The paper proposes a method for tolerance analysis on planar structures and mechanisms. As for generic assemblies, deviations on a functional requirement involving different parts are calculated from tolerance specifications on individual part dimensions. For a linkage the requirement is usually the position or orientation of a given element (link, joint) with respect to a fixed frame, and the solution of the problem has some additional difficulties such as the correct treatment of joint clearances. The paper points out that, for underconstrained or exactly constrained linkages, tolerance analysis can be treated by analogy with a force analysis problem. The static analogy is first introduced and justified from well-known concepts of classical mechanics, and then translated into a calculation procedure that is able to evaluate the propagation of deviations from different types of dimensions (lengths of links, diameters of pins and holes at joints), as well as from linear and angular actuators. Problems of high complexity are shown to be easily solvable by the proposed method by means of available software tools for the structural analysis of planar frames and trusses.

Force analysis as a support to computer-aided tolerancing of planar linkages

ARMILLOTTA, ANTONIO
2015-01-01

Abstract

The paper proposes a method for tolerance analysis on planar structures and mechanisms. As for generic assemblies, deviations on a functional requirement involving different parts are calculated from tolerance specifications on individual part dimensions. For a linkage the requirement is usually the position or orientation of a given element (link, joint) with respect to a fixed frame, and the solution of the problem has some additional difficulties such as the correct treatment of joint clearances. The paper points out that, for underconstrained or exactly constrained linkages, tolerance analysis can be treated by analogy with a force analysis problem. The static analogy is first introduced and justified from well-known concepts of classical mechanics, and then translated into a calculation procedure that is able to evaluate the propagation of deviations from different types of dimensions (lengths of links, diameters of pins and holes at joints), as well as from linear and angular actuators. Problems of high complexity are shown to be easily solvable by the proposed method by means of available software tools for the structural analysis of planar frames and trusses.
2015
Finite element analysis; Joint clearance; Mechanism; Tolerance analysis; Truss structure; Mechanical Engineering; Mechanics of Materials; Computer Science Applications1707 Computer Vision and Pattern Recognition; Bioengineering
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11311/980750
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