portions of the elastic valve body 16 on the outer side and the inner side in the axial direction, respectively. A groove-shaped outer annular groove 72 and an inner annular groove 74 extending over the entire circumference in the circumferential direction are formed. A constriction is formed on the outer peripheral portion of the elastic valve body 16 by these annular grooves 72, 74, and the constricted portion, that is, the axial connection between the bottoms of the annular grooves 72, 74 in the axial direction serves as a thin connecting portion 70. It is said that.

なお、両環状溝72,74の形状はそれぞれ、外側係合爪50および内側係合爪64に略対応するものとされて、それら外内の係合爪50,64が嵌め込まれ得るようになっている。また、内側環状溝74の内周側には所定の径方向幅寸法で周方向に連続して延びる環状凹溝76が設けられており、これら内側環状溝74と環状凹溝76とが径方向で連続して形成されている。 The shapes of the two annular grooves 72, 74 are substantially the same as the outer engaging claw 50 and the inner engaging claw 64, respectively, so that the outer and inner engaging claws 50, 64 can be fitted therein. ing. Further, on the inner peripheral side of the inner annular groove 74, an annular concave groove 76 continuously extending in the circumferential direction with a predetermined radial width dimension is provided, and the inner annular groove 74 and the annular concave groove 76 are arranged in the radial direction. Are continuously formed.

そして、環状連結部70の外周側に接続される筒状保持部68は、外側保持部18と内側保持部20との間の装着用スペースに対応した形状とされている。即ち、本実施形態では、環状連結部70から軸方向外方に突出する上方支持部78と軸方向内方に突出する下方支持部80を含んで、筒状保持部68が構成されている。 The tubular holding portion 68 connected to the outer peripheral side of the annular connecting portion 70 has a shape corresponding to the mounting space between the outer holding portion 18 and the inner holding portion 20. That is, in the present embodiment, the tubular holding portion 68 is configured to include the upper support portion 78 that projects axially outward from the annular coupling portion 70 and the lower support portion 80 that projects axially inward.

要するに、上方支持部78は所定の軸方向寸法をもって環状連結部70から上方に突出していると共に、径方向幅寸法が外側保持溝52における径方向幅寸法と略同じか僅かに大きくされている。また、上方支持部78の内周面形状が外側係合爪50の外周面形状に略対応している一方、上方支持部78の外周面形状が小径筒部44の内周面形状に略対応している。更に、下方支持部80は所定の軸方向寸法をもって環状連結部70から下方に突出しており、本実施形態では、ハウジング12と弾性弁体16との組付時において、外側保持部18の環状肩部46よりも下方となる位置まで突出している。そして、下方支持部80の内周面形状が内側保持部20の外周面形状に略対応している一方、下方支持部80の外周面形状が小径筒部44の内周面形状に対応している。これにより、下方支持部80の内外周面が内側保持部20と外側保持部18における小径筒部44との間で厚さ方向となる径方向で挟まれて支持されている。 In short, the upper support portion 78 projects upward from the annular connecting portion 70 with a predetermined axial dimension, and the radial width dimension thereof is substantially the same as or slightly larger than the radial width dimension of the outer holding groove 52. The inner peripheral surface shape of the upper support portion 78 substantially corresponds to the outer peripheral surface shape of the outer engagement claw 50, while the outer peripheral surface shape of the upper support portion 78 substantially corresponds to the inner peripheral surface shape of the small diameter cylindrical portion 44. doing. Further, the lower support portion 80 projects downward from the annular connecting portion 70 with a predetermined axial dimension, and in the present embodiment, when the housing 12 and the elastic valve body 16 are assembled, the annular shoulder of the outer holding portion 18 is arranged. It projects to a position below the portion 46. The inner peripheral surface shape of the lower support portion 80 substantially corresponds to the outer peripheral surface shape of the inner holding portion 20, while the outer peripheral surface shape of the lower support portion 80 corresponds to the inner peripheral surface shape of the small diameter tubular portion 44. There is. As a result, the inner and outer peripheral surfaces of the lower support portion 80 are sandwiched and supported between the inner holding portion 20 and the small diameter tubular portion 44 of the outer holding portion 18 in the radial direction that is the thickness direction.

また、下方支持部80は突出方向基端側(図4中の上方)よりも突出方向先端側(図4中の下方)の径寸法が大きくされており、突出先端部分(軸方向最下端)には、外周側に広がる径方向突出部としてのフランジ状部82が一体形成されている。このフランジ状部82の径方向幅寸法は内側保持部20の環状基端部60の上面における径方向幅寸法と略等しくされている。更に、フランジ状部82の上面には、外側保持部18の係止凸部58に対応した位置と大きさで、周方向の全周に亘って延びる上側係止凹部84が形成されており、この上側係止凹部84の外周側が軸方向外方に向かって突出する係止突部86とされている。更にまた、フランジ状部82の下面には、周方向の全周に亘って延びる下側係止凹部88が形成されており、例えば環状基端部60の上面に下側係止凹部88と対応する凸部が設けられることにより、内側保持部20上での弾性弁体16の位置決め効果が発揮される他、これらの凹凸部の摩擦に基づく弾性弁体16の脱落防止効果が発揮され得る。 Further, the lower support portion 80 has a larger diameter dimension on the front end side in the protruding direction (lower side in FIG. 4) than on the base end side in the protruding direction (upper side in FIG. 4), and the protruding front end portion (the lowermost end in the axial direction). A flange-shaped portion 82 is integrally formed as a radially protruding portion that extends to the outer peripheral side. The radial width dimension of the flange portion 82 is substantially equal to the radial width dimension of the upper surface of the annular base end portion 60 of the inner holding portion 20. Further, on the upper surface of the flange-shaped portion 82, an upper locking concave portion 84 is formed at a position and size corresponding to the locking convex portion 58 of the outer holding portion 18 and extending over the entire circumference in the circumferential direction, The outer peripheral side of the upper locking recess 84 is a locking projection 86 that projects outward in the axial direction. Furthermore, the lower surface of the flange-shaped portion 82 is formed with a lower locking recess 88 extending over the entire circumference in the circumferential direction. For example, the lower locking recess 88 corresponds to the upper surface of the annular base end 60. By providing the convex portion, the positioning effect of the elastic valve element 16 on the inner holding portion 20 is exerted, and the effect of preventing the elastic valve element 16 from coming off due to the friction of these irregularities can be exerted.

なお、本実施形態のハウジング12を構成する外側保持部18、内側保持部20、ハウジング本体22のそれぞれは、弾性弁体16を確実に保持し得る強度を有する材料から形成されることが好ましく、熱可塑性樹脂が好適に採用される。また、弾性弁体16は弾性を有する材料から形成されており、気密性や再封止性を考慮して、イソプレンゴムやシリコーンゴム等の合成ゴム、天然ゴム、熱可塑性エラストマー等が好適に採用される。 In addition, each of the outer holding portion 18, the inner holding portion 20, and the housing body 22 that configure the housing 12 of the present embodiment is preferably formed of a material having a strength capable of reliably holding the elastic valve body 16, A thermoplastic resin is preferably adopted. Further, the elastic valve body 16 is formed of an elastic material, and synthetic rubber such as isoprene rubber or silicone rubber, natural rubber, thermoplastic elastomer or the like is preferably adopted in consideration of airtightness and resealability. To be done.

また、弾性弁体16において、上方支持部78の上端部における外径寸法は、好適には5.0〜6.5mmの範囲内で設定される。当該寸法が5.0mmよりも小さいと、外径が略4.0mmに統一された標準的なルアーロックコネクタのルアーチップの挿入が困難になるおそれがある一方、当該寸法が6.5mmよりも大きいと、医療用弁10の外径が大きくなって、標準的なルアーロックコネクタの雌ねじ部との接続が困難となるおそれがあるからである。 Further, in the elastic valve body 16, the outer diameter dimension at the upper end portion of the upper support portion 78 is preferably set within the range of 5.0 to 6.5 mm. If the dimension is less than 5.0 mm, it may be difficult to insert the luer tip of the standard luer lock connector with the outer diameter unified to about 4.0 mm, while the dimension is less than 6.5 mm. This is because if the diameter is large, the outer diameter of the medical valve 10 becomes large and it may be difficult to connect the female valve portion of a standard luer lock connector.

