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EP 1 152 974 B1 |
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EUROPEAN PATENT SPECIFICATION |
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Mention of the grant of the patent: |
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29.12.2004 Bulletin 2004/53 |
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Date of filing: 10.02.2000 |
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International Patent Classification (IPC)7: B67D 1/08 |
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International application number: |
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PCT/GB2000/000427 |
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International publication number: |
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WO 2000/047514 (17.08.2000 Gazette 2000/33) |
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Keg comprising a valve fitting and a deflector plate
Fass mit Ventilarmatur und Ablenkplatte
Fût muni d'un raccord à soupape et d'un déflecteur
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Designated Contracting States: |
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AT BE CH CY DE DK ES FI FR GB GR IE IT LI LU MC NL PT SE |
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Priority: |
10.02.1999 GB 9902835
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Date of publication of application: |
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14.11.2001 Bulletin 2001/46 |
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Proprietor: Skerra Pty Limited |
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Varroville, NSW 2566 (AU) |
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Inventor: |
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- SKERRA, Helmut, Wilhelm
Varroville, NSW 2566 (AU)
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Representative: Barnfather, Karl Jon, Dr. et al |
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Withers & Rogers,
Goldings House,
2 Hays Lane London SE1 2HW London SE1 2HW (GB) |
| (56) |
References cited: :
WO-A-91/00240 GB-A- 905 125
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WO-A-99/25643 US-A- 3 294 291
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| 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).
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[0001] The invention relates to improvements in containers such as a keg for housing pressurised
fluids like beer. In particular, the invention relates to improvements in fittings
for such kegs which fittings house a valve which facilitates ingress and egress of
pressurised fluid into and out of the keg.
[0002] It is known to provide various forms of fitting for pressurised kegs comprising an
upper flange for attachment of a connector to a feed or outlet pipe. The fitting further
comprises a valve consisting of a movable seal urged by a coiled spring against a
valve seat provided on the under side of the upper flange. The flange is disposed
away from the top wall of a keg to enable attachment of the connector. Additionally,
it is known to provide a centrepiece or downtube away from the fitting to the bottom
of the keg in order to facilitate removal of fluid from the keg.
[0003] However, known kegs and keg fittings require a multiple stage filling process in
order to reduce frothing and to attempt to facilitate complete filling of the keg
to required volumes of fluid such as beer. Using an inverted filling process wherein
the fitting is below the rest of the keg, it is known to begin filling the keg at
a first (low) flow rate or pressure for a short period of time say 5 seconds, followed
by a second stage of filling at a slightly higher speed or pressure for say a further
5 to 10 seconds, followed finally by filling of the rest of the keg at a third higher
speed or pressure for say a further 35 seconds. These times are given for a typical
50 litre keg wherein the final fluid pressure within the keg is less than 4 atmospheres.
This multiple stage filling process is done to achieve relatively quick filling without
excessive frothing of a liquid such as beer.
[0004] One objective of the invention is to provide a fitting for a container such as a
pressurised keg which enables a single stage filling process and/or enables a reduction
in the filling time of a keg. Another object of the invention is to provide a relatively
simple to manufacture and cost effective fitting for kegs. A further object of the
invention is to provide a keg which is easier to manufacture, and or has a valve fitting
that is less likely to cause problematical frothing during filling.
[0005] GB-A-905125 (in particular Figures 1 and 3) describes a container for housing pressurised
fluid, comprising a fitting for attachment to an aperture of a container wall, which
fitting comprises a valve assembly for enabling ingress and egress of fluid into and
out of the container via the aperture and a housing attachable to the wall and operably
surrounding the valve assembly in use. The container also comprises a fluid deflector
(see numerals 14 and 19 on Figure 1 and numerals 20 and 22 on Figure 3) operably located
proximal the valve for deflecting fluid radially away from the aperture.
[0006] According to the invention as defined in claim 1 there is provided a container such
as a keg for housing pressurised fluid like beer, comprising a fitting for attachment
to an aperture in a container wall, which fitting comprises a valve assembly for enabling
ingress and egress of fluid into and out of the container via the aperture, and a
housing attachable to the wall and operably surrounding the valve assembly in use,
wherein the container further comprises a fluid deflector operably located proximal
the valve for deflecting fluid radially away from the aperture, characterised in that
the deflector is attached to the inside of the keg wall having the aperture. In this
specification the term keg and container are used interchangeably to note any kind
of fluid container.
[0007] In one form, the deflector is attached to the inside of the keg wall having the aperture,
for example by welding. In a preferred form the deflector comprises a substantially
flat central region preferably approximately the same size as the aperture. The deflector
preferably has outer legs extending towards the inside wall of the keg and preferably
being adapted for attachment thereto for example by welding. The deflector can comprise
a central aperture for a downtube, and a seat for the upper part (or centre-piece)
of the downtube in order to locate and maintain the position of the downtube. The
downtube can comprise suitable lugs to sit on the seat forming part of the deflector.
