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  2. Nissan SD engine - Wikipedia

    en.wikipedia.org/wiki/Nissan_SD_engine

    The SD33T is a turbocharged 3.2 L; 198.0 cu in (3,245 cc) straight-six diesel engine that was used in 1980 for the powerplant in 6,400 International Scout II's. All were equipped with a T-19 manual transmission. From July 1983 until 1987, SD33T engines were fitted to the Nissan Patrol MK (160 series - model 2). The SD33T produces 110 PS (81 kW ...

  3. Nissan TD engine - Wikipedia

    en.wikipedia.org/wiki/Nissan_TD_engine

    The Nissan TD series is a series of diesel engines manufactured by Nissan. All TD-series engines are inline engines ; most versions are four-cylinders aside from the six-cylinder TD42. They have cast iron blocks and crossflow heads ; the combustion chamber design is a swirl-chamber design with indirect injection and a gear driven cam. [ 1 ]

  4. Nissan Patrol - Wikipedia

    en.wikipedia.org/wiki/Nissan_Patrol

    The Nissan Patrol (Japanese: 日産・パトロール, Hepburn: Nissan Patorōru) is a series of off-road vehicles and full-size SUVs manufactured by Nissan in Japan since 1951 and sold throughout the world. It is Nissan's longest running series of models.

  5. Hydraulic Body Motion Control System - Wikipedia

    en.wikipedia.org/wiki/Hydraulic_Body_Motion...

    The Hydraulic Body Motion Control System (HBMC) technology was employed initially in the Nissan Patrol, and subsequently the Infiniti QX. The system was invented and developed by Nissan Motors and was tested on the Nissan Patrol in the Middle East. The system helps reduce body lean while turning for a more comfortable ride.

  6. List of Nissan engines - Wikipedia

    en.wikipedia.org/wiki/List_of_Nissan_engines

    Nissan uses a straightforward method of naming their automobile engines. The first few letters identify the engine family. The following digits are the displacement in deciliters. Finally, the trailing letters encode the main engine features, and are ordered based on the type of feature.

  7. Shaft alignment - Wikipedia

    en.wikipedia.org/wiki/Shaft_alignment

    Shaft alignment is the process of aligning two or more shafts with each other to within a tolerated margin. The resulting fault if alignment is not achieved within the demanded specifications is shaft misalignment, which may be offset or angular. Faults can lead to premature wear and damage to systems.