THAILAND , HERE WE COME !
THAILAND , HERE WE COME !

Cart

Your cart is currently empty.

Continue shopping

Research AND DEVELOPMENT

TUNGSTEC is a high-tech enterprise specializing in the research, development, and production of high-performance CNC tools, including inserts for turning, milling, and drilling, as well as precision wear-resistant components. The company has established a long-term and in-depth scientific research partnership with Sichuan University. Through this collaborative platform, TUNGSTEC has achieved significant breakthroughs in several key technological fields.

In the area of new material development, TUNGSTEC has successfully developed a new type of cemented carbide material with higher hardness and wear resistance, significantly extending the lifespan and cutting efficiency of inserts. In precision manufacturing technology, the company has developed a high-precision process for producing wear-resistant components, achieving substantial improvements in dimensional accuracy and surface finish, reaching internationally advanced standards.

These scientific achievements have not only driven TUNGSTEC’s technological innovation and product upgrades but also earned widespread recognition and high praise in both domestic and international markets.

Learn More

R&D TEXT 1

Case Retrieval Strategy of Turning Process Based on Grey Relational Analysis
Click Here to Learn More

R&D TEXT 2

Case Retrieval Strategy of Turning Process Based on Grey Relational Analysis
Click Here to Learn More

R&D TEXT 3

Effect of Cr ion etching on the structure and properties of TiAlN-coated cemented carbide
Click Here to Learn More

R&D TEXT 4

Interface modification of TiAlN coated TiCN-based cermet through plasma nitriding
Click Here to Learn More

R&D TEXT 5

Effect of substrate pretreatments on the structure and properties of AlTiN coatings deposited on TiCN-based cermets
Click Here to Learn More

R&D TEXT 6

Effect of TiC addition and Co binder content in cemented carbide substrates on the microstructure and mechanical properties of the TiAlN-based composite films
Click Here to Learn More