| (19) |
 |
|
(11) |
EP 0 070 720 B1 |
| (12) |
EUROPEAN PATENT SPECIFICATION |
| (45) |
Mention of the grant of the patent: |
|
15.10.1986 Bulletin 1986/42 |
| (22) |
Date of filing: 19.07.1982 |
|
| (51) |
International Patent Classification (IPC)4: A61J 3/10 |
|
| (54) |
Convex tablet, a sealed package containing the same, and the production of such a
tablet
Konvex geformte Tablette, ihre Verpackung und Herstellung
Comprimé convexe, son emballage et sa fabrication
|
| (84) |
Designated Contracting States: |
|
AT BE CH DE FR GB IT LI LU NL SE |
| (30) |
Priority: |
20.07.1981 US 285212
|
| (43) |
Date of publication of application: |
|
26.01.1983 Bulletin 1983/04 |
| (71) |
Applicant: WARNER-LAMBERT COMPANY |
|
Morris Plains
New Jersey 07950 (US) |
|
| (72) |
Inventor: |
|
- Eoga, Anthony B.J.
Boonton
New Jersey 07005 (US)
|
| (74) |
Representative: Jones, Michael Raymond et al |
|
Haseltine Lake & Co.,
Imperial House,
15-19 Kingsway London WC2B 6UD London WC2B 6UD (GB) |
|
| |
|
| Note: Within nine months from the publication of the mention of the grant of the European
patent, any person may give notice to the European Patent Office of opposition to
the European patent
granted. Notice of opposition shall be filed in a written reasoned statement. It shall
not be deemed to
have been filed until the opposition fee has been paid. (Art. 99(1) European Patent
Convention).
|
[0001] This invention relates to convex tablets, to the production of such tablets, and
to packages in which tablets are sealed in pouches defined by opposed sheets of material.
[0002] Most tablets, whether for medicinal purposes or otherwise, are manufactured with
essentially the same basic shape of essentially flat broad surfaces. In many instances,
such as when the tablets contain some active chemical agent, they are desirably vacuum
sealed within sheet-like packaging in sandwich relationship, in such manner that the
sheets converge to form a pouch about the tablet defining a perimeter generally corresponding
to a circle.
[0003] Conventional tablet shape is defined in cross- section by essentially flat, parallel
broad surfaces, sometimes defining at the circumferential periphery a slight bevel,
provided primarily to minimize tablet edge fracture.
[0004] The high cost of raw materials, including packaging materials, has prompted consideration
of ways to reduce incidental costs to keep down the ultimate cost of the packaged
tablet product. Consideration has therefore recently been given to a reduction in
the packaging material requirements for tablets, and a review of the prior art packaged
tablet discloses a substantial amount of unused space in the package pouch.
[0005] In particular, the unused space, which corresponds to wastage, is most apparent when
the tablet is relatively thick, the latter to ensure sufficient tablet strength during
manufacture and transportation. Also, in the instance where the tablet is relatively
thick and is packaged by sealing within pouches formed by parallel sheet materials,
the conventional cylindrical tablet configuration has been found to exert a strain
on the package that causes the seals between the package sheets to rupture, with the
result that product shelf life may be reduced and spoilage may occur.
[0006] Another problem that has existed concerns the packaging of the tablets. Generally,
tablet packaging is performed by the adhesive bonding of parallel sheets of packaging
material, with non-bonded areas defined periodically on the sheets to provide pouches
to retain the tablets. The tablets are usually conveyed while resting on their broad
surfaces, and reach a chute, where the tablets drop vertically downward and are then
conveyed between the package sheets as they are brought together to seal off the pouch
area.
[0007] During the foregoing procedure, the tablets occasionally tend to stack or ride upon
each other in the course of the vertical drop into position between the package sheets.
This occurrence, known as "shimming", is undesirable and can cause jamming of the
packaging machinery, so that the machinery must be shut down to remove the extra tablets
from the pouch. Naturally, such difficulties are time consuming and add to manufacturing
expense.
[0008] BE-A-779427 discloses tablets having two broad outer surfaces which are generally
opposed to each other and are spaced apart from each other by a continuous rim. Each
of the two broad outer surfaces disclosed in BE-A-779427 is a smooth convex shape,
resembling a portion of a sphere.
[0009] Hagers Hanbuch der Pharmazeutischen Praxis, Springer-Verlag, 1971 discloses a variety
of tablets, some of which are like those disclosed in BE-A-779427 referred to above.
Other types of tablets disclosed in Hagers Handbuch have two opposed, spaced-apart
outer surfaces each of which has a convex peripheral region and a flat central region.
[0010] There is therefore a need to reduce or eliminate the difficulties recognized in the
prior art, by providing a tablet that reduces packaging costs, by reducing both the
size and thickness of the packaging materials, as well as a reduction in the incidence
of package failure. Also, it would be desirable to prepare a tablet that reduces or
eliminates the occurrence of "shimming" during packaging.
