专利摘要:
The invention relates to a device to one end of which a syringe can be connected and to the other end of which the mouth or opening of a bottle containing a drug or medicine can be connected. The device comprises a closed chamber having enclosed therein a needle which is in connection with the syringe. Members are provided by means of which the mouth or opening of the bottle is steadily connected to the device and means enabling the needle to perforate a seal plug and then a small rubber plug mounted on the bottle only when the device is blocked onto the bottle so that in any case it cannot be disconnected therefrom. Such a device can be disconnected from the bottle only after the needle has been caused to reenter the closed chamber, so as to prevent any possible dripping of the liquid outside of the device.
公开号:SU1308184A3
申请号:SU853857500
申请日:1985-02-19
公开日:1987-04-30
发明作者:Валентини Луиджи;Кочча Марио
申请人:Фармиталиа Карло Эрба С.П.А. (Фирма);
IPC主号:
专利说明:

foot body in the form of a petal 10 with teeth. When installing the bottle in the nest due to the shape of the tube 12 is provided a tight fit. The device cannot be disconnected from
one
The invention relates to medical technology, in particular to devices for administering liquids, and is intended to connect a syringe to the neck of a bottle.
The purpose of the invention is to improve the blocking of the device on the vial.
Figure 1 shows the device, the axial section j in figure 2 is the same, from isometric; Figures 3 and 4 are the same, axial section, in different operating positions x-, in Figure 5 - the same, when sucking the liquid from the bottle; figure 6 - the same, bottom, isometric.
The device comprises an elongated inner body 1 with a cylindrical cavity 2, at one end of which a slot 3 is made for the free end of the syringe 4, and an intermediate body 5 having a hollow cylindrical protrusion 6 entering the cavity 2. the inner body 1 can be moved into her. At the lower free end (Fig. 1) of the intermediate body 5, a nest is made for the neck 7 of the bottle 8 formed by the cylindrical wall 9 of the intermediate body, with the cylindrical wall 9 made in the form of petals 10 with teeth.
The cavity 11 of the cylindrical protrusion 6 is closed underneath by a shaped elastic stopper 12, tightly closed; the outward end of the cavity is facing to it. cork 12 provides a tight pressure on the outer surface of the rubber cork 13, closing the neck of the bottles containing the medicine. When you click on the tube 13 tube 12 slightly bends it down (figure 1), thereby preventing
the vial until the needle is returned to the closed chamber formed in the device. This prevents dripping of the liquid. 2s.pff, ly, 6 Il.
0
five
ABOUT
0
five
the formation of an empty space between the opposite surfaces of the two plugs.
The device also includes an outer body 14 located over the inner body 1 and the intermediate body 5, receiving the outer body 14 made in the form of a hollow cylinder, the lower part of which near the slot for the neck of the vial is provided with an internal extension in the area of the petals 10, and the free end 15 of the body 14 - in the form of a solid ring, forming a hole with a diameter equal to the outer diameter of the cylindrical wall 9 and the petals 10.
The intermediate 5 and outer 14 housings have the ability to move one relative to the other in the axial direction, but are limited from rotation. neither with respect to the other, since in the housing 14 there are made longitudinal straight grooves 16, into which the teeth 17, which extend longitudinally from the intermediate housing 5, are included with the possibility of longitudinal movement. The elongated grooves 20 are made in the outer housing 14 and spiral along the axis devices, and their end parts 21 and 22 are located at an angle to the rest of the groove 20 with a deviation to the direction of the OSI device.
In the intermediate housing 5, two grooves 23 are made, the profile of which is similar to the profile of the grooves 20, with which: the grooves 23 can be aligned, 1 with the exception of the end portions of the grooves, and the grooves 23 do not have parts with a different angle of inclination, like parts 21 and 22
In the inner case 1 there are fixed two tongs 25 entering the grooves 20 and 23, which ensure the connection of the intermediate case 5 and the narrow
A housing 14 with an inner housing. Between the housings 5 and 14 is installed: a spring 26, which holds the housing 14 in the outwardly pressed position (Fig. 1).
