校金友

校金友

校金友,男,博士,西北工業大學航天學院教授,專業方向是飛行器設計。

基本介紹

  • 中文名:校金友
  • 學位/學歷:博士
  • 職業:教師
  • 專業方向:飛行器設計
  • 任職院校:西北工業大學
人物經歷,研究方向,主講課程,學術成果,

人物經歷

1999.9——2009.6,西工大航天學院飛行器(結構)設計專業,學碩博。
2010.5——2011.4,香港科技大學機械工程系,博士後。
2014.11——2016.6,德國錫根大學,洪堡學者。
2006.6——,在西工大航天學院飛行器(結構)設計專業,歷任助教、講師,副教授,教授,博士生導師。

研究方向

(2)高性能樹脂基複合材料結構技術
(3)計算結構力學

主講課程

(1)彈性力學
(2)有限元法
(3)計算結構力學

學術成果

在國內外學術期刊和會議上發表論文50餘篇,其中,SCI收錄30篇、EI收錄10篇。獲發明專利1項,軟體著作權3項。
以下是2010年以後發表的部分論文目錄:
  1. Lei M, Wang J, Cheng J,Xiao J,et al. A constitutive model of the solid propellants considering the interface strength and dewetting[J]. Composites Science and Technology, 2020, 185: 107893.
  2. Wang J, Wen L, Xiao J, et al. The mechanical properties and constitutive model of two woven composites including the influences of temperature, strain rate and damage growth[J]. Composites Part B: Engineering, 2019, 161: 502-513.
  3. Liang T, Wang J, Xiao J, et al. Coupled BE–FE based vibroacoustic modal analysis and frequency sweep using a generalized resolvent sampling method[J]. Computer Methods in Applied Mechanics and Engineering, 2019, 345: 518-538.
  4. Cao Y, Xiao J, Wen L, et al. A fast directional boundary element method for wideband multi-domain elastodynamic analysis[J]. Engineering Analysis with Boundary Elements, 2019, 108: 210-226.
  5. Zhang R, Wen L, Xiao J, et al. An efficient solution algorithm for space–time finite element method[J]. Computational Mechanics, 2019, 63(3): 455-470.
  6. Xiao J, Wang J, Guo W G, et al. The influence of heat treatment and strain rate on the third type strain ageing phenomenon[J]. Materials at High Temperatures, 2019, 36(2): 104-110.
  7. Xiao J, Zhang C, Huang T M, et al. Solving large‐scale nonlinear eigenvalue problems by rational interpolation and resolvent sampling based Rayleigh–Ritz method[J]. International Journal for Numerical Methods in Engineering, 2017, 110(8): 776-800.
  8. Xiao J, Zhou H, Zhang C, et al. Solving large-scale finite element nonlinear eigenvalue problems by resolvent sampling based Rayleigh-Ritz method[J]. Computational Mechanics, 2017, 59(2): 317-334.
  9. Xiao J, Meng S, Zhang C, et al. Resolvent sampling based Rayleigh–Ritz method for large-scale nonlinear eigenvalue problems[J]. Computer Methods in Applied Mechanics and Engineering, 2016, 310: 33-57.
  10. Schanz M, Ye W, Xiao J. Comparison of the convolution quadrature method and enhanced inverse FFT with application in elastodynamic boundary element method[J]. Computational mechanics, 2016, 57(4): 523-536.
  11. Cao Y, Wen L, Xiao J, et al. A fast directional BEM for large-scale acoustic problems based on the Burton–Miller formulation[J]. Engineering Analysis with Boundary Elements, 2015, 50: 47-58.
  12. Cao Y, Rong J, Wen L, et al. A kernel-independent fast multipole BEM for large-scale elastodynamic analysis[J]. Engineering Computations, 2015.
  13. Rong J, Wen L, Xiao J. Efficiency improvement of the polar coordinate transformation for evaluating BEM singular integrals on curved elements[J]. Engineering Analysis with Boundary Elements, 2014, 38: 83-93.
  14. Xiao J, Ye W, Wen L. Efficiency improvement of the frequency-domain BEM for rapid transient elastodynamic analysis[J]. Computational Mechanics, 2013, 52(4): 903-912.
  15. Xiao J, Ye W, Cai Y, et al. Precorrected FFT accelerated BEM for large‐scale transient elastodynamic analysis using frequency‐domain approach[J]. International Journal for Numerical Methods in Engineering, 2012, 90(1): 116-134.
  16. Xiao J, Ye W. Wavelet BEM for large‐scale Stokes flows based on the direct integral formulation[J]. International journal for numerical methods in engineering, 2011, 88(7): 693-714.

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