[0011] According to one aspect of the present invention, there is provided a tablet (10)
comprising: two broad outer surfaces (12) which are generally opposed to each other,
are generally spaced apart from each other, and terminate in spaced-apart surface
perimeters (14); and a continuous rim (16) extending transversely between the surface
perimeters (14); wherein at least one of the broad outer surfaces (12) is distended
convexly away from the other: characterised in that at least one broad outer surface,
over at least a majority of vertical planes passing through the centre of the tablet
(10) when the latter is disposed with the rim (16) generally vertical, either (a)
consists of a central convex region (18) and a peripheral convex region (20) adjacent
thereto, the external angle (a) between the central convex (18) region and the peripheral
convex region (20) being greater than 180°, or (b) comprises a central region, a peripheral
convex region (20") and, between the central and peripheral regions, an intermediate
convex region (18"), the external angle between the peripheral convex region (20")
and the intermediate convex region (18") being greater than 180° and the external
angle between the intermediate convex (18") region and the central region also being
greater than 180°.
[0012] The reference numerals appearing against certain components in the immediately preceding
paragraph are those of the corresponding components indicated in Figures 1 and 2 or
Figure 10 of the accompanying drawings, and are provided by way of illustration only,
without limitative effect.
[0013] Preferably in a tablet in accordance with the present invention, having an improved
configuration for more economical sealable packaging and reduced spoilage, both of
the broad outer surfaces are distended convexly away from each other thereby defining
a tablet having a generally bi-convex configuration. Preferably the broad surfaces
are symmetrically distended.
[0014] Preferably the continuous rim defines a cylindrical surface which is circular or
non-circular. A continuous ridge is preferably defined on the exterior of the or each
broad outer surface at the junction of the central or intermediate convex region and
peripheral convex region; it is the peripheral convex region which defines the tablet
point bend, i.e. the point at which the walls of the pouch containing the tablet are
drawn towards adhesive contact with each other. Preferably, the surfaces of the peripheral
convex regions of the opposed broad outer surfaces subtend between them an acute angle,
which more preferably is less than 45°.
[0015] The invention also relates to a sealably packaged tablet which comprises, in combination,
a tablet package prepared from opposed package sheets peripherally adhered to each
other and defining an air-tight tablet pouch containing a tablet of the present invention
as described above. The present packaged tablet utilizes a pouch that can be reduced
in size compared with many of those of the prior art while retaining the capability
for holding a tablet having equivalent weight and content to those of the prior art.
The package may include a plurality of spaced apart pouches each containing a tablet.
[0016] The present invention also includes a method of preparing a tablet according to the
first-mentioned aspect of the present invention, which method comprises providing
a tablet die having a configuration complementary to that of the tablet according
to the present invention which is to be produced, loading the tablet die with tablet-forming
material, and compressing the tablet-forming material within a tablet die form a tablet
having the desired configuration. Preferably, both broad surfaces of the die are concave,
and thus a tablet having bi-convex configuration is formed. Further, the die may be
configured to correspond in shape to the preferred tablet configurations set forth
above.
[0017] Tablets prepared in accordance with the present invention permit packaging material
to be reduced in amount by as much as 20 to 25% in area, while package sheet thickness
may be reduced as much as 30%. Also, tablets of the present configuration resist breakage
and spalling during manufacture and shipping, and the packaging machinery jamming
is reduced due to a corresponding reduction in the incidence of "shimming".
[0018] The present invention is applicable to tablets for a variety of uses extending from
medicinal compounds to household goods. The exact angulation and size of individual
tablets will be governed by the materials being formed, although the basic convex
configuration is utilized in each instance.
[0019] For a better understanding of the present invention and to show how the same may
be carried into effect, reference will now be made, by way of example, to the accompanying
drawings, in which:-
Figure 1 is a perspective view of one embodiment of tablet in accordance with the
present invention;
Figure 2 is a side view illustrating the tablet of Figure 1;
Figure 3A is a vertical section through a known tablet enclosed in a sealed package;
Figure 3B is a vertical section through a tablet similar to that of Figure 1, enclosed
in a sealed package;
Figure 4A is a plan view, partly in phantom, illustrating the packaged, known tablet
shown in Figure 3A;
Figure 4B is a plan view, partly in phantom, illustrating the packaged tablet of Figure
3B;
Figure 5 is a side view illustrating a tablet in accordance with the present invention,
similar to that shown in Figure 1;
Figures 6 and 7 are vertical sections through further known tablets, the tablet of
Figure 7 being shown sealed within a package; and
Figures 8, 9 and 10 are perspective views of yet further embodiments of tablets in
accordance with the present invention.