また、弾性弁体16の中央部分66の厚さ寸法は、好適には、1.0〜3.0mmの範囲内で設定される。中央部分66の厚さ寸法が1.0mmよりも小さいと、シリンジ先端部等の雄コネクタの挿入時におけるシール性が不十分となるおそれがある一方、厚さ寸法が3.0mmよりも大きいと、雄コネクタの挿入抵抗が大きくなって、挿入操作が難しくなるおそれがあるからである。 The thickness dimension of the central portion 66 of the elastic valve body 16 is preferably set within the range of 1.0 to 3.0 mm. If the thickness dimension of the central portion 66 is smaller than 1.0 mm, the sealing property at the time of inserting the male connector such as the syringe tip portion may be insufficient, while if the thickness dimension is larger than 3.0 mm. This is because the insertion resistance of the male connector becomes large, which may make the insertion operation difficult.

ここにおいて、弾性弁体16の下面には周方向の全周に亘って、所定の径方向幅寸法をもって連続して延びる周溝90が形成されている。この周溝90はスリット14と環状連結部70との径方向間に設けられていると共に、周溝90の底面92は環状連結部70の下面よりも上方に位置している。本実施形態では、この周溝90は円環状の凹溝とされている。また、かかる周溝90は、環状凹溝76の内周側端部から形成されており、環状凹溝76の内周側壁面と周溝90の内周側壁面94とが同一平面として形成されている。更に、周溝90の外周側壁面96は、軸方向外方になるにつれて内周側に直線状に傾斜する傾斜面とされている。これにより、本実施形態では、周溝90の外周側壁面96と外側環状溝72との間において、周溝90の外周側の壁部である溝外周壁98が環状連結部70から連続的に形成されている。 Here, on the lower surface of the elastic valve body 16, a circumferential groove 90 is formed continuously extending over the entire circumference in the circumferential direction with a predetermined radial width dimension. The circumferential groove 90 is provided between the slit 14 and the annular connecting portion 70 in the radial direction, and the bottom surface 92 of the circumferential groove 90 is located above the lower surface of the annular connecting portion 70. In this embodiment, the circumferential groove 90 is an annular groove. The peripheral groove 90 is formed from the inner peripheral side end of the annular groove 76, and the inner peripheral side wall surface of the annular concave groove 76 and the inner peripheral side wall surface 94 of the peripheral groove 90 are formed in the same plane. ing. Further, the outer peripheral side wall surface 96 of the peripheral groove 90 is an inclined surface that linearly inclines toward the inner peripheral side as it extends outward in the axial direction. Thus, in the present embodiment, the groove outer peripheral wall 98, which is the outer peripheral wall of the peripheral groove 90, is continuously provided from the annular connecting portion 70 between the outer peripheral side wall surface 96 of the peripheral groove 90 and the outer annular groove 72. Has been formed.

そして、上記の如き形状とされた弾性弁体16がハウジング12に組み付けられることにより、本実施形態の医療用弁10が構成されている。即ち、ハウジング本体22の開口側端部に形成される固定用溝30に内側保持部20の環状基端部60が嵌め入れられることにより非接着で組み付けられて、径方向で位置決めされる。そして、環状基端部60の上面に対して弾性弁体16のフランジ状部82が重ね合わされると共に、内側保持部20の内側係合爪64が弾性弁体16の内側環状溝74に食い込むように押し入れられる。 The elastic valve body 16 having the above-described shape is assembled to the housing 12 to form the medical valve 10 of the present embodiment. That is, the annular base end portion 60 of the inner holding portion 20 is fitted into the fixing groove 30 formed at the opening side end portion of the housing main body 22 so as to be assembled without adhesion and positioned in the radial direction. Then, the flange-shaped portion 82 of the elastic valve body 16 is superposed on the upper surface of the annular base end portion 60, and the inner engagement claw 64 of the inner holding portion 20 bites into the inner annular groove 74 of the elastic valve body 16. Pushed into.

かかる状態において、軸方向外方から外側保持部18が重ね合わされて、必要に応じて外側保持部18がハウジング本体22に対して軸方向で押し付けられる。これにより、外側保持部18の外側保持溝52に筒状保持部68の上方支持部78が押し入れられて支持されると共に、弾性弁体16の外側環状溝72に対して外側保持部18の外側係合爪50が食い込むように押し入れられる。なお、弾性弁体16の外内面に外内環状溝72,74が形成されていることから弾性弁体16と外内保持部18,20とが容易に位置決めされて、精度良く組み付けられる。 In this state, the outer holding portions 18 are superposed from the outside in the axial direction, and the outer holding portions 18 are axially pressed against the housing body 22 as necessary. As a result, the upper support portion 78 of the tubular holding portion 68 is pushed into and supported by the outer holding groove 52 of the outer holding portion 18, and the outside of the outer holding portion 18 with respect to the outer annular groove 72 of the elastic valve body 16 is pushed. The engaging claw 50 is pushed in so as to bite. Since the outer and inner annular grooves 72 and 74 are formed on the outer and inner surfaces of the elastic valve body 16, the elastic valve body 16 and the outer and inner holding portions 18 and 20 are easily positioned and assembled accurately.

また、ハウジング本体22の上底部28の支持壁32に突設された溶着用突部34に対して、外側保持部18の環状肩部46が当接状態で重ね合わされる。そして、かかる溶着用突部34の当接部位を軸方向で押し付けながら超音波溶着装置のホーンを当てて溶着用突部34に超音波エネルギーを集中的に作用させることで溶着用突部34とその当接部位を溶融させ、実質的に溶着用突部34を溶融消失させてハウジング本体22の上底部28に外側保持部18の環状肩部46が重ね合わされた状態で固着を完了する。なお、超音波溶着に際して、ハウジング本体22と外側保持部18との軸方向の位置決めは、溶着用突部34の溶融消失に伴って、支持壁32と環状肩部46との当接面積が急激に増大したりすることなどによって規定され得る。 Further, the annular shoulder portion 46 of the outer holding portion 18 is superposed in contact with the welding protrusion 34 that is provided on the support wall 32 of the upper bottom portion 28 of the housing body 22. Then, while pressing the contact portion of the welding projection 34 in the axial direction, the horn of the ultrasonic welding device is applied to cause ultrasonic energy to act on the welding projection 34 in a concentrated manner. The contact portion is melted, the welding projection 34 is substantially melted and disappeared, and the fixing is completed in a state where the annular shoulder portion 46 of the outer holding portion 18 is superposed on the upper bottom portion 28 of the housing body 22. In the ultrasonic welding, the housing main body 22 and the outer holding portion 18 are axially positioned so that the contact area between the support wall 32 and the annular shoulder portion 46 is rapidly increased as the welding protrusion 34 disappears. It can be defined by increasing to.

その結果、超音波溶着が完了した製品状態では、環状肩部46に設けられた嵌合溝56の上底面と支持壁32の上面とが略当接した状態とされる。また、弾性弁体16に設けられた上側係止凹部84に対して外側保持部18の内面に設けられた係止凸部58が嵌め入れられて係止されると共に、弾性弁体16の係止突部86がハウジング本体22の固定用溝30に嵌め入れられて支持壁32の内周面に係止される。 As a result, when the ultrasonic welding is completed, the upper bottom surface of the fitting groove 56 provided in the annular shoulder portion 46 and the upper surface of the support wall 32 are substantially in contact with each other. Further, the locking projection 58 provided on the inner surface of the outer holding portion 18 is fitted into and locked by the upper locking recess 84 provided in the elastic valve body 16, and the engagement of the elastic valve body 16 is also performed. The stopper projection 86 is fitted into the fixing groove 30 of the housing body 22 and locked to the inner peripheral surface of the support wall 32.

なお、嵌合溝56の上底面と支持壁32の上面との固着は、上述の如き溶着用突部34を利用した超音波溶着が好適に採用されるが、例えば溶着用突部を用いない接着等であってもよい。 The upper bottom surface of the fitting groove 56 and the upper surface of the support wall 32 are fixed to each other by ultrasonic welding using the welding projection 34 as described above, but, for example, the welding projection is not used. It may be adhesive or the like.

