数控专业外文资料翻译
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1、 Passage Three Milling Milling introduction Milling is a machining processing that is carried out by means of a multi edge rotating tool known as a milling cutter. In this process, metal removal is achieved through combining the rotary tool motion of the milling cutter and linear motion of the work
2、piece simultaneous. Milling operations are employed in producing flat, contoured and helical surfaces as well as for thread and gear cutting operations. Each of the cutting edges of a milling cutter acts as an individual single point cutter when it engages with the work piece metal. Therefore, each
3、of those cutting edges has appropriate rake and relief angles. Since only a few of the cutting edges are engaged with the work piece at a time, heavy cuts can be taken without adversely affecting the tool life. In fact, the permissible cutting speeds and feeds for milling are three to four times hig
4、her than those for turning or drilling. Moreover, the quality of the surfaces machined by milling is generally superior to the quality of surfaces machined by turning, shaping, or drilling. A wide variety of milling cutters is available in industry. This, together with the face that a milling machin
5、e is a very versatile machine tool, makes the milling machine the backbone of a machining workshop. As far as the direction of cutter rotation and work piece fed are concerned, milling is performed by either of the following two methods. Up milling (conventional milling).In up milling the work piece
6、 is fed against the direction of cutter rotation. The depth of cut gradually increases on the successively engaged cutting edges. Therefore, the machining process involves no impact loading, thus ensuring smoother operation of the machine tool and the longer tool life. The quality of the machined su
7、rface obtained by up milling is not very high. Nevertheless, up milling is commonly used in industry, especially for rough cuts. Down milling (climb milling). In down milling the cutter rotation coincides with the direction of feed at the contact point between the tool and the work piece. The maximu
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