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Fill in the blanks: The thermomechanical deformation curve of polymers is typically divided into five regions, namely: ( ), the glass transition region, ( ), the viscous flow transition region, and ( ). Vitreous state, high-elastic state, viscous flow state
The thermomechanical deformation curve of polymers is typically divided into five regions: the glass region, the glass transition region, the high-elastic region, the viscous flow transition region, and the viscous flow state.
Vitreous state, high-elastic state, viscous flow state
The thermomechanical deformation curve of polymers is typically divided into five regions: (glassy state), glass transition region, (elastomeric state), viscous flow transition region, and (viscous flow state).
Vitreous state, high-elastic state, viscous flow state
In the thermomechanical deformation curve of polymers, it is divided into five regions: the glassy state, the glass transition region, the high-elasticity state, the viscous flow transition region, and the viscous flow state
(Glassy region) – Glass transition region – (Elastomeric state) – Viscous flow transition region – (Viscous flow state).
Fill in the blanks: The thermomechanical deformation curve of polymers is usually divided into five regions, namely: (glassy state), glass transition region, (elastomeric state), viscous flow transition region, and (viscous flow state)
The thermomechanical deformation curve of polymers is typically divided into five regions: the glass region, the glass transition region, the high-elasticity region, the viscous flow transition region, and the viscous flow region.
Vitreous state, high-elastic state, viscous flow state
The thermomechanical deformation curve of polymers is typically divided into five regions: the glass region, the glass transition region, the elastomeric region, the viscous flow transition region, and the viscous flow region