7C2701 MODULE-BOOST Caterpillar parts
3114, 3116, 3208, 3304, 3304B, 3306, 3306B, 3406, 3406B, 3406C, 3408, 3408C, 3412, 3412C, G3306, G3406, G3408, G3408B, G3412, SR4
Rating:
Alternative (cross code) number:
CA7C2701
7C-2701
7C2701
CA7C2701
7C-2701
7C2701
Weight: 3 pounds 1 kg.
GAS ENGINE, MARINE ENGINE,
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This information for suppliers only!
2024-12-20
2023-03-05
2022-09-04
2020-08-09
Compatible equipment models: 7C2701:
Information:
Repairing Cracks and Defective Welds
Cracks often develop in components that are used for unusually severe applications or are approaching the limit of their service life. Defective welds, on the other hand, are usually caused by careless welders who fail to use good welding techniques. The most common defects in welds are: underbead cracks, slag inclusions, porosity (gas holes and pockets), cold lap, undercut and slugged welds. The procedures for repairing cracks and replacing defective welds are similar.
Figure 47 - Underbead cracks are caused by hydrogen gas being absorbed by the seal.Underbead cracks occur between the weld deposit and the parent metal or in the heat affected zone under the weld deposit in carbon steels (Figure 47). The cracks are usually caused by hydrogen gas being absorbed by the parent metal and being released as the metal cools. The gas builds up pressure in the minute voids of the parent metal and forces the metal to crack. Underbead cracking is most common with steels having a carbon content in excess of 0.30%, but it often occurs when low carbon steels are welded in ambient temperatures below 32° F without preheating to remove moisture.Underbead cracks are not visible from the surface of the joint and can be detected only by X-ray or magnetic particle inspection. Using hydrogen electrodes that have been stored properly to keep them dry will eliminate most underbead cracking.Slag inclusion refers to entrapment of slag within the weld metal (Figure 48). The inclusions arise mainly from failure to clean the weld deposit before the next pass is made. Too slow a travel speed also causes slag inclusions, because the volume of slag becomes too large to be floated out of the puddle of molten metal.
Figure 48 - Slag inclusions arise from failure to clean the weld deposit.Porosity usually is caused by the oxidation of foreign matter such as grease or paint that has been left on the joint (Figure 49). The foreign matter is vaporized by the molten metal and forms gas pockets in the weld deposit. Porosity can also be caused by excessive moisture in any type of electrode coating or by excessive magnetic arc blow. Careful cleaning of joints prior to welding, using dry electrodes and controlling arc blow will prevent porosity.
Figure 49 - Porosity is caused by oxidation of foreign matter on the joint.Cold lap is caused by improper fusion of the weld metal to the parent metal, arising from insufficient heating of the joint members (Figure 50). Instead of bonding to the parent metal, the weld deposit lies on top of it, giving rise to a definite crack or void. Cold lap can be prevented by proper manipulation of the electrode to bring all parts of the joint up to a molten state. A slightly longer arc or slightly higher welding current will also help to combat the problem of cold lap by increasing the amount of heat liberated at the joint.
Figure 50 - Cold lap is improper fusion of parent metal and
Cracks often develop in components that are used for unusually severe applications or are approaching the limit of their service life. Defective welds, on the other hand, are usually caused by careless welders who fail to use good welding techniques. The most common defects in welds are: underbead cracks, slag inclusions, porosity (gas holes and pockets), cold lap, undercut and slugged welds. The procedures for repairing cracks and replacing defective welds are similar.
Figure 47 - Underbead cracks are caused by hydrogen gas being absorbed by the seal.Underbead cracks occur between the weld deposit and the parent metal or in the heat affected zone under the weld deposit in carbon steels (Figure 47). The cracks are usually caused by hydrogen gas being absorbed by the parent metal and being released as the metal cools. The gas builds up pressure in the minute voids of the parent metal and forces the metal to crack. Underbead cracking is most common with steels having a carbon content in excess of 0.30%, but it often occurs when low carbon steels are welded in ambient temperatures below 32° F without preheating to remove moisture.Underbead cracks are not visible from the surface of the joint and can be detected only by X-ray or magnetic particle inspection. Using hydrogen electrodes that have been stored properly to keep them dry will eliminate most underbead cracking.Slag inclusion refers to entrapment of slag within the weld metal (Figure 48). The inclusions arise mainly from failure to clean the weld deposit before the next pass is made. Too slow a travel speed also causes slag inclusions, because the volume of slag becomes too large to be floated out of the puddle of molten metal.
