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Due to the high hardness of titanium alloys, high-speed tungsten steel or multi-layer coated carbide cutting tools are required for machining.
The geometric shape of the cutting tool also needs to be optimized based on the physical properties of titanium alloys, such as reducing the cutting angle and increasing the rake angle.
Control of Cutting Parameters:
The cutting temperature of titanium alloys tends to rise easily, thus requiring control of parameters such as cutting speed, feed rate, and cutting depth.
The cutting speed should be appropriately reduced, and the feed rate should be moderately decreased to minimize cutting forces and heat generation.
Maintaining Stable Cutting:
The cutting process of titanium alloys is prone to vibration and impact, necessitating the maintenance of stability during cutting.
Measures such as selecting suitable clamping methods, enhancing the rigidity of the machine tool, and reducing workpiece vibration contribute to maintaining stable cutting.
Attention to Surface Treatment After Machining:
Titanium alloys are prone to oxidation, and an oxide layer can easily form on the surface after machining.
To ensure the quality of titanium alloy parts, surface treatment after machining is necessary, including pickling, grinding, and polishing.
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