Title of Invention

A COATING COMPOSITION, A PROCESS FOR COATING A SUBSTRATE WITH THE SAME AND A TWO-COMPONENT FILLER

Abstract Described is a coating composition comprising an organic compound comprising at least two acetoacetate groups or a combination of these two groups and the oxide of a metal of Group lla of the periodic Table. The metal preferable is calcium or magnesium. The composition may further comprise a compound comprising at least two αβ- ethylenically unsaturated groups and, optionally, catalyst for the reaction of the acetoacetate groups and/or acetamide groups with the αβ- ethylenically unsaturated groups.
Full Text present invention relates to a coating composition, a process for coating a substrate with the same and a two-component filler.
From GB patent specification No. 1 407 002 a composition is known where, int. the formation of chelates from acetoacetate-functional epoxy resins and alcoholates of metals, e.g., calcium alcoholate, is described. However the presence of water is excluded here because it would cause meta! hydroxides to form, so preventing chelation from taking place. Any water of crystallisation that may be present in the compounds used is removed by heating them. In other words, there must be no water present at the curing. An additional drawback is the release of alcohols when curing.
The Journal of Coatings Technology. Vol. 52, No. 661 (February 1980) on pp. 73-87 describes chelation as a means of crosslinking emulsions. The emulsion of an acetoacetate functional compound is chelated using, int. al., calcium chloride and magnesium chloride, preference being given to the use of zinc chloride and zinc acetate. Said article relates to a system based on water or dimethyl formamide. The systems described, however, have long curing times, and in addition the salts may have a negative effect on the water resistance of the final film. Furthermore, water based systems have the disadvantage that acetoacetate-functional compounds have limited hydrolysis stability, which means that reactivity is largely lost during storage.

The invention has for its object to provide a coating composition without the aforementioned drawbacks and of which the other properties are also satisfactory.
The coating composition is characterised in that the metal compound is the oxide of a metal of Group lla of the Periodic Table.
Surprisingly, it has been found that a coating composition comprising an organic compound comprising at least two acetoacetate groups or acetamide groups or a combination of the two groups cures very rapidly in the presence of the oxide of a metal of Group lla of the Periodic Table.
Especially suitable metals of Group lla of the Periodic Table in this connection are magnesium and calcium.
GB-A-2 235 928 describes a powdered road marking composition consisting of an organic binder with calcium oxide added thereto, to which water has to be added just prior to application. The addition of the water sets off an exothermic reaction, causing the binder to melt and rendering the composition processab(e. No mention is made of an acetoacetate- or acetamide-functional compound.
According to the invention, at least two acetoacetate groups or acetamide groups or a combination of such groups are present per organic compound. An "organic compound" _herewith defined as a_]iydroca^rbj3n.comp_ou,nd containing no metal atoms. The organic compound may be a monomer or polymer. The polymeric compound has preferably a IWn above 450, more preferably between 500 and 5000, most preferably between 500 and 2000.

Organic compounds containing acetoacetate groups can be synthesised by reacting polyhydroxyl-functional compounds with diketene, e.g., as described in K.L. Hoy and C.H. Carder, "Poiyenamine Coatings I. Formulation of Coatings and Determination of Film Properties," Joumal of Paint Technology. Vol. 46, No. 591 (April 1974), 70-75. Also suitable are acetoacetate-functional organic polymers derived therefrom, such as disclosed, int. al., in C.H. Carder and H.O. Colomb, Jr., "Poiyenamine Coatings II. Chemical Methods of Improving Film Properties," Journal of Paint Technology. Vol. 46, No. 591 (April 1974), 76-81.
Also suitable are acetoacetate-functional organic compounds obtained by copolyme rising acetoacetate-functional monomers with unsaturated monomers as described, e.g., in EP-B-0 199 087 and in WO 91/09910. Suitable are, int. al., the reaction products of acetoacetoxyethyl methacrylate and one or more alkyl(meth)acrylates, hydroxy-functional alky!(meth)acrylates, epoxy-functional alkyl(meth)acrylates and, optionally, other a,p-ethylenically unsaturated compounds. In this connection mention may be made of butyl(meth)acrylate, methyl(meth)acrylate, hydroxyethyl(meth)acrylate, glycidyl(meth)acrylate, and styrene.
Further, it is possible to employ acetoacetate-functional organic compounds prepared by transesterifying polyhydroxyl-functional monomers or polymers with acetoacetate-functional esters, as described, e.g., in EP-A-0 227 454. Suitable organic compounds in this connection are dipropylene glycol diacetoacetate, 1,6-hexane diol diacetoacetate, and 1,5-pentane diol diacetoacetate. The transesterification product of pentaerythritoi and acetoacetate esters is suitable also.

