Coils


Coil Coatings

We offer a broad portfolio of fumed metal oxides and specialty carbons for coil coatings.

Coil coating is a continuous process in which specialty coatings are applied to steel or aluminum coil before fabrication into end products like furniture, household appliances and transportation industries.

Our fumed metal oxide products help improve coating adhesion performance and mechanical properties of the finished coating. We also offer a broad range of specialty carbons for pigmenting coil coatings. 

Fumed Silica
Our CAB-O-SIL® fumed silica can be added to liquid coil coating primer and topcoat formulations to provide rheology control, anti-sag of thick film build, and anti-settling of pigmented coating systems. It also imparts good leveling properties, enabling uniform coating thickness in coil coatings. In the cured coating, CAB-O-SIL fumed silica can improve hardness, scratch resistance, chemical resistance and corrosion resistance.​

CAB-O-SIL® Fumed Silica​​

Our CAB-O-SIL® fumed silica can be added to liquid coil coating primer and topcoat formulations to provide rheology control, anti-sag of thick film build, and anti-settling of pigmented coating systems. It also imparts good leveling properties, enabling uniform coating thickness in coil coatings. In the cured coating, CAB-O-SIL fumed silica can improve hardness, scratch resistance, chemical resistance and corrosion resistance.​

Dispersions
Our CAB-O-SPERSE® dispersions enhance the performance of substrate pretreatment for coil coating by increasing micro-roughness. Such surface topography can promote adhesion of subsequent coating to the substrate, help dissipate stress under load to improve durability, and facilitate stable and consistent distribution of anti-corrosive additives.​​​

CAB-O-SPERSE® Dispersions​​

Our CAB-O-SPERSE® dispersions enhance the performance of substrate pretreatment for coil coating by increasing micro-roughness. Such surface topography can promote adhesion of subsequent coating to the substrate, help dissipate stress under load to improve durability, and facilitate stable and consistent distribution of anti-corrosive additives.​​​

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