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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.
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.
The tightness of fit is controlled by amount of interference; the allowance (planned difference from nominal size). Formulas exist [2] to compute allowance that will result in various strengths of fit such as loose fit, light interference fit, and interference fit. The value of the allowance depends on which material is being used, how big the ...
Liner bushings, sometimes called master bushings, are permanently installed into the jig and accept liners that can easily be replaced. Press-fit wearing bushings are used in short run applications or in applications where the tolerance on a hole location is so tight that it cannot facilitate the use of a liner bushing. [3]
H7/h6 is a very common standard tolerance which gives a tight fit. The tolerances work in such a way that for a hole H7 means that the hole should be made slightly larger than the base dimension (in this case for an ISO fit 10+0.015−0, meaning that it may be up to 0.015 mm larger than the base dimension, and 0 mm smaller).
Class 3 threads are medium fit, still quite common and used for closer tolerances on high quality work. Class 4 threads previously designated a close fit for even tighter tolerances, but this classification is now obsolete. Class 5 fit is an interference thread, requiring the use of a wrench for turning. These can be seen in applications like ...
ISO general purpose metric screw threads – Part 51: External screw threads for transition fits (former: screw threads for interference fit); tolerances, limit deviations, limits of sizes: Active: DIN 13-52: ISO general purpose metric screw threads – Part 52: Multi-start thread tolerances and deviation of profile: Active: DIN 15-2
Press fittings with appropriate and region-specific certification may be used for gas lines. Stainless steel and carbon steel press fittings can withstand up to 16 bars of pressure. A disadvantage of press fittings is the dead space between the pipe and the fitting, which can possibly rule out use for beverage and food applications.
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