College of Materials Science and Engineering, Chongqing University, Chongqing 400045, China.
Molecules. 2021 Jan 30;26(3):726. doi: 10.3390/molecules26030726.
Carbon fiber dispersion has a substantial influence on the properties of amorphous calcium silicate hydrate-based contact-hardening composites. In this study, a mixture of carbon fiber and calcium silicate hydrate powder was compressed into solid composites at 40 MPa for one minute. The mechanical properties and electrical resistivity of the solid materials were measured, and the dispersion of carbon fibers was quantitatively evaluated by digital image processing technology. The Taipalu model was used to build the correlation between the electrical resistivity of the composites and the carbon fiber dispersion. The results of the electrical resistivity showed that the down threshold of carbon fiber content in the contact-hardening composites was 1.0 wt.% and the electrical resistivity was 30,000 Ω·cm. As the fiber content increased to 2.0 wt.%, the electrical resistivity dropped to 2550 Ω·cm, which was attributed to the increase in fiber dispersion uniformity in the solid composites, and the value of the fiber distribution coefficient reached a maximum value of 0.743. A subsequent decrease in the uniformity of the fiber dispersion was observed at a high fiber content. In addition, the carbon fiber content showed a slight influence on the fiber orientation in the contact-hardening composites.
碳纤维的分散状态对无定形硅酸钙水化物基触变复合材料的性能有很大影响。在本研究中,将碳纤维和硅酸钙水化物粉末的混合物在 40MPa 下压缩 1 分钟制成固体复合材料。测量了固体材料的机械性能和电阻率,并通过数字图像处理技术定量评估了碳纤维的分散状态。采用 Taipalu 模型建立了复合材料电阻率与碳纤维分散状态之间的相关性。电阻率的结果表明,触变复合材料中碳纤维含量的下限为 1.0wt.%,电阻率为 30000Ω·cm。当纤维含量增加到 2.0wt.%时,电阻率降至 2550Ω·cm,这归因于固体复合材料中纤维分散均匀性的增加,纤维分布系数的值达到了 0.743 的最大值。在高纤维含量下,纤维分散的均匀性随后会下降。此外,碳纤维含量对触变复合材料中纤维取向的影响较小。