主要论文成果:
[1] Yang Xiaobo, Zhan L H, Peng Y F, Liu C, Xiong R. Interface controlled micro- and macro- mechanical properties of vibration processed carbon fiber/epoxy composites[J]. Polymers. 2021, 13 (16): 2764-2783.
[2] Yang Xiaobo, Zhan L H, Zhao X, Jiang C B. Analysis of void content and mechanical behavior of composite T-joints produced by random vibration assisted vacuum processing[J]. Iranian Polymer Journal. 2020, 29 :759-770.
[3] Yang Xiaobo, Zhan L H, Jiang C B, Zhao X, Guang C L. Effect of random vibration processing on void content in composite laminates [J]. Polymer Composites. 2019, 40 (08): 3122-3130.
[4] Yang Xiaobo, Zhan L H, Jiang C B, Zhao X, Guang C L, Chang T F. Evaluating random vibration assisted vacuum processing of carbon/epoxy composites in terms of interlaminar shear strength and porosity[J]. Journal of Composite Materials. 2019, 53 (17): 2367-2376.
[5] Yang Xiaobo, Zhan L H, Jiang C B, Zhao X, Guang C L. Effect of random vibration assisted vacuum processing on void development and interfacial properties in composites[J]. Journal of Reinforced Plastics and Composites. 2019, 38 (18): 871-881.
[6]杨晓波,湛利华,蒋成标,张泳安,胡建.模具材料对复合材料制件固化过程应变的影响分析[J].南京航空航天大学学报. 2018, 50 (1): 24-29.
[7] Guan C L, Zhan L H, Yang Xiaobo, Dai G M, Xiao Y. Significant effect of vibration treatment on microwave curing carbon fiber reinforced plastic[J]. Journal of Reinforced Plastics and Composites, 2020, 39(9-10):373-383.
[8] Peng N H, Zhan L H,Yang Xiaobo, Liang X Z, Xue X C, Zhang D L, Dai G M, Guan C L, Zhao G Q. Analysis of the skin wrinkling in out-of-plane joints of CFRP hat-shaped structure[J]. Journal of Polymer Engineering, 2021, 41(04): 310-319.
[9] Jiang C B, Zhan L H, Yang Xiaobo, Chen X P, Lin Z J, Guan C L. Monitoring of multidirectional and cure-induced strain in CFRP laminates using FBG sensors[J]. Materials Science Forum, 2019, 953: 72-79.
[10] Hu J, Zhan L H, Yang Xiaobo, Shen R L, He J Y, Peng N H. Temperature optimization of mold for autoclave process of large composite manufacturing[J]. Journal of Physics: Conference Series, 2020, 1549, 1-11.
主要专利成果:
[1]湛利华,杨晓波,胡健,蒋成标,关成龙,复合材料构件固化工艺及复合材料制件, CN201810639024.X, 2020-12-22.
[2]湛利华,杨晓波,陈效平,黄明辉,关成龙,常腾飞,刘桂铭,贺佳阳,蒋成标.一种复合材料用微波固化装置, CN201811498244.1, 2018-12-07.
[3]湛利华,杨晓波,关成龙,戴光明,刘桂铭,陈效平,吴欣桐,常腾飞,贺佳阳,蒋成标,康旭辉,赵啸林,一种包含微波加热的复合材料固化装置, CN201811513753.7, 2018-12-11.
[4]湛利华,杨晓波,陈效平,黄明辉,关成龙,常腾飞,贺佳阳,戴光明,一种复合材料固化装置[P].专利号:CN201811498241.8, 2018-12-07.
[5]湛利华,杨晓波,胡健,蒋成标,关成龙.大型复杂曲面构件的支撑工装, CN201810542740.6, 2018-05-30.
[6]湛利华,彭南辉,杨晓波,关成龙,戴光明,赵国庆,一种结构件成型时局部压力的实时监测方法, CN111157172A, 2020-12-01.
[7]湛利华,关成龙,杨晓波,蒋成标,戴光明,刘桂铭,胡健,常腾飞,一种复合材料的固化方法, CN109203313B, 2019-01-05.
[8]湛利华,关成龙,杨晓波,戴光明,韦东才,刘桂铭,陈效平,吴欣桐,常腾飞,贺佳阳,蒋成标,郑航.一种均匀接受微波辐射的复合材料成形制造装置, CN109367066A, 2018-12-11.