| (19) |
 |
|
(11) |
EP 0 855 951 B1 |
| (12) |
EUROPEAN PATENT SPECIFICATION |
| (45) |
Mention of the grant of the patent: |
|
21.04.2004 Bulletin 2004/17 |
| (22) |
Date of filing: 15.10.1996 |
|
| (51) |
International Patent Classification (IPC)7: B28B 21/88 // B28B7/30 |
| (86) |
International application number: |
|
PCT/DK1996/000441 |
| (87) |
International publication number: |
|
WO 1997/014544 (24.04.1997 Gazette 1997/18) |
|
| (54) |
A COLLAPSIBLE CORE
ZUSAMMENKLAPPBARER KERN
NOYAU COMPRESSIBLE
|
| (84) |
Designated Contracting States: |
|
AT DE GB |
| (30) |
Priority: |
16.10.1995 DK 116595
|
| (43) |
Date of publication of application: |
|
05.08.1998 Bulletin 1998/32 |
| (73) |
Proprietor: PEDERSHAAB A/S |
|
9700 Bronderslev (DK) |
|
| (72) |
Inventor: |
|
- HVIDEGAARD, Johannes
DK-9700 Bronderslev (DK)
|
| (74) |
Representative: Boesen, Johnny Peder et al |
|
Zacco Denmark A/S
Hans Bekkevolds Allé 7 2900 Hellerup 2900 Hellerup (DK) |
| (56) |
References cited: :
DE-C- 212 494 US-A- 1 540 185
|
US-A- 1 101 204 US-A- 3 570 802
|
|
| |
|
|
|
|
| |
|
| 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] The present invention concerns a collapsible core for the casting of well articles
or the like and comprising an annular shell which substantially forms a pipe having
a longitudinal axis extending between the ends of the pipe, said shell being flexurally
flexible about the longitudinal axis of the pipe, said shell having opposed side edges
defining a slot along the longitudinal axis on one side of the pipe, said collapsible
core additionally comprising an elongate wedge element, and means for moving the wedge
element between an extended position in which it covers the slot and a retracted position
in which it is pulled out of the slot and into the interior of the collapsible core,
as well as means for pulling the two opposed side edges of the shell toward each other
in the retracted position of the wedge element.
[0002] Such a collapsible core is known e.g. from US Patent No. 3 570 802 and from US Patent
No. 1 101 204, in which the collapsible core is used for casting tubular articles
in concrete, said collapsible core forming part of a complete mould and defining the
mould cavity inwardly. The collapsible core hereby forms the inner contours of the
cast article during the casting process.
[0003] A collapsible core is also known from DE 212 494 which discloses a collapsible core
having three major parts. It has two first shell sections, said sections being hinged
together and a third shell section which in casting position closes the remaining
gap between the first sections and during stripping is retracted to allow the first
sections to be rotated toward each other. When the first sections are rotated, the
dimension of the core is effectively reduced in the direction perpendicular to the
plane of symmetry (the small axis of the egg-shape), whereas the dimension is minimally
reduced in the direction parallel to the plane of symmetry (the large axis of the
egg-shape).
[0004] Also US 1540185 discloses a collapsible core having a longitudinally split shell.
It is evident that the collapse is obtained by elastically deforming a little more
than one longitudinal half of the shell. The deformation gives effective reduction
of the dimension of the core in the direction of the collapse. In the transverse direction,
the dimension is minimally reduced, since a little less than half the core remains
undeformed.
[0005] When casting tubular articles in concrete it is frequently required that the cast
article is stripped as quickly as possible to keep the production and investment costs
as low as possible, so that the mould parts may be used again as quickly as possible
for the casting of a new article.
[0006] The purpose of the collapsible cores is here that their cross-sectional dimension
can be reduced prior to the stripping, so that the collapsible core essentially does
not touch the cast article during stripping. In this respect, the above-mentioned
collapsible cores are superior to other types using rigid mould sections which are
mutually hinged, in that owing to the flexible shell the use of separate hinges is
not necessary to reduce the cross-sectional dimension of the collapsible core. Such
hinges are relatively expensive to provide, as they must be capable of withstanding
the aggressive environment usually involved by casting in concrete because of e.g.
the vibrations which are imparted to the concrete and thereby the mould parts as well
as the abrasive properties of the concrete, and as the hinges must be very tight to
ensure that no concrete and water penetrate into the inner side of the mould core.
