Scegliere il giusto materiale di stampa 3D MJF
Fusione multigetto (MJF) is a pivotal 3D printing technology for various applications, from initial prototipazione to full-scale production.
While the manufacturing process is popular for its precision and efficiency, the different materials offer additional flexibility.
This guide will explore the characteristics, cost implications, and primary applications of the preferred materials utilized in MJF 3D printing.
PA 11
Caratteristica principale: Pezzi di grandi dimensioni
With an elongation at break reaching 40% (depending on build orientation) PA 11 offers significant mechanical resilience. PA 11 also provides consistent isotropic mechanical properties, which is crucial for functional prototypes and end-use applications. Derived from renewable resources, its biocompatibility certifies it is safe for direct skin contact.
Applications
PA 11 is well-suited for parts requiring high ductility under mechanical stress. Typical applications include functional prototypes and lower limb prosthetics.
PA 12
Caratteristica principale: Pezzi di grandi dimensioni
PA 12 proves efficient in the MJF process, balancing cost-effectiveness and powder reusability. The material ensures high dimensional accuracy, making it suitable for precise and reliable parts. The material yields parts with solid mechanical properties and chemical resistance, particularly against oils and greases.
Applications
Commonly employed in the production of functional prototypes, PA 12 is also a preferred material for prosthetics and orthotics.
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TPU
Caratteristica principale: Pezzi di grandi dimensioni
TPU in the MJF process facilitates the creation of flexible, elastomeric parts, providing high elasticity and excellent shock absorption. Additionally, TPU in the MJF process allows for fine feature resolution, ensuring detailed and accurate parts. This combination yields significant design flexibility.
Applications
TPU has applications in manufacturing robotic grippers, elastic covers, and folding bellows. It is also utilized for energy-absorbing components in safety equipment such as helmets.
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