The processing method of CNC machine tool

The processing method of CNC machine tool

There are two main forms of NC lathe processing in production and processing,

They are solid heat treatment and melt heat treatment. There is a certain difference between the two ways to make precision hardware processing parts. What’s more, they use different steel to make different workpieces. CNC lathe is composed of bed, headstock, turret feed system, cooling and lubrication system and CNC system. Different from the ordinary lathe, the feed system of CNC lathe is qualitatively different from that of ordinary lathe,

It does not have the traditional tool box, slide box and change gear frame, but directly uses servo motor or stepper motor to drive slide and tool through ball screw to realize feed movement. The NC system consists of NC unit, input and output module and operation panel. (1) Solid solution strengthening: because the solute atoms enter into the gap or node of the solvent lattice, the lattice will be distorted and the hardness and strength of the solid solution will increase. This phenomenon is called solid solution strengthening. 2. Compound: a new crystal solid structure with metallic properties is formed by the combination of alloy components.

Mechanical mixture: an alloy consisting of two crystal structures. Although it has two kinds of crystals, it is a component with independent mechanical properties.

  1. Ferrite: interstitial solid solution of carbon in a-Fe (body centered cubic iron).
  2. Austenite: interstitial solid solution of carbon in g-fe.
  3. Cementite: stable compound (Fe3C) formed by carbon and iron.
  4. Pearlite: a mechanical mixture of ferrite and cementite (F + Fe3C contains 0.8% carbon)
  5. Ledeburite: a mechanical mixture of cementite and austenite (containing 4.3% carbon) Metal heat treatment is one of the important processes in mechanical manufacturing. Compared with other processes, heat treatment generally does not change the shape and overall chemical composition of the workpiece, but endows or improves the performance of the workpiece by changing the microstructure inside the workpiece or the chemical composition on the surface of the workpiece.

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