Weatherstrip assembly and method of isolating dissimilar metals in the weatherstrip assembly
A weatherstrip assembly includes a body having a carrier or core formed from a first metal for providing strength and rigidity to the body. A show surface of the weatherstrip assembly is formed of a second metal different than the first metal. The second metal acts as the show surface of the weatherstrip assembly. An isolative, electrically low conductivity layer is received only on portions of the first metal that are disposed adjacent to portions of the second metal and potentially subject to electrical contact therebetween.
1. A weatherstrip assembly comprising:
a body that includes, at least in part,
a carrier formed from a first metal for providing strength and rigidity to the body, the carrier having a first, vehicle mounting portion configured for connection to an associated vehicle and a second, show surface mounting portion adjacent the vehicle mounting portion having a mushroom-shaped conformation in cross-section, and
a show surface formed of a second metal different than the first metal where the second metal has a C-shaped conformation which receives the show surface mounting portion of the carrier and the second metal acts at least in part as a show surface of the weatherseal assembly, and
an electrically non-conductive layer of a minimal amount received on only the mushroom-shaped show surface mounting portion of the first metal of the carrier disposed adjacent to portions of the second metal and the first metal, respectively, and potentially subject to electrical contact therebetween.
2. The weatherstrip assembly of claim 1 wherein the electrically non-conductive layer is extruded on to select portions of the first metal.
3. The weatherstrip assembly of claim 2 wherein the electrically non-conductive layer is an olefinic-based polymer.
4. The weatherstrip assembly of claim 3 wherein the electrically non-conductive layer has a thickness ranging from about 0.1 mm to about 0.2 mm.
5. The weatherstrip assembly of claim 3 wherein the electrically non-conductive layer has a minimum thickness of about 0.2 mm.
6. The weatherstrip assembly of claim 1 wherein the electrically non-conductive layer is an olefinic-based polymer.
7. The weatherstrip assembly of claim 1 wherein the electrically non-conductive layer has a thickness ranging from about 0.1 mm to about 0.2 mm.
8. The weatherstrip assembly of claim 1 wherein the electrically non-conductive layer has a minimum thickness of about 0.2 mm.
9. The weatherstrip assembly of claim 1 wherein the electrically non-conductive layer is an olefinic-based polymer having a minimum thickness of 0.2 mm and is received only on a surface of the mushroom-shaped show surface mounting portion facing the C-shaped show surface received thereon.
10. A weatherstrip assembly comprising:
a body that includes, at least in part,
a carrier formed from a first metal for providing strength and rigidity to the body, the carrier having a first, vehicle mounting portion configured for connection to an associated vehicle and a second, show surface mounting portion adjacent the vehicle mounting portion having a mushroom-shaped conformation in cross-section, and
a show surface formed of a second metal different than the first metal where the second metal has a C-shaped conformation which receives the show surface mounting portion of the carrier and the second metal acts at least in part as a show surface of the weatherseal assembly, and
an electrically non-conductive layer received on only the mushroom-shaped show surface mounting portion of the first metal of the carrier disposed adjacent to portions of the second metal, and potentially subject to electrical contact between the first and second metals of the carrier and the show surface, wherein the electrically non-conductive layer is an olefinic-based polymer has a minimum thickness of about 0.2 mm that isolates the first metal of the carrier from galvanic reaction with the second metal of the show surface.
11. The weatherstrip assembly of claim 10 wherein a remainder of the carrier is void of the olefinic-based polymer.