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EP 0 597 531 B1 |
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EUROPEAN PATENT SPECIFICATION |
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Mention of the grant of the patent: |
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14.08.1996 Bulletin 1996/33 |
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Date of filing: 04.11.1993 |
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International Patent Classification (IPC)6: H01R 13/623 |
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Connector assembly
Verbinderanordnung
Assemblage de connecteur
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Designated Contracting States: |
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BE DE ES FR GB IT NL SE |
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Priority: |
09.11.1992 NL 9201955
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Date of publication of application: |
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18.05.1994 Bulletin 1994/20 |
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Proprietor: FRAMATOME CONNECTORS INTERNATIONAL |
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92084 Paris La Défense (FR) |
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Inventors: |
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- DeMeulemeester, Yves
B-2400 Mol (BE)
- Bueds, Marc
B-2861 St. Katelijne Waver (BE)
- Creelle, Eddy
B-9200 Dendermonde (BE)
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Representative: de Vries, Johannes Hendrik Fokke et al |
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De Vries & Metman,
Overschiestraat 184 N 1062 XK Amsterdam 1062 XK Amsterdam (NL) |
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References cited: :
EP-A- 0 173 845 EP-A- 0 237 423
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EP-A- 0 189 857 EP-A- 0 346 234
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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 a connector assembly according to the preamble of claim
1.
[0002] Such a connector assembly generally indicated as connector with locking of the bayonet
type, is known in various embodiments and for example disclosed in EP-A-0 189 857,
US-A-3.901.574 and FR-A-2.632.783.
[0003] EP-A-0 189 857 discloses a connector assembly according to the preamble of claim
1.
[0004] In this known connector assembly the rib of the first connector part has a staggered
portion in its side wall directed towards the ring. The ring is provided with a separate
locking element which is slidably mounted and spring-biased towards the side wall
of the rib having the staggered portion.
[0005] In the connector assembly according to US-A-3.901.574 bosses are provided in the
screw thread paths on the cylindrical wall of the first connector part, while the
ring at its inner wall supports the locking elements adapted to pass these bosses
for reaching the end position by deformation of the ring. In the known connector assembly
of FR-A-2.632.783 the locking elements consist of lugs which are brought into the
end position by deformation of the rotatable ring. In order to facilitate deformation
of the ring, Lots and thinned wall parts are provided in the same, whereby manufacturing
the ring becomes complicated. The locking elements made as pins are rather vulnerable
and are subject to wear.
[0006] In these known connector assemblies signalling the reaching of the end position is
obtained in that the locking elements click into the end position by the spring force
of the ring.
[0007] The invention aims to provide an improved connector assembly of the above-mentioned
type, which can be manufactured in a simple manner and wherein reaching the end position
of the locking elements does not require any deformation of the ring.
[0008] To this end the connector assembly of the invention is provided with the characterizing
features of claim 1.
[0009] In this manner a connector assembly is obtained, which can be manufactured in a relatively
simple manner, wherein by providing a staggered portion in each of the cooperating
side walls of the rib and the lug transverse to the axial direction the spring force
operating in axial direction is advantageously used for locking the ring in the end
position and for signalling the reaching of this end position. The ribs are relatively
solid due to their length and are adapted to take a high load.
[0010] The invention will be further explained by reference to the drawings in which an
embodiment is schematically shown.
[0011] Fig. 1 shows a side view partially in cross section of an embodiment of the connector
assembly according to the invention.
[0012] Fig. 2 is a front view of the first connector part of the connector assembly of Fig.
1.
[0013] Fig. 3 is a front view of the ring of the second connector part of the connector
assembly of Fig. 1.
[0014] Figs. 4A - 4C schematically show in a development the screw thread paths and locking
elements of both connector parts.
[0015] Fig. 1 shows a connector assembly in its demounted situation, the connector assembly
comprising a first connector part 1 and a second connector part 2 with a rotatable
ring 3. The first connector part 1 has a cylindrical wall 4 with three locking elements
5 regularly distributed along the circumference and made as a rib located according
to a screw thread path and each extending along a substantial length of arc which
amounts approximately 78° in the embodiment shown. It is shown in Fig. 2 that the
connector part 1 has a number of openings 6 for contact elements not further shown.
In a corresponding manner the second connector part 2 has openings not further shown
for contact elements.
