SlideShare a Scribd company logo
5
Most read
11
Most read
13
Most read
Introduction to common rail ( Bosch; Denso; Delphi; Vdo)
SUMMARY:
Diesel injection systems in history page 2
Generality page 3
Hydraulic layout page 4
Electrical layout page 5
High pressure pump pages 6-7
Rail page 8
Pressure control (hints) page 9
Injector page 10
Solenoid injectors pages 11-12
Piezo injectors (indirect drive) page 13
Piezo injectors (direct drive) page 14
ECU - injection strategy (hints) pages 15-16-17
2
Diesel injection systems in history
Mechanical
injection
Electronic
injection
Common Rail
In-line pumps Distributor pump VE
Distributor pump VP Pump-injector
3
Generality
The system common rail (CR) is now the fuel system of the fuel mostly used in
compression ignition engines
Major advantages over predecessors:
Pressure Injection independent of the rotation regime of the engine
Flexible control of injection pressure (pressure range 300 2200bar)
Flexible and accurate control of the injection quantity
Possibility of several injections per cycle depending on the operating condition
Flexibility in the timing of the injections of TDC engine
Alfa Romeo 156 1.9JDT the first car equipped with
the common rail system (1997)
4
Hydraulic layout
High pressure
pump
Pressure regulatorr Pressure sensor
Rail
Electro injector
Booster pumpTank
Filter
High pressure circuit
Low pressure circuit
Main components of the hydraulic layout:
Low-pressure pump (usually installed inside the tank)
Fuel-filter
Pompa high pressure
Rail
Pressure sensor installed on the rail
Flow regulator (FMV) or pressure regulator (PCV)
Injectors
5
Electrical layout
High pressure
pump
Pressure regulator
Electronic control unit
Rail
Pressure sensor
Feed pump
The engine control unit (ECU) has as its main function is to manage the system injection:
Monitors the pressure inside the rail (injection pressure)
Controls the flow regulator or the pressure regulator
Controls the injectors managing the duration, the number and timing of the injections
6
High pressure pump
The high-pressure pump receives the fuel from the low pressure circuit and sends it
to the rail at pressures are in the range 300 to 2200 bar depending on the operating
condition of the engine and on which the system is installed.
It is generally composed of a shaft with eccentric (1) realizes that by rotating the
suction stroke and the delivery of a number of pumping elements (3).
The pump is lubricated by the fuel itself and on it you can be installed of devices for
adjusting the delivery pressure.
7
High pressure pump
CR 1° generation
CR 2° generation
A pressure regulating valve electronics (PCV) is installed on the high
pressure side of the pump. It is controlled by the control unit to adjust
the injection pressure by downloading or less fuel from the high
pressure circuit.
A flow control valve electronics (FMV) is installed on the low pressure
side of the pump. It is controlled by the control unit to regulate the
inflow of fuel to the pump in relation to the injection pressure required.
Pump CP1 with integrated
pressure regulator to the outlet (PCV)
Pump CP4 with flow
regulator integrated suction (FMV)
8
Rail
Pressure sensor
Pressure regulator
The rail is an accumulator fuel to which are connected
the high-pressure pump and the injectors.
On it is installed a pressure sensor that the control unit
uses to monitor the injection pressure (PRAIL).
It may also be present a pressure regulator (PCV),
if it is not already present on the pump. Is there any
configuration of the system where the regulator on rail
is coupled to the flow control (FMV) installed on the
pump.
9
Pressure control (hints)
How realize the conditions of the mapping for a given operating condition?
The control unit must be able to adjust the pressure inside the rail to
obtain the value required by mapping (PRAIL).
Reading of the pressure inside the rail by means of
the integrated pressure sensor.
Control the pressure in the
rail by adjusting the flow
