Synthesis, Structure and Properties of Hybrid Composite Bentonite-Based Materials

G. Mamytbekov, Zh.I. Beksultanov, V. Bannykh, I.V. Dan’ko
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Abstract

A systematic study of the synthesis of hybrid composite materials based on synthetic (poly-N-vinylpyrrolidone) and natural (agar-agar) macromolecules in the presence of plasticizers (PEG-400, glycerin) and mineral filler bentonite has been performed by the method of electron irradiation. The methods of X-ray diffraction analysis and SEM showed that the structure of the resulted hybrid compositions is defined as an interpenetrating network with the distributed intercalated particles of mineral component inside its volume. It has been established that mechanical properties of the hybrid composition are determined mainly by the struc-tural organization of the interpenetrating polymer network, formed during electron irradiation of the initial polymer mixture in the presence of plasticizers, as well as by the conditions for intercalation of polymer seg-ments into the interpacket layers of the mineral matrix. During the process of crazing of the sample under ten-sion the shear stress is concentrated in the central part of the sample from the periphery of the fastening. It is shown that the degree of swelling for hybrid composition strongly depends on concentration of a low molecu-lar plasticizer in the polymeric interpenetrating network, which can easily impregnate into the interplanar lay-ers of bentonite.
杂化复合膨润土基材料的合成、结构与性能
采用电子辐照法制备了以合成(聚n -乙烯基吡咯烷酮)和天然(琼脂-琼脂)大分子为基料,在增塑剂(PEG-400、甘油)和矿物填料膨润土存在下合成杂化复合材料的研究。x射线衍射分析和扫描电镜分析表明,所得到的杂化组合物的结构被定义为一个互穿网络,其体积内分布着矿物成分的插层颗粒。已经确定,杂化组合物的力学性能主要由互穿聚合物网络的结构组织决定,互穿聚合物网络是由初始聚合物混合物在增塑剂存在下的电子照射过程中形成的,以及由聚合物段嵌入矿物基质包层的条件决定。在压痕过程中,剪切应力从紧固外围向试样中心集中。结果表明,杂化组合物的溶胀程度很大程度上取决于聚合物互穿网络中低分子增塑剂的浓度,这种增塑剂很容易浸渍到膨润土的面间层中。
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