numerics$54046$ - перевод на итальянский
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numerics$54046$ - перевод на итальянский

AUTOMATION OF MACHINING TOOLS USING PRE-PROGRAMMED COMPUTER COMMANDS
Computer numerical control; Numeric control; Numerically controlled; Computer numerically controlled; Computer numeric control; Cnc; Cnc training; CNC machine; Computer Numerical Control; Cnc milling; CNC milling; CNC machining; Cnc machining; NC machining; Numerics; CNC; Numerical controlled; Computer numerical controlled; Stored-program numerical control; CNC training; Computer Numerical Controlled; Computer numeric controls; Cnc mill; Computerized numerical control; Computerized numerical control (CNC) machines; CNC machine tool; CNC equipment; CNC controller; Numerically controlled machine; Numerical Control
  • CNC plasma cutting
  • A CNC machine that operates on wood
  • Master at the top, badge die workpiece at bottom, oil jets at left (oil has been drained). Initial flat stamping will be "dapped" to give a curved surface.
  • Waterjet]] cutting machine for all materials

numerics      
n. numerica (disciplina dei numeri)
numerical control         
controllo numerico (processo industriale in cui la messa in funzione di macchinari è attuata a mezzo di un elaboratore digitale addetto al controllo delle operazioni)

Википедия

Numerical control

Numerical control (also computer numerical control, and commonly called CNC) is the automated control of machining tools (such as drills, lathes, mills, grinders, routers and 3D printers) by means of a computer. A CNC machine processes a piece of material (metal, plastic, wood, ceramic, or composite) to meet specifications by following coded programmed instructions and without a manual operator directly controlling the machining operation.

A CNC machine is a motorized maneuverable tool and often a motorized maneuverable platform, which are both controlled by a computer, according to specific input instructions. Instructions are delivered to a CNC machine in the form of a sequential program of machine control instructions such as G-code and M-code, and then executed. The program can be written by a person or, far more often, generated by graphical computer-aided design (CAD) or computer-aided manufacturing (CAM) software. In the case of 3D printers, the part to be printed is "sliced" before the instructions (or the program) are generated. 3D printers also use G-Code.

CNC offers greatly increased productivity over non-computerized machining for repetitive production, where the machine must be manually controlled (e.g. using devices such as hand wheels or levers) or mechanically controlled by pre-fabricated pattern guides (see pantograph mill). However, these advantages come at significant cost in terms of both capital expenditure and job setup time. For some prototyping and small batch jobs, a good machine operator can have parts finished to a high standard whilst a CNC workflow is still in setup.

In modern CNC systems, the design of a mechanical part and its manufacturing program are highly automated. The part's mechanical dimensions are defined using CAD software and then translated into manufacturing directives by computer-aided manufacturing (CAM) software. The resulting directives are transformed (by "post processor" software) into the specific commands necessary for a particular machine to produce the component and then are loaded into the CNC machine.

Since any particular component might require the use of several different tools – drills, saws, etc. – modern machines often combine multiple tools into a single "cell". In other installations, several different machines are used with an external controller and human or robotic operators that move the component from machine to machine. In either case, the series of steps needed to produce any part is highly automated and produces a part that closely matches the original CAD drawing.