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Saturday, June 28, 2025

Farsoon Launches Excessive-Quantity Copper Alloy 3D Printing System FS621M-Cu


Farsoon has developed a specialised 3D printing system for producing giant copper alloy parts for aerospace functions. The corporate’s new FS621M-Cu system, constructed on their present large-format platform, options 4 1000W ytterbium fiber lasers designed to work with extremely reflective supplies like CuCrZr. This expertise addresses the historic challenges of utilizing copper in additive manufacturing because of its excessive reflectivity to near-infrared lasers.

Farsoon Launches High-Volume Copper Alloy 3D Printing System FS621M-CuFarsoon Launches High-Volume Copper Alloy 3D Printing System FS621M-Cu
Farsoon FS621-Cu metallic platform (Picture Credit score: Farsoon)

In partnership with an aerospace producer, Farsoon has enabled the manufacturing of thrust chamber liners for liquid rocket engines. These parts, which require complicated cooling channels and should face up to excessive circumstances, have historically been manufactured by way of labor-intensive processes. The brand new method makes use of laser powder mattress fusion to create monolithic buildings with optimized cooling channels, eliminating a number of meeting steps.

The expertise incorporates a number of technical options to beat copper’s difficult properties, together with an anti-reflective chamber coating and good thermal administration techniques. In August 2023, the system produced a 600mm diameter by 850mm peak thrust chamber liner with near-theoretical density (8.86 g/cm³) and thermal conductivity exceeding 345 W/(mĀ·Ok). X-ray scans confirmed the precision of the interior cooling channels.

Farsoon Launches High-Volume Copper Alloy 3D Printing System FS621M-CuFarsoon Launches Excessive-Quantity Copper Alloy 3D Printing System FS621M-Cu
Farsoon metallic functions with copper alloy (Picture Credit score: Farsoon)

Testing of the printed parts confirmed spectacular thermal properties, with thermal diffusivity of ≄95 mm²/s and particular warmth capability of ≄0.35 J/(gĀ·Ok). The mechanical properties of as-printed tensile specimens additionally demonstrated glorious outcomes in keeping with the corporate.

The manufacturing course of developed in 2023 has led to important enhancements in manufacturing effectivity. Parts now exceed design specs by greater than 50% whereas decreasing lead instances to 15-20 days in comparison with conventional strategies. The method has additionally reportedly achieved value reductions of as much as 75%, making it a probably priceless resolution for aerospace producers requiring giant copper alloy parts.

Supply: farsoon-gl.com

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