[0007] However, the flexible shell involves a problem, as, precisely because of its flexible
properties, the shell may be deformed undesirably when concrete is filled into the
mould in which it constitutes the mould core. Thus, deformation may occur undesirably
because of pressure differences which occur during filling of concrete into the mould,
and which vary in proportion to the depth of the concrete below the surface of the
concrete, as the concrete behaves almost like a viscous liquid, or particularly in
those cases where the mould core is not circularly cylindrical where a given pressure
will deform the core most in the areas where the mould core has the least curvature
or is plane.
[0008] The flexible shell in the stated collapsible cores is constructed such that it exclusively
consists of one area, which is to have sufficient rigidity to avoid undesired deformation,
while being flexible enough to be deformed sufficiently for the core to be stripped
from the concrete article in practice. As mentioned, this will be extremely difficult
when non-circular articles are involved, and in particular in case of small cross-sectional
dimensions. The actual collapse must be of a certain size so that the core will clearly
release the pipe during stripping, as, otherwise, stripping will be difficult without
the concrete article being damaged by the core. If the core tips just slightly, particularly
the pointed end may be damaged, which necessitates subsequent repair of the cast pipe
article, which adds to the costs.
[0009] This results in a constructional compromise between on one hand making the shell
of the core as flexible as possible owing to stripping, and on the other hand making
it rigid owing to the stability, which becomes the more difficult, the smaller the
cross-section of the shell and the greater the length of the core.
[0010] The present invention is intended to provide a collapsible core of the type stated
in the opening paragraph, with the advantages involved by such a core, but with the
undesired deformations in the mould core wall during the filling process being minimized.
[0011] This is achieved by a collapsible core of the type defined in the introductory portion
of claim 1, wherein the shell has at least two first areas separated by at least two
second areas, said areas extending between the ends of the pipe, said second areas
having a flexural flexibility about the longitudinal axis of the pipe which is greater
than the corresponding flexural flexibility in the two first areas, said first and
second areas being provided in that the shell comprises a plate of substantially even
thickness which is provided with a plurality of first and second sets of stiffening
ribs on the side facing inwards, each of said ribs extending along the inner side
of the shell, where the second sets of ribs are placed on each side of the wedge element
and are extending toward the first set of ribs, leaving two second areas of the shell
substantially un-reinforced, said second areas being provided to function as plate
hinges, said first areas being provided respectively by the second sets of ribs along
with the wedge element and by the first set of ribs, and where the second sets of
ribs are preferably of substantially equal length, and where the circumferential area
of the shell, reinforced by the second sets of ribs and the wedge element, is more
than half of the total circumferential area of the shell.
[0012] The shell of the collapsible core may hereby be considerably more rigid in the first
areas than in the second area
s, as the second area
s may be without support or have just a small support. The deformation in the shell
necessary for the stripping is hereby concentrated in the second area
s of the shell, which thus serves as a plate hinge
s allowing the first areas in the shell of the collapsible core to turn with respect
to each other.
[0013] The two second areas, as mentioned, are functioning as plate hinges which allow a
large movement of the side edges. Due to the aspect that the circumferential area
of the shell, reinforced by the second sets of ribs and the wedge element, is more
than half of the total circumferential area, a high degree of collapse is obtained,
said collapse being substantial both in the direction in which the wedge element is
retracted and in the transverse direction. The stability is, however, maintained,
since the widths of the second areas may be limited to only what is necessary to obtain
the plate hinge functions. Further, the use of parts of the shell as plate hinges
prevents concrete from leaking into the core, since no openings are introduced.
[0014] Also, this embodiment is particularly simple to produce, as the ribs may very easily
be formed with e.g. different heights so as to provide different rigidity in the various
areas on the shell of the mould core. In particular, the ribs may advantageously be
constructed such that they are just secured to the plate at the first, relatively
rigid areas.
[0015] In addition, the mould core may e.g. be constructed such that the first, relatively
rigid areas are positioned where the load is greatest, and material may be saved in
the second, relatively flexurally flexible areas, as a greater flexibility is desired
precisely there.
[0016] In a preferred embodiment, the first, relatively rigid areas are wider transversely
to the longitudinal direction of the pipe than the second, relatively flexurally flexible
areas, as this results in a great stability, because the rigid areas are relatively
close to each other and therefore cause some stiffening of the relatively flexurally
flexible areas.
[0017] The means for moving the wedge element to an advanced position in which it covers
the slot, and a retracted position in which it is pulled out of the slot and into
the interior of the collapsible core, may expediently be secured to one or more of
the stiffening ribs, as then no separate means are needed for securing these moving
means, which usually comprise one or more actuators with associated guides or mechanisms
to guide the wedge element during the movement.
