Experimental-Theoretical Method for Defining Physical-Mechanical Properties of Polymer Materials with Regard to Change of Their Physical-Chemical Properties

G. Aliyev
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引用次数: 11

Abstract

In this paper, an experimental-theoretical method is suggested for defining physical-mechanical characteristics of polymer materials with regard to influence of corrosive liquid media. Experimental dependences of mechanical characteristics on a swelling function are given for a series of polymer materials. One dimensional and three-dimensional linear-elastic models of body deformation with regard to influence of corrosive liquid media are suggested. A new phenomenon, bulging of a polymer strip rigidly fastened by both ends because of swilling forces, is established. The stability criterion is given for a strip made of a polymer material situated under the action of swelling forces only.
从高分子材料物理化学性质的变化来确定其物理力学性质的实验理论方法
本文提出了一种结合实验理论的方法来确定腐蚀液体介质对高分子材料物理力学特性的影响。给出了一系列高分子材料的力学特性与膨胀函数的实验依赖关系。提出了考虑腐蚀性液体介质影响的体变形的一维和三维线弹性模型。建立了一种新现象,即两端刚性固定的聚合物条由于旋流力而产生胀形。稳定性判据给出了仅在膨胀力作用下由聚合物材料制成的条。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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