This application is a 35 U.S.C §371 national stage filling of International Application No. PCT/JP2010/065511, filed Sep. 9, 2010, the entire contents of which are incorporated by reference herein, which claims priority to Japanese Patent Application No. 2009-218889, filed Sep. 24, 2009, the entire contents of which are incorporated by reference herein.
The present invention relates to a bag for package of a medicine such as powdered medicines or tablets. Further, the present invention relates to a sheet for such a medicine packaging bag.
Currently, not only every medicine but also a medicine to be taken in the morning, at noon, in the evening, etc. is packaged in one bag for each of the morning, noon and evening, and the bag is then handed to a patient.
As to the package for those medicines, referring to
Typically, in packaging medicines, the elongated sheet 10 folded in two halves is rolled into a roll shape and the medicine a is introduced into the sheet 10. The sheet is thermal-bonded along the entire width ahead of and behind the medicine a in the two-folded halves 11, 11 and along the entire length of the open edge portions of the two-folded halves 11, 11. In a position of packaging medicines, a heater roller is provided in a width direction of the sheet 10 and another heater roller is provided in the longitudinal direction of the sheet. The sheet 10 is intermittently sent from its roll by means of a feed roller and the two-folded halves 11, 11 of the sheet 10 are opened and the medicine a is then introduced. Further, at the same time, both of the heater rollers thermal-bond the sheet 10 along the entire width in the width direction of the sheet 10 as well as along the entire length of the open edge portions (in the longitudinal direction of the sheet 10) (see Paragraph [0060], FIG. 12 and FIG. 15 in Patent Document 1). By way of another example of means for thermal-bonding the sheet 10 in the width direction as well as in the longitudinal direction, an L-shaped (three-pronged shaped) heat pack may be used instead of the heater roller (see reference numeral 13 in FIG. 12 in Patent Document 2).
As for the medicine packaging bag A, one bag A corresponding to one dose is taken off from a group of consecutive bags shown in
Thus, as one example of a packaging bag made from a plastic film, as shown in
Patent Document 1: Japanese Patent No. 4220568
Patent Document 2: Japanese Laid-Open Patent Application No. 2006-306419
Patent Document 3: Japanese Laid-Open Patent Application No. (Sho)61-142159
Patent Document 4: Japanese Laid-Open Patent Application No. 2000-318703
The medicine packaging bag A with the above-described cuts b formed therein is effective in terms of tearability. As to the elongated sheet 10, however, there is a problem when introducing and packaging the medicine a. That is, when packaging medicines, a tension acts on the elongated sheet 10 in the longitudinal direction of the sheet as well as in the width direction thereof when drawing out the sheet from its roll, when pressing the sheet through thermal-bonding by the heater roller, and when drawing out (sending) the sheet after the thermal-bonding. Thus, there is a problem since the sheet is torn from the cut b due to such a tension. As such, the sheet cannot be smoothly drawn out or sent (traveled).
It is an object of the present invention to prevent tear of the cut b caused by the tension when drawing out the sheet.
To achieve the above object, as can be understood from
By forming the portions as such, due to the presence of the tearing cut-less portion, the tear caused by the tension through the opening does not occur and the sheet can be smoothly drawn out. As to the width t (see
The present invention provides a medicine packaging bag, wherein an elongated sheet is folded centrally in a width direction thereof and a medicine is introduced between two-folded halves of the sheet, and wherein the elongated sheet is thermal-bonded along an entire width ahead of and behind the medicine and along an entire length of open edge portions of the two-folded halves. A thermal-bonded portion in the entire length of the open edge portions of the two-folded halves is formed inwardly from an end edge of the open edge portions at a predetermined distance. A large number of fine tearing cuts are formed between the thermal-bonded portion and the end edge of the open edge portions along an entire length in a longitudinal direction of the elongated sheet. The tearing cuts are formed inwardly from the end edge of the open edge portions at a distance, through which a tension in a longitudinal direction during sending the sheet is difficult to tear the sheet, and through which a human force is easy to tear the sheet. A tearing cut-less portion is formed between the tearing cut portion and the end edge of the open edge portions along the entire length in the longitudinal direction.
In the above-described configuration, as to the features wherein the thermal-bonded portions are along the entire width of the elongated sheet ahead of and behind the medicine and along the entire length of the open edge portions in the two halves, and wherein the tearing cuts are along the entire length of the open edge portions, the thermal-bonded portions or the tearing cuts are not needed to continue (exist) along the entire length or the entire width. It is a matter of course that they may be intermittent as long as this does not cause any obstruction.
Similar to a prior art, the above-configured medicine packaging bag may be manufactured by drawing out the elongated sheet from its roll. The tearing cut portion may be formed on the elongated sheet in advance or may be formed at the same time as forming the bonded portions (when packaging the medicine). In case of the former, i.e., forming the tearing cut portion in advance, for example, a large number of fine tearing cuts may be formed at both lateral edges of the elongated sheet along an entire length in a longitudinal direction thereof. Further, a large number of fine tearing cuts may be formed in the open edge portions of the two-folded halves of the sheet folded centrally in its width direction along the entire length in its longitudinal direction. In case of forming the tearing cuts in advance, the tearing cuts are formed inwardly from the end edge of the open edge portion at a distance, through which the tension in the longitudinal direction during sending the sheet is difficult to tear the sheet, and through which a human force is easy to tear the sheet. Further, the tearing cut-less portion is formed along the entire length in the longitudinal direction.
