2W5746 CYLINDER HEAD GP Caterpillar parts
3412, 651E, 657E, 772B, 773B, 992C, D9L
Rating:
Alternative (cross code) number:
CA2W5746
2W-5746
2W5746
CA2W5746
2W-5746
2W5746
Weight: 131 pounds 59 kg.
GEN SET ENGINE, WHEEL TRACTOR,
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Replacement Parts for Snow Removal UTV ATV Cart Machinery for 2W5746 3412A Loaded Cylinder HEA for Caterpillar Models Model-DFC589-Gl39458
Generic Versatile replacement parts ideal for maintaining lawn and garden, snow removal, UTV, ATV, and golf cart machinery || Constructed with durable, impact-resistant materials for high performance in demanding environments || Precision-fit design ensures easy installation and optimal compatibility with multiple equipment types || Helps extend equipment life and improve performance, keeping your machinery ready for action || Works with a wide range of brands, making it a practical choice for various outdoor machinery needs
Generic Versatile replacement parts ideal for maintaining lawn and garden, snow removal, UTV, ATV, and golf cart machinery || Constructed with durable, impact-resistant materials for high performance in demanding environments || Precision-fit design ensures easy installation and optimal compatibility with multiple equipment types || Helps extend equipment life and improve performance, keeping your machinery ready for action || Works with a wide range of brands, making it a practical choice for various outdoor machinery needs
$2,412.99
08 Feb 2022
US: Florida-Parts-Z
2W5746-3412A Loaded Cylinder HE for Caterpillar (CAT)
FIRST PRICE PARTS
FIRST PRICE PARTS
Compatible equipment models: 2W5746:
Information:
Principle Features
The benefits of FCAW are achieved by combining three general features.1. The productivity of continuos wire welding.2. The metallurgical benefits that can be derived from flux.3. A slag that supports and shapes the weld bead.FCAW combines the characteristics of Shielded Metal Arc Welding (SMAW), Gas Metal Arc Welding (GMAW), and Submerged Arc Welding (SAW).Advantages of FCAW
Flux Cored Arc Welding has many advantages over the manual SMAW process and provides certain advantages over the SAW and GMAW processes. In many applications, the FCAW process provides high quality weld metal at lower cost with less effort on the part of the welder than SMAW. These advantages can be listed as follows.* High quality weld metal deposit.* Excellent weld appearance and smooth, uniform welds.* Excellent contour of horizontal fillet welds. * Many welds weldable over a wide thickness range.* High operating factor, easily mechanized.* High deposition rate, high current density.* Relatively high electrode deposit efficiency.* Economical engineering joint design.* Visible arc, easy to use.* Less precleaning required than GMAW.* Up to 4 times greater deposition rate than SMAW.* Higher tolerance for contaminants that may cause weld cracking.* Resistant to underbead cracking.Limitations of FCAW
* FCAW is presently limited to welding ferrous metals and nickel based alloys.* The process produces a slag covering which must be removed.* FCAW electrode wire is more expensive on a weight basis than solid electrode wires, except for some high alloys steels.* The equipment is more expensive and complex than that required for SMAW; however, increased productivity usually compensates for this.* The wire feeder and power source must be fairly close to the point of welding.* For gas shielded version, the external gas shield may be adversely affected by breezes and drafts.* More smoke and fumes are generated (compared to GMAW and SAW).Fundamentals of the process
Definition
The Flux-Cored Arc Welding process is a process in which coalescence is produced by heating with an arc between a continuous filler metal (consumable) electrode and the work. Shielding is obtained from a flux contained within the electrode. Additional shielding may or may not be obtained from an externally supplied gas or gas mixture.Slang names
1. FabCo - Fabshield-Inner Shield - Dual ShieldProcess Principles
1. Heat source - an arc between a continuous filler metal electrode and the weld spot.2. Shielding - is obtained from flux contained within the tubular electrode and with or without additional shielding from an externally supplied gas.3. Filler metal - is obtained from a continuously-feeding tubular electrode.4. Flux - will provide deoxidizers, ionizers, purifying agents, and in some cases alloying elements.
