The present invention relates to a connector and a connector assembly.
Usually, a drug such as an anti-cancer agent or an immunosuppressive agent which is dangerous if a health care worker touches by mistake is accommodated in a state of powder in a vial container which is sealed at a mouth portion thereof with a rubber stopper.
In order to take out the drug from such a vial container as just described, the following operations are carried out.
First, the mouth portion of the vial container and a mouth portion of a syringe into which liquid for dissolving has been dealt out are connected to each other through a connector assembly configured from a first connector and a second connector. In this instance, a lock adapter having screw threads formed on an inner circumferential face thereof is provided on an outer circumferential portion of the mouth portion of the syringe (refer to, for example, Patent Document 1), and when the syringe is to be connected to a hub of the first connector, the lock adapter of the syringe is screwed on a screw threaded portion formed on the hub of the first connector. Consequently, the hub of the first connector and the mouth portion of the syringe are connected to each other, and the syringe is held on the hub of the first connector. Then, the first connector and the second connector which is connected to the mouth portion of a vial container are connected to each other.
Then, liquid for dissolving is injected into the vial container from the syringe through the connector assembly. Then, a pumping operation is carried out or the vial container is shaken to dissolve the drug uniformly into the liquid for dissolving. Thereafter, the liquid for dissolving (hereinafter referred to as “solution”) in which the drug is dissolved is sucked out and taken out into the syringe.
However, in the conventional connector assembly described above, since the syringe is held on the hub of the first connector by the lock adapter, even if the syringe is pulled, it is not separated. However, the conventional connector assembly has a drawback that, if the syringe or the lock adapter is rotated in a direction in which the screwing engagement is loosened, then it is separated simply. If the syringe is separated from the hub of the first connector, then the solution may scatter from the mouth portion of the syringe or the like and may stick to the health care worker or the like. Therefore, there is the possibility that the solution may not be fed with safely and certainty through the connector assembly.
The object of the present invention contemplates provision of a connector and a connector assembly wherein inadvertent separation of a medical device can be prevented.
In order to achieve the object described above, the present invention provides a connector, including:
an outer tube;
a hub disposed at a proximal end portion of the outer tube for rotation around an axis of the outer tube with respect to the outer tube, wherein the hub includes a main body portion inserted in the outer tube, a connecting portion having a proximal end side to which a medical device having a screw threaded portion is to be connected, and a projecting portion for being screwed with the screw threaded portion;
separation preventing means for preventing separation of the hub from the outer tube; and
rotation blocking means having a rotation blocking function for blocking the rotation of the hub in only one of a forward direction and a backward direction;
wherein the rotation blocking means includes a first engaging portion provided at the proximal end portion of the outer tube and a second engaging portion provided on the hub and engageable with the first engaging portion,
wherein a direction in which the hub is urged to rotate by rotational torque applied to the hub when the medical device is rotated with respect to the hub to screw the screw threaded portion with the projecting portion and a direction of the rotation of the hub blocked by the rotation blocking means coincide with each other, and
wherein the rotation blocking function of the rotation blocking means is rendered effective when the first engaging portion and the second engaging portion are engaged with each other.
In the connector of the present invention, preferably, one of the first engaging portion and the second engaging portion is a pawl and the other of the first engaging portion and the second engaging portion is a ratchet tooth engageable with the pawl.
In the connector of the present invention, preferably, the ratchet tooth includes a plurality of ratchet teeth, and the plurality of ratchet teeth are provided along a circumferential direction.
In the connector of the present invention, preferably the medical device includes a syringe having a mouth portion at a distal end portion thereof; and
in the connector, the mouth portion of the syringe is connected to the connecting portion.
Further, in order to achieve the object described above, the present invention provides a connector assembly, including:
the connector according to the present invention; and
a partner connector connected to the connector and having a connecting portion, wherein the connecting portion connects, at a distal end side of the connecting portion, a liquid accommodating container capable of accommodating liquid.
In the connector of the present invention, preferably the entire hub is inserted in the outer tube.
In the connector of the present invention, preferably the projecting portion is screw threads or a protrusion in the form of a flange.
In the connector of the present invention, preferably a lock adapter having the screw threaded portion on an inner circumferential face thereof is provided on an outer circumferential portion of the mouth portion of the syringe, and,
when the projecting portion and the screw threaded portion are screwed with each other, the hub portion is accommodated in the lock adapter.
