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REDUCTION OF POSITION ERROR OF KINEMATIC MECHANISMS BY TOLERANCE ANALYSIS METHOD, PART I: THEORY

Author:
بهنام معتکف ایمانی
,
مسعود پور
,
Behnam Moetakef Imani
Year
: 2007
Abstract: It is practically impossible to manufacture a component exactly with the required dimensions.

Therefore for each part dimension, a tolerance limit is prescribed. Also for all assemblies, a limit of variation is

prescribed for a specified parameter of the assembly which is referred to as the assembly specification. In this

research the Direct Linearization Method (DLM) is used to determine the distribution limit of the assembly

specification in terms of part tolerances. It has been assumed that the assembly is a mechanism with flexible

parts; therefore, in addition to manufacturing tolerances, external loading will impose external variations on part

dimensions which result in extra errors on assembly specification. The effect of flexible components will cause

change in mean, variance and correlation of the assembly specification. FEM is used to model the mechanism in

order to compute part dimension variations under external loading. The percent contribution of each input

variable on the assembly specification is obtained by the proposed multiple linear regression model. It has been

proposed an optimization algorithm to assign part tolerances which minimizes manufacturing expenses while the

maximum error of the assembly specification is kept within the desired limit.
URI: https://libsearch.um.ac.ir:443/fum/handle/fum/3374910
Keyword(s): Tolerance Analysis,FEM,Multiple Regression
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    REDUCTION OF POSITION ERROR OF KINEMATIC MECHANISMS BY TOLERANCE ANALYSIS METHOD, PART I: THEORY

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contributor authorبهنام معتکف ایمانیen
contributor authorمسعود پورen
contributor authorBehnam Moetakef Imanifa
date accessioned2020-06-06T13:55:24Z
date available2020-06-06T13:55:24Z
date copyright10/25/2007
date issued2007
identifier urihttps://libsearch.um.ac.ir:443/fum/handle/fum/3374910
description abstractIt is practically impossible to manufacture a component exactly with the required dimensions.

Therefore for each part dimension, a tolerance limit is prescribed. Also for all assemblies, a limit of variation is

prescribed for a specified parameter of the assembly which is referred to as the assembly specification. In this

research the Direct Linearization Method (DLM) is used to determine the distribution limit of the assembly

specification in terms of part tolerances. It has been assumed that the assembly is a mechanism with flexible

parts; therefore, in addition to manufacturing tolerances, external loading will impose external variations on part

dimensions which result in extra errors on assembly specification. The effect of flexible components will cause

change in mean, variance and correlation of the assembly specification. FEM is used to model the mechanism in

order to compute part dimension variations under external loading. The percent contribution of each input

variable on the assembly specification is obtained by the proposed multiple linear regression model. It has been

proposed an optimization algorithm to assign part tolerances which minimizes manufacturing expenses while the

maximum error of the assembly specification is kept within the desired limit.
en
languageEnglish
titleREDUCTION OF POSITION ERROR OF KINEMATIC MECHANISMS BY TOLERANCE ANALYSIS METHOD, PART I: THEORYen
typeConference Paper
contenttypeExternal Fulltext
subject keywordsTolerance Analysisen
subject keywordsFEMen
subject keywordsMultiple Regressionen
identifier linkhttps://profdoc.um.ac.ir/paper-abstract-1012968.html
conference titleConference on Applications and Design in Mechanical Engineeringen
conference locationCANGARfa
identifier articleid1012968
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