FDM

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Fused Deposition Modeling (FDM)

Builds components by extruding thermoplastic material layer by layer through a heated nozzle, forming durable and functional parts directly from digital designs. As one of the most widely used and cost-effective 3D printing technologies, FDM is ideal for functional prototypes, engineering models, manufacturing aids, tooling, and low-volume production parts. A broad range of thermoplastics can be used, offering options for strength, flexibility, heat resistance, and chemical durability. FDM parts can be post-processed through sanding, machining, and surface finishing, and can also be assembled into larger structures when needed, making it a versatile solution for both development and end-use applications.

Fused Deposition Modeling (FDM)

Builds components by extruding thermoplastic material layer by layer through a heated nozzle, forming durable and functional parts directly from digital designs. As one of the most widely used and cost-effective 3D printing technologies, FDM is ideal for functional prototypes, engineering models, manufacturing aids, tooling, and low-volume production parts. A broad range of thermoplastics can be used, offering options for strength, flexibility, heat resistance, and chemical durability. FDM parts can be post-processed through sanding, machining, and surface finishing, and can also be assembled into larger structures when needed, making it a versatile solution for both development and end-use applications.