Kemapoxy 131 MIOX
Kemapoxy 131 MIOX
Kemapoxy 131 MIOX is an advanced, two component (2K), heavy duty micaceous iron oxide (MIO) pigmented structural epoxy primer and intermediate coating.
Technical Property | Official Certified Value | Engineering Benefit |
Classification | Two-Component (2K) Micaceous Iron Oxide (MIO) Epoxy Coating | Provides exceptional heavy-duty barrier passivation and intermediate locking |
Barrier Mechanism | Overlapping Platelet Micro-Flake Matrix | Blocks the ingress of moisture tracking, salt spray, and chemical gases |
Mechanical Toughness | Exceptional Defiance Against Scuffing, Impact, & Mechanical Wear | Preserves exposed industrial steel assets during logistics and field staging |
Interfacial Bond Modulus | High-Tooth Adhesion to Primers and Finish Polyurethanes | Mitigates peeling, ensuring zero delamination across the multi-coat system |
Film Build Integrity | Robust High-Build Formulation | Guarantees premium dry-film thickness (DFT) over sharp welds, cuts, and edges |
kemapoxy 131 miox
MIO Armored Protection: Infused with pure micaceous iron oxide crystals that establish a hard physical defense against water tracking and weathering.
Versatile Coating Architecture: Functions flawlessly either as a high-durability direct-to-metal primer or as a heavy intermediate coat over zinc-rich primers.
Marine & Petrochemical Defiance: Explicitly formulated to resist hyper-saline port climates, moisture saturation, and industrial volatile gases for 2026 engineering targets.
Dynamic Structural Elasticity: Absorbs high micro-strains, thermal movements, and vibration stresses within industrial bridges and long-span trusses without cracking.
Extended Recoat Windows: Delivers highly manageable site application timelines, allowing long field intervals before the application of aliphatic polyurethane topcoats.
Anti-corrosive intermediate protection and structural priming of steel bridges, overhead highway frameworks, industrial trusses, and structural factories across all governorates.
High-performance barrier shielding for petroleum and gas storage tank shells, large mineral silos, and heavy cross-country industrial pipelines.
Passivating steel structural configurations within coastal port facilities, maritime docking utilities, cooling towers, and power stations under 2026 standard codes.
Bulk material contract specification tracking and technical tender allocation within public transit ministries, maritime authorities, and national infrastructure projects.
Substrate Profiling & Preparation: Steel surfaces must undergo mechanical blast cleaning to near-white metal standard (ISO 8501-1 Sa 2.5) to clear all rust, scales, and oils. If applied over an approved zinc primer, the surface must be fully dry, cured, and completely free of zinc salts, dust, or moisture tracking.
Technical Compounding: Stir Component A thoroughly to lift heavy particles, then empty Component B completely into Component A according to the exact factory weight ratios prescribed by CMB. Mix utilizing a slow-speed mechanical agitator, maintaining gentle agitation during application to prevent the heavy MIO crystals from settling.
Execution Technique: Apply the compound systematically utilizing industrial airless spray rigs to secure a uniform high-build wet film distribution. High-quality nylon brushes and rollers are suitable for stripe coating structural welds, joint nodes, and localized structural maintenance.
Curing Staging: Allow the applied intermediate MIO coat to cross-link completely under controlled 2026 site parameters. Once hard-dry values are confirmed, the coated steel structure is ready to receive weather-resistant polyurethane or specialized epoxy topcoats.
