IP Library Granted Patent US 7,146,700
Granted Patent B1
US 7,146,700 · App. 10/971,557 · Granted Dec 12, 2006

Method of manufacturing a pressure damper for a fluid conduit

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Quick Facts
Patent No.
US 7,146,700
App. No.
10/971,557
Granted
Dec 12, 2006
Kind
B1
Abstract

A pressure damper for use with a fluid conduit, such a fuel rail in a vehicular fuel delivery system, is manufactured by deforming a workpiece, such as by stamping, hydroforming, or magnetic pulse forming, to have an enlarged portion of predetermined size and reduced wall thickness. The predetermined size and reduced wall thickness of the enlarged portion correspond to a magnitude of fluid pressure at which the enlarged portion will flex or otherwise behave elastically, allowing the enlarged portion to function as a pressure damper. The workpiece can be secured to a fuel rail, such as by brazing, quick-connects, O-ring joints, welding, gluing, or magnetic pulse forming or welding techniques. Alternatively, the workpiece is embodied as the fuel rail itself, and the pressure damper is formed integrally with the fuel rail, thereby eliminating the need to secure a separate damper to a fuel rail.

Claims (17)

1. A method of manufacturing a combined fluid conduit and pressure damper assembly comprising the steps of:

(a) providing a workpiece;

(b) deforming the workpiece to provide an enlarged pressure damper portion having a reduced wall thickness region sufficient to flex elastically under certain pressure conditions and a non-reduced wall thickness region;

(c) providing a fluid conduit comprising a fuel rail; and

(d) securing the pressure damper portion to the fluid conduit to provide a combined fluid conduit and pressure damper assembly.

2. The method defined in claim 1 wherein said step (a) is performed by providing a tubular workpiece.

3. The method defined in claim 1 wherein said step (b) is performed by one of hydroforming and magnetic pulse forming.

4. The method defined in claim 1 wherein said step (c) is performed by providing a fuel rail including a plurality of nodes having respective cups.

5. The method defined in claim 1 wherein said step (d) is performed by one of brazing, quick-connects, O-ring joints, welding, gluing, or magnetic pulse forming or welding techniques.

6. The method defined in claim 1 wherein said step (a) is performed by providing a workpiece having a desired shape.

7. A method of manufacturing an integral fluid conduit and pressure damper assembly comprising the steps of:

(a) providing a workpiece; and

(b) deforming the workpiece to provide an enlarged pressure damper portion having a reduced wall thickness region sufficient to flex elastically under certain pressure conditions and a non-reduced wall thickness region and a fluid conduit portion comprising a fuel rail to provide an integral fluid conduit and pressure damper assembly.

8. The method defined in claim 7 wherein said step (a) is performed by providing a tubular workpiece.

9. The method defined in claim 7 wherein said step (b) is performed by one of hydroforming and magnetic pulse forming.

10. The method defined in claim 7 wherein said step (b) is performed by deforming the workpiece to provide the fluid conduit portion with a plurality of nodes having respective cups.

11. The method defined in claim 7 wherein said step (a) is performed by providing a workpiece having a desired shape.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 27, 2005
From: DANA CORPORATION
To: MILLENNIUM INDUSTRIES ANGOLA, LLC
Reel/Frame 016937/0450 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 14, 2005
From: DARRAH, MATTHEW D.; FISHER, GLENN D.
To: DANA CORPORATION
Reel/Frame 015595/0410 →