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Different components require different heat paths. Heating can be directed onto the surface or inside the piece to support accurate and predictable behaviour.
Component heating supports industries that handle parts of varying shapes, sizes and thermal behaviour. Metalworking and vehicle production depend on consistent pre-heating to keep forming, joining and assembly steps stable. Mining and minerals operations gain better control when heating dense or irregular components. Lamination, packaging and printing environments use induction to prepare parts without the delays linked to furnaces or gas systems. In each case, you gain faster reactions, steadier temperature curves and more predictable throughput.
Complex components need a magnetic field that stays focused. External coils deliver heat directly to the surface, while internal coils reach enclosed areas or cavities without disturbing nearby equipment. MagComp’s unique SM2C shapes the magnetic circuit with high saturation and low losses, reducing stray fields and supporting efficient, repeatable heating across parts with challenging geometries.
Most projects start with exactly that question. We review your components, process targets and constraints, then build a concept around them. Coils and magnetic “building blocks” are shaped to your part, so the heating pattern follows the geometry rather than the other way round.
You gain faster cycles, cleaner operation and more control. Instead of heating the whole furnace volume, we heat only the component. This supports higher production rate, smaller footprint and more stable quality. Many customers move from full-day furnace cycles to compact, inline heating designed for their takt time.
Yes. Localised heating is a core reason to choose induction. We design external or internal coils that target just the functional zone, for example a shrink-fit region or a joining area. That protects surrounding material and reduces rework.
We treat integration as part of the solution, not an afterthought. Mechanics, power, cooling and control are adapted to your layout. We often run pre-studies and prototypes at MagComp or in your plant, then support commissioning, training and long-term service so the system keeps delivering value.
The system is designed for ferromagnetic metal components in metalworking, automotive, mining and minerals, lamination, packaging and printing. It supports pre-heating, process heating, start-up boosting, shrink fitting, drying and curing for parts with varied thickness and design.
We always rely on simulations and tests. Electromagnetic and thermal models are built from your 3D data. Our proprietary composite shapes the magnetic circuit and reduces stray fields. Once the design is ready, we verify it with your material so you can trust the outcome over the lifetime of the equipment.