Fits, Limits, and Tolerances: Difference between revisions

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*[https://youtu.be/wvVMs2BZdeU A Video by the YouTube Channel "Tabletop Machine Shop" Titled "Limits and Fits: The ISO System" ] (Goes over the '''PROPER''' metric sytem, unlike the others shown above ''which use all the fraction of a thousandths of an inch'' mess)
*[https://youtu.be/wvVMs2BZdeU A Video by the YouTube Channel "Tabletop Machine Shop" Titled "Limits and Fits: The ISO System" ] (Goes over the '''PROPER''' metric sytem, unlike the others shown above ''which use all the fraction of a thousandths of an inch'' mess)
*[https://www.rapiddirect.com/blog/types-of-fits/ An Article by "Rapid Direct" Titled "Types of Fits: How to Choose the Right Fits in Engineering" ] (Has Nice Infographics, Probably will embed some)
*[https://www.rapiddirect.com/blog/types-of-fits/ An Article by "Rapid Direct" Titled "Types of Fits: How to Choose the Right Fits in Engineering" ] (Has Nice Infographics, Probably will embed some)
*[http://home.iitk.ac.in/~nsinha/Metrology.pdf A Slideshow by The Indian Institute of Technology, Kanpur Titled "Engineering Metrology - N. Sinha - Mechanical Engineering Department - IIT Kanpur" ]

Revision as of 21:44, 21 August 2021

Basics

  • This page goes over Fits, Limits, and Tolerances, and the application of them in design
  • Essentially nothing is perfect, and getting something closer to perfect is costly/time intensive (see degrees of flatness / Lapping and whatnot) so you define what is acceptable for the application (ie specific hole for a shaft, etc)
  • By doing this ahead of time, you take the need for "fiddling" out of the assembly / iterative design process
  • Press Fit is a common example
  • A Fit is a relationship between two components, typically based on a Hole and a Shaft, such as a bolt or rivet holding components together, a rod in a bearing, or a piston in an engine
  • The Limits are the upper and lower extremes of what is within the desired tolerance
  • The Tolerance is the total permissible variation of size
  • The Nominal Size is what is used in the CAD (ie the perfect/impossible dimension that you get as close to as the tolerance dictates)

Internal Links

External Links