1) end milling
立铣削
2) micro-end-milling
微细立铣削
3) NC vertical milling
数控立铣削
1.
Undercut is common in NC vertical milling and seriously damage the quality of machining process.
在两坐标数控立铣削加工中,欠切是常见的异常加工现象,严重的影响了加工质量及加工效率。
4) end milling
立铣
1.
A new approach is proposed to modeling the milling force based on the cutting force shape characteristics in end milling.
提出了一种根据切削力变化曲线的形状特征精确建立铣削力预测模型的方法。
2.
To study and solve this problem, getting correct mechanistic model of end milling is an important work.
本文在已有文献的基础上 ,建立了螺旋立铣刀切削的力学模型 ,并对铣削力的空间分布状态进行了必要的讨论 ,为进一步研究薄壁零件加工变形奠定了理论基础。
3.
In this paper, two approches are presented to evaluate the chatter state in end milling, because the chatter has a great influence upon the accuracy and roughness of the workpiece, the productivity and the life of the cutter.
针对立铣加工过程中影响加工精度、效率和刀具寿命的切削颤振现象提出切削力矢量轨迹分散值评价法,并与传统的快速富里叶变换法(FFT)进行比较。
5) End-milling
立铣
1.
Research on the Optimization of Cutting Parameter in Single Pass End-milling for Numerical Control Milling Machine;
数控铣床一次走刀立铣切削用量优化的研究
6) End Mill
立铣刀
1.
Finite Element Modal Analysis on End Mill in High Speed Milling;
高速铣削立铣刀的有限元模态分析
参考词条
补充资料:安立谛非安立谛
【安立谛非安立谛】
(术语)述记十九曰:“有差别名言者名安立,无差别离名言者,非安立也。安立者施设义。”
(术语)述记十九曰:“有差别名言者名安立,无差别离名言者,非安立也。安立者施设义。”
说明:补充资料仅用于学习参考,请勿用于其它任何用途。