[0018] Similarly, the means for pulling the two opposed side edges of the shell toward each
other in the retracted position of the wedge element, may be secured to the opposed
side edges of the shell which define a slot along the longitudinal axis on one side
of the pipe, thereby also obviating separate attachments for these on the shell itself,
which is formed by a plate.
[0019] As, other things being equal, the invention provides relatively great degrees of
collapse, the invention may of course be applied for mould cores of different cross-sectional
shapes, such as circular cross-sections which are used most frequently today. Further,
the invention is advantageous particularly in connection with mould cores having a
cross-section of varying radius of curvature, such as an oval, an egg-shaped, a triangular
or a quadrangular cross-section, as the possibility of concentrating the deformations
in the second relatively flexurally flexible areas upon contraction of the mould core
allows optimum stiffening of the areas along the cross-section of mould which have
a relatively large radius of curvature, and which are therefore relatively weak.
[0020] In a particularly advantageous embodiment, a the first set of stiffening ribs is
secured at the areas having a relatively small radius of curvature, and the second
set of stiffening ribs at the areas having a relatively large radius of curvature,
said first set of stiffening ribs having, at the ends thereof, a part which extends
into the mould and which is provided with an engagement face facing toward the wall
of the mould, said second set of stiffening ribs, at the ends thereof adjoining the
first sets of stiffening ribs, having engagement faces which face inwards in the collapsible
core, said engagement faces being positioned so as to engage each other in the advanced
position of the wedge element and to be disengaged in the retracted position of the
wedge element. This ensures a particularly good support of the areas having a large
radius of curvature, as the ribs supporting these areas are supported by the intermediate
ribs at their ends.
[0021] Particularly where the collapsible core has an egg-shaped cross-section, it may advantageously
be constructed such that the first set of stiffening ribs are formed by ribs secured
to the pointed end of the egg-shaped cross-section, and that the slot and the associated
wedge element are positioned opposite the pointed end, said second set of stiffening
ribs being secured to the egg-shaped cross-section between the slot and the pointed
end. This allows the wedge element and the means for pulling the two opposed side
edges of the shell toward each other in the retracted position of the wedge element
to be positioned in a simple manner at the end facing away from the pointed end, thereby
providing maximum space for these.
[0022] Thus, when the means for moving the wedge element are formed by one or more linear
actuators, whose one end is secured with respect to the collapsible core opposite
the slot, and whose other end is secured to the wedge element, and the means for pulling
the two opposed side edges of the shell toward each other in the retracted position
of the wedge element are formed by a toggle mechanism, which extends between the opposed
shell side edges defining the slot, and which is secured at the toggle with respect
to the other end of the linear actuator, a particularly compact structure of maximum
strength is obtained, as the linear actuators can extend along the greatest principal
axis of the egg-shaped cross-section and may thus be relatively large with respect
to the other dimensions of the collapsible core.
[0023] When the collapsible core is constructed such that one end of the linear actuators
is rigidly mounted on ribs in the pointed end of the collapsible core in such a manner
that the principal axis of the linear actuators is retained in the plane of symmetry
of the collapsible core, it is ensured that the core is torsional stable both in its
casting position and in its stripping position, so that the mould core is not twisted
undesirably in the casting position because of possibly penetrating foreign matter
between the wedge-shaped element and the lips, and because of a possible oblique pull
in the mould during the stripping process.
[0024] The invention will be described more fully below with reference to the drawing, in
which:
Fig. 1 shows a cross-section through a collapsible core according to the invention
in the casting position of the collapsible core.
Fig. 2 shows the cross-section of fig. 1 in the stripping position of the collapsible
core.
Fig. 3 shows a section through a collapsible core, as shown in figs. 1 and 2, seen
from the side.
[0025] Fig. 1 thus shows a cross-section through an egg-shaped collapsible core according
to the invention, it being shown that the collapsible core has an outer shell which
consists of a plate 1 extending all the way round most of the periphery of the cross-section.
However, the plate is terminated with two lips 2 which face each other, said two lips
having interposed between them a wedge-shaped element 3.
[0026] The wedge-shaped element 3 hereby keeps the two lips 2 apart, and the plate 1 together
with the wedge-shaped element 3 forms the wall of the mould core which forms the inner
contours on the cast article during casting. Fig. 1 thus shows the position assumed
by the plate 1 with the lips 2 and by the wedge-shaped element 3, respectively, in
the casting position of the mould core.