instead of or In addition to at ieast two acetoacetate-funotional organic compounds, organic compounds can be used which comprise at least two acetamide groups or combinations of such groups. Examples of organic compounds comprising acetamide groups are those built up from the reaction products of diketene and ethanol amine;
o 0
HO—c—c—N—c—c—c CH.
H2 H2 H H2
or a compound of the following structure:
CH-, O O
HO C C N C C C CH3
H H2
The molar ratio of said acetoacetate groups and/or acetamide groups to metai oxide has to be about 1 to about 0.5 to 10, preferably 1 mole of acetoacetate groups and/or acetamide groups to 0.5 to 7 moles of metal oxide.
In addition to the aforementioned acetoacetate- and/or acetamide-functional organic compounds, the coating composition, if so desired, may comprise mo no-ace toacetate- or mono-acetamide-functional organic monomers as reactive thinners, e.g., ethyl acetoacetate, tertiary butyl acetoacetate or acetyl acetone. Also, oligomers and polymers which do not contain any acetoacetate groups or acetamide groups may be present as.

for example, adhesion promoters or polymeric softening agents, e.g., hydroxyl-functional polyesters, epoxy resins, alkoxy silanes, and polyisocyanates. Amines which may be blocked or not, e.g., (poly)ketjmines, can also be added. This is described, int. al., in K.L. Hoy and C.H. Carder, "Polyenamine Coatings I. Formulation of Coatings and Determination of Film Properties," Journal of Paint Technology. Vol. 46, No. 591 (Aprill 974), 70-75.
Preferably, however, compounds are present which comprise at least two a,p-ethylenically unsaturated groups, e.g., as described in EP-A-0 161 697. In general, acryloyl-functional compounds are satisfactory. Especially suitable are, e.g., the reaction products of hexamethoxy methyl melamine and 3, 4, or 5 moles of hydroxybutyl acrylate (which last compound is commercially available from Akcros Chemicals under the trade name Setacure® 590), hexamethoxymethyl melamine with 2.5 or 5 moies of a reaction product of 2 moles of caprolactone and 1 mole of hydroxyethyl acrylate (which last compound is commercially available from Akcros Chemicals under the trade name Setacure® 591), propoxylated glycerol triacrylate, ethoxylated trimethylol triacrylate, and aromatic urethane diacrylate (commercially available from Akcros Chemicals under the trade names Actyiane® 432 and 430 and Setacure® 567, respectively).
The molar ratio of acetoacetate groups and/or acetamide groups to a,p-ethylenically unsaturated groups is about 1 mole to about 0.5 to 2, preferably 1 mole of acetoacetate groups and/or acetamide groups to 0.8 to 1.5 moles of a,p-ethylenically unsaturated groups.

in compositions comprising compounds with at least two a,p-ethylenicaily unsaturated groups optionally one or more strong bases may be present as catalysts for the reaction between the a,p-ethylenically unsaturated groups and the acetoacetate groups and/or acetamide groups. Highly satisfactory results have been obtained in this connection using diazabicycloundecene, diazabicyclononene, tetramethyl guanidine, tetramethyl ammonium hydroxide or diazabicyclooctane (DABCO). Alternatively, instead of or in addition to said strong bases other catalysts may be present for the reaction of the acetoacetate groups or acetamide groups with the a,p-ethylenicaily unsaturated groups, e.g., epoxy compounds which in combination with DABCO yield strong bases. These and other catalysts are described in EP-A-0 160 824. Also satisfactory is a mixture of possible catalysts such as described in EP-A-0 326 723. Further, it is possible to employ onium salts, such as phosphonium and ammonium, as well as, say, phosphines as catalysts. An amount of about 1-10 virt.% of catalyst is to be used, calculated on the acetoacetate- and/or acetamide-funotional organic compounds and the compounds comprising at least two a,p-ethylenically unsaturated groups. The use of 2-6 wt.% of catalyst is preferred.
The reaction of the acetoacetate groups and/or acetamide groups with the a,|3-ethylenically unsaturated groups proceeds alongside the reaction of the acetoacetate groups and/or acetamide groups with the metal oxide. The fomier reaction provides the final coat with a higher flexibility. The reaction of the acetoacetate groups and/or acetamide groups with the metal oxide will generally proceed more rapidly than that of the acetoacetate groups and/or acetamide groups with the a,p-ethylenically unsaturated groups.

