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Organoclay/thermotropic liquid crystalline polymer nanocomposites. Part V: morphological and rheological studies

机译:有机粘土/热致液晶聚合物纳米复合材料。第五部分:形态学和流变学研究

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摘要

Small amounts of organoclays in different sizes and concentrations were added into thermotropic liquid crystalline polymer (TLCP) by a combination method of ultrasonication, centrifugation, and solution casting (and shear-induced phase separation). Four kinds of organoclay-modified TLCP composites were obtained. TC3 UP was a kind of organoclay which displayed a marked shear-induced phase separation phenomenon at 190 A degrees C and higher temperatures. TC3 UP could be separated into a TLCP-rich part, TC3 white, and an organoclay-rich part, TC3 dark. TC3 white was an organoclay-modified TLCP with fully exfoliated organoclay of a uniform size of 15-25 nm well dispersed in the TLCP. TC3 dark had a typical intercalated model structure with some TLCP molecules confined in organoclay galleries. TC3 FS was an organoclay-modified TLCP with organoclay of comparable size to that of the fully extended TLCP molecule, i.e., 85 nm. The organoclay layers dispersed into the polymeric matrix as a few randomly organized organoclay layers or stacks of layers in the quiescent condition in organoclay-modified TLCPs. The larger organoclay size or higher concentration of organoclay in the composites (such as, TC3 UP and TC3 dark) caused a greater proportion of the layers or stacks be hydro-dynamically impeded in the quiescent state, resulting in the filler-filler interaction becoming important and in fact dominating the long-term viscoelasticity of the composites. Additionally, the ease with which the organoclay structure could be altered by flow was considerably enhanced, primarily because of filler-filler interactions. Organoclay size has primary effect on the liquid crystallinity of TLCP. Small or comparable organoclay size with the fully extended TLCP molecule in TC3 white and TC3 FS has weak or negligible negative influence on the liquid crystallinity of TLCP, while larger organoclay size totally damages the liquid crystallinity of TLCP. The morphologies, liquid crystallinity as well as the linear and non-linear viscoelastic behaviors of organoclay-modified TLCPs have been characterized in detail.
机译:通过超声,离心和溶液浇铸(以及剪切诱导相分离)的组合方法,将少量不同尺寸和浓度的有机粘土添加到热致液晶聚合物(TLCP)中。获得了四种有机粘土改性的TLCP复合材料。 TC3 UP是一种有机粘土,在190 A摄氏度和更高的温度下表现出明显的剪切诱导相分离现象。 TC3 UP可分为富含TLCP的部分TC3白色和富含有机粘土的部分TC3黑色。 TC3白色是有机粘土改性的TLCP,完全剥落的有机粘土均匀分散在TLCP中,尺寸为15-25 nm。 TC3暗色具有典型的插入模型结构,其中一些TLCP分子被限制在有机粘土画廊中。 TC3 FS是一种有机粘土改性的TLCP,其有机粘土的尺寸与完全延伸的TLCP分子的尺寸相当,即85 nm。有机粘土层在静止状态下以有机粘土改性的TLCP的形式随机散布到聚合物基质中,成为一些随机组织的有机粘土层或层堆叠。复合材料中较大的有机粘土尺寸或较高的有机粘土浓度(例如TC3 UP和TC3深色)会导致较大比例的层或堆栈在静态处于流体动力学状态,导致填料与填料的相互作用变得重要并且实际上支配了复合材料的长期粘弹性。另外,主要由于填料-填料相互作用,大大提高了通过流动改变有机粘土结构的难易程度。有机粘土的尺寸对TLCP的液晶性具有主要影响。在TC3白色和TC3 FS中具有完全扩展的TLCP分子的有机粘土尺寸较小或相当,对TLCP液晶性的负面影响微弱或可忽略不计,而较大的有机粘土尺寸完全损害TLCP的液晶性。已经详细描述了有机粘土改性的TLCP的形态,液晶性以及线性和非线性粘弹性行为。

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