
E
ngine provides power to the automobile. Presently, internal combustion engine is widely applied in the automobile. It’s
a kind of thermal machine that can control the fuel combustion in the cylinder to generate heat energy effectively, and then
convert the heat energy into mechanical energy that drives the piston in the cylinder to make reciprocating movement as
the way to output the power by the connecting rod, the crankshaft and the flywheel. The automobile runs with the power
transferred by the internal combustion engine to the automobile driving mechanism. Most of the internal combustion
engines providing power to the automobile are gasoline or diesel engines based on the fuel for combustion. The power to
GEELY car comes from the gasoline engine equipped with the electronic fuel injection system. It’s made of the machine
unit, crank connecting rod mechanism, valve train, fuel supply system, ignition system, cooling system, lubricating system,
startup system and management system.
1. Machine Unit
The machine unit is mainly composed of cylinder head, cylinder block and oil pan. It’s the basis of assembling the
engine mechanisms and systems, and the base to support the engine in normal operation. In another word, many parts of
the machine unit have multiple specific functions. For example, the internal walls of cylinder block and cylinder head make
up the combustion room, but they are also the components of crankshaft connecting rod mechanism, fuel supply system,
cooling system and lubricating system. The machine unit is designed to bear ultra heat or mechanical load.
2. Crankshaft Connecting Rod Mechanism
The crankshaft connecting rod mechanism is composed of body, piston, connecting rod, crankshaft, flywheel and crank
shield. It converts the heat generated by engine combustion into mechanical energy, namely, converts the piston linear
reciprocating movement into the crankshaft and flywheel rotations, and then the flywheel outputs the power. The flywheel
is designed to keep the engine in stable rotation by the rotating inertia.
3. Intake Mechanism
The intake mechanism is composed of cylinder head, intake valve, exhaust valve, cam shaft, tappet, valve spring, cam
shaft timing gear, and timing belt. The intake mechanism is designed to open the intake valve in time, take in the combus-
tible gas mixture into the cylinder, and emit the post-combustion exhaust gas out of the cylinder in time.
4. Fuel Supply System
The fuel supply system is composed of gasoline pump, gasoline filter, gasoline distribution pipe, pressure regulator,
fuel injector, fuel tank, air filter, throttle body, intake manifold, exhaust manifold, exhaust gas purifier, and exhaust muffler.
The fuel supply system is designed to mix gasoline and air into high-quality combustible gas mixture, send it to the cylinder
for combustion, and emit the exhaust gas out of the engine.
5. Ignition System
The ignition system is composed of storage battery, engine, ignition coil, high-voltage wire and spark plug. The ignition
system is designed to make sure the compressed gas mixture to be ignited right at the preset moment. The ignition system is one
of the characteristics of gasoline engine to differentiate from the diesel engine.
Chapter 1 Engine Overview
I. Basic Structure of Engine
Section 1 Basic Structure and Working Principle of Engine
1
Содержание JL481Q
Страница 1: ......
Страница 9: ...5 Fig 3 Components Assembly Drawing of MR479Q MR479QA Engine ...
Страница 10: ...6 Fig 4 MR479Q MR479QA Engine and Its Power System ...
Страница 11: ...7 Fig 5 Assembly Drawing of Engine and Its Auxiliaries MR479Q MR479QA ...
Страница 12: ...8 Fig 6 Electronic Control Fuel Injection System in Engine MR479Q MR479QA ...
Страница 13: ...9 Fig 7 Front view of Engine JL481Q MR481QA ...
Страница 14: ...10 Fig 8 Sectional elevation of Engine JL481Q MR481QA ...
Страница 15: ...11 Fig 9 Electronic Control Fuel Injection System in Engine JL481Q MR481QA ...
Страница 21: ...17 Fig 13 Exterior Feature of JL481Q Engine Power Me N m Torque Pe Kw ge g kwh Fuel Consumption Ratio ...