The disclosure relates to a method where empty infusion bags, which, as a rule, are delivered sterilized, can be unpacked and separated into singles. The infusion bags can then be supplied to a device for further processing, for example to fill the infusion bags with a liquid. The infusion bags can be bags with just one chamber, but also multi-chamber bags. Multi-chamber bags can also include, for example, a powder and a liquid chamber.
The supplying and the unpacking of sterile infusion bags are usually realized by manual production steps. The sterile infusion bags are delivered in an outer packaging. The outer packaging with the infusion bags is disinfected and transferred into a first processing room, which is equipped with glove ports. In said first processing room, the outer packaging is opened manually by an operator and the individual infusion bags are removed from the outer packaging. Multiple infusion bags are placed in a transfer tray and disinfected once again before the transfer tray together with the infusion bags is transferred into a second processing room. The processing is also effected manually in said second processing room by an operator who has to operate by means of glove ports. The infusion bags are first of all separated into singles by the operator. As the infusion bags are frequently positioned inside the outer packaging by applying vacuum, said separating into singles can take up a certain amount of time as the infusion bags can stick to one another. The infusion bags separated into singles are transferred into a third processing room which is also equipped with glove ports. The individual infusion bags are arranged in a defined alignment by a further operator in said processing room and are transferred to the device for further processing. For example, the individual infusion bags can be placed into the transport compartments of a conveyor belt. As an alternative to this, the infusion bags can also be suspended on transport grippers.
Said stepwise unpacking by operators in glove ports is viewed increasingly with criticism. Working with glove ports is physically difficult for the operators so that signs of fatigue are obvious relatively quickly. Maintaining the sterility is also viewed increasingly with criticism as subsequent contamination of the open inside of the outer packaging or also of the infusion bags cannot be safely ruled out.
The object underlying the invention is to provide an improved method for unpacking and separating infusion bags into singles which manages largely without operators in glove ports and avoids contact with the actual infusion bags as completely as possible.
The method according to the invention is provided by the features of the independent claim. Sensible further developments of the invention are the subject matter of the dependent claims.
In the case of the method for unpacking and separating infusion bags into singles, first of all an outer packaging is opened mechanically by means of an opening device. The infusion bags are fastened in groups to a holding device in said outer packaging. Once the outer packaging has been opened, the infusion bags are separated from the outer packaging by means of a separating device. The individual infusion bags remain fastened to the holding device during said step. By means of a positioning device, each holding device with the infusion bags fastened thereto is then positioned in a transport device so that the infusion bags can be supplied to a device for further processing.
In a first embodiment, just one group of infusion bags can be present in the outer packaging. This can be the case, in particular, with outer packagings in the form of bags, for example in the form of tubular bags or sealed bags. As an alternative to this, in a second embodiment multiple groups of infusion bags can be present in one outer packaging, each group being fastened to its own holding device. This can be the case, in particular, with such outer packagings which have a trough-like receptacle for the infusion bags. In dependence on the depth of the trough-like receptacle, the individual holding devices with the infusion bags can lie in a fan-like manner in the trough-like receptacle or can be present suspended side by side in the trough-like receptacle.
When using a trough-like receptacle as outer packaging, said trough-like receptacle can preferably be closed with a sealed lidding film. The lidding film can be removed, in this case, by the opening device. This can be effected preferably by pulling off the lidding film. In principle, it would also be possible to cut an opening in the lidding film in order to open the outer packaging.
When using an outer packaging in the form of a bag, the opening of the bag can be effected in a particularly simple manner by cutting the bag open. The bag can simply be provided with a slit for this purpose. It would also be possible to sever part of the bag by a cut in order to open the outer packaging.
The opened outer packaging can then be tipped up by the separating device. As a result, the infusion bags with the holding device can slip out of the opened outer packaging. The infusion bags slipping out in this manner is possible both with a bag as outer packaging and with a flat trough-like receptacle as outer packaging.
