[0001] Known nowadays are hing devices including a male element of hollow construction to
lighten the structure and decrease its manufacturing costs.
[0002] Such a product, and the method for obtaining it, are claimed in prior French Patent
Application FR-A-2418.046, by the same Applicant.
[0003] That known type, however, is not exempt of drawbacks: first of all, owing to the
particular structure of the male element, the female element cannot pivot around the
pin but only on the base thereof. Furthermore, where such a hinge is formed from ferrous
materials and utilised in a marine environment, oxides are formed which create a friction
area over the pin base, reducing the hinges' functionality.
[0004] To obviate the latter drawback, it would be sufficient to use materials such as stainless
steel or brass, which, however, greatly increase the cost of the finished product.
[0005] The hollow structure of the male element may develop another problem associated with
the surface treatment thereof: when immersed in galvanic baths, some of the liquid
seeps into the interior of the male element and is trapped therein as the element
is advanced to the next treatment bath, thereby contaminating successive tanks, with
small quantities of different liquids from prior baths, the passage whereof is necessary
to complete the treatment.
[0006] This also brings about a cost increase, albeit a slight one, due to the necessity
to renew the liquids in the galvanic baths more frequently than would be necessary
if they were contaminated to a lesser extent by different liquids from prior baths.
[0007] In the storing phase, moreover, any liquid left inside the hollow male element could
flow out of it and corrode, by its mainly acid nature, other hinges.
[0008] Among the ordinary "solid" hinges, that is with the male element fabricated as a
single solid member, some types are known which utilise a sphere on a pin end, see
for example DE-A 3 036 498.
[0009] The main disadvantage of such types resides in their higher cost due to the greater
amount of material employed in their manufacture.
[0010] It is a primary aim of this invention to obviate the above cited inconveniences of
the known types of hinge devices by providing a hinge device, wherein the working
load is supported on the pin and is subject to only neglectable frictional resistance.
[0011] Another important object is to provide a hinge device which combines with the preceding
feature a reduction in the overall manufacturing costs, and in particular a significant
reduction in the quantity of material employed.
[0012] A further object of the invention is to provide a hinge device which reduces contamination
of successive galvanic baths during the treatment thereof.
[0013] A not unimportant object is to provide a hinge device which can be manufactured by
utilizing standard equipment, and readily available materials which is safe and reliable
in use.
[0014] These and other objects are achieved by a hinge device, according to the appended
Claim 1.
[0015] Further features and advantages will become apparent from the following detailed
description of a particular embodiment, with reference to the accompanying drawing
sheet, in which:
Figure 1 is a partly sectional perspective view of the hinge device according to the
invention;
Figure 2 is a side elevation view of the same;
Figure 3 is a sectional view taken on the line III-III of Figure 2.
[0016] With reference to the above figures, the hinge device 1 comprises a male element
2 and a female element 3.
[0017] The male element 2 includes a cylindrical body 4 and a cylindrical pin 5, of similar
shape and having the same longitudinal axis but defining a smaller diameter than the
body 4. The male element 2 defines between the pin 5 and the body 4 an annular flat
base 6, extending perpendicularly to the longitudinal axis of the male element 2 and
having a radial extension corresponding to the difference between the diameter of
the cylindrical body 4 and the diameter of the pin 5.
[0018] Both the body 4 and the pin 5 define hollow internal cavities, 7 and 7a respectively,
the size of the cavity 7 being larger than the latter 7a.
[0019] At the end 8 of the pin 5 there is formed a cylindrical seat 9, having a slightly
larger diameter than the cavity 7a, and adapted to accommodate a spherical bearing
consisting of a small hardened sphere 10. The seat 9 extends along the longitudinal
axis of the cavity 7a for a distance which is greater than the radius of said sphere
10 but smaller than the diameter thereof.
[0020] The hardened sphere 10 has a slightly smaller diameter than said seat 9 and is made
fast with the pin 5 by upsetting its end 8; this prevents the sphere 10 from coming
out of the seat 9 as well as preventing liquid from entering the cavities 7, 7a through
the end 8 of the pin 5 during the phase of immersion in galvanic baths.
