SYNERGETIC EFFECT OF STRENGTHENING POLYMER NANOCOMPOSITES

Oleg Dyshin Oleg Dyshin, Ibrahim Habibov Ibrahim Habibov, Arzu Suleymanova Arzu Suleymanova
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Abstract

According to the cluster model of glassy polymers, in the amorphous state they are natural nanocomposites of two components of a loosely packed matrix and nanoclusters immersed in it, respectively playing the role of a matrix and filler in a natural composite. In this interpretation of the polymer, an important role is played by the dimensional effect of nanoclusters, identical to the specified effect of a nanofiller in an artificial nanocomposite, namely, a decrease in the size of both nanoclusters and dispersed particles leads to a sharp increase in the degree of amplification (modulus of elasticity) of the nanocomposite. In this paper, using parallel and sequential microcomposite models, upper and lower fractal estimates for the elastic modulus of the matrix are obtained and the synergistic effect of strengthening the elastic modulus of the nanocomposite as a whole as a superposition of the amplification effects from inorganic filler and from nanoclusters playing the role of filler of the loosely packed matrix is quantified. The object of research in this work is a packer - a device designed to disconnect two zones of the borehole and isolate the internal space of the production column from the impact of the borehole environment. The tightness of the packages is achieved thanks to sealing elements (SE), for the manufacture of which a composite with the composition is used: a mixture of synthetic butadiene nitrile and hydrogenated butadiene nitrile rubber (BNC + HBNC), vulcanizer, stabilizer, technological additives and copper nanoparticles. For the class of polymers under consideration, a rule has been developed for choosing the most preferred model from the above two micromechanical models at a given temperature. Keywords: oilfield equipment, synergetic effect, cluster model, natural nanocomposite, interfacial region, inter-component adhesion, loosely packed matrix.
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增强聚合物纳米复合材料的协同效应
根据玻璃聚合物的团簇模型,在无定形状态下,它们是由松散堆积的基质和浸入其中的纳米团簇两组分组成的天然纳米复合材料,在天然复合材料中分别扮演着基质和填料的角色。在这种聚合物的解释中,纳米团簇的尺寸效应起着重要的作用,与人造纳米复合材料中纳米填料的特定效应相同,即纳米团簇和分散颗粒的尺寸减小导致纳米复合材料的放大程度(弹性模量)急剧增加。本文采用并行和顺序微复合模型,得到了基体弹性模量的上分形和下分形估计,并量化了无机填料和纳米团簇对松散堆积的基体起到填料作用的放大效应叠加对整体增强纳米复合材料弹性模量的协同效应。这项工作的研究对象是一种封隔器,该装置旨在断开井眼的两个区域,并将生产柱的内部空间与井眼环境的影响隔离开来。由于密封元件(SE)的存在,密封元件的制造过程中使用了一种复合材料:合成丁腈橡胶和氢化丁腈橡胶(BNC + HBNC)的混合物、硫化剂、稳定剂、技术添加剂和铜纳米颗粒。对于所考虑的聚合物类别,在给定温度下,从上述两种微观力学模型中选择最优选模型的规则已经开发出来。关键词:油田设备,协同效应,团簇模型,天然纳米复合材料,界面区域,组分间粘附,松散堆积基质。
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