[0027] According to the invention, the mould core is provided with stiffening ribs 4 at
the areas having the largest radius of curvature, and a further stiffening rib 5 at
the pointed end of the egg-shaped cross-section, where the area of the smallest radius
of curvature is present.
[0028] As shown, the stiffening rib 5 at the pointed end has flange parts 6 extending into
the interior of the mould core and provided with engagement faces 7 which face outwards
toward the plate 1. Correspondingly, the stiffening ribs 4 at the areas having the
largest radius of curvature are provided with flange parts 8 extending between the
plate 1 and the flange parts 6 on the stiffening rib 4 at the pointed end. As shown,
also the flange parts 8 have engagement faces 9 which engage the engagement faces
7 on the flange parts 6 on the ribs 4 in the position of the mould core shown in fig.
1.
[0029] The engagement faces 7, 9 hereby ensure that the ribs 4 at the areas having the largest
radius of curvature are fixed toward the plate 1 in these areas, and thus stiffen
the mould core in the position shown.
[0030] In addition, a hydraulic cylinder 10 is provided in the interior of the mould core,
and this cylinder is secured at one end to the rib 5 at the pointed end and secured
at the other end to the wedge-shaped element 3, so that the hydraulic cylinder 10
is capable of moving and guiding the wedge-shaped element 3 into and out of slot between
the lips 2 in determined and adjustable positions. This function will be described
more fully with reference to fig. 2.
[0031] The hydraulic cylinder 10 is rigidly secured to the rib 5 by means of a mounting
flange 14 by means of bolts at a distance from both sides of the hydraulic cylinder
10, so that the principal axis 15 of the hydraulic cylinder 10 will always define
the plane of symmetry of the mould core, irrespective of whether the mould core is
in its casting position or its stripping position.
[0032] Further, two rods 11 are secured at their one end via rotatable links to the other
end of the hydraulic cylinder. The rods 11 are moreover secured at their other end
with respect to the lips 2, so that the rods 11 form a toggle mechanism, said hydraulic
cylinder 10 being secured the toggle itself.
[0033] The hydraulic cylinder 10 can hereby move the lips 2 away from and toward each other
and away from and toward the wedge 3 and vary the width of the slot between the lips
2, while the wedge-shaped element 3 is moved into and out of the slot.
[0034] It will moreover be seen that the hydraulic cylinder 10 is secured to the rib 5 at
the pointed end via a support element 12.
[0035] Fig. 2 shows the same cross-section as is shown in fig. 1, but with the difference
that the wedge-shaped element 3 has been pulled into the mould core by the hydraulic
cylinder 10, and the lips 2 have been pulled toward each other by means of the toggle
formed by the rods 11, so that the mould core has been deformed to assume a reduced
cross-sectional area, the area marked in black showing how much the mould core collapses
by this deformation.
[0036] According to the invention, the deformation is concentrated in the areas A, as the
plate 1 is not secured at these areas A either to the ribs 4 or to the rib 5 at the
pointed end.
[0037] Fig. 3 shows a sectional view longitudinally through the collapsible core of figs.
1 and 2, it being seen that there are two identical sets of ribs with associated hydraulic
cylinders 10. Mounted between these are three further sets of ribs, which in principle
operate in the same manner as the ribs 4, 5 of figs. 1 and 2, thereby additionally
contributing to stiffening the mould.
[0038] Clearly, in addition to the embodiment shown, the invention may be applied in connection
with mould cores of other cross-sections, such as circular and edged cross-sections.
Further, the toggle formed by the rods 11 may be constructed in many other ways than
the one shown and optionally be replaced by an entirely different structure, optionally
using separate actuators for moving the wedge-shaped element 3 and the lips 2, respectively.
[0039] In view of the present invention, the skilled person will also be able to construct
the stiffening ribs in many different ways, depending on the situation of use, such
as e.g. the cross-sectional geometry of the mould core. It is also contemplated that
it may be expedient to have more separate ribs than shown in connection with the embodiment
concerned, which, however, is considered to be optimum for egg-shaped cross-sectional
geometries.