[0016] The ring 3 of the connector part 2 is located on this connector part in the assembled
position, wherein a bayonet spring ring 7 is enclosed between a collar 8 of the connector
part 2 and a collar 9 of the ring 3. The ring 3 comprises three screw thread paths
10 for the locking elements 5, wherein each screw thread path is determined by three
lugs 11, 12 and 13 formed on the inner wall of the ring 3. As appears from Fig. 4A
in particular, each two first lugs 11 successive in circumferential direction determine
an axial inlet slot 14 in which a locking element 5 can be received fittingly. The
lugs 12 and 13 are lying on both sides of the lug 11 in circumferential direction,
whereas in axial direction the lug 11 and the lugs 12, 13 are lying on both sides
of the screw thread path 10. It is indicated in Figs. 1 and 4 that the lugs 13 are
bevelled at the side directed towards the connector part 1 so that the bayonet spring
ring 7 can be mounted easily in the ring 3.
[0017] For coupling the connector parts 1 and 2 the locking elements 5 are inserted into
the inlet slots 14 in a manner as shown in Fig. 4A and subsequently the ring 3 is
rotated into the end position shown in Fig. 4C. During this rotation the side 15 of
each locking element 5 is pressed against the side 16 of the corresponding lug 11
by the occurring forces and the operation of the bayonet spring ring 7. As appears
from Fig. 4B, the sides 15 and 16 engage each other along a great length so that a
relatively high force can be taken. The cooperating sides 15, 16 of the locking elements
5 and lugs 11, respectively, each have an end part 17 and 18, respectively, extending
substantially in the circumferential direction. A staggered portion 19 and 20, respectively,
is provided in this end part 17, 18, said staggered portion joining the not-staggered
end part 17, 18 by a shoulder 21 extending substantially axially.
[0018] When the ring 3 is rotated from the intermediate position of Fig. 4B into the end
position of Fig. 4C, the user in the first place will feel during rotation of the
ring that the end parts 17, 18 of the locking elements 5 and the lugs 11 engage each
other in that no further axial movement occurs anymore. Subsequently the ring 3 springs
back in axial direction due to the operation of the bayonet spring ring 7 as soon
as the shoulders 21 do pass each other. Thereby a click sound is caused so that reaching
the end position is signalled to the user. Because the shoulders 21 engage each other
in the end position of Fig. 4C, the ring 3 cannot come loose unintentionally so that
the connectors parts 1, 2 are locked in the coupled position.
[0019] The described shape of the sides 15, 16 with end parts 17, 18 extending in circumferential
direction shows the important advantage that during coupling during which a relatively
high force is exerted on the faces 15, 16 caused by the contact elements of the connector
parts 1, 2 sliding one into the other, the end parts 17, 18 remain unloaded so that
wear of these parts and in particular of the shoulders 21 will not occur. In the fully
coupled position in which the end parts 17, 18 of the locking elements 5 and the lugs
11 engage each other, the force maintaining the connector assembly in the coupled
position, is distributed along a relatively large surface whereby the ribs 5 and the
lugs 11 resist this force well.
[0020] It can further be seen in Fig. 4C that the lug 13 of each group of lugs 11-13 determines
a stop edge 22 for the locking element 5 of a previous group of lugs 11-13 so that
the ring 3 cannot be further rotated after reaching the end position.
[0021] During disengaging the connector parts 1, 2 the side 23 of the locking elements 5
will be pressed against the side 24 of the lugs 12, 13 by the occurring forces, whereby
the connector part 2 will be pulled out of the connector part 1 by rotating the ring
3. Therefore also during disengaging the locking elements 5 are engaging the lugs
12, 13 along a relatively great length, so that a relatively high force can be taken.
[0022] It is noted that the bayonet spring ring 7 also has the usual function to maintain
the couple length at a constant value, i.e. the distance along which the contact elements
of both connector parts 1, 2 are slided into each other. Manufacturing tolerances
and a slight wear will be received by the bayonet spring ring 7.
[0023] The invention is not restricted to the above described embodiment which can be varied
in a number of ways within the scope of the claims.
1. Connector assembly comprising a first connector part (1) with a cylindrical wall (4)
with at least one locking element (5) made as a rib following a screw thread path
and having an axially staggered portion (19), and a second connector part (2) with
a rotatable ring (3) with a corresponding screw thread part (10) for each locking
element, said components being integrally made of plastic material, wherein the side
wall (16) of said screw thread part (10) directed towards the first connector part
(1) is formed by the side wall of at least one first lug (11), wherein during coupling
the connector parts (1,2) said side wall (16) cooperates with an opposite lengthwise
side wall (15) of the rib (5) and in the coupled position of the connector parts each
rib (5) is in an end position in the screw thread part (10) and each rib (5) with
its side wall (15) is axially spring-biased against said side wall (16) of the screw
thread path (10), wherin means (19-21) are provided for signalling the reaching of
the end position, characterized in that the staggered portion (19) of the rib (5)
is provided in the side wall (15) cooperating with the side wall (16) of the lug (11)
during coupling and in that said side wall (16) is provided with a corresponding staggered
portion (20).
