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Computational modeling in processing flows of carbonaceous mesophases

机译:碳质中间相加工流程的计算建模

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摘要

Carbonaceous mesophases are liquid crystalline precursor materials that can be spun into high performance carbon fibers using the melt spinning process,which is a flow sequence consisting of capillary,diverging,porous media,converging,and extensional flows that modifies the precursor molecular orientation structure.Carbon fiber property optimization requires a better understanding of the principles that control the structure development during the fiber formation processes and the rheological processing properties.This paper presents the elastic and continuum theory of liquid crystals and computer simulations of structure formation for pressure-driven capillary flow of carbonaceous mesophase precursors used in the industrial carbon fiber spinning process.The simulation results capture the non-Newtonian rheology of mesophase and the formation of characteristic fiber macro-textures.
机译:碳质中间相是液晶前驱体材料,可采用熔融纺丝工艺纺成高性能碳纤维,熔融纺丝工艺是由毛细管、发散、多孔介质、会聚和拉伸流组成的流动序列,改变了前驱体分子取向结构。碳纤维性能优化需要更好地了解纤维形成过程中控制结构发展的原理和流变加工性能。本文介绍了液晶的弹性和连续理论,以及工业碳纤维纺丝工艺中碳质中间相前驱体压力驱动毛细管流动结构形成的计算机模拟。仿真结果捕捉了中间相的非牛顿流变学和特征纤维宏观纹理的形成。

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