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Thursday, December 25, 2008

data input keys

Data Input Keys
Note tot data input keys
Each data input key runs several functions (number,address character (s)).Repeated pressing of the key switches to the next function automatically








Function Keys
Note for function keys
At the PC keyboard the function keys can be displayed as softkeys with the key F I2
.

Sunday, December 14, 2008

CONTROL KEYBOARD,DEGITIZER LAYOUT

RESET .................... Cancel an alarm, reset the CNC (e.g. interrupt a program), etc.
CURSOR ................ Search function, line up/down, program call-up

PAGE ...................... Page up/down
ALTER .................... Alter word (replace)

INSERT ................... Insert word, create new program
DELETE .................. Delete program, block, word
/,# EOB ................... Skip block, End of Block
CAN ......................... Delete program, block, word
INPUT ..................... Word input, data input
OUTP START ........ Start data output

POS ......................... Indicates the current position
PRGRM .................. Edit and display of the program, input of the MDI data; display of command value in automatic mode
MENU OFSET ....... Setting and display of offset value, tool and wear data, varia‑ bles
DGNOS PARAM ... Setting and display of parameter and display of diagnostic data
OPR ALARM .......... Alarm and message display
AUX GRAPH .......... Graphic display

Saturday, November 29, 2008

PANEL SCREEN OF CNC MACHINE

THE SCREEN

1, Display of feed and spindle speed correction
2, Display of speed and actual tool
3, Display of operation mode
4, Display of softkey functions
5, Entry key
6, Return to main menu (Fl on PC-keyboard)
7, Soft keys(keys;F3 to F7 on PC-keyboard)
8, Extension of menu line (key F11 on PC-keyboard)

THE MAIN OPERATION MOD

INFORMATION



AUTOMATIC:

Used to work off a part programme. The control work off
the programmed blocks one after the other and includes 1the programmed corrction vaiue(tool,zero point shift)


JOG:

Conventional work with the machines by means of the direction keys and the corresponding function keys, respectively;e.g. spindle on/off, swivel tool turret, etc.


MDI-AUTOMATIC:

In this operating mode programme directions can be loaded into the intermediate memory of the control(manual Data Input) and worked off.The programme blocks are deleted
automatically after work-off.Example of application; check of zero point shift, positioning of tools for a-sample cut.

REFPOINT

Ia used for the zero adjustment of the system of units of' the machine. By approaching the reference point the control and the machine are "synchronized"
The reference point has to' be approached;
- After switch-on/a power failure of the machine
- after a collision and and an overload of the feed motor, respectively.

INC FEED 1 .... INC FEED 10 000

In this operating mode the slides can be traversed by means of the direction keys by the path increment selected (unit =um ).
Example of application; positioning of tools during measurement, scratching on raw material.

Friday, November 28, 2008

LEARNING OF G COD

Survey of commands G- functions

SCOPE OF COMMANDS





GOO.......... Rapid traverse
G01.......... Linear interpolation in working feed

G02.......... Circular interpolation, Clock wise
G03.......... Circular interpolation, Counter ciock wise
G04.......... Dwell, active block by block
G20......... Roughing cycle, Single
G21......... Threading cycle,Single

G24......... Facing cycle, Single
G28.......... Approach reference point
G33.......... Thread cutting
G40......... Deselction cutter radius compensation
'G41.......... Cutter radius compensation left
G42......... Cutter radius compensation right
G70.......... Dimension in inch
G71.......... Dimension in millimeter
G72......... Finishing cycle
G?3.......... Longitudinal turning cycle
G74......... Facing cycle
G75......... Patternlrepetition
G76......... Deep hole drill/face grooving cycle
G77......... Grooving cycleG78 Thread cutting cycle
G80........... Deselection drilling cycle
G83........... Drilling cycle
G84........... Tapping cycle
G85........... Drilling cycle with high excavation speed
G90.......... Absolute value programming
G91.......... Incremental value programming
G92........... Set coordinate zero point/ speed limitation
G94........... Feed in mm/min
G95 .......... Feed in mm/rev
G96........... Constant cutting speed
G97........... Constant speed
G98.......... Return to start plane
G99......... oReturn to withdrawal plane

SCOPE OF COMMANDS

SCOPE OF COMMANDS
Survey of commands M - functions
MOO.......... Programmed stop unconditional
MO1.......... Programmed stop conditional
MO2........... Main programme end, no new start of programme
M03............ Spindle ON Clockwise
M04............. Spindle ON counter clockwise
M05............. Spindle OFF
M20............. Tailstock sleeve backward
M21............. Tailstock sleeve forward
M25............. Release clamping divice
M26............. Close clamping divice
M30............. Main program end with new start of programe
M71.............. Blow-off ON ( Cleaning clamping divice)
M72.............. Blow-OFF
M98.............. Subroutin call up
M99.............. Subroutin end

Tuesday, November 11, 2008

CNC LATHE MACHINE


Fanuc


INFORMATION SHEET


CNC LATHE MACHINE



1-Tool system
2-Spindle
3-Tailstcck
4-Coolant device
5-Monitor
6-Control Keyboard
7-Machine Control Pane)
8-Personal Computer

MACHINE DESIGN

DEFINITION:
The subject Machine Design is the creation of new and better machines and improving the
existing ones. A new and better machine si one which is more economical in the over all cost of production and operation. The process of design is a long and time consuming one. From the stydy of existing ideas. a new idea has to be conceived. The idea is then studied keeping in mind its commercial success and given shape and from in the from of drawings. In the preparation of these drawing care must be taken of the availability of resources in money. in men and in meterial required for the successful completion of the new idea into an actual reality. In designing a machine component. it is necessary to have a good knowledge of many subjects such as Mathematics, Engineering Mechanics, Strength of Material, Theory of Machines, Workshop processes and Engineering Drawing.