In the following, a connector and a connector assembly of the present invention are described in detail based on a preferred embodiment shown in the accompanying drawings.
It is to be noted that, in the following description, for the convenience of description, an upper side in each of
As shown in
As shown in
Further, a rubber stopper 505 for sealing the mouth portion 503 is mounted at the mouth portion 503. The rubber stopper 505 is punctured by a bottle needle portion 103 of the second connector 3. In this punctured state, the second connector 3 and the bag 50 communicate with each other.
Although the drug Q to be accommodated in the bag 50 is not limited specifically, for example, a drug which is dangerous if a health care worker touches by mistake such as an anti-cancer agent or an immunosuppressive agent, a drug which requires dissolution when it is to be used such as an antibiotic or a hemostatic agent, a drug which requires dilution such as a drug for pediatric use, a drug which is to be dealt out by a plural number of times such as vaccine, heparin and a drug for pediatric use and so forth are available. Further, the drug Q is not limited to drug in the form of powder but may be drug in a form of liquid.
Further, as shown in
When the syringe 20 is to be connected to the hub portion 122 of a hub 12 of the first connector 2, the mouth portion 202 of the syringe 20 is fitted with the proximal end portion of the hub portion 122 of the hub 12 hereinafter described of the first connector 2, and the lock adapter 203 is rotated together with the syringe 20 so that the screw threads formed on the inner circumferential face of the lock adapter 203 are screwed with the protrusion 123 formed on the hub portion 122. In the following description, the screwing engagement between the protrusion 123 and the screw threads of the lock adapter 203 is merely referred to also as “screwing engagement between the protrusion 123 and the lock adapter 203”. By the screwing engagement, the hub portion 122 of the hub 12 and the mouth portion 202 of the syringe 20 are connected to each other and the protrusion 123 and the lock adapter 203 are screwed with each other, and consequently, the syringe 20 is held by the hub 12. It is to be noted that, in this state, the hub portion 122 is accommodated in the lock adapter 203.
It is to be noted that, while the lock adapter 203 in the present embodiment is fixed to the mouth portion 202, the lock adapter 203 is not limited to this, but, for example, the lock adapter 203 may be disposed for movement along an axial direction of the syringe 20 with respect to the mouth portion 202, for rotation around the axis (coaxially), for movement along the axial direction and also for rotation around the axis, or the like.
Now, the connector assembly 1 is described. As described hereinabove, the connector assembly 1 has the first connector 2 and the second connector 3.
As shown in
As shown in
A plurality of (four in the configuration shown) protrusions 421 which project toward the inner side (inner side in a radial direction) are formed on an inner circumferential portion at a proximal end portion of the outer tube 4. The protrusions 421 are disposed at equal angular intervals along a circumferential direction.
Further, a stepped portion 422 is formed on the distal end side relative to the protrusions 421 of the inner circumferential portion of the outer tube 4.
Further, a pawl (first engaging portion) 44 which projects to the inner side of the outer tube 4 is formed between the protrusions 421 and the stepped portion 422 of the inner circumferential portion or the outer tube 4. Further, the pawl 44 has an elongated shape and extends along a axial direction. This pawl 44 cooperates with ratchet teeth 126 hereinafter described of the hub 12 to configure a ratchet mechanism. It is to be noted that a number of such pawls 44 is not limited to one but may be a plural number.
As shown in
The hub 12 includes a main body portion 121 in a form of a tube and a hub portion (first connecting portion) 122 in a form of a tube projecting from a central portion of a partition 128 hereinafter described of the main body portion 121 in a direction toward the proximal end. The main body portion 121 and the hub portion 122 are disposed concentrically, and the hub portion 122 is positioned in the main body portion 121. Further, the main body portion 121 and the hub portion 122 of the hub 12, namely, the entire hub 12, is inserted in the outer tube 4. Consequently, an action to block a rotating operation of the hub 12 by a finger of a hand can be prevented.
The main body portion 121 has a small diameter portion 1211 and a large diameter portion 1212 which is positioned at the proximal end side of the small diameter portion 1211. Consequently, a stepped portion 125 is formed on a boundary between the small diameter portion 1211 and the large diameter portion 1212 on an outer circumferential portion of the main body portion 121. Further, a partition 128 for partitioning the inside of the main body portion 121 to the proximal end side and the distal end side is provided on the inner side of the small diameter portion 1211 in the proximity of the boundary between the small diameter portion 1211 and the large diameter portion 1212. The partition 128 is formed, in the configuration shown, as a plate.