rate sucked by the high
pressure pump.
Control the pressure in
the rail by recirculating or
less part of the fuel in the
tank.
Comparison of the detected
pressure with the required
value in the corresponding
map for a given operating
condition.
10
Injector
The injectors are classified according to the type of drive according to the type
of hydraulic layout. In the solenoid-operated injector,
an electromagnetic force,
generated in a solenoid crossed by
current, is exploited to actuate the
injector.
In the piezo injectors utilizes the inverse
piezoelectric effect, that is the capacity of the
piezoelectric material to deform when subjected
to an electric voltage.
The electric drive is not directly
connected to the pin, there is
interposed a pilot valve.
The electric drive is directly
connected to the needle through
a mechanical linkage.
Operate:
Solenoid injectors
Piezoelectric injectors
Injectors indirectly actuated
Injectors direct actuated
Hydraulic layout:
11
Solenoid injectors
Injectors are indirectly actuated, the solenoid controls a pilot valve the opening of which
causes an imbalance of the forces acting on the needle such as to allow the lifting.
Pilot
valve
A injector at rest
B injector operating
1) Fuel recirculation
2) Electrical connector
3) Solenoid
4) Input fuel (by rail)
5) Ball valve
6) Hole A
7) Hole Z
8) Control chamber
9) Control rod
10) High pressure line
11) Pin
12
Solenoid injectors
Because of the complex internal hydraulic circuit and the presence of mechanical parts
with a not negligible inertia, the injection is not synchronized with the electrical
command supplied to the injector from the engine control.
13
Piezo injectors (indirect drive)
The piezoelectric actuator, the extension of which is amplified hydraulically, it acts on a
pilot valve which opens to download the environment upstream of the needle, which then
will rise due to the effect of the pressure of the fuel in the delivery chamber.
The layout of the valve is such that the
leaking fuel are much lower than those of
the injectors solenoid seen previously.
Fuel
recirculation
Piezoelectric actuator
Hydraulic amplifier
Pilot valve
Pulverizer
Input fuel
Pilot
valve
Hole A
Hole Z
Control chamber Bypass
Pin
14
Piezo injectors (direct drive)
The piezoelectric actuator is directly connected to the pin by means of a mechanical
linkage, then NOT is no pilot valve.
Advantages:
1) The dynamics of the injector is improved;
2) It is not necessary to recirculate fuel to actuate the injector(efficiency ).
Disadvantages:
1) The piezoelectric actuator must be larger in order to generate the forces necessary to raise the needle;
2) It is necessary to control the injectors with very high voltages (≈ 160 volts) that may require a special
shielding of the electric circuit of the injection system
15
ECU - injection strategy (hints)
Mapping unit
The basic strategy of injection include:
Reading throttle position (load);
Reading of the speed of rotation of the engine (rpm);
Reading maps of control:
1. Depending on the load and the speed of rotation
is chosen, the related map, the amount of fuel
to be injected to the cycle (mb) and the injection
pressure (PRAIL);
2. Based on the amount to be injected (sc) and the
injection pressure (PRAIL) is chosen, from
another map, the duration of the electrical
command to be supplied to the injectors (ET).
16
ECU - injection strategy (hints)
After choosing injection pressure and
duration of the electrical control to the
injectors, the control unit must choosing a
number of other parameters with the aim to
maintain the engine in top
possible conditions, minimizing (to the extent
possible) the emission of pollutants and fuel
consumption.
In addition the unit constantly monitors the
conversion efficiency of the devices of after-
treatment of the exhaust gas (oxidizing
catalyst, DPF, DeNOx) using, when
appropriate, strategies regeneration.
17
ECU - injection strategy (hints)
Rabotti Srl
Technological partnership