Figure 21Methods of Application
1. Manual - not applicable.2. Semiautomatic - most popular method of application.3. Machine - widely used.4. Automatic - widely used.Metals Weldable
Thickness Range
Figure 22Position Capabilities
* Grooves - all positions depending on size and type.* Fillets - all positions depending on size and type.* Limitations - would depend on skill of the operator.Electrical Requirements
Welding Circuit
Figure 23Welding Current Types
* D.C.E.N. or D.C.E.P. depending on type of wire.Power Source Types and Characteristics
* Constant voltage type with a flat volt amp
The benefits of FCAW are achieved by combining three general features.1. The productivity of continuos wire welding.2. The metallurgical benefits that can be derived from flux.3. A slag that supports and shapes the weld bead.FCAW combines the characteristics of Shielded Metal Arc Welding (SMAW), Gas Metal Arc Welding (GMAW), and Submerged Arc Welding (SAW).Advantages of FCAW
Flux Cored Arc Welding has many advantages over the manual SMAW process and provides certain advantages over the SAW and GMAW processes. In many applications, the FCAW process provides high quality weld metal at lower cost with less effort on the part of the welder than SMAW. These advantages can be listed as follows.* High quality weld metal deposit.* Excellent weld appearance and smooth, uniform welds.* Excellent contour of horizontal fillet welds. * Many welds weldable over a wide thickness range.* High operating factor, easily mechanized.* High deposition rate, high current density.* Relatively high electrode deposit efficiency.* Economical engineering joint design.* Visible arc, easy to use.* Less precleaning required than GMAW.* Up to 4 times greater deposition rate than SMAW.* Higher tolerance for contaminants that may cause weld cracking.* Resistant to underbead cracking.Limitations of FCAW
* FCAW is presently limited to welding ferrous metals and nickel based alloys.* The process produces a slag covering which must be removed.* FCAW electrode wire is more expensive on a weight basis than solid electrode wires, except for some high alloys steels.* The equipment is more expensive and complex than that required for SMAW; however, increased productivity usually compensates for this.* The wire feeder and power source must be fairly close to the point of welding.* For gas shielded version, the external gas shield may be adversely affected by breezes and drafts.* More smoke and fumes are generated (compared to GMAW and SAW).Fundamentals of the process
Definition
The Flux-Cored Arc Welding process is a process in which coalescence is produced by heating with an arc between a continuous filler metal (consumable) electrode and the work. Shielding is obtained from a flux contained within the electrode. Additional shielding may or may not be obtained from an externally supplied gas or gas mixture.Slang names
1. FabCo - Fabshield-Inner Shield - Dual ShieldProcess Principles
1. Heat source - an arc between a continuous filler metal electrode and the weld spot.2. Shielding - is obtained from flux contained within the tubular electrode and with or without additional shielding from an externally supplied gas.3. Filler metal - is obtained from a continuously-feeding tubular electrode.4. Flux - will provide deoxidizers, ionizers, purifying agents, and in some cases alloying elements.
Figure 21Methods of Application
1. Manual - not applicable.2. Semiautomatic - most popular method of application.3. Machine - widely used.4. Automatic - widely used.Metals Weldable
Thickness Range
Figure 22Position Capabilities
* Grooves - all positions depending on size and type.* Fillets - all positions depending on size and type.* Limitations - would depend on skill of the operator.Electrical Requirements
Welding Circuit
Figure 23Welding Current Types
* D.C.E.N. or D.C.E.P. depending on type of wire.Power Source Types and Characteristics
* Constant voltage type with a flat volt amp
Caterpillar SIS machinery equipment:
Caterpillar SIS
3412B Marine Engine 60M00001-05160 »
2W-5746
CYLINDER HEAD GP
3412 INDUSTRIAL ENGINE 38S00001-13235 »
2W-5746
CYLINDER HEAD GP
773B TRUCK 63W00001-01220 (MACHINE) POWERED BY 3412 ENGINE »
2W-5746
CYLINDER HEAD GP
772B TRACTOR 64W00001-00167 (MACHINE) POWERED BY 3412 ENGINE »
2W-5746
CYLINDER HEAD GP
D9L TRACTOR 14Y00001-UP (MACHINE) POWERED BY 3412 ENGINE »
2W-5746
CYLINDER HEAD GP
992C Wheel Loader 49Z00001-UP (MACHINE) POWERED BY 3412 Engine »
2W-5746
CYLINDER HEAD GP
3412 ENGINE GENERATOR SET 81Z00001-04999 »
2W-5746
CYLINDER HEAD GP
657E Tractor PS PP 90Z00001-UP (MACHINE) POWERED BY 3412C Engine »
2W-5746
CYLINDER HEAD GP
651E Wheel Tractor-Scraper 89Z00001-UP (MACHINE) POWERED BY 3412 Engine »
2W-5746
CYLINDER HEAD GP
Caterpillar parts catalog:
Parts cylinder Caterpillar catalog:
8J8458
CYLINDER GP-BAIL
627B, 637D, 657B, 657E
627B, 637D, 657B, 657E
2635055
CYLINDER HEAD GP
24M, 3406E, 365C, 365C L, 365C L MH, 374D L, 374F L, 385C, 385C FS, 385C L, 385C L MH, 390D, 390D L, 390F L, 583T, 587T, 621B, 621G, 623G, 627F, 627G, 631D, 631E, 631G, 633E II, 637D, 637E, 637G, 651B...