[0008] Preferably an aperture is defined by the deflector between the deflector and keg
wall which aperture (possibly comprising two or more sections between legs) is substantially
equal if not greater in size than the cross sectional area of the inlet aperture in
the fitting (ie. through the valve).
[0009] Preferably, the housing comprises a neck and flange above the apertured wall of the
keg, which together with the deflector define a chamber about the valve assembly which
chamber has a radial cross-sectional area at any axial position which is substantially
equal to or preferably greater than the cross-sectional area of a fluid inlet aperture
(12) in the flange thereby to prevent or at least mitigate retardation in the flow
or velocity of fluid into the keg.
[0010] Embodiments of the invention will now be described, by way of example only, with
reference to the accompanying drawings, in which:
FIGURE 1 is a schematic sectional side elevation view of a keg K according to the
invention;
FIGURE 2 is a schematic side elevation view of a fitting at the top of a keg substantially
shown in Figure 1;
FIGURE 3 is a plan elevation view from below of the fitting shown in Figure 2 in an
assembled form;
FIGURE 4 is a sectional side elevation view of the fitting shown in Figures 2 and
3 in an assembled form;
FIGURE 5 is a schematic plan elevation view from below of a second embodiment of a
fitting according to the invention as shown in Figure 6; and
FIGURE 6 is a sectional side elevation view of a second embodiment of a fitting and
keg according to the invention.
[0011] Referring to Figure 1 there is shown a keg K according to the invention comprising
a top wall T having a central aperture about which is formed a neck N for a fitting
F to which a connector is attached in use for filling or emptying keg K. Fitting F
further comprises a spring S for resiliently urging a seal against a valve seat on
the under side of the top flange of fitting F. Spring S co-operates in this regard
with part (shoulder 20 described later) of a centrepiece or downtube C which facilitates
removal of fluid from the keg in use. Keg K further comprises a deflector D for deflecting
movement of fluid sideways or radially into the barrel during filling as will become
apparent in relation to Figures 2 to 4.
[0012] Referring to Figures 2 to 4, there is shown in greater detail the components of fitting
F which comprises an upper flange 10 connected for example by welding to the upper
perimeter or shoulder of a neck N formed in top wall T of keg K. For example, neck
N can be formed by deep drawing the top wall T about the substantially centrally disposed
aperture. Flange 10 further comprises an aperture 12 and an outer rim 14 for attachment
to a connector having feed or outlet pipes for a fluid. Fitting F further comprises
a seal 16 which fits into a cup 18 at the upper end of spring S. Spring S is located
against the shoulder 20 provided on centrepiece C from which project upper and lower
lugs 22a and 22b respectively. This shoulder region 20 of centrepiece C further comprises
a groove 24 for receiving a locating pin 26 at the bottom of spring S.
[0013] Keg K further comprises a deflector D consisting principally of a plate 30 having
a substantially centrally located aperture 32 about which extends a central flat region
34 having a series of slots 35 for receiving lower lugs 22b. An angled region 36 extends
away from central region 34 to a series, in this case three, legs which extend between
the deflector plate and the inside surface of top wall T, whereat the deflector and
top wall can be welded together for example.
[0014] To assemble the fitting F, spring S is lowered to engage pin 26 in groove 24 and,
possibly using a special tool co-operating with rim 14 of flange 10, seal 16 is caused
to pass through aperture 12 and locate in the seat on the underside of flange 10 adjacent
the aperture 12. This action typically requires compressing the seal. Just prior to
locating the seal, the lugs 22b of shoulder region 20 of centrepiece C are located
in corresponding slots 35 in deflector D and centrepiece C can be rotated to say 60°
thereby to enable lugs 22a and 22b to co-operate with central region 34 of Deflector
D to hold centrepiece C in a fixed axial position. Hence, a reactive force is provided
through the connection of deflector D and the inside of top wall T against the action
of spring S which biases seal 16 against a seat on the under side of flange 10.
[0015] Beneficially, regions 34 and 36 of deflector D provide a sealed plate of substantially
equal cross sectional area to the radial cross-section of the chamber CH below flange
10. Additionally, the diameter of neck N and distance between flange 10 and deflector
D enable a relatively large chamber CH to be provided thereby enabling smooth transfer
of fluid between an inlet pipe (not shown) and the main body of the keg. The apertures
A provided between the legs 38 of deflector D assist together with regions 34 and
36 of the deflector plate to deflect incoming fluid in the direction of arrows L,
that is radially away from the fitting. Beneficially, the fitting F shown in Figures
2 to 4 enables a single speed or pressurised transfer to take place thus avoiding
the need for stepped speed of transfer. In this way, it has been found for example
that the filling time can be reduced for a 50 litre keg by up to 30% if full speed
is used instead of filling in stages. Accordingly, full flow of fluid can be achieved
at all times in the filling of keg K according to the invention.
