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Apr 29, 2025

Breaking through the bottleneck of precision processing of 3D printed titanium alloy skulls: analysis of ultrasonic green cutting technology

In the field of medical implant manufacturing, 3D printed titanium alloy artificial skulls are highly favored for their excellent biocompatibility and mechanical properties. However, the special cutting characteristics of this material pose a huge challenge to precision machining.

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1.High strength, low density, but poor cutting performance
2.The porous structure formed by 3D printing needs to maintain nano-scale surface features
3.Dry cutting must be used to avoid contamination

1.Low drilling efficiency, long single-piece processing time
2.Surface roughness is difficult to control
3.Tool wear is fast, and processing costs are high


1‌.Ultrasonic processing technology‌: significantly improve processing efficiency and shorten delivery cycle
2‌.Supercritical CO2 low Warm cooling: achieve green and clean processing, eliminating the need for subsequent cleaning procedures
3.Five-axis linkage processing: ensure the precision molding of complex curved skulls


the quality of the orifice edge is improved by 50%, and the surface roughness is better than Ra0.8
tool life is extended by 3 times, and the comprehensive processing cost is reduced by 40%
completely avoid cutting fluid pollution and meet medical-grade cleaning standards


This solution has been successfully applied to many medical implant manufacturers, providing reliable technical support for personalized skull repair surgery and promoting the innovation of medical implant processing technology.


is an innovator in the field of precision machining technology, focusing on providing green and efficient machining solutions for high-end manufacturing fields such as medical and aerospace. Our technical team continues to break through the limits of material processing to create greater value for customers.

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