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不知道为什么,,+ [0 o+ ?! B3 y' y
我用的是mastercam9.1sp2版,但是编出来的程序没有圆弧,我用的是2:1的过滤,,可是程序在机床上用时,,机器走的很慢,,这是我现在用的后处理。。
& d8 i+ @% ^8 N% r- Wspaces : 1 #Number of spaces to add between fields
F0 p7 e+ i0 B. x& Iomitseq : no #Omit sequence numbers?
2 x5 |% Z1 h: t; J" E- wseqmax : 9999 #Max. sequence number4 W) J# i. u% N$ ]
arcoutput : 0 #0 = IJK, 1 = R no sign, 2 = R signed neg. over 180
* U' s2 r) q/ Z% h1 ]' Qarctype : 2 #Arc center 1=abs, 2=St-Ctr, 3=Ctr-St, 4=unsigned inc.
! U3 ~6 d& X+ H) {, I5 w ?* ~breakarcs : 2 #Break arcs, 0 = no, 1 = quadrants, 2 = 180deg. max arcs' F: I7 ]( T% H- }7 p& u3 p, l
do_full_arc : 1 #Allow full circle output? 0=no, 1=yes
8 }4 |$ v* j! c/ t# uhelix_arc : 1 #Support helix arc output, 0=no, 1=all planes, 2=XY plane only) {5 @2 D2 T0 d _
compwarn : 1 #Warn if cutter comp applied on arc, 0=no, 1=yes
! g9 s# \8 I$ u3 Y1 ]7 bmiscerror : 0 #Error out if Misc Values button is disabled, 0=no, 1=yes
) ~8 N3 D5 x: [8 s8 o# z$ hmaxrad : 999 #Maximum arc radius
1 n+ i: [* G6 T: K! h% ?, ~6 Nhel_2100 : no #Acramatic 2100 style helical moves, 0=no, 1=yes
2 ?; V( J. F( Cusecanned : yes #Use canned drilling cycles? Set to no for long output.9 o9 |* V7 e& Y
force_dpts : no #Force XY output on all drilling lines including cycle call?; N! K9 v7 \8 r5 J
haas_drill : 0 #Haas style peck drill, 0=no, 1=yes# c$ _% m5 ^% U' p
wcstype : 2 #0 = G92 at start, 1 = G92 at toolchanges, 2 = G54, 3 = Off4 o5 z" W- C1 G, ^
force_wcs : yes #Force WCS output at every toolchange?
8 [! w+ R5 s; ? P5 J9 F) Nstagetool : 0 #0 = Do not pre-stage tools, 1 = Stage tools
! ~$ P& ?$ d! m* M! K/ htool_table : 1 #Tool table, 0=no, 1=yes, 2=Predator VCNC, 3=MetaCut View #5 z# K9 v' N: S4 l1 o# o4 k
output_z : yes #Output Z Min and Z Max values (yes or no)0 O. f3 p4 \5 w! n4 ^
cool_zmove : yes #Coolant off with last move3 N, e! \5 Z/ a
use_pitch : 0 #0 = Use feed for tapping, 1 = Use pitch for tapping6 `( k9 U' \( Z0 _! \/ l9 K& m
tap_feed : 0 #0 = 2/1 (in/mm) decimal places, 1 = 4/3 (in/mm) decimal places9 b) h. U+ b9 H4 H
maxfeedpm : 500 #Limit for feed in inch/min9 J7 c( w' B) T7 ]+ ~+ w) j
maxfeedpm_m : 10000 #Limit for feed in mm/min
- |# v8 X9 B( U1 _+ x+ v% quse_gear : 0 #Output gear selection code, 0=no, 1=yes - F. c9 u8 d( H8 k% Z
max_speed : 10000 #Maximum spindle speed
7 ]% M: W! H2 A8 k O0 fmin_speed : 50 #Minimum spindle speed
) C, o$ X) w! ` gsextnc .NC #NC extension override
* J7 G0 u# |( R9 svmc : 1 #0 = Horizontal Machine, 1 = Vertical Mill 9 `! W$ |0 T! P0 H! ]1 h. ~
rot_on_x : 0 #Default Rotary Axis Orientation, See ques. 164.
4 j" L3 P- i, h+ a' I+ V #0 = Off, 1 = About X, 2 = About Y, 3 = About Z
- `1 M3 [) ~- h% ?- V# Frot_ccw_pos : 1 #Axis signed dir, 0 = CW positive, 1 = CCW positive% s7 c2 O3 D1 _
ret_on_indx : 1 #Machine home retract on rotary index moves, (0 = no, 1 = yes)
# y- A2 p* u/ F1 b3 K! H* E3 r# tindex : 0 #Use index positioning, 0 = Full Rotary, 1 = Index only/ c, O3 \8 g! Q- h% I% U6 E
ctable : 5 #Degrees for each index step with indexing spindle
2 o0 B! u) {* S4 Fone_rev : 0 #Limit rotary indexing between 0 and 360? (0 = No, 1 = Yes)
$ [: H/ M, h6 h" |2 ~4 glock_codes : 0 #Use rotary axis unlock/lock M-Codes? (0 = No, 1 = Yes)
* Y4 n. N, A% m6 Q; O7 R/ Fuse_frinv : 0 #Use Inverse Time Feedrates in 4 Axis, (0 = no, 1 = yes)
" _% M; z$ `2 X7 A1 Y" Bmaxfrdeg : 2000 #Limit for feed in deg/min% M s4 z4 T1 a0 b/ e) u- r
maxfrinv : 999.99#Limit for feed inverse time0 M8 p/ t3 \2 e; @: t# o3 ^" c# y4 b. y R
frc_cinit : 1 #Force C axis reset at toolchange
7 m) G- i. ?; l. j6 Kctol : 225 #Tolerance in deg. before rev flag changes: m. r, H7 A& v+ z) r
ixtol : .01 #Tolerance in deg. for index error
1 I1 Z1 \' C3 C/ n* C+ e. u" l) zfrdegstp : 10 #Step limit for rotary feed in deg/min |
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