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首页> 外文期刊>Journal of Polymer Science, Part B. Polymer Physics >Transient and athermal effects in the crystallization of polymers. II. Nonisothermal crystallization
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Transient and athermal effects in the crystallization of polymers. II. Nonisothermal crystallization

机译:聚合物结晶中的瞬态和无热效应。二。非等温结晶

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Nonisothermal crystallization of several polymers was investigated with differential scanning calorimetry and optical microscopy. The results indicated that as in the case of isothermal processes, crystallization starts with nucleation on noncompletely melted crystalline residues. It is assumed that if the crystalline residues are subcritical at melting temperatures, they can become stable by an athermal mechanism during cooling. There is also some contribution of nucleation on heterogeneities. The next mechanism of nucleation is a classical homogeneous process occurring by thermal fluctuations. The results showed the non-steady-state character of the nonisothermal crystallization of polymers. In the investigated range of cooling rates, the non-steady-state character of nonisothermal crystallization of polymers is dominated by the transient thermal effects. In the range of high temperatures, the transient homogeneous nucleation can be interpreted with the Ziabicki model, and the steady-state rate determined from nonisothermal experiments coincides with the rate determined in isothermal crystallization. The athermal nucleation occurring at the beginning of crystallization from noncompletely melted aggregates seems to be independent of the applied cooling rate. (C) 2002 Wiley Periodicals, Inc. [References: 47]
机译:用差示扫描量热法和光学显微镜研究了几种聚合物的非等温结晶。结果表明,与等温过程一样,结晶从不完全熔化的结晶残渣上的成核开始。据推测,如果结晶残余物在熔融温度下是亚临界的,则它们可以在冷却过程中通过无热机理变得稳定。成核对异质性也有一些贡献。下一个成核机理是由热波动引起的经典均匀过程。结果显示了聚合物非等温结晶的非稳态特征。在研究的冷却速率范围内,聚合物的非等温结晶的非稳态特征受瞬态热效应支配。在高温范围内,可以用Ziabicki模型解释瞬态均匀成核,并且由非等温实验确定的稳态速率与等温结晶过程中确定的速率一致。从不完全熔化的聚集体开始结晶时发生的非热成核似乎与所施加的冷却速率无关。 (C)2002 Wiley Periodicals,Inc. [参考:47]

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