[0020] Referring to the drawings, wherein like numerals designate like parts, and referring
first to Figures 1 and 2, a tablet 10 comprises paired broad outer surfaces 12 that
extend radially outward generally opposed to each other, and terminate in parallel
spaced-apart surface perimeters 14. A continuous rim 16 extends transversely between
surface perimeters 14 as shown, and may preferably define a circular cylinder as shown
in Figures 1 and 2.
[0021] As shown in Figures 1 and 2, both broad surfaces 12 may be convexly extended; however,
the invention includes the instance where only one broad surface 12 is convex.
[0022] The broad surfaces 12, when convexly extended as shown, comprise a central convex
region 18 and a peripheral convex region 20 that is located annularly adjacent to
it.
[0023] The convex regions 18 and 20, as shown in Figures 1 and 2, define exterior surfaces
that are disposed at an external angle with respect to each other that is greater
than 180°. In particular, and with reference to Figure 2, an angle a is shown that
is defined by the exterior surfaces of convex regions 18 and 20.
[0024] In some embodiments of the present invention, the convex region 20 may define a bevelled
surface that conforms to the frustum of a cone, in the instance where the tablet 10
is circular in shape. Similarly, the convex region 18, while graduated at a differing
angle of inclination than that of the region 20, may define in one embodiment an essentially
conical configuration. The shape of respective convex regions 18 and 20 may accordingly
vary, and, for example, as illustrated in Figure 8, convex region 18' may define a
shape that is essentially pyramidal, in combination with the essentially frustoconical
shape of region 20'. The invention contemplates a variety of shape combinations within
its scope, and should not be limited to specific combinations illustrated herein.
[0025] Referring further to Figures 1 and 2, where the convex regions 18 and 20 differ in
slope as shown, they define at their junction a continuous ridge 22 which, in the
illustrations herein, may comprise a circle, as in Figure 1. Naturally, the specific
shape of ridge 22 will depend upon the shape of the tablet 10, and the present invention
includes ridges having oval, square, rectangular, and other shapes within its scope.
[0026] One of the important features of the present invention relates to the configuration
of the peripheral convex region 20. In particular, and with reference to Figures 2
and 3B, one of the advantages of the present configuration is that it reduces the
strain on the packaging material in the instance where the tablet is sealably packaged
within two originally parallel package sheets, and permits reductions in both packaging
sheet gauge and size, as will be more particularly explained. Referring to Figure
3B, a packaged tablet is shown which comprises a tablet 10 disposed within a package
24 consisting of paired, opposed packaged sheets 26 that have been peripherally bonded
to each other, and, in their non-bonded area, define a package pouch 28 to hold the
tablet. Correspondingly, Figure 3A illustrates a packaged tablet in accordance with
the prior art, and tablet 30 illustrated therein is thus enclosed within a tablet
package 32 prepared from paired sheets 34 likewise peripherally bonded to define a
central package pouch 36.
[0027] The differences between the novel and known packages include certain visual distinctions
that are readily apparent. For example, tablet 30 utilizes essentially flat broad
outer surfaces. Both packages utilize an identical angle of taper of the package sheets
to the point of sealable engagement. In each instance, an acute angle, labelled β
is defined between respective sheets 26 in Figure 3B, and 34 in Figure 3A. Referring
back to Figure 2, the exterior surfaces of peripheral convex region 20 preferably
define an acute angle corresponding to angle (3 and are therefore labelled identically,
to facilitate the reduction in the size of pouch 28.
[0028] More specifically, the taper of sheets 26 and 34, respectively, begins at the tablet
point bends 38 and 40, which mark the point at which the taper of the packaging sheets
is set to occur. In both instances, the identical angle of taper is utilized, and
it can be seen that the tablet of the present invention permits the taper to commence
nearer to the centre of the tablet, thereby permitting the pouch 28 to be defined
within a smaller area, and correspondingly to define a reduced volume. The configuration
of tablet 10 permits the same amount of tablet material to be contained within this
smaller pouch, as that contained within pouch 36 holding tablet 30. Referring now
to Figures 4A and 4B, comprising plan views partly in phantom of the corresponding
Figures 3A and 3B, it can be seen that the pouch 28 is reduced in area from that of
pouch 36 and a corresponding reduction is possible in the overall size of sheet 26
from that of sheet 34. It should be noted that this reduction in packaging material
is possible without the requirement of a decrease in the diameter of the respective
tablets. Thus, the surface perimeter 14 of tablet 10 is equal in size to the surface
perimeter 42 of tablet 30, with the difference in the size and location of the respective
tablet point point bends 38 and 40, accounting for the decrease in the size of pouch
28 over pouch 36.
