2280320 CYLINDER GP-ANGLING Caterpillar parts
D6M, D6N
Rating:
Alternative (cross code) number:
CA2280320
228-0320
2280320
CA2280320
228-0320
2280320
Weight: 107 pounds 48 kg.
Information:
BORE DIAMETER
101.6
mm
CLOSED LENGTH
834
mm
PIN SIZE CAP END
44.45
mm
PIN SIZE ROD EYE
44.45
mm
ROD DIAMETER
50.8
mm
STROKE
472
TYPE
BOLTED HEAD
TRACK-TYPE TRACTOR,
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Information:
Introduction
The Air-Arc process is most frequently used to gouge-out defective welds in preparation for repair welding, although the process can also be used to prep a joint prior to welding. The process is also referred to as the Arcair process, referring to the Arcair brand name. The arc-air process has no Caterpillar specification and is not called out on any print.Process and Materials
The air-arc process uses a carbon-graphite electrode, usually copper-colored, that is gradually consumed by the arc. The arc melts the metal to be removed and compressed air is used to blow the molten metal off the part. An electrode holder is used to clamp the electrode and to direct the compressed air down the electrode.
Figure 30 - Electrode Holder
Figure 31 - Air and Power ConnectionsThe electrode holder ids connected to compressed air using a quick-disconnect fitting. The electrical current is furnished by clamping the air-arc connector in the jaws of a stick-weld cable.Although individual machines may have different switches that must be placed in proper position to enable air-arc gouging, air-arc is generally done with very few changes from the normal production welding processes.Amperage is the variable that is set by the operator, depending on the electrode size. In order to set the amperage, control must be removed from the wire feeder boxes and given to the power source. This is usually done with a local/remote output switch on the front of the power source that is switched to the LOCAL position. Once LOCAL control is selected, the amperage can be controlled using the rheostat output dial.A toggle switch is used to select the voltage parameters for the power source. This switch is put in the CC mode, setting up the power source for constant current. On power sources that do not have constant current capabilities, the mode switch, if present, is left in the normal position.The third and last switch to be changed is the process switch. This switch can be an unmarked switch on the front of the power source. When this switch is placed in the air-arc or stick position, the power source will immediately supply an open-circuit voltage capable of creating an arc.
Figure 32 - Lincoln DC600 power source and switches for air-arc.Unlike a stick electrode holder the air-arc holder has a rotating disk with air ports that direct air down the electrode, and a valve to turn the air on or off. The air ports are located behind the electrode to force the molten metal out in front of the electrode. This necessitates moving the disk or repositioning the electrode each time the direction of travel is changed.The electrode is always "hot" once the proper machine settings have been selected.To start the gouging process, the air valve is opened and the electrode is touched to the workpiece. The electrode is moved along the part to gouge a shallow channel in the part. Several passes may be required to complete the gouging.
Figure 33 - Proper position of air ports and electrode.
Figure 34
The Air-Arc process is most frequently used to gouge-out defective welds in preparation for repair welding, although the process can also be used to prep a joint prior to welding. The process is also referred to as the Arcair process, referring to the Arcair brand name. The arc-air process has no Caterpillar specification and is not called out on any print.Process and Materials
The air-arc process uses a carbon-graphite electrode, usually copper-colored, that is gradually consumed by the arc. The arc melts the metal to be removed and compressed air is used to blow the molten metal off the part. An electrode holder is used to clamp the electrode and to direct the compressed air down the electrode.
Figure 30 - Electrode Holder
Figure 31 - Air and Power ConnectionsThe electrode holder ids connected to compressed air using a quick-disconnect fitting. The electrical current is furnished by clamping the air-arc connector in the jaws of a stick-weld cable.Although individual machines may have different switches that must be placed in proper position to enable air-arc gouging, air-arc is generally done with very few changes from the normal production welding processes.Amperage is the variable that is set by the operator, depending on the electrode size. In order to set the amperage, control must be removed from the wire feeder boxes and given to the power source. This is usually done with a local/remote output switch on the front of the power source that is switched to the LOCAL position. Once LOCAL control is selected, the amperage can be controlled using the rheostat output dial.A toggle switch is used to select the voltage parameters for the power source. This switch is put in the CC mode, setting up the power source for constant current. On power sources that do not have constant current capabilities, the mode switch, if present, is left in the normal position.The third and last switch to be changed is the process switch. This switch can be an unmarked switch on the front of the power source. When this switch is placed in the air-arc or stick position, the power source will immediately supply an open-circuit voltage capable of creating an arc.
Figure 32 - Lincoln DC600 power source and switches for air-arc.Unlike a stick electrode holder the air-arc holder has a rotating disk with air ports that direct air down the electrode, and a valve to turn the air on or off. The air ports are located behind the electrode to force the molten metal out in front of the electrode. This necessitates moving the disk or repositioning the electrode each time the direction of travel is changed.The electrode is always "hot" once the proper machine settings have been selected.To start the gouging process, the air valve is opened and the electrode is touched to the workpiece. The electrode is moved along the part to gouge a shallow channel in the part. Several passes may be required to complete the gouging.
Figure 33 - Proper position of air ports and electrode.
