Title of article
Studying the effect of stress relaxation and creep on lattice strain evolution of stainless steel under tension Original Research Article
Author/Authors
H. Wang، نويسنده , , B. Clausen، نويسنده , , C.N. Tomé، نويسنده , , P.D. Wu، نويسنده ,
Issue Information
دوهفته نامه با شماره پیاپی سال 2013
Pages
10
From page
1179
To page
1188
Abstract
Due to relatively long associated count times, in situ strain measurements using neutron diffraction requires periodic interruption of the test to collect the diffraction data by holding either the stress or the strain constant. As a consequence, stress relaxation or strain creep induced by the interrupts is inevitable, especially at loads which are close to the flow stress of the material. An in situ neutron diffraction technique, which consists in performing the diffraction measurements using continuous event-mode data collection while conducting the mechanical loading monotonically with a very slow loading rate, is proposed here to avoid the effects associated with interrupts. The lattice strains in stainless steel under uniaxial tension are measured using the three techniques, and the experimental results are compared to study the effect of stress relaxation and strain creep on the lattice strain measurements. The experimental results are simulated using both the elastic viscoplastic self-consistent (EVPSC) model and the elastic plastic self-consistent (EPSC) model. Both the EVPSC and EPSC models give reasonable predictions for all the three tests, with EVPSC having the added advantage over EPSC that it allows us to address the relaxation and creep effects in the interrupted tests.
Keywords
Stainless steel , Neutron diffraction , Lattice strain , relaxation , Creep
Journal title
ACTA Materialia
Serial Year
2013
Journal title
ACTA Materialia
Record number
1146780
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