IP Library Granted Patent US 10,017,659
Granted Patent B1
US 10,017,659 · App. 15/728,079 · Granted Jul 10, 2018

Robust sealed electric terminal assembly

Inventors: Robert A. Smith (Murrysville, PA); Frank A. Ciapala (Youngstown, OH); Gina Sacco (Warren, OH); Sean P. Krompegel (Canfield, OH); Christopher R. Rudzinskas (Warren, OH); Evangelia Rubino (Warren, OH)
Assignee: Delphi Technologies, Inc
C09D133/14C08F220/34C08J7/04H01R4/183H01R4/70C08F2220/343C08F2800/20C08J2333/14H01R11/11
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Quick Facts
Patent No.
US 10,017,659
App. No.
15/728,079
Granted
Jul 10, 2018
Kind
B1
Abstract

A wire terminal assembly is disclosed in which a conductive terminal is connected to a conductive cable core along a conductive connection interface. A coating is disposed over the conductive connection interface that is the product of a free radical polymerization reaction of a coating composition applied over the conductive connection interface, the coating composition including: (1) an oligomer comprising at least two active unsaturated bonds, (2) a monomer comprising an unsaturated bond, and (3) a compound comprising a plurality of thiol groups.

Claims (31)

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 derived from a free radical polymerization reaction of a coating composition applied over the conductive connection interface, said coating composition comprising polymerizable compounds:

(1) an oligomer comprising at least two active unsaturated bonds,

(2) a monomer comprising an unsaturated bond, and

(3) a compound comprising a plurality of thiol groups.

2. The assembly of claim 1 , wherein the oligomer is a reaction product of a reaction mixture comprising a polyisocyanate, a polyol, and a hydroxy-functional acrylate.

3. The assembly of claim 2 , wherein the oligomer includes aliphatic groups derived from aliphatic polyols or aliphatic polyisocyanates.

4. The assembly of claim 2 , wherein the polyol includes a hydroxy-terminated polyester.

5. The assembly of claim 1 , wherein the monomer comprises a (meth)acrylate group.

6. The assembly of claim 1 , wherein the compound comprising a plurality of thiol groups has 2 to 6 thiol groups.

7. The assembly of claim 1 , wherein the compound comprising a plurality of thiol groups has the formula:

8. The assembly of claim 1 , wherein the coating composition comprises at least 1 parts per hundred by weight of the compound comprising a plurality of thiol groups, based on the total weight of polymerizable compounds.

9. The assembly of claim 1 , wherein the coating composition comprises at least 3 parts per hundred by weight of the compound comprising a plurality of thiol groups, based on the total weight of polymerizable compounds.

10. The assembly of claim 1 , wherein the coating composition comprises at least 8 parts per hundred by weight of the compound comprising a plurality of thiol groups, based on the total weight of polymerizable compounds.

11. The assembly of claim 1 , wherein the coating composition comprises at least 9 parts per hundred by weight of the compound comprising a plurality of thiol groups, based on the total weight of polymerizable compounds.

12. The assembly of claim 1 , wherein the coating composition further comprises a UV-activated free radical initiator.

13. The assembly of claim 12 , wherein the UV-activated free radical initiator 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.

14. The assembly of claim 12 , wherein the coating composition comprises at least 6 parts per hundred by weight of the UV-activated free radical initiator, based on the total weight of polymerizable compounds.

15. The assembly of claim 1 , wherein the conductive cable core and the conductive terminal comprise metals with different electrode potentials.

16. The assembly of claim 1 , wherein the coating has a cured thickness of 50 μm to 5 mm.

17. A method of making a wire terminal assembly, comprising

connecting a conductive terminal to a conductive cable core along a conductive connection interface; and

depositing and curing a coating composition over the conductive connection interface comprising:

(1) an oligomer comprising at least two active unsaturated bonds,

(2) an acrylic monomer, and

(3) a compound comprising a plurality of thiol groups.

18. The method of claim 17 , wherein the curing is carried out by exposing the coating composition to ultraviolet light.

19. The method of claim 17 , further comprising subjecting the coating composition to damage to create a discontinuity in the coating composition.

20. The method of claim 19 , further comprising spontaneous healing of the coating composition to remove the discontinuity.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 25, 2018
From: DELPHI TECHNOLOGIES INC.
To: APTIV TECHNOLOGIES LIMITED
Reel/Frame 047143/0874 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 9, 2017
From: SMITH, ROBERT A.; CIAPALA, FRANK A.; SACCO, GINA; KROMPEGEL, SEAN P.; RUDZINSKAS, CHRISTOPHER R.; RUBINO, EVANGELIA
To: DELPHI TECHNOLOGIES, INC.
Reel/Frame 043816/0041 →