DCEC 4BTA3.9-C100 Industrial Application Engine


DCEC 4BTA3.9-C100 Industrial Application Engine

Engine Model4BTA3.9-C100
Rated Power / Speed:100 HP @ 2200 RPM
Peak Torque:410 N·m @ 1500 RPM
Type4 Cylinders, in Line
Fuel SystemBYC PB Pump
RSV Mechanical Governor
AspirationTurbocharged & Aftercooled
Displacement3.9 L
Bore * Stroke102 mm * 120 mm
Packing Size (L * W * H)778 mm * 634 mm * 912 mm
Lead Time:5-15 Working Days

General Infomation of DCEC 4BTA3.9-C100 Industrial Engine

General Infomation of DCEC 4BTA3.9-C100 Industrial Engine
Engine Model4BTA3.9-C100
Compression Ratio17.3:1
Advertised Power100 HP @ 2200 RPM
Peak Torque410 N·m @ 1500 RPM
Fuel SystemBYC PB Pump / RSV Mechanical Governor
Engine Wet Weight355 kg
Curve & DatasheetFR92815
Displacement3.9 L
Bore * Stroke102 mm * 120 mm
AspirationTurbocharged & Water-Air Intercooler
Cylinders4 Cylinders, in Line
Basic Engine(L * W * H)778 mm * 634 mm * 912 mm
Installation Data of DCEC 4BTA3.9-C100 Industrial Engine
Moment Of Inertia Of Rotating Components (No Flywheel)0.143 kg·m²
Center Of Gravity From Front Face Of Block391 mm
Center Of Gravity Above Crankshaft Centerline160 mm
Maximum (Static) Bending Moment At Front Support Mounting Surface435 N.m
Maximum (Static) Bending Moment At Side Pad Mounting SurfaceN/A
N.m Maximum (Static) Bending Moment at Rear Face of Block1356 N.m
Moment of Inertia of Complete Engine— Roll Axis11.1 kg·m²
Moment of Inertia of Complete Engine— Pitch Axis19.1 kg·m²
Moment of Inertia of Complete Engine— Yaw Axis14.7 kg·m²
Maximum Crankshaft Thrust Bearing Load Limit-Intermittent Load3425 N
Maximum Crankshaft Thrust Bearing Load Limit-Continuous Load1112 N
Maximum overspeed capability3750 RPM

Performance Data of DCEC 4BTA3.9-C100 Industrial Engine

Performance Data of DCEC 4BTA3.9-C100 Industrial Engine
Minimum Idle Speed900 RPM
Maximum Speed Adjustment Speed (10% Rated Load)2460 RPM
Maximum Overspeed PerformanceN/A
Maximum Altitude Allowed for Continuous Operation2200 m
700 RPM Full Throttle Closed Torque (900 RPM Idle Speed)120 N.m
Throttle Handle Angle – High Idle94 ± 10° Deg
Throttle Handle Angle – Low Idle68 ± 10° Deg
Throttle Handle Angle – Rotation Angle26 ± 5° Deg
Throttle Angle at Engine Shutdown – Engine Work340 ± 5° Deg
Throttle Angle at Engine Shutdown – Engine Shutdown42 ± 5° Deg
Nominal Governor Regulation≤8%

Advantages of DCEC 4BTA3.9-C100 Industrial Engine

Integrated Design & Reduced Complexity:

Cylinder Block/Head Integration: A unified design minimizes parts by 40% compared to conventional engines, reducing assembly complexity and potential failure points.

Leak Prevention: Eliminates water/oil leakage risks, enhancing durability in harsh conditions and lowering maintenance needs.

  1. Robust Construction & Materials:

Forged Steel Components: Camshaft and crankshaft made from forged steel ensure high strength, fatigue resistance, and longevity under heavy loads.

High-Strength Block: Reinforced casting integrates multiple parts, boosting rigidity, pressure resistance, and structural reliability.

  1. Precision Sealing & Oil Control:

Platform Mesh Honing: Cylinder bore surface treatment optimizes geometric integrity, preventing oil leakage.

Advanced Sealing Tech: New piston rings and crimped gaskets further reduce oil consumption and leakage risks.

  1. In-House Engine Control Systems:

DCEC-Developed Electronics: Five core systems (e.g., fuel injection, emission control) are designed and validated globally, ensuring adaptability and reliability across diverse environments.

Proven Performance: Extensive real-world testing underpins exceptional fuel economy and operational consistency.

  1. Overall Benefits:

Enhanced Reliability: Fewer parts and robust construction slash failure rates.

Long Service Life: Durable materials and sealing tech extend operational lifespan.

Economic Efficiency: Optimized design and electronics reduce fuel/oil waste, lowering total cost of ownership.

This engine is engineered for demanding applications, prioritizing longevity, efficiency, and reliability through innovative design and rigorous testing.chieves a balance of power, reliability, eco-compliance, and cost-effectiveness. Ideal for non-road applications such as engineering machinery and agricultural equipment, it delivers an efficient, durable, and user-friendly power solution.

Contact BLSH Now!

=