[0001] The present invention relates to a method for producing electrical contacts that
can be applied in particular to the web of rails and the like.
[0002] Electrical contacts are conventionally used, especially in the railroad field, that
can be applied to the web of rails and the like and are substantially constituted
by a body that forms an internally hollow stem, which is connected, at one end, to
an enlarged flange.
[0003] The stem can be inserted in a hole formed in the web of a rail and is fixed by means
of a mechanical deformation performed by extrusion.
[0004] These contacts are usually produced by using either a perforated bar or a solid rod
the outside diameter whereof is equal to, or slightly larger than, the size of the
flange of the electrical contact, subsequently subjecting the material to chip-formation
machining to achieve the desired shape.
[0005] This machining requires a very long time and accordingly entails very high costs,
also in view of the fact that considerable waste of material occurs.
[0006] The possible use of copper containing additives, such as for example tellurium, strontium
and the like, while improving machinability on the one hand, allowing to reduce machining
times, on the other hand drastically reduces the ability to withstand deformation
during extrusion in the web of the rail, thus facilitating the formation of cracks
and/or breakages.
[0007] It should also be noted that cracks can be triggered by the machining marks, rough
areas or the like, that are inevitably present on the contact surface due to chip-formation
machining.
[0008] Another drawback resides in the fact that good size uniformity is difficult to maintain
owing to the inevitable wear of the tools.
[0009] Prior art document DE-2838157 A discloses a method as defined in the preamble of
claim 1.
[0010] A principal aim of the invention is to eliminate the drawbacks described above by
providing a method for producing an electrical contact that allows to drastically
simplify all operating steps, thus obtaining a product that is not subject to cracks
or the like.
[0011] Within the scope of the above aim, a particular object of the invention is to provide
an electrical contact that is particularly adapted for carrying coded currents and
the return of the electric traction current on lines equipped with an automatic locking
system; it is also possible to use the contact in a supply, receiving, and "Z" connection
in track circuits using a single stretch of rail, in return connections for the electric
traction current, as reentry to a sub-station, in electric traction connections on
cast-manganese steel frogs of switches, in connections between a metallic structure
and the return rails with electric traction, and in electrical drainages from metallic
and buried structures towards tracks and the like.
[0012] Another object of the present invention is to provide an electrical contact that
is capable of giving the greatest assurances of reliability and safety in use by means
of its particular constructive characteristics.
[0013] Another object of the present invention is to provide a method for producing electrical
contacts that can be applied particularly to the web of rails and the like and can
be easily obtained with simple and inexpensive machining operations.
[0014] This aim, these objects, and others that will become apparent hereinafter are achieved
by a method for producing electrical contacts that can be applied in particular to
the web of rails and the like, according to the invention, as defined in claim 1.
Further characteristics and advantages of the invention will become apparent from
the following detailed description of a preferred but not exclusive embodiment of
a method for producing electrical contacts that can be applied in particular to the
web of rails and the like, illustrated only by way of non-limitative example in the
accompanying drawings, wherein:
figure 1 is a sectional view of the step for inserting the copper pipe stub in a die;
figure 2 is a schematic view of the cold-deformation step;
figure 3 is a view of the extraction of the resulting electrical contact from the
die;
figure 4 is a schematic perspective view of the resulting electrical contact;
figure 5 is a schematic sectional view of the electrical contact applied to the web
of a rail and the like.
[0015] With reference to the above figures, the method for producing electrical contacts
that can be applied in particular to the web of rails and the like consists in providing
a copper pipe stub 1 having gauged dimensions and which is free of any kind of impurity.
[0016] The stub 1, cut into pieces of appropriate length, is converted into the finished
product by means of a cold deformation, in a die on an automatic press, without resorting
to chip-formation machining.
[0017] More specifically, a die 10 is provided which forms an axial channel 11 that ends
with an enlarged portion 12 in an upward region.
[0018] A secondary die part 13 is arranged in the channel 11 and acts as a resting element
for the axial end of the stub 1.
[0019] In order to perform cold deformation, a punch 20 is inserted by means of an automatic
press; said punch has a stem 21 that is connected to a shoulder 23 by means of a frustum-shaped
wider portion 22.
[0020] The stem 21 in practice enters the tubular stub 1 and the frustum-shaped wider portion
22 forms a flared part at the flange region that is delimited between the wider portion
12 and the shoulder 23.
