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Thickness, pressure and temperature of the composites were monitored with applied vacuum pressure and oven temperature during the experiments.
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The evolution of damage during tensile straining of these composites is monitored using two indirect methods; namely by tracking changes in density and in Young's modulus.
Experimentally, damage accumulation in random glass fiber polyester composites was monitored by a videoextensometry technique able to control the local strain rate.
Moreover, the fatigue damage of glass fiber reinforced polymer (GFRP) composites was monitored using CNTs (Reda Taha et al. 2014).
The presence of different analytes of the conjugated nano composite was monitored using Uv-Vis spectrophotometer (UV - 2600) at different wavelength ranging from 300 to 800 nm.
The surface and cross-sectional morphologies of PVA/PAN composite membranes were monitored by scanning electron microscope (S 4700, Hitachi).
The cross section and surface morphology of the two composite window layers were monitored by using scanning electron microscopy and the result shows that the pulsed laser deposited composite window layers with good crystallinity are stacking together as the design.
Physicochemical parameters were monitored by taking composite samples over 24 h and grab samples every week.
To evaluate the removal of radioactive 90Sr, the adsorption behavior of CuO NPs/Ag-clinoptilolite zeolite composite was assessed and those progresses were monitored by LSC instrument.
The flexural (before and after cyclic loading up to 50% of ultimate load) and indentation behaviour of pultruded jute/glass and kenaf/glass hybrid polyester composites has been monitored using acoustic emission, and compared with that of kenaf fiber composites.
The degradation of the mechanical and aesthetical performance of the composites has been monitored through a process of accelerated artificial ageing in a climatic chamber, simulating the combined effect of high temperature, freeze thaw cycles, moisture and ultraviolet (UV) radiation.
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