In the wall bounding the cylindrical cavity of the housing 1, there are holes that are closed with sterile filters 30 that allow air to pass in:
In addition, the floor of the needle 31 is integral with the inner case 1 and has a head 32 of a known type to which the free end of the syringe 4 inserted into the slot 3 of the inner case 1 can be attached. The free end of the hollow needle 31 is closed and in the needle there are separate holes 33-35, with the holes 33 and 34 of small diameter designed to release air, and the larger hole 35 serves to pass a liquid.
In addition, in the cavity formed in the protrusion b, a shaped seal 36 is installed, sealing the needle but not in contact with the wall of the protrusion 6.
In the non-operating (static) state of the device, its various constituent parts are arranged as shown in FIG. Due to the presence of a plug 12, filters, and an annular seal 40 sealing the gap between the inner casing 1 and the protrusion 6, the needle 31 is isolated from the external environment.
The device works as follows.
With the introduction of the neck of the bottle in the nest of the device, the tooth-like parts of the petals 10 capture the bottle under the neck, as shown in FIG. 1. In this case, the spring 26 holds the outer case 14 in the downwardly pressed position, and the pins 25 are located in parts 21 of the grooves 20. Since parts 21 of the grooves 20 extend in the longitudinal direction, the outer case 14
In the first stage of this movement of the needle down relative to the plug 12 (fig. 4), the needle also pushes the seal 36 down. As soon as the end of the needle with the hole 34 is on the other side of the plug 13 of the pack, the compressed gas passes through the hole 34 into the cavity of the needle, out of it through the hole 33, and then out through the filters 30. If there is a vacuum in the vial, outside air penetrates into it to equalize the pressure, the passage through the filters and the holes 33 and 34 in the needle,
40
45
Upon further rotation of the housings 5 and 14 relative to the housing 1, the needle 31 continues to move through the plug 12 until the opening 35 is below the rubber one can be rotated relative to the 50 stopper 13, t, e, directly inside the inner housing 1. Consequently The vial (this position is shown cannot be rotated relative to FIG. 5 rotated 180 relative to the inner body 1 and the intermediate body 5, since it can only be moved in the longitudinal direction relative to the outer body 14,
When the outer housing 14 is moved in the compression direction of the spring positions in FIGS. 1-4),
Since in this position the needle opening 55 of the needle is closed by the seal 36, the liquid in the bottle can be sucked out of it by means of a syringe, while it passes through the opening 35. and the needle cavity and
five
0
26 pins 25 move in parts 21 of grooves 20, which leads to a combination of spiral rods of grooves 20 with similarly shaped grooves 23 in the intermediate case 5, while the component parts of the device occupy a position (FIG. 3) in which the two grooves are aligned with the other and the edge 15 of the outer case 14 is pulled over the free ends of the elastic petals 10. Thus, the petals cannot be deflected outward and, therefore, it is impossible to remove the neck of the bottle from its nest, since the teeth of the b to keep the neck of the bottle.
From this position (FIG. 3) in which the spiral grooves 20 and 23 are aligned with each other, the housings 5 and 14 can be rotated (together, because they are connected to each other) relative to the housing 1, which causes the needle tip to lower in the direction 5 tube 12, resulting in a needle pierces the tube 12, and upon further movement and the rubber tube 13 of the bottle (Fig, 4),
In the first stage of this movement of the needle down relative to the plug 12 (fig. 4), the needle also pushes the seal 36 down. As soon as the end of the needle with the hole 34 is on the other side of the plug 13 of the pack, the compressed gas passes through the hole 34 into the cavity of the needle, out of it through the hole 33, and then out through the filters 30. If there is a vacuum in the vial, outside air penetrates into it to equalize the pressure, the passage through the filters and the holes 33 and 34 in the needle,
0
five
0
Upon further rotation of the housings 5 and 14 relative to the housing 1, the needle 31 continues to move through the stopper 12 until the opening 35 is below the rubber 0 stopper 13, t, e, directly inside the bottle (this position is shown in FIG. 5 rotated 180 relative
position in FIG. 1-4),
Since in this position the hole 33 of the needle is closed by the seal 36, the liquid in the bottle can be sucked out of it by means of a syringe, while it passes through the opening 35. and the needle cavity and
A bone, such as a solvent, enters the syringe from the syringe into the vial without any loss, since the shaped stopper 12 is tightly pressed against the central part of the rubber stopper 13 of the vial.
