Fabulous Materials

French manufacturer specialised in the development of plastic materials for powder bed based additive manufacturing.

Showing 1 - 2 of 2 items
Showing 1 - 2 of 2 items

Fabulous Materials, a prominent French producer specializing in additive manufacturing powders, is dedicated to pioneering innovative materials tailored explicitly for industrial applications. Their commitment revolves around developing advanced solutions that redefine the additive manufacturing landscape. Among their standout products are functional polyamides meticulously crafted for medical, food, and high-performance uses. Notably, their recognizable food-grade certified powders, distinguished by their distinct blue color, signify the brand's unwavering dedication to upholding the highest safety and quality standards.

The team at Fabulous Materials embodies a wealth of multidisciplinary expertise, spanning materials science, additive manufacturing, product engineering, and digital processes. This robust amalgamation of knowledge and experience serves as the cornerstone of the brand's endeavor to deliver cutting-edge solutions in the additive manufacturing sector. With an unwavering focus on innovation and precision, Fabulous Materials continuously push the boundaries to drive the industry forward.

Delving into the realm of Selective Laser Sintering (SLS) 3D printing technology, the brand finds an innovative method revolutionizing additive manufacturing. SLS, characterized by its use of a high-powered laser to selectively fuse powdered materials, offers unmatched precision and durability in crafting intricate 3D-printed objects. Fabulous's portfolio of meticulously formulated powders aligns seamlessly with the demands of SLS systems, boasting superior properties like robustness, thermal stability, and impeccable surface finishes. The brand's commitment to stringent certifications and compliance with regulations further underscores their dedication to ensuring exceptional performance and safety across diverse industrial applications within the SLS 3D printing sphere.