また、外側保持部18をハウジング本体22に対して軸方向に押し付けて固着することにより、外側保持部18の軸方向内方に位置する内側保持部20が、ハウジング本体22や外側保持部18等の何れに対しても接着等されない非固着で外れ止め支持されて固定的に組み付けられている。 Further, by pressing the outer holding portion 18 against the housing main body 22 in the axial direction and fixing the outer holding portion 18, the inner holding portion 20 located axially inward of the outer holding portion 18 has the housing main body 22, the outer holding portion 18, and the like. It is fixedly assembled by being non-adherently supported and prevented from being detached from any of them.

さらに、筒状保持部68の下方支持部80が外側保持部18と内側保持部20との間に挟まれて支持されている。そして、フランジ状部82の上側係止凹部84に対して外側保持部18の係止凸部58が嵌め入れられると共に、ハウジング本体22に対して外側保持部18を軸方向外方から押し付けて固着することにより、弾性弁体16のフランジ状部82が、外側保持部18と内側保持部20の環状基端部60との軸方向間で挟まれて支持されている。即ち、本実施形態では、ハウジング12に対して弾性弁体16が非接着とされつつ、径方向および軸方向で位置決め固定されており、筒状保持部68が外側保持部18と内側保持部20との間で保持されることにより、弾性弁体16の外周部分がハウジング12に支持されている。 Further, the lower support portion 80 of the tubular holding portion 68 is sandwiched between the outer holding portion 18 and the inner holding portion 20 and supported. Then, the locking projection 58 of the outer holding portion 18 is fitted into the upper locking recess 84 of the flange portion 82, and the outer holding portion 18 is pressed against the housing body 22 from the outside in the axial direction to be fixed. By doing so, the flange-shaped portion 82 of the elastic valve body 16 is sandwiched and supported between the outer holding portion 18 and the annular base end portion 60 of the inner holding portion 20 in the axial direction. That is, in the present embodiment, the elastic valve body 16 is not bonded to the housing 12, but is positioned and fixed in the radial direction and the axial direction, and the tubular holding portion 68 is provided with the outer holding portion 18 and the inner holding portion 20. The outer peripheral portion of the elastic valve body 16 is supported by the housing 12 by being held between the housing 12 and.

かかる弾性弁体16のハウジング12への組付け状態において、弾性弁体16の下面に設けられた周溝90の底面92は、内側係合爪64の先端よりも軸方向外側、特に、本実施形態では、外側係合爪50の先端よりも軸方向外側に位置している。 When the elastic valve body 16 is assembled to the housing 12, the bottom surface 92 of the circumferential groove 90 provided on the lower surface of the elastic valve body 16 is axially outer than the tip of the inner engagement claw 64, particularly in the present embodiment. In the form, it is located axially outside of the tip of the outer engagement claw 50.

ここで、組付け状態での弾性弁体16において、周溝90の内壁面から外側係合爪50までの距離B(図5参照)、即ち溝外周壁98の肉厚寸法Bが外内環状溝72,74間の肉厚寸法A(図5参照)、即ち環状連結部70の軸方向寸法Aよりも大きくされている。本実施形態では、周溝90の底面92が外側係合爪50の先端よりも軸方向外側に位置していることから、周溝90の内壁面から外側係合爪50までの距離Bは、周溝90の外周側壁面96から外側係合爪50までの距離とされる。このように、肉厚寸法Bを肉厚寸法Aよりも大きくすることで、雄コネクタを医療用弁10から離脱させた後における弾性復元作用による弾性弁体16の元の形状への戻り性を良好にすることができる。また、このことから、本発明において前記第2の態様に記載された薄肉部(環状連結部70)の肉厚寸法は、弾性弁体16をハウジング12へ組み付けて内外の係合爪64,50で挟んだ状態での肉厚寸法として把握される。 Here, in the elastic valve body 16 in the assembled state, the distance B (see FIG. 5) from the inner wall surface of the circumferential groove 90 to the outer engaging claw 50, that is, the wall thickness dimension B of the groove outer circumferential wall 98 is the outer inner ring. It is made larger than the wall thickness dimension A (see FIG. 5) between the grooves 72, 74, that is, the axial dimension A of the annular connecting portion 70. In the present embodiment, since the bottom surface 92 of the circumferential groove 90 is located axially outside the tip of the outer engaging claw 50, the distance B from the inner wall surface of the circumferential groove 90 to the outer engaging claw 50 is The distance is from the outer peripheral side wall surface 96 of the circumferential groove 90 to the outer engaging claw 50. As described above, by making the wall thickness dimension B larger than the wall thickness dimension A, the elastic valve body 16 can be returned to its original shape by the elastic restoring action after the male connector is detached from the medical valve 10. Can be good. Further, from this, the thickness dimension of the thin portion (annular connecting portion 70) described in the second aspect of the present invention is the same as the engaging pawls 64, 50 inside and outside when the elastic valve body 16 is assembled to the housing 12. It is understood as the wall thickness dimension when sandwiched between.

なお、本実施形態では、組付け状態における溝外周壁98の肉厚寸法Bが環状連結部70の軸方向寸法Aよりも大きくされているが、これらの寸法の大きさは何等限定されるものではない。即ち、後述するように、雄コネクタの挿入時において、弾性弁体16に発生する引張応力や歪が環状連結部70のみに集中することを軽減または回避して、溝外周壁98においても引張応力や歪が分散して発生させられるという作用が発揮される程度に厚さ寸法が設定されることが好適である。具体的には、例えば溝外周壁98の肉厚寸法Bは、外内環状溝72,74間の肉厚寸法Aの、50%〜200%とされることが好適であり、より好ましくは80%〜150%とされる。周溝90の内壁面から外側係合爪50までの距離Bの大きさが上記範囲とされることにより、後述する弾性弁体16のハウジング12からの脱落防止効果が安定して発揮され得る。 In the present embodiment, the wall thickness dimension B of the groove outer peripheral wall 98 in the assembled state is made larger than the axial dimension A of the annular connecting portion 70, but the size of these dimensions is not limited. is not. That is, as will be described later, when the male connector is inserted, the tensile stress or strain generated in the elastic valve body 16 is reduced or avoided from being concentrated only in the annular connecting portion 70, and the tensile stress is also exerted in the groove outer peripheral wall 98. It is preferable that the thickness dimension is set to such an extent that the action of disperse and generation of the strain is exhibited. Specifically, for example, the wall thickness dimension B of the groove outer peripheral wall 98 is preferably 50% to 200% of the wall thickness dimension A between the outer and inner annular grooves 72, 74, and more preferably 80. % To 150%. By setting the size of the distance B from the inner wall surface of the circumferential groove 90 to the outer engaging claw 50 to be in the above range, the effect of preventing the elastic valve body 16 from falling off from the housing 12 described later can be stably exhibited.

さらに、図6には、上記の如き構造とされた医療用弁10に対して、雄コネクタとしてのシリンジ100の先端部分が挿入された状態が示されている。即ち、弾性弁体16に対してシリンジ100の先端部分を挿入することにより、弾性弁体16の中央部分66が軸方向内方へ押し込まれて弾性変形させられると共に、スリット14が開放される。これにより、シリンジ100の内部から医療用弁10の内部を経て、図示しないカテーテル等から人体内部へ至る流体流路102が連通状態とされる。換言すれば、流体流路102の開口部分を構成するハウジング12に装着された弾性弁体16にシリンジ100が挿入されることにより、スリット14が開放されて、流体流路102が連通状態とされる。なお、図6中では、シリンジ100がルアーロックタイプとされて、シリンジ100に設けられた雌ねじ部104がハウジング12に設けられた雄ねじ部54と螺合するようになっている。尤も、かかるシリンジはスリップロックタイプとされてもよい。 Further, FIG. 6 shows a state in which the distal end portion of the syringe 100 as a male connector is inserted into the medical valve 10 having the above structure. That is, by inserting the tip portion of the syringe 100 into the elastic valve body 16, the central portion 66 of the elastic valve body 16 is pushed inward in the axial direction to be elastically deformed, and the slit 14 is opened. As a result, the fluid flow path 102 from the inside of the syringe 100 through the inside of the medical valve 10 to the inside of the human body from a catheter or the like (not shown) is brought into communication. In other words, when the syringe 100 is inserted into the elastic valve body 16 mounted on the housing 12 that forms the opening of the fluid flow path 102, the slit 14 is opened and the fluid flow path 102 is in communication. It In FIG. 6, the syringe 100 is of a luer lock type, and the female screw portion 104 provided on the syringe 100 is screwed with the male screw portion 54 provided on the housing 12. However, such a syringe may be of the slip lock type.

