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The race lights dim, and the competition begins—full throttle. The 230-horsepower engine roars like a tiger’s mighty growl, propelling the racer forward
Looking back at the history of machining development, it’s clear that advancements in cutting tool materials have played a pivotal role in driving progress.
May 19,2021
"The processing method has been improved, cutting tools now use half the material." The hydraulic plant is tightening its belt and carefully managing resources by maximizing efficiency at every step—literally "digging for potential" right at the cutting edge.
The development of CNC machine tools and cutting tools has consistently revolved around key objectives—such as ensuring stable quality
The bridge gearbox workshop previously used a radial drilling machine with standard high-speed steel drill bits to process the passive bevel gear hub holes.
It is reported that the substantial increase in fixed asset investment in the mold industry during 2011 has ensured higher production capacity and improved quality
After years of research and exploration, China has made significant progress in the field of superhard cutting tools. However, their application in manufacturing remains relatively limited so far. The use of superhard tools for hard turning—a technology that has been developed and widely adopted over the past decade—has already yielded substantial economic and societal benefits. It’s reported that China’s production of superhard tools is primarily applied in three key areas: In the roll-processing industry, many large domestic roll manufacturers have successfully integrated superhard tools into their processes, using them for roughing, semi-finishing, and finishing operations on various types of rolls, including cold-hardened cast iron and quenched steel. These applications have consistently delivered excellent results.
With the advancement of modern science and technology, a growing number of high-hardness engineering materials are being adopted. However
Aug 26,2020