久久久国产一区二区_国产精品av电影_日韩精品中文字幕一区二区三区_精品一区二区三区免费毛片爱
機械社區
標題:
發那科310I系統的有沒有人用過啊?
[打印本頁]
作者:
宵夜有風
時間:
2014-1-14 13:51
標題:
發那科310I系統的有沒有人用過啊?
發那科310I系統的有沒有人用過啊?誰有編程手冊?好多指令不太懂啊~~求大神
作者:
gongfei2419
時間:
2014-1-14 18:56
30i\31i吧
作者:
HC小丁
時間:
2014-1-14 19:32
gongfei2419 發表于 2014-1-14 18:56
1 v) w: T+ m9 V9 ^& H3 y
30i\31i吧
: g( `* m3 l2 P! I! Q
有300i、310i、320i都有,310i好像是觸摸屏的了和30i、31i基本操作一樣,與0I有所區別
- ]2 _; M; K0 [2 t2 U
& ]' D% {1 C" j$ X: \( H0 D
作者:
shixzc
時間:
2014-1-15 11:59
GE FANUC 310i SERIES CONTROL
7 i P- R+ }8 r" [5 v' y
PREPARATORY FUNCTION
$ J1 f& q. B7 [4 ]2 u
The preparatory function codes are used to establish modes of operation. The following G codes are listed in their numeric sequence and also by group. In any group, one G code will cancel the other. The * denotes the default code when power is applied to the control.
: M+ J8 y/ g- ]6 j9 @( n y
2 b' ~* g8 O' d I6 ~! F: l
Up to five G codes may be programmed on one line. If a line contains conflicting G codes, such as G00 G01, the last one read will control, but not in all cases.
4 A2 U, J a8 j. L2 \6 M
CODE GROUP DESCRIPTION MODAL STD./OPT
: c$ B0 k L9 L: S# O1 C
CODE GROUP DESCRIPTION MODAL STD./OPT
5 t" E/ x7 j+ Q, R
G00 01 Point to point positioning YES Standard
3 L& x: E" r, C2 k) O
G01* 01 Linear interpolation YES Standard
9 c/ }' w1 P) X/ ^/ ~
G02 01 Circular interpolation-CW Arc YES Standard
0 x* k6 @9 M0 {' n5 W
G03 01 Circular interpolation-CCW Arc YES Standard
?; H, Q, A* H% U
G04 00 Dwell NO Standard
n0 q, s+ L# ]0 }. c, A9 d
G09 00 Deceleration NO Standard
; J! \5 S: z- ]/ e4 j+ C+ `
G10 00 Programmable data input mode SOME Optional
O; C- b/ \! Y5 ~
G11 00 Programmable data input mode cancel YES Optional
; X' p5 ` ]- \
G10.6 00 Tool retract and recover NO Optional
" F9 S: F s6 m5 h; `7 M4 z
G12.1 26 Polar coordinate interpolation YES Optional
3 g, K# j' S2 Z+ i9 Z
G13.1* 26 Polar coordinate interpolation cancel YES Optional
( d( a9 D! S% P, x" H( E# s
G18* 16 ZX plane selection YES Standard
2 b: ?3 [, G5 e+ T. k+ u6 I
G19 16 YZ plane selection YES Standard
& Z8 K. O9 q4 {0 C7 A* d
G20 01 Turning cycle YES Standard
; b) m6 Q. S- S, U6 l- L
G21 01 Threading cycle YES Standard
' m% q4 C' |2 L: |- A
G24 01 Facing cycle YES Standard
0 H6 w C7 L- f$ q4 K; F' [
G22 04 Stored stroke check ON YES Optional
0 C( Z' E$ W! X9 M8 r$ D9 @* H
G23 04 Stored stroke check Off YES Optional
' s# m0 e- w" |
G27 00 Reference point return check NO Standard
5 P4 i! A1 X& n, n4 t
G28 00 Reference point return NO Standard
! A# D4 n' u1 U
G29 00 Return from reference point NO Standard
" W8 }+ N+ P4 m) i8 ^; M" {3 u
G30 00 2nd, 3rd & 4th reference point return NO Optional
, r8 L% n4 o+ t" [' [& j# N0 R o
G30.1 00 Floating reference point return NO Optional
% t2 S- n2 u: j, Z: @ c
G31 00 Skip function NO Optional
+ `. U+ B+ m( N; j, f0 V$ W3 e; m
G33 01 Thread cutting, constant lead YES Standard
2 H. P* j5 p Q
G40* 07 Tool nose radius compensation cancel YES Standard
9 r: |# S9 {, l6 }- v, f
G41 07 Tool nose radius compensation Left YES Standard
