When using cutting tools, vibration problems can significantly affect machining quality. Our carbide anti-vibration tool holders are designed to ensure smooth machining processes by effectively reducing knife shock.
The Dynamic Principle: Unlike ordinary cutter arbors, our anti-vibration boring bar features a tuned mass damper. Based on the resonance principle, it operates as a passive dynamic system. Inside the tool holder, a vibration absorber counters any vibration generated when the handle undergoes bending deformation.
Beyond boring bars, our capabilities extend to a wide range of tungsten carbide products including:
Screwed Boring Bars, Rods, Sticks, Bushings, TP Nozzles, 3D Printer Nozzles, Saw Blades, End Mills, CNC Inserts, and Customized Cutters.
Frequently Asked Questions (FAQ)
What is the advantage of a "Passive Dynamic System" in boring bars?
It utilizes a tuned mass damper that creates a counter-vibration to absorb energy when the tool handle bends, leading to much higher stability and a smoother surface finish.
How much can this tool improve my production efficiency?
Compared to traditional steel bars, these carbide anti-vibration tools can increase processing efficiency by 3 to 5 times due to better vibration control and higher rigidity.
What is the processing precision of these high-end tools?
The tools are designed for high-end CNC applications with a processing precision of approximately +-0.02mm, with certain components reaching 0.001mm precision.
Can I use the same shank for different types of machining?
Yes. The system allows for free combination and replaceable tool rod heads, covering requirements from rough machining to fine finishing.
What materials are used in manufacturing these tools?
We use 100% virgin pure tungsten carbide raw materials, which are processed through HIP sintering to ensure maximum hardness (89.5~92.7hra) and wear resistance.
Are custom sizes and designs available?
Yes, both standard and non-standard items are available. We provide solutions based on specific customer requirements or drawings.