According to the present invention, as described above, the portion with cuts is formed at a predetermined distance inwardly from the end edge at which the cuts are to be located. Further, the tearing cut-less portion is formed between the tearing cut portion and the end edge along the entire length in the longitudinal direction of the sheet. Accordingly, the tear through the cut, which is caused by the tension during drawing out the elongated sheet for medicine packaging bags, can be prevented and the medicine packaging bag can be opened due to easy tear.
One embodiment of a medicine packaging bag A according to the present invention is shown in
The sheet 10 is a composite film of 20μ, in thickness, wherein a thermal-bondable polypropylene film is superposed on a cellophane film of a substrate layer such that the thermal-bondable polypropylene film is interior. In this connection, the sheet 10 may be formed in such a manner that an anchor coat agent (a bonding agent) is applied on the cellophane film and both polyethylene to be a bonding agent and polyethylene to be a seal layer are coated on the film through extrusion from a T die with the former as an anchor coat agent.
In the medicine packing bag A, similar to the prior art, the elongated sheet 10 is drawn out from its roll to a medicine packaging position and then processes of introducing medicines and producing packaging bags (packaging medicines) are performed. The elongated sheet 10 according to this embodiment is rolled as folded centrally in its width direction. The elongated sheet is formed with a large number of fine tearing cuts 16 in the open edge portions of its two-folded halves 11, 11 by means of a cut ring 20 shown in
As shown in
Guide or drive rollers 26, 26 (see
If the cut ring 20 is rotated, then the protrusions 21 pierce the sheet to thus form the cuts 16, which are through holes made by such piercing, in the open edge portions of the two-folded halves 11, 11. Further, as the sheet 10 travels, a large number of the cuts 16 are formed along an entire area of the entire length in the longitudinal direction of the sheet (see
When forming the cuts b, the area, at which the cuts b are made by the protrusions 21 of the cut ring 20, is positioned inwardly in the width direction from the end edge 17 of the open edge portions of the two-folded halves 11, 11 to have a width of a distance t (see
The elongated sheet 10 with the cuts 16 is rolled into a roll shape and such a roll is led to the medicine packaging position by setting the same in a medicine packaging device. When the medicine packaging device is driven from such a state, similar to the prior art, the sheet 10 is intermittently sent from its roll by means of a feed roller. When the sheet 10 is stopped, the open edge portions of the two-folded halves 11, 11 are opened and the medicines are introduced thereto. Further, at the same time, both heater rollers thermal-bond the sheet 10 along the entire width in the width direction and the entire length of the open edge portion (in the longitudinal direction of the sheet 10) (the front and rear entire width-bonded portions 12, the opening-bonded portion 13), thereby producing the medicine packaging bag A and further producing the medicine packaging bags A joined to one another via the perforation 14 (see
When packaging the medicine, a tension acts on the elongated sheet 10 in the longitudinal direction thereof as well as in the width direction thereof when drawing out the sheet from the roll, when pressing the sheet through thermal-bonding by the heater roller, and when drawing out (sending) the sheet after the thermal-bonding. However, due to the presence of the tearing cut-less portion 18 without the tearing cut portion 16, which extends along the entire length in the longitudinal direction of the sheet, it is difficult that tear of the sheet caused by such a tension occurs. Further, the sheet is smoothly traveled (smoothly sent). Thus, it does not occur that the process of packaging medicines stops or a packaging mechanism has trouble.
As for the medicine packaging bag A, similar to the prior art, one bag A corresponding to one dose is taken off from a group of consecutive bags shown in
In this embodiment, the tearing cut portions 16 are simultaneously formed in the two-folded halves 11, 11 of the sheet 10. However, instead of folding the sheet, a large number of fine tearing cuts 16 may be formed in both lateral edge portions of one sheet 10 along the entire length in the longitudinal direction thereof, as shown in
The above-described sheet 10 is not limited to the thermal-bonding of the heat roller. It is a matter of course that the sheet may be employed to a medicine packaging device utilizing thermal-bonding of the above-described L-shaped heat pack. This also can provide the functional effects of the present invention. Further, the thickness of the sheet 10 is not limited to 20μ. A sheet having a thickness of currently-used 30μ, etc. as well as a sheet having a different thickness may be employed. Further, the material of the sheet is not limited to the above-described composite film consisting of cellophane and polyethylene and may include a material referred to as glassine. It is understood that transparent glassine or vapor-deposited glassine may be used.
Further, the cut ring 20 may be provided in the front or rear of the heater roller (heat pack) in the sheet travel direction and the tearing cut portion 16 may be formed by the rotation of the cut ring 20 prior or subsequent to the thermal-bonding. In this case, it does not occur that the sheet 10 is torn due to the cuts 16 before a medicine packaging part and the travel of the sheet is obstructed thereby. In particular, the formation of the cuts subsequent to the thermal-bonding is more effective since the thermal-bonding is already performed and thus tear resistance of the sheet 10 improves due to such thermal-bonding.
Description of Reference Numerals
10 . . . Sheet (film) for medicine packaging bag, 11 . . . Folded halves of sheet, 12, 13 . . . Thermal-bonded portion, 14 . . . Perforation, 16 . . . Tearing cut (Tearing cut portion), 17 . . . End edge of open edge portion, 18 . . . Tearing cut-less portion, 20 . . . Cut ring, 21 . . . Cut forming protrusion, A . . . Medicine packaging bag
Number | Date | Country | Kind |
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2009-218889 | Sep 2009 | JP | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/JP2010/065511 | 9/9/2010 | WO | 00 | 3/22/2012 |
Publishing Document | Publishing Date | Country | Kind |
---|---|---|---|
WO2011/037021 | 3/31/2011 | WO | A |
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