ESAB Cutting Systems
CROSSBOW
Page 88
4.15.5
【
F6
】
REVERSE (Backward On Path)
Pressing
【
F6
】
when paused will start the machine moving backwards along the programmed path, at
the Forward/Reverse Speed set in the Setup Menu, Speed parameters. Motion will continue along path
until
【
STOP
】
is pressed, the machine reaches a pierce point, or the machine reaches a G00 (Program
Stop Code) in the program. The
【
F6
】
key may be pressed again to continue backward on path at the
reduced Feed Rate.
4.15.6
【
F7
】
FORWARD (Forward On Path)
Pressing
【
F7
】
when paused will start the machine moving forwards along the programmed path, at
the Forward/Reverse Speed set in the Setup Menu, Speed parameters. Motion will continue along path
until
【
STOP
】
is pressed, the machine reaches a pierce point, or the machine reaches a G00 (Program
Stop Code) in the program. The
【
F7
】
key may be pressed again to continue forward on path at the
reduced Feed Rate.
4.15.7 Re-Start After Jogging
There are a number of reasons why the torch might need to be jogged to a different location during
Program Pause, such as:
1) Lost cut requiring cleaning or changing of the nozzle;
2) Need to re-pierce in the scrap or on the plate edge instead of on the programmed path;
3) Need to re-locate the program during a dry-run, so that it will fit on the plate.
When the machine has been jogged during Program Pause, and the program needs to be re-started,
there are options available to handle each of the above situations.
To re-start the program after jogging, press the
【
START
】
button. The following dialog box will
appear:
Figure 64: Re-Start After Jogging Options
Use the Up
【
↑
】
and Down
【
↓
】
keys to highlight the desired option. If flame cutting, preheat the plate
first. When ready, press the
【
START
】
key or the
【
ENTER
】
key to select the desired operation.
The three options are explained below:
1) RETURN TO PATH
Return the cutting torch to the point where it left the programmed path at rapid positioning speed, and
then pause. This allows the operator to send the machine quickly back to the programmed path, and
then manually re-start the process before continuing on path. After manually starting the cutting
Summary of Contents for CROSSBOW
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Page 192: ...ESAB Cutting Systems CROSSBOW Page 192 Shape 2 CIRCLE RADIUS...
Page 193: ...ESAB Cutting Systems CROSSBOW Page 193 Shape 3 L BRACKET WIDTH HEIGHT TOP W BOTTOM W...
Page 194: ...ESAB Cutting Systems CROSSBOW Page 194 Shape 4 PIE SHAPE ANGLE RADIUS...
Page 195: ...ESAB Cutting Systems CROSSBOW Page 195 Shape 5 TRIANGLE WIDTH HEIGHT CURVED R...
Page 196: ...ESAB Cutting Systems CROSSBOW Page 196 Shape 6 CURVE BKT INNER R BOTTOM W OUTER R...
Page 197: ...ESAB Cutting Systems CROSSBOW Page 197 Shape 7 CHAMFER WIDTH HEIGHT LFTCHAMF BOTTOM W RGTCHAMF...
Page 198: ...ESAB Cutting Systems CROSSBOW Page 198 Shape 8 OVAL INNER R BOTTOM W OUTER R...
Page 199: ...ESAB Cutting Systems CROSSBOW Page 199 Shape 9 RING INNER R OUTER R...
Page 202: ...ESAB Cutting Systems CROSSBOW Page 202 Shape 12 CUTOUT WIDTH HEIGHT DEPTH RGT SIDE LFT SIDE...
Page 203: ...ESAB Cutting Systems CROSSBOW Page 203 Shape 13 LINE CUT WIDTH HEIGHT...
Page 204: ...ESAB Cutting Systems CROSSBOW Page 204 Shape 14 ARC SECTOR ANGLE INNER R OUTER R...
Page 207: ...ESAB Cutting Systems CROSSBOW Page 207 Shape 17 U SHAPE OUTER R INNER R LEG LENGTH...
Page 209: ...ESAB Cutting Systems CROSSBOW Page 209 Shape 19 TANK BED WIDTH HEIGHT RADIUS BOTTOM W...
Page 210: ...ESAB Cutting Systems CROSSBOW Page 210 Shape 20 4 HOLE FLANGE INNER R OUTER R HOLE AX HOLE R...
Page 211: ...ESAB Cutting Systems CROSSBOW Page 211 Shape 21 6 HOLE FLANGE INNER R OUTER R HOLE AX HOLE R...
Page 214: ...ESAB Cutting Systems CROSSBOW Page 214 Shape 24 WES TEST WIDTH...
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Page 221: ...ESAB Cutting Systems CROSSBOW Page 221 Appendix 6 Wiring Diagrams...
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