A protrusion (projecting portion) 123 in a form of a flange is formed on an outer circumferential portion of the proximal end of the hub portion 122. The shape of the protrusion 123 is non-circular as viewed in an axial direction of the hub portion 122 and is such a shape that it is longer in one of two directions perpendicular to each other than in the other direction. The protrusion 123 is a portion for screwing with screw threads formed on the lock adapter 203 of the syringe 20. It is to be noted that the protrusion 123 is not limited to the protrusion 123 but may be, for example, screw threads or the like only if it can be screwed with the screw threads formed on the lock adapter 203.
At a central portion of the partition 128 of the main body portion 121, a post 127 of a tubular shape is formed such that it projects in a direction toward the distal end. The main body portion 121 and the post 127 are disposed concentrically.
The hollow needle 5 is inserted in the post 127 and fixed at the proximal end portion thereof to the partition 128. In other words, the hollow needle 5 is supported on the hub 12. Further, the partition 128 has an opening formed at a position thereof corresponding to a lumen (first flow path 52) of the hollow needle 5, and the hub portion 122 and the hollow needle 5 are communicated with each other through the opening.
Further, as described hereinabove, by screwing the protrusion 123 of the hub portion 122 and the lock adapter 203 of the syringe 20 with each other, the first connector 2 is mounted on the syringe 20, and the first connector 2 can be used in this mounted state (refer to
Further, a flange (protrusion) 124 is formed at an outer circumferential portion of the proximal end of the main body portion 121.
The flange 124 is positioned on the distal end side with respect to the protrusions 421 of the outer tube 4 and contacts with the protrusions 421. Further, the stepped portion 125 is positioned on the proximal end side of the stepped portion 422 of the outer tube 4 and contacts with the stepped portion 422. Consequently, the hub 12 can rotate (turn) around the axis of the outer tube 4, but cannot move in the axial direction of the outer tube 4. Accordingly, separation preventing means for preventing separation of the hub 12 from the outer tube 4 is configured from the flange 124 and stepped portion 125 of the hub 12 and the protrusions 421 and stepped portion 422 of the outer tube 4.
Further, a plurality of (eight in the configuration shown) ratchet teeth (second engaging portions) 126 engageable with the pawl 44 of the outer tube 4 and projecting toward the outer side (outer side in a radial direction) are formed on an outer circumferential portion of the large diameter portion 1212 of the main body portion 121. The ratchet teeth 126 are disposed at equal angular intervals along the circumferential direction. Further, the ratchet teeth 126 has an elongated shape and extend along the axial direction.
The ratchet teeth 126 and the pawl 44 of the outer tube 4 configure rotation blocking means having a rotation blocking function for blocking the rotation of the hub 12 in only one of a forward direction and a backward direction.
In this instance, the “one” is a direction in which, when the syringe 20 is rotated with respect to the hub 12 to screw the lock adapter 203 of the syringe 20 with the protrusion 123 of the hub 12, the hub 12 is urged to rotate by rotational torque (rotational force) applied to the hub 12. In particular, a direction in which the hub 12 is urged to rotate by the rotational torque applied to the hub 12 and a direction of the rotation of the hub 12 blocked by the rotation blocking means coincide with each other. In other words, while deformation of the ratchet teeth 126 and the pawl 44 is permitted in the direction in which the rotation is permitted, in the reverse direction, passing of them each other by such deformation is disabled.
It is to be noted that, with the configuration shown in the figures, the rotation of the hub 12 in the clockwise direction in
As described hereinabove, when the pawl 44 of the outer tube 4 and the ratchet teeth 126 of the hub 12 are engaged with each other, the rotation blocking function of the rotation blocking means is rendered effective so that the rotation of the hub 12 in only one of the forward direction and the reverse direction with respect to the outer tube 4, namely, the rotation only in the clockwise direction in
On the other hand, even if the syringe 20 is rotated with the intention of trying to remove the syringe 20 from the hub 12, the hub 12 rotates with respect to the outer tube 4 and the screwing engagement between the protrusion 123 and the lock adapter 203 cannot be loosened and the syringe 20 cannot be removed. Consequently, particularly a drug which is dangerous if a health care worker touches by mistake such as an anti-cancer agent or an immunosuppressive agent can be prevented from sticking to the health care worker.