2. Connector assembly according to claim 1, characterized in that the staggered portion (19,20) joins said side of the rib (5) and lug (11), respectively,
through a shoulder (21) extending substantially axially.
3. Connector assembly according to claim 1 or 2, characterized in that the cooperating sides (15,16) of the rib (5) and the lug (11) include an end part
(17;18) extending substantially in circumferential direction and in which the staggered
portions (19;20) are provided.
4. Connector assembly according to anyone of the preceding claims, characterized in that each screw thread path (10) is further bounded by two additional lugs (12,13) located
in circumferential direction on both sides of the first lug (11) and being separated
from the first lug in axial direction by the screw thread path (10).
5. Connector assembly according to claim 4, characterized in that two or more ribs (5) and corresponding groups of three lugs (11-13) are provided,
wherein one (13) of the two additional lugs (12,13) of each group (11-13) has a stop
edge (22) for the rib (5) of another group.
6. Connector assembly according to anyone of the preceding claims, characterized in that two first lugs (11) successive in circumferential direction determine an axial inlet
slot (14) for a rib (5).
7. Connector assembly according to claim 6, characterized in that each rib (5) is fittingly received in an characterized in that each rib is fittingly
received in an inlet slot (14).
8. Connector assembly according to anyone of the preceding claims, characterized in that each rib (5) extends along a length of arc of at least 40°.
1. Verbinderanordnung mit einem ersten Verbinderteil (1) mit einer zylindrischen Wand
(4) mit wenigstens einem Verschlußelement (5), das als einem Schraubgewindegang folgende
Rippe ausgebildet ist und einen axial versetzten Abschnitt (19) aufweist, und einem
zweiten Verbinderteil (2) mit einem drehbaren Ring (3) mit einem entsprechenden Schraubgewindeteil
(10) für jedes Verschlußelement, welche Teile einteilig aus Plastikmaterial hergestellt
sind, wobei die Seitenwand (16) des Schraubgewindeteils (10), die dem ersten Verbinderteil
(1) zugewandt ist, durch die Seitenwand wenigstens einer ersten Nase (11) gebildet
ist, wobei während des Koppelns der Verbinderteile (1, 2) diese Seitenwand (16) mit
einer gegenüberliegenden Längsseitenwand (15) der Rippe (5) zusammenwirkt und in gekoppelter
Position der Verbinderteile jede Rippe (5) in einer Endposition in dem Schraubgewindeteil
(10) ist und jede Rippe (5) mit ihrer Seitenwand (15) gegen die Seitenwand (16) des
Schraubgewindegangs (10) axial federbeaufschlagt ist, wobei Mittel (19-21) zum Anzeigen
des Erreichens der Endposition vorgesehen sind, dadurch gekennzeichnet, daß der versetzte
Abschnitt (19) der Rippe (5) an der Seitenwand (15) vorgesehen ist, die mit der Seitenwand
(16) der Nase (11) während des Koppelns zusammenwirkt, und daß die Seitenwand (16)
mit einem entsprechenden versetzten Abschnitt (20) versehen ist.
2. Verbinderanordnung nach Anspruch 1, dadurch gekennzeichnet, daß der versetzte Abschnitt
(19, 20) an die Seite der Rippe (5) bzw. Nase (11) über eine im wesentlichen axial
verlaufende Schulter (21) anschließt.
3. Verbinderanordnung nach Anspruch 1 oder 2, dadurch gekennzeichnet, daß die zusammenwirkenden
Seiten (15, 16) der Rippe (5) und der Nase (11) einen im wesentlichen in Umfangsrichtung
verlaufenden Endbereich (17; 18) umfassen, in dem die versetzten Abschnitte (19; 20)
vorgesehen sind.
4. Verbinderanordnung nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet,
daß jeder Schraubgewindegang (10) durch zwei zusätzliche Nasen (12, 13) begrenzt ist,
die in Umfangsrichtung an beiden Seiten der ersten Nase (11) angeordnet und von der
ersten Nase in axialer Richtung durch den Schraubgewindegang (10) getrennt sind.
