Field of the invention
[0001] The present invention related to an expansion dummy block for an extruding press
for hollow bodies according to the preamble of claim 1. An exemplary dummy block is
known from
JP-5 076927-A.
State of the art
[0002] Two types of extruding presses for hollow bodies, e.g. pipes, are essentially known
in the art.
[0003] Both types comprise a container, in which a billet of material to be extruded is
inserted, a die against which the billet is pressed by a punch to generate the extruded
hollow body.
[0004] In a first type of press (figures 1.1 and 1.2), die 1 is provided with an opening
2 from which the material from the billet placed in the container 3 exits, in the
form of a hollow body 4 The element producing the internal diameter of the tube is
a so-called lance 5, coupled and fixed to the fixed part of the die by wings 6.
[0005] The billet material flowing about the wings is cut passing by the side of the latter,
and then beyond the wings is joined, compacted and aggregated, finally flowing through
the lance. A so-called welded tube is thus obtained, because it consists of separate
parts which are joined together by means of seams, or fractures, at which the pipe
has weak points, whereby this type of presses manufactures pipes which are not suitable
for supporting high internal pressures and strains.
[0006] A second type of press (figures 2.1 and 2.2) is provided with an element named mandrel
21. There is again the container 22 of billet 23, as well as a die 24 provided with
a bottleneck, through which the material of the billet flows thus forming the external
diameter of the tube. At the internal level, the mandrel 21 drives a hole into the
billet, which is thus perforated, and at the end of the drilling operation it appears
with the head inside the die (fig. 2.2). Once that position has been reached, it stops
and the proper extrusion process starts: the material of the billet is forced to pass
through the circular crown delimited by die and mandrel, thus producing a tube which
in this case is homogeneous because the dividing wings are no longer present, and
therefore of higher quality. On the other hand, the machine is more complex because
it has the additional part of the mandrel and the controlling device associated therewith.
[0007] A type of dummy block 7 (fig. 1.2), named "fixed, expansion dummy block", is used
in the presses of the first type on the head of the punch 9; the dummy block is made
of elastic material so that when it receives the thrust, and thus the strength of
the material to be extruded, it expands about its external circumference, thus obtaining
a correct coupling with the internal hole of the container 3 in which it moves. The
dummy block consists of a body, which has an external, flexible-ring expansion head;
the head has an inner conical shape in which a conical pan 8 is inserted: when the
conical pan receives the thrust of the resistance force of the material being extruded,
it in turn pushes the external ring of the body, so as to spread it by a given amount
(small, e.g. tenths of a millimeter) sufficient to obtain a coupling with the internal
edge of the container so that there is no space therebetween. This avoids the leakage
and backflow of material which could remain within the container. At the end of the
extrusion process, the dummy block is to go back and thus the head is to return to
the initial dimension of smaller diameter, otherwise the container could be scratched.
Thereby, instead, the dummy block body may be removed without problems. For this purpose,
the conical pan 8 has a tang which is inserted into an appropriate recess of the conical
head and there is a spring which promotes the spacing apart (releasing) of the pan
from the head during the return movement, to return the external ring to its initial
size (a small movement is sufficient, e.g. 1 mm).
[0008] The second type of press (fig. 2.1) includes a punch 25 which pushes a movable dummy
block 26, consisting of a steel disc, with the correct coupling to the internal channel
of the container 22, which movies within the channel until it touches the die 24.
Once the movable dummy block has reached the travel end, it is not able to go back
into the channel. It is thus extracted from the front part by removing the die by
means of a so-called "dummy block recirculation" system, which takes lit back to the
beginning of the channel for the next extrusion. It is apparent that this system causes
waste of time and increase of costs.
Summary of the invention
[0009] It is thus an object of the present invention to indicate an expansion dummy block
for extruding press for hollow bodies, adapted to overcome all the aforesaid drawbacks,
which may be used in a press equipped with mandrel, thus eliminating the problems
of wasting of time and increased costs, and obtaining high-quality extruded hollow
bodies.
[0010] It is the object of the present invention to provide an expansion dummy block for
an extruding press for hollow bodies. according to claim 1.
[0011] It is the specific object of the present invention an expansion dummy block for extruding
press for hollow bodies, as described in greater detail in the claims, which form
an integral part of the present description.
Brief description of the drawings
[0012] Further objects and advantages of the present invention will be apparent from the
following detailed description of an embodiment thereof (and variants thereof) and
from the accompanying drawings given by way of non-limitative explanation, in which:
- figures 1 and 2 show section views of known types of dummy block;
- figures 3 shows section views of the dummy block object of the invention;
- figures from 4 to 8 show enlarged section views of the parts forming the dummy block
object of the invention;
- figure 9 shows the dummy block object of the invention during its operation;
- figure 10 shows a detail of the head of the dummy block.
