Standard Uncertainty Evaluation for Dynamic Tensile Properties of Auto-Body Steel-Sheets

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This paper is concerned with the standard uncertainty of the true stress-true strain curve as the tensile properties of auto-body steel sheets at intermediate strain rates ranged from 1 to 100 s(-1). A procedure to obtain true stress-true strain data is properly designed for the experiment and data acquisition. An analytic model is then established to evaluate the standard uncertainty of the measurand. The measurand in this case is the true stress which is a function of the input quantities: the tensile load; the initial length, the thickness and the width of a specimen; and the deformed length of a specimen. Sources of uncertainties of the input quantities are evaluated for the high speed tensile test with their associated sensitivity coefficients. Uncertainty of the stress data acquired is also considered in the procedure of the fast Fourier transform (FFT) smoothing process used to remove unnecessary signals acquired from experiments. Image analysis using a high speed camera is carried out to measure deformation of the specimen during high speed tensile tests with proper uncertainty evaluation. A combined standard uncertainty is evaluated from the uncertainties of the input quantities as well as the influence factor for the true stress of auto-body steel sheets at intermediate strain rates. Consequently, the true stress-true strain data are obtained with proper standard uncertainty evaluation.
Publisher
SPRINGER
Issue Date
2014-07
Language
English
Article Type
Article
Keywords

STRAIN-RATES; COMPOSITES; BEHAVIOR; METALS

Citation

EXPERIMENTAL MECHANICS, v.54, no.6, pp.943 - 956

ISSN
0014-4851
DOI
10.1007/s11340-014-9847-5
URI
http://hdl.handle.net/10203/189399
Appears in Collection
ME-Journal Papers(저널논문)
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