Further, the hub 12 can rotate in one direction with respect to the outer tube 4, and consequently, by rotating the syringe 20 together with the hub 12 in a state in which the syringe 20 is mounted on the hub portion 122, graduations provided on the syringe 20 can be watched readily.
Further, as shown in
As shown in
In this instance, each clamping member 9 has, at a portion of an outer circumferential portion thereof, an operation portion 92 operable for pressing the clamping member 9. By pressing the operation portions 92, the clamping members 9 move in a direction perpendicular to the axis of the outer tube 4.
Further, each of the clamping members 9 has a plurality of inwardly projecting protrusions (first engaging portions) 91 at portions thereof on the opposite side to the operation portion 92. The protrusions 91 of one of the clamping members 9 and the protrusions 91 of the other clamping member 9 are disposed in an opposing relationship to each other through the center axis of the outer tube 4.
Further, each of the clamping members 9 has a pair of elastic pieces 93 projecting from an outer circumferential portion thereof on the same side as the protrusions 91. The elastic pieces 93 of one of the clamping members 9 make contact with the inner side of the operation portion 92 of the other clamping member 9. Similarly, the elastic pieces 93 of the other clamping member 9 make contact with the inner side of the operation portion 92 of the one clamping member 9.
When a pressing operation of the clamping members 9 is carried out, the pressing operation is carried out against the biasing force (elastic force) of the elastic pieces 93. By this operation, the protrusions 91 of one of the clamping member 9 and the protrusions 91 of the other clamping member 9 are placed into a mutually spaced state. Then, if the pressing force to the clamping members 9 is canceled, then the protrusions 91 of the one clamping member 9 and the protrusions 91 of the other clamping member 9 are placed into a mutually closely positioned state by the biasing force of the elastic pieces 93.
In the state in which the protrusions 91 of the one clamping member 9 and the protrusions 91 of the other clamping member 9 are closely positioned, the protrusions 91 collectively engage with an engaging portion (second engaging portion) 105a or 105b of the second connector 3 (see
Further, in the state in which the protrusions 91 of the one clamping member 9 and the protrusions 91 of the other clamping member 9 are spaced from each other, the engagement of the clamping members 9 and the second connector 3 is canceled.
As shown in
In the connector assembly 1, the clamping members 9 and the engaging portions 105a and 105b of the second connector 3 configure the “stopper 17” for locking the outer tube 4 and the second connector 3.
As shown in
As shown in
The inner tube 7 has a sealing member disposition portion 73 on which the first sealing member 6 is placed. The sealing member disposition portion 73 is provided on the inner side of the inner tube 7 and configured from a pair of annular plate-shaped portions 731 and 732 which sandwich the first sealing member 6 from above and below.
Further, the inner tube 7 has a sliding member 74 which slidably moves on the hollow needle 5 when the inner tube 7 is displaced, and a fixing portion 75 for fixing the sliding member 74. The sliding member 74 is a member having a tubular shape and configured from an elastic material having a reduced diameter portion 741 of a reduced diameter. Although the configuring material of the sliding member 74 is not specifically limited, for example, various rubber materials of natural rubber, butyl rubber, isoprene rubber, butadiene rubber, styrene-butadiene rubber, silicone rubber and so forth, various thermoplastic elastomers of polyurethane-based, polyester-based, polyamide-based, olefin-based and styrene-based types and the like, or elastic materials of mixtures of them and so forth can be used. When the inner tube 7 is displaced, the reduced diameter portion 741 makes contact with and slidably moves on an outer circumferential portion 54 of the hollow needle 5. The fixing portion 75 is a portion of a tubular shape formed integrally with the plate-shaped portion 732 so as to project downwardly from a plate-shaped portion 732.