More Related Content

DOC
Bosch-Hdi-Edc15c2-Injection-System.doc
PDF
Common Rail Injectors Bosch
PDF
Denso hp4 1
PDF
Common rail diesel fuel systems
PDF
Denso hp4 1
PDF
DENSO (CRS) TOYOTA 1KD/2KD ENGINE COMMON RAIL SYSTEM (CRS)
PPT
Land cruiser (engine_[1_vd-ftv]) (2)
PPT
Engine systems diesel engine analyst - part 2
Bosch-Hdi-Edc15c2-Injection-System.doc
Common Rail Injectors Bosch
Denso hp4 1
Common rail diesel fuel systems
Denso hp4 1
DENSO (CRS) TOYOTA 1KD/2KD ENGINE COMMON RAIL SYSTEM (CRS)
Land cruiser (engine_[1_vd-ftv]) (2)
Engine systems diesel engine analyst - part 2

What's hot (20)

PPT
Diesel common rail basic
PDF
Common rail diesel fuel systems
DOC
Ems diesel 2 textbook spanish
PDF
Denso hp-3 servis manual
PDF
Inyeccion_Common_Rail_Bosch.pdf
PDF
torque Peugeot 207.pdf
PPTX
Sistema Encendido Dis
PDF
352 Inyector bomba con Valvula Piezoelectrica.pdf
PDF
Manual scania-edc-inyectores-bomba (1)
PDF
manual de servicio de isuzu (1)
PDF
204406142 sistema-electrico-p-r-y-t
PDF
MB - Om 926 LA
DOC
Transmisión automática 1
PPT
Common rail bosch_manual
PDF
Manual scania-diagramas-electricos-autobuses (1)
PPTX
Bomba De Inyección Rotativa De Embolo Axial VE.pptx
PPT
Sistema de inyeccion diesel
PPTX
Fuel injectors ppt
PPTX
Electronic Fuel Injection System
DOCX
Sistema de lubricacion
Diesel common rail basic
Common rail diesel fuel systems
Ems diesel 2 textbook spanish
Denso hp-3 servis manual
Inyeccion_Common_Rail_Bosch.pdf
torque Peugeot 207.pdf
Sistema Encendido Dis
352 Inyector bomba con Valvula Piezoelectrica.pdf
Manual scania-edc-inyectores-bomba (1)
manual de servicio de isuzu (1)
204406142 sistema-electrico-p-r-y-t
MB - Om 926 LA
Transmisión automática 1
Common rail bosch_manual
Manual scania-diagramas-electricos-autobuses (1)
Bomba De Inyección Rotativa De Embolo Axial VE.pptx
Sistema de inyeccion diesel
Fuel injectors ppt
Electronic Fuel Injection System
Sistema de lubricacion
Ad

Similar to Introduction to common rail ( Bosch; Denso; Delphi; Vdo) (20)

PDF
PPSX
CIE injection ver 3 spring 2100000.ppsx
PDF
Automobile unit 2 Engine Auxiliary Systems
PDF
Fuel Injection Systems Diesel
PPT
CHAPTER 26 diessel injection.PPT
PPTX
Fuel injection in Diesel Engine.pptx
PDF
SIAUT_Fuel_Injection_Systems-Gasoline.pdf
PPT
115992077-Fuel-System.pptfyhjr6styuhthgs
PPTX
ELECTRONIC FUEL INJECTOR
PPTX
Fuel supply system in IC engine in automobile engineering
PPT
presentation of fuel injection pumps
PPTX
COMMON RAIL DIESEL INJECTION (CRDI;CRDe)
PPT
The introduction of EFI technology in diesel engines has revolutionized the w...
PPTX
K11915 shivam
PDF
Piezoelectric Diesel Injectors & Emission Control
PPT
Gasoline electronic fuel injection systems
PDF
Fuel system fundamentals
PPTX
UNIT-II-ENGINE AUXILIARY SYSTEMS &TURBOCHARGER
PPTX
UNIT-II-ENGINE AUXILIARY SYSTEMS.pptx
CIE injection ver 3 spring 2100000.ppsx
Automobile unit 2 Engine Auxiliary Systems
Fuel Injection Systems Diesel
CHAPTER 26 diessel injection.PPT
Fuel injection in Diesel Engine.pptx
SIAUT_Fuel_Injection_Systems-Gasoline.pdf
115992077-Fuel-System.pptfyhjr6styuhthgs
ELECTRONIC FUEL INJECTOR
Fuel supply system in IC engine in automobile engineering
presentation of fuel injection pumps
COMMON RAIL DIESEL INJECTION (CRDI;CRDe)
The introduction of EFI technology in diesel engines has revolutionized the w...
K11915 shivam
Piezoelectric Diesel Injectors & Emission Control
Gasoline electronic fuel injection systems
Fuel system fundamentals
UNIT-II-ENGINE AUXILIARY SYSTEMS &TURBOCHARGER
UNIT-II-ENGINE AUXILIARY SYSTEMS.pptx
Ad

Recently uploaded (20)

