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John Deere John Deere Strong Deer 4045HF diesel engine technical performance parameters


Detailed Description:

John Deere John Deere Strong Deer 4045HF diesel engine technical performance parameters

PERFORMANCE DATA

STANDBY POWER

PRIME POWER

Performance Data 1500 rpm 1800 rpm

Gross Rated Power (without fan)

Prime = PRP-kW (hp) ............... : 91 (122) 112 (150)

Standby = LTP-kW (hp) ............ 100 (134) 123 (165)

Rated Speed-rpm .............................. .......... 1500 1800

Low Idle Speed-rpm ............................. ........... No No

BMEP

Prime = PRP-kPa (psi) ............ 1626 (236) 1659 (240)

Standby = LTP-kPa (psi) .................................. 1778 (258) 1822 ( 264)

Friction Power @ Rated Speed – kW (hp) ..... 10 (13) 13 (17)

Altitude Capability – m (ft) .................. 1525 (5000) 1525 (5000)

Air: Fuel Ratio

Prime = PRP ............... ............. 25.3: 1 30.3: 1

Standby = LTP ............... ........... 25.4: 1 30.3: 1

Noise

Prime = PRP-dB (A) @ 1 m ........................ ... 93.9 94.1

Standby = LTP-dB (A) @ 1 m ... 94.5 95.4

STANDBY POWER is the nominal engine power available at

varying load factors for up to 500 hours per year. This rating

conforms to ISO 8528-1 “limited time running power (LTP)”.

The calculated generator set rating range for standby applications

is based on minimum engine power (nominal --5%) to

provide 100% meet-or-exceed performance for assembled

standby generator sets.

PRIME POWER is the nominal power an engine is capable

of delivering with a variable load for an unlimited number of

hours per year. This rating conforms to ISO 8528-1 “prime

power (PRP) ".

Fuel Consumption – l / h 1500 rpm 1800 rpm

Prime = PRP Standby = LTP Prime = PRP Standby = LTP

25% Power .............. 6.0 6.0 6.5 ............................................ ... 7.5 ............ 8.5

50% Power .............. 11.0 ...... ... 12.0 ................................. ..... 13.5 ............ 15.0

75% Power .............. 16.5 ...... ... 18.5 ............................... ..... 21.0 ... 23.0

100% Power .............. 23.0 ...... ... 25.0 ................................. ..... 27.5 .... 30.5 General Data

Model ....................................... ..................... 4045HF150

Number of cylinders ............................... .. 4

Bore and Stroke – mm (in.) .... 106 x 127 (4.19 x 5.00)

Displacement – dm3 (in3) ............ : 4.5 (276)

Compression Ratio ... ........ 17.0: 1

Valves per Cylinder – Intake / Exhaust ...................... 1/1

Firing Order ............ ..... 1-3-4-2

Combustion System ................ Direct Injection

Engine type ................................................ ........ In-line, 4-cycle

Aspiration ....................................... ........... Turbocharged

Charge Air Cooling System ........... Air to air

Engine Crankcase Vent System .............. Open

Engine Crankcase Pressure – kPa (in.H2O) ..... 0.5 (2)

Physical Data

Length-mm (in.) ........................... ......... 1209 (47.6)

Width – mm (in.) ................. ............. 798 (31.4)

Height-mm (in.) ............... ........... 1136 (44.7)

Weight, dry – kg (lb) .......................... ........ 605 (1334)

(Includes flywheel housing, flywheel, & electrics)

Center of gravity location

From Rear Face of block (X-axis) – mm (in.) ..... 285 (11.2)

Right of Crankshaft (Y-axis) – mm (in.) ..........- 10 (–0.4)

Above Crankshaft (Z-axis) – mm (in.) .............. 151 (5.9)

Electrical Data

Recommended Battery Capacity (CCA)

12 Volt System-Amp ............................. ......... 640

24 Volt System-Amp ............................. ......... 570

Maximum Allowable Starting Circuit Resistance

12 Volt System-Ohm ............................. ..... 0.0012

24 Volt System-Ohm ............................. ....... 0.002

Starter Rolling Current – 12 Volt System

At 0 ° C (32 ° F) – Amp ............. ......... 780

At –30 ° C (–22 ° F) – Amp ... ............. 1000

Starter Rolling Current – 24 Volt System

At 0 ° C (32 ° F) – Amp ............. ..... 600

At –30 ° C (–22 ° F) – Amp ... ............... 700

Air System 1500 rpm 1800 rpm

Maximum Allowable Temperature Rise

Ambient Air to Engine Inlet – ° C (° F) ........ 8 (15) 8 (15)

Maximum Air Intake Restriction

Dirty Air Cleaner – kPa (in. H2O) .. 6.25 (25) 6.25 (25)

Clean Air Cleaner – kPa (in. H2O) ............ 3 (12) 3 (12)

Engine Air Flow

Prime = PRP-m3 / min (ft3 / min) ..... 6.4 (226) 9.1 (321)

Standby = LTP-m3 / min (ft3 / min) ........ 7.0 (247) 10.0 (353)

Exhaust System 1500 rpm 1800 rpm

Exhaust Flow

Prime = PRP-m3 / min (ft3 / min) ......... 17.0 (600) 24.0 (847)

Standby = LTP-m3 / min (ft3 / min) ... 18.7 (660) 26.4 (932)

Exhaust Temperature

Prime = PRP-° C (° F) ............ 545 (1013) 490 (914)

Standby = LTP-° C (° F) .............. 565 (1049) 475 (887))

Max. Allow. Back Pressure – kPa (in.H2O) ........ 7.5 (30) 7.5 (30)

Recommended Exhaust Pipe Dia – mm (in.) 101.6 (4) 101.6 (4)

Cooling System 1500 rpm 1800 rpm

Thermostat Start to open – ° C (° F) ..... 82 (180) 82 (180)

Power Unit Coolant Capacity-L (qt) ..... 25.0 (26.5) 25.0 (26.5)

Minimum Air to Boil temperature – ° C (° F) ... 47 (117) 47 (117)

Fuel System 1500 rpm 1800 rpm

Fuel Injection Pump .............. Stanadyne Stanadyne

Governor Regulation ... 5% 5%

Governor Type ............................ Mechanical Mechanical

Total Fuel Flow

Prime = PRP-kg / h (lb / h) ............... 93 (205) 96 (212)

Standby = LTP-kg / h (lb / h) ............... 93 (205) 96 (212)

Maximum Fuel Transfer Pump Suction – m (ft) 0.9 (3) 0.9 (3)

Fuel Filter Micron Size @ 98% Efficiency ........ 8 8

Lubrication System 1500 rpm 1800 rpm

Oil Pressure at Rated Speed-kPa (psi) ..... 345 (50) 345 (50)

Oil Pressure at Low Idle – kPa (psi) ........ 105 (15) 105 (15)

In Pan Oil Temperature-° C (° F) ..... 115 (240) 115 (240)

Total Engine Oil Capacity with filter – L (qt) .... 12 (12.7) 12 (12.7)

Engine Angularity Limits (continuous)

Any Direction-degrees .............. 20 20

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