As shown in
If the second connector 3 is inserted into the first connector 2 in the first state illustrated in
If, from the state illustrated in
If the second connector 3 is pushed in the direction toward the proximal end from the state illustrated in
If the second connector 3 is pulled out from the first connector 2 in the state (assembled state) illustrated in
Further, if the inner tube 7 is operated to rotate in the opposite direction to that described above from the second state, then the first connector 2 is placed into the first state illustrated in
In this manner, in the connector assembly 1, restriction of an insertion operation, cancellation of the restriction of the insertion operation, restriction of a pulling out operation and cancellation of the restriction of the pulling out operation are carried out in response to the position of the protrusion 76 of the inner tube 7 with respect to the grooved portion 48 of the outer tube 4. Accordingly, the protrusion 76 of the inner tube 7 and the grooved portion 48 of the outer tube 4 configure “operation restriction means 18” for restricting such operations as described above.
As shown in
It is to be noted that the recessed portion 101a is a portion formed in a ring shape along a circumferential direction at a distal end portion of an outer circumferential portion 101 of the second connector main body 10.
In a state in which the second connector 3 is not inserted in the first connector 2 as yet, each of the engaging pieces 77 is inclined outwardly. Consequently, in a state in which the second connector 3 is inserted in the first connector 2, each engaging piece 77 can assume a state (state illustrated in
It is to be noted that the pressing portion 471 is configured from a plurality of (four in the present embodiment) ribs formed along the axial direction of the inner circumferential portion 47 of the outer tube 4.
The pressing portions 471 are disposed at equal intervals along a circumferential direction of the outer tube 4. In the state illustrated in
The engaging pieces 77 are disposed at equal intervals around the axis of the inner tube 7. By operating the inner tube 7 to rotate from the state illustrated in
In this manner, in the connector assembly 1, the engaging pieces 77 of the inner tube 7, the pressing portions 471 of the outer tube 4 and the recessed portion 101a of the second connector 3 configure “locking means 19” for locking the inner tube 7 and the second connector 3 with certainty. The locking means 19 operates when the first connector 2 is placed from the first state into the second state. In other words, the locking means 19 operates in an interlocking relationship with a canceling operation of canceling the restriction of the insertion operation. On the contrary, the locking means 19 operates also when the first connector 2 is placed from the second state into the first state. In particular, the locking means 19 operates in an interlocking relationship also with a canceling operation for canceling the restriction of the pulling out operation. Consequently, while the first connector 2 is relatively displaced between the first state and the second state, in other words, before and after the hollow needle 5 punctures the first sealing member 6 and the second sealing member 11, the first sealing member 6 and the second sealing member 11 can be closely contacted with each other with certainty and besides, upon pulling out, inadvertent pulling out (coming out) only of the second connector 3 can be prevented.
It is to be noted that, although the configuring material of the outer tube 4, inner tube 7, clamping members 9, and hub 12 is not limited specifically, various resins such as, for example, polyvinyl chloride, polyethylene, polypropylene, a cyclic polyolefin, polystyrene, poly-(4-methyl pentene-1), polycarbonate, acrylic resins, an acrylonitrile-butadiene-styrene copolymer, a polyester such as polyethylene terephthalate or polyethylene napthalate, a butadiene-styrene copolymer, and a polyamide (for example, nylon 6, nylon 6.6, nylon 6.10 or nylon 12) are applicable. It is preferable to use, among them, such resins as polypropylene, the cyclic polyolefin and the polyester in that they are easy to mold and low in water vapor permeability.
As shown in
The hollow needle 5 has a form of a tube and has a lumen which functions as the first flow path 52 along which liquid P for dissolving (liquid) can pass. Further, the hollow needle 5 is closed at the distal end thereof and has a side hole (opening) 53 formed such that it is open to a distal end portion of a wall portion thereof. The side hole 53 is communicated with the first flow path 52.
A sharp needle tip 51 is formed at the distal end of the hollow needle 5. As shown in
As shown in
The first sealing member 6 is an elastic member having a thickness at a central portion thereof greater than that at an edge portion thereof. This central portion serves as a first puncture portion 61 which is punctured by the hollow needle 5. Meanwhile, the first sealing member 6 is sandwiched at an edge portion thereof by the pair of plate-shaped portions 731 and 732 of the inner tube 7 as described hereinabove. Consequently, the first sealing member 6 is fixed with certainty to the inner tube 7 and can move together with the inner tube 7.
