The present invention relates generally to front-end structures for vehicles, and more particularly to a lightweight, integral, corrosion-resistant front-end structure with a shorter manufacturing cycle time and lower costs, as compared with conventional front-end structures.
Existing inner fender structures include a high number of steel stampings that are individually fixtured and welded together. Typically, these parts support a battery, washer fluid reservoir, air cleaner, splash shields, and fenders. The high part count can require significant in-plant processing and thus require substantial assembly time, labor, and cost. Also, steel parts can add significant weight to the vehicle and adversely affect its performance.
It is desirable to provide a lightweight, integral, corrosion-resistant front-end structure that enhances vehicle performance, minimizes assembly time, decreases labor, and reduces costs associated therewith.
A lightweight, integral, corrosion-resistant front-end structure (“front-end structure”) for a vehicle is provided. The front-end structure includes a one-piece composite structure, a metal insert, and a series of washers. The one-piece composite structure is formed from a polymer-composite with a washer fluid reservoir, a tray, and/or a wheel housing. The metal insert is incorporated within the one-piece composite structure for reinforcing the same and isolating the metal insert from corrosive substances. The metal insert is attached to a radiator support frame and/or a hood. The washers offset the metal insert from the radiator support frame and/or hood so as to eliminate the galvanic potential and prevent corrosion of the insert. The washers are attached to the metal insert by the one-piece composite structure.
One advantage of the invention is that a front-end structure is provided that has substantially fewer parts as compared with conventional front-end structures.
Another advantage of the invention is that a front-end structure is provided that decreases assembly time and costs.
Yet another advantage of the invention is that a front-end structure is provided that has a substantially lower weight as compared with conventional front-end structures.
Other advantages of the present invention will become apparent upon considering the following detailed description and appended claims, and upon reference to the accompanying drawings.
For a more complete understanding of this invention, reference should now be made to the embodiments illustrated in greater detail in the accompanying drawings and described below by way of the examples of the invention:
In the following figures, the same reference numerals are used to identify the same components in the various views.
Referring to
In the illustrated embodiment, front-end assembly 12 includes integral front-end structure 14, hood 16, radiator support frame 18, battery 20, cowl sheet metal 22, fender 23 and washer fluid reservoir 24. As detailed below, the integral front-end structure 14 provides a universal locating structure for positioning the hood 16, radiator support frame 18, battery 20, cowl sheet metal 22, fender 23, and washer fluid reservoir 24. In this way, integral front-end structure 14 eliminates the significant amount of fixturing typically associated with multiple-part front-end structures. Also, integral front-end structure 14 has a substantially lower weight, as compared with conventional steel front-end structures, which can require overlapping material for fastening multiple parts together.
As shown in
With attention to
As best shown in
Metal insert 28 has a front end 58 and an opposing rear end 60, respectively with a radiator support member 62 and a hood pivot member 64. Radiator support member 62 is attached to radiator support frame 18 (shown in
The C-shaped lateral cross-section 66 includes a top lateral flange portion 68, a bottom lateral flange portion 70, and a vertical flange portion 72 extending therebetween. In this embodiment, vertical flange portion 72 is formed with a series of reinforcing ribs 74. Also, top and bottom flange portions 68, 70 have washers 76 offsetting radiator support frame 18 from metal insert 28. The washers 76 are formed from aluminum and are utilized to separate a perimeter surface 28′ of metal insert 28 from radiator support frame 18, thus eliminating the galvanic potential and preventing corrosion of metal insert 28.
Each washer 76 has a first annular flange 78, a second annular flange 80, and an annular groove 82 therebetween. Second annular flange 80 is sandwiched between metal insert 28 a portion 84 of one-piece composite structure 26 so as to attach washer 76 to metal insert 28. In this respect, annular groove 82 receives portion 84 of one-piece composite structure 26. First annular flange 78 contacts radiator support frame 18 and offsets the same from metal insert 28. First annular flange 78 is also beneficial for preventing composite structure 26 from being crushed, cracked, or otherwise damaged between radiator support frame 66 and metal insert 28. Each washer 76 defines an opening 86 for receiving a bolt member 88 that attaches radiator support member 62 to one-piece metal insert 28. Likewise, one-piece metal insert 28 defines a series of holes 90 aligned with washers 76 for receiving bolt members 88 and mounting to radiator support frame 18.
Referring to
As exemplified in
While particular embodiments of the invention have been shown and described, it will be understood, of course, that the invention is not limited thereto since modifications may be made by those skilled in the art, particularly in light of the foregoing teachings. Accordingly, it is intended that the invention be limited only in terms of the appended claims.
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Number | Date | Country | |
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20080079290 A1 | Apr 2008 | US |