[0021] The sphere 10 thus becomes the terminating extremity of the pin 5.
[0022] The female element 3 has a cylindrical body 11 matingly shaped to receive the pin
5 of the male element 4, in a seat 12 having an end 12a and defining an axial extension
which is slightly smaller than the length dimension of the pin 5, with the sphere
10 located in the seat 9. Thus, when the female element 3 is operatively positioned
on the male element 2, the end 12a of the seat 12 defined by the female element 3
rests and is rotatable on the sphere 10 with neglectable friction, due to the small
surface area of tangential contact between the curved surface of the sphere 10 and
the flat surface of the end 12a.
[0023] Fast with each of the side surfaces 13 and 14 of the bodies 4 and 11 is a means 15
for associating the hinge 1 with casings, said means comprising, for example, a threaded
shank 16.
[0024] The hinge 1, owing to the configuration of the pin 5 and seat 12, advantageously
works on the sphere 10 and not on the annular base 6: this improves the functional
aspect since the coefficient of friction existing between the respectively rotatable
elements 2,3 of the hinge is greatly reduced, and the point of rotation is protected
inside the female element 3.
[0025] The male element 2, being hollow, lowers the production costs by reducing the quantity
of raw material employed in the manufacture of the hinge device.
[0026] Furthermore, the sphere 10, by closing the cavity 7, 7a also prevents the liquid
present in the galvanic treatment tanks from entering the male element 2, and being
inadvertently transported to, and thereby contaminating, successive tanks containing
different liquids.
[0027] Thus, it has been ascertained that the hinge device according to the invention achieves
all of the objects set forth, which allows manufacturing costs to be reduced, and
simultaneously provides an improved hinge device from the functional point of view.
[0028] Of course, the materials employed and the dimensions may be any ones according to
necessity.
1. A hinge device (1) comprising a male element (2) having a body (4) and a pin (5)
extending from said body, a seat (9) being formed at the free end of said pin (5)
for accommodating a sphere (10) therein, and further comprising a female element (3)
matingly shaped to rotatably receive at least part of said pin, said sphere (10) protruding
at least partially out of the edge of said seat (9) to form a bearing surface for
said female element (3), connecting means (15) being provided for associating said
hinge device (1) with casings, caracterized in that said male element (1) is hollow
to define an internal cavity (7, 7a) extending from said seat (9), the edge of said
seat (9) being at least partially upset for rigidly fastening said sphere (10) to
said pin (5) in such a manner to sealingly occlude said internal cavity (7, 7a), whereby
said sphere (10) is prevented from being accidentally removed from said seat (9) and
liquid is prevented from entering said internal cavity (7, 7a).
2. A hinge device according to Claim 1, characterized in that said internal cavity
comprises a first portion (7) extending internally to said body (4) and a second portion
(7a) extending internally to said pin (5), said seat (9) being substantially coaxial
with both said first portion (7) and said second portion (7a) of said internal cavity.
3. A hinge device according to Claim 2, characterized in that said seat extends along
the longitudinal axis of said second cavity portion (7a) for a distance which is greater
than the radius of said sphere (10) and smaller than the diameter thereof.
4. A hinge device according to Claim 2, characterized in that the diameter of said
seat (9) is substantially the same as that of said sphere (10), said second portion
(7a) of said internal cavity having a smaller diameter than said seat (9) to prevent
passage of said sphere (10) therethrough.