[0029] In addition to the reduction in the size of the packaging material, it has been found
that the sheet material itself may be reduced in gauge, as the overall convexity of
the outer surfaces 12 reduces the strain on the sheet materials that is normally imposed
at the tablet point bend in the instance where the tablet is flat-faced, as illustrated
in Figures 3A and 4A. The size of the obtuse angle that is subtended by the central
and peripheral convex regions, determined with the tablet point bend 38 as its apex,
is thus less than the corresponding obtuse angle that is disposed with tablet point
bend 40 as its apex, in Figure 3A. The package sheet 26 is therefore less likely to
rupture than corresponding package sheet 34, due to the configuration of respective
tablets 10 and 30. Thus, while package sheet 34 has conventionally been prepared to
a thickness of 0.001 inch gauge (0.0025 cm), package sheet 26 may be utilized at a
reduced thickness of 0.0007 inch gauge (0.00178 cm gauge), and provides sufficient
package strength and integrity, to resist rupture and premature package leakage.
[0030] Several other advantages have also been found with the employment of the tablets
of the present invention. The problem referred to earlier with respect to tablet packaging,
comprising the tendency of tablets to stack or "shim" during conveyance to the package
pouch, has been virtually eliminated by the provision of the tapered surfaces of the
convex broad outer surfaces 12. The tapered surfaces of the tablets allow them to
slide apart from each other so that individual tablets may be efficiently packaged
without jamming package machinery.
[0031] Also, the outer shape of the tablets confers a further unexpected advantage, in the
instance where the tablet includes a cleansing composition that operates when the
tablet is dissolved to form a cleansing solution, such as in the instance where denture
cleansers, toilet bowl cleaners and the like are prepared. When the tablet is dropped
into a solvent, the tendency is generally for the tablet to come to rest at the bottom
of the container, resint on one of its broad surfaces. In the instance where the broad
surfaces are flat, the surface area of the tablet available for interaction with the
liquid in the container is limited, as the surface in contact with the bottom of the
container is effectively unexposed. In contrast, the present tablet configuration
presents tapered broad surfaces, that would extend away from the bottom of the container
and permit the liquid in the container to make surface contact to accelerate the disintegration
of the tablet.
[0032] The method of preparing the tablet of the present invention comprises the use of
tablet dies defining at least one concave broad surface that corresponds in shape
to the convex broad outer surface desired in the tablet. Thus, either one or both
of the broad outer surfaces may be defined in corresponding concavities within the
tablet die, so that the appropriately configured tablets may be prepared. In other
respects, tablet preparation does not differ from that of the prior art, as conventional
tableting agents may be employed, and conventional forming pressures, etc. may be
utilized. It is advisable to prepare the tablets of the present invention with essentially
flat rims 16, as this prevents the occurrence of "shingling" that comprises the surface
discontinuities that sometimes are formed when the tablet edge is rounded.
[0033] The tablets of the present invention may vary widely in exact shape, so long as at
least one of the broad outer surfaces is convexly extended as described. Preferably,
the broad outer surfaces are symmetrically convex. The exact size of central convex
region 18 and/or the intermediate convex region may vary considerably, and may range
in size from 20% to 80% as a radial dimension, of the total radial dimension of the
broad outer surface 12. Preferably, the central and/or intermediate convex region
is in the range from 30 to 70% of the total radial dimension, and more preferably
is in the range from 50% to 65%. The term radial dimension will correspond to the
radius when the tablet has a circular plan, and will be the dimension from the axis
of the tablet to the periphery in other cases. Also, in the instance where the tablet
possesses a configuration similar to that of Figure 1, with a continuous ridge 22,
the location of ridge 22 naturally may vary, depending upon the size of the central
convex region.
[0034] Referring now to Figure 5, the variation in the size of the respective convex region
is illustrated, as peripheral convex region 20 appears larger than that in Figure
2, while the central convex region 18 is reduced. In Figure 6, a known tablet 44 is
shown which utilizes broad surfaces 46 each constituted by a single convex surface.
In another known tablet as illustrated in Figure 7, the tablet 48 has a single convex
broad outer surface 50. This embodiment can be specifically utilized in the instance
where a package such as package 52 is employed. In such package, only one of the sheets
is expanded and forms a pouch, and thus a flat sheet 54 has adhesively bound thereto
a convexly expanded sheet 56, which defines the recess forming the tablet pouch 58.
This tablet is not particularly satisfactory for two reasons: firstly only one of
the broad outer surfaces is convex, and, secondly, that one convex surface has only
a single convex region.
[0035] Figure 8 of the drawings shows an embodiment somewhat similar to that shown in Figure
1, in which the tablet 10' has two identical broad outer surfaces, with a cylindrical
rim 16' extending between their peripheries. A peripheral convex region 20' is frusto-conical
in shape, like region 20 in Figure 1. In contrast, the central convex region 18' is
substantially pyramidal in shape.
