


3D PRINTING
Fused Filament Fabrication (FFF) is an additive manufacturing process in which thermoplastic material is melted and extruded through a heated nozzle to build objects layer by layer. This method enables precise, efficient, and cost-effective production of both prototypes and functional parts.
We provide advanced 3D printing solutions, including IEMAI high-temperature industrial printers capable of handling high-performance materials. These systems support both single and dual extrusion, allowing the use of breakaway support structures and complex geometries.
High-Performance Materials
PEEK (Polyether Ether Ketone)
PEEK is one of the most advanced engineering polymers available, offering exceptional strength-to-weight ratio comparable to metals like stainless steel. It provides excellent thermal stability, chemical resistance, and biocompatibility, making it suitable for demanding applications in aerospace, medical, and industrial sectors.
PEKK (Polyetherketoneketone)
PEKK belongs to the PAEK family and is designed for extreme environments. It offers similar high-performance characteristics as PEEK, including strong mechanical and thermal properties, while being easier to process due to its lower crystallinity. It is widely used in aerospace, automotive, and chemical industries.
CF-PEEK (Carbon Fiber Reinforced PEEK)
CF-PEEK combines PEEK with carbon fiber reinforcement, resulting in enhanced stiffness, strength, and thermal resistance. It is lightweight, highly durable, and suitable for harsh operating environments where high performance is critical.
PEI 9085
PEI 9085 is a high-performance thermoplastic known for excellent thermal stability, dimensional accuracy, and inherent flame resistance. It is widely used in aerospace, automotive, and electronic applications.
PEI 1010
PEI 1010 is an amorphous thermoplastic with a high glass transition temperature, offering outstanding heat resistance and mechanical strength. Its properties make it suitable for high-performance engineering applications.
PPSU (Polyphenylsulfone)
PPSU is a high-temperature polymer with excellent resistance to heat, chemicals, and hydrolysis. It can withstand repeated sterilization and is commonly used in medical, aerospace, and industrial applications.
Engineering-Grade Materials
PA (Nylon)
Polyamide (PA) is a strong, durable material with excellent toughness and thermal stability. It is widely used in industrial applications requiring high impact resistance and flexibility.
CF-PA (Carbon Fiber Reinforced Nylon)
CF-PA offers improved stiffness, strength, and heat resistance compared to standard nylon, making it ideal for structural and load-bearing applications.
GF-PA (Glass Fiber Reinforced Nylon)
GF-PA enhances the mechanical and thermal properties of standard nylon while maintaining good layer adhesion, making it suitable for structural components.
PC (Polycarbonate)
Polycarbonate is a high-strength material with excellent heat resistance and durability. It is ideal for functional prototypes and engineering parts requiring precision and toughness.
CF-PC (Carbon Fiber Reinforced Polycarbonate)
This material combines the strength of polycarbonate with carbon fiber reinforcement, offering a high strength-to-weight ratio and superior thermal performance.
General-Purpose Materials
ASA
ASA is a UV-resistant alternative to ABS, offering excellent weather resistance and durability, making it ideal for outdoor applications.
PLA (Polylactic Acid)
PLA is an eco-friendly, biodegradable material derived from renewable resources. It is easy to print and widely used for prototyping and decorative applications.
CF-PLA
CF-PLA is a carbon fiber-enhanced version of PLA, providing improved stiffness, surface finish, and dimensional stability.
ABS (Acrylonitrile Butadiene Styrene)
ABS is a strong and durable thermoplastic commonly used in engineering and consumer products. It offers good mechanical and thermal properties but requires UV stabilization for outdoor use.
CF-ABS
CF-ABS enhances standard ABS with carbon fiber reinforcement, improving strength, reducing warping, and increasing dimensional stability.
PP (Polypropylene)
Polypropylene is a lightweight material with excellent chemical resistance and fatigue strength, commonly used for functional components and prototypes.
TPU (Thermoplastic Polyurethane)
TPU is a flexible, rubber-like material with strong layer adhesion and excellent resistance to wear, chemicals, and impact.
PETG (Polyethylene Terephthalate Glycol)
PETG is a durable, easy-to-print material with high impact resistance and excellent chemical stability. It is widely used in medical, packaging, and outdoor applications.
Applications
3D printing is widely used across multiple industries, including:
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Aerospace
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Automotive
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Medical
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Manufacturing
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Education & Research
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Rapid Prototyping
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Jigs & Fixtures
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Exhibition Models
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Spare Parts & Replacements