[0016] A further embodiment of the invention is shown in Figures 5 and 6 wherein in this
embodiment the keg and fitting comprise substantially similar components to those
shown in Figures 2 to 4 and accordingly like components are labelled using the same
two digit reference number prefixed with the number 1.
[0017] In this embodiment, an open ended cylindrical neck N is provided having a rebated
lower end 113 for attachment to the rim of the aperture formed in top wall T of the
keg, for example attachment can be by welding. Further, the upper rim 111 of neck
N is adapted for attachment to the under side of flange 110 again for example by welding
into a rebated shoulder for example.
1. A container such as a keg (K) for housing pressurised fluid like beer, comprising
a fitting (F) for attachment to an aperture (12) in a container wall (T), which fitting
(F) comprises a valve assembly for enabling ingress and egress of fluid into and out
of the container (K) via the aperture (12), and a housing (N, F) attachable to the
wall (T) and operably surrounding the valve assembly in use, wherein the container
(K) further comprises a fluid deflector (D) operably located proximal the valve for
deflecting fluid radially away from the aperture (12) and characterised in that the deflector (D) is attached to the inside of the keg wall (T) having the aperture
(12).
2. A container according to Claim 1 wherein the deflector (D) is attached to the inside
of the keg wall (T) having the aperture (12) by welding.
3. A container according to Claim 1 or 2 wherein the deflector (D) comprises a substantially
flat central region preferably approximately the same size as the aperture (12).
4. A container according to Claim 1, 2 or 3 wherein the deflector (D) has one or more
outer legs extending towards the inside wall (T) of the keg (K) and preferably being
adapted for attachment thereto for example by welding.
5. A container according to Claim 1, 2, 3 or 4 wherein the deflector (D) comprises a
central aperture for a downtube (C) and a seat for the upper part or centre-piece
of the downtube (C) in order to locate and maintain the position of the downtube (C).
6. A container according to Claim 5 wherein the downtube (C) comprises suitable lugs
(22a, 22b) to sit on the seat forming part of the deflector (D).
7. A container according to any preceding claim wherein an aperture is defined by the
deflector (D) between the deflector and keg wall (T) which aperture possibly comprising
two or more sections between one or more legs is substantially equal or greater in
size than the cross sectional area of the inlet aperture (12) in the fitting (F).
8. A container according to any preceding claim wherein the housing (N, F) comprises
a neck (N) and flange (F) above the apertured wall (T) of the keg (K) which together
with the deflector (D) define a chamber about the valve assembly which chamber has
a radial cross-sectional area at any axial position which is substantially equal to
or preferably greater than the cross-sectional area of a fluid inlet aperture (12)
in the flange (F) thereby to prevent or at least mitigate retardation in the flow
or velocity of fluid into the container (K).
1. Ein Behälter, wie ein Fass (K) zur Aufnahme einer eines unter Druck gesetzten Fluids,
wie Bier, bestehend aus einer Armatur (F) zur Verbindung mit einer Öffnung (12) in
einer Containerwand (T), wobei die Armatur (F) ein Ventil für Das Eintreten und Austreten
des Fluids in und aus dem Behälter (K) durch die Öffnung (12) ermöglicht, und einem
Gehäuse, das mit der Wand (T) verbindbar ist und betriebsfähig das Ventil bei der
Verwendung umschließt, wobei der Behälter (K) ferner einen Fluiddeflektor (D) aufweist,
der betriebsfähig proximal von dem Ventil angeordnet ist, um das Fluid radial von
der Öffnung (12) abzulenken, dadurch gekennzeichnet, dass der Deflektor (D) an der Innenseite der Fasswand (T) mit der Öffnung (12) verbunden
ist.
2. Behälter gemäß Anspruch 1, wobei der Deflektor (D) an der Innenseite der Fasswand
(T) mit der Öffnung (12) durch verschweißen befestigt ist.
3. Behälter gemäß Anspruch 1 oder 2, wobei der Deflektor eine im Wesentlichen flache
zentrale Region aufweist, die vorzugsweise dieselbe Größe wie die Öffnung (12) aufweist.
4. Behälter gemäß Anspruch 1, 2 oder 3 wobei der Deflektor (D) ein oder mehrere Beine
aufweist, die sich in Richtung der Innenwand (T) des Fasses (K) erstrecken und vorzugsweise
zur Verbindung mit diesem ausgebildet sind, beispielsweise durch verschweißen.