PDF
LB95 New Holland Service Repair Manual.pdf
PPTX
Cloud_Computing_ppt[1].pptx132EQ342RRRRR1
PDF
TM1611 John Deere 410E service Repair Manual.pdf
PDF
Cylinder head Volvo EC55 Service Repair Manual.pdf
PPTX
LESSON 3 Apply Safety Practices mmms.pptx
PPTX
internal combustion engine renewable new
PDF
Life Cycle Analysis of Electric and Internal Combustion Engine Vehicles
PPTX
45-Days-of-Engineering-Excellence-132-kV-Grid-Substation-Training.pptx
PPTX
Applications of SAP S4HANA in Mechanical by Sidhant Vohra (SET23A24040166).pptx
PPTX
Zeem: Transition Your Fleet, Seamlessly by Margaret Boelter
PDF
Caterpillar Cat 324E LN Excavator (Prefix LDG) Service Repair Manual Instant ...
PPTX
Dipak Presentation final 18 05 2018.pptx
PDF
John Deere 460E II Articulated Dump Truck Service Manual.pdf
PPTX
Small Fleets, Big Change: Overcoming Obstacles in the Transition to MHD Elect...
PDF
Engine Volvo EC55 Compact Excavator Service Repair Manual.pdf
PPTX
Small Fleets, Big Change: Market Acceleration by Niki Okuk
PDF
Marketing project 2024 for marketing students
PDF
Lubrication system for Automotive technologies
PPTX
Moral Theology (PREhhhhhhhhhhhhhhhhhhhhhLIMS) (1).pptx
PPTX
729193dbwbsve251-Calabarzon-Ppt-Copy.pptx
LB95 New Holland Service Repair Manual.pdf
Cloud_Computing_ppt[1].pptx132EQ342RRRRR1
TM1611 John Deere 410E service Repair Manual.pdf
Cylinder head Volvo EC55 Service Repair Manual.pdf
LESSON 3 Apply Safety Practices mmms.pptx
internal combustion engine renewable new
Life Cycle Analysis of Electric and Internal Combustion Engine Vehicles
45-Days-of-Engineering-Excellence-132-kV-Grid-Substation-Training.pptx
Applications of SAP S4HANA in Mechanical by Sidhant Vohra (SET23A24040166).pptx
Zeem: Transition Your Fleet, Seamlessly by Margaret Boelter
Caterpillar Cat 324E LN Excavator (Prefix LDG) Service Repair Manual Instant ...
Dipak Presentation final 18 05 2018.pptx
John Deere 460E II Articulated Dump Truck Service Manual.pdf
Small Fleets, Big Change: Overcoming Obstacles in the Transition to MHD Elect...
Engine Volvo EC55 Compact Excavator Service Repair Manual.pdf
Small Fleets, Big Change: Market Acceleration by Niki Okuk
Marketing project 2024 for marketing students
Lubrication system for Automotive technologies
Moral Theology (PREhhhhhhhhhhhhhhhhhhhhhLIMS) (1).pptx
729193dbwbsve251-Calabarzon-Ppt-Copy.pptx

Introduction to common rail ( Bosch; Denso; Delphi; Vdo)

