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  2. Engineering fit - Wikipedia

    en.wikipedia.org/wiki/Engineering_fit

    Engineering fits are generally used as part of geometric dimensioning and tolerancing when a part or assembly is designed. In engineering terms, the "fit" is the clearance between two mating parts, and the size of this clearance determines whether the parts can, at one end of the spectrum, move or rotate independently from each other or, at the other end, are temporarily or permanently joined.

  3. Limits and fits - Wikipedia

    en.wikipedia.org/wiki/Limits_and_fits

    There are three main types of fit: Clearance Fit: a fit between mating parts with positive space in-between. Parts will freely move between each other. Transition Fit: a fit between mating parts between the clearance and interference fit. Parts fit together easily enough so that force isn't required, but will still hold together on it's own.

  4. Fit (manufacturing) - Wikipedia

    en.wikipedia.org/wiki/Fit_(manufacturing)

    The maximum clearance of a fit is the difference between the upper bound of the orifice diameter and the lower bound of the shaft diameter. maximum clearance = maximum orifice diameter – minimum shaft diameter. The minimum clearance meanwhile is the difference between the lower bound of the orifice diameter and the upper bound of the shaft ...

  5. Clearance fit - Wikipedia

    en.wikipedia.org/?title=Clearance_fit&redirect=no

    Language links are at the top of the page across from the title.

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  7. Hydraulic clearance - Wikipedia

    en.wikipedia.org/wiki/Hydraulic_clearance

    Leakage in narrow clearance, spool valve. Hydraulic clearance. Flow in narrow clearances are of vital importance in hydraulic system component design. The flow in a narrow circular clearance of a spool valve can be calculated according to the formula below if the height is negligible compared to the width of the clearance, such as most of the clearances in hydraulic pumps, hydraulic motors ...

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