Introduction to the FANUC system and its role

Create Date: 2024-8-30 12:03:23|Source: FANUC/Fanuc

The FANUC system is the system hardware, including scientific research, design, and manufacturing. The FANUC system was created by FANUC and developed in Japan.

                               Introduction to the FANUC system and its role

The role of the FANUC system is to include:

1. The spindle control loop is position closed-loop control, and the rotation of the spindle motor is completely synchronized with the feed of the tapping shaft (Z-axis), so as to achieve high-speed and high-precision tapping.

2. The composite machining cycle can generate a series of cutting paths with simple instructions. For example, the final contour of the workpiece is defined, and the toolpath for multiple rough turns can be automatically generated, simplifying lathe programming.

3. The inclination, chamfer value, corner radius value and other dimensions of the straight line, these dimensions are specified on the part drawing, which can simplify the programming of the component processing program.

In the process of CNC machine tool processing, due to the complexity and diversity of processing objects, especially the ever-changing shape and position of the contour curve, coupled with the influence of many factors such as different materials and different batches, when formulating processing plans for specific parts, specific analysis and differential treatment should be carried out and handled flexibly.

In the case of multi-hole machining, a fixed cycle instruction is used to simplify the procedure. At this time, the mathematical processing is mainly to determine the hole position coordinates, fast forward dimensions and working feed size values according to the requirements of the fixed cycle instruction format. The starting plane in the fixed cycle is Z=5, and the R point plane is set at the surface of the part orifice + 3mm in the Z direction.

A system variable is defined as a variable that has a fixed purpose, and its value determines the state of the system. The system variables include tool offset variables, interface input/output signal variables, position information variables, etc.

The ordinal number of a system variable has a strict correspondence with a certain state of the system. For example, if the tool offset variable is numbered #01-#99, these values can be changed by replacing the variable, and in sequence numbers 1-99, the variable that is not used as the tool offset can be used as the maintain-type common variable #500-#531.

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