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The effect of temperature on the nanoscale adhesion and friction behaviors of thermoplastic polymer films

机译:温度对热塑性聚合物薄膜纳米尺度附着力和摩擦行为的影响

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Adhesion and friction tests were carried out in order to investigate the effect of temperature on the tribological characteristics of poly( methylmethacrylate) ( PMMA) film using AFM. The pull-off and friction forces on the PMMA film were measured under a high vacuum condition ( below 1 x 10(-4) Pa) as the temperature of the PMMA film was increased from 300 to 420 K ( heating) and decreased to 300 K ( cooling). Friction tests were also conducted in both high vacuum and air conditions at room temperature. When the temperature was 420 K, which is 25 K higher than the glass-transition temperature (Tg) of PMMA, the PMMA film surface became deformable. Subsequently, the pull-off force increased in proportion to the maximum applied load during the pull-off force measurement. In contrast, when the temperature was under 395 K, the pull-off force did not depend on the maximum applied load. The friction force began to increase when the temperature rose above 370 K, which is 25 K lower than the Tg of PMMA, and rapidly increased at 420 K. Decrease of the PMMA film stiffness and plastic deformation of the PMMA film were observed at 420 K in force-displacement curves. After the heating to 420 K, the coefficient of friction was measured under air condition at room temperature and was found to be lower than that measured before the heating. Additionally, the RMS roughness increased as a result of heating.
机译:为了研究温度对使用AFM的聚甲基丙烯酸甲酯(PMMA)薄膜的摩擦学特性的影响,进行了粘合和摩擦测试。在高真空条件(低于1 x 10(-4)Pa)下,随着PMMA膜的温度从300 K升高到420 K(加热)并降低到300 K,在PMMA膜上的剥离力和摩擦力被测量K(冷却)。还在室温下在高真空和空气条件下进行了摩擦测试。当温度为420 K时,比PMMA的玻璃化转变温度(Tg)高25 K时,PMMA膜表面变得可变形。随后,在拉力测量期间,拉力与最大施加载荷成比例地增加。相反,当温度低于395 K时,拉拔力并不取决于最大施加载荷。当温度升高到370 K以上时,摩擦力开始增加,这比PMMA的Tg低25 K,并在420 K时迅速增加。在420 K时,观察到PMMA膜的刚度下降和PMMA膜的塑性变形。在力-位移曲线中。加热至420K后,在室温下于空气条件下测量摩擦系数,发现该摩擦系数低于加热前的摩擦系数。另外,由于加热,RMS粗糙度增加。

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