Further, the connector assembly 1 is set such that a total of sliding resistance between the portions of the first sealing member 6 (first puncture portion 61) and the second sealing member 11 (second puncture portion 111) which are punctured by the hollow needle 5 and the outer circumferential portion 54 of the hollow needle 5 contacting with the portions, and sliding resistance between the reduced diameter portion 741 of the sliding member 74 and the outer circumferential portion 54 of the hollow needle 5 contacting with the reduced diameter portion 741 is smaller than the biasing force of the coil spring 8. Consequently, when the first connector 2 cancels the stopper 17 which is in the third state illustrated in
As shown in
It is to be noted that the configuring material of the first sealing member 6 is not limited specifically, and similar materials to those listed as the configuring material of the sliding member 74 described hereinabove can be used.
As shown in
As shown in
The second connector main body 10 is a member having a cylindrical shape. The lumen of the second connector main body 10 functions as the second flow path 102 along which liquid can pass. As shown in
Further, as described hereinabove, the engaging portions 105a and 105b which engage with the protrusions 91 of the first connector 2 are formed intermediately of the second connector main body 10.
Further, a plurality of (four in the present embodiment) ribs 104 are formed along a longitudinal direction on an outer circumferential portion of the second connector main body 10. The ribs 104 are disposed at equal intervals along a circumferential direction of the outer circumferential portion of the second connector main body 10. The second connector main body 10 can be reinforced by the ribs 104.
The second connector main body 10 has, at a proximal end portion thereof, a sealing member installation portion 106 at which the second sealing member 11 is disposed. The sealing member installation portion 106 is configured from a pair of ring-shaped plate-like portions 106a and 106b which sandwich the second sealing member 11 from above and below.
It is to be noted that, although the configuration material of the second connector main body 10 is not limited specifically, for example, such materials as listed in the descriptions of the outer tube 4, inner tube 7, clamping member 9 and hub 12 of the first connector 2 can be used.
As shown in
Further, the second sealing member 11 is an elastic member having a thickness greater at a central portion thereof than that at an edge portion thereof. The central portion of the second sealing member 11 servers as the second puncture portion 111 which is punctured by the hollow needle 5. Meanwhile, the second sealing member 11 is sandwiched at the edge portion thereof by the pair of plate-like portions 106a and 106b of the second connector main body 10 as described hereinabove. Consequently, the second sealing member 11 is fixed with certainty to the second connector main body 10.
As shown in
It is to be noted that the configuration material of the second sealing member 11 is not limited specifically, and for example, materials similar to those listed as the configuration materials of the sliding member 74 can be used.
Now, an operation state when the connector assembly 1 is used is described.
[1] Process from a non-assembled state to an assembled state (refer to the drawings in the order of
First, the syringe 20 is mounted on the first connector 2, and the second connector 3 is mounted on the bag 50.
When the syringe 20 is to be mounted on the first connector 2, the mouth portion 202 of the syringe 20 is inserted into the proximal end portion of the hub portion 122 of the hub 12 of the first connector 2, and the lock adapter 203 is rotated together with the syringe 20. At this time, the ratchet tooth 126 of the hub 12 and the pawl 44 of the outer tube 4 are engaged with each other to block the rotation of the hub 12 with respect to the outer tube 4, and the lock adapter 203 is screwed with the protrusion 123 of the hub portion 122. In other words, the hub portion 122 and the mouth portion 202 of the syringe 20 are connected to each other and the protrusion 123 and the lock adapter 203 are screwed with each other so that the syringe 20 is retained on the hub 12.
In this manner, the syringe 20 mounted on the hub 12 cannot be removed from the hub 12. In other words, even if the syringe 20 is rotated with the intention of trying to remove the syringe 20 from the hub 12, the hub 12 rotates with respect to the outer tube 4 and the screwing engagement between the protrusion 123 and the lock adapter 203 cannot be loosened. Consequently, particularly a drug which is dangerous if a health care worker touches by mistake such as an anti-cancer agent or an immunosuppressive agent can be prevented from sticking to the health care worker.
Further, since the rotation of the hub 12 in the one direction is permitted, by rotating the syringe 20 together with the hub 12 in the state in which the syringe 20 is mounted on the hub portion 122, graduations provided on the syringe 20 can be watched readily.
Further, when the syringe 20 is to be mounted on the first connector 2, only it is necessary to screw the protrusion 123 and the lock adapter 203 with each other and there is no necessity to carry out any other operation. Therefore, the connection of the syringe 20 can be carried out readily and rapidly.
