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  2. Straight engine - Wikipedia

    en.wikipedia.org/wiki/Straight_engine

    A straight engine is easier to build than an equivalent flat engine or V engine, as it uses one cylinder head rather than two. Inline engines are also narrower than flat engines or V engines; however, they are longer and can be taller. The engine balance characteristics of a straight engine depend on the number of cylinders and the firing interval.

  3. Cylinder head - Wikipedia

    en.wikipedia.org/wiki/Cylinder_head

    Most modern engines with a "straight" (inline) layout today use a single cylinder head that serves all the cylinders. Engines with a "V" layout or "flat" layout typically use two cylinder heads (one for each cylinder bank ), however a small number of 'narrow-angle' V engines (such as the Volkswagen VR5 and VR6 engines) use a single cylinder ...

  4. Smith machine - Wikipedia

    en.wikipedia.org/wiki/Smith_machine

    It was spotted by Rudy Smith, who commissioned Paul Martin to improve it. [11] [12] Smith then installed the modified model in a gym he was managing at the time, Vic Tanny's gym in Los Angeles. [13] By the end of the 1950s, Rudy Smith was an executive in Tanny's chain of gyms, and the Smith machine was being manufactured and sold more widely ...

  5. Talk:Smith machine - Wikipedia

    en.wikipedia.org/wiki/Talk:Smith_machine

    I think he may be wondering what is the weight difference between lifting on a smith machine versus an actual free weight. From working out with a couple of different lifters in the gym, it seems apparent that those who can lift "225lbs" on the Smith Machine(3-5 reps) can only seem to lift about 185lbs (1-3 reps) on a regular barbell.

  6. Ball-peen hammer - Wikipedia

    en.wikipedia.org/wiki/Ball-peen_hammer

    The head of a diagonal-peen hammer, as the name implies, has a wedge set at a 45° angle from the handle; it can be a left angle or a right angle, and some peen hammers have a double diagonal wedge [3] for ergonomic reasons. [7] They are commonly used by blacksmiths during the forging process to deliver blows for forging or to strike other ...

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  8. Rake angle - Wikipedia

    en.wikipedia.org/wiki/Rake_angle

    In machining, the rake angle is a parameter used in various cutting processes, describing the angle of the cutting face relative to the workpiece. There are three types of rake angles: positive, zero or neutral, and negative. Positive rake: A tool has a positive rake when the face of the cutting tool slopes away from the cutting edge at inner side.

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