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  1. Define the machining process for the various workpiece geometries using the appropriate strategies. First of all, roughing strategies are applied, e.g. roughing in the Z plane or equidis-tant from the surface geometry. CAM systems offer various options from 2 1/2-axis to 5-axis machining.

  2. The x-axis is the horizontal line along which the wall to your left and the floor intersect. The y-axis is the horizontal line along which the wall to your right and the floor intersect. The z-axis is the vertical line along which the walls intersect.

  3. www.heidenhain.us › addl-materials › HIT_3-Axis-Programming_DEMOCoordinate systems - HEIDENHAIN

    The three directions in the Cartesian coordinate system are specified as the axes X, Y, and Z. The axes are mutually perpendicular and intersect at one point: the datum (origin). An absolute coordinate designates the distance to the datum along a single axis.

  4. Mechanical design of milling machines. Both for 3+2 axis and for 5-axis simultaneous machining, two rotary axes (A, B, or C) in addition to the three linear axes (X, Y, and Z) are required for orientation of the tool.

  5. www.haascnc.com › programming-workbooks › mill---programming-workbookIES OOK G - Haas Automation Inc.

    Whenever we set a zero point somewhere on the X-axis and, a zero point somewhere on the Y-axis, we have automatically set a work zero pint and an intersection of the two number lines.

  6. Standard machines have linear motion along the X, Y and Z axes. 5-axis machines have two additional axes of rotation. Most machine tool builders identify their rotary axes according to the ISO standard, which is that: The A axis rotates around X. The B axis rotates around Y. The C axis rotates around Z.

  7. Z-axis typically frees the tool. Simultaneous 5-axis axis machines require a more intelligent solution, as multiple axis may need to be coordinated to retract the tool.

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