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Aug 20, 2026 - Publications
Töpler, Janusch; Tapia Camú, Cristóbal; Vida, Christoffer; Vafadar Estiar, Farid, 2026, "Replication Data for: Verification of tensile stresses considering a orthotropic size effect in finite element based design", https://doi.org/10.18419/DARUS-6341, DaRUS, V1
This repository contains the full dataset used for the analysis shown in the related paper. Additionally, figures with the result of the model fitting against different datasets are shown, which due to space restrictions could not be added to the main paper. The complementary data is structured in different folders in the following way: fit_size_ef...
Adobe PDF - 246.4 KB - MD5: 70834d4ffc4c02f59c8d092ed74a499d
Comparison of the numerically fitted size effects of Frese et al., Vafadar et al., and Vida et al. (see Table 4) to the experimental data listed in Table 1 on the 5%-quantile level. The bending strengths are plotted over the relative volume $V/V_{m,\text{ref}}$ referring to four-point-bending with dimensions $\ell_1 = \ell_2$ = 3600 mm and h = 600...
HTML - 4.9 MB - MD5: 1f98830ce53680224b87c280ad6d12e6
Results
Fitting of the orthotropic size effect model to the numerical data corresponding to a strength class of at the 5%-quantile level. The bending strengths are plotted over the member lengths and depths. The size effect is described in Eq. (9) of the related paper Töpler et al., 2026), and was fitted with maximum likelihood estimation to the numeric...
HTML - 5.0 MB - MD5: fc8f4d0480a8ebe361139f4b3059f71e
Results
Fitting of the orthotropic size effect model to the numerical data corresponding to a strength class of at the 5%-quantile level. The bending strengths are plotted over the member lengths and depths. The size effect is described in Eq. (9) of the related paper Töpler et al., 2026), and was fitted with maximum likelihood estimation to the numeric...
Adobe PDF - 73.0 KB - MD5: 109b44493f967843b81b11955da49314
Results
Fitting of the orthotropic size effect model to the numerical data corresponding to a strength class of at the 5%-quantile level. The bending strengths are plotted over the member lengths and depths. The size effect is described in Eq. (9) of the related paper Töpler et al., 2026), and was fitted with maximum likelihood estimation to the numeric...
Adobe PDF - 68.9 KB - MD5: f4bc668c09dc9179a0d527bc1e95607e
Results
Fitting of the orthotropic size effect model to the numerical data corresponding to a strength class of at the 5%-quantile level. The bending strengths are plotted over the member lengths and depths. The size effect is described in Eq. (9) of the related paper Töpler et al., 2026), and was fitted with maximum likelihood estimation to the numeric...
HTML - 4.9 MB - MD5: ccce80db835c4a7fa2245c8a1a2af35d
Results
Fitting of the orthotropic size effect model to the numerical data corresponding to a strength class of at the mean level. The bending strengths are plotted over the member lengths and depths. The size effect is described in Eq. (9) of the related paper Töpler et al., 2026), and was fitted with maximum likelihood estimation to the numerical data...
HTML - 5.0 MB - MD5: 114f0e86bd98509e3356df4b8c05a180
Results
Fitting of the orthotropic size effect model to the numerical data corresponding to a strength class of at the mean level. The bending strengths are plotted over the member lengths and depths. The size effect is described in Eq. (9) of the related paper Töpler et al., 2026), and was fitted with maximum likelihood estimation to the numerical data...
Adobe PDF - 73.4 KB - MD5: f7112b356429f03aeeb9cfa0b77a8c65
Results
Fitting of the orthotropic size effect model to the numerical data corresponding to a strength class of at the mean level. The bending strengths are plotted over the member lengths and depths. The size effect is described in Eq. (9) of the related paper Töpler et al., 2026), and was fitted with maximum likelihood estimation to the numerical data...
Adobe PDF - 70.1 KB - MD5: 089499fceb247362a8a8c49efa10cf0a
Results
Fitting of the orthotropic size effect model to the numerical data corresponding to a strength class of at the mean level. The bending strengths are plotted over the member lengths and depths. The size effect is described in Eq. (9) of the related paper Töpler et al., 2026), and was fitted with maximum likelihood estimation to the numerical data...
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