Exact(7)
Further, the EDX spectra of H2S-treated TRGC composites were recorded to monitor the changes in elemental composition (Fig. 7).
Micro hardness and the strength values from the produced Al/GO composites were recorded.
The conductivities of all composites were recorded from room temperature to 150 °C and the thermal stability versus dopant highlighted.
The impact damages and the impact load vs. displacement curves of the sandwich composites were recorded, through which the energy absorption and the impact damage mechanisms could be analyzed.
Mechanical properties of these composites were recorded by a Triton DMTA (Triton Instrument, UK) instrument.
UV vis spectra of ZnO CS composites were recorded using a Varian Cary 300 Bio UV vis spectrophotometer.
Similar(53)
No difference in the impact strength of the two composites was recorded considering the statistical variation.
Moisture content of each composites was recorded over exposure time and the changes of mechanical properties i.e. flexural and compression properties were also recorded.
The porosity of the prepared CML T composites was recorded on an X-ray diffractometer using Eq. (3) (Shilin et al. 2012), P = [1 - (n2 - 1/nT2 - 1)] times 100,, (3)where P is the porosity of the material, nT the refractive index of the material and n the calculated value of the material.
Wide angle XRD pattern of the hybrid composite were recorded with the Riguku co D/max X-ray diffractometer for which Cu Kα radiation.
FT-IR spectra of the cellulose-POSS-silica/gold hybrid composite were recorded by using the Brucker, IF5-859 spectrometer from Digilab (Cambridge, USA) with KBr beam splitter and detector at 8 cm−1 resolution.
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