[0036] Figures 9 and 10 illustrate further embodiments, wherein the tablet is essentially
rectangular in shape. Referring to Figure 9, tablet 10" defines paired broad outer
surfaces 12", which can be seen to be convex, in similar fashion to surfaces 12 of
Figure 1. Thus, broad outer surfaces 12" are comprised of intermediate convex regions
18", and peripheral convex regions 20" lying adjacent thereto. The separating ridge
22" may vary in configuration from that of a circle, illustrated as 22 in Figure 1
and as 22" in Figure 9, to that of a rectangle 22" in Figure 10 following essentially
in parallel fashion a surface perimeter 14" in Figure 10. In the case of the embodiment
of Figure 9, the peripheral convex region 20" appears as four triangular subsections
equally distributed in the corners of the rectangular perimeter 14", while in Figure
10, peripheral convex region 20" is essentially rectangular and surrounds the intermediate
rectangular convex region 18".
[0037] The tablets of Figures 9 and 10 differ further in the configuration of the rim 16",
as it can be seen to vary in thickness from a minimal thickness at the corners of
the tablet, to a maximum thickness at the points centrally intermediate the corners.
The provision of a tablet in rectangular configuration as shown can be appreciated
to make further economic use of the package pouch, as, in the instance where the pouch
is rectangular, the shape of the tablet assures efficient utilization of defined space.
The other advantages discussed above with respect to the tablet of the present invention
are equally demonstrated by this further embodiment, as the convex distention of the
broad outer surfaces 12" reduces the strain that is normally imposed upon the package
pouch.
[0038] As noted earlier, the tablets prepared in accordance with the present invention may
contain a variety of ingredients for various uses, including household and medicinal
application. The present tablet configurations are particularly useful in the instance
where tablets are prepared for use as, for instance, denture cleansers and toilet
bowl cleaners. In such instances, the tablet-forming material may include active ingredients
such as cleansers or pharmaceutical compositions, again depending upon the particular
utility of the tablet.
1. A tablet comprising: two broad outer surfaces which are generally opposed to each
other, are generally spaced apart from each other, and terminate in spaced-apart surface
perimeters; and a continuous rim extending transversely between the surface perimeters;
wherein at least one of the broad outer surfaces is distended convexly away from the
other: characterised in that the at least one broad outer surface, over at least a
majority of vertical planes passing through the centre of the tablet when the latter
is disposed with the rim generally vertical, either (a) consists of a central convex
region and a peripheral convex region adjacent thereto, the external angle between
the central convex region and the peripheral convex region being greater than 180°,
or (b) comprises a central region, a peripheral convex region and, between the central
and peripheral regions, an intermediate convex region, the external angle between
the peripheral convex region and the intermediate convex region being greater than
180° and the external angle between the intermediate convex region and the central
region also being greater than 180°.
2. A tablet according to Claim 1, wherein both of the broad outer surfaces are distended
convexly away from each other thereby defining a tablet having a generally bi-convex
configuration.
3. A tablet according to Claim 2, wherein the broad surfaces are symmetrically convexly
distended.
4. A tablet according to Claim 1, 2 or 3, wherein the continuous rim defines a cylindrical
surface which is circular or non-circular.
5. A tablet according to any preceding claim, which also includes a continuous ridge
defined on the exterior of the or each convexly distended broad outer surface at the
junction of the central region or intermediate convex region and the peripheral convex
region.
6. A tablet according to any preceding claim, wherein regardless of whether or not
there is an intermediate region between the central region and the peripheral convex
region, the central region of the or each broad outer surface defines an essentially
conical shape.
7. A tablet according to any one of Claims 1 to 5, wherein, regardless of whether
or not there is an intermediate convex region between the central region and the peripheral
convex region, the central region of the or each broad outer surface defines an essentially
pyramidal shape.
8. A tablet according to any one of Claims 1 to 5, wherein the intermediate convex
region, when present, of the or each broad outer surface defines an essentially frustoconical
shape.
9. A tablet according to any one of Claims 1 to 5, wherein the intermediate convex
region, when present, of the or each broad outer surface defines an essentially frusto-pyramidal
shape.
10. A tablet according to Claim 8 or 9, wherein, centrally of the or each intermediate
convex region, is a planar central region.
11. A tablet according to any preceding claim, wherein the peripheral convex region
of the or each broad outer surface defines an essentially frustoconical shape.
12. A tablet according to any preceding claim, wherein the surfaces of the peripheral
regions of the opposed broad outer surfaces subtend between them an acute angle.
13. A tablet according to Claim 12, wherein the acute angle is less than 45°.
14. A tablet according to any preceding claim, wherein, over at least a majority of
said vertical planes, the radial dimension of the central region and/or intermediate
convex region (when present) is in the range from 20% to 80% of the total radial dimension
of the broad outer surface.
15. Atablet according to Claim 14, wherein, over at least a majority of said vertical
planes, the radial dimension of the central region and/or intermediate convex region
is in the range from 30% to 70% of the total radial dimension of the broad outer surface.
16. A tablet according to Claim 14, wherein, over at least a majority of said vertical
planes, the radial dimension of the central region and/or intermediate convex region
is in the range from 50% to 65% of the total radial dimension of the broad outer surface.
17. A tablet according to any preceding claim and constituted at least partially by
a household cleaning composition.
