fast fourier transforms (fft) using custom routines in Search Results


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Meso Scale Diagnostics LLC full-field elasto-viscoplastic fast fourier transform (evp-fft) model
VM stress versus strain curve from uniaxial tensile loading on 316L stainless steel dog-bone samples. In dots, the experimental curve is obtained during in-situ neutron diffraction measurements. In solid black, the experimental curve is obtained during ex-situ monotonic loading. The dashed gray line (overlapping the black line) is the macroscopic FE simulation fit, and the dot-dash line is the <t>EVP-FFT</t> fit
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Sony digital fast fourier transform (fft) analyzer model 3056
VM stress versus strain curve from uniaxial tensile loading on 316L stainless steel dog-bone samples. In dots, the experimental curve is obtained during in-situ neutron diffraction measurements. In solid black, the experimental curve is obtained during ex-situ monotonic loading. The dashed gray line (overlapping the black line) is the macroscopic FE simulation fit, and the dot-dash line is the <t>EVP-FFT</t> fit
Digital Fast Fourier Transform (Fft) Analyzer Model 3056, supplied by Sony, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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VM stress versus strain curve from uniaxial tensile loading on 316L stainless steel dog-bone samples. In dots, the experimental curve is obtained during in-situ neutron diffraction measurements. In solid black, the experimental curve is obtained during ex-situ monotonic loading. The dashed gray line (overlapping the black line) is the macroscopic FE simulation fit, and the dot-dash line is the <t>EVP-FFT</t> fit
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InfoMax Inc fast fourier transform fft
VM stress versus strain curve from uniaxial tensile loading on 316L stainless steel dog-bone samples. In dots, the experimental curve is obtained during in-situ neutron diffraction measurements. In solid black, the experimental curve is obtained during ex-situ monotonic loading. The dashed gray line (overlapping the black line) is the macroscopic FE simulation fit, and the dot-dash line is the <t>EVP-FFT</t> fit
Fast Fourier Transform Fft, supplied by InfoMax Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Image Search Results


VM stress versus strain curve from uniaxial tensile loading on 316L stainless steel dog-bone samples. In dots, the experimental curve is obtained during in-situ neutron diffraction measurements. In solid black, the experimental curve is obtained during ex-situ monotonic loading. The dashed gray line (overlapping the black line) is the macroscopic FE simulation fit, and the dot-dash line is the EVP-FFT fit

Journal: Jom (Warrendale, Pa. : 1989)

Article Title: Intergranular Strain Evolution During Biaxial Loading: A Multiscale FE-FFT Approach

doi: 10.1007/s11837-017-2299-5

Figure Lengend Snippet: VM stress versus strain curve from uniaxial tensile loading on 316L stainless steel dog-bone samples. In dots, the experimental curve is obtained during in-situ neutron diffraction measurements. In solid black, the experimental curve is obtained during ex-situ monotonic loading. The dashed gray line (overlapping the black line) is the macroscopic FE simulation fit, and the dot-dash line is the EVP-FFT fit

Article Snippet: Mesoscale models such as the mean-field elasto-plastic self-consistent model, , the mean-field elasto-viscoplastic self-consistent model, the full-field crystal plasticity finite element (FE) model, the full-field elasto-viscoplastic fast Fourier transform (EVP-FFT) model, etc., have been used to understand the lattice strain evolution during uniaxial loading for different material systems.

Techniques: In Situ, Ex Situ