Mitsubishi 4A9 engine

Last updated
Mitsubishi 4A9 engine
4A92 MIVEC.jpg
Overview
Manufacturer Mitsubishi Motors
MDC Power
Production2004–present (1.3 and 1.5)
2010–present (1.6)
Layout
Configuration Naturally aspirated Straight-4
Displacement 1.3 L (1,332 cc)
1.5 L (1,499 cc)
1.6 L (1,590 cc)
Cylinder bore 75 mm (2.95 in)
Piston stroke 75.4 mm (2.97 in)
84.8 mm (3.34 in)
90 mm (3.54 in)
Cylinder block material Aluminum die cast
Cylinder head material Aluminum die cast
Valvetrain Direct acting DOHC, 16 valves, continuously variable MIVEC intake valve timing
Compression ratio 10.5:1, 11.0:1
Combustion
Fuel system Fuel injection
Fuel type Gasoline
Cooling system Water cooled
Output
Power output 70–86 kW (95–117 PS; 94–115 hp)
Torque output 125–154 N⋅m (92–114 lb⋅ft)
Chronology
Predecessor Mitsubishi 4G1 engine

The Mitsubishi 4A9 engine is the newest family range of all-alloy inline four-cylinder engines from Mitsubishi Motors, introduced in the 2004 version of their Mitsubishi Colt supermini, and built by DaimlerChrysler-owned MDC Power in Germany (previously a joint venture). [1] [2]

Contents

The engine project was begun as a joint effort by Mitsubishi Motors and DaimlerChrysler (DCX), with Mitsubishi handling the development of the engines and MDC Power GmbH, a company previously jointly established by Mitsubishi and DCX, handling production. The 4A9 is Mitsubishi's first four-cylinder engine family to adopt a high-pressure die-cast aluminum block. [1] [3]

All engines developed within this family have aluminum cylinder block and head, four valves per cylinder, double overhead camshaft layouts, and MIVEC continuous variable valve timing (intake only).

Engine family characteristics

For high output and low fuel consumption, the MIVEC system and other measures (including optimized shaping of the intake and exhaust manifolds and cylinder head) were used to promote intake and exhaust efficiency. Optimally shaped cooling passages in the cylinder head and optimal control of the flow of coolant into the cylinder head help to suppress engine knocking. Comprehensive measures to engine components were taken to minimize friction. [1]

For lightness and compactness; design optimization, material optimization, and component integration were identified as effective means of minimizing weight and bulk, so they were comprehensively effected in combination with each other. With regard to materials, the cylinder block is made of aluminum; the cylinder-head cover and intake manifold are made of plastic; the exhaust manifold has a pipe-based structure and cams driven by a timing chain. Component integration was applied in many areas of the engine. Notably, the functions of engine accessories were integrated into the cylinder block. [1]

Exhaust emissions from the engine are minimized by measures including optimal design of the combustion chambers, optimal control of the intake air motion by means of the cylinder-head ports, employment of the MIVEC system, employment of an ultra-thin cylinder head gasket, and employment of micro-droplet fuel injectors. The vehicle's overall exhaust emissions are further suppressed by location of the exhaust manifold at the rear of the engine. This layout is beneficial since it minimizes the heat capacity of the exhaust system upstream of the catalytic converter and thus, together with combustion control, promotes activation of the catalytic converter. [1]

4A91's DOHC camshafts are driven by a single-stage roller chain of 8 mm (0.31 in) pitch and 12.5 mm (0.49 in) width, instead of the previous 4G15's cogged belt drive. Camshafts act directly on bucket-type tappets. The intake camshaft is fitted with a continuously variable cam-phasing, altering timing up to 50  degrees. Valves are inclined at an included angle of 34 degrees versus the 4G15's wider 45 degrees. [3]

4A90

4A90 engine in the 2010 Mitsubishi Colt 4a90engine.jpg
4A90 engine in the 2010 Mitsubishi Colt

Specifications

Engine type — DOHC 16v, ECI multiple
Displacement1.3 L (1,332 cc)
Bore pitch83 mm (3.27 in)
Bore75 mm (2.95 in)
Stroke75.4 mm (2.97 in)
Compression ratio — 10.5:1
Power70 kW (95 PS; 94 hp) at 6000 rpm
Torque125 N⋅m (92 lb⋅ft) at 4000 rpm

Applications

4A91

4A91 engine in the 2019 Nissan Livina 2019 Nissan LIVINA 1.5 4A91 (190428).jpg
4A91 engine in the 2019 Nissan Livina

Specifications

Engine type — DOHC 16v, ECI multiple
Displacement1.5 L (1,499 cc)
Bore pitch83 mm (3.27 in)
Bore75 mm (2.95 in)
Stroke84.8 mm (3.34 in)
Compression ratio — 10.5:1
Power109 hp (81 kW; 111 PS) at 6000 rpm
Torque145 N⋅m (107 lb⋅ft) at 4000 rpm

Applications

4A92

Specifications

Engine type — DOHC 16v,ECI multiple
Displacement1,590 cc (1.6 L)
Bore pitch93 mm (3.66 in)
Bore75 mm (2.95 in)
Stroke90 mm (3.54 in)
Compression ratio — 11.0:1
Power86 kW (117 PS; 115 hp) at 6000 rpm
Torque154 N⋅m (114 lb⋅ft) at 4000 rpm

Applications

See also

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References

  1. 1 2 3 4 5 "Newly Developed Compact, Aluminum Gasoline Engine" Archived 2007-09-29 at the Wayback Machine , Mitsubishi Motors technical review
  2. "Mitsubishi Motors Corporation and DaimlerChrysler AG have signed agreements concerning the production halt of the smart forfour", Mitsubishi Motors press release
  3. 1 2 "Colt Plus gets MDC Power", Jack Yamaguchi, SAE International
  4. "Up Hatchback". BAIC Chile. Archived from the original on 2015-08-10. Retrieved 2015-06-15.