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Sulfonamide modified aminoplast crosslinkers and powder coating compositions containing such crosslinkers

a technology of aminoplast resin and crosslinker, which is applied in the direction of polyester coating, transportation and packaging, coating, etc., can solve the problems of difficult to achieve the incorporation of aminoplast resin into powder coating, and achieve good stability, good performance, and measurable intrinsic viscosity

Inactive Publication Date: 2006-08-10
HU SHENGKUI +3
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Benefits of technology

The present invention is about a crosslinking agent made from an aminoplast resin and a compound with active hydrogen groups that react with the aminoplast resin. This crosslinking agent can be used to improve the performance and stability of powder coatings. The invention provides solid, ungelled aminoplasts that can be easily incorporated into powder coatings and processed according to standard methods. The resulting coatings have good performance and are easy to use.

Problems solved by technology

As discussed above, the incorporation of aminoplast resins into powder coatings has been difficult to achieve.

Method used

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  • Sulfonamide modified aminoplast crosslinkers and powder coating compositions containing such crosslinkers
  • Sulfonamide modified aminoplast crosslinkers and powder coating compositions containing such crosslinkers
  • Sulfonamide modified aminoplast crosslinkers and powder coating compositions containing such crosslinkers

Examples

Experimental program
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Effect test

example 1

[0070] A mixture of 400 grams of (methoxymethyl)melamine-formaldehyde resin (CYMEL 303, from Cytec Industries, Inc.), 100 grams of p-toluenesulfonamide and 214 grams of xylene was heated to 120° C. in the presence of 0.25 grams of p-toluenesulfonic acid under inert atmosphere. The reaction vessel was fitted with a distillation head and distillate was collected at a head temperature of 65° C. until there was no visible signal for the active hydrogen peak in the infrared spectrum. The product from the reaction was analyzed by gel permeation chromatography and differential scanning calorimetry. The results are summarized in Table 1.

example 2

[0071] A mixture of 400 grams of (methoxymethyl)melamine-formaldehyde resin (CYMEL 303, from Cytec Industries, Inc.), 100 grams of N-ethyl-p-toluenesulfonamide and 214 grams of xylene was heated to 120° C. in the presence of 0.25 grams of p-toluenesulfonic acid under inert atmosphere. The reaction vessel was fitted with a distillation head and distillate was collected at a head temperature of 65° C. until there was no visible signal for the active hydrogen peak in the infrared spectrum. The product from the reaction was analyzed by gel permeation chromatography and differential scanning calorimetry. The results are summarized in Table 1.

example 3

[0072] A mixture of 400 grams of (methoxymethyl)melamine-formaldehyde resin (CYMEL 303, from Cytec Industries, Inc.), 100 grams of saccharin and 214 grams of xylene was heated to 120° C. in the presence of 0.25 grams of p-toluenesulfonic acid under inert atmosphere. The reaction vessel was fitted with a distillation head and distillate was collected at a head temperature of 65° C. until there was no visible signal active hydrogen peak in the infrared spectrum. The product from the reaction was analyzed by gel permeation chromatography and differential scanning calorimetry. The results are summarized in Table 1.

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Abstract

A crosslinking agent that is an ungelled reaction product of (a) an aminoplast resin and (b) a compound having active hydrogen groups reactive with the aminoplast resin such that the crosslinking agent is essentially free of functional groups reactive with an aminoplast resin and has a glass transition temperature of at least 10° C. is disclosed. Compound (b) is, more specifically, a monofunctional sulfonamide having only one active hydrogen. Methods for preparing crosslinking agents are also disclosed. Further provided is a curable powder coating composition including a polymer having a glass transition temperature of at least 30° C. containing reactive functional groups and the present crosslinking agent; a multilayer composite coating compositions and substrates coated therewith are also disclosed. Methods for modifying aminoplasts are also disclosed.

Description

FIELD OF THE INVENTION [0001] The present invention relates to crosslinking agents based on modified aminoplast resins and to powder coating compositions containing these crosslinking agents. BACKGROUND OF THE INVENTION [0002] In recent years, powder coatings have become increasingly popular because these coatings are inherently low in volatile organic content (“VOC”). The low VOC significantly reduces air emissions into the atmosphere during application and curing as compared to liquid coatings. [0003] Hydroxyl, carboxyl, carbamate, and / or epoxy functional resins, such as acrylic and polyester resins having relatively high glass transition temperatures (“Tg”), are commonly used as the main film-forming polymers for powder coatings. The relatively high Tg of such polymers provides powder coatings having good storage stability. When exposed to the extreme temperatures both during shipping and / or storage, however, even better powder coating stability is desired. By “stability” or “sto...

Claims

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Application Information

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Patent Type & Authority Applications(United States)
IPC IPC(8): C08L61/20C08G12/42C08L61/28C08L61/32C09D161/32
CPCC08G12/42C08G12/428C08G2150/20C08L61/28C08L61/32C09D161/32Y10T428/31725
Inventor HU, SHENGKUICHASSER, ANTHONY M.RETSCH, WILLIAM H.AMBROSE, RONALD R.
Owner HU SHENGKUI