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>Melt flow behavior in capillary extrusion of nanometer calcium carbonate filled PCL bio-composites
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Melt flow behavior in capillary extrusion of nanometer calcium carbonate filled PCL bio-composites
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机译:纳米碳酸钙填充的PCL生物复合材料的毛细管挤出中的熔体流动行为
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摘要
Nanosized calcium carbonate (nano-CaCO 3) filled polycaprolactone (PCL) bio-composites were prepared by using a twin-screw extruder. The melt flow behavior of the composites, including the entry pressure drop, melt shear flow curves and melt shear viscosity, were measured through a capillary rheometer operated in a temperature range of 170∼200 °C and shear rates varying from 50 to 10 3 s -1. The entry pressure drop showed a non-linear increase with increasing shear stress when the filler weight fraction was less than 3%, while it decreased slightly with an increase of shear stress at a filler weight fraction of 4%. The melt shear flow roughly followed a power law, while the effect of temperature on the melt shear viscosity was estimated by using the Arrhenius equation. Moreover, the influence of the nano-CaCO 3 on the melt shear viscosity of the PCL composite was not significant at low filler levels.
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