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sqp

  • Associate Professor
  • Supervisor of Doctorate Candidates
  • Supervisor of Master's Candidates
  • Name (Pinyin):sqp
  • School/Department:航空航天学院
  • Degree:Doctoral Degree in Engineering
  • Professional Title:Associate Professor
  • Status:Employed
  • Teacher College:College of Aerospace Engineering
  • Discipline:Solid Mechanics
    Mechanical Engineering

Recommended Ph.D.Supervisor

Recommended MA Supervisor

Contact Information
  • Telephone:4f3c770513606e11f5051cef0647087d1ba5c41c47841861f9d43018ab062158b49c601006cf077582191dd407e9f68ee7a76db337a3187936d91d8ea72a6e45dff7190cc110ff745bbce570db0e66862a5f3119c55f7010fa7b1862cf760f80249b90d4340321575d5dccdb20840a0740051396fe03d922d377b7d7e2195d33
  • Email:33d4e360b1099b7ae2144780e6914abfe650cd828163743600f42596b82efe46d85dc1b115b623b34f1fbc713482d6bfe7af406a68dd8284a2382d0c109dcffd887517af1a01ebbc45bbadda472539192690ab095d589c2acd3a137a16d699d5561a72b64ea4b0f587d504205099c1a4136dcf0e637aaa53139e43596b35f9f2
  • Paper Publications
  • Analysis of the crushing behaviors of woven carbon fiber reinforced plastic hat section component under dynamic bending and axial crushing loading,
  • Experimental investigation on the effects of fabric architectures on mechanical and damage behaviors of carbon/epoxy woven composites,
  • Multiscale modeling of failure behaviors in carbon fiber-reinforced polymer composites,
  • Computational Elastic Analysis of AA7075-O using 3D-Microstructrure-Based-RVE with Really-distributed Particles,
  • Elastoplastic Analysis of AA7075-O Aluminum Sheet by Hybrid Micro-scale Representative Volume Element Modeling with Really-distributed Particles and In-situ SEM Experimental Testing,
  • Experimental and computational analysis of failure mechanisms in unidirectional carbon fiber reinforced polymer laminates under longitudinal compression loading,
  • Multi-scale computational analysis of unidirectional carbon fiber reinforced polymer composites under various loading conditions,
  • In-situ effect in cross-ply laminates under various loading conditions analyzed with hybrid macro/micro-scale computational models,
  • A Combined Experimental and Computational Analysis of Failure Mechanisms in Open-Hole Cross-ply Laminates under Flexural Loading,
  • Failure mechanisms of cross-ply carbon fiber reinforced polymer laminates under longitudinal compression with experimental and computational analyses,
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