[0013] The same reference numbers in the figures identify the same elements.
Detailed description of preferred embodiments
[0014] In figure 3, the expansion dummy block in accordance with the present invention is
applied to the head of a hollow punch 304, only the end part of which is shown, actuated
in a known manner within a press container (not shown).
[0015] The expansion dummy block has a hollow shape so as to allow a mandrel to slide therein,
and comprises the following elements, the peculiarities of which are also highlighted
in the following figures, in addition to fig. 3.
[0016] There is a hollow body part 303 (fig. 5), connected to the punch 304 by means of
a hollow connector 305.
[0017] The hollow connector 305 (fig. 4) has a double quick-screwing system with a bayonet
threading: it is inserted into the punch 304, and then turned to lock itself inside
the latter by means of a pin 315 (figures 3 e 8); the hollow body 303 is then inserted
into the other end with a similar bayonet system and a similar locking system by means
of a pin 316 (fig. 5).
[0018] The hollow connector (fig. 4) also acts as a bush for guiding the mandrel in its
forward and backward movement therein, so that it is always centered and does not
slip to the side, thus ensuring a precise, constant thickness of the hollow body.
An expansion wear ring 302 (fig. 6) is further present, the external surface of which
is adapted to come in contact with the interior of the container to perform the function
of globally sealing the container itself. More in detail, this function is carried
out by the end part 312 of the external edge, slightly broader than the rest of the
external surface 313. The ring is fitted into the end part of the body of the dummy
block 303 (fig. 3).
[0019] Finally, a hollow conical expansion pan 301 is present (fig. 7). It has a tang 317
which fits into the internal end part of the hollow body 303 and is locked by means
of a bayonet attachment (see section C-C in fig. 3, and the bayonet locking protuberance
320 in fig. 7). At the other end, the pan has a broader end 318, the substantially
truncated-cone shaped, external surface of which is complimentary with the internal
surface of the ring 302. Furthermore, the middle wall 319 is adapted to be engaged
in abutment against the external end of the body of the dummy block 303. A spring
306 (fig. 3) is placed between the ends of the tang 317 of the ring and the threaded
container 305.
[0020] In operation (fig. 9), when the punch 304 pushes the dummy block, the material 323
of the billet within the container is pressed against the die 324 and causes a thrust
reaction force against the conical pan 301: the latter slightly retracts (by approximately
1 mm) against the body of the dummy block 303, thus placing its middle abutment 319
in close contact against the dummy block body. The contrast spring 306 is compressed
by the pressure of the material.
[0021] The retraction causes a friction on the external surface of the broader part 318
of the pan against the internal surface of the end part 312 of the ring, thus achieving
an expansion of controlled type of the external part of the conical pan, and thus
of the ring, due to the retraction entity of the conical pan. The opening is thus
limited, e.g. less than 1 mm, but sufficient.
[0022] At the same time, the retraction of the pan also causes an inward expansion of the
tip 325 of the internal part of the pan itself, because of the under load deformation
of the contrast surface upon the thrust of the material. This surface has a concave
shape 326.
[0023] The inward expansion of the pan edge causes a scratching effect on the mandrel 327
and cleans it to avoid the waste material of the extrusion from flowing back. As mentioned
above, at this step of the extrusion process, the mandrel 327 has already completely
perforated the billet 323, and its head 328 stopped in the die 324 thus allowing to
extrude the round shape 329.
[0024] This contrivance allows to avoid the use of the "dummy block recirculation" system
and thus to save cycle time, reduce the need for maintenance, cut both machine costs
and required energy - the extrusion is thus performed with fixed dummy block which
does not need to be recirculated.
[0025] At the end of extrusion, the dummy block is at the travel end against the die. Under
this condition, in the absence of reaction force of the material, the external part
of the dummy block retracts, under the bias of the spring which is no longer loaded
and thus extends, while the internal part opens to return to its initial retracted
position.
[0026] The concave shape 326 of the face surface of the hollow conical pan 301 (fig. 10)
is important because when the material pushes against it, it primarily creates a longitudinal
force component, but also creates transversal components, which spread the external
tooth-shaped end 312 of the ring and the internal end 325 of the conical pan.
[0027] This should all be calculated to conveniently dose the force components, e.g. by
means of FEM (finite element method) calculations, to create the desired elastic deformation
of the ring. The following parameters should be established: shape and size of the
ring, thickness, length of the tooth, material, entity of the thrust force of the
material, etc.
[0028] For example, the ring may be made of H13 tempered steel, which ensures a given degree
of elasticity, and a high resistance to wear. In general, the material is tool steel
chosen from those available on the market.
[0029] Other possible constructional variants of the described non-limitative example are
possible, without therefore departing from the scope of protection of the present
claims, comprising all the equivalent implementations for a person skilled in the
art.
