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Glass transition temperatures were obtained with storage modulus, loss modulus and tan delta curves.
The influence of temperature and molecular weight on the storage modulus, loss modulus, and complex viscosity was investigated.
Treated samples showed an improvement in elastic modulus, loss modulus and damping index as indicated by dynamic mechanical analysis (DMA).
As the formulation glucose concentration was raised, a graded decrease in storage modulus, loss modulus and complex viscosity when compared at 1 Hz was observed.
The resulting intervals with confidence coefficient of 95% were 31.2 32.7 °C, 60.5 66.4 °C and 79.6 83.3 °C for storage modulus, loss modulus and tan delta, respectively.
Dynamic properties like; storage modulus, loss modulus and Tan delta at a frequency sweep from 10 to 220 Hz confirm the overall elastic behavior of the nanocomposites.
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The shear modulus (storage modulus (G′) and loss modulus (G″)) were read at 10 rad/s.
Measured viscoelastic parameters included elastic modulus, G′, loss modulus, G″, and loss tangent, LT (G″/G′).
Storage modulus and loss modulus is the main performance index of visco-elastic properties.
The storage modulus and loss modulus of the composites increased with the increase in HA or TCP content.
The storage modulus and loss modulus were evaluated by Dynamic Mechanical Analysis (DMA).
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