Abstract:
A coupler mechanism comprising plug and receptacle units sealably mates and de-mates first and second reservoirs. In the mating sequence, the plug and receptacle units are brought together so that their end-seals are pressed tightly against each other axially, thus forming a sealed barrier between the units and the outside environment. Once the face-to-face seal between the units has been established, further engagement displaces slidable seal elements laterally, thereby creating an opening between the reservoirs, the opening remaining sealed from the outside environment before, during and after mating. The sequence for demating the units is just the reverse of the mating sequence. One embodiment of the invention applies the aforementioned construction to harsh-environment electrical, fiber-optical, and hybrid electro-optical connectors.
Abstract:
The male connection device comprises a sleeve (4) and a slide (5) that is adapted to occupy, relative to said sleeve (4), a position in which said slide (5) is advanced in said sleeve (4), said device also comprising a tubular film (6) folded back on itself and pressed between the slide (5) and the sleeve (4).The female connection device comprises a sleeve (40) and a slide (41) that is adapted to occupy, relative to said sleeve (40), a position in which said slide (41) is set back in said sleeve (40), said device also comprising a tubular film (42) folded back on itself and pressed between the slide (41) and the sleeve (40).The male-female connection system comprises such a male connection device (2) and such a female connection device (3) which are provided to be engaged within each other.
Abstract:
A device is provided for ensuring the sterile integrity of two separate fluid pathways during interconnection of the two pathways with a two-part connector assembly. The two-part connector assembly is of the type which comprises a male portion and a female portion, each portion initially having a port covered and protected by a peel-away strip. The device comprises a base assembly, a connector clamp assembly mounted to the base assembly and configured for securing the two-part connector assembly in position for interconnection of the male and female portions, and a strip withdrawal assembly mounted to the base assembly and configured for simultaneous withdrawal of the peel-away strips from the ports of the male and female portions.
Abstract:
A connector for transferring a fluid includes a first connector and a second connector. Each connector includes a first outer portion including a first obstructive portion and defining a first fluid passageway for receiving a fluid therein. Each connector further includes a first central nozzle coupled to the first outer portion. The central nozzle includes a first engagement member. The first central nozzle is movable between a first position and a second position with rotation of the first outer portion. In the first position, the first obstructive portion and the first engagement portion substantially overlap to impede fluid flow through the first fluid passageway. In the second position, at least one of the first engagement member and the first obstructive member is displaced to allow fluid flow through the first fluid passageway.
Abstract:
A gasket, connector assembly and method of creating a connection is described. The gasket includes a ring portion having a thickness suitable for creating a seal when compressed between two connector fitting ends, and at least one appendage pair, where each appendage of the at least one appendage pair includes an extension for engaging a reciprocally shaped receiving component on a connector fitting end to create an at least temporarily secured attachment of the gasket to the end of the connector fitting prior to creation of a seal between two connector fitting ends. The connector assembly includes a connector fitting having at least one receiving component on an end of the connector fitting and a gasket having at least one appendage, where the at least one appendage of the gasket engages the at least one receiving component to create an at least temporary secured attachment of the gasket to the connector fitting end.
Abstract:
A connector assembly and method of creating a connection is described. The connector assembly includes a connector fitting having at least one receiving component on an end of the connector fitting and a gasket having at least one appendage, where the at least one appendage of the gasket engages the at least one receiving component to create an at least temporary secured attachment of the gasket to the connector fitting end.
Abstract:
Provided is a means for efficiently completing a high pressure seal and a connector assembly comprising two sealing members, each comprising an annular groove, and two elastomeric gasket members, each disposed into and fittingly received by the annular grooves of one of said sealing members, each gasket additionally comprising a sealing face not received into the annular grooves, wherein the sealing faces are in mutual aligned pressurized contact.
Abstract:
A system for forming a fluid connection includes a first connector (12) and a second connector (14). Both connectors include a tubular body (18,18′) having a membrane (19,19′) mounted on a distal end (27) thereof. A support member (16) or other fastener (214,220) facilitates the coupling of the connectors together so that the membranes are abutted together. Radiant or other form of energy is applied to the abutted membranes so as to sterilize the membranes and melt the membranes so that a passage is formed therethrough.
Abstract:
The invention relates to a material for use in contact with drinking water as well as having microbe-resistant properties, based on a vulcanized rubber mixture, comprising a rubber component as well as usual mixture ingredients, whereby according to the invention, the rubber component is butyl rubber or a halogenated rubber. This material is particularly used for the production of a hose that comprises a core and cover, particularly in connection with an embedded reinforcement support, whereby the material according to the invention is used at least for the core. In this connection, the core is preferably equipped with an additional inner layer of non-cross-linked polyethylene, whereby this inner layer is in direct contact with the drinking water.
Abstract:
The invention relates to a connector (10) comprising: a fluid leadthrough (20); a contact device (14); an essentially planar contact surface (16), and; a fluid leadthrough opening (18), which is designed for leading fluid though, the fluid leadthrough opening (18) passing through the contact surface (16); a sterile covering (64) designed for sterilely covering, at least in part, the contact surface (16) and/or an end of the fluid leadthrough opening (20) facing the contact surface, and; a coupling device (22), which is designed for engaging with a complementary coupling device (34) of a complementary connector (12) along a coupling direction, the coupling device (40) being essentially parallel to the contact surface (16). The invention also relates to relates to a connector system, to a use of a connector (10) and to a complementary connector (12) for connecting a fluid supply of the connector (10) to a fluid discharge in a sterile manner.