18. A tablet according to any one of Claims 1 to 16 and constituted at least partially
by a medicinal compound.
19. A sealably packaged tablet comprising, in combination:
a tablet package comprising opposed package sheets peripherally adhered to each other,
and defining centrally between them an air-tight tablet pouch; and
a tablet according to any preceding claim, located in the tablet pouch.
20. A combination according to Claim 19, wherein the package sheets are formed of
a material comprising aluminium foil.
21. A combination according to Claim 20, wherein the foil has a thickness of the order
of 0.0007" gauge (0.00178 cm gauge).
22. A method of making a tablet according to any one of Claims 1 to 18, which method
comprises:
providing a tablet die having a configuration complementary to that of the tablet
according to any one of Claims 1 to 18 which is to be produced,
loading the tablet die with tablet-forming material, and compressing the tablet-forming
material within the tablet die to form a tablet having the desired configuration specified
in any one of Claims 1 to 18.
23. A method according to Claim 22, wherein the die defines concavities on both broad
surfaces thereof, and
the tablet-forming material is compressed to form a tablet having two opposed, spaced-apart,
convex broad outer surfaces.
1. Tablette mit zwei im allgemeinen gegenüberliegenden, im allgemeinen voneinander
im Abstand befindlichen und in im Abstand befindlichen Flächenumfängen endenden äußeren
Breitflächen und einem durchgehenden, quer zwischen den Flächenumfängen verlaufenden
Rand, wobei zumindest eine der äußeren Breitflächen von der anderen weg konvex gewölbt
ist, dadurch gekennzeichnet, daß die zumindest eine äußere Breitfläche bei sich im
allgemeinen in vertikaler Position befindlichem Rand der Tablette über zumindest einen
Großteil der durch den Mittelpunkt der Tablette gehenden vertikalen Ebenen entweder
(a) aus einem zentralen konvexen Bereich und einem an diesen anschließenden peripheren
konvexen Bereich besteht, wobei der Außenwinkel zwischen dem zentralen konvexen Bereich
und dem peripheren konvexen Bereich größer als 180° ist, oder (b) einen zentralen
Bereich, einen peripheren konvexen Bereich und zwischen dem zentralen und dem peripheren
Bereich einen konvexen Zwischenbereich umfaßt, wobei der Außenwinkel zwischen dem
peripheren konvexen Bereich und dem konvexen Zwischenbereich größer als 180° und der
Außenwinkel zwischen dem konvexen Zwischenbereich und dem zentralen Bereich ebenfalls
größer als 180° ist.
2. Tablette nach Anspruch 1, bei welcher beide äußern Breitflächen voneinander weg
konvex gewölbt sind, wodurch eine Tablette von im allgemeinen bikonvexer Gestalt definiert
ist.
3. Tablette nach Anspruch 2, bei welcher die Breitflächen symmetrisch konvex gewölbt
sind.
4. Tablette nach Anspruch 1, 2 oder 3, bei welcher der durchgehende Rand eine kreisförmige
oder nicht kreisförmige Zylinderfläche festlegt.
5. Tablette nach einem vorhergehenden Anspruch, welche weiters eine an der Außenseite
der oder jeder konvex gewölbten äußeren Breitfläche am Übergang des zentralen Bereichs
bzw. des konvexen Zwischenbereichs und des peripheren konvexen Bereichs festgelegte
durchgehende Kante umfaßt.
6. Tablette nach einem vorhergehenden Anspruch, bei welcher der zentrale Bereich der
oder jeder äußeren Breitfläche eine im wesentlichen konische Form begrenzt, unabhängig
davon, ob zwischen dem zentralen Bereich und dem peripheren konvexen Bereich ein Zwischenbereich
vorhanden ist oder nicht.
7. Tablette nach einem der Ansprüche 1 bis 5, bei welcher der zentrale Bereich der
oder jeder äußeren Breitfläche eine im wesentlichen pyramidische Form begrenzt, unabhängig
davon, ob zwischen dem zentralen Bereich und dem, peripheren konvexen Bereich ein
konvexer Zwischenbereich vorhanden ist oder nicht.
8. Tablette nach einem der Ansprüche 1 bis 5, bei welcher der konvexe Zwischenbereich
der oder jeder äußeren Breitfläche, wenn vorhanden, eine im wesentlichen kegelstumpfförmige
Form begrenzt.
9. Tablette nach einem der Ansprüche 1 bis 5, bei welcher der konvexe Zwischenbereich
der oder jeder äußeren Breitfläche, wenn vorhanden, eine im wesentlichen pyramidenstumpfförmige
Form begrenzt.
10. Tablette nach Anspruch 8 oder 9, bei welcher in der Mitte des oder jedes konvexen
Zwischenbereichs ein planer zentraler Bereich vorhanden ist.
