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Both the reflection and transmission of the proposed specimens exposed to EM wave are evaluated by free space measurement techniques at the same frequency range.
Considering different biaxial loading conditions it is possible to cover a wide range of stress triaxialities and Lode parameters in tension, shear and compression domains and consequently the newly proposed specimens facilitate a controlled study of damage and fracture at different stress states.
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The proposed specimen is validated using oxide coatings on steel substrates prepared via the thermal spray technique.
Very good agreement with the burst tests is observed, thus validating the utility of the proposed specimen design and of the SRDD model.
Experimental tests were carried out, using the proposed specimen configuration at different strain rates in order to investigate the strain rate effects using a modified version of the Split Hopkinson Pressure Bar.
The proposed specimen is very suitable for mixed mode fracture experiments on brittle materials, because three-parameter fracture criteria (based on KI, KII, and T) have been proven to be more accurate in estimating the mixed mode fracture resistance of engineering materials.
The results show that the maximum load of the proposed specimen with a 300 mm un-bonded length is increased by 15.8%, and the residual displacement was 9% smaller than that of the of the control specimen because of the un-bond length between concrete and SBFCB.
A calibration strategy by using four specimen tests is proposed, and specimen tests are performed to calibrate and validate the fracture criterion for Q345 steel.
Mechanical tests are conducted to compare the engineering mechanical properties (yield and ultimate tensile stress, uniform and total elongation values) and plastic behavior of the proposed miniature specimen with common specimen types for irradiation testing.
To verify the proposed model, specimens made of carbon/bismaleimide composites with two typical lay-ups were tested under tension and compression loadings, respectively, in which both dry and moisture specimens were tested at 25 °C, and only moisture specimens were tested at 75 °C and 105 °C.
To improve recognition of ETEC outbreaks, Dalton proposed that specimens from outbreaks of gastroenteritis that meet certain criteria be referred for ETEC testing at a public health reference laboratory.
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Since I tried Ludwig back in 2017, I have been constantly using it in both editing and translation. Ever since, I suggest it to my translators at ProSciEditing.

Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com