24M, 3406E, 365C, 365C L, 365C L MH, 374D L, 374F L, 385C, 385C FS, 385C L, 385C L MH, 390D, 390D L, 390F L, 583T, 587T, 621B, 621G, 623G, 627F, 627G, 631D, 631E, 631G, 633E II, 637D, 637E, 637G, 651B...
7N0848
CYLINDER HEAD AS
3412, 651E, 657E, 772B, 773B, 992C, D9L
3412, 651E, 657E, 772B, 773B, 992C, D9L
7W2242
CYLINDER HEAD GP
3412, 3412C, 651E, 657E, 772B, 773B, 775B, 990, 992C, 992D, D10N, D9L, PR-1000, PR-750B
3412, 3412C, 651E, 657E, 772B, 773B, 775B, 990, 992C, 992D, D10N, D9L, PR-1000, PR-750B
1430041
CYLINDER HEAD AS
3408, 3408B, 3408C, 3412, 589, 631D, 631E, 631G, 633E II, 637E, 637G, 657E, 769C, 769D, 771C, 771D, 834B, 836, 988B, 988F, 988F II, D8L, D9N, D9R, PM-565, PM-565B, PR-450C
3408, 3408B, 3408C, 3412, 589, 631D, 631E, 631G, 633E II, 637E, 637G, 657E, 769C, 769D, 771C, 771D, 834B, 836, 988B, 988F, 988F II, D8L, D9N, D9R, PM-565, PM-565B, PR-450C
7W2225
CYLINDER HEAD AS
3408, 3408B, 3408C, 3408E, 3412, 589, 631D, 631E, 633D, 633E II, 637D, 637E, 639D, 657E, 768C, 769C, 769D, 771C, 771D, 834B, 836, 988B, 988F, 988F II, D8L, D9N, D9R, PM-565, PM-565B, PR-450, PR-450C
3408, 3408B, 3408C, 3408E, 3412, 589, 631D, 631E, 633D, 633E II, 637D, 637E, 639D, 657E, 768C, 769C, 769D, 771C, 771D, 834B, 836, 988B, 988F, 988F II, D8L, D9N, D9R, PM-565, PM-565B, PR-450, PR-450C
6N7537
CYLINDER
3412, 772, 777, D348, D379B, G379, G399
3412, 772, 777, D348, D379B, G379, G399
5N8383
CYLINDER
3412, 3412C, 3412D, 3412E, 3508, 3508B, 3508C, 3512, 3512B, 3512C, 3516, 3516B, 3516C, 3606, 3608, 3612, 3616, 3618, 5230, 5230B, 776C, 776D, 777D, 784B, 784C, 785, 785B, 785C, 785D, 789B, 789C, 793B,...
3412, 3412C, 3412D, 3412E, 3508, 3508B, 3508C, 3512, 3512B, 3512C, 3516, 3516B, 3516C, 3606, 3608, 3612, 3616, 3618, 5230, 5230B, 776C, 776D, 777D, 784B, 784C, 785, 785B, 785C, 785D, 789B, 789C, 793B,...
7G2425
CYLINDER
589, D10N, D10R, D10T, D9L
589, D10N, D10R, D10T, D9L
7T6193
CYLINDER AS
589, D10N, D10R, D10T, D10T2, D9L
589, D10N, D10R, D10T, D10T2, D9L
6G3641
CYLINDER GP-SLAVE
621F, 623E, 623F, 627F, 627G, 637E, 637G, 768C, 769C, 771C, 772B, 773B, 775B, 777
621F, 623E, 623F, 627F, 627G, 637E, 637G, 768C, 769C, 771C, 772B, 773B, 775B, 777
7T6192
CYLINDER AS
D10N, D10R, D10T, D10T2, D9L
D10N, D10R, D10T, D10T2, D9L
3217048
CYLINDER GP-ANGLING
D6M, D6N
D6M, D6N
5Q8125
CYLINDER & LINES GP-LIFT
D6R, D6R II
D6R, D6R II
6C5856
CYLINDER GP-BOOM
235C, 235D
235C, 235D
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
2280320
CYLINDER GP-ANGLING
D6M, D6N
D6M, D6N
3793508
CYLINDER GP-BULLDOZER LIFT
D5R LGP, D6N, D6N LGP
D5R LGP, D6N, D6N LGP
2030820
CYLINDER GP-ANGLING
D6R II
D6R II