11. Tablette nach einem vorhergehenden Anspruch, bei welcher der periphere konvexe
Bereich der oder jeder äußeren Breitfläche eine im wesentlichen kegelstumpfförmige
Form begrenzt.
12. Tablette nach einem vorhergehenden Anspruch, bei welcher die Flächen der peripheren
Bereiche der gegenüberliegenden äußeren Breitflächen einen spitzen Winkel einschließen.
13. Tablette nach Anspruch 12, bei welcher der spitze Winkel kleiner als 45° ist.
14. Tablette nach einem vorhergehenden Anspruch, bei welcher die radiale Abmessung
des zentralen Bereichs und/oder konvexen Zwischenbereichs (wenn vorhanden) über zumindest
den Großteil der vertikalen Ebenen im Bereich zwischen 20 und 80 % der gesamten radialen
Abmessung der äußeren Breitfläche liegt.
15. Tablette nach Anspruch 14, bei welcher die radiale Abmessung des zentralen Bereichs
und/ oder konvexen Zwischenbereichs über zumindest den Großteil der vertikalen Ebenen
im Bereich zwischen 30 und 70 % der gesamten radialen Abmessung der äußeren Breitfläche
liegt.
16. Tablette nach Anspruch 14, bei welcher die radiale Abmessung des zentralen Bereichs
und/ oder konvexen Zwischenbereichs über zumindest den Großteil der vertikalen Ebenen
im Bereich zwischen 50 und 65 % der gesamten radialen Abmessung der äußeren Breitfläche
liegt.
17. Tablette nach einem vorhergehenden Anspruch und zumindest teilweise aus einer
Haushaltsreinigungs-Zusammensetzung bestehend.
18. Tablette nach einem der Ansprüche 1 bis 16 und zumindest teilweise aus eine medizinischen
Verbindung bestehend.
19. Dichtverpackte Tablette, umfassend in Kombination
eine Tablettenpackung mit gegenüberliegenden peripher aneinanderhängenden Packungsbögen,
die in der Mitte zwischen ihnen einen luftdichten Tablettenbeutel begrenzen; und
eine Tablette nach einem vorhergehenden Anspruch, welche sich in dem Tablettenbeutel
befindet.
20. Kombination nach Anspruch 19, bei welcher die Packungsbögen aus einem eine Aluminiumfolie
umfassenden Material gebildet sind.
21. Kombination nach Anspruch 20, bei welcher die Folie eine Dicke im Bereich von
0,0007" Feinheit (0,00178 cm Feinheit) aufweist.
22. Verfahren zur Herstellung einer Tablette nach einem der Ansprüche 1 bis 18, welches
Verfahren folgende Schritte umfaßt:
Bereitstellen einer Tablettenform mit einer Gestalt, die komplementär zu jener der
herzustellenden Tablette nach einem der Ansprüche 1 bis 18, ist,
Füllen der Tablettenform mit einem tablettenbildenden Material und Zusammenpressen
des tablettenbildenden Materials innerhalb der Tablettenform zur Formung einer Tablette
mit der gewünschten, in einem der Ansprüche 1 bis 18 spezifizierten Gestalt.
23. Verfahren nach Anspruch 22, bei welchem die Form an beiden Breitflächen Konkavitäten
begrenzt und das tablettenbildende Material zur Formung einer Tablette mit zwei gegenüberliegenden,
im Abstand befindlichen, konvexen äußeren Breitflächen zusammengepreßt wird.
1. Un comprimé comprenant: deux larges surfaces extérieures généralement opposées
l'une à l'autre, généralement écartées l'une de l'autre et se terminant par des périmètres
de surface écartés l'un de l'autre; et une bordure continue s'étendant transversalement
entre les périmètres de surface; dans lequel au moins l'une des larges surfaces extérieures
est éloignée de l'autre par sa convexité; caractérisé en ce qu'au moins l'une des
larges surfaces extérieures, sur au moins une majorité de plans verticaux passant
par le centre du comprimé lorsque celui-ci a sa bordure disposée de façon généralement
verticale, est constituée soit (a) d'une région convexe centrale et d'une région convexe
périphérique adjacente, l'angle extérieur formé entre la région convexe centrale et
la région convexe périphérique étant supérieur à 180°, soit (b) comprend une région
centrale, une région convexe périphérique et, entre les régions centrale et périphérique,
une région convexe intermédiaire, l'angle extérieur formé entre la région convexe
périphérique et la région convexe intermédiaire étant supérieur à 180° et l'angle
extérieur formé entre la région convexe intermédiaire et la région centrale étant
également supérieur à 180°.
2. Un comprimé selon la revendication 1, dans lequel les deux larges surfaces extérieures
sont toutes les deux éloignées l'une de l'autre par leur convexité et définissent
ainsi un comprimé ayant une configuration générale biconvexe.
3. Un comprimé selon la revendication 2, dans lequel les larges surfaces extérieures
sont éloignées l'une de l'autre par une convexité symétrique.