ここにおいて、弾性弁体16の中央部分66には、肉厚寸法が小さくされた溝外周壁98が形成されていることから、弾性弁体16の中央部分66が弾性変形する際には、シリンジ100の押込力に従い、溝外周壁98が下方に向かって優先的に弾性変形するようになっている。また、周溝90が形成されることにより、弾性弁体16における周溝90の上方に位置する部分の肉厚寸法が小さくされて、当該部分の弾性変形が容易に惹起される一方、弾性弁体16における周溝90よりも内周側の部分は、相対的に弾性変形が生じにくい。これにより、弾性弁体16に対してシリンジ100の先端部分が挿入される際には、図6に示されるように、弾性弁体16の中央部分66が、周溝90の内周側壁面94と外周側壁面96とが相互に離隔すると共に、溝外周壁98と周溝90の上方に位置する部分が下方に弾性変形する一方、周壁90よりも内周側の部分が下方にスライド移動するように弾性変形するようになっている。 Here, since the groove outer peripheral wall 98 having a reduced wall thickness is formed in the central portion 66 of the elastic valve body 16, when the central portion 66 of the elastic valve body 16 is elastically deformed, a syringe is used. According to the pushing force of 100, the groove outer peripheral wall 98 is preferentially elastically deformed downward. Further, by forming the circumferential groove 90, the thickness dimension of the portion of the elastic valve body 16 located above the circumferential groove 90 is reduced, and elastic deformation of the portion is easily caused, while the elastic valve The portion of the body 16 on the inner peripheral side of the circumferential groove 90 is relatively unlikely to be elastically deformed. As a result, when the distal end portion of the syringe 100 is inserted into the elastic valve body 16, the central portion 66 of the elastic valve body 16 is moved to the inner peripheral side wall surface 94 of the peripheral groove 90 as shown in FIG. And the outer peripheral side wall surface 96 are separated from each other, and the groove outer peripheral wall 98 and the portion located above the peripheral groove 90 elastically deform downward, while the portion on the inner peripheral side of the peripheral wall 90 slides downward. It is elastically deformed.

そして、図7に示すように、医療用弁10に対してシリンジ100を更に深く挿入することにより、弾性弁体の16の中央部分66が内側保持部20とシリンジ100との間に入り込むように変形することで、医療用弁10へのシリンジ100の挿入操作が完了する。 Then, as shown in FIG. 7, by further inserting the syringe 100 into the medical valve 10, the central portion 66 of the elastic valve body 16 is inserted between the inner holding portion 20 and the syringe 100. By the deformation, the insertion operation of the syringe 100 into the medical valve 10 is completed.

このように、本実施形態の医療用弁10では、弾性弁体16の中央部分66に優先的に弾性変形する部分を環状連結部70から連続的に広い領域に亘って設けることにより、シリンジ100の挿入抵抗が低減されて、より小さい押込力をもってシリンジ100が挿入され得ることから、シリンジ100の挿入時において、弾性弁体16のハウジング12からの脱落が効果的に防止され得る。それに加えて、小さい押込力をもってシリンジ100が挿入され得ることから、環状連結部70および筒状保持部68に及ぼされる引張力を小さくすることができて、ハウジング12による弾性弁体16の保持状態が安定して維持され得る。 As described above, in the medical valve 10 according to the present embodiment, the central portion 66 of the elastic valve body 16 is provided with the portion that is elastically deformed preferentially from the annular coupling portion 70 over a wide area continuously, so that the syringe 100 is provided. Since the insertion resistance is reduced and the syringe 100 can be inserted with a smaller pushing force, the elastic valve body 16 can be effectively prevented from falling off the housing 12 when the syringe 100 is inserted. In addition, since the syringe 100 can be inserted with a small pushing force, the tensile force exerted on the annular connecting portion 70 and the tubular holding portion 68 can be reduced, and the holding state of the elastic valve body 16 by the housing 12 can be reduced. Can be maintained stable.

また、環状連結部70の肉厚寸法Aと溝外周壁98の肉厚寸法Bとを略等しくすることで、シリンジ100の押込力に伴う応力や歪を環状連結部70と溝外周壁98とに略等しく分散させることができる。これにより、環状連結部70に引っ張られる方向の負荷が集中して筒状保持部68が外内の係合爪50,64間から抜け落ちること等に伴う弾性弁体16の脱落が一層効果的に防止され得る。また、肉厚寸法Bを肉厚寸法Aよりも大きくすることで、シリンジ100の押込力に伴う応力や歪みを従来よりも低減させることができると共に、シリンジ100を医療用弁10から離脱させた後における弾性復元作用による弾性弁体16の戻り性を良好にすることができる。 Further, by making the wall thickness dimension A of the annular connecting portion 70 and the wall thickness dimension B of the groove outer peripheral wall 98 substantially equal to each other, stress and strain due to the pushing force of the syringe 100 are generated between the annular connecting portion 70 and the groove outer peripheral wall 98. Can be distributed approximately equally. As a result, the elastic valve body 16 is more effectively removed due to the load in the direction of being pulled by the annular connecting portion 70 being concentrated and the tubular holding portion 68 coming off between the outer and inner engaging pawls 50 and 64. Can be prevented. Further, by making the wall thickness dimension B larger than the wall thickness dimension A, the stress and strain associated with the pushing force of the syringe 100 can be reduced more than before, and the syringe 100 is detached from the medical valve 10. It is possible to improve the returning property of the elastic valve body 16 due to the elastic restoring action later.

特に、上記の如き優先的に弾性変形しやすく、且つ環状連結部70に及ぼされる引張応力や歪が分散され得る部分を新たに設けるのではなく、弾性弁体16の下面に周溝90を形成することで、当該周溝90の溝外周壁98を優先的に弾性変形しやすく、且つ引張応力や歪が分散して及ぼされる部分として効率的に利用できることから、弾性弁体のサイズを大きくすることなく、弾性弁体16の脱落防止が実現され得る。 In particular, the peripheral groove 90 is formed on the lower surface of the elastic valve body 16 instead of newly providing a portion in which the tensile stress or strain exerted on the annular coupling portion 70 is easily distorted preferentially as described above. By doing so, the groove outer peripheral wall 98 of the peripheral groove 90 can be elastically deformed preferentially, and can be efficiently used as a portion to which tensile stress and strain are dispersed, thereby increasing the size of the elastic valve body. It is possible to prevent the elastic valve body 16 from falling off.

また、本実施形態では、周溝90の外周側壁面96が傾斜面とされていることから、溝外周壁98の長さを大きく確保することができて、環状連結部70に及ぼされる引張力を一層小さくすることができる。それ故、弾性弁体16がハウジング12から脱落するおそれがより一層低減され得る。 Further, in the present embodiment, since the outer peripheral side wall surface 96 of the peripheral groove 90 is an inclined surface, it is possible to secure a large length of the groove outer peripheral wall 98 and the tensile force exerted on the annular connecting portion 70. Can be further reduced. Therefore, the risk that the elastic valve body 16 will fall off the housing 12 can be further reduced.

さらに、本実施形態では、周溝90が、ディスク状の弾性弁体16に対応する円環形状で設けられることから、上記の如き弾性弁体16の弾性変形が周方向の全周に亘って安定して実現されて、シリンジ100の挿入抵抗が一層低減され得る。 Further, in the present embodiment, since the circumferential groove 90 is provided in the annular shape corresponding to the disk-shaped elastic valve body 16, the elastic deformation of the elastic valve body 16 as described above is performed over the entire circumference in the circumferential direction. This can be realized stably, and the insertion resistance of the syringe 100 can be further reduced.

また、本実施形態では、内側係合爪64の先端部内周面が内方に凸の湾曲断面とされており、溝外周壁98の内方基端面と内側係合爪64の先端部内周面とが斜め上方に広がる傾斜面で重ね合わされている。これにより、弾性弁体16と内側保持部20との組み付けに際しての位置決め精度の向上等が図られ得る。 Further, in the present embodiment, the inner peripheral surface of the tip end portion of the inner engagement claw 64 has an inwardly convex curved cross section, and the inner proximal end surface of the groove outer peripheral wall 98 and the inner peripheral surface of the tip end portion of the inner engagement claw 64. And are overlapped by an inclined surface that spreads diagonally upward. This can improve the positioning accuracy when the elastic valve body 16 and the inner holding portion 20 are assembled.

