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首页> 外文期刊>Polymer engineering and science >Correlation and modeling of the occurrence of different crystalline forms of isotactic polypropylene as a function of cooling rate and uniaxial stress in thin and thick parts
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Correlation and modeling of the occurrence of different crystalline forms of isotactic polypropylene as a function of cooling rate and uniaxial stress in thin and thick parts

机译:等厚聚丙烯不同结晶形式的发生与冷却和速率的关系和建模,以及薄壁和厚壁零件中的单轴应力

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摘要

A study of structure development in thin melt spun isotactic polypropylene filaments is described, which is then applied to the prediction of the behavior of thick parts. Conditions under which different crystalline forms of polypropylene are obtained as a function of cooling rate and spinline stress were investigated. Continuous cooling transformation (CCT) curves are developed. This also allows us to develop a map of crystalline form as a function of these variables. We have applied the CCT curves and this map to predict the development of cross-sectional variation structure in thick filaments and rods. This is applied in particular to the quenching of a cylindrical rod and the structural characterizations observed through the cross section are compared with predictions from the CCT curves and solutions of Fourier's transient heat conduction equation. [References: 54]
机译:描述了对细熔体等规聚丙烯长丝结构发展的研究,然后将其用于预测厚零件的行为。研究了获得不同结晶形式的聚丙烯作为冷却速率和旋转应力的函数的条件。建立了连续冷却转变(CCT)曲线。这也使我们能够根据这些变量来绘制晶形图。我们已经应用了CCT曲线和该图来预测厚丝和棒中横截面变化结构的发展。这尤其适用于圆柱棒的淬火,并将通过横截面观察到的结构特征与CCT曲线的预测结果和傅立叶瞬态热传导方程的解进行比较。 [参考:54]

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