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首页> 外文期刊>Journal of Materials Science >Micromorphology-dependent mechanical properties of syndiotactic polystyrene
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Micromorphology-dependent mechanical properties of syndiotactic polystyrene

机译:间规聚苯乙烯的微观形态相关的力学性能

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The crystallization history of syndiotactic polystyrene is found to affect strongly its mechanical properties. Samples cooled slowly from the melt have much higher moduli than do samples quenched from the melt (to the amorphous state) and subsequently heated to induce crystallization just above T-g. The differences are not due to differences in crystallinity. Examination of the lamellar structure and micromechanical modelling of the two different micromorphologies which evolve, show that the most likely reasons for these differences are the constraint of the amorphous phase by the high-modulus lamellae, and the variation in phase contiguity. In slowly cooled samples, the crystalline phase is contiguous (mechanically), and the interlamellar amorphous material is more highly constrained than in the quenched-annealed samples. (C) 1998 Kluwer Academic Publishers. [References: 37]
机译:发现间同聚苯乙烯的结晶历史强烈影响其机械性能。从熔体中缓慢冷却的样品具有比从熔体中淬灭(至非晶态)并随后加热以诱导刚好高于T-g的样品高的模量。差异不是由于结晶度的差异。对层状结构和演化的两种不同微观形态的微观力学模型的研究表明,这些差异的最可能原因是高模量薄片对非晶相的约束以及相连续性的变化。在缓慢冷却的样品中,结晶相是连续的(机械上),并且层间无定形材料比在淬火退火的样品中受到更大的约束。 (C)1998 Kluwer学术出版社。 [参考:37]

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