FANUC ROBOSHOT's MIM (Metal Injection Moulding) and CIM (Ceramic Injection Moulding) packages offer revolutionary solutions for manufacturing precision components. MIM is a cost-effective method to produce small, intricately shaped parts such as screws, while CIM is ideal for producing high-volume parts like turbocharger rotors and thrust bearings, which would otherwise be prohibitively expensive to machine. These advanced moulding technologies ensure high-quality production with exceptional accuracy and efficiency, making them indispensable for various industrial applications.
KEY BENEFITS
KEY BENEFITS
Benefits for Your Business
Enhanced Precision and Quality
These moulding technologies ensure high precision and superior quality. MIM produces small components with excellent surface finishes, whereas CIM guarantees the durability and accuracy of ceramic parts, crucial for applications like turbocharger rotors and thrust bearings.
Versatility
Both methods offer unparalleled design flexibility. MIM enables the creation of complex shapes and geometries for metal parts, and CIM allows for the consistent production of detailed ceramic components, fostering innovation and efficiency in product design and manufacturing.
Cost-Effective Production
Both MIM and CIM technologies significantly reduce production costs. MIM is ideal for small, complex parts, while CIM excels in the economical high-volume production of intricate ceramic components, cutting down on waste and labor costs.
Repeatability and Consistency
The CNC control technology in FANUC ROBOSHOT ensures long-term repeatability, maintaining the same high quality with identical parameters. This eliminates the need for parameter adjustments, reducing downtime and saving money.
Operational Efficiency
With no parameter adjustment required, the operational efficiency is greatly enhanced. This leads to reduced downtime, ensuring continuous production runs with consistent quality, ultimately saving costs and improving productivity.
Stability
FANUC ROBOSHOT’s superior CNC control technology provides excellent stability, resulting in a lower reject rate compared to other systems. This stability translates to less waste and fewer rejected parts, saving money and enhancing overall production efficiency.