Structural mounting insert having a non-conductive isolator
The present invention is predicated upon methods and devices for positively mounting structural members while preventing or substantially limiting exposure of such members to environmental conditions possibly leading to corrosion.
1. An insert for adhesion, sealing, and isolating comprising:
a generally non-conductive isolator having a melting point or glass transition temperature greater than about 115° C.;
a matrix material in contact with the generally non-conductive isolator, the matrix material having a tackiness in a green state, the matrix material being cured by exposure to heat after installation of the insert, wherein the tackiness is sufficiently high so that the matrix material resists displacement after application to a surface;
wherein upon installation in a joint between dissimilar materials the insert bonds the two dissimilar materials and resists any displacement that would bring the two dissimilar materials into direct contact with one another.
2. The insert of claim 1 , wherein the isolator includes a network of elongated fibers that are constrained relative to each other against lateral displacement.
3. The insert of claim 2 , wherein the insert expands and contracts during cycles of warming and cooling of the dissimilar materials so that moisture is substantially limited or prevented from entering a gap between the two dissimilar materials.
4. The insert of claim 3 , wherein the generally non-conductive isolator is formed of a hydrophobic material or is laminate that the isolator is hydrophobic.
5. The insert of claim 4 , wherein upon activation of the matrix material the matrix material wets to fill any gaps, to reduce or eliminate any bunching, or both between the two dissimilar materials.
6. The insert of claim 5 , wherein generally non-conductive isolator is one or more non-conductive threads or wires that include a polyamide, a polyester, glass fibers, or any combination thereof.
7. The insert of claim 1 , wherein fiber wherein fibers within the isolator have a longitudinal axis oriented generally non-parallel with any contacting edge of any of the dissimilar materials.
8. The insert of claim 7 , wherein the matrix material encases the generally non-conductive isolator.
9. The insert of claim 1 , wherein an outer surface is part of a non-tacky handling film that lies over the matrix material.
10. The insert of claim 1 , wherein the matrix material is expandable, upon exposure to an elevated temperature.
11. The insert of claim 10 , wherein the isolator includes plastic, glass, ceramic, or rubber.
12. The insert of claim 11 , wherein the isolator is free of metal.
13. The insert of claim 12 , wherein the insert is used to join hinge assemblies, door latch assemblies, front and rear bumper systems, lift gates, or underbody reinforcements.
14. The insert of claim 12 , wherein the isolator includes a melting point of at least about 200° C. and the isolator includes a glass transition to temperature of about 200° C.
15. The insert of claim 1 , wherein the insert is capable of elastically returning to an original state upon being subjected to a force sufficient to deflect the insert.
16. The insert of claim 1 , further including fasteners that join the two dissimilar materials, and
wherein the fasteners extend through the generally non-conductive isolator and the matrix material, the matrix material filling and surrounding an area where the fasteners extend therethrough forming a seal.
17. The insert of claim 16 , wherein the insert expands and contracts during cycles of warming and cooling of the dissimilar materials so that moisture is substantially limited or prevented from entering a gap between the two dissimilar materials.
18. The insert of claim 1 , wherein the matrix material is activatable or deformable so that when activated or deformed the matrix material seals contact points of the two dissimilar materials preventing exposure to corrosion driving components, which can corrode the joint between the two dissimilar materials.
19. An insert for adhesion, sealing, and isolating comprising:
an isolator having a melting point or glass transition temperature greater than about 200° C.;
a matrix material encasing the isolator, the matrix material having a tackiness in a green state, the matrix material being cured by exposure to heat after installation of the insert, wherein the tackiness is sufficiently high so that the matrix material resists displacement after application to a surface;
wherein upon installation in a joint betwe n two dissimilar materials the insert bonds the two dissimilar materials and resists any displacement that would bring the two dissimilar materials into direct contact with one another:
wherein the matrix material is activatable or deformable so that when activated or deformed the matrix material seals contact points of the two dissimilar materials preventing exposure to corrosion driving components, which can corrode the joint between the two dissimilar materials.
20. The insert of claim 10 , wherein the insert expands and contracts during cycles of warming and cooling of the dissimilar materials so that moisture is substantially limited or prevented from entering a gap between the two dissimilar materials, and
wherein the isolator is one or more non-conductive threads or wires that include a polyamide, a polyester, glass fibers, or any combination thereof.