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张岩
2023-05-13 10:15
  • 张岩
  • 张岩 - 副教授-苏州大学-纺织与服装工程学院-个人资料

近期热点

资料介绍

个人简历


张岩  1986年生,山东东营,2008年本科毕业于青岛大学,同年考入东华大学读研,2009年硕博连读攻读博士学位。2011年获国家留学基金委资助赴加拿大英属哥伦比亚大学(University of British Columbia)学习一年。2012年博士毕业,获工学博士学位。2013年苏州大学纺织科学与工程博士后流动站工作,2015年出站后留校工作,2016年7月评为副教授。近年来发表SCI收录论文20多篇,目前主持国家级科研项目1项,省部级项目1项,市厅级级项目3项,其他项目4项。

研究领域


纺织结构复合材料的力学性能
新型纤维功能化
新型纱线开发

近期论文


[1] 张岩, 孙宝忠,顾伯洪. 三维编织复合材料横向冲击动态响应.中国力学大会-2011暨钱学森诞辰100周年纪念大会.哈尔滨.2011
[2] Wang P and Zhang Y. The effect of twist on the tensile strength ofyarns with high performance. Key Engineering Materials, 2011, (480-481):453-458
[3] Wang P and Zhang Y. The tensile strength of neat and coated wovenfabrics. Key Engineering Materials, 2011, (480-481):448-452
[4] Wang P, Zhang Y and Sun BZ. Tear and puncture behaviors of flexiblecomposites. The 18th International Conference on Composite Materials. JejuIsland, Korea. 2011
[5] Zhang Y, Wang P and Sun BZ. Dynamic responses of 3d braidedcarbon/epoxy composite. The 18th International Conference on CompositeMaterials. Jeju Island, Korea. 2011
[6] Zhao Q, Jin LM, Jiang LL, Zhang Y, Sun BZ and Gu BH. Experimental characterizations of bending fatigue of a four-step 3-D braidedrectangular composite under different stress levels. Journal of ReinforcedPlastics and Composites, 2011, 30(18): 1571-1582
[7] Ma PB, Hu H, Zhang Y, Sun BZ and Gu BH. Frequencyfeatures of co-woven-knitted fabric (CWKF) composite under tension at variousstrain rates. Composites Part A: Applied Science and Manufacturing, 2011,42(5): 446-452
[8]Sun BZ, Niu ZL, Jin LM, Zhang Y and Gu BH. Experimental investigation and numerical simulation of three-pointbending fatigue of 3D orthogonal woven composite. Journal of the TextileInstitute. 2012, 103(12): 1312-1327
[9] Zhang Y, Jiang LL, Sun BZ and Gu BH. Transverseimpact behaviors of four-step 3-D rectangular braided composites from unit-cellapproach. Journal of Reinforced Plastics and Composites, 2012,31(4): 233-246
[10] Zhang Y, Sun BZ, and Gu BH. Experimentalcharacterization of transverse impact behaviors of four-step 3-D rectangularbraided composites. Journal of Composite Materials. 2012, 46(24): 3017-3029
[11] Sun BZ, Zhang Y and Gu BH. Low-velocity impact response and finite elementcalculation of four-step 3-D braided composites. Applied Composite Materials, 2013, 20(4):397-413
[12] 张岩,孙宝忠. 三维编织物增强复合材料横向冲击频域响应特征. 东华大学学报(自然科学版).2013, 39(1):37-41,47
[13] Zhang Y, Li XF, Wang P. Energy consumption of the griffesduring weaving process of jacquard loom. Thermal Science. 2014, 18(5):1583-1585.
[14] Zhang Y, Chen YY, Lin L, Ma PB. Nanostructurecharacterization of beta-sheet crystals in silk under various temperatures.Thermal Science. 2014, 18(5): 1459-1461.
[15] Zhang DS*, Xiong JQ, Li CM, Zhang Y, Toh GW, Lin H, Chen YY.Synthesis of size tunable gold nanoparticles polymeric hybrid based onmolecular nanocages. Micro & nano letters. 2014, 9(4): 235-238
[16] Zhang Y*,Chen YY, Lin H. Structural characterizations of three-dimensional crimped silkyarns. Thermal Science. 2015, 19(4): 1337-1340
[17] Zhang, Y, Chen, QL , Liu, FJ, Wang,P. The estimation of the length constant of a long cooling fin byvariational iteration method. International Journal of Numerical Methods forHeat and Fluid Flow. 2015, 25(4): 887-891
[18] Zhang Y, Wang P, Guo CB. Energy Absorption Behaviors of 3DBraided Composites under Impact Loadings with Frequency Domain Analysis,Polymer Composites. 2016, 37(5):1620-1627
[19] Zhang Y, He JH, Wang SQ, Wang P. A Dye Removal Model with AFuzzy Initial Condition. Thermal Science, 2016, 20(3): 867-870
[20] Zhang Y, Zhang CZ, Liu FJ, Wang FY, Wang P. Research onMorphologies of Polyvinyl Alcohol/Milk Nanofibers. Thermal Science, 2016,20(3): 961-966
[21] Zhang Y, Wang P, and Guo CB. Low-velocity impact failure mechanismanalysis of 3-D braided composites with Hilbert–Huang transform. Journal ofIndustrial Textiles. Online Doi:10.1177/1528083715619955
[22] Wang P, Liu P, Kong HY, Zhang Y*, He JH. Nonlinearvibration mechanism for fabrication of crimped nanofibers with bubbleelectrospinning and stuffer box crimping method. Textile Research Journal, DOI:10.1177/0040517516658513

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