With such a position of the device (FIG. 5), when the needle 31 protrudes on the other side of the sealing plug 12, it is impossible to separate the bottle from the device. The connection of the device with the vial is strong due to the presence of the profiled parts 22 of the grooves 20, in which there is a pin 5 (3081846
You can enter a liquid | large tube has a form similar to
the shape of the neck of the bottle.
Thus, the needle 31 can pass through the plug 12 only when the device is in the locked position shown in FIGS. 3-5, so that it is impossible to detach the device from the bottle, when the free end of the needle protrudes on the other side of the rubber plug 13 vial or on the other side of the sealing plug 12 of the device.
To get the needle through the cork 12
To get the needle through the cork 12
You are 25 (FIG. 6), while the outer shell 15 and out on its other side, the necessary 14 is displaced in the axial direction relative to the intermediate body 5 and, therefore, the groove 20 is displaced relative to the groove 23, i.e. the outer case cannot be rotated together with the intermediate case relative to the inner case.
To detach the vial from the device, it is necessary to manually move the outer casing 14 in the longitudinal direction relative to the intermediate casing 5, overcoming the resistance of the spring 26, before aligning it in parallel. Thus, the device cannot be disconnected from the vial until. until the needle is returned to the chambers 23 and 20 formed in the device. After this, both housings 5 and 14 can simultaneously be covered with a 30 chamber, which prevents them from being rotated relative to the internal liquid cortex, rest 1, which causes the needle to move in the opposite direction relative to the plug 13 and results in the return of the component parts of the device to the position shown in FIG. 4, then in the formula of the invention
1. A safety device for connecting the syringe to the neck of the vial or tube, containing the inner case with the socket for the syringe, the intermediate case with the shaped elastode shown in FIG. 3, and finally, in the position shown in FIG. wherein the pins 25 are included in the profiled part 21 of each of the two grooves 20 and the grooves of the intermediate and outer cases are not aligned with each other and therefore these cases cannot be rotated relative to the housing 1, i.e. moving the needle 31 relative to the plug-12 downwards becomes impossible.
 for fixing the neck of the vial in the anne of the intermediate body, spring uncoupling the outer and intermediate bodies in the axial direction, with the pins fixed in the inner case after returning to the initial position (Fig. 1) by simply pulling out the spiral elements in the longitudinal the direction of the vial in the intermediate and outer casing of the bottle from the device (at the same time, the intermediate body thus deflects the petals 10 outwards), after which the device can be attached to a new bottle or to the inlet at the opening of a small tube attached, for example, to a needle located on the skull or the like The inlet is not made with a cylindrical protrusion entering the inner casing and with 55 guides on the outer surface entering the recesses on the inner surface of the outer casing, the ends of the spiral grooves in the outer and intermediate casing are made different
| a large tube has a shape similar to O
the shape of the neck of the bottle.
Thus, the needle 31 can pass through the plug 12 only when the device is in the locked position shown in FIGS. 3-5, so that it is impossible to detach the device from the bottle, when the free end of the needle protrudes on the other side of the rubber plug 13 vial or on the other side of the sealing plug 12 of the device.
To get the needle through the cork 12
First, manually move the outer casing 14 relative to the intermediate casing 5, overcoming the action of the spring, and then move both
the housing 14 and 5 in the longitudinal direction relative to the housing 1, while the bottle is firmly fixed in the device and can be disconnected from it only after the introduction
needles into internal cavities 11 and 2.