In addition to the compounds already mentioned, the coating composition may comprise the usual coating composition compounds, such as rheology Improvement agents, fillers such as talcum and barium sulphate, pigments such as titanium dioxide, as well as, optionally, moisture scavengers.
The water required for rapid curing can be added just before the application of the coating composition. At most, 1 mole of water may be added per mole of metal oxide. However, In many cases the moisture which is present in pigments or fillers, or the moisture from the air with which the composition comes into contact after being applied, will be sufficient for curing the composition. Highly practical In this connection is a system made up of two compositions. Composition A will comprise, say, the acetoacetate- and/or acetamide-funotional organic compound and any present solvents, reactive thinners, and other compounds already described. Composition B will comprise, say, the metal oxide, pigments, and fillers, optionally together with the earlier described compounds comprising at least two a,p-ethylenically unsaturated groups. The presence of water of crystallisation, if any, in composition B does not have any adverse effects on the reactivity of the two-component system. These two compositions can be combined prior to the processing of the coating composition. If so desired, a small amount of water may be added.
Alternatively, if so desired, the metal oxide may be added to a composition comprising all the components already disclosed prior to application. In that case, preferably use is made of metal oxide powder having particles smaller than about 100 microns.
The coating composition can be applied in any desired manner, e.g., by brushing, spraying, roller coating, flow coating, and using a filling knife.

The coating composition of the present invention may be applied to any substrate, for example, metal, plastic, wood, or glass. Because of its rapid drying, the coating composition is highly suited to be used when the application of thick layers is required. A particular case in point is putty, especially In automotive repair worit, i.e., refinishing motor vehicles and transportation vehicles and finishing large transportation vehicles such as trains, trucks, bu^s, and aeroplanes.

Accordingly, the present invention provides a coating composition comprising a metal compound and an organic compound containing no metal atoms comprising at least two acetoacetate groups or acetamide groups or a combination of the two groups, wherein the metal compound is the oxide of a metal of Group Ila of the Periodic Table.
Accordingly, the present invention also provides a process for coating a substrate wherein a coating composition as described above, is applied to the substrate, and is cured by exposure to moisture in the air.
Accordingly, the present invention also provides a two-component filler comprising a composition A and a composition B, with composition A comprising an organic compound containing no metal atoms, comprising at least two acetoacetate groups or acetamide groups or a combination of these groups and with composition B comprising the oxide of a metal of Group Ha of the Periodic Table.

Experimental
Example 1
To an acetoacetate-funotional organic compound (binder A) were added 30 parts by weight (pbw) of calcium oxide. Next, a small amount of water was added and the curing time was measured.
Employed as acetoacetate-functional binder A was the transesterification product of pentaerythritol and ethyl acetoacetate, which was prepared as follows.
in a reaction vessel equipped with a DestStar distillation set-up 340 g of pentaerythritol, 1460 g of ethyl acetoacetate, and 1000 ppm of dibutyl tin oxide were mixed and heated to reflux temperature, after which care was taken to ensure that the temperature did not exceed 170°C. On conclusion of the reaction the mixture was cooled and the residual ethyl acetoacetate was distilled off under high vacuum.
fable 1 below lists the drying times with and without the addition of a small amount of water. The amounts In Table 1 are In parts by weight.
Table 1

Binder A 100 100
Calcium oxide 30 30
Water 0 2
Gelling time ^ 5 days 5 min.

Example 2
Acetoacetate-functional binder B was an acrylate copolymer of butyl acrylate, styrene, and acetoacetoxyethyl methacrylate prepared in the following manner.
Into a reaction vessel 395.9 g of ethyl acetoacetate were introduced and heated to 160°C, with an inert gas being passed over. Over a period of 3 hours a mixture of 1691.3 g of acetoacetoxyethyl methacrylate, 708.5 g of butyl acrylate, 116.7 g of styrene, 253.1 g of tert-butylperoxy-3,3,5-trimethyI hexanoate (Trigonox® 42S ex Akzo Nobel), and 53.6 g of ethyl acetoacetate were added to the ethyl acetoacetate already present. The whole was then cooled to 140°C. Next, 12.7 g of Trigonox® 42S and 36.0 g of ethyl acetoacetate were added. After 30 minutes the same amounts of Trigonox® 42S and ethyl acetoacetate were added again, and then once more after another 30 minutes. Subsequently, flushing took place with 31.3 g of ethyl acetoacetate. After 30 minutes the reaction product was cooled and filtered. The resulting reaction product, binder B, had the following characteristics;
Tg = 269K,
Mn = 1285, Mw= 3448,
78% solids,
solvent: ethyl acetoacetate,
the equivalent weight of the resin solution was 275 g/equiv. acetoacetate,
viscosity: 2.5 Pas

The next two formulations were prepared and evaluated. The amounts are parts by weight.