5. Behälter gemäß Anspruch 1, 2, 3 oder 4 wobei der Deflektor (D) eine zentrale Öffnung
für ein Steigrohr (C) umfasst und einen Sitz für den oberen Teil des Steigrohrs (C)
vorsieht, um das Steigrohr (C) zu positionieren und in der Lage festzuhalten.
6. Behälter gemäß Anspruch 5, wobei das Steigrohr (C) geeignete Vorsprünge (22a,22b)
aufweist, die auf dem Teil des Deflektors (D) bildenden Sitz passen.
7. Behälter gemäß einem der vorhergehenden Ansprüche, wobei eine Öffnung durch den Deflektor
(D) zwischen dem Deflektor und der Fasswand (T) gebildet wird, welche unter Umständen
zwei oder mehr Abschnitte zwischen den einen oder mehreren Beinen aufweist, im Wesentlichen
gleich groß oder größer ist als die Querschnittsfläche der Eingangsöffnung in der
Armatur (F).
8. Behälter gemäß jedem der vorhergehenden Ansprüche, wobei das Gehäuse (N, F) einen
Hals (N) und einen Flansch (F) oberhalb der geöffneten Wand (T) des Fasses (K) aufweist,
die zusammen mit dem Deflektor (D) eine Kammer um das Ventil bilden, welche eine Querschnittsfläche
in jeder axialen Position aufweist, die im Wesentlichen gleich oder vorzugsweise größer
als die Querschnittsfläche der Fluideinlassöffnung (12) in dem Flansch (F) ist, um
somit die Verzögerung der Einströmgeschwindigkeit in den Behälter (K) zu vermeiden
oder zu reduzieren.
1. Récipient, tel qu'un tonnelet (K), destiné à contenir un fluide sous pression, tel
que de la bière, comprenant un embout (F) de fixation à une ouverture (12) de paroi
formée dans une paroi (T) du récipient, l'embout (F) comportant un ensemble à soupape
destiné à permettre l'entrée et la sortie de fluide du récipient (K) par l'ouverture
(12), et un boîtier (N, F) destiné à être fixé à la paroi (T) et entourant pendant
le fonctionnement l'ensemble à soupape, dans lequel le récipient (K) comporte en outre
un déflecteur de fluide (D) disposé pendant le fonctionnement du côté interne de la
soupape et destiné à dévier le fluide radialement vers l'extérieur de l'ouverture
(12), caractérisé en ce que le déflecteur (D) est fixé à l'intérieur de la paroi (T) du tonnelet ayant l'ouverture
(12).
2. Récipient selon la revendication 1, dans lequel le déflecteur (D) est fixé à l'intérieur
de la paroi (T) du tonnelet ayant l'ouverture (12) par soudage.
3. Récipient selon la revendication 1 ou 2, dans lequel le déflecteur (D) a une région
centrale pratiquement plate qui a de préférence approximativement la même dimension
que l'ouverture (12).
4. Récipient selon la revendication 1, 2 ou 3, dans lequel le déflecteur (D) possède
une ou plusieurs branches externes s'étendant vers la paroi interne (T) du tonnelet
(K) et adaptées de préférence à la fixation à celle-ci par exemple par soudage.
5. Récipient selon la revendication 1, 2, 3 ou 4, dans lequel le déflecteur (D) a une
ouverture centrale destinée à un tube descendant (C) et un siège pour la partie supérieure
ou pièce centrale du tube descendant (C) afin que la position du tube descendant (C)
soit déterminée et maintenue.
6. Récipient selon la revendication 5, dans lequel le tube descendant (C) a des pattes
convenables (22a, 22b) destinées à se loger sur le siège faisant partie du déflecteur
(D).
7. Récipient selon l'une quelconque des revendications précédentes, dans lequel une ouverture
est délimitée par le déflecteur (D) entre le déflecteur et la paroi (T) du tonnelet,
cette ouverture, qui comprend éventuellement au moins deux tronçons placés entre une
ou plusieurs branches, ayant une dimension pratiquement égale ou supérieure à la section
de l'ouverture (12) d'entrée dans l'embout (F).
8. Récipient selon l'une quelconque des revendications précédentes, dans lequel le boîtier
(N, F) comporte un col (N) et un flasque (F) au-dessus de la paroi (T) du tonnelet
(K) ayant l'ouverture et, avec le déflecteur (D), délimite une chambre autour de l'ensemble
à soupape, cette chambre ayant une section radiale en position axiale quelconque qui
est pratiquement égale ou de préférence supérieure à la section d'une ouverture (12)
d'entrée de fluide dans le flasque (F), si bien que le retard à l'écoulement du fluide
ou la réduction de la vitesse du fluide dans le récipient (K) est empêché ou au moins
réduit.