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HEIDENHAIN TNC 360 User Manual User Manual

Page 218

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TNC 360

12-8

12

Tables, Overviews, Diagrams

12.1 General User Parameters

Behavior of machining cycles

This general user parameter affects pocket milling.

Entry value: 0 to 15 (sum of the individual values in the “value” column)

MP 7420

Function

Cases

Value

• Milling direction for a

Clockwise for pockets, counterclockwise for islands .................. +1

channel around the contour

Counterclockwise for pockets, clockwise for islands .................. +0

• Sequence of roughing out and

First mill contour channel, then rough out .................................... +0

channel milling

First rough out, then mill contour channel .................................... +2

• Merge contours

Merge compensated contours ..................................................... +0
Merge uncompensated contours ................................................. +4

• Milling in depth

At each pecking depth, mill channel and rough out
before going to next depth ........................................................... +8
Mill contour channel to full pocket depth, then
rough out to full pocket depth ...................................................... +0

Overlapping with pocket milling

Overlap factor with pocket milling:
product of MP7430 and the tool radius

MP 7430

Function

Value

• Overlap factor for pockets ............................................................................................................. 0.1 to 1.414

Effect of M functions

The M functions M6 and M89 are influenced by MP 7440:

Entry range: 0 to 7
(Sum of the individual values in the “value” column)

MP 7440

Function

Cases

Value

• Programmable stop with M06

Program stop with M06 ............................................................... +0
No program stop .......................................................................... +1

• Modal cycle call with M89

Modal cycle call with M89 ........................................................... +2
M89 vacant M function ................................................................ +0

• Axes are stopped when M

Axis stop with M functions .......................................................... +4

function carried out

No axis stop .................................................................................. +0