Design of interference fits via finite element method |
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Authors: | Y. Zhang B. McClain X. D. Fang |
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Affiliation: | Department of Mechanical Engineering, Iowa State University, Ames, IA 50011, USA |
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Abstract: | Studies of interference fits in ring gear-wheel connections show that the traditional design method based on thick-wall cylinder theory has some limitations. Application of the finite element method (FEM) for the three-dimensional stress analysis of interference fitted connections gives more complete and accurate results than the traditional method. An improved design method utilizes two safety factors, λs and λp, providing a new approach for evaluating the quality of interference fits. A tolerancing method utilizing the Imax and Imin curves provides a quantitative guideline for interference fit design. The selective assembly method combined with the FEM-based method for interference fit design provides an effective approach to achieve more reliable interference-fitted connections and more precise assembly with lower manufacturing cost. |
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Keywords: | Tolerance design Interference fits Finite element method Selective assembly |
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