Dip-coating composition for electroconductive substrates, comprising a sol-gel composition

US2016200921A1 · US · A1

Patent metadata
FieldValue
Publication numberUS-2016200921-A1
Application numberUS-201314911646-A
CountryUS
Kind codeA1
Filing dateAug 12, 2013
Priority dateAug 12, 2013
Publication dateJul 14, 2016
Grant date

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Abstract

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The present invention relates to an aqueous coating composition comprising at least one aqueous dispersion or solution (A) of at least one electrophoretically depositable binder and optionally of at least one crosslinking agent, and also at least one aqueous sol-gel composition (B), for at least partly coating an electrically conductive substrate with an electrocoat material, where the aqueous sol-gel composition (B) is obtainable by reaction of at least one starting compound suitable for preparing the sol-gel composition (B) with water, with hydrolysis and condensation of the at least one starting compound, to a method for producing the coating composition, to the use thereof for at least partly coating an electrically conductive substrate with an electrocoat material, to a method for at least partly coating an electrically conductive substrate with an electrocoat material by at least partial electrophoretic deposition of the coating composition on the substrate surface, to an electrically conductive substrate at least partially coated therewith, and to an article or component produced from at least one such substrate.

First claim

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1 - 17 . (canceled) 18 . An aqueous coating composition comprising: (A) at least one aqueous dispersion or solution of at least one electrophoretically depositable binder and optionally of at least one crosslinking agent, and (B) at least one aqueous sol-gel composition, for at least partly coating an electrically conductive substrate with an electrocoat material, the electrophoretically depositable binder being cathodically depositable and being a polymeric resin which has reactive functional groups which permit a crosslinking reaction with the crosslinking agent optionally present, and the aqueous sol-gel composition (B) being obtainable by reaction of at least one starting compound suitable for preparing the sol-gel composition (B) with water, with hydrolysis and condensation of the at least one starting compound, the at least one starting compound having at least one metal atom and/or semimetal atom and at least two hydrolyzable groups, and at least one nonhydrolyzable organic radical. 19 . The aqueous coating composition as claimed in claim 18 , wherein the sol-gel composition (B) present in the aqueous coating composition, after hydrolysis and condensation of the at least one starting compound, has a solids content in the range from 0.1 to 40 wt %, based on the total weight of the aqueous coating composition. 20 . The aqueous coating composition as claimed in claim 18 , wherein the sol-gel composition (B) used for preparing the aqueous coating composition is obtainable by reacting at least one compound (M 1 ) x (X 1 ) a (R 1 ),  (A1) and/or (M 2 ) y (X 2 ) b (R 2 )(R 3 )  (A2) with water, in which M 1 and M 2 each independently of one another are a metal atom or a semimetal atom, X 1 and X 2 each independently of one another are a hydrolyzable group, X is the valence of the metal atom or semimetal atom M 1 , Y is the valence of the metal atom or semimetal atom M 2 , R 1 is X 1 , a nonhydrolyzable organic radical, (T)(M 1 ) x (X 1 ) c , or (U)[(M 1 ) x (X 1 ) c ] 2 , R 2 is a nonhydrolyzable organic radical, R 3 is a nonhydrolyzable organic radical, (T)(M 1 ) x (X 1 ) c , (U)[(M 1 ) x (X 1 ) c ] 2 , (V)(M 2 ) y (X 2 ) d (R 2 ), or (W)[(M 2 ) y (X 2 ) d (R 2 )] 2 , A is x if R 1 is X 1 or A is x-1 if R 1 is a nonhydrolyzable organic radical, (T)(M 1 ) x (X 1 ) c , or (U)[(M 1 ) x (X 1 ) c ] 2 , in each case with the proviso that a is at least 2, B is y-2, with the proviso that b is at least 2, T, U, V and W in each case independently of one another are each a radical which has 1 to 30 carbon atoms and may optionally have up to 10 heteroatoms and heteroatom groups selected from the group consisting of O, S and N, c is x-1, and d is y-2. 21 . The aqueous coating composition as claimed in claim 20 , wherein X 1 and X 2 are selected each independently of one another from the group consisting of halides and alkoxy groups O—R a , in which R a in each case is a C 1-16 aliphatic radical, and M 1 and M 2 are selected each independently of one another from the group consisting of Al, Ti, Zr, Fe, B, and Si. 22 . The aqueous coating composition as claimed in claim 20 , wherein at least one compound (A1) is used as at least one starting compound in which R′ is a nonhydrolyzable organic radical which has at least one reactive functional group selected from the group consisting of primary amino groups, secondary amino groups, epoxide groups, thiol groups, isocyanate groups, phosphorus-containing groups, and groups which have an ethylenically unsaturated double bond, and optionally at least one further compound (A1) is used as at least one starting compound in which R 1 is X 1 , and optionally at least one further compound (A1) is used as at least one starting compound in which R 1 is a nonhydrolyzable organic radical which has no reactive functional group. 