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A comparative study on mechanical properties and microstructure of 316L austenitic stainless steel between solution treated specimen and hot rolled specimen was conducted.
A cyclic pushover test of a three-story steel plate shear wall (SPSW) specimen was conducted to investigate the seismic behavior of this system when plastic hinge was predicted to develop along the span of horizontal boundary elements (HBEs).
Analysis of each specimen was conducted using a replication procedure, and the mean of the repeated measurements was taken as the final measure.
Rastor imaging (five images per specimen) was conducted on four specimens (n = 20) utilizing a fluorescent microscope (Nikon Eclipse TE2000-S), and cells were manually counted to quantify viability.
Examination of the specimen was conducted after the cells had been washed three times with serum-free minimum essential medium, fixed with 2% (w/v) paraformaldehyde, 2.5% (w/v) glutaraldehyde in 0.1 M sodium cacodylate buffer pH 7.4, and dehydrated in a series of graded ethanol concentrations.
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For validation, TMFCG experiments on corner-crack specimen were conducted.
A specially designed torsion test of a double bridge specimen is conducted to generate the points near pure shear conditions.
In order to validate the model, experimental programs are developed for model inputs and outputs, and microstructural simulations of a two-phase mixture specimen are conducted.
By using a 50 mm-diameter conic variable cross-sectional Split Hopkinson Pressure Bar (SHPB), the dynamic spalling test on Φ48mm × 400 mm cylindrical UHPCC specimen is conducted.
Geometric imperfection measurements for each specimen were conducted by means of a calibrated electric guideway, and residual stress distributions in the built-up sections were determined by means of the sectioning method.
A new characterization method that the shape of the deformed composite specimen is conducted in virtue of the coordinate measuring machine through contact method is adopted to experimentally measure the process-induced distortions in unsymmetrical laminate plates.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com