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首页> 外文期刊>Journal of Polymer Research >Long term ageing of polyamide 6 and polyamide 6 reinforced with 30% of glass fibers: physicochemical, mechanical and morphological characterization
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Long term ageing of polyamide 6 and polyamide 6 reinforced with 30% of glass fibers: physicochemical, mechanical and morphological characterization

机译:聚酰胺6和聚酰胺6的长期老化加强30%的玻璃纤维:物理化学,机械和形态学特性

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摘要

Hygrothermal ageing of polyamide 6 (PA6) and polyamide 6 reinforced with 30 wt% of glass fibers (PA6GF30) was undertaken. Immersion was conducted in distilled water at 90 degrees C and 100% relative humidity (RH) for up to 80 days (1920 h). Results revealed a noteworthy decrease either in glass transition temperature T-g or in tensile properties, at early stage of ageing, for both studied materials. This decline was mainly caused by the plasticization effect of water and the weakness of the interfacial interactions leading as a consequence to a loss of adhesion between fiber and matrix. Afterwards, physical and mechanical properties decrease monotonically testifying the occurrence of exhaustive damages and chemical reaction phenomena. Such phenomena were yellowing and crazing formation which were observed for both materials after 1920 h of conditioning. The former is caused by the thermo-oxidation whereas the latter results from the release of internal stresses induced by water sorption. These chemical reactions were monitored by infrared spectroscopy. Thus, an increase of the free N-H stretch and the carbonyl groups (imides) was noted. Accordingly, it seems that long term immersion in distilled water at high temperature induces chemical reactions which indicate the severity of the damage.
机译:通过30wt%的玻璃纤维增​​强的聚酰胺6(PA6)和聚酰胺6加强的湿热剂老化。将浸渍在蒸馏水中以90℃,100%相对湿度(RH)在蒸馏水中进行,最多80天(1920小时)。结果表明,对于衰老的早期阶段,玻璃化转变温度T-G或拉伸性能的较早性,对于衰老的早期,概述的结果表明这种下降主要是由于水的塑化效果和界面相互作用的弱点导致导致纤维和基质之间的粘附丧失。之后,物理和力学性能单调地减少了彻底验证的发生和化学反应现象。这种现象是呈黄色和裂纹的形成,其在1920小时后两种材料观察到。前者是由热氧化引起的,而后者导致释放由水吸附引起的内应力。通过红外光谱监测这些化学反应。因此,注意到自由N-H拉伸和羰基(酰亚胺)的增加。因此,似乎在高温下蒸馏水中的长期浸入诱导化学反应,表明损伤的严重程度。

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