Figure 48 - Slag inclusions arise from failure to clean the weld deposit.Porosity usually is caused by the oxidation of foreign matter such as grease or paint that has been left on the joint (Figure 49). The foreign matter is vaporized by the molten metal and forms gas pockets in the weld deposit. Porosity can also be caused by excessive moisture in any type of electrode coating or by excessive magnetic arc blow. Careful cleaning of joints prior to welding, using dry electrodes and controlling arc blow will prevent porosity.
Figure 49 - Porosity is caused by oxidation of foreign matter on the joint.Cold lap is caused by improper fusion of the weld metal to the parent metal, arising from insufficient heating of the joint members (Figure 50). Instead of bonding to the parent metal, the weld deposit lies on top of it, giving rise to a definite crack or void. Cold lap can be prevented by proper manipulation of the electrode to bring all parts of the joint up to a molten state. A slightly longer arc or slightly higher welding current will also help to combat the problem of cold lap by increasing the amount of heat liberated at the joint.
Figure 50 - Cold lap is improper fusion of parent metal and
Cat SIS web machinery list:
Parts module Caterpillar catalog:
9X0203
MODULE GP-RELAY DRIVER
3208, 3304, 3306, 3306B, 3406, 3406B, 3406C, 3408, 3408C, 3412, 3412C, 3456, 3508, 3508B, 3512, 3512B, 3516, 3516B, C18, C32, G3406, G3408, G3408B, G3412, G3508, G3512, G3516, G3516B, G3520C, G3520E, ...
3208, 3304, 3306, 3306B, 3406, 3406B, 3406C, 3408, 3408C, 3412, 3412C, 3456, 3508, 3508B, 3512, 3512B, 3516, 3516B, C18, C32, G3406, G3408, G3408B, G3412, G3508, G3512, G3516, G3516B, G3520C, G3520E, ...
2748068
MODULE GP-INTERFACE
120K, 120K 2, 12K, 140K, 140K 2, 160K, 3126B, 3176C, 3196, 3406B, 3406C, 3406E, 3408, 3412, 3412D, 3412E, 3508, 3508B, 3512, 3512B, 3512C, 3516, 3516B, 3516C, AP-600D, AP-655D, AP555E, AS4251C, C-12, ...
120K, 120K 2, 12K, 140K, 140K 2, 160K, 3126B, 3176C, 3196, 3406B, 3406C, 3406E, 3408, 3412, 3412D, 3412E, 3508, 3508B, 3512, 3512B, 3512C, 3516, 3516B, 3516C, AP-600D, AP-655D, AP555E, AS4251C, C-12, ...
5N2214
MODULE AS-CONTROL
3304, 3304B, 3306, 3406, 3406B, 3412, 3412C, G3306, G3412
3304, 3304B, 3306, 3406, 3406B, 3412, 3412C, G3306, G3412
2790515
MODULE GP-ALARM
3406C, 3412C, 3508, 3508B, 3512, 3512B, 3512C, 3516, 3516B, 3516C, C1.5, C13 XQ350, C15, C175-16, C175-20, C18, C2.2, C27, C3.3, C32, C4.4, C6.6, C9, G3406, G3408, G3408C, G3412, G3508, G3512, G3516, ...
3406C, 3412C, 3508, 3508B, 3512, 3512B, 3512C, 3516, 3516B, 3516C, C1.5, C13 XQ350, C15, C175-16, C175-20, C18, C2.2, C27, C3.3, C32, C4.4, C6.6, C9, G3406, G3408, G3408C, G3412, G3508, G3512, G3516, ...
