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An experimental investigation of humidity and temperature effects on the mechanical properties of perfluorosulfonic acid membrane

机译:湿度和温度对全氟磺酸膜力学性能影响的实验研究

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摘要

The mechanical properties of a perfluorosulfonic acid (PFSA) membrane have been investigated at different humidities and temperatures in a custom-designed environmental chamber. Tensile tests were conducted to determine Young's modulus, the proportional limit stress ("yield strength"), break stress, and break strain. In-plane dimensional changes of the membrane at different temperature and humidities were also determined. The results indicate that Young's modulus and the proportional limit stress of the PFSA membrane decrease as humidity and temperature increase. Higher temperature leads to lower break stress and higher break strain. However, humidity has little effect on the break stress and break strain. A nonparametric statistical analysis, Kruskal-Wallis test, is applied to the experimental results, which shows that the effects of temperature and humidity on Young's modulus and proportional limit stress are statistically significant.
机译:在定制的环境室内,在不同的湿度和温度下,已经研究了全氟磺酸(PFSA)膜的机械性能。进行拉伸测试以确定杨氏模量,比例极限应力(“屈服强度”),断裂应力和断裂应变。还确定了膜在不同温度和湿度下的面内尺寸变化。结果表明,PFSA膜的杨氏模量和比例极限应力随着湿度和温度的升高而降低。较高的温度导致较低的断裂应力和较高的断裂应变。但是,湿度对断裂应力和断裂应变影响很小。将非参数统计分析Kruskal-Wallis检验应用于实验结果,结果表明温度和湿度对杨氏模量和比例极限应力的影响具有统计学意义。

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