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Coating line and process for forming a multilayer composite coating on a substrate

a composite coating and multi-layer technology, applied in the direction of fluid pressure measurement, liquid/fluent solid measurement, peptides, etc., can solve the problems of multi-layer composite coating system catastrophic failure, insufficient cure of base coating composition, and inability to bind crosslinking agents

Active Publication Date: 2007-12-06
PPG IND OHIO INC
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Benefits of technology

[0142] wherein the first basecoating composition comprises one or more aqueous dispersions of polymeric microparticles prepared from a monomer admixture comprisin

Problems solved by technology

While providing excellent adhesion and corrosion resistance, these resins and / or crosslinking agents can be susceptible to degradation by visible and / or ultraviolet light which can penetrate through the subsequently applied coating layers.
Such photodegradation can result in delamination of the electrodeposition coating from the substrate, causing catastrophic failure of the multilayer composite coating system.
The basecoating is typically given a flash bake at a temperature and for a time sufficient to drive off excess solvents, but insufficient to cure the basecoating composition.
However, this sanding process can result in small particles of grit or dirt that must then be brushed or tacked off of the substrate before further coatings can be applied.
However, this change in the coating sequence means that this process is not easily incorporated in existing coating lines that are set up to coat the cut-in portions of the substrate before the exterior portions.

Method used

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  • Coating line and process for forming a multilayer composite coating on a substrate
  • Coating line and process for forming a multilayer composite coating on a substrate
  • Coating line and process for forming a multilayer composite coating on a substrate

Examples

Experimental program
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Effect test

examples

[0314] The following examples illustrate the processes of the present invention. Example A describes the preparation of a medium gray first basecoating composition. Comparative Process Example 1 describes the application (in two coats) of a conventional silver metallic basecoat composition to a cured electrocoat primer, followed by application of a clear coating composition. Process Example 2 describes the process of the present invention wherein the first basecoating composition of Example A is applied to the cured electrocoat primer, followed by application of the conventional silver metallic basecoat and subsequent application of the clear coating composition. Examples B through E describe the preparation of basecoating compositions analogous to that of Example A, but having varying levels of the waterborne polyurethane resin.

example a

[0315] This example describes the preparation of a medium gray base coat composition suitable as the first basecoating composition used to form the first basecoating layer in the process of the present invention. The first basecoating composition was prepared by admixing the following ingredients under mild agitation.

INGREDIENTS:Total Weight (Grams)N-butoxy propanol15.001-octanol5.00CYMEL 327122.22Phosphatized epoxy resin21.63TINUVIN 113033.00Deionized water10.00Odorless mineral spirits48.00Acrylic-polyester latex541.07Waterborne polyurethane resin639.23Titanium dioxide paste7148.76Carbon black paste825.60SETALUX 6802 AQ-249118.75Dimethyl ethanolamine102.86Deionized water37.56

1Methoxymethyl imino functional melamine-formaldehyde resin available from CYTEC Industries, Inc.

2Phosphatized epoxy prepared by reacting EPON 880 (polyglycidyl ether of Bisphenol A available from Shell Chemicals) with phosphoric acid in an 83:17 ratio.

3Ultraviolet light stabilizer available from Ciba Speci...

examples b-e

[0327] The following Examples B to E describe the preparation of medium gray basecoating compositions comprising varying levels polyurethane resin. The composition of Example B comprises 3.1% by weight solids of the polyurethane; the composition of Example C comprises 10.6% by weight solids of the polyurethane; the composition of Example D comprises 18.1 by weight solids of the polyurethane; and the composition of Example E comprises 33.1% by weight solids of the polyurethane. The respective basecoating compositions were prepared by admixing the specified ingredients under mild agitation.

EXAMPLE BINGREDIENTSTotal Weight (Grams)N-butoxy propanol15.001-Octanol5.00CYMEL 32722.22Phosphatized epoxy resin of Example A1.63TINUVIN 11303.00Odorless mineral spirits of Example A8.00Acrylic-polyester latex of Example A74.53Polyurethane resin of Example A0Titanium dioxide paste of Example A148.76Carbon black paste of Example A25.60SETALUX 6802 AQ-24118.75Dimethyl ethanolamine of Example A3.46D...

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Abstract

A process for forming a multilayer composite coating on a substrate is provided. The process includes forming an electrodeposition coating layer on the substrate by electrodeposition of a curable electrodepositable coating composition over at least a portion of the substrate. Optionally, the coated substrate is heated to a temperature and for a time sufficient to cure the electrodeposition coating layer. A basecoating layer is formed on the electrodeposition coating layer by depositing an aqueous curable basecoating composition directly onto at least a portion of the electrodeposition coating layer. Optionally, the basecoating layer is dehydrated. A top coating layer is formed on the basecoating layer by depositing a curable top coating composition which is substantially pigment-free directly onto at least a portion of the basecoating layer. The top coating layer, the basecoating layer, and, optionally, the electrodeposition coating layer are cured simultaneously.

Description

FIELD OF THE INVENTION [0001] The present invention relates to a process for forming a multilayer composite coating on a substrate, particularly an automotive vehicle substrate, and a coating line wherein the process is employed. BACKGROUND OF THE INVENTION [0002] Multilayer composite coatings, for example, color-plus-clear coating systems, involving the application of a colored or pigmented basecoat to a substrate followed by application of a transparent or clearcoat over the basecoat, have become increasingly popular as original finishes for a number of consumer products including, for example, automotive vehicles. The color-plus-clear coating systems have outstanding appearance properties such as gloss and distinctness of image, and provide excellent coating systems such as corrosion resistance, scratch and abrasion resistance, and resistance to deleterious environmental conditions such as acid rain. Such color-plus-clear coating systems have become popular for use on automotive ...

Claims

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Application Information

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IPC IPC(8): C25D5/10C23C28/00B05D7/00B05D7/16
CPCB05D7/16B05D7/574C23C28/00B05D1/36B05D7/00
Inventor PURDY, SEANSIMPSON, DENNISFOUKES, RICHARDAIKEN, DAVIDROWLEY, JAMES
Owner PPG IND OHIO INC