[0030] From the description above, a person skilled in the art will be able to implement
the object of the invention without introducing further constructional details.
1. Expansion dummy block for an extruding press for hollow bodies, said press comprising
a container with a hole wherein material to be extruded (323) is inserted during extrusion,
an expansion dummy block comprising an internal hole and able to tightly slide inside
the container hole, a punch (304), adapted to push said expansion dummy block, a mandrel
(327), adapted to slide inside said internal hole for centrally drilling said material
to be extruded (323), the expansion dummy block comprising a ring (302) having an
external edge (312) able to contact externally the container hole and a hollow conical
pan (301) having an internal edge (325), and a substantially truncated conical external
surface complementary to an internal surface of the ring (302), said ring (302) being
able to expand into the external edge (312) contacting the container hole, under a
reaction force produced by contact with the material to be extruded (323) following
the thrust received from said punch (304), and to withdraw when the reaction force
is exhausted,
characterized in that the internal edge (325) is able to expand inwardly and to contact internally the
mandrel (327) and said hollow conical pan (301) has a concave shape (326) on one side
contacting said material in order to create transversal force components when it is
subjected to said reaction force such that said hollow conical pan (301) expands into
the internal edge (325) towards the internal hole and thus contacts the mandrel (327).
2. Expansion dummy block according to Claim 1, wherein said hollow conical pan (301)
further comprises a middle wall (319), said dummy block further comprising a hollow
body (303) provided with a first end contacting said punch, and with a second end
to be engaged with said middle wall (319) as a ledge.
3. Expansion dummy block according to Claim 2, wherein said ring (302) is able to be
restrained in said second end of the hollow body (303).
4. Expansion dummy block according to Claim 3, wherein said hollow conical pan (301)
has a tang (317) to be restrained and fixed in the internal part of said second end
of the hollow body (303).
5. Expansion dummy block according to Claim 4, further comprising a hollow connector
(305) to internally connect and fix said hollow body (303) to said punch by means
of a double quick screwing with a bayonet thread.
6. Expansion dummy block according to Claim 5, further comprising spring means (306),
arranged between the ends of said tang (317) and said hollow connector (305), and
able to determine said withdrawal with the exhaustion of the reaction force by means
of a relaxation of the hollow conical pan (301).
7. Expansion dummy block according to Claim 6, wherein said hollow connector (305) is
also able to act as a bush which guides the mandrel by keeping it centered.
1. Ausdehnungspressscheibe für eine Presse zum Strangpressen für Hohlkörper, wobei die
Presse umfasst:
einen Behälter mit einem Loch, in dem strangzupressendes Material (323) während eines
Strangpressens eingesetzt wird; eine Ausdehnungspressscheibe, die ein Innenloch umfasst
und innerhalb des Behälterloches eng gleiten kann, einen Stempel (304), der derart
angepasst ist, die Ausdehnungspressscheibe zu drücken, einen Dorn (327), der derart
angepasst ist, innerhalb des Innenlochs zum zentralen Bohren des strangzupressenden
Materials (323) zu gleiten, wobei die Ausdehnungspressscheibe einen Ring (302) mit
einem Außenrand (312), der in der Lage ist, außen mit dem Behälterloch in Kontakt
zu stehen, und eine hohle konische Wanne (301) umfasst, die einen Innenrand (325)
und eine im Wesentlichen kegelstumpfförmige konische Außenfläche besitzt, die komplementär
zu einer Innenfläche des Ringes (302) ist, wobei der Ring (302) in der Lage ist, sich
in den Außenrand (312), der mit dem Behälterloch in Kontakt steht, unter einer Reaktionskraft,
die durch Kontakt mit dem strangzupressenden Material (323) nach dem Schub, der von
dem Stempel (304) aufgenommen wird, erzeugt wird, auszudehnen und sich zurückzuziehen,
wenn die Reaktionskraft erschöpft ist,
dadurch gekennzeichnet, dass der Innenrand (325) in der Lage ist, sich einwärts auszudehnen und innen mit dem
Dorn (327) in Kontakt zu stehen und die hohle konische Wanne (301) eine konkave Form
(326) auf einer Seite, die mit dem Material in Kontakt steht, besitzt, um Querkraftkomponenten
zu erzeugen, wenn sie der Reaktionskraft ausgesetzt ist, so dass sich die hohle konische
Wanne (301) in den Innenrand (325) zu dem Innenloch ausdehnt und somit mit dem Dorn
(327) in Kontakt steht.