5N5503
MODULE-TIMER
3408, 3412, 3508, 3512, 3516
3408, 3412, 3508, 3512, 3516
5N5497
MODULE-TIMER
3408, 3412, 3508, 3512, 3516
3408, 3412, 3508, 3512, 3516
9Y8009
MODULE
3208, 3306, 3408, 3412, 3516
3208, 3306, 3408, 3412, 3516
9Y8010
MODULE
3208, 3306, 3408, 3412, 3516
3208, 3306, 3408, 3412, 3516
9Y8014
MODULE
3208, 3306, 3408, 3412, 3516
3208, 3306, 3408, 3412, 3516
9Y8016
MODULE
3208, 3306, 3408, 3412, 3516
3208, 3306, 3408, 3412, 3516
4W0185
MODULE AS
3508, 3512, 3516, G3512, G3516, SR4
3508, 3512, 3516, G3512, G3516, SR4
7W4493
MODULE
G3408
G3408
1315374
MODULE AS
3412, 3508, 3508B, 3508C, 3512, 3512B, 3512C, 3516, 3516B, 3516C, 3606, 3608, 3616, G3516, G3516B, G3612, PM3412, PM3508, PM3512, PM3516, PMG3516, TH48-E80
3412, 3508, 3508B, 3508C, 3512, 3512B, 3512C, 3516, 3516B, 3516C, 3606, 3608, 3616, G3516, G3516B, G3612, PM3412, PM3508, PM3512, PM3516, PMG3516, TH48-E80
2856670
MODULE-EXHAUST TEMPERATURE
3508B, 3512B, 3512C, 3516B, 3516C, 3606, 3608, 3612, 3616, C280-12, C280-16, C280-6, C280-8, G3508, G3512, G3516, G3606, G3608, G3612, G3616
3508B, 3512B, 3512C, 3516B, 3516C, 3606, 3608, 3612, 3616, C280-12, C280-16, C280-6, C280-8, G3508, G3512, G3516, G3606, G3608, G3612, G3616
2521731
MODULE-DIODE
3208, 3304, 3304B, 3306B, 3406C, 3408, 3408C, 3412, 3412C, 3456, 3508, 3508B, 3512, 3512B, 3512C, 3516, 3516B, 3516C, C15, C175-16, C175-20, C18, C27, C280-12, C280-16, C280-6, C280-8, C32, G3304, G33...
3208, 3304, 3304B, 3306B, 3406C, 3408, 3408C, 3412, 3412C, 3456, 3508, 3508B, 3512, 3512B, 3512C, 3516, 3516B, 3516C, C15, C175-16, C175-20, C18, C27, C280-12, C280-16, C280-6, C280-8, C32, G3304, G33...
3429070
MODULE AS
120M 2, 12M 2, 12M 3, 12M 3 AWD, 140M 2, 140M 3, 140M 3 AWD, 160M 2, 160M 3, 160M 3 AWD, 2384C, 2484C, 2570C, 2670C, 2864C, 312E, 312E L, 314E CR, 314E LCR, 316E L, 318E L, 320E, 320E L, 320E LN, 320E...
120M 2, 12M 2, 12M 3, 12M 3 AWD, 140M 2, 140M 3, 140M 3 AWD, 160M 2, 160M 3, 160M 3 AWD, 2384C, 2484C, 2570C, 2670C, 2864C, 312E, 312E L, 314E CR, 314E LCR, 316E L, 318E L, 320E, 320E L, 320E LN, 320E...
2384635
MODULE-CONTROL
3054, 3056
3054, 3056
2130014
MODULE-CONTROL
3054, 3056, C4.4
3054, 3056, C4.4
2069503
MODULE-CONTROL
3054, 3056, C4.4
3054, 3056, C4.4
3574880
MODULE-EXHAUST TEMPERATURE
3508, 3508B, 3508C, 3512, 3512B, 3512C, 3516, 3516B, 3516C, G3508, G3508B, G3512, G3512B, G3516, G3516B, G3520B
3508, 3508B, 3508C, 3512, 3512B, 3512C, 3516, 3516B, 3516C, G3508, G3508B, G3512, G3512B, G3516, G3516B, G3520B
2361158
MODULE GP-ALARM
3406C, 3412C, 3508, 3508B, 3508C, 3512, 3512B, 3512C, 3516, 3516B, 3516C, C1.5, C15, C175-16, C18, C2.2, C27, C3.3, C32, C4.4, C9, G3508, G3512, PM3516, PP3516
3406C, 3412C, 3508, 3508B, 3508C, 3512, 3512B, 3512C, 3516, 3516B, 3516C, C1.5, C15, C175-16, C18, C2.2, C27, C3.3, C32, C4.4, C9, G3508, G3512, PM3516, PP3516
5N2214
MODULE AS-CONTROL
3304, 3304B, 3306, 3406, 3406B, 3412, 3412C, G3306, G3412
3304, 3304B, 3306, 3406, 3406B, 3412, 3412C, G3306, G3412