  • 2. SUMMARY: Diesel injection systems in history page 2 Generality page 3 Hydraulic layout page 4 Electrical layout page 5 High pressure pump pages 6-7 Rail page 8 Pressure control (hints) page 9 Injector page 10 Solenoid injectors pages 11-12 Piezo injectors (indirect drive) page 13 Piezo injectors (direct drive) page 14 ECU - injection strategy (hints) pages 15-16-17
  • 3. 2 Diesel injection systems in history Mechanical injection Electronic injection Common Rail In-line pumps Distributor pump VE Distributor pump VP Pump-injector
  • 4. 3 Generality The system common rail (CR) is now the fuel system of the fuel mostly used in compression ignition engines Major advantages over predecessors: Pressure Injection independent of the rotation regime of the engine Flexible control of injection pressure (pressure range 300 2200bar) Flexible and accurate control of the injection quantity Possibility of several injections per cycle depending on the operating condition Flexibility in the timing of the injections of TDC engine Alfa Romeo 156 1.9JDT the first car equipped with the common rail system (1997)
  • 5. 4 Hydraulic layout High pressure pump Pressure regulatorr Pressure sensor Rail Electro injector Booster pumpTank Filter High pressure circuit Low pressure circuit Main components of the hydraulic layout: Low-pressure pump (usually installed inside the tank) Fuel-filter Pompa high pressure Rail Pressure sensor installed on the rail Flow regulator (FMV) or pressure regulator (PCV) Injectors
  • 6. 5 Electrical layout High pressure pump Pressure regulator Electronic control unit Rail Pressure sensor Feed pump The engine control unit (ECU) has as its main function is to manage the system injection: Monitors the pressure inside the rail (injection pressure) Controls the flow regulator or the pressure regulator Controls the injectors managing the duration, the number and timing of the injections
  • 7. 6 High pressure pump The high-pressure pump receives the fuel from the low pressure circuit and sends it to the rail at pressures are in the range 300 to 2200 bar depending on the operating condition of the engine and on which the system is installed. It is generally composed of a shaft with eccentric (1) realizes that by rotating the suction stroke and the delivery of a number of pumping elements (3). The pump is lubricated by the fuel itself and on it you can be installed of devices for adjusting the delivery pressure.
  • 8. 7 High pressure pump CR 1° generation CR 2° generation A pressure regulating valve electronics (PCV) is installed on the high pressure side of the pump. It is controlled by the control unit to adjust the injection pressure by downloading or less fuel from the high pressure circuit. A flow control valve electronics (FMV) is installed on the low pressure side of the pump. It is controlled by the control unit to regulate the inflow of fuel to the pump in relation to the injection pressure required. Pump CP1 with integrated pressure regulator to the outlet (PCV) Pump CP4 with flow regulator integrated suction (FMV)
  • 9. 8 Rail Pressure sensor Pressure regulator The rail is an accumulator fuel to which are connected the high-pressure pump and the injectors. On it is installed a pressure sensor that the control unit uses to monitor the injection pressure (PRAIL). It may also be present a pressure regulator (PCV), if it is not already present on the pump. Is there any configuration of the system where the regulator on rail is coupled to the flow control (FMV) installed on the pump.
  • 10. 9 Pressure control (hints) How realize the conditions of the mapping for a given operating condition? The control unit must be able to adjust the pressure inside the rail to obtain the value required by mapping (PRAIL). Reading of the pressure inside the rail by means of the integrated pressure sensor. Control the pressure in the rail by adjusting the flow rate sucked by the high pressure pump. Control the pressure in the rail by recirculating or less part of the fuel in the tank. Comparison of the detected pressure with the required value in the corresponding map for a given operating condition.
  • 11. 10 Injector The injectors are classified according to the type of drive according to the type of hydraulic layout. In the solenoid-operated injector, an electromagnetic force, generated in a solenoid crossed by current, is exploited to actuate the injector. In the piezo injectors utilizes the inverse piezoelectric effect, that is the capacity of the piezoelectric material to deform when subjected to an electric voltage. The electric drive is not directly connected to the pin, there is interposed a pilot valve. The electric drive is directly connected to the needle through a mechanical linkage. Operate: Solenoid injectors Piezoelectric injectors Injectors indirectly actuated Injectors direct actuated Hydraulic layout:
  • 12. 11 Solenoid injectors Injectors are indirectly actuated, the solenoid controls a pilot valve the opening of which causes an imbalance of the forces acting on the needle such as to allow the lifting. Pilot valve A injector at rest B injector operating 1) Fuel recirculation 2) Electrical connector 3) Solenoid 4) Input fuel (by rail) 5) Ball valve 6) Hole A 7) Hole Z 8) Control chamber 9) Control rod 10) High pressure line 11) Pin
  • 13. 12 Solenoid injectors Because of the complex internal hydraulic circuit and the presence of mechanical parts with a not negligible inertia, the injection is not synchronized with the electrical command supplied to the injector from the engine control.
  • 14. 13 Piezo injectors (indirect drive) The piezoelectric actuator, the extension of which is amplified hydraulically, it acts on a pilot valve which opens to download the environment upstream of the needle, which then will rise due to the effect of the pressure of the fuel in the delivery chamber. The layout of the valve is such that the leaking fuel are much lower than those of the injectors solenoid seen previously. Fuel recirculation Piezoelectric actuator Hydraulic amplifier Pilot valve Pulverizer Input fuel Pilot valve Hole A Hole Z Control chamber Bypass Pin
  • 15. 14 Piezo injectors (direct drive) The piezoelectric actuator is directly connected to the pin by means of a mechanical linkage, then NOT is no pilot valve. Advantages: 1) The dynamics of the injector is improved; 2) It is not necessary to recirculate fuel to actuate the injector(efficiency ). Disadvantages: 1) The piezoelectric actuator must be larger in order to generate the forces necessary to raise the needle; 2) It is necessary to control the injectors with very high voltages (≈ 160 volts) that may require a special shielding of the electric circuit of the injection system
  • 16. 15 ECU - injection strategy (hints) Mapping unit The basic strategy of injection include: Reading throttle position (load); Reading of the speed of rotation of the engine (rpm); Reading maps of control: 1. Depending on the load and the speed of rotation is chosen, the related map, the amount of fuel to be injected to the cycle (mb) and the injection pressure (PRAIL); 2. Based on the amount to be injected (sc) and the injection pressure (PRAIL) is chosen, from another map, the duration of the electrical command to be supplied to the injectors (ET).
  • 17. 16 ECU - injection strategy (hints) After choosing injection pressure and duration of the electrical control to the injectors, the control unit must choosing a number of other parameters with the aim to maintain the engine in top possible conditions, minimizing (to the extent possible) the emission of pollutants and fuel consumption. In addition the unit constantly monitors the conversion efficiency of the devices of after- treatment of the exhaust gas (oxidizing catalyst, DPF, DeNOx) using, when appropriate, strategies regeneration.
  • 18. 17 ECU - injection strategy (hints)