科研论文
[1] Interfacial enhancement for carbon fibre reinforced electron beam cured polymer composite by microwave irradiation [J]. Polymer.
[2] 微波对碳纤维的改性作用及其对电子束固化CFRP界面性能的影响 [J].复合材料学报.
[3] Effect of Carbon Nanotubes on Curing Characteristics of Low Energy Electron Beam Curing CFRPs [J]. Polymers for Advanced Technologies.
[4] Irradiation dose control for polymer-matrix composites fabricated by in situ curing with low-energy electron beam [J]. Journal of Applied Polymer Science.
[5] 碳纤维表面的微波辐射改性方法及其对CFRPs界面性能的影响 [J].复合材料科学与工程.
[6] Effect of multi-walled nanotubes on the interlaminar shear strength of glass fiber/acrylate composite fabricated by stepwise ultra-violet light curing [J]. Polymer Composites.
[7] Investigation of irradiation dose rate on curing characteristics of carbon fiber/polymer composites by low-energy electron beam [J]. Polymers for Advanced Technologies.
[8] Dose control of double-sided irradiation for polymer-matrix composites fabricated by in-situ curing with low energy E-Beam [C]. 17th European Conference on Composites materials, Munich, Germany.
[9] Effect of double-sided irradiation dose difference on ILSS for polymer-matrix composites fabricated by in-situ curing with low energy E-Beam [C]. 21st International Conference on Composites Materials, Xi'an, China.
[10] 辐照剂量及后固化温度对低能电子束分层固化复合材料层间性能的影响 [J]. 机械工程材料.
[11] 铺放条件对低能电子束原位固化复合材料层间剪切强度的影响,中国科技论文在线.