Figure 34
Caterpillar SIS machinery equipment:
Caterpillar SIS
D6M & D6M LGP Track-Type Tractor 2RN00001-UP (MACHINE) POWERED BY 3116 Engine »
228-0320
CYLINDER GP-ANGLING
D6M TRACK-TYPE TRACTOR XL, LGP 3WN00001-UP (MACHINE) POWERED BY 3116 Engine »
228-0320
CYLINDER GP-ANGLING
D6N XL, FTC, LGP TRACK-TYPE TRACTOR ALH00001-UP (MACHINE) POWERED BY 3126B Engine »
228-0320
CYLINDER GP-ANGLING
D6N XL, D/S, LGP TRACK-TYPE TRACTOR AKM00001-UP (MACHINE) POWERED BY 3126B Engine »
228-0320
CYLINDER GP-ANGLING
D6N TRACK-TYPE TRACTOR XL Differential Steering CCK00001-UP (MACHINE) POWERED BY 3126B Engine »
228-0320
CYLINDER GP-ANGLING
D6N XL, FTC TRACK-TYPE TRACTOR CBJ00001-UP (MACHINE) POWERED BY 3126B Engine »
228-0320
CYLINDER GP-ANGLING
D6N TRACK-TYPE TRACTOR XL, LGP Differential Steering DJA00001-UP (MACHINE) POWERED BY C6.6 Engine »
228-0320
CYLINDER GP-ANGLING
D6N TRACK-TYPE TRACTOR /PS XL/ PS LGP/ CBF00001-UP (MACHINE) POWERED BY 3126B ENGINE »
228-0320
CYLINDER GROUP-ANGLE
D6N TRACK-TYPE TRACTOR PS DS XL/PS DS LGP CBL00001-UP (MACHINE) POWERED BY 3126B ENGINE »
228-0320
CYLINDER GROUP-ANGLE
Cat SIS web machinery list:
Parts cylinder Caterpillar catalog:
1407373
CYLINDER HEAD AS
120H, 120H ES, 120H NA, 135H, 135H NA, 30/30, 3116, 3126, 320B, 322B L, 322B LN, 322C, 325B L, 525B, 533, 535B, 539, 543, 550, 561M, 570, 574, 580, 613C II, 928G, 938F, 938G, 950F, 950F II, 950G, 953C...
120H, 120H ES, 120H NA, 135H, 135H NA, 30/30, 3116, 3126, 320B, 322B L, 322B LN, 322C, 325B L, 525B, 533, 535B, 539, 543, 550, 561M, 570, 574, 580, 613C II, 928G, 938F, 938G, 950F, 950F II, 950G, 953C...
2768115
CYLINDER HEAD AS
120M, 12M, 928HZ, 938H, 953D, 963D, AP-600D, AP-655D, C6.6, CP-56, CP-64, CS-56B, CS-64, CS-74, CS-74B, D6K LGP, D6N, M316D, M318D, M318D MH, M322D, M322D MH
120M, 12M, 928HZ, 938H, 953D, 963D, AP-600D, AP-655D, C6.6, CP-56, CP-64, CS-56B, CS-64, CS-74, CS-74B, D6K LGP, D6N, M316D, M318D, M318D MH, M322D, M322D MH
3217048
CYLINDER GP-ANGLING
D6M, D6N
D6M, D6N
1103269
CYLINDER GP-BULLDOZER LIFT
D5R LGP, D6M, D6N, D6N LGP
D5R LGP, D6M, D6N, D6N LGP
1080801
CYLINDER
D5R LGP, D6M, D6N, D6N LGP, D6N OEM
D5R LGP, D6M, D6N, D6N LGP, D6N OEM
1103787
CYLINDER AS
12H, 12H NA, 140H, 140H NA, D6M, D6N
12H, 12H NA, 140H, 140H NA, D6M, D6N
1103270
CYLINDER AS
D5R LGP, D6M, D6N, D6N LGP
D5R LGP, D6M, D6N, D6N LGP
3217046
CYLINDER AS-HYDRAULIC
D6M, D6N
D6M, D6N
1776915
CYLINDER
906H, 906H2, 907H, 907H2, 908H, 908H2, CB-534C, CB-534D, CB-564D, CB-634C, CP-56, CP-573E, CP-64, CP-663E, CP-76, CS-531D, CS-533D, CS-56, CS-563D, CS-563E, CS-573D, CS-583D, CS-583E, CS-64, CS-663E, ...
906H, 906H2, 907H, 907H2, 908H, 908H2, CB-534C, CB-534D, CB-564D, CB-634C, CP-56, CP-573E, CP-64, CP-663E, CP-76, CS-531D, CS-533D, CS-56, CS-563D, CS-563E, CS-573D, CS-583D, CS-583E, CS-64, CS-663E, ...
3793508
CYLINDER GP-BULLDOZER LIFT
D5R LGP, D6N, D6N LGP
D5R LGP, D6N, D6N LGP
2030820
CYLINDER GP-ANGLING
D6R II
D6R II
2W5746
CYLINDER HEAD GP
3412, 651E, 657E, 772B, 773B, 992C, D9L
3412, 651E, 657E, 772B, 773B, 992C, D9L
3217048
CYLINDER GP-ANGLING
D6M, D6N
D6M, D6N
1251493
CYLINDER & SEAL GP-STICK
307, 307B
307, 307B
8W3259
CYLINDER & MTG GP-WHEEL LEAN
16G, 16H, 16H NA
16G, 16H, 16H NA
2331519
CYLINDER & LINES GP-LIFT
D6R III, D6T
D6R III, D6T
0875552
CYLINDER & SEAL GP
322, 322 LN, 325, 325 L, 325 LN, 330, 330 FM L, 330 L
322, 322 LN, 325, 325 L, 325 LN, 330, 330 FM L, 330 L