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  2. LinuxCNC - Wikipedia

    en.wikipedia.org/wiki/LinuxCNC

    LinuxCNC is a software system for numerical control of machines such as milling machines, lathes, plasma cutters, routers, cutting machines, robots and hexapods.It can control up to 9 axes or joints of a CNC machine using G-code (RS-274NGC) as input.

  3. Multiaxis machining - Wikipedia

    en.wikipedia.org/wiki/Multiaxis_machining

    CAM software automates the process of converting 3D models into tool paths, the route the multiaxis machine takes to mill a part (Fig. 1). This software takes into account the different parameters of the tool head (in the case of a CNC router, this would be the bit size), dimensions of the blank, and any constraints the machine may have.

  4. 2.5D (machining) - Wikipedia

    en.wikipedia.org/wiki/2.5D_(machining)

    Drilling and tapping operations are also possible on a 2.5-axis mill. 2.5D objects can be machined on a 3-axis milling machine, and do not require any of the features of a higher-axis machine to produce. CNC machines use G-code and M-code in order to control the machine and the positioning of the spindle. Canned cycles use G-code to machine ...

  5. Milling (machining) - Wikipedia

    en.wikipedia.org/wiki/Milling_(machining)

    A 3-axis clone of a Bridgeport-style vertical milling machine Milling is the process of machining using rotary cutters to remove material [ 1 ] by advancing a cutter into a workpiece . This may be done by varying directions [ 2 ] on one or several axes, cutter head speed, and pressure. [ 3 ]

  6. CNC router - Wikipedia

    en.wikipedia.org/wiki/CNC_router

    The CNC Router is ideal for hobbies, engineering prototyping, product development, art, and production works. The CNC works on the Cartesian coordinate system (X, Y, Z) for 3D motion control; however, typical CNC operated systems can only make carvings on flat planes. The machine sits on a track and is not capable of making round or spherical cuts.

  7. G-code - Wikipedia

    en.wikipedia.org/wiki/G-code

    G-code (abbreviation for geometric code; also called RS-274 [citation needed]) is the most widely used computer numerical control (CNC) and 3D printing programming language. It is used mainly in computer-aided manufacturing to control automated machine tools, as well as for 3D-printer slicer applications. G-code has many variants.

  8. Machine coordinate system - Wikipedia

    en.wikipedia.org/wiki/Machine_coordinate_system

    [1] In the manufacturing industry, with regard to numerically controlled machine tools, the phrase machine coordinate system refers to the physical limits of the motion of the machine in each of its axes, and to the numerical coordinate which is assigned (by the machine tool builder) to each of these limits. CNC Machinery refers to machines and devices that are controlled by using programmed ...

  9. Canned cycle - Wikipedia

    en.wikipedia.org/wiki/Canned_cycle

    If the machine control supports it, the user may create their own custom canned cycles. As there are numbers not already used for G-codes, [5] new canned cycle programs can be stored at these vacant locations. This may be done on the popular Fanuc control with a technique referred to as "macro programming", after the Fanuc Macro-B language.

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