以上、本発明の実施形態について詳述してきたが、本発明はその具体的な記載によって限定されることなく、当業者の知識に基づいて種々なる変更,修正,改良などを加えた態様で実施され得るものであり、また、そのような実施態様も、本発明の趣旨を逸脱しない限り、何れも本発明の範囲内に含まれる。 Although the embodiment of the present invention has been described in detail above, the present invention is not limited to the specific description thereof, and is carried out in a mode in which various changes, modifications and improvements are added based on the knowledge of those skilled in the art. Any such embodiment is also included in the scope of the present invention without departing from the spirit of the present invention.

例えば、前記実施形態では、筒状保持部68の下方支持部80は、外側保持部18の環状肩部46よりも下方まで延び出していたが、かかる態様に限定されるものではない。即ち、下方支持部80は、弾性弁体16のハウジング12への組付け状態において、環状連結部70よりも下方まで延びていればよい。これにより、筒状保持部68の軸方向寸法が、外内の係合爪50,64の対向距離よりも大きくされることから、弾性弁体16へのシリンジ100挿入時において、弾性弁体16のハウジング12からの脱落防止効果が十分に発揮され得る。 For example, in the above-described embodiment, the lower support portion 80 of the tubular holding portion 68 extends below the annular shoulder portion 46 of the outer holding portion 18, but the invention is not limited to this aspect. That is, the lower support portion 80 may extend below the annular connecting portion 70 when the elastic valve body 16 is assembled to the housing 12. As a result, the axial dimension of the cylindrical holding portion 68 is made larger than the facing distance between the outer and inner engaging claws 50 and 64, and therefore, when the syringe 100 is inserted into the elastic valve body 16, the elastic valve body 16 is inserted. It is possible to sufficiently exert the effect of preventing the falling off of the housing 12 from the housing 12.

尤も、弾性弁体16のハウジング12への組付け前の状態では、筒状保持部の軸方向寸法は環状連結部と等しくされていてもよい。即ち、弾性弁体16のハウジング12への組付けに際して、環状連結部が外内係合爪50,64により軸方向で圧縮されることにより、筒状保持部の軸方向寸法が環状連結部の軸方向寸法より大きくなるようにしてもよい。即ち、本発明において、弾性弁体16の外内面に設けられる外内環状溝72,74は必須ではない。 However, in the state before the elastic valve body 16 is attached to the housing 12, the axial dimension of the tubular holding portion may be equal to that of the annular connecting portion. That is, when the elastic valve body 16 is assembled to the housing 12, the annular connecting portion is axially compressed by the outer and inner engaging claws 50 and 64, so that the axial dimension of the tubular holding portion is equal to that of the annular connecting portion. It may be larger than the axial dimension. That is, in the present invention, the outer and inner annular grooves 72, 74 provided on the outer and inner surfaces of the elastic valve body 16 are not essential.

また、前記実施形態では、周溝90の底面92が外側係合爪50の先端よりも軸方向外方に位置していたが、周溝90の底面92は、環状連結部70の下面よりも上方にあればよく、外側係合爪50の先端より上方まで至っていなくてもよい。 Further, in the above-described embodiment, the bottom surface 92 of the circumferential groove 90 is located axially outward of the tip of the outer engagement claw 50, but the bottom surface 92 of the circumferential groove 90 is located below the lower surface of the annular coupling portion 70. The outer engagement claw 50 does not have to reach above the tip of the outer engagement claw 50.

さらに、筒状保持部68における下方支持部80の形状は何等限定されるものではないが、例えば下方支持部80の軸方向中間部分の内周面は、内径寸法が略一定とされたストレート形状とされると共に、下方支持部80の下端部分の内面に周方向の全周または部分的に内周側に突出するリブを設けて、筒状保持部68における上方支持部78の外径寸法に比べて下方支持部80の内径寸法が小さくされることが好ましい。これにより、弾性弁体16の製造時において、筒状保持部68の下方側開口部に弾性弁体16の上端部が入り込み、複数の弾性弁体が積み重なって取り扱いが面倒になるといった不具合が回避され得る。 Further, the shape of the lower support portion 80 in the tubular holding portion 68 is not limited at all, but for example, the inner peripheral surface of the axially intermediate portion of the lower support portion 80 has a straight shape in which the inner diameter dimension is substantially constant. At the same time, the inner surface of the lower end portion of the lower support portion 80 is provided with a rib that protrudes toward the inner periphery side in the entire circumferential direction or partially, so that the outer diameter of the upper support portion 78 of the tubular holding portion 68 can be adjusted. In comparison, it is preferable that the inner diameter of the lower support portion 80 be reduced. Accordingly, when manufacturing the elastic valve body 16, it is possible to avoid a problem that the upper end portion of the elastic valve body 16 enters the lower opening of the cylindrical holding portion 68, and a plurality of elastic valve bodies are stacked to cause troublesome handling. Can be done.

更にまた、前記実施形態では、周溝90の内周側壁面94は環状凹溝76の内周側壁面と同一平面となるように形成されていたが、周溝90の内周側壁面94は、環状凹溝76の内周側壁面よりも内周側または外周側に設けられてもよい。なお、前記実施形態では、周溝90は、内側環状溝74と環状凹溝76と連通して設けられていたが、これらとは独立して設けられてもよい。尤も、本発明において、環状凹溝76は必須なものではない。 Furthermore, in the above-described embodiment, the inner peripheral side wall surface 94 of the peripheral groove 90 is formed to be flush with the inner peripheral side wall surface of the annular groove 76, but the inner peripheral side wall surface 94 of the peripheral groove 90 is It may be provided on the inner peripheral side or the outer peripheral side of the inner peripheral side wall surface of the annular concave groove 76. In the above embodiment, the circumferential groove 90 is provided so as to communicate with the inner annular groove 74 and the annular concave groove 76, but it may be provided independently of these. However, in the present invention, the annular groove 76 is not essential.

さらに、例えば、環状凹溝76を径方向所定幅で形成して、該環状凹溝76の底面の内周部分に開口するように周溝90を形成する一方、環状凹溝76の外周部分の底壁部によって、内外の爪部64,50で挟持される薄肉部70を構成することも可能である。その際、環状凹溝76の外周部分の底面に開口するように内側環状溝74を形成しても良いが、内側環状溝74は必ずしも設ける必要はない。即ち、環状凹溝76の外周部分の平坦な底面に対して爪部64を押し当てて、環状凹溝76の底壁部を弾性変形させることで、爪部64が食い込んだようにして実質的に内側環状溝74への係止状態と同様な挟持作用を実現することも可能である。 Further, for example, the annular groove 76 is formed with a predetermined width in the radial direction, and the peripheral groove 90 is formed so as to open to the inner peripheral portion of the bottom surface of the annular groove 76, while the outer peripheral portion of the annular groove 76 is formed. It is also possible to configure the thin portion 70 that is sandwiched between the inner and outer claw portions 64 and 50 by the bottom wall portion. At this time, the inner annular groove 74 may be formed so as to open on the bottom surface of the outer peripheral portion of the annular concave groove 76, but the inner annular groove 74 is not necessarily provided. That is, by pressing the claw portion 64 against the flat bottom surface of the outer peripheral portion of the annular recessed groove 76 and elastically deforming the bottom wall portion of the annular recessed groove 76, the claw portion 64 is substantially bitten. It is also possible to realize the same clamping action as in the state of being locked in the inner annular groove 74.

また、周溝は、ディスク状の弾性弁体の外形状に対応して、円環形状とされることが好適であるが、周方向に延びていればよく、例えば平面視において楕円形状や多角形状等とされていてもよい。 Further, it is preferable that the circumferential groove has an annular shape corresponding to the outer shape of the disk-shaped elastic valve body, but it is sufficient that the circumferential groove extends in the circumferential direction. It may have a shape or the like.

