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  2. Chrysler 1.8, 2.0 & 2.4 engine - Wikipedia

    en.wikipedia.org/wiki/Chrysler_1.8,_2.0_&_2.4_engine

    The Chrysler 1.8, 2.0, and 2.4 are inline-4 engines designed originally for the Dodge and Plymouth Neon compact car. These engines were loosely based on their predecessors, the Chrysler 2.2 & 2.5 engine, sharing the same 87.5 mm (3.44 in) bore. The engine was developed by Chrysler with input from the Chrysler-Lamborghini team that developed the ...

  3. Chrysler SOHC V6 engine - Wikipedia

    en.wikipedia.org/wiki/Chrysler_SOHC_V6_engine

    The single overhead cam V6 engine introduced in 1993. It was derived from Chrysler's first homegrown front-wheel drive V6, the Chrysler 3.3 engine. The SOHC V6 has been replaced by the Chrysler Pentastar engine . There are three major variants of this basic design: the 3.5 L, 3.2 L, and 4.0 L. Additionally, a 2.7 L DOHC version was developed.

  4. Chrysler 2.2 & 2.5 engine - Wikipedia

    en.wikipedia.org/wiki/Chrysler_2.2_&_2.5_engine

    The first version of this engine family was a normally aspirated 2.2 L (134 cu in) unit. Developed under the leadership of Chief Engineer – Engine Design and Development Willem Weertman and head of performance tuning Charles "Pete" Hagenbuch, who had worked on most of Chrysler's V-8 engines and the Chrysler Slant-6 engine, [1] it was introduced in the 1981 Dodge Aries, Dodge Omni, Plymouth ...

  5. Chrysler 3.3 & 3.8 engines - Wikipedia

    en.wikipedia.org/wiki/Chrysler_3.3_&_3.8_engines

    The 3.3 has a timing chain, and is an interference engine meaning that the valves will collide with the pistons in the event of a timing chain failure. Vehicles using the 3.3 include: 1990–1993 Dodge Dynasty, Chrysler New Yorker, Chrysler Imperial, (replaced the 3.0 L Mitsubishi 6G72 engine) 1990–2010 Chrysler minivans

  6. Variable valve timing - Wikipedia

    en.wikipedia.org/wiki/Variable_valve_timing

    Variable valve timing ( VVT) is the process of altering the timing of a valve lift event in an internal combustion engine, and is often used to improve performance, fuel economy or emissions. It is increasingly being used in combination with variable valve lift systems. There are many ways in which this can be achieved, ranging from mechanical ...

  7. Timing belt (camshaft) - Wikipedia

    en.wikipedia.org/wiki/Timing_belt_(camshaft)

    The advantages of timing belts are typically a lower cost, reduced friction losses, [citation needed] less noise and that belts traditionally do not require lubrication. [3] The main disadvantage is that belts wear over time, therefore belt replacement is recommended at specific intervals.

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