KTA38-C925 Industrial Application Engine


KTA38-C925 Industrial Application Engine

Engine ModelKTA38-C925
Maxi. Rating925 HP @ 2100 RPM
Compression Ratio13.9 : 1
Type4 Cycle, 60° Vee; 12 Cylinder
Fuel SystemPT
AspirationTurbocharged & Aftercooled
Emission StandardEuro II
Displacement37.7 L
Bore * Stroke159 mm × 159 mm
Packing Size (L * W * H)2300 mm * 1700 mm * 2000 mm
General Infomation of CCEC KT38-C925 Industrial Engine
Engine ModelKT38-C925Standby Power582 kW @1800 r/min
Maxi. Rating925 HP @ 2100 RPMEmission StandardEuro II
Curve & DatasheetC-602Peak TorqueN/A
Compression Ratio13.9 : 1Displacement37.7 L
Type12 Cylinders, V TypeBore * Stroke159 mm × 159 mm
Fuel SystemPTDry Weight (Fan Hub to Flywheel Engine)3606 kg
AspirationTurbochargedWet Weight (Fan Hub to Flywheel Engine)4016 kg
ConfigurationC-4414-APacking Size (L * W * H)2300 mm * 1700 mm * 2000 mm
CPL Code Revision0810Firing Order1-5-3-6-2-4
Performance Data of CCEC KT38-C925 Industrial Engine
Idle625 RPMCrankshaft Thrust Bearing Load — Maximum Continuous4448 N
Maximum No-Load Governed Speed2400 RPMMaximum Allowable Power From Front of CrankshaftN/A
Crankshaft Thrust Bearing Load — Maximum Intermittent8896 NMaximum Allowable Power From Accessory Drive6 kW
Estimated Free Field Sound Pressure Level— Right Side
(At 50 ft(15m) and Full Load Governed Speed (Excludes Noise From Intake.Exhaust. Cooling System and Driven Components)
82.0 dBA
Estimated Free Field Sound Pressure Level— Left Side
(At 50 ft(15m) and Full Load Governed Speed (Excludes Noise From Intake.Exhaust. Cooling System and Driven Components)
84.5 dBA
Estimated Free Field Sound Pressure Level— Front
(At 50 ft(15m) and Full Load Governed Speed (Excludes Noise From Intake.Exhaust. Cooling System and Driven Components)
84.0 dBA
Estimated Free Field Sound Pressure Level— after side
(At 50 ft(15m) and Full Load Governed Speed (Excludes Noise From Intake.Exhaust. Cooling System and Driven Components)
N/A
Engine Performance Data CCEC KT38-C925 Industrial Engine
maximum powercontinuous power
Maximum power pointMaximum torque pointMaximum power pointMaximum torque point
Engine Speed2100 r/min1300 r/min1800 r/minN/A
Output Power925 kW558 kW582 kWN/A
Torque3136 N.m4095 N.m3089 N.mN/A
Fuel Line Rated Point Pressure1151 kPa800 kPa813 kPaN/A
Intake Manifold Pressure176 kPa111 kPa132 kPaN/A
Mean Effective Pressure1048 kPa1365 kPa1027 kPaN/A
Average Piston Speed11 m/s6.8 m/s9.5 m/sN/A
Friction Power137 kW43 kW87 kWN/A
Inlet Flow1133 L/s675 L/s939 L/sN/A
Dry Exhaust Pipe-Extraction Flow2799 L/s1908 L/s2280 L/sN/A
Dry Exhaust Pipe-Discharge Temperature475 ℃583 ℃462 ℃N/A
Dry Exhaust Pipe-Ambient Heat Dissipation110 kW86 kW88 kWN/A
Dry Exhaust Pipe-Heat Dissipation Of Coolant419 kW336 kW338 kWN/A
Engine Cooling Water Flow30 L/s19 L/s26 L/sN/A

The CCEC KTA38-C925 Industrial Engine offers a robust set of advantages tailored for demanding industrial applications, combining innovative engineering with proven reliability. Here’s a structured breakdown of its key benefits:

1. Durability in Harsh Conditions

  • Advanced Design: Engineered to withstand extreme environments, with high-strength components and a heavy-load capacity for uninterrupted operation.
  • Forged Critical Parts: Forged steel camshaft and crankshaft enhance resilience under stress, while the high-rigidity cylinder block resists deformation and pressure.

2. Integrated Design for Reduced Failures

  • Monobloc Construction: Integrated cylinder block and head eliminate 40% of parts compared to conventional engines, minimizing leakage (oil/water) and lowering failure rates.
  • Simplified Maintenance: Fewer components reduce wear points and maintenance complexity.

3. Superior Oil Management

  • Platform Mesh Honing: Precision cylinder bore treatment optimizes oil retention, preventing leaks.
  • Advanced Sealing: New piston rings and gasket crimping technology reduce oil consumption, enhancing efficiency and environmental compliance.

4. In-House Engineered Systems

  • Proven Global Performance: Five core electronically controlled systems (e.g., fuel injection, cooling) are developed and validated by CCEC across diverse global applications, ensuring adaptability and reliability.

5. Fuel Efficiency and Cost Savings

  • Optimized Control Strategy: Tailored algorithms align with real-world operating conditions, improving fuel economy and reducing operational costs.

6. Long Service Life

  • High-Pressure Resistance: Reinforced components and rigid construction extend lifespan, even under continuous heavy use.

Summary

The KTA38-C925 excels in durability, efficiency, and reliability, making it ideal for industries like mining, construction, and power generation. Its integrated design, advanced oil management, and CCEC’s proprietary technology position it as a cost-effective, low-maintenance solution for harsh operational demands.

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