Thereafter, the second connector 3 in a non-assembled state is moved from the proximal end thereof toward the distal end portion of the first connector 2 as seen in
As shown in
Further, the stopper 17 operates (the clamping member 9 of the first connector 2 is engaged with the engaging portion 105a of the second connector 3) so that the second connector 3 moves reversely in the direction toward the distal end as seen in
Then, if the inner tube 7 of the first connector 2 is operated to rotate in the direction indicated by an arrow mark in
Further, the assembled state of the first connector 2 and the second connector 3 is maintained by the stopper 17 and the locking means 19. Thus, the second connector 3 can be prevented from being pulled out from the first connector 2, or in other words, the connector assembly 1 in the assembled state can be prevented from being disassembled inadvertently. Consequently, the liquid P for dissolving can be fed safely through the connector assembly 1.
Further, in the assembled state, the close contact between the first sealing member 6 of the first connector 2 and the second sealing member 11 of the second connector 3 is maintained (refer to
Further, in the state illustrated in
[2] Process from an assembled state back into a non-assembled state (refer to the drawings in the order of
From the state illustrated in
As seen in
Then, when the first connector 2 is placed into the second state, the pulling out operation is restricted once as described hereinabove (refer to
Then, if the inner tube 7 is operated to rotate in the opposite direction to that described hereinabove, then the first connector 2 is placed into the first state illustrated in
After the pulling out operation is re-started, the first puncture portion 61 and the second puncture portion 111 which have been in the closely contacting state are spaced away from each other and the connector assembly 1 which has been in the assembled state can be placed back into the disassembled state as seen in
In this manner, with the connector assembly 1, when the second connector 3 is to be pulled out from the first connector 2, the first sealing member 6 and the second sealing member 11 can be prevented from being spaced away from each other before the hollow needle 5 is pulled out fully from the second sealing member 11. Consequently, even while the connector assembly 1 in the assembled state is being disassembled, the liquid-tightness of the first flow path 52 and the second flow path 102 is maintained. Therefore, the solution (liquid) in the flow paths can be prevented from leaking from the connector assembly 1 with certainty. Consequently, feeding of the solution can be carried out safely using the connector assembly 1.
While the connector and the connector assembly of the present invention has been described above with reference to the embodiment shown in the drawings, the present invention is not limited to this, but the elements which configure the connector and the connector assembly can be replaced with elements of arbitrary configurations which can exhibit similar functions. Further, an arbitrary configuration element may be additionally provided.
Further, although the rotation blocking means is configured from the ratchet teeth provided on the hub and the pawl provided on the outer tube, the rotation blocking means is not limited to this. For example, the rotation blocking means may be configured from a pawl provided on the hub and ratchet teeth provided on the outer tube.
Further, while the operation restriction means is configured from a grooved portion formed on a wall portion of an outer tube and a protrusion formed in a projecting manner on a wall portion of an inner tube and configured to be inserted into the grooved portion, the operation restriction means is not limited to this. For example, the operation restriction means may be configured from a grooved portion formed on a wall portion of an inner tube, and a protrusion formed in a projecting manner on a wall portion of an outer tube and configured to be inserted into the grooved portion.
Further, while the first puncture portion and the second puncture portion are elevated at end faces thereof, the configuration of the first and second puncture portions is not limited to this. For example, only one of the puncture portions may be elevated at an end face thereof.
Further, the present invention may not have the coil spring 8.
With the invention, since a connector has rotation blocking means having a rotation blocking function for blocking rotation of a hub in only one of a forward direction and a backward direction, when a medical device is to be connected to the connector, the medical device can be rotated with respect to the hub to screw a screw threaded portion of the medical device with a projecting portion of the hub.
Then, after the medical device is connected to the connector, even if the medical device is rotated in direction in which the screwing engagement between the projecting portion and the screw threaded portion is loosened, the hub rotates with respect to the outer tube. Therefore, the screwing engagement between the projecting portion and the screw threaded portion cannot be cancelled. Consequently, the medical device can be prevented from being separated from the connector.
Further, the medical device is permitted to rotate with respect to the connector in the connected state to the connector. Therefore, for example, during working for dissolving drug into dissolution liquid, graduations provided on the medical device can be watched readily. Accordingly, the present invention has industrial applicability.
Number | Date | Country | Kind |
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2010-150077 | Jun 2010 | JP | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/JP2011/064659 | 6/27/2011 | WO | 00 | 11/30/2012 |