A Study of the Effect of Temperature, Moisture, and a Solution of Salts on the Properties of Polyamide 11. 1. Extension and Compression

IF 0.58 Q4 Materials Science
O. V. Startsev, E. V. Dvirnaya, G. V. Kornienko, T. V. Koval’, I. M. Veligodskii
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Abstract

Accelerated laboratory tests of tubes made of Polyamide 11 with three compositions for the action of elevated temperature, thermal cycles, relative humidity, and an aqueous solution of salts for 200–3000 h are conducted. To find out the effects of aging, the weight of the samples, ultimate strength, Young modulus, and tensile elongation as well as rigidity of the tubes upon compression are measured. A clearly pronounced decrease in the weight of the tubes is found under all the conditions of accelerated tests which is induced by the removal of monomer residues, antioxidants, and plasticizers from the bulk of the samples. A result of thermal and thermal-cycle action on the tubes turns out to be an increase in their strength and rigidity accompanied by a simultaneous decrease in tensile elongation. Exposure at increased relative humidity only partially compensates embrittlement of Polyamide 11 as a result of the plasticizing action of sorbed moisture. Out of all the studied modes of aging, only exposure of the tubes in a solution of salts induces plasticization under the action of water molecules, as a result of which mechanical indicators of the polymer unsubstantially change. The performed tests show high resistance of Polyamide 11 to accelerated aging.

Abstract Image

温度、湿度和盐溶液对聚酰胺11性能影响的研究。1. 扩展和压缩
对三种成分的聚酰胺11制成的管在高温、热循环、相对湿度和盐的水溶液中作用200-3000小时进行了加速实验室试验。为了找出老化的影响,测量了试样的重量、极限强度、杨氏模量、拉伸伸长率以及管的压缩刚度。在加速试验的所有条件下,由于从大部分样品中去除单体残留物、抗氧化剂和增塑剂,管子的重量明显减少。热和热循环作用的结果是管的强度和刚度的增加,同时伴随着拉伸伸长率的降低。暴露在增加的相对湿度下,只能部分补偿聚酰胺11因吸收水分的塑化作用而产生的脆化。在所有研究的老化模式中,只有将管暴露在盐溶液中会在水分子的作用下引起塑化,从而导致聚合物的机械指标发生实质性变化。试验结果表明,聚酰胺11具有较高的抗加速老化性能。
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来源期刊
Polymer Science, Series D
Polymer Science, Series D Materials Science-Polymers and Plastics
CiteScore
0.80
自引率
0.00%
发文量
87
期刊介绍: Polymer Science, Series D  publishes useful description of engineering developments that are related to the preparation and application of glues, compounds, sealing materials, and binding agents, articles on the adhesion theory, prediction of the strength of adhesive joints, methods for the control of their properties, synthesis, and methods of structural modeling of glued joints and constructions, original articles with new scientific results, analytical reviews of the modern state in the field.
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