さらに、前記実施形態では、周溝90は所定の径方向幅寸法を有していたが、周溝は、径方向幅寸法が略0とされた切込状のスリットとされてもよい。なお、周溝としてスリットを採用する場合には、スリットを軸方向に対して傾斜して形成することにより、スリットの外周側壁面を傾斜面とすることが可能である。このようなスリットは、例えば弾性弁体の成形後にカッターナイフなどを差し入れて切れ込みを入れることによって形成することができる。 Furthermore, in the above-described embodiment, the circumferential groove 90 has a predetermined radial width dimension, but the circumferential groove may be a slit-shaped slit having a radial width dimension of substantially zero. When a slit is used as the peripheral groove, the outer peripheral side wall surface of the slit can be an inclined surface by forming the slit so as to be inclined with respect to the axial direction. Such a slit can be formed, for example, by inserting a cutter knife or the like into a cut after forming the elastic valve body.

また、ハウジング12の形状は何等限定されるものではなく、例えば前記実施形態では、内側保持部20とハウジング本体22が別部品とされていたが、一体として形成されてもよい。更に、例えば特開2010−148757号公報に記載の医療用弁のように、内側の係止突部(70)を備える筒状口体(40)の上方開口部に対して係止突部(80)を備える環状リング(42)が固着されることでハウジングが構成されるようになっていてもよい。 Further, the shape of the housing 12 is not limited in any way. For example, in the above-described embodiment, the inner holding portion 20 and the housing body 22 are separate components, but they may be integrally formed. Furthermore, for example, as in the medical valve described in JP 2010-148757 A, the locking projection (for the upper opening of the tubular mouth body (40) including the inner locking projection (70). The housing may be constituted by fixing an annular ring (42) provided with 80).

さらに、前記実施形態では、周溝90の外周側壁面96は軸方向に対して一定の傾斜角で傾斜する直線状の傾斜面とされていたが、傾斜角が変化するようになっていてもよく、例えば周溝の外周側壁面が屈曲面や湾曲面により構成されていてもよい。 Further, in the above-described embodiment, the outer peripheral side wall surface 96 of the circumferential groove 90 is a linear inclined surface that inclines at a constant inclination angle with respect to the axial direction, but even if the inclination angle changes. Well, for example, the outer peripheral side wall surface of the peripheral groove may be configured by a curved surface or a curved surface.

なお、前記実施形態では、外内の係合爪50,64および外内の環状溝72,74は、周方向の全周に亘って環状に形成されていたが、例えば外内の係合爪は周方向で断続的に形成されていてもよいし、周上において係合爪の高さを段階的に又は連続的に変化させることも可能である。また、外内の環状溝も、外内の係合爪の位置と大きさに対応する等して断続的に形成されてもよい。 In the above-described embodiment, the outer and inner engaging claws 50 and 64 and the outer and inner annular grooves 72 and 74 are formed in an annular shape over the entire circumferential direction. May be formed intermittently in the circumferential direction, or it is possible to change the height of the engaging claws stepwise or continuously on the circumference. Further, the outer and inner annular grooves may be intermittently formed so as to correspond to the position and size of the outer and inner engaging claws.

また、前記実施形態では、周溝90は周方向で全周に亘って連続して延びる環状溝とされていたが、かかる態様に限定されない。即ち、弾性弁体の内側面に設けられる周溝は周方向で断続的に設けられてもよい。なお、弾性弁体に、前記実施形態の如きスリットが設けられる場合には、スリットの延びる方向に応じて弾性弁体の外周部分における変形態様が異なる。従って、例えば前記実施形態の如きスリットが一文字状とされる場合には、スリットの延びる方向と直交する方向の両側における外周部分に、それぞれ周方向で半周以下の長さで延びる周溝が設けられることが好適である。これにより、周溝の無い従来構造の弾性弁体では変形歪が大きくなり易かったスリット直交方向両側部分において、周溝の形成により変形部分の有効長が大きくされて容易に変形が許容されることで、挿入抵抗の軽減や耐久性の向上等が図られ得る。尤も、本発明では、弾性弁体において、スリット直交方向両側部分に加えて又は代えて、スリット両端の外周側に位置する部分をそれぞれ周方向で半周以下の長さで延びる周溝を設けることも可能である。 Further, in the above-described embodiment, the circumferential groove 90 is an annular groove that continuously extends over the entire circumference in the circumferential direction, but the present invention is not limited to this mode. That is, the circumferential groove provided on the inner surface of the elastic valve body may be provided intermittently in the circumferential direction. When the elastic valve body is provided with the slit as in the above embodiment, the deformation mode of the outer peripheral portion of the elastic valve body differs depending on the extending direction of the slit. Therefore, for example, when the slit is formed in a single letter shape as in the above-described embodiment, peripheral grooves extending in the circumferential direction with a length of less than a half circumference are provided in the outer peripheral portions on both sides in the direction orthogonal to the slit extending direction. Is preferred. As a result, the effective length of the deformed portion is increased due to the formation of the circumferential groove in both sides of the slit orthogonal direction where deformation strain is likely to be large in the conventional elastic valve body having no circumferential groove, and thus the deformation is easily allowed. Thus, it is possible to reduce insertion resistance and improve durability. However, in the present invention, in the elastic valve body, in addition to or instead of both side portions in the slit orthogonal direction, portions located on the outer peripheral side of both ends of the slit may be provided with circumferential grooves extending in the circumferential direction with a length of half a circumference or less. It is possible.

また、弾性弁体に設けられるスリットとしては一文字状の他、十文字状や放射状等の態様も採用可能である。これらの場合にも、周上で異なる弾性弁体の変形態様を考慮して、周上の所定位置を部分的に延びる周溝を形成してもよい。更にまた、周溝の深さや開口幅等の断面形状を、弾性弁体の外周部分の変形態様が周方向で異なることを考慮して適宜に変化させることも可能である。 Further, the slit provided in the elastic valve body may be in a cross shape, a radial shape, or the like in addition to the one-character shape. Also in these cases, the circumferential groove that partially extends at a predetermined position on the circumference may be formed in consideration of different deformation modes of the elastic valve element on the circumference. Furthermore, the cross-sectional shape such as the depth and opening width of the circumferential groove can be appropriately changed in consideration of the different deformation modes of the outer peripheral portion of the elastic valve body in the circumferential direction.

