单颗粒聚合物带的温控原位拉伸试验

S. Heupl, J. Maurer, J. Kastner
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引用次数: 0

摘要

x射线计算机断层扫描(CT)与力学测试相结合,可以对聚合物的损伤机制提供很好的见解。根据聚合物的应用领域,温度可以很高或很低,从而导致与室温相比不同的性能。在本研究中,应该研究温度对聚合物基体中单个颗粒损伤机制的影响。因此,三个聚合物拉伸试件(长度30mm;宽度为10毫米),每个包含一个颗粒,从厚度为0.5毫米的胶带上剪下,并在不同的检查温度下进行测试。CT测量使用RX Solutions Easytom 160实验室CT设备进行,体素尺寸为(3µm)³。每个试样分别在0%应变和30%应变下扫描两次。检测温度分别为0℃、22℃和60℃。研究表明,温度对聚合物的性能和损伤机制有很大的影响,特别是当聚合物基体中存在颗粒时。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Temperature-Controlled in-situ Tensile Tests of Polymer Tape with Single Particles
X-ray Computed Tomography (CT) combined with mechanical testing can deliver great insights in the damage mechanisms of polymers. Depending on the application area of the polymer, temperatures can be very high or low – leading to a different performance compared to room temperature. In this study, the influence of the temperature on damage mechanisms of a single particle in a polymer matrix should be investigated. Thus, three polymer tensile test specimens (length 30 mm; width 10 mm) – each containing a single particle – were cut out of a tape with a thickness of 0.5 mm and tested at various inspection temperatures. CT measurements were performed with the RX Solutions Easytom 160 laboratory CT device with a voxel size of (3 µm)³. Each specimen was scanned twice, namely at 0% strain and 30% strain. As inspection temperatures 0 °C, 22 °C and 60 °C were chosen. It is shown that temperature can have a great impact on the performance and damage mechanisms of a polymer, especially if a particle is present in the polymer matrix.
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