Formulation 1 Formulation 2
composition A composition A
Binder B 19.98 Binder B 18.23
DBU^) 2.10 Epikote® 828^) 3.56
Titanium dioxide 4.33 Titanium dioxide 4.22
Talcum 23.50 Talcum 22.94
Barium sulphate 4.53 Barium sulphate 4.39
composition B composition B
Setacure® 590^) 18.92 Setacure® 590^) 17.27
Calcium oxide 16.30 Calcium oxide 14.88
Titanium dioxide 1.39 Titanium dioxide 1.66
Talcum 7.55 Talcum 9.02
Barium sulphate 1.44 Barium sulphate 1.72
DABCO"*) 2.13
1) ex Shell, 2) ex Akcros Chemicals,
3) DBU = diazabicycioundecene, 4) DABCO=diazabicyclooctane
After compositions A and B were mixed, the mixtures were applied to bare steel with a filling knife and evaluated. Resistance to water and to solvent was tested after 24 hours of ageing at room temperature. The results are listed in Table II.





WE CLAIM:
A coating composition comprising a metal compound and an organic compound containing no metal atoms comprising at least two acetoacetate groups or acetamide groups or a combination of the two groups wherein the metal compound is the oxide of a metal of Group Ila of the Periodic Table.
The coating composition as claimed in claim 1, wherein the metal of Group Ha is calcium or magnesium.
The coating composition as claimed in either or both of the preceding claims, wherein the ratio of acetoacetate groups and/or acetamide groups to metal oxide is 1 to 0.5-10 moles.
The coating composition as claimed in one or more of the preceding claims, wherein the coating composition comprises a compound comprising at least two a,p-ethylenically unsaturated groups.
The coating composition as claimed in claim 4, wherein the compound comprising at least two a,p-ethyienically unsaturated groups is an aryloxy fictional compound.
The coating composition as claimed in claim 5, wherein the acryloyl-lunctional compound is a reaction product of hexamethoxjTnethyl melamine and a hydroxyl-fictional acrylate.

The coating composition as claimed in claim 4, 5 or 6, wherein the composition comprises a catalyst for the reaction of the acetoacetate groups and/or acetamide groups with the a,p-ethylenically unsaturated groups.
The coating composition as claimed in claim 7, wherein the catalyst is diazabicycloundecene, diazabicyclononene, tetramethyl guanidine, tetramethyl ammonium hydroxide and/or diazabicyclooctane, optionally in combination with one or more epoxy functional compounds.
The coating composition as claimed in one or more of the preceding claims, wherein the organic compound comprising at least two acetoacetate groups or acetamide groups or a combination of the two groups is a polymer having an Mnofat least 450.
The coating composition as claimed in any one of the preceding claims, wherein the composition comprises a mono-acetoacetate-or mono-acetamide-functional organic monomer.
A process for coating a substrate wherein a coating composition according to one or more of the preceding claims is applied to the substrate, and is cured by exposure to moisture in the air.
The process for coating a substrate with a coating composition as claimed in any one of the preceding claims 1 to 10, wherein hydrous additives are added to the coating composition prior to its application.

The process for coating a substrate with a coating composition as claimed in one or more of the preceding claims 1 to 10, wherein water is added to the coating composition prior to its application.
A two-component filler comprising a composition A and a composition B, with composition A comprising an organic compound containing no metal atoms, comprising at least two acetoacetate groups or acetamide groups or a combination of these groups and with composition B comprising the oxide of a metal of Group Ila of the Periodic Table.
The two-component filler as claimed in claim 14, wherein the metal is calcium or magnesium.
The two-component filler as claimed in claim 14, wherein composition B comprises a compound comprising at least two a,p-ethylenically unsaturated groups.
The two-component filler as claimed in claim 16, wherein the a,P-ethylenically imsaturated groups are acryloyl groups.
A coating composition substantially as herein described and exemplified.
A process for coating a substrate substantially as herein described and exemplified.

Documents:

0553-mas-97 abstract-duplicate.pdf

0553-mas-97 abstract.pdf

0553-mas-97 claims-duplicate.pdf

0553-mas-97 claims.pdf

0553-mas-97 correspondence-others.pdf

0553-mas-97 correspondence-po.pdf

0553-mas-97 description (complete)-duplicate.pdf

0553-mas-97 description (complete).pdf

0553-mas-97 form-1.pdf

0553-mas-97 form-26.pdf

0553-mas-97 form-4.pdf

0553-mas-97 petition.pdf


Patent Number 219707
Indian Patent Application Number 553/MAS/1997
PG Journal Number 27/2008
Publication Date 04-Jul-2008
Grant Date 13-May-2008
Date of Filing 17-Mar-1997
Name of Patentee AKZO NOBEL NV
Applicant Address
Inventors:
# Inventor's Name Inventor's Address
1 Arie NOOMEN Dillestraat 27, 2215 BM Voorhout,
2 Nicolaas Antonius Maria SCHOONDERWOERD
PCT International Classification Number C08K 3/22
PCT International Application Number N/A
PCT International Filing date
PCT Conventions:
# PCT Application Number Date of Convention Priority Country
1 NA