孙家斌

Associate Professor   Supervisor of Master's Candidates

Gender:Male

Alma Mater:大连理工大学

Degree:Doctoral Degree

School/Department:化工海洋与生命学院

E-Mail:jbsun1983@dlut.edu.cn


Paper Publications

Accurate nonlinear buckling analysis of functionally graded porous graphene platelet reinforced composite cylindrical shells

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Indexed by:期刊论文

Date of Publication:2019-02-01

Journal:INTERNATIONAL JOURNAL OF MECHANICAL SCIENCES

Included Journals:SCIE、EI

Volume:151

Page Number:537-550

ISSN No.:0020-7403

Key Words:Functionally graded material; Graphene platelet; Cylindrical shell; Buckling; Critical buckling load

Abstract:By considering the pre-buckling effect and in-plane constraint, an accurate nonlinear buckling analysis of a functionally graded porous graphene platelet reinforced composite cylindrical shells under axial compressive load is performed. The stability equation is established according to a unified shell theory including the classical thin shell theory and the high-order shear deformation theory. Three types of porosity distributions and graphene platelet reinforced patterns are considered, and the modified Halpin-Tsai model and rule of mixtures are employed to determine their effective material properties. Explicit expressions of buckling equations for clamped or simply supported boundary conditions are obtained by the Galerkin's method. Highly accurate critical buckling loads and analytical buckling mode shapes are obtained simultaneously. A comparison between theoretical prediction and experiment is presented to verify the present method and very good agreement is reported. The influences of material properties on the buckling behaviors are also extensively investigated. It is recommended that the symmetric dispersion pattern is the optimal material distributions for both graphene platelets and porous, and the largest possible weight fraction, specific surface area and average thickness of graphene platelets could induce a better anti-buckling performance for the nanocomposite shell.

Pre One:Thermo-Mechanical Buckling of CFRP Cylindrical Shells with FGPM Coating

Next One:Accurate nonlinear stability analysis of functionally graded multilayer hybrid composite cylindrical shells subjected to combined loads

Profile

孙家斌,男,博士,副教授。

Email: jbsun1983@dlut.edu.cn


学习经历:

2010-09至2013-10    大连理工大学    工程力学系           博士


工作经历:

2017-01至今         大连理工大学    海洋科学与技术学院   副教授

2013-10至2016-12    大连理工大学    海洋科学与技术学院   讲师

2016-01至2016-02    香港城市大学    科学与工程学院       Research Associate

2015-072015-08    香港城市大学    深圳研究院           研究员

2011-092012-01    香港城市大学    科学与工程学院       Research Assistant


研究方向:

力学超材料/结构研究

板壳弹塑性稳定性分析

复合材料结构非线性力学行为研究

连接与密封设计

大型力学试验装置设计


研究成果&科研项目:

    目前已发表SCI论文30余篇,包括固体力学旗舰刊Journal of the Mechanics and Physics of Solids(JMPS),数理权威期刊Proceedings of the Royal Society A(英国皇家学会会刊),Advanced Materials Technologies、Composites Part B: Engineering、Composite Structures 、Materials & Design等,已获授权国家发明专利7项和软件著作权2项,主持国家自然科学基金青年科学基金项目1项,多项企事业委托项目