本発明はもともと以下に記載の発明を含むものであり、その構成および作用効果に関して、付記しておく。
(i) 液体弁体の外周部分に形成された薄肉部が該開口部材の内側と外側の爪部で挟まれると共に、該弾性弁体の該薄肉部よりも外周側が該開口部材で保持されることにより、該弾性弁体の外周部分が該開口部材で支持されて、該弾性弁体の中央部分に設けられたスリットに雄コネクタを繰り返し挿抜可能とされた医療用弁において、前記薄肉部が、前記中央部分の外周側において前記弾性弁体の軸方向で該中央部分と重なる位置に設けられていると共に、該弾性弁体の内側面における該薄肉部の内周側を周方向に延びる周溝が、該薄肉部の底面より大きな深さで形成されていることを特徴とする医療用弁、
(ii) 前記弾性弁体における前記周溝の外周側の壁部の肉厚寸法が、前記薄肉部の肉厚寸法より厚くされている(i)に記載の医療用弁、
(iii) 前記周溝の外周側の壁面が内方に向かって拡開する方向に傾斜している(i)又は(ii)に記載の医療用弁、
(iv) 前記周溝が前記薄肉部に沿って周方向で円周状に延びている(i)〜(iii)の何れかに記載の医療用弁、
(v) 前記周溝が切込状のスリットとされている(i)〜(iv)の何れかに記載の医療用弁、
(vi)前記弾性弁体には外周部分の内側と外側の両面をそれぞれ周方向に延びる内外の環状溝が形成されて、これら内外の環状溝の底部間に前記薄肉部が形成されており、前記開口部材の前記内側と外側の各爪部が該各環状溝に嵌め入れられている(i)〜(v)の何れかに記載の医療用弁、
に関する発明を含む。
上記(i)に記載の発明では、弾性弁体の内側面において周方向に延びる周溝が設けられることにより、周溝の外周側には、当該周溝が設けられない場合と比較して相対的に薄肉とされる部分が形成される。それ故、弾性弁体のスリットに対して雄コネクタを挿入する際には、かかる周溝の外周側部分が優先的に弾性変形される。特に、かかる周溝が、弾性弁体の外周部分に形成された薄肉部の底面より大きな深さで形成されていることから、周溝の外周側部分の長さひいては弾性変形量が有利に確保されると共に、雄コネクタ挿入時には周溝も広がる方向に弾性変形することで、雄コネクタ挿入時の抵抗が軽減される。その結果、雄コネクタを弾性弁体へ容易に挿入することが可能になると共に、開口部材で保持された弾性弁体における爪部よりも外周側の部分が内周側へ抜け落ちてしまう等の脱落の不具合も効果的に防止される。特に、上記の如き周溝が設けられていない従来構造の医療用弁では、雄コネクタの押込力が弾性弁体の薄肉部に集中的に及ぼされて、薄肉部よりも外周側の部分が強く引っ張られることで開口部材の内外の爪部間から内周側へ抜け落ちるおそれがあった。これに対して、本態様の医療用弁では、弾性弁体に周溝を形成して弾性変形が容易に許容される部分を設けたことにより、薄肉部に及ぼされる押込力を分散状に軽減することができて、開口部材による弾性弁体の外周部分の保持状態が安定して維持されることから、開口部材からの弾性弁体の脱落が効果的に防止され得る。なお、本発明において、弾性弁体の内側面に設けられる周溝は、周方向の全周に亘って連続して環状に延びる環状溝である必要はなく、周方向で断続的に設けられてもよい。
上記(ii)に記載の発明では、周溝の外周側の端部の肉厚寸法が、薄肉部の肉厚寸法より厚くされていることから、雄コネクタを離脱させた際の弾性弁体による弾性復元作用を安定して発揮させることができる。これにより、スリットを一層確実に閉鎖することができて、医療用弁を含んで構成される液体流路が更に速やかに遮断され得る。
上記(iii)に記載の発明では、周溝の外周側の壁面が軸方向に対して傾斜していることから、弾性弁体において弾性変形が生じ易い周溝の外周側の部位の実質的な長さをより大きく確保することができる。
上記(iv)に記載の発明では、周溝を薄肉部に沿って周方向で円周状に形成したことで、弾性弁体において周溝の外周側の壁部から薄肉部に至る部分の形状を周方向の全周に亘って略一定にすることができる。これにより、雄コネクタの挿入時に、周溝の外周側の壁部や薄肉部に発生する応力や歪が、周方向の全周に亘って略均一に分散されることとなり、開口部材による弾性弁体の保持状態の更なる安定化も図られ得る。
上記(v)に記載の発明では、例えばサイズの小さい医療用弁などにおいても周溝を容易に精度良く形成することができて、上記の如き効果が安定して発揮され得る。
上記(vi)に記載の発明では、弾性弁体の内外の環状溝への開口部材の内外の爪部の嵌め込みによって、開口部材に対する弾性弁体の位置決めを一層容易に且つ確実に行うことが可能になる。
なお、上記(i)〜(vi)に記載の発明に従う構造とされた医療用弁では、弾性弁体の内側面に対して周溝を設けたことにより、雄コネクタの挿入に際しての弾性変形が容易に許容される部分を薄肉部の内周側に形成することができる。そして、この弾性変形が容易に許容される部分を設けたことで、雄コネクタの挿入に際して薄肉部に及ぼされる引張力を分散的に軽減して、開口部材からの弾性弁体の脱落を効果的に防止することが可能になる。
The present invention originally includes the inventions described below, and a supplementary note will be given regarding the configuration and operational effects thereof.
(I) The thin-walled portion formed on the outer peripheral portion of the liquid valve body is sandwiched between the inner and outer claw portions of the opening member, and the outer peripheral side of the elastic valve body is held by the opening member rather than the thin-walled portion. Thus, in the medical valve in which the outer peripheral portion of the elastic valve body is supported by the opening member, and the male connector can be repeatedly inserted into and removed from the slit provided in the central portion of the elastic valve body, the thin portion is A circumferentially extending inner circumferential side of the thin-walled portion on the inner side surface of the elastic valve body, the outer circumferential side of the central portion being provided at a position overlapping the central portion in the axial direction of the elastic valve body. A medical valve, wherein the groove is formed with a greater depth than the bottom surface of the thin portion,
(Ii) The medical valve according to (i), wherein the wall thickness of the elastic valve body on the outer peripheral side of the circumferential groove is thicker than the wall thickness of the thin wall portion.
(Iii) The medical valve according to (i) or (ii), wherein the wall surface on the outer circumferential side of the circumferential groove is inclined in a direction in which the outer circumferential surface widens inward.
(Iv) The medical valve according to any one of (i) to (iii), wherein the circumferential groove extends circumferentially in a circumferential direction along the thin portion.
(V) The medical valve according to any one of (i) to (iv), in which the circumferential groove is a slit-like slit.
(Vi) Inner and outer annular grooves that extend in the circumferential direction are formed on both inner and outer surfaces of the outer peripheral portion of the elastic valve body, and the thin portion is formed between the bottoms of the inner and outer annular grooves. The medical valve according to any one of (i) to (v), wherein the inner and outer claw portions of the opening member are fitted into the annular grooves.
Including inventions related to.
In the invention described in (i) above, since the circumferential groove extending in the circumferential direction is provided on the inner side surface of the elastic valve body, the outer circumferential side of the circumferential groove can be relatively opposed to the case where the circumferential groove is not provided. A thin portion is formed. Therefore, when the male connector is inserted into the slit of the elastic valve body, the outer peripheral side portion of the peripheral groove is preferentially elastically deformed. In particular, since the peripheral groove is formed with a depth larger than the bottom surface of the thin portion formed on the outer peripheral portion of the elastic valve body, the length of the outer peripheral side portion of the peripheral groove and thus the elastic deformation amount can be advantageously secured. At the same time, when the male connector is inserted, the circumferential groove is elastically deformed in a direction in which the circumferential groove is widened, thereby reducing the resistance when the male connector is inserted. As a result, the male connector can be easily inserted into the elastic valve body, and at the same time, the elastic valve body held by the opening member will fall off such that the outer peripheral side of the claw portion falls off to the inner peripheral side. The problem of is also effectively prevented. In particular, in the medical valve of the conventional structure having no circumferential groove as described above, the pushing force of the male connector is concentrated on the thin portion of the elastic valve body, and the portion on the outer peripheral side is stronger than the thin portion. When pulled, there is a risk that the opening member may fall off between the claws inside and outside the opening member toward the inner peripheral side. On the other hand, in the medical valve of this aspect, by forming the circumferential groove in the elastic valve body and providing the portion where elastic deformation is easily allowed, the pushing force exerted on the thin portion is reduced in a distributed manner. Since the holding state of the outer peripheral portion of the elastic valve body by the opening member is stably maintained, the elastic valve body can be effectively prevented from falling off the opening member. In the present invention, the circumferential groove provided on the inner side surface of the elastic valve body does not have to be an annular groove that continuously extends in an annular shape over the entire circumference in the circumferential direction, and is provided intermittently in the circumferential direction. Good.
In the invention described in (ii) above, since the wall thickness of the end portion on the outer peripheral side of the circumferential groove is made thicker than the wall thickness of the thin portion, the elastic valve body is used when the male connector is detached. The elastic restoring action can be stably exhibited. As a result, the slit can be closed more reliably, and the liquid flow path including the medical valve can be blocked more quickly.
In the invention described in (iii) above, since the wall surface on the outer peripheral side of the circumferential groove is inclined with respect to the axial direction, the substantial portion of the outer peripheral side portion of the circumferential groove where elastic deformation easily occurs in the elastic valve body. A larger length can be secured.
In the invention described in (iv) above, since the circumferential groove is circumferentially formed along the thin portion in the circumferential direction, the shape of the portion of the elastic valve body from the wall portion on the outer peripheral side of the circumferential groove to the thin portion. Can be substantially constant over the entire circumference in the circumferential direction. As a result, when the male connector is inserted, the stress and strain generated in the wall portion and the thin portion on the outer peripheral side of the circumferential groove are substantially evenly distributed over the entire circumference in the circumferential direction. Further stabilization of the holding state of the body can be achieved.
In the invention described in (v) above, for example, even in a small-sized medical valve or the like, the circumferential groove can be easily and accurately formed, and the above effect can be stably exhibited.
In the invention described in (vi), the elastic valve body can be more easily and reliably positioned with respect to the opening member by fitting the inner and outer claw portions of the opening member into the inner and outer annular grooves of the elastic valve body. become.
In the medical valve having the structure according to the invention described in (i) to (vi) above, since the circumferential groove is provided on the inner side surface of the elastic valve body, elastic deformation occurs when the male connector is inserted. The easily permissible portion can be formed on the inner peripheral side of the thin portion. Further, by providing the portion in which this elastic deformation is easily allowed, the tensile force exerted on the thin portion at the time of inserting the male connector is dispersedly reduced, and the elastic valve body is effectively prevented from coming off from the opening member. It becomes possible to prevent it.

