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首页> 外文期刊>Journal of Macromolecular Science. Physics >Shape-memorizable styrene-butadiene block copolymer .1. Thermal and mechanical behaviors and structural change with deformation
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Shape-memorizable styrene-butadiene block copolymer .1. Thermal and mechanical behaviors and structural change with deformation

机译:形状记忆的苯乙烯-丁二烯嵌段共聚物.1。热力学行为和结构随变形的变化

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Thermal properties in the range from room temperature to 150 degrees C, mechanical properties from room temperature to 80 degrees C, and structural changes by drawing and contraction at 80 degrees C followed by crystallization have been studied in a crystalline styrene-butadiene block copolymer, which has the property of shape memory, using differential scanning calorimetry (DSC), mechanical analysis, wide-angle x-ray diffraction (WAXD), and small-angle x-ray scattering (SAXS). This copolymer has the crystal transformation temperature, the melting temperature of the trans-1,4-polybutadiene domains, and the higher glass transition temperature of the polystyrene domains. When a high strain is adopted for the deformation at 80 degrees C (i.e., between the melting temperature of the polybutadiene [PB] domains and the glass transition temperature of the polystyrene regions) and crystallization conditions with fixed ends are employed, a fibrillar structure with a better regularity of long spacings and a high orientation of crystals forms. When the drawn sample is allowed to contract at 80 degrees C, the high contraction or the shape recovery appears. Nevertheless, crystallization after contraction presents essentially the same supermolecular structure as that before contraction. It is suggested that the molecular chains of polybutadiene were inhibited from flowing freely by the glassy polystyrene molecules and that there must be some structural units separated by amorphous domains that contribute to the elongation and contraction at the high temperature.
机译:在结晶苯乙烯-丁二烯嵌段共聚物中,研究了室温至150摄氏度范围内的热性能,室温至80摄氏度范围内的机械性能以及在80摄氏度下拉伸和收缩后结晶的结构变化,具有差示扫描量热法(DSC),机械分析,广角X射线衍射(WAXD)和小角X射线散射(SAXS)的形状记忆特性。该共聚物具有晶体转变温度,反式1,4-聚丁二烯结构域的熔融温度以及聚苯乙烯结构域的较高的玻璃化转变温度。当在80摄氏度下(即,在聚丁二烯[PB]域的熔化温度和聚苯乙烯区域的玻璃化转变温度之间)采用高应变进行变形并且采用具有固定端的结晶条件时,具有形成更好的长间距规则性和晶体的高取向性。当使抽取的样品在80℃下收缩时,出现高收缩或形状恢复。然而,收缩后的结晶呈现与收缩前基本相同的超分子结构。提示聚丁二烯的分子链被玻璃状聚苯乙烯分子抑制自由流动,并且必须存在一些被无定形域隔开的结构单元,这有助于高温下的伸长和收缩。

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