[0021] Once cold-deformation has ended, the secondary die part 13 is actuated so as to extract
the contact 30.
[0022] Since the contact 30 is produced by cold-deformation, it always has a very high dimensional
and quality standard, with a constantly uniform finish degree that is beyond compare
with what can be obtained by chip-formation machines.
[0023] Furthermore, during the subsequent extrusion step for applying the electrical contact
to the rail, behavior is more plastic, and the absence of sharp corners and of the
typical roughness produced by tools practically eliminates the risk of cracks and
breakages during installation, making the product highly safe and reliable.
[0024] In order to further improve the intrinsic characteristics of the resulting contact,
it is possible to subject the contact, after cold-deformation, to a thermal treatment
that limits any tensions caused by work-hardening produced by deformation, so as to
obtain an average grain size of 11 to 30 µm.
[0025] With the above-described process there is no machining waste, except for the minimal
waste caused by the cutting of the stubs of tubular element; therefore, a much smaller
amount of metal is used with respect to chip-formation machining.
[0026] It should also be added that in addition to obtaining a product that is qualitatively
far superior to the product that can be obtained by chip-formation, significantly
lower production costs are also achieved.
[0027] From the above description it is thus evident that the invention achieves the intended
aim and objects, and in particular the fact is stressed that providing the contact
by cold-deformation of a copper tubular element allows to have a final product the
functional characteristics whereof are considerably improved with respect to the contacts
of the prior art produced by chip-formation.
[0028] The invention thus conceived is susceptible of numerous modifications and variations,
all of which are within the scope of the inventive concept.
[0029] All the details may furthermore be replaced with other technically equivalent elements.
[0030] In practice, the materials employed, so long as they are compatible with the specific
use, as well as the contingent shapes and dimensions, may be any according to the
requirements.
[0031] Where technical features mentioned in any claim are followed by reference signs,
those reference signs have been included for the sole purpose of increasing the intelligibility
of the claims and accordingly, such reference signs do not have any limiting effect
on the interpretation of each element identified by way of example by such reference
signs.
1. A method for producing electrical contacts that can be applied in particular to the
web of rails and the like, comprising the steps of:
- preparing a stub (1) of copper pipe having gauged dimensions;
- inserting said stub in the die (10) of a press;
- forming a cold deformation to form a flanged head at the end of an internally hollow
stem, and
- extracting a resulting electrical contact (30) from the die (10), characterised in that said step of forming a cold deformation is performed by means of a punch (20) having
a stem (21) connected to an inclined shoulder (23) with a frustum-shaped wider portion
(22) therebetween to obtain a convex top region and a flared part for said electrical
contact (30).
2. The method according to claim 1, characterized in that said electrical contact produced by cold deformation is subjected to a thermal treatment
to eliminate tensions produced by work-hardening caused by deformation.
3. The method according to claim 2, characterized in that the thermal treatment is performed until an average grain size between 11 and 30
µm is obtained.
4. A die (10) for producing an electrical contact (30) produced by the method of claim
1, comprising a die body forming a cylindrical channel (11) ending with an enlarged
portion (12) in a upward region and closed at the bottom by a secondary die part (13),
a deformation punch (20) being also provided which has a stem (21) connected to a
shoulder (23) by means of a frustum-shaped wider portion (22), characterised in that said shoulder (23) is inclined downwards.
5. The die according to claim 4, characterized in that said secondary die part is movable to extract the produced electrical contact.
6. An electrical contact (30), produced by the method of claim 1, particularly applicable
to the web of rails and the like characterised in that it has a convex top region and an axial channel with a flared part at its upper end.
1. Verfahren zur Herstellung elektrischer Kontakte zum Befestigen insbesondere auf einem
Schienenfuß oder dergleichen mit den folgenden Schritten:
- Vorbereiten eines Stutzens (1) aus einem Kupferrohr mit bestimmten Abmessung;
- Einsetzen des Stutzens in eine Form (10) einer Presse;
- Durchführen einer Kaltverformung zur Formung eines Kopfes mit einem Flansch am Ende
eines innen hohlen Schaftes, und
- Entnehmen eines sich ergebenden elektrischen Kontaktes (30) aus der Form (10),
dadurch gekennzeichnet,
dass der Schritt des Durchführens der Kaltverformung mittels eines Stempels (20) mit einem
Schaft (21) durchgeführt wird, welcher mit einer geneigten Schulter (23) über einen
kegelstumpfförmigen weiten Bereich (27) dazwischen verbunden ist, um einen konvexen
oberen Bereich und einen aufgeweiteten Bereich für den elektrischen Kontakt (30) zu
erhalten.
