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Study on vibration reduction mechanism of variable pitch end mill and cutting performance in milling titanium alloy

机译:变螺距立铣刀减振机理及铣削钛合金切削性能的研究

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摘要

The vibration reduction mechanism of variable pitch end mills was analyzed by the theory of energy balance of the frequency spectrum line. The variable pitch mill can reduce the forced vibration in the cutting process due to the uniform distribution of frequency spectrum line energy and lower peak energy of the cutting force. Aimed at the vibration phenomenon which restricted the efficiency in cutting aero material titanium alloy, high-speed cutting experiments of titanium alloy Ti6Al4V were set with variable and equal pitch mills under dry and down-milling environment. The influences of cutting speeds on cutting forces and tool vibration were analyzed at time domain and frequency domain, respectively, by which the vibration reduction mechanism of variable pitch mill was verified. Due to the misalignment of end mill no. 3, high-level cutting forces and tool vibration were caused by the unequal cutting load on each edge. It is found that severe tool vibration was produced under the cutting speed of 150 m/min because of low-frequency resonance in the cutting process.
机译:利用频谱线的能量平衡理论分析了变螺距立铣刀的减振机理。由于频谱线能量的均匀分布和切削力的较低峰值能量,可变螺距磨机可以减少切削过程中的强制振动。针对振动现象,限制了航空材料钛合金的切削效率,在干磨和下磨环境下,采用变螺距和等距铣刀进行了钛合金Ti6Al4V的高速切削实验。在时域和频域分别分析了切削速度对切削力和刀具振动的影响,从而验证了变螺距磨机的减振机理。由于立铣刀未对准。 3,高强度的切削力和刀具振动是由每个边缘上不相等的切削负荷引起的。结果发现,由于切削过程中的低频共振,在150 m / min的切削速度下会产生剧烈的刀具振动。

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