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6. Mitsubishi. Problems per 100 vehicles: 167 Car buyers looking at 2024 models have some extra incentives. Not only did Mitsubishi finish sixth on the list for reliability, but the manufacturer ...
Within the engine, Mitsubishi used an offset angle crankshaft that reduces friction, therefore noise and vibration, allowing the engine to run smoothly and quietly at all engine speeds. [ 1 ] [ 11 ] To meet the requirements of global emissions standards, Mitsubishi developed a new catalyst system that combines a Diesel Oxidation Catalyst (DOC ...
Mitsubishi used a timing chain instead of a belt for better reliability and iridium spark plugs to lower emissions and to help extend major service intervals for lower cost of ownership. To reduce weight, Mitsubishi used a plastic cam cover and intake manifold and double-layer stainless steel exhaust manifold.
Mitsubishi claims that this new 4N14 diesel engine is reliable at low revs and smooth acceleration until high revs. With reduced pressure and temperature in the cylinder, it achieves a low compression ratio of 14.9. The Mitsubishi Delica D:5 with Clean Diesel engine has a fuel consumption of 13.6 km/L based on JC08 Mode cycle. [63]
The Mitsubishi 4J1 engine is a range of all-alloy straight-4 engines. The main goal was declared as reduction on-road CO 2 emission on new vehicles. [ 1 ] According to cars specifications fuel consumption also was improved.
Mitsubishi's smallest powerplants, most commonly found in their earliest models in the 1960s: 1955-1962 — ME7/15/18 — This was Mitsubishi's first air-cooled OHV engine over one liter's displacement. In 1955, the 1276 cc ME7 was developed for the 1.5-tonne (3,310 lb) Mitsubishi TM7.
The latest version was used in the Mitsubishi Eclipse GT and Galant. Output in 2004 was 210 hp (157 kW; 213 PS) at 5500 rpm with 278 N⋅m (205 lbf⋅ft) of torque at 4000 rpm. In the older version, used in many Chrysler models since 1987, this V6 was an SOHC 12-valve developing 141 hp (105 kW; 143 PS) at 5000 rpm and 172 lb⋅ft (233 N⋅m) of ...
This is a list of vehicles that have been considered to be the result of badge engineering (), cloning, platform sharing, joint ventures between different car manufacturing companies, captive imports, or simply the practice of selling the same or similar cars in different markets (or even side-by-side in the same market) under different marques or model nameplates.
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