HL wire cutting machine control programming - graphic programming example

Note: The line number and the alternate line number in the legend are the values ​​at the end of the last input. When you press the input, some line numbers will change automatically, especially the point line that is input first and placed before the end line. Most of the lines are input by inserting, and the replacement point number is constantly changing, as shown in P21 in TO13. Therefore, it is not necessary to follow the substitute number in the legend, but the actual line number in the input process. Otherwise, it will go wrong.

The following source programs are not the only way. After familiarizing yourself with various line rounds, try to use other methods, or change some numbers (such as intersections and rotationally symmetric line numbers and automatic rounding, offset, etc.) Then use the overlapping drawing function to compare the changes to deepen the understanding.
In addition, you can select a graphic file from the [WS-C] graphics library for practice to further program at a high level.
The first four are beginner exercises:
1. Machining only one straight line: See description of programming function W

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2. Draw a circular arc: Try changing C4 to C3 and submit it to the top to understand the meaning of the intersection.

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3. Machining a circular arc: Try to change the 001, 002 segment intersections to 1, 2, 3, 4, 5, 6 comparison graph changes

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4. Process a full circle: Try changing R20 to R-20, or changing X30 to X0, or cancel A0 to compare graphic changes.

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5. TT2

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6. TR2 This figure shows the intersection of the line and the intersection of the two rounds and the radius to define the circle. Auxiliary line 12 can be moved to 24 lines

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7. 31C Change the LW line to make a circle on the rotation line. Two kinds of line circles of X and Y are known.

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8. TO13 This illustration illustrates the use of polar coordinates and points, practicing continuous graphic symmetry of arbitrary points and angles.

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9.8JJ Machining a regular octagonal shape with a center of φ12 taper hole, material thickness 32mm, requiring a 3mm straight body edge in the middle hole, first processing straight holes. Φ0.14 molybdenum wire (refer to the machine operation manual example)

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10. FQ502 involute graphics

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11. F0

12. FF contains unknown data graphic exception (for control call)

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13. 3Q1: Elliptical pattern

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14.SB

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15. PWX

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16. XKTL2

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17. BB11

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18. G1825

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19. F445

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20. BJ

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21. ZDM

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