2. Verfahren nach Anspruch 1,
dadurch gekennzeichnet,
dass der durch Kaltverformung hergestellte elektrische Kontakt einer thermischen Behandlung
zur Eliminierung von Spannungen unterzogen wird, welche Spannungen von einer durch
die Verformung verursachten Härtung erzeugt werden.
3. Verfahren nach Anspruch 2,
dadurch gekennzeichnet,
dass die thermische Behandlung bis zum Erhalt einer durchschnittlichen Korngröße zwischen
11 und 30 µm durchgeführt wird.
4. Form (10) zur Herstellung eines elektrischen Kontakts (30) nach Verfahren des Anspruchs
1 mit einem Formkörper, welcher einen zylindrischen Kanal (11) bildet, der in einem
vergrößerten Bereich (12) in einem oberen Abschnitt endet und am Boden durch ein sekundäres
Formteil (13) geschlossen ist, mit einem Verformungsstempel (20), welcher ebenfalls
einen Schaft (21) aufweist, der mit einer Schulter (23) über einen kegelstumpfförmigen
breiteren Bereich (22) verbunden ist,
dadurch gekennzeichnet,
dass die Schulter (23) nach unten geneigt ist.
5. Form nach Anspruch 4,
dadurch gekennzeichnet,
dass der sekundäre Formteil zum Auswerfen des hergestellten elektrischen Kontaktes bewegbar
ist.
6. Elektrischer Kontakt (30) hergestellt nach dem Verfahren des Anspruchs 1, welcher
insbesondere für einen Schienenfuß oder dergleichen verwendbar ist,
dadurch gekennzeichnet,
dass der Kontakt eine konvexe Oberseite und einen axialen Kanal mit einem aufgeweiteten
Teil am oberen Ende aufweist.
1. Un procédé pour la production de contacts électriques pouvant être appliqués, en particulier,
à l'âme d'un rail et analogues, comprenant les étapes consistant à :
- préparer un bout (1) d'un tube de cuivre, ayant des dimensions calibrées ;
- insérer ledit bout dans la matrice (10) d'une presse ;
- procéder à une déformation à froid pour former une tête flasquée à l'extrémité d'une
tige intérieurement creuse, et
- extraire un contact électrique (30) résultant depuis la matrice (10), caractérisé en ce que ladite étape de déformation à froid est effectuée en utilisant un poinçon (20) ayant
une tige (21) reliée à un épaulement (23) incliné avec une partie (22) plus large,
tronconique, entre eux, afin d'obtenir une région supérieure convexe et une partie
évasée pour ledit contact électrique (30).
2. Le procédé selon la revendication 1, caractérisé en ce que ledit contact électrique produit par déformation à froid est soumis à un traitement
thermique, afin d'éliminer les tensions produises par le durcissement de façonnage
ou écrouissage provoqué par la déformation.
3. Le procédé selon la revendication 1, caractérisé en ce que le traitement thermique est effectué jusqu'à atteindre une taille de grain moyenne
comprise entre 11 et 30µm.
4. Une matrice (10) pour produire un contact électrique (30), produit par le procédé
de la revendication 1, comprenant le formage tridimensionnel d'un canal (11) cylindrique
s'achevant par une partie (12) élargie, dans une zone orientée vers le haut et fermée
en partie inférieure par une partie de matrice (13) secondaire, un poinçon de déformation
(20) étant également prévu, ayant une tige (21) connectée à un épaulement (23) au
moyen d'une partie (22) plus large, de forme tronconique, caractérisée en ce que ledit épaulement (23) est incliné vers le bas.
5. La matrice selon la revendication 4, caractérisée en ce que ladite partie de matrice secondaire est déplaçable, afin d'extraire le contact électrique
ayant été produit.
6. Un contact électrique (30) produit par le procédé de la revendication 1, en particulier
applicable à l'âme des rails et analogues, caractérisé en ce qu'il comporte une région supérieure convexe et un canal axial avec une partie évasée
à sa partie supérieure.