5. Verbinderanordnung nach Anspruch 4, dadurch gekennzeichnet, daß zwei oder mehr Rippen
(5) und entsprechende Gruppen von drei Nasen (11-13) vorgesehen sind, wobei eine (13)
der zwei zusätzlichen Nasen (12, 13) einer jeden Gruppe (11-13) eine Anschlagkante
(22) für die Rippe (5) einer anderen Gruppe hat.
6. Verbinderanordnung nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet,
daß zwei in umfangsrichtung aufeinanderfolgende erste Nasen (11) einen axialen Einlaßschlitz
(14) für eine Rippe (5) festlegen.
7. Verbinderanordnung nach Anspruch 6, dadurch gekennzeichnet, daß jede Rippe (5) in
einem Einlaßschlitz (14) genau aufgenommen wird.
8. Verbinderanordnung nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet,
daß jede Rippe (5) sich über einen Kreissektor von wenigstens 40° erstreckt.
1. Assemblage de connecteur comportant une première partie de connecteur (1), ayant une
paroi cylindrique (4) comportant au moins un élément de verrouillage (5) réalisé sous
la forme d'une nervure décrivant le trajet d'un filet de vis et ayant une partie étagée
axialement (19), et une seconde partie de connecteur (2) comportant un anneau (3)
mobile en rotation ayant une partie correspondante (10) formant filet de vis pour
chaque élément de verrouillage, lesdits composants étant constitués entièrement de
matière plastique, dans lequel la paroi latérale (16) de ladite partie (10) formant
filet de vis dirigée vers la première partie de connecteur (1) est formée par la paroi
latérale d'au moins une première patte (11), dans lequel, pendant l'assemblage des
parties de connecteur (1, 2), ladite paroi latérale (16) coopère avec une paroi latérale
(15) opposée, dirigée dans le sens de la longueur, de la nervure (5) et, dans la position
assemblée des parties de connecteur, chaque nervure (5) est dans une position d'extrémité
dans la partie (10) formant filet de vis et chaque nervure (5), avec sa paroi latérale
(15), est rappelée élastiquement, axialement, contre ladite paroi latérale (16) dudit
trajet (10) de filet de vis, dans lequel des moyens (19 à 21) sont agencés pour indiquer
que l'on a atteint la position d'extrémité, caractérisé en ce que la partie étagée
(19) de la nervure (5) est formée dans la paroi latérale (15) coopérant avec la paroi
latérale (16) de la patte (11) pendant l'assemblage et en ce que ladite paroi latérale
(16) est munie d'une partie étagée correspondante (20).
2. Assemblage de connecteur selon la revendication 1, caractérisé en ce que la partie
étagée (19, 20) rejoint ledit côté de la nervure (5) et la patte (11), respectivement,
par l'intermédiaire d'un épaulement (21) s'étendant pratiquement axialement.
3. Assemblage de connecteur selon la revendication 1 ou 2, caractérisé en ce que les
côtés complémentaires (15, 16) de la nervure (5) et de la patte (11) comportent une
partie d'extrémité (17 ; 18) s'étendant pratiquement dans la direction circonférentielle
et dans laquelle sont agencées les parties étagées (19, 20).
4. Assemblage de connecteur selon l'une quelconque des revendications précédentes, caractérisé
en ce que chaque trajet (10) de filet de vis est en outre délimité par deux pattes
supplémentaires (12, 13) positionnées dans la direction circonférentielle des deux
côtés de la première patte (11) et séparées de la première patte dans la direction
axiale par le trajet (10) de filet de vis.
5. Assemblage de connecteur selon la revendication 4, caractérisé en ce que deux ou plus
de deux nervures (5) et groupes correspondants de trois pattes (11 à 13) sont agencés,
dans lequel l'une (13) des deux pattes supplémentaires (12,13) de chaque groupe (11
à 13) comporte un bord (22) de butée pour la nervure (5) d'un autre groupe.
6. Assemblage de connecteur selon l'une quelconque des revendications précédentes, caractérisé
en ce que deux premières pattes (11) successives dans la direction circonférentielle
déterminent une fente d'entrée axiale (14) pour une nervure (5).
7. Assemblage de connecteur selon la revendication 6, caractérisé en ce que chaque nervure
(5) est reçue de manière serrée dans une fente d'entrée (14).
8. Assemblage de connecteur selon l'une quelconque des revendications précédentes, caractérisé
en ce que chaque nervure (5) s'étend sur une longueur d'arc d'au moins 40°.