10:医療用弁、12:ハウジング(開口部材)、14:スリット、16:弾性弁体、50:外側係合爪(爪部)、64:内側係合爪(爪部)、66:中央部分、68:筒状保持部、70:環状連結部(薄肉部)、72:外側環状溝、74:内側環状溝、90:周溝、96:外周側壁面、98:溝外周壁、100:シリンジ、102:流体流路 Reference numeral 10: medical valve, 12: housing (opening member), 14: slit, 16: elastic valve body, 50: outer engaging claw (claw portion), 64: inner engaging claw (claw portion), 66: central portion , 68: tubular holding portion, 70: annular connecting portion (thin portion), 72: outer annular groove, 74: inner annular groove, 90: peripheral groove, 96: outer peripheral side wall surface, 98: groove outer peripheral wall, 100: syringe , 102: fluid flow path

Claims (4)

液体流路に接続される開口部材にディスク状の弾性弁体が装着されており、該弾性弁体の外周部分に形成された薄肉部が該開口部材の内側と外側の爪部で挟まれると共に、該弾性弁体の該薄肉部よりも外周側が該開口部材で保持されることにより、該弾性弁体の外周部分が該開口部材で支持されて、該弾性弁体の中央部分に設けられたスリットに雄コネクタを繰り返し挿抜可能とされた医療用弁において、
前記薄肉部外周側から前記開口部材の内側に向かって延びる筒状保持部と、該筒状保持部から外周に向かって広がるフランジ状部が設けられており、
該筒状保持部が前記開口部材で径方向に挟まれて保持されていると共に、該フランジ状部が該開口部材で軸方向に挟まれて保持されており、
該フランジ状部の上面と下面の少なくとも一方には係止凹部が形成されて該開口部材に対して凹凸係止されていることを特徴とする医療用弁。
A disc-shaped elastic valve body is attached to an opening member connected to the liquid flow path, and a thin portion formed on an outer peripheral portion of the elastic valve body is sandwiched between inner and outer claw portions of the opening member. An outer peripheral side of the elastic valve body with respect to the thin portion is held by the opening member, so that an outer peripheral portion of the elastic valve body is supported by the opening member and is provided in a central portion of the elastic valve body. In a medical valve in which a male connector can be repeatedly inserted into and removed from the slit,
A tubular holding portion extending from the outer peripheral side of the thin portion toward the inside of the opening member, and a flange-shaped portion extending from the tubular holding portion toward the outer periphery are provided,
The tubular holding portion is sandwiched and held by the opening member in the radial direction, and the flange-shaped portion is sandwiched and held by the opening member in the axial direction,
A medical valve, characterized in that a locking recess is formed on at least one of an upper surface and a lower surface of the flange-shaped portion and is recessed and convexly locked to the opening member.
前記フランジ状部には軸方向外方に向かって突出して、前記開口部材に係止される係止突部が設けられている請求項1に記載の医療用弁。 The medical valve according to claim 1, wherein the flange-shaped portion is provided with a locking projection that projects axially outward and is locked to the opening member. 前記筒状保持部が、前記開口部材の内側に向かって拡開している請求項1又は2に記載の医療用弁。 The medical valve according to claim 1 or 2, wherein the tubular holding portion expands toward the inside of the opening member. 前記筒状保持部が前記開口部材の外側にも延びており、外側に向かって延びた該筒状保持部の先端が、前記薄肉部の内周側に位置する前記弾性弁体の中央部分の外面よりも軸方向内方に位置している請求項1〜の何れか1項に記載の医療用弁。 The tubular holding portion also extends to the outside of the opening member, and the tip end of the tubular holding portion extending toward the outside of the central portion of the elastic valve body located on the inner peripheral side of the thin portion. the medical valve according to any one of claim 1 to 3 are located axially inwardly of the outer surface.
JP2019014716A 2019-01-30 2019-01-30 Medical valve Active JP6714885B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP2019014716A JP6714885B2 (en) 2019-01-30 2019-01-30 Medical valve

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP2019014716A JP6714885B2 (en) 2019-01-30 2019-01-30 Medical valve

Related Parent Applications (1)

Application Number Title Priority Date Filing Date
JP2015028037A Division JP6474035B2 (en) 2015-02-16 2015-02-16 Medical valve

Publications (2)

Publication Number Publication Date
JP2019063609A JP2019063609A (en) 2019-04-25
JP6714885B2 true JP6714885B2 (en) 2020-07-01

Family

ID=66338633

Family Applications (1)

Application Number Title Priority Date Filing Date
JP2019014716A Active JP6714885B2 (en) 2019-01-30 2019-01-30 Medical valve

Country Status (1)

Country Link
JP (1) JP6714885B2 (en)

Family Cites Families (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5700248A (en) * 1995-12-15 1997-12-23 Icu Medical, Inc. Medical valve with tire seal
JP3760785B2 (en) * 2001-03-21 2006-03-29 株式会社ジェイ・エム・エス Rotary connector with valve
JP4820708B2 (en) * 2006-07-27 2011-11-24 日本シャーウッド株式会社 Liquid infusion tool
HUE029184T2 (en) * 2010-10-12 2017-02-28 Codan Holding Gmbh Medical valve assembly
JP6474035B2 (en) * 2015-02-16 2019-02-27 ニプロ株式会社 Medical valve

Also Published As

Publication number Publication date
JP2019063609A (en) 2019-04-25

Similar Documents

Publication Publication Date Title
JP6183668B2 (en) Medical connector and manufacturing method thereof
JP5489081B2 (en) Medical connector
JP6876024B2 (en) Medical valve
JP6474035B2 (en) Medical valve
WO2013099261A1 (en) Needleless connector
EP1459784A1 (en) Medical valve
JP6059338B2 (en) connector
JP2019072648A (en) Medical connector and method for manufacturing the same
JP6714885B2 (en) Medical valve
JP6670437B2 (en) Needleless connector
JP6260867B2 (en) Medical valve
JP2015066205A (en) Medical connector, mixed injection tube, three-way stopcock, and medicament bag
JP7298595B2 (en) female connector
JP6399317B2 (en) Medical connector and method for manufacturing medical connector
JP6549347B2 (en) Medical valve
JP6718153B2 (en) Medical valve
JP6343636B2 (en) Medical valve
JP6246306B2 (en) connector
JP5968987B2 (en) Medical valve
JP2021045419A (en) Medical connector
JP2014028285A (en) Medical valve
JP2020069360A (en) Medical valve

Legal Events

Date Code Title Description
A521 Request for written amendment filed

Free format text: JAPANESE INTERMEDIATE CODE: A523

Effective date: 20190301

A621 Written request for application examination

Free format text: JAPANESE INTERMEDIATE CODE: A621

Effective date: 20190301

A977 Report on retrieval

Free format text: JAPANESE INTERMEDIATE CODE: A971007

Effective date: 20191217

A131 Notification of reasons for refusal

Free format text: JAPANESE INTERMEDIATE CODE: A131

Effective date: 20191224

A521 Request for written amendment filed

Free format text: JAPANESE INTERMEDIATE CODE: A523

Effective date: 20200221

TRDD Decision of grant or rejection written
A01 Written decision to grant a patent or to grant a registration (utility model)

Free format text: JAPANESE INTERMEDIATE CODE: A01

Effective date: 20200507

A61 First payment of annual fees (during grant procedure)

Free format text: JAPANESE INTERMEDIATE CODE: A61

Effective date: 20200520

R150 Certificate of patent or registration of utility model

Ref document number: 6714885

Country of ref document: JP

Free format text: JAPANESE INTERMEDIATE CODE: R150

R250 Receipt of annual fees

Free format text: JAPANESE INTERMEDIATE CODE: R250