1. Scharnier (1), bestehend aus einem Steckteil (2), von dessen Körper (4) sich ein
Stift (5) erstreckt, dessen freies Ende einen Sitz (9) zur Aufnahme einer Kugel (10)
bildet, die zumindest teilweise den Rand des Sitzes (9) überragt, um eine Lagerfläche
für ein aufnehmendes Teil (3) zu bilden, das eine entsprechend angepaßte Form aufweist,
um zumindest einen Abschnitt des genannten Stiftes drehbar aufzunehmen, und ferner
bestehend aus Verbindungselementen (15) zur Verbindung des Scharniers (1) mit einem
Rahmen, einer Einfassung oder dergleichen, dadurch gekennzeichnet, daß das Steckteil
(2) einen inneren Hohlraum (7, 7a) umschließt, der mit dem genannten Sitz (9) in Verbindung
steht, dessen Rand zumindest teilweise nach innen geneigt ist, um die Kugel (10) auf
dem Stift (5) so festzulegen, daß sie den genannten inneren Hohlraum (7, 7a) dichtend
abschließt und an einem zufälligen Abheben von dem Sitz (9) gehindert ist und Flüssigkeit
nicht in den inneren Hohlraum einzudringen vermag.
2. Scharnier nach Anspruch 1, dadurch gekennzeichnet, daß der genannte innere Hohlraum
einen ersten, sich im Innern des genannten Körpers (4) erstreckenden Abschnitt (7)
sowie einen zweiten, sich im Innern des genannten Stiftes (5) erstreckenden Abschnitt
(7a) aufweist, wobei der Sitz (9) im wesentiichen koaxial sowohl mit dem ersten Abschnitt
(7) als auch dem zweiten Abschnitt (7a) des inneren Hohlraumes liegt.
3. Scharnier nach Anspruch 2, dadurch gekennzeichnet, daß sich der Sitz entlang der
Längsachse des zweiten Hohlraumabschnittes (7a) über eine Distanz erstreckt, die größer
ist als der Radius der Kugel (10) und kleiner als deren Durchmesser.
4. Scharnier nach Anspruch 2, dadurch gekennzeichnet, daß der Durchmesser des Sitzes
(9) im wesentlichen dem der Kugel (10) entspricht, wobei der zweite Hohlraumabschnitt
(7a) einen kleineren Durchmesser aufweist als der Sitz (9), um einen Durchtritt der
Kugel (10) durch ihn hindurch zu verhindern.
1. Charnière (1), comprenant un élément mâle (2) comportant un corps (4) et un gond
(5) s'étendant à partir de ce corps, un siège (9) étant ménagé à l'extrémité libre
de ce gond (5) pour permettre qu'une bille (10) y soit logée, et comprenant en outre
un élément femelle (3) de forme complémentaire de façon à recevoir au moins une partie
du gond en permettant le pivotement, la bille (10) dépassant au moins en partie le
bord du siège (9) de façon à former une surface d'appui pour l'élément femelle (3),
des moyens de jonction (15) étant prévus pour fixer la charnière (1) sur des supports,
caractérisée en ce que l'élément mâle (2) est creux de façon à délimiter une cavité
intérieure (7, 7a) s'étendant à partir du siège (9), le bord de ce siège (9) étant
repoussé au moins en partie afin d'immobiliser la sphère (10) sur le gond (5) de manière
à obturer de manière étanche la cavité intérieure (7, 7a), ce qui empêche la bille
(10) d'être extraite accidentellement du siège (9) et empêche les liquides de pénétrer
dans la cavité intérieure (7, 7a).
2. Charnière suivant la revendication 1, caractérisée en ce que la cavité intérieure
est constituée d'une première partie (7) s'étendant à l'intérieur du corps (4) et
d'une seconde partie (7a) s'étendant à l'intérieur du gond (5), le siège (9) étant
pratiquement coaxial à la fois à cette première partie (7) et à cette seconde partie
(7a) de la cavité intérieure.
3. Charnière suivant la revendication 2, caractérisée en ce que le siège s'étend suivant
l'axe longitudinal de la seconde partie (7a) de la cavité sur une distance qui est
supérieure au rayon de la bille (10) et inférieure au diamètre de celle-ci.
4. Charnière suivant la revendication 2, caractérisée en ce que le diamètre du siège
(9) est pratiquement le même que celui de la bille (10), la second partie (7a) de
la cavité intérieure comportant un diamètre plus faible que le siège (9) afin d'empêcher
la bille (10) de la traverser.