1. A collapsible core for casting e.g. tubular well articles, comprising an annular shell
(1) which substantially forms a pipe having a longitudinal axis extending between
the ends of the pipe, said shell (1) being flexurally flexible about the longitudinal
axis of the pipe, said shell (1) having opposed side edges (2) defining a slot along
the longitudinal axis on one side of the pipe, said collapsible core additionally
comprising an elongate wedge element (3), and means (10) for moving the wedge element
(3) between an advanced position in which it covers the slot, and a retracted position
in which it is pulled out of the slot and into the interior of the collapsible core,
as well as means (11) for pulling the two opposed side edges (2) of the shell (1)
toward each other in the retracted position of the wedge element (3),
characterized in that the shell (1) has at least two first areas separated by at least two second areas (A), said areas extending between the ends of the pipe, said second areas (A) having
a flexural flexibility about the longitudinal axis of the pipe which is greater than
the corresponding flexural flexibility in the two first areas, said first and second areas being provided in that the shell comprises a plate of substantially even thickness which is provided with
a plurality of first and second sets of stiffening ribs (5, 4) on the side facing
inwards, each said ribs (5,4) extending along the inner side of the shell (1), where
the second sets of ribs (4) are placed on each side of the wedge element (3) and are
extending toward the first set of ribs (5), leaving two second areas (A) of the shell
substantially unreinforced, said second areas (A) being provided to function as plate
hinges, said first areas being provided respectively by the second sets of ribs (4)
along with the wedge element (3) and by the first set of ribs (5), and where the second
sets of ribs (4) are preferably of substantially equal length, and where the circumferential
area of the shell, reinforced by the second sets of ribs (4) and the wedge element
(3), is more than half the total circumferential area of the shell.
2. A collapsible core according to claim 1, characterized in that the second areas (A) are smaller transversely to the longitudinal direction of the
pipe than the first areas.
3. A collapsible core according to claim 1 or 2, cha racterized in that the plate (1)
is secured solely to the stiffening ribs (4,5 ) at the first areas.
4. A collapsible core according to one of the preceding claims,
characterized in that the means for moving the wedge element (3) between an advanced position in which
it covers the slot, and a retracted position in which it is pulled out of the slot
and into the interior of the collapsible core, are secured to one or more of the stiffening
ribs (5).
5. A collapsible core according to one of the preceding claims, characterized in that the means (11) for pulling the two opposed side edges (2) of the shell toward each
other in the retracted position of the wedge element (3), are secured to the opposed
side edges (2) of the shell which define a slot along the longitudinal axis on one
side of the pipe.
6. A collapsible core according to one of the preceding claims, characterized in that the pipe has a cross-section of varying radius of curvature, such as an oval, an
egg-shaped, a triangular or a quadrangular cross-section.
7. A collapsible core according to one of claims 3 and 6, characterized in that the first set of stiffening ribs (5) is secured at the areas having a relatively
small radius of curvature, and the second set of stiffening ribs (4) at the areas
having a relatively large radius of curvature, said first set of stiffening ribs (5)
having, at the ends thereof, a part (6) which extends into the mould and which is
provided with an engagement face (7) facing toward the wall of the mould, said second
set of stiffening ribs (4), at the ends (8) thereof adjoining the first sets of stiffening
ribs (5), having engagement faces (9) which face inwards in the collapsible core,
said engagement faces (8, 9) being positioned so as to engage each other in the advanced
position of the wedge element (3) and to be disengaged in the retracted position of
the wedge element (3).
8. A collapsible core according to claim 7, characterized in that it has an egg-shaped cross-section, said first set of stiffening ribs (5) being formed
by ribs secured to the pointed end of the egg-shaped cross-section, and that the slot
and the associated wedge element (3) are positioned opposite the pointed end, said
second set of stiffening ribs (4) being secured to the egg-shaped cross-section between
the slot and the pointed end.
9. A collapsible core according to claim 8, characterized in that the means for moving the wedge element are formed by one or more linear actuators
(10), whose one end is secured with respect to the collapsible core opposite the slot,
and whose other end is secured to the wedge element (3), and that the means for pulling
the two opposed side edges of the shell toward each other in the retracted position
of the wedge element are formed by a toggle mechanism which extends between the opposed
side edges (2) of the shell defining the slot, and which is secured at the toggle
with respect to the other end of the linear actuator (10).
10. A collapsible core according to claim 9, char acterized in that one end of the linear
actuators (10) is rigidly mounted on ribs (5) in the pointed end of the collapsible
core in such a manner that the principal axis (15) of the linear actuators is retained
in the plane of symmetry of the collapsible core.
