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By monica@am-media.it
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3 July 2025
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Mechanical Design & 3D Modeling
At the core of the value chain - Where every project begins
Med Marine’s technical team transforms visions into reality through a precise 3D CAD/CAM modeling process, supported by FEM analysis and technical-economic feasibility studies. The client is fully integrated into the co-design process, with a collaborative and transparent approach.
The design process covers
- Product study and engineering
- Advanced 3D modeling (CAD/CAM)
- FEM analysis and structural optimization
- Material selection (steels, aluminum, titanium, composites, elastomers)
- Mold design, tooling, and special components
Materials used
- AISI 440C: high-hardness stainless steel, wear-resistant — ideal for long-life molds and critical environments.
- 17-4PH: stainless steel alloy with excellent corrosion and fatigue resistance — suitable for aerospace and marine components.
- 5083: lightweight and durable, with excellent resistance to marine corrosion (nautical applications).
- 7075: high-strength alloy for aerospace and automotive applications, with excellent mechanical and thermal properties.
- 6082: versatile alloy suitable for lightweight and robust structures.
A strong, corrosion-resistant material with an excellent strength-to-weight ratio, ideal for aerospace, biomedical, and defense applications.
- Thermoplastics (ABS, PA, POM, PC): versatile, durable, and machinable for technical components.
- Thermosets: for molds/applications requiring durability and chemical resistance.
- LSR silicone: biocompatible and elastic — medical applications, gaskets, and sealants.
- Expanded polyurethanes (e.g. Baydur 40): lightweight and insulating — construction, automotive, and marine applications.
- Carbon fiber: high performance, combining lightness and stiffness for high-load applications.
A wide range of elastic materials for gaskets, sealants, and components subject to dynamic loads, with custom formulations tailored to the operating environment and required service life.