Insofar as the holding devices are present, in contrast, suspended in the trough-like receptacle, they can be gripped and removed by the separating device together with the infusion bags.
In principle, it is possible to supply the infusion bags in groups to a device for further processing. In this case, the holding device would simply have to be aligned and transferred to a transport device in a defined position. Said method step can be taken over by the positioning device. The infusion bags can then be filled in groups, for example, with the desired liquid.
In a preferred embodiment, the infusion bags can be separated from the holding device prior to the transfer to the device for further processing. The infusion bags can consequently be processed individually. The advantage of this is that, as a rule, the design of the device for further processing can remain unchanged as, hitherto, the device for further processing also received the infusion bags already separated into singles and aligned. The separation of the infusion bags from the holding device can be carried out, in this case, in particular, by the positioning device or by the transport device. The infusion bags can preferably be separated into singles directly during the separation from the holding device so that no other separate separating-into-singles operation is necessary. The infusion bags can be aligned directly after the separation or also indirectly during the separating operation from the holding device so that a defined transfer to a device for further processing is possible. As a result, a separate method step for the alignment of the infusion bags can be saved.
Further advantages and features can be found in the features additionally specified in the claims and in the exemplary embodiments below.
A first variant of the method is shown in steps in
According to
The opened outer packaging 20′ is then tipped up by a separating device 52, which is also only shown schematically, so that the open side 26 of the outer packaging 20′ points downward. As a result, the infusion bags 10 with the holding device 12 slip out of the opened outer packaging 20′(see
Instead of the tubular bag 20, a flat trough-like receptacle 30 can also be used for storing the infusion bags 10 which are fastened to the holding device 12 (see
As can be seen in
Multiple holding devices 12 lie slightly offset one above another inside the trough-like receptacle 30. Insofar as the side walls 34 of the trough-like receptacle 30 extend in a sufficiently flat manner, the removal of the individual holding devices 12 could be effected as a result of tipping up the opened trough-like receptacle 30′. As an alternative to this, the individual holding devices 12 could also be removed from the opened trough-like receptacle 30 by means of a gripping device as separating device 52.2. The individual holding devices 12 with the infusion bags 10 can then be processed further.
Instead of the flat trough-like receptacle 30, a comparatively deep trough-like receptacle 40 could also be used for storing the holding device 12 with infusion bags 10 (see
Number | Date | Country | Kind |
---|---|---|---|
18188659 | Aug 2018 | EP | regional |
Number | Name | Date | Kind |
---|---|---|---|
4523679 | Paikoff | Jun 1985 | A |
5551215 | McDonald | Sep 1996 | A |
5779973 | Edwards | Jul 1998 | A |
5810706 | McDonald | Sep 1998 | A |
9511945 | Greyshock | Dec 2016 | B2 |
20050133674 | Sobue | Jun 2005 | A1 |
20080051937 | Khan | Feb 2008 | A1 |
20160059977 | Bikerman | Mar 2016 | A1 |
20180064703 | Kumar | Mar 2018 | A1 |
Number | Date | Country |
---|---|---|
201085783 | Jul 2008 | CN |
202063314 | Dec 2011 | CN |
203793865 | Aug 2014 | CN |
104386328 | Mar 2015 | CN |
204280116 | Apr 2015 | CN |
105173248 | Dec 2015 | CN |
205396877 | Jul 2016 | CN |
205441862 | Aug 2016 | CN |
107140271 | Sep 2017 | CN |
107161448 | Sep 2017 | CN |
207089844 | Mar 2018 | CN |
207482236 | Jun 2018 | CN |
108284978 | Jul 2018 | CN |
208877299 | May 2019 | CN |
10211116 | May 2015 | DE |
202018002685 | Jun 2018 | DE |
2017099195 | Jun 2017 | WO |
Number | Date | Country | |
---|---|---|---|
20200047937 A1 | Feb 2020 | US |