1. Zusammenklappbarer Kern zum Gießen z.B. röhrenförmiger Schachtartikel, umfassend eine
ringförmige Ummantelung (1), die im Wesentlichen ein Rohr bildet, das eine Längsachse
aufweist, die sich zwischen den Rohrenden erstreckt, wobei die Ummantelung (1) um
die Längsachse des Rohres herum biegefähig elastisch ist, wobei die Ummantelung (1)
gegenüberliegende Seitenränder (2) aufweist, die an der Längsachse entlang auf einer
Seite des Rohrs einen Schlitz festlegen, wobei der zusammenklappbare Kern zusätzlich
ein längliches Keilelement (3) und Mittel (10), um das Keilelement (3) zwischen einer
vorgerückten Stellung, in der es den Schlitz verdeckt, und einer zurückgezogenen Stellung,
in der es aus dem Schlitz und in den zusammenklappbaren Kern hinein gezogen ist, zu
bewegen, sowie Mittel (11), um die beiden gegenüberliegenden Seitenränder (2) der
Ummantelung (1) auf einander zu in die zurückgezogene Stellung des Keilelements (3)
zu ziehen, umfasst,
dadurch gekennzeichnet, dass die Ummantelung (1) mindestens zwei erste Bereiche umfasst, die durch mindestens
zwei zweite Bereiche (A) getrennt sind, wobei die Bereiche sich zwischen den Rohrenden
erstrecken, wobei die zweiten Bereiche (A) eine biegefähige Elastizität um die Längsachse
des Rohres herum aufweisen, die größer ist als die entsprechende biegefähige Elastizität
in den beiden ersten Bereichen, wobei die ersten und zweiten Bereiche bereitgestellt
werden, indem die Ummantelung eine im Wesentlichen gleichmäßig dicke Platte umfasst,
die mit einer Vielzahl erster und zweiter Gruppen von Versteifungsrippen (5, 4) auf
der nach innen weisenden Seite bereitgestellt wird, wobei sich jede der Rippen (5,
4) an der Innenseite der Ummantelung (1) entlang erstreckt, wo die zweiten Rippengruppen
(4) auf beiden Seiten des Keilelements (3) angeordnet sind und sich auf die erste
Rippengruppe (5) zu erstrecken, wobei sie zwei zweite Bereiche (A) der Ummantelung
im Wesentlichen unverstärkt lassen, wobei die zweiten Bereiche (A) bereitgestellt
werden, um als Plattenscharniere zu dienen, wobei die ersten Bereiche jeweils durch
die zweiten Rippengruppen (4) zusammen mit dem Keilelement (3) und durch die erste
Rippengruppe (5) bereitgestellt werden, und wobei die zweiten Rippengruppen (4) bevorzugt
im Wesentlichen gleich lang sind, und wobei der Umfangsbereich der Ummantelung, der
von den zweiten Rippengruppen (4) und dem Keilelement (3) verstärkt wird, mehr als
der Hälfte des gesamten Umfangsbereichs der Ummantelung entspricht.
2. Zusammenklappbarer Kern nach Anspruch 1, dadurch gekennzeichnet, dass die zweiten Bereiche (A) quer zu der Längsrichtung des Rohres kleiner sind als die
ersten Bereiche.
3. Zusammenklappbarer Kern nach Anspruch 1 oder 2, dadurch gekennzeichnet, dass die Platte (1) nur an den Versteifungsrippen (4, 5) in den ersten Bereichen befestigt
ist.
4. Zusammenklappbarer Kern nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass die Mittel, um das Keilelement (3) zwischen einer vorgerückten Stellung, in der es
den Schlitz verdeckt, und einer zurückgezogenen Stellung, in der es aus dem Schlitz
und in den zusammenklappbaren Kern hinein gezogen wird, zu bewegen, an einer oder
mehreren der Versteifungsrippen (5) befestigt sind.
5. Zusammenklappbarer Kern nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass die Mittel (11), um die beiden gegenüberliegenden Seitenränder (2) der Ummantelung
auf einander zu in die zurückgezogene Stellung des Keilelements (3) zu ziehen, an
den gegenüberliegenden Seitenrändern (2) der Ummantelung, die einen Schlitz an der
Längsachse entlang auf einer Seite des Rohres festlegen, befestigt sind.
6. Zusammenklappbarer Kern nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass das Rohr einen Querschnitt mit veränderlichem Bogenradius, wie etwa einen ovalen,
eiförmigen, dreieckigen oder viereckigen Querschnitt, aufweist.
