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Rheological Properties of Wood–Plastic Composites by 3D Numerical Simulations: Different Components
The rheological properties of wood–plastic composites (WPCs) with different wood fiber contents were investigated using a rotational rheometer under low shear rates. The flow field information was analyzed and simulated by Ansys Polyflow software. The results showed that the WPCs with different wood fiber contents behaved as typical power-law fluids. A higher wood fiber content increased the shear thinning ability and pseudoplasticity of the WPCs. The pressure, velocity, shear rate, and viscosity distributions of the WPC during extrusion could be predicted by computational fluid dynamics (CFD) Ansys Polyflow software to explore the effects of different components on the flow field of WPCs.
Rheological Properties of Wood–Plastic Composites by 3D Numerical Simulations: Different Components
The rheological properties of wood–plastic composites (WPCs) with different wood fiber contents were investigated using a rotational rheometer under low shear rates. The flow field information was analyzed and simulated by Ansys Polyflow software. The results showed that the WPCs with different wood fiber contents behaved as typical power-law fluids. A higher wood fiber content increased the shear thinning ability and pseudoplasticity of the WPCs. The pressure, velocity, shear rate, and viscosity distributions of the WPC during extrusion could be predicted by computational fluid dynamics (CFD) Ansys Polyflow software to explore the effects of different components on the flow field of WPCs.
Rheological Properties of Wood–Plastic Composites by 3D Numerical Simulations: Different Components
Xingcong Lv (author) / Xiaolong Hao (author) / Rongxian Ou (author) / Tao Liu (author) / Chuigen Guo (author) / Qingwen Wang (author) / Xin Yi (author) / Lichao Sun (author)
2021
Article (Journal)
Electronic Resource
Unknown
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UB Braunschweig | 2007
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