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首页> 外文期刊>Journal of Macromolecular Science. Physics >Crystal morphology and polymorphism of a wholly aromatic thermoplastic polymer, poly(ketone sulfide)
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Crystal morphology and polymorphism of a wholly aromatic thermoplastic polymer, poly(ketone sulfide)

机译:全芳族热塑性聚合物的晶体形态和多态性,聚(酮硫醚)

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The thermal behavior, morphology of the melt-grown crystals, and polymorphism of poly(ketone sulfide) (PKS) were studied and compared with those of poly(ether ketone) (PEK), using differential scanning calorimetry (DSC), transmission electron microscopy (TEM), and wide-angle x-ray diffractometry (WAXD). The following results were obtained: (1) The melting temperature of PKS is somewhat lower than that of PEK, suggesting that the sulfide linkage (-S-) has a relatively shallower rotational conformational energy than that of the ether linkage (-O-). (2) The spherulites of PKS and PEK are composed of long, narrow lamellar crystals. It has been confirmed by electron diffraction (ED) studies that the longitudinal, transverse, and thickness directions of the long lamellar crystals correspond to the b, a, and c-axes, respectively. (3) The melt-grown and the melt-quenched and subsequently heat-treated PKS and PEK have a similar two-chain orthorhombic unit cell. The orthorhombic unit cell parameters of PKS are a = 0.767 nm, b = 0.620 nm, and c = 1.044 nm. On the other hand, drawn or rolled PKS films have a two-chain monoclinic unit cell with parameters of a = 0.836 nm, b = 0.606 nm, c = 1.044 nm, and gamma = 68.5 degrees. These results indicate that a crystal (orthorhombic)-crystal (monoclinic) transition occurs during the deformation of PKS. The crystal structure of PEK does not change at all during deformation. [References: 27]
机译:研究了使用差示扫描量热法(DSC),透射电子显微镜(DSC)研究并与聚(酮硫化物)(PKS)(PEK)的热(酮硫化物)(PKS)的多态性的热行为,与聚(酮硫化物)(PKS)的多态性进行了比较(TEM)和广角X射线衍射法(WAXD)。获得以下结果:(1)PKS的熔化温度略低于PEK,表明硫化物键合(-S-)具有比醚键(-O-)的旋转构象能量相对较浅(-O-) 。 (2)PKS和PEK的球晶系由长而窄的层状晶体组成。通过电子衍射(ED)研究证实,即,长层状晶体的纵向,横向和厚度方向分别对应于B,A和C轴。 (3)熔化生长和熔融淬火和随后的热处理的PKS和PEK具有类似的双链正交单元细胞。 PKS的正交单位细胞参数是= 0.767nm,b = 0.620nm,C = 1.044nm。另一方面,拉伸或轧制的PKS膜具有双链单斜型单元电池,参数= 0.836nm,b = 0.606nm,c = 1.044nm,γ= 68.5度。这些结果表明,在PKS的变形过程中发生晶体(正骨) - 晶体(单斜晶晶)转变。 PEK的晶体结构在变形过程中根本不会改变。 [参考:27]

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