Thus, the device cannot be detached from the vial, before. as long as the needle is not returned to the closed chamber formed in the device, which prevents fluid loss,
a covered chamber that prevents fluid loss,
权利要求:
Claims (3)
[1]
1. Safety device for connecting the syringe with the neck of the vial or with the tube, containing the internal case with the socket for the syringe, the intermediate case with the shaped elas
Q with a stopper and a neck for the neck of the bottle, a hollow needle, characterized in that, in order to improve the blocking of the device on the bottle, it is provided with an outer casing
 for fixing the neck of the vial in the slot of the intermediate body, with a spring, uncoupling the outer and intermediate bodies in the axial direction, with pins fixed in the inner box 50 U entering spiral grooves in the intermediate and outer cases, while the intermediate body
50 for those entering the spiral grooves in the intermediate and outer housings, with the intermediate case
made with a cylindrical protrusion entering the inner case and with 55 guides on the outer surface entering the recesses on the inner surface of the outer case; the ends of the spiral grooves in the outer and intermediate cases are different, and
71308
the nest for the neck of the bottle is made in the form of petals with teeth in one piece with the intermediate body,
[2]
2. The device according to claim 1, characterized in that the floor of the needle 5 is equipped with two additional holes for air release, and the inner case is made with holes closed by a sterile filter w, and the diameter of the main hole is pain tO
48
above the additional diameter, and a shaped seal is installed on the needle, placed in the cavity of the cylindrical protrusion of the intermediate body.
[3]
3. The device according to claim 2, characterized in that the shaped seal in the initial position is fixed: in the cavity of the cylindrical head. The mortar is at the level of two holes on the side of the needle tip.

.2
Figz
vniipi
6
Order 1644/58 Circulation. 596
Random polygons pr-tie, Uzhgorod, st. Project, 4
Subscription
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同族专利:
公开号 | 公开日
SE463238B|1990-10-29|
SE8500420D0|1985-01-30|
FI850418L|1985-08-25|
KR850006142A|1985-10-02|
IL74246D0|1985-05-31|
GB8503800D0|1985-03-20|
DE3503460A1|1985-09-05|
NZ210993A|1988-02-12|
AU3848985A|1985-08-29|
DK47185D0|1985-02-01|
NL8500512A|1985-09-16|
NO162104B|1989-07-31|
CS116085A2|1988-09-16|
FR2560049B1|1988-12-02|
GB2154562B|1987-05-20|
HUT36384A|1985-09-30|
KR920000462B1|1992-01-14|
US4576211A|1986-03-18|
IL74246A|1990-03-19|
FI81499C|1990-11-12|
HU189965B|1986-08-28|
DK164205B|1992-05-25|
SE8500420L|1985-08-25|
PT79923A|1985-03-01|
GR850271B|1985-05-28|
ZA85942B|1985-10-30|
ATA33285A|1993-06-15|
NO850416L|1985-08-26|
FR2560049A1|1985-08-30|
ES292845Y|1987-04-16|
JPS60222059A|1985-11-06|
PT79923B|1986-09-11|
FI850418A0|1985-01-31|
JPH0214852B2|1990-04-10|
AU574758B2|1988-07-14|
NO162104C|1989-11-08|
DK47185A|1985-08-25|
DK164205C|1992-10-26|
IT1173370B|1987-06-24|
BE901699A|1985-05-29|
IT8419785D0|1984-02-24|
CH663156A5|1987-11-30|
CS264118B2|1989-06-13|
ES292845U|1986-08-01|
CA1244804A|1988-11-15|
FI81499B|1990-07-31|
GB2154562A|1985-09-11|
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法律状态:
优先权:
申请号 | 申请日 | 专利标题
IT1978584A|IT1173370B|1984-02-24|1984-02-24|SAFETY DEVICE TO CONNECT A SYRINGE TO THE MOUTH OF A BOTTLE CONTAINING A DRUG OR A TUBE FOR DISPENSING THE SYRINGE DRUG|
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