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Nanoscale indent formation in shape memory polymers using a heated probe tip

机译:使用加热的探针尖端在形状记忆聚合物中形成纳米级压痕

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摘要

This paper presents experimental investigation of nanoscale indentation formation in shape memory polymers. The polymers were synthesized by photopolymerizing a tert-butyl acrylate (tBA) monomer with a poly(ethylene glycol dimethacrylate) (PEGDMA) crosslinker. The concentration and the molecular weight of the crosslinker were varied to produce five polymers with tailored properties. Nanoscale indentations were formed on the polymer surfaces by using a heated atomic force microscope (AFM) cantilever at various temperatures near or above the glass transition (between 84 and 215 deg C) and a range of heating durations from 100 mu s to 8 ms. The images of the indents were obtained with the same probe tip at room temperature. The contact pressure, a measure of transient hardness, was derived from the indentation height data as a function of time and temperature for different polymers. With increasing crosslinker molecular weight and decreasing crosslinker concentration, the contact pressures decreased at a fixed maximum load due to increased crosslink spacing in the polymer system. The results provide insight into the nanoscale response of these novel materials.
机译:本文介绍了形状记忆聚合物中纳米级压痕形成的实验研究。聚合物是通过将丙烯酸叔丁酯(tBA)单体与聚乙二醇二甲基丙烯酸酯(PEGDMA)交联剂进行光聚合而合成的。改变交联剂的浓度和分子量以产生五种具有定制性质的聚合物。通过使用加热的原子力显微镜(AFM)悬臂在接近或高于玻璃化转变温度(84至215摄氏度)的各种温度以及100毫秒至8毫秒的加热时间范围内,在聚合物表面上形成纳米级压痕。压痕图像是在室温下使用相同的探针尖端获得的。接触压力是瞬态硬度的一种度量,它是根据不同聚合物的压痕高度数据随时间和温度的变化而得出的。随着交联剂分子量的增加和交联剂浓度的降低,由于聚合物体系中交联间距的增加,接触压力在最大固定载荷下下降。结果提供了对这些新型材料的纳米级响应的见解。

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