Because the thermal conductivity of titanium exhaust flange processing is small, the heat generated during cutting cannot be dissipated and will be stored in the tool, so the wear on the tool will increase.
Because of the large chemical activity, when the cutting speed increases, cutting heat will occur, and the temperature of the cutting part will increase, so the activity will increase and the wear on the tool will increase.
Because the continuous deformation causes chips to be generated, the cutting resistance of the cutting edge increases, and the tip is prone to chipping and wear.
Because the elastic modulus is small, the machining material is prone to great deformation during cutting, especially when machining thin workpieces, the machining accuracy will be reduced and chattering will occur.
When cutting with a worn tool or when fine chips occur when cutting, the high temperature can sometimes cause the chips to ignite.
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