2. Ausdehnungspressscheibe nach Anspruch 1, wobei die hohle konische Wanne (301) ferner
eine Mittelwand (319) umfasst, wobei die Pressscheibe ferner einen Hohlkörper (303)
umfasst, der mit einem ersten Ende, das mit dem Stempel in Kontakt steht, und mit
einem zweiten Ende zum Eingriff mit der Mittelwand (319) als ein Vorsprung versehen
ist.
3. Ausdehnungspressscheibe nach Anspruch 2, wobei der Ring (302) in der Lage ist, in
dem zweiten Ende des Hohlkörpers (303) rückgehalten zu werden.
4. Ausdehnungspressscheibe nach Anspruch 3, wobei die hohle konische Wanne (301) eine
Lasche (317) zum Zurückhalten und Fixieren in dem Innenteil des zweiten Endes des
Hohlkörpers (303) aufweist.
5. Ausdehnungspressscheibe nach Anspruch 4, ferner mit einem Hohlverbinder (305) zum
inneren Verbinden und Befestigen des Hohlkörpers (303) an dem Stempel mittels einer
Doppelschnellverschraubung mit einem Bajonettgewinde.
6. Ausdehnungspressscheibe nach Anspruch 5, ferner mit einem Federmittel (306), das zwischen
den Enden der Lasche (317) und dem Hohlverbinder (305) angeordnet und in der Lage
ist, das Zurückziehen mit dem Erschöpfen der Reaktionskraft mittels einer Entspannung
der hohlen konischen Wanne (301) zu ermitteln.
7. Ausdehnungspressscheibe nach Anspruch 6, wobei der Hohlverbinder (305) auch in der
Lage ist, als eine Buchse zu wirken, die den Dorn durch zentriertes Halten desselben
führt.
1. Grain de poussée d'expansion pour une presse d'extrusion pour des corps creux, ladite
presse comprenant
un contenant comprenant un trou dans lequel du matériau à extruder (323) est inséré
pendant l'extrusion, un grain de poussée d'expansion comprenant un trou interne et
pouvant coulisser étroitement à l'intérieur du trou de contenant ; un poinçon (304),
adapté pour pousser ledit grain de poussée d'expansion, un mandrin (327), adapté pour
coulisser à l'intérieur dudit trou interne afin de perforer centralement ledit matériau
à extruder (323), le grain de poussée d'expansion comprenant une bague (302) ayant
un bord externe (312) pouvant entrer en contact de façon externe avec le trou de contenant
et une cuve conique creuse (301) ayant un bord interne (325), et une surface externe
conique sensiblement tronquée complémentaire à une surface interne de la bague (302),
ladite bague (302) pouvant s'étendre dans le bord externe (312) en contact avec le
trou de contenant, sous une force de réaction produite par un contact avec le matériau
à extruder (323) à la suite de la poussée reçue par ledit poinçon (304), et à se retirer
lorsque la force de réaction est épuisée,
caractérisé en ce que le bord interne (325) peut s'étendre vers l'intérieur et entrer en contact de façon
interne avec le mandrin (327) et ladite cuve conique creuse (301) a une forme concave
(326) sur un côté en contact avec ledit matériau afin de créer des composantes de
force transversale lorsqu'elle est soumise à ladite force de réaction de sorte que
ladite cuve conique creuse (301) s'étende dans le bord interne (325) vers le trou
interne et entre ainsi en contact avec le mandrin (327).
2. Grain de poussée d'expansion selon la revendication 1, dans lequel ladite cuve conique
creuse (301) comprend en outre une paroi de milieu (319), ledit grain de poussée comprenant
en outre un corps creux (303) doté d'une première extrémité en contact avec ledit
poinçon, et d'une seconde extrémité devant être enclenchée avec ladite paroi moyenne
(319) comme une pièce d'appui.
3. Grain de poussée d'expansion selon la revendication 2, dans lequel ladite bague (302)
peut être restreinte dans ladite seconde extrémité du corps creux (303).
4. Grain de poussée d'expansion selon la revendication 3, dans lequel ladite cuve conique
creuse (301) comprend un tenon (317) devant être restreint et fixé dans la partie
interne de ladite seconde extrémité du corps creux (303).
5. Grain de poussée d'expansion selon la revendication 4, comprenant en outre un connecteur
creux (305) destiné à connecter de façon interne et fixer ledit corps creux (303)
audit poinçon au moyen d'un double vissage rapide avec un filetage à baïonnette.
6. Grain de poussée d'expansion selon la revendication 5, comprenant en outre un moyen
de ressort (306), agencé entre les extrémités dudit tenon (317) et dudit connecteur
creux (305), et pouvant déterminer ledit retrait avec l'épuisement de la force de
réaction au moyen d'une relaxation de la cuve conique creuse (301).
7. Grain de poussée d'expansion selon la revendication 6, dans lequel ledit connecteur
creux (305) peut également agir comme une douille qui guide le mandrin en le maintenant
centré.