7. Zusammenklappbarer Kern nach einem der Ansprüche 3 und 6, dadurch gekennzeichnet, dass die erste Gruppe von Versteifungsrippen (5) an den Bereichen, die einen relativ kleinen
Bogenradius aufweisen, und die zweite Gruppe von Versteifungsrippen (4) an den Bereichen,
die einen relativ großen Bogenradius aufweisen, befestigt ist, wobei die erste Gruppe
von Versteifungsrippen (5) an ihren Enden einen Teil (6) aufweist, der sich in die
Form hinein erstreckt und der mit einer Eingriffsfläche (7) bereitgestellt wird, die
auf die Formwand weist, wobei die zweite Gruppe von Versteifungsrippen (4) an ihren
Enden (8), die an die ersten Gruppen von Versteifungsrippen (5) grenzen, Eingriffsflächen
(9) aufweist, die in den zusammenklappbaren Kern hinein weisen, wobei die Eingriffsflächen
(8, 9) derart angeordnet sind, dass sie in der vorgerückten Stellung des Keilelements
(3) ineinander eingreifen und in der zurückgezogenen Stellung des Keilelements (3)
gelöst werden.
8. Zusammenklappbarer Kern nach Anspruch 7, dadurch gekennzeichnet, dass er einen eiförmigen Querschnitt aufweist, wobei die erste Gruppe von Versteifungsrippen
(5) aus Rippen gebildet ist, die an dem spitzen Ende des eiförmigen Querschnitts befestigt
sind, und dass der Schlitz und das dazugehörige Keilelement (3) dem spitzen Ende gegenüber
angeordnet sind, wobei die zweite Gruppe von Versteifungsrippen (4) an dem eiförmigen
Querschnitt zwischen dem Schlitz und dem spitzen Ende befestigt ist.
9. Zusammenklappbarer Kern nach Anspruch 8, dadurch gekennzeichnet, dass die Mittel, um das Keilelement zu bewegen, aus einem oder mehreren linearen Stellgliedern
(10) bestehen, deren eines Ende im Verhältnis zu dem zusammenklappbaren Kern dem Schlitz
gegenüber befestigt ist, und deren anderes Ende an dem Keilelement (3) befestigt ist,
und dass die Mittel, um die beiden gegenüberliegenden Seitenränder der Ummantelung
aufeinander zu in die zurückgezogene Stellung des Keilelements zu ziehen, aus einem
Umschaltmechanismus bestehen, der sich zwischen den gegenüberliegenden Seitenrändern
(2) der Ummantelung, die den Schlitz festlegen, erstreckt, und der an der Umschaltung
im Verhältnis zu dem anderen Ende des linearen Stellglieds (10) befestigt ist.
10. Zusammenklappbarer Kern nach Anspruch 9, dadurch gekennzeichnet, dass das eine Ende der linearen Stellglieder (10) in dem spitzen Ende des zusammenklappbaren
Kerns derart fest an den Rippen (5) angebracht ist, dass die Hauptachse (15) der linearen
Stellglieder in der Symmetrieebene des zusammenklappbaren Kerns gehalten wird.
1. Noyau déformable pour couler, par exemple, des articles d'ouvrage tubulaires, comprenant
une coquille annulaire (1) qui forme sensiblement un tuyau ayant un axe longitudinal
s'étendant entre les extrémités du tuyau, ladite coquille (1) étant souple en flexion
autour de l'axe longitudinal du tuyau, ladite coquille (1) ayant des bords latéraux
opposés (2) définissant une fente le long de l'axe longitudinal sur un côté du tuyau,
ledit noyau déformable comprenant de façon additionnelle un élément en coin allongé
(3), et des moyens (10) pour déplacer l'élément en coin (3) entre une position avancée
dans laquelle il recouvre la fente, et une position rétractée dans laquelle il est
tiré hors de la fente et à l'intérieur du noyau déformable, ainsi que des moyens (11)
pour tirer les deux bords latéraux opposés (2) de la coquille (1) l'un vers l'autre
dans la position rétractée de l'élément en coin (3),
caractérisé en ce que la coquille (1) présente au moins deux premières zones séparées par au moins deux
secondes zones (A), lesdites zones se trouvant entre les extrémités du tuyau, lesdites
secondes zones (A) ayant une élasticité en flexion autour de l'axe longitudinal du
tuyau qui est plus grande que l'élasticité en flexion correspondante dans les deux
premières zones, lesdites premières et secondes zones étant prévues en ce que la coquille comprend une plaque de même épaisseur sensiblement qui est munie d'une
pluralité de premiers et de seconds jeux de nervures de renforcement (5, 4) sur le
côté faisant face vers l'intérieur, chacune desdites nervures (5, 4) s'étendant le
long du côté interne de la coquille (1), où les seconds jeux de nervures (4) sont
placés sur chaque côté de l'élément en coin (3) et s'étendent vers le premier jeu
de nervures (5), laissant deux secondes zones (A) de ladite coquille sensiblement
non renforcées, lesdites secondes zones (A) étant prévues pour fonctionner comme des
charnières de plaque, lesdites premières zones étant pourvues respectivement des seconds
jeux de nervures (4) en même temps que de l'élément en coin (3) et du premier jeu
de nervures (5), et où les seconds jeux de nervures (4) ont de préférence une longueur
sensiblement identique, et où la zone circonférentielle de la coquille, renforcée
par les seconds jeux de nervures (4) et l'élément en coin (3), est supérieure à la
moitié de la zone circonférentielle totale de la coquille.
