参考文献
[1]陈尔凡,田雅娟,周本廉.T-ZnO晶须增强环氧树脂复合材料的力学行为[J].高分子材料科学与工程,2003,19(2):111-114.
[2]戴静,王敏,张金才.硼酸盐晶须在复合材料中的应用[J].化工矿物与加工,2005,34(10):36-38.
[3]胡津,费维栋.硼酸铝晶须增强铝复合材料的研究[J].材料科学与工艺,1993,1(1):1-5.
[4]李凝,高诚辉,林有希.无机盐晶须增强树脂基复合材料研究进展[J].无机盐工业,2006,38(6):8-11.
[5]王宇鑫,张瑜,严鹏飞,等.铝基复合材料的研究[J].上海有色金属,2010,31(4):194-199.
[6]武高辉,匡泽洋.装备升级换代背景下金属基复合材料的发展机遇和挑战[J].中国工程科学,2020,22(2):79-90.
[7]谢奥林.改性玄武岩纤维增强树脂基摩擦材料的摩擦磨损性能[J].润滑与密封,2018,43(9):125-131.
[8]Cai J,Kimura S,Wada M,et al.Cellulose aerogels from aqueous alkali hydroxide-urea solution[J].Chem Sus Chem,2008,1(1-2):149-154.
[9]Chang M,Tsung Y,Hsu H,et al.Addition of a small amount of glass to improve the degradation behavior of calcium sulfate bioceramic[J].Ceramics International,2015(41):1155-1162.
[10]Cheng K,Li M Z,Zhang S H,et al.Study on the structure and properties of functionalized fibers with dopamine[J].Colloids and Surfaces A:Physicochemical and Engineering Aspects,2019(582):123846.
[11]Daneshyar A,Ghaedi M,Sabzehmeidani M M,et al.H2 Sadsorption onto Cu-Zn-Ni nanoparticles loaded activated carbon and Ni-Co nanoparticles loaded-Al2O3:Optimiza-tion and adsorption isotherms[J].Journal of Colloid and Interface Science,2017(490):553-561.
[12]Dang X,Wei M,Fan B,et al.Effects of in situ synthesized mullite whiskers on flexural strength and fracture toughness of corundum-mullite refractory materials[J].Ceramics International,2013,39(2):1525-1531.
[13]Hao P,Zhao Z,Tian J,et al.Umar AHierarchical porous carbon aerogel derived from bagasse for high performance supercapacitor electrode[J].Nanoscale,2014,6(20):12120-12129.(https://www.daowen.com)
[14]Lee B T,Sarkar S K.Fabrication of super-high-strength microchanneled Al2O3Ceramic composites with fibrous microstructure[J].Scripta Materialia,2009,61(7):686-689.
[15]Lin K,Chang J,Zhu Y,et al.A facile one-step surfactant-free and low-temperature hydrothermal method to prepare uniform 3D structured carbonated apatite flowers[J].Crystal Growth and Design,2019,9(10):177-181.
[16]Lin K,Zhou Y,Zhou Y,et al.Biomimetic hydroxyapatite porous microspheres with co-substituted essential trace elements:surfactant-free hydrothermal synthesis,enhanced degradation and drug release[J].Journal of Materials Chemistry,2011,21(41):16558-16565.
[17]Luo D,Fei J,Zhang C,et al.Optimization of mechanical and tribological properties of carbon fabric/resin composites via controlling ZnO nanorods morphology[J].Ceramics International,2018,44(13):15393-15401.
[18]Ma L C,Zhu Y Y,Li X R,et al.The architecture of carbon fiber-TiO2 nanorods hybrid structure in supercritical water for reinforcing interfacial and impact properties of CF/epoxy composites[J].Polymer Testing,2018(66):213-220.
[19]Mawkhlieng U,Majumdar A,Laha A.A review of fibrous materials for soft body armour applications[J].RSC Advances,2020,10(2):1066-1086.
[20]Nasser J,Steinke K,Sodano H.ZnO Nanostructured Interphase for Multifunctional and Lightweight Glass Fiber Reinforced Composite Materials under Various Loading Conditions[J].ACS Applied Nano Materials,2020,3(2):1363-1372.
[21]Orellana B R,Hilt JZ,Puleo D A.Drug release from calcium sulfate-based composites[J].JBiomed Mater Res,2014(103):135-142.
[22]Pavese M,Valle M,Badini C.Effect of porosity of cordi-erite preforms on microstructure and mechanical strength of co-continuous ceramic composites[J].Journal of the European Ceramic Society,2007,27(1):131-141.
[23]Wu X D,Han Y Y,Zhang X X,et al.Hierarchically structured composites for ultrafast liquid sensing and smart leak-plugging[J].Physical Chemistry Chemical Physics,2017,19(24):16198-16205.
[24]Xu D,Zhe Z,Wei L,et al.Nanocellulose-based conductive materials and their emerging applications in energy devices—A review[J].Nano Energy,2017(35):299-320.
[25]Zhang B,Jiang Y J.Preparation of grephene@waterborne polyurethane microcapsules for improving mechanical and interface properties of aramid fibers/natural rubber composites[J].Composite Interfaces,2019,26(7):571-583.