The KINETIX® Wet-Preg Epoxy range is engineered for manufacturers who require high mechanical performance, processing flexibility, and consistent laminate quality in advanced composite structures. Developed by ATL’s in-house chemists, these systems are optimised for efficient wet impregnation, delivering excellent fibre wet-out, controlled resin flow, and high-quality consolidation across carbon, aramid, and E-/S-glass reinforcements.
Designed for high-performance applications, KINETIX® wet-preg systems combine superior toughness, high elastic modulus, and outstanding damage resistance with low to medium viscosity profiles. This enables rapid fibre saturation, uniform resin distribution, and controlled fibre volume fractions, resulting in repeatable, production-ready laminates when processed under controlled manufacturing conditions, while reducing overall processing complexity.
With predictable curing behaviour, reliable handling characteristics, and compatibility with a wide range of wet-layup, infusion, and wet winding processes, KINETIX® wet-preg systems support efficient fabrication while maintaining high structural performance. They are proven across marine, aerospace, industrial, sporting, and Defence applications where strength, durability, and weight efficiency are critical.
KINETIX® Wet-Preg Epoxies deliver the structural integrity and performance demanded by modern composite engineering — enabling lighter, stronger, and more durable components for highly loaded, mission-critical environments.
– Advanced Wet-Preg Technology for Advanced Structures
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New ZealandType of Project
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QueenslandType of Project
MarineRead
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New ZealandType of Project
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TasmaniaType of Project
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Every industry has distinct performance, compliance, and manufacturing requirements. ATL’s in-house chemists and engineers develop and refine epoxy systems, adhesives, and core materials to meet the specific demands of marine, defence, aerospace, automotive, industrial, civil, architectural, and sporting applications — ensuring every product delivers optimal strength, efficiency, and durability.
Yes. ATL offers custom formulation and process engineering support to align material performance with your production requirements — whether infusion, hand lay-up, lamination, bonding, or CNC-routed panel construction. Our technical team collaborates closely with customers to deliver precision-matched resin systems and structural solutions for unique applications.
Absolutely. ATL operates under an ISO 9001:2015-certified quality management system, with selected materials approved by DNV for use in structural and high-load applications. Every ATL system is manufactured to exacting standards of performance, consistency, and traceability to meet the demands of defence, industrial, and advanced engineering environments.
ATL’s epoxy systems, structural panels, and composite cores are engineered for high strength-to-weight performance, dimensional stability, and fatigue resistance. These attributes make ATL materials ideal for large composite assemblies, modular structures, and precision-engineered components where long-term strength, weight reduction, and reliability are essential.
Yes. ATL is committed to advancing sustainable composite technology, offering USDA-Certified Bio-Based epoxy systems and environmentally conscious materials that reduce waste, extend service life, and minimise environmental impact. Our ongoing R&D focuses on improving sustainability without compromising structural integrity or mechanical performance.
Choosing the ideal composite system depends on your structure’s design, load requirements, manufacturing process, and environmental exposure. ATL’s in-house engineers and chemists provide tailored advice to ensure the correct combination of resin, core, adhesive, and surface technology for your project.
To discuss your application or request technical guidance, contact ATL’s Technical Team — we’ll help you identify the most effective and efficient composite solution for your build.
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Australia’s Leading Supplier of Advanced Composite Materials & Engineering
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