1. Field of the Invention
The present invention relates to a fluid line coupling.
2. Description of the Related Art
One fluid line coupling is known, for example, from DE 43 00 037 C1. The prior fluid line coupling is provided with a coupling body having a connector for a line of a fluid line arrangement, and is equipped with a receiving part configured to receive a plug-in part that is connected to another line of the fluid line arrangement. Extending between the connector and the receiving part is a fluid line cavity through which a fluid flows in the installed situation, i.e., that of being integrated into the fluid line arrangement.
Known from JP 2006-125480 is a line connection arrangement comprising a tubular, bent heating wire that is fitted to the contour of a sealing unit.
The invention provides a fluid line coupling that ensures the reliable passage of a fluid flowing through the fluid line coupling, even at relatively low temperatures.
By virtue of the fact that the fluid line coupling according to the invention comprises an electrically heatable heating element that is inserted in the connecting part and is coupled in a fluid-tight manner via the sealing means, a fluid flowing in the fluid line cavity can be heated very efficiently over the relatively large-area contact region that is in thermodynamic contact with the fluid line cavity.
In one form thereof, the present invention provides a fluid line coupling provided with a coupling body that has a connector for a line of a fluid line arrangement and is equipped with a receiving part configured to receive a plug-in part that is connected to another line of the fluid line arrangement, wherein a fluid line cavity extends between the connector and the receiving part, characterized in that configured on the coupling body is a sleeve-like connecting part that is open to the outside and that gives into the fluid line cavity, in that a heating element that can be heated by electric power is present and can be inserted into the connecting part and has a contact region which in the inserted arrangement of the heating element forms a wall region of the fluid line cavity, in that a sealing unit is present and is disposed between the connecting part and the heating element, and in that securing means are present and hold the heating element fluid-tightly in the connecting part.
The above mentioned and other features and objects of this invention, and the manner of attaining them, will become more apparent and the invention itself will be better understood by reference to the following description of embodiments of the invention taken in conjunction with the accompanying drawings, wherein:
Corresponding reference characters indicate corresponding parts throughout the several views. Although the exemplifications set out herein illustrate embodiments of the invention, in several forms, the embodiments disclosed below are not intended to be exhaustive or to be construed as limiting the scope of the invention to the precise forms disclosed.
At the end of receiving part 2 facing away from socket 3, attached, as a connector, at a bracket portion 5 is a connection fitting 6, to which can be connected another line (not shown in
Configured on the coupling body 1 at the opposite end of bracket portion 5 from receiving part 2 and in axial prolongation of receiving part 2 is a sleeve-like connecting part 8, which, on the one hand, opens by a cylindrical mouth portion 9 into the fluid line cavity 7, and, on the other hand, is open to the outside in the direction pointing away from fluid line cavity 7. On the radially inward-facing inner face, connecting part 8 presents an abutment shoulder 10, which extends from mouth portion 9 radially outward perpendicularly to the longitudinal axis of connecting part 8. From the abutment shoulder 10, a cylindrical socket portion 11 extends axially outward away from mouth portion 9, and has attached to its end spring arms 12 that extend in the longitudinal direction of connecting part 8 and are elastic in the radial direction. Each spring arm 12 has, formed at its end directed away from socket portion 11, a respective snap nose 13 that extends outward in the radial direction.
The fluid line coupling according to the invention is also equipped with a heating element 14, which is made from a synthetic material that is electrically conductive, for example due to the addition of carbon particles or metal particles, and has a positive temperature coefficient. In the representation according to
Heating element 14 also comprises, joined to first cylinder portion 15 on the side facing away from fluid-contact surface 16, a second cylinder portion 17 with a larger diameter than first cylinder portion 15, with the result that a pressure shoulder 18, disposed opposite abutment shoulder 10, is formed between first cylinder portion 15 and second cylinder portion 17. Second cylinder portion 17 is inserted flush into socket portion 11 and protrudes axially outward beyond the spring arms 12 by a pressure face 19 that is oriented perpendicular to the longitudinal axis of connecting part 8.
Embedded in heating element 14 in this exemplary embodiment are two metal connector pins 20, which extend from first cylinder portion 15 all the way through second cylinder portion 17 to protrude outward beyond pressure face 19. The connector pins 20 are connected to an electric power supply (not shown in
In the assembled arrangement of coupling body 1 and heating element 14, disposed as a sealing unit between abutment shoulder 10 and pressure shoulder 18 is an annular, closed sealing ring 21 made of a soft elastic material, which surrounds the first cylinder portion 15 of heating element 14 and bears by its outer face against the inner wall of socket portion 11, said sealing ring 21 being biased in the radial direction in this arrangement.
The fluid line coupling according to the invention is further provided with securing means comprising a securing ring 22 made of a hard elastic material, which in the assembled arrangement of the fluid line coupling outwardly surrounds connecting part 8. Securing ring 22 is provided, on its side that faces toward receiving part 2 in the assembled arrangement, with a snap collar 23, which extends radially inwardly and in the assembled arrangement according to
Sealing ring 21 is thereby subjected to an axial pressure force in addition to the radial pressure force, thus substantially increasing the sealing effect. This is highly advantageous particularly since, despite the reduction of the mechanical strength of the heating element 14 that occurs with increasing heating, the high sealing effect is nevertheless substantially maintained by the continual axial pressure of sealing ring 21 against abutment shoulder 10 and against pressure shoulder 18 that is induced by securing ring 22.
To enable fluid to flow through the fluid line coupling, fluid-contact sleeve 25 is pierced by a penetrating opening 28 in the region of the connection of connection fitting 6 to bracket portion 5. Alignment means (not shown in
In the exemplary embodiment depicted in
Additionally, in the exemplary embodiment according to
While this invention has been described as having a preferred design, the present invention can be further modified within the spirit and scope of this disclosure. This application is therefore intended to cover any variations, uses, or adaptations of the invention using its general principles. Further, this application is intended to cover such departures from the present disclosure as come within known or customary practice in the art to which this invention pertains and which fall within the limits of the appended claims.
Number | Date | Country | Kind |
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10 2007 036 533.2 | Aug 2007 | DE | national |
This application is a U.S. National Phase Patent Application based on International Application Serial No. PCT/EP2008/005618 filed Jul. 10, 2008, the disclosure of which is hereby explicitly incorporated by reference herein.
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/EP08/05618 | 7/10/2008 | WO | 00 | 2/1/2010 |