2. Noyau déformable selon la revendication 1,
caractérisé en ce que les secondes zones (A) sont plus petites transversalement à la direction longitudinale
du tuyau que les premières zones.
3. Noyau déformable selon la revendication 1 ou 2,
caractérisé en ce que la plaque (1) est fixée uniquement aux nervures de renforcement (4, 5) au niveau
des premières zones.
4. Noyau déformable selon l'une des revendications précédentes,
caractérisé en ce que les moyens pour déplacer l'élément en coin (3) entre une position avancée dans laquelle
il recouvre la fente, et une position rétractée dans laquelle il est tiré hors de
la fente et à l'intérieur du noyau déformable, sont fixés à une ou plusieurs des nervures
de renforcement (5).
5. Noyau déformable selon l'une des revendications précédentes,
caractérisé en ce que les moyens (11) pour tirer les deux bords latéraux opposés (2) de la coquille l'un
vers l'autre dans la position rétractée de l'élément en coin (3), sont fixés aux bords
latéraux opposés (2) de la coquille qui définissent une fente le long de l'axe longitudinal
sur un côté du tuyau.
6. Noyau déformable selon l'une des revendications précédentes,
caractérisé en ce que le tuyau a une section transversale à rayon de courbure évolutif, telle qu'une section
transversale ovale, en forme d'oeuf, une section transversale triangulaire ou quadrangulaire.
7. Noyau déformable selon l'une des revendications 3 et 6,
caractérisé en ce que le premier jeu de nervures de renforcement (5) est fixé au niveau des zones ayant
un rayon de courbure relativement faible, et le second jeu de nervures de renforcement
(4) au niveau des zones ayant un rayon de courbure relativement grand, ledit premier
jeu de nervures de renforcement (5) ayant, à ses extrémités, une partie (6) qui s'étend
dans le moule et qui est munie d'une face d'engagement (7) en vis-à-vis de la paroi
du moule, ledit second jeu de nervures de renforcement (4), au niveau de ses extrémités
(8) étant contigu aux premiers jeux de nervures de renforcement (5), ayant des faces
d'engagement (9) qui font face vers l'intérieur du noyau déformable, lesdites faces
d'engagement (8, 9) étant positionnées de façon à s'engager l'une l'autre dans la
position avancée de l'élément en coin (3) et à se désengager dans la position rétractée
de l'élément en coin (3).
8. Noyau déformable selon la revendication 7,
caractérisé en ce qu'il présente une section transversale en forme d'oeuf, ledit premier jeu de nervures
de renforcement (5) étant formé par des nervures fixées à l'extrémité pointue de la
section transversale en forme d'oeuf, et en ce que la fente et l'élément en coin associé (3) sont positionnés à l'opposé de l'extrémité
pointue, ledit second jeu de nervures de renforcement (4) étant fixé à la section
transversale en forme d'oeuf entre la fente et l'extrémité pointue.
9. Noyau déformable selon la revendication 8,
caractérisé en ce que les moyens pour déplacer l'élément en coin sont formés par un ou plusieurs actionneurs
linéaires (10), dont une extrémité est fixée par rapport au noyau déformable opposé
à la fente, et dont l'autre extrémité est fixée à l'élément en coin (3), et en ce que les moyens pour tirer les deux bords latéraux opposés de la coquille l'un vers l'autre
dans la position rétractée de l'élément en coin sont formés par un mécanisme à genouillère
qui se trouve entre les bords latéraux opposés (2) de la coquille définissant la fente,
et qui est fixé au niveau de la genouillère relativement à l'autre extrémité de l'actionneur
linéaire (10).
10. Noyau déformable selon la revendication 9,
caractérisé en ce qu'une extrémité des actionneurs linéaires (10) est rigidement montée sur des nervures
(5) dans l'extrémité pointue du noyau déformable de telle manière que l'axe principal
(15) des actionneurs linéaires soit maintenu dans le plan de symétrie du noyau déformable.

