specific heat capacity at constant pressure
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The dynamics and heat transfer on the spinning line during the air drawing process are discussed in detail, mainly relating the forces acting upon the polymer along the spinning line and the expressions of the air drawing coefficient C〓 and heat transfer coefficient h. By introducing the power-law model as the constitutive equation to describe the theological properties of polymer melt and considering the changing of the density and specific heat capacity of polymer melt at constant pressure with the polymer temperature, the former model of polymer air drawing is improved and a complete polymer air drawing model is established, which is integrated with the model of air jet flow field of dual slot die.
在此基础上,对前人的聚合物拉伸理论模型进行了改进,以幂律模型作为描述聚合物熔体流变行为的本构方程,并考虑了聚合物熔体密度和定压比热随聚合物熔体温度变化而变化这个因素,从而建立了完整的熔喷聚合物拉伸理论模型。
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specific heat capacity at constant pressure:定压比热容量
specific heat capacity 比热容量,比热容 | specific heat capacity at constant pressure 定压比热容量 | specific heat capacity at constant volume 定容比热容量
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specific heat capacity at constant pressure:定压比热容
"比热容","specific heat capacity" | "定压比热容","specific heat capacity at constant pressure" | "定压比热容","specific heat capacity at constant pressure"