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Modeling Of Extrusion Behavior of Biopolymer and Composites in Fused Deposition Modeling

机译:熔融沉积建模中生物聚合物和复合材料的挤出行为建模

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Processing of polymers plays an important role in application of polymers in biomedical engineering, for instance in manufacture of scaffolds for tissue engineering applications. Rapid prototyping technologies like fused deposition modeling (FDM) has been widely used in processing polymers for biomedical applications. The present work is focused on modeling of flow behavior in the extrusion liquefier in FDM. A finite element (FE) model of extrusion liquefier was constructed on ANS YS after verification of internal geometry using X-ray imaging. Polycaprolactone (PCL) is used as the base bio polymer for analysis. Experiments were carried out to characterize the physical properties like thermal conductivity, specific heat, viscosity and shear thinning property of PCL. These values were used for behavior modeling in the extrusion liquefier. The thermal and flow behavior in the extrusion liquefier is studied by varying input conditions and analyzing the velocity, pressure drop profiles at various zones of extrusion liquefier. Experimental values of parameters and the simulated flow model showed good correlation. The current model can be extended to predict the flow behavior of PCL/ Hydroxyapatite composites in a FDM head which in turn will reflect on the quality of scaffold constructed using the Biocomposite.
机译:聚合物的加工在生物医学工程中的聚合物应用中,例如在组织工程应用的支架制造中起着重要作用。诸如熔融沉积建模(FDM)之类的快速原型技术已广泛用于处理生物医学应用的聚合物。目前的工作集中在FDM挤出液化器中流动行为的建模。在使用X射线成像验证内部几何形状之后,在ANS YS上构建挤出液化器的有限元(FE)模型。聚己内酯(PCL)用作分析的基础生物聚合物。进行实验以表征PCL的物理性质,如导热系数,比热,粘度和剪切稀化性质。这些值用于挤出液化器中的行为建模。通过改变输入条件并分析挤出液化器各个区域的速度,压降曲线,研究了挤出液化器中的热和流动行为。参数的实验值和模拟的流动模型显示出良好的相关性。可以扩展当前模型以预测PCL /羟基磷灰石复合材料在FDM喷头中的流动行为,这反过来将反映使用生物复合材料构造的脚手架的质量。

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