23 . The aqueous coating composition as claimed in claim 18 , wherein the sol-gel composition (B) used for preparing the aqueous coating composition is obtainable by reacting with water at least one compound Si(X′) 3 (R′) as at least one compound (A1), where R 1 therein is a nonhydrolyzable organic radical which has at least one reactive functional group selected from the group consisting of primary amino groups, secondary amino groups, epoxide groups, and groups which have an ethylenically unsaturated double bond, and optionally at least one compound Si(X 1 ) 4 is used as at least one further compound (A1), and optionally at least one compound Si(X′) 3 (R′) is used as at least one further compound (A1), where R 1 therein is a nonhydrolyzable organic radical which has no reactive functional group. 24 . The aqueous coating composition as claimed in claim 18 , wherein the sol-gel composition (B) used for preparing the aqueous coating composition is obtainable by reacting with water at least one compound Si(X 1 ) 3 (R 1 ) as at least one compound (A1), where R 1 therein is a nonhydrolyzable C 1 -C 10 aliphatic organic radical which has at least one epoxide group as reactive functional group, at least one compound Si(X 1 ) 3 (R 1 ) as at least one further compound (A1), where R 1 therein is a nonhydrolyzable C 1 -C 10 aliphatic organic radical which has at least one reactive functional group selected from the group consisting of primary amino groups and secondary amino groups, at least one compound Si(X 1 ) 4 as at least one further compound (A1), and at least one compound Si(X 1 ) 3 (R 1 ) as at least one further compound (A1), where R 1 therein is a nonhydrolyzable organic C 1 -C 10 aliphatic radical which has no reactive functional group. 25 . The aqueous coating composition as claimed in claim 18 , wherein the aqueous sol-gel composition (B) has at least two different non-hydrolyzable organic radicals, where one of these radicals is a C 1 -C 10 aliphatic radical which has at least one hydroxyl group as at least one reactive functional group, and the remaining nonhydrolyzable organic radical is a C 1 -C 10 aliphatic radical which has at least one primary amino group or at least one secondary amino group as at least one reactive functional group. 26 . The aqueous coating composition as claimed in claim 18 , wherein the coating composition comprises at least one metal ion-containing compound and/or at least one metal atom-containing compound suitable for releasing metal ions, the metal ions being ions of metal atoms selected from the group consisting of Zr, Ti, Co, V, W, Mo, Cu, Zn, In, Bi, Y, and lanthanides, and the metal ions being present in the coating composition in a concentration in the range from 30 to 20 000 ppm, based on the total weight of the coating composition in wt %. 27 . A method for producing the aqueous coating composition as claimed in claim 18 , comprising at least the steps of (a1) preparing the aqueous sol-gel composition (B) by reacting at least one starting compound suitable for preparing the sol-gel composition (B) with water, with hydrolysis and condensation of the at least one starting compound, and (a2) converting the aqueous sol-gel composition (B) obtained by step (a1) into an aqueous dispersion or solution (A) of at least one electrophoretically depositable binder and optionally of at least one crosslinking agent. 28 . A method for at least partly coating an electrically conductive substrate with an electrocoat material comprising contacting said substrate with the aqueous coating composition as claimed in claim 18 . 29 : A method for at least partly coating an electrically conductive substrate with an electrocoat material, comprising at least the step of (b1) at least partly coa

Assignees

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Classifications

  • C09D5/4476Primary

    comprising polymerisation in situ · CPC title

  • nitrogen-containing groups · CPC title

  • containing silicon bound to organic groups containing atoms other than carbon, hydrogen, and oxygen · CPC title

  • Anti-corrosive paints · CPC title

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What does patent US2016200921A1 cover?
The present invention relates to an aqueous coating composition comprising at least one aqueous dispersion or solution (A) of at least one electrophoretically depositable binder and optionally of at least one crosslinking agent, and also at least one aqueous sol-gel composition (B), for at least partly coating an electrically conductive substrate with an electrocoat material, where the aqueous …
Who is the assignee on this patent?
Basf Coatings Gmbh, Henkel Ag & Co Kgaa
What technology area does this patent fall under?
Primary CPC classification C09D5/4476. Mapped technology areas include Chemistry & Metallurgy.
When was this patent published?
Publication date Thu Jul 14 2016 00:00:00 GMT+0000 (Coordinated Universal Time) (A1). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).