4. Un comprimé selon la revendication 1, 2 ou 3 dans lequel la bordure continue définit
une surface cylindrique qui est circulaire ou non circulaire.
5. Un comprimé selon l'une quelconque des revendications précédentes, comprenant également
une bordure continue définie à l'extérieur de l'une ou de chacune des larges surfaces
extérieures éloignées l'une de l'autre par leur convexité à la jonction de la région
centrale ou de la région convexe intermédiaire et de la région convexe périphérique.
6. Un comprimé selon l'une quelconque des revendications précédentes dans lequel,
qu'il y ait ou non une région intermédiaire entre la région centrale et la région
convexe périphérique, la région centrale de l'une ou de chacune des larges surfaces
extérieure définit une forme sensiblement conique.
7. Un comprimé selon l'une quelconque des revendications 1 à 5, dans lequel, qu'il
y ait ou non une région convexe intermédiaire entre la région centrale et la région
convexe périphérique, la région centrale de l'une ou de chacune des larges surfaces
extérieures définit une forme sensiblement pyramidale.
8. Un comprimé selon l'une quelconque des revendications 1 à 5, dans lequel la région
convexe intermédiaire, lorsqu'elle est présente sur l'une ou chacune des larges surfaces
extérieures, définit une forme sensiblement tronconique.
9. Un comprimé selon l'une quelconque des revendications 1 à 5, dans lequel la région
convexe intermédiaire, lorsqu'elle est présente sur l'une ou chacune des larges surfaces
extérieurs, définit sensiblement une forme de pyramide tronquée.
10. Un comprimé selon la revendication 8 ou 9, dans lequel, au centre de l'une ou
de chacune des régions convexes intermédiaires, se trouve une région centrale plane.
11. Un comprimé selon l'une quelconque des revendications précédentes, dans lequel
la région convexe périphérique de l'une ou de chacune des larges surfaces extérieures
définit une forme sensiblement tronconique.
12. Un comprimé selon l'une quelconque des revendications précédentes, dans lequel
les surfaces des régions périphériques des larges surfaces extérieures opposées sous-tendent
entre elles un angle aigu.
13. Un comprimé selon la revendication 12, dans lequel cet angle aigu est inférieur
à 45°.
14. Un comprimé selon l'une quelconque des revendications précédentes, dans lequel,
sur au moins une majorité desdits plans verticaux, la dimension radiale de la région
centrale et/ou de la région convexe intermédiaire (lorsqu'elle est présente) se situe
dans l'intervalle de 20 à 80% de la dimension radiale totale de la large surface extérieure.
15. Un comprimé selon la revendication 14, dans lequel, sur au moins une majorité
desdits plans verticaux, la dimension radiale de la région centrale et/ou de la région
convexe intermédiaire se situe dans l'intervalle de 30 à 70% de la dimension radiale
totale de la large surface extérieure.
16. Un comprimé selon la revendication 14, dans lequel, sur au moins une majorité
desdits plans verticaux, la dimension radiale de la région centrale et/ou de la région
convexe intermédiaire se situe dans l'intervalle de 30 à 65% de la dimension radiale
totale de la large surface extérieure.
17. Un comprimé selon l'une quelconque des revendications précédentes et constitué
au moins partiellement par une composition ménagène de nettoyage.
18. Un comprimé selon l'une quelconque des revendications 1 à 16 et constitué au moins
partiellement par un composé médicinal.
19. Un comprimé emballé de façon étanche qui comprend en combinaison:
- un emballage de comprimé comprenant des feuilles d'emballage opposées qui adhèrent
en périphérie l'une à l'autre et définissent entre elles en leur centre une poche
à comprimé étanche à l'air; et
- un comprimé selon l'une quelconque des revendications précédentes logé dans la poche
à comprimé.
20. Une combinaison selon la revendication 19, dans laquelle les feuilles d'emballage
sont formées à partir d'un matériau comprenant une feuille d'aluminium.
21. Une combinaison selon la revendication 20, dans laquelle la feuille a une épaisseur
de l'ordre de 0,0007 pouce (0,00178 cm).
22. Un procédé de préparation d'une comprimé selon l'une quelconque des revendications
1 à 18, cette méthode consistant à réaliser un moule à comprimé dont la configuration
soit complémentaire de celle du comprimé selon l'une quelconque des revendications
1 à 18 que l'on doit fabriquer, à charger le moule à comprimé avec du matériau à mouler
le comprimé et à presser ce matériau à former le comprimé dans le moule à comprimé
pour former un comprimé ayant la configuration recherchée spécifiée dans l'une quelconque
des revendications 1 à 18.
23. Un procédé selon la revendication 22, dans lequel le moule définit des concavités
sur les deux larges surfaces de celui-ci et le matériau de formation du comprimé est
pressé pour former un comprimé ayant deux larges surfaces extérieures opposés, convexes,
écartées l'une de l'autre.