s! U# u8 k7 g: D" y
G42 07 Tool nose radius compensation Right YES Standard
H! k4 }, ?2 l% \3 _$ L
G43.7 23 Tool offset compensation (extended tool selection) YES Optional
h3 R+ s6 f) J! z
G52 00 Local coordinate system shift YES 2 axis only
, Y( v3 z n( `/ L
G53 00 Machine coordinate system selection NO Standard
6 l3 y# D' @ w
G54 14 Work coordinate system 1 selection YES Standard
6 O( U# _7 Q, C$ x" w# S
G55 14 Work coordinate system 2 selection YES Standard
% q. X9 W8 x, `4 [0 I
CODE GROUP DESCRIPTION MODAL STD./OPT
) ]3 O6 p' D4 K( m
G56 14 Work coordinate system 3 selection YES Standard
1 |1 S+ J2 o, w1 @5 A; F; c
G57 14 Work coordinate system 4 selection YES Standard
. \& N' V% P$ a u( Q
G58 14 Work coordinate system 5 selection YES Standard
: u& V5 F- J0 M
G59 14 Work coordinate system 6 selection YES Standard
9 u2 Z1 t' U( V. O4 N# n) m
G61 15 Exact stop mode YES Standard
5 |! y* a- J, G( W# M
G62 15 Automatic corner override YES Standard
6 U% d* N4 ?7 S d: w
G64* 15 Cutting mode YES Standard
1 O* K3 c8 W" K1 C! j$ V" \
G65 00 Marco call NO Optional
( k# Y3 Z* O* |/ k) J4 `/ v" \7 O# y
G66 12 Macro mode call A YES Optional
' ~4 X# ?, L h6 ^$ g$ W
G67* 12 Macro mode call cancel YES Optional
! h8 P6 U4 f2 B
G68 13 Balance cutting YES Optional
6 f9 H- y1 B' e+ f1 h
G69 13 Cancel balance cutting YES Optional
( _, f7 B2 y' F2 U/ a: ~4 P6 k
G70 06 Inch programming YES Standard
& z5 j1 N+ g& i, @# H' v- U% g2 l
G71 06 Metric programming YES Standard
3 m& y4 u9 Z7 C& z
G72 00 Finishing cycle YES Optional
4 o1 ~- A& o% A- ~% ~; f1 r
G73 00 Stock removal-turning YES Optional
+ h1 r' g! h2 _2 J
G74 00 Stock removal-facing YES Optional
( _6 R7 | T. S3 g0 k& N
G75 00 Pattern repeat YES Optional
+ A+ Y' v' `8 i: a& g3 O" \
G76 00 Peck drilling in Z axis YES Optional
0 x( ^4 c% I3 u4 @8 y
G77 00 Grooving-X axis YES Optional
3 C4 v6 v: P3 M) l+ r: I
G78 00 Threading cycle YES Optional
7 @5 n, o2 q( W) J; e+ U2 m
G80* 09 Canned cycle cancel YES Optional
/ C6 V7 @" [. t
G83 09 Face drilling cycle YES Optional
6 K4 W' b9 Y9 m. w6 o
G84 09 Face tapping cycle YES Optional
( O2 v1 r' W% K5 }+ N
G85 09 Face boring cycle YES Optional
5 V- ]- ^& }5 A/ N8 a. i7 u6 [
G87 09 Side drilling cycle YES Optional
& {+ U( D# u5 @1 o% O
G88 09 Side tapping cycle YES Optional
0 o9 s1 g5 [4 T
G89 09 Side boring cycle YES Optional
( H) O# x4 v" O8 h0 X5 l
G90* 03 Absolute dimension input YES Standard
; X( Z; H1 E4 Y Q" V, y" h
G91 03 Incremental dimension input YES Standard
; H5 Z o& \( _+ o# I) w8 J
G92 00 Work change/ maximum table speed NO Standard
! h* }* g9 S9 F8 X( |
G94 05 Inches (MM) per minute feedrate YES Standard
: Z- z% X6 o! M" ?: R
G95* 05 Inches (MM) per table revolution YES Standard
- y/ e) A' a0 R$ D
G96 02 Constant surface speed YES Standard
, X! R9 \% Y; x0 G' ~) P
G97* 02 Direct rpm YES Standard
2 I8 a: _$ U1 A
G98* 10 Canned cycle initial level return YES Optional
f5 h' M- W: h9 x* D/ W# O" u# _
G99 10 Canned cycle R point level return YES Optional
歡迎光臨 機械社區 (http://www.ytsybjq.com/)
Powered by Discuz! X3.5