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首页> 外文期刊>Journal of Composite Materials >Fabrication and mechanical properties of Ti/APC-2hybrid nanocomposite laminates at elevated temperatures
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Fabrication and mechanical properties of Ti/APC-2hybrid nanocomposite laminates at elevated temperatures

机译:Ti / APC-2混合纳米复合材料层合物的高温制备与力学性能

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摘要

The Ti/APC-2 hybrid cross-ply nanocomposite laminates were successfully fabricated by the modified diaphragm curing process. The titanium thin sheets were surface treated by chromic acid anodizing to achieve superior bonding with APC-2 laminates. The nanoparticles SiO2 were uniformly spread on the interfaces of APC-2. The tensile tests at room and elevated temperatures were conducted to obtain the mechanical properties. It is interesting to find a knee point in each stress-strain curve. To predict and verify the feature of knee point the residual stresses and strains were calculated by simple methods. Adopting the residual stress effect and rule of mixtures, the analytical stress-strain curves at elevated temperatures were obtained. The data and mechanisms of the knee point in hybrid laminates were verified and highlighted. The predicted results of ultimate strength, longitudinal stiffness and the knee point are all in very good agreement with the experimental data.
机译:通过改进的膜片固化工艺成功地制备了Ti / APC-2杂化交叉层纳米复合材料层压板。钛薄片经过铬酸阳极氧化处理,以实现与APC-2层压板的优异粘合。纳米颗粒SiO2均匀分布在APC-2的界面上。在室温和高温下进行拉伸试验以获得机械性能。在每条应力-应变曲线中找到一个拐点很有趣。为了预测和验证拐点的特征,通过简单的方法计算了残余应力和应变。利用残余应力效应和混合物的规律,得到了高温下的应力-应变分析曲线。验证并强调了混合层压板中拐点的数据和机理。极限强度,纵向刚度和拐点的预测结果与实验数据非常吻合。

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