SEALED ELECTRIC TERMINAL ASSEMBLY AND METHOD
A wire terminal assembly is disclosed for a cable conductive core. A conductive terminal is connected to the conductive cable core along a conductive connection interface. A coating is disposed over the conductive connection interface. The coating includes the free radical addition polymerizate of a coating composition including: (1) a polymerizable compound comprising an unsaturated bond, and (2) greater than 4 parts per hundred by weight of a free radical photoinitiator, based on the total weight of polymerizable compound.
1 . A wire terminal assembly, comprising:
a conductive cable core;
a conductive terminal connected to the conductive cable core along a conductive connection interface; and
a coating over the conductive connection interface, comprising the free radical addition polymerizate of a coating composition comprising:
(1) a polymerizable compound comprising an unsaturated bond, and
(2) greater than 4 parts per hundred by weight of a free radical photoinitiator, based on the total weight of polymerizable compound.
2 . The assembly of claim 1 , wherein the free radical photoinitator comprises a xanthone, a quinone, a hydroxyalkylphenone, a benzophenone, an aminoalkylphenone, an acetophenone derivative, a benzoin derivative, a benzylketal, a 1,2-diketone, an O-acyl oximoketone, an acylphosphonate, a thiobenzoic S-ester, or a triazine, or a mixture comprising any combination of the foregoing.
3 . The assembly of claim 1 , wherein the free radical photoinitator comprises a xanthone or a fluorone or 2,4,6 trimethylbenzoylphosphine oxide, or a mixture comprising any combination of the foregoing.
4 . The assembly of claim 1 , wherein the free radical photoinitator comprises a fluorone derivative.
5 . The assembly of claim 1 , wherein the coating composition comprises at least 6 parts per hundred by weight of the free radical photoinitiator, based on the total weight of polymerizable compound.
6 . The assembly of claim 1 , wherein the coating composition comprises at least 8 parts per hundred by weight of the free radical photoinitiator, based on the total weight of polymerizable compound.
7 . The assembly of claim 1 , wherein the coating composition comprises at least 10 parts per hundred by weight of the free radical photoinitiator, based on the total weight of polymerizable compound.
8 . The assembly of claim 1 , wherein the coating composition further comprises a ultraviolet light absorber.
9 . The assembly of claim 8 , wherein the coating composition comprises at least 1000 parts per million by weight of the ultraviolet light absorber, based on the total weight of polymerizable compound.
10 . The assembly of claim 1 , wherein the coating composition comprises an oligomer and a monomer.
11 . The assembly of claim 10 , wherein the oligomer is the polymerizate of a reaction mixture comprising a polyisocyanate, a polyol, and a hydroxy-functional acrylate.
12 . The assembly of claim 1 , wherein the polymerizable compound comprises a (meth)acrylate group.
13 . The assembly of claim 1 , wherein the conductive cable core comprises a first metal having a first electrode potential, conductive terminal comprises a second metal having a second electrode potential different than the first electrode potential.
14 . The assembly of claim 13 , wherein the conductive terminal comprises tin-plated copper, and the conductive cable core comprises aluminum.
15 . The assembly of claim 1 , wherein the conductive cable core further comprises an electrically insulating outer cover, from which a lead portion of the conductive cable core extends, and wherein the conductive connection interface comprises a first crimp connection of a structure of the conductive terminal onto the lead portion of the conductive cable core and a second crimp connection onto the electrically insulating outer cover.
16 . The assembly of claim 15 , wherein the coating covers the conductive connection interface and the lead portion.
17 . The assembly of claim 16 , wherein the coating further covers a portion of the outer cover adjacent to the lead portion of the conductive cable core.
18 . The assembly of claim 1 , wherein the coating has a cured thickness of 50 μm to 5 mm.
19 . A method of making a wire terminal, comprising the steps of:
connecting the conductive terminal to the conductive cable core along the conductive connection interface;
depositing the coating composition of claim 1 over the conductive connection interface; and
exposing the deposited coating composition to ultraviolet light to initiate cure of the coating composition.