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谢禹钧
 

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谢禹钧

   

   

江苏靖江

出生年月

1960.2

   

中共党员

   

博士

毕业学校

华东理工大学

所在系室

化工机械系

   

教授

现任职务

研究生学院院长

电子邮箱

yjxie@lnpu.edu.cn

联系电话

13019652356

研究方向

断裂力学,结构完整性

主讲课程、教学情况:

化工容器设计,弹性力学,机械振动学,断裂力学,工程力学,有限单元法等

个人经历(进修、留学):

1993.8-1996.7 华东理工大学,化工过程机械博士研究生;

2002.2-2002.8 牛津大学(University of Oxford,固体力学组高级访问学者;

2007.7-2007.12 韩国延世大学(Yonsei University),固体力学组BK-21计划,高级客座研究员;

2010.7-2011.1澳大利亚西澳大学(The University of Western Australia, Gledden Senior Fellow高级访问学者。

荣誉称号、学术兼职、科研奖获:

辽宁省力学学会副理事长;

获辽宁省科技进步三等奖一项;

抚顺市科技进步一、二、三等奖各一项;

辽宁省教学成果一、二、三等奖各一项。

科研项目情况:

2008.1-2010.12年,国家自然科学基金项目:《圆柱平端压头触压边界开裂理论与不锈钢TiN镀层材料断裂韧性测试新方法的研究》。批准号:50771052

2010.1-2012.12年,国家自然科学基金项目:《梯度镀层结构微/纳平面压痕开裂理论与应用研究》。批准号:50971068

2010-2012年,辽宁省自然科学基金项目:《平面压痕断裂理论与断裂韧性微创检测新方法》;

2010-2012年,辽宁省教育厅重点实验室项目:《平面压痕断裂理论及其应用》。

发表论文、著作情况(国际期刊):

[1]      Y. J. Xie, X. Z. Hu, J. Chen, K.Y. Lee. Micro-Indentation Fracture from Flat-ended Cylindrical Indenter. Fatigue and Fracture of Engineering Materials and Structures.35/1 (2012), 45–55.

[2]      Y. J. Xie, X. Z. Hu, X. H. Wang, J. Chen and K. Y. Lee. A theoretical note on mode I crack branching and kinking. Engineering Fracture Mechanics 78 (2011) 919–929.

[3]      Y.J. Xie, X.Z. Hu, X.H. Wang. Frictional contact induced crack initiation in incompressible substrate. Engineering Fracture Mechanics. 78 (2011) 2947–2956.

[4]      Y. J. Xie, K. Y. Lee, X. Z. Hu and Y. M. Cai. Applications of conservation integral to indentation with a rigid punch. Engineering Fracture Mechanics 76 (2009) 949–957.

[5]      Y. J. Xie, and D. A. Hills, Quasibrittle fracture beneath a flat bearing surface, Engineering Fracture Mechanics, Vol.75, pp1223-1230, 2008.

[6]      X. Z. Zhu, Y. J. Xie, H.Q. Yuan. Numerical Simulation of Flow Characteristics of Co-rotating Intermeshing Four-screw Extruder. Journal of Reinforced Plastics and Composites, 27 (3): 321-334, 2008.

[7]      Y. J. Xie, D. Hills and X. Z. Hu. Cone Crack Initiation Induced by Contact from Cylindrical Punch, Journal of Material Science, Vol.42, pp9469–9475, 2007.

[8]      X. Z. Zhu, Y. J. Xie and H. Q. Yuan, Numerical Simulation of Extrusion Characteristics for Co-rotating Tri-Screw Extruder. Polymer-Plastics Technology and Engineering, Vol.46, pp401-407, 2007.

[9]      X. Z. Zhu, Y. J. Xie and H. Q. Yuan, Numerical Simulation of Extrusion Characteristics for Co-rotating Tri-Screw Extruder. Polymer-Plastics Technology and Engineering, Vol.46, pp401-407, 2007.

[10]  Y. J. Xie, X. H. Wang and Y. Y. Wang, Stress intensity factors for homogeneous and composite channel beams, International Journal of Solids and Structures, Vol.44/14-15 pp.4830-4844, 2007.

[11]  W. Tang and Y. J. Xie, An analytical method on circumferential cracked submarine pipe-in-pipe system, Applied Ocean Research, Vol.27/3 pp.158-164, 2006.

[12]  Y. J. Xie and W. Tang, Stress intensity factor for cracked submarine pipeline with concrete cover, Ocean Engineering, Vol.33pp.1841-1852, 2006.

[13]  Y. C. Lin, Y. J. Xie, Expert system for integrity assessment of piping containing defects, Expert Systems with Applications Vol.30 pp.149–155, 2006.

[14]  Y. J. Xie and X. H. Wang, Stress intensity factors for cracked triangular cross section thin-walled tubes, Fatigue & Fracture of Engineering Materials & Structures, Vol.27, pp1109-11172004.

[15]  Y. J. Xie and X. H. Wang, Application of G*-integral on cracked structural beams, Journal of constructional steel research, Vol.60, pp. 1271-1290, 2004.

[16]  Y. C. Lin and Y. J. Xie, et al. Risk analysis of in-service pressure piping containing defects, International Journal of Pressure Vessels and Piping, Vol.81 pp13-20, 2004.

[17]  Y. C. Lin and Y. J. Xie, et al. Probabilistic fracture failure analysis of nuclear piping containing defects using R6 method, Nuclear Engineering and Design, Vol.229, pp.237-246, 2004

[18]  Y. J. Xie, X. H. Wang and Y. C. Lin, Stress intensity factors for cracked rectangular thin-walled tubesEngineering Fracture Mechanics, Vol.71 pp1501-1513, 2004.

[19]  Y. J. Xie and X. H. Wang, Crack initiation and direction for circumferential periodic cracks in pipe under Tension and Torsion, Theoretical and Applied Fracture Mechanics, Vol.40 pp153-1592003.

[20]  Y. J. Xie and D. A. Hills Crack initiation at contact surface, Theoretical and Applied Fracture Mechanics, Vol.40 pp279-283, 2003.

[21]  Y. J. Xie, An exact method on penny-shaped cracked homogeneous and composite cylinders. International Journal of Solids and Structures, Vol.38, pp6953-6963, 2001.

[22]  Y. J. Xie, An analytical method on circumferential periodic cracked pipes and shells. International Journal of Solids and Structures, Vol.37, pp5189-5201, 2000.

[23]  Y. J. Xie, H. Xu and P. N. Li, Crack mouth widening energy release rate and its applications, Theoretical and Applied Fracture Mechanics, Vol. 29, No. 3, pp195-203, 1998.

[24]  Y. J. Xie, H. Xu and P. N. Li, On KI estimates of cracked pipes using an elliptical hole model and elementary beam strength theory of cracked beams, Engineering Fracture Mechanics, Vol.59, pp399-402, 1998.

[25]  Y. J. Xie, A theory on cracked pipe, International Journal of Pressure Vessels and Piping, Vol.75, pp865-869, 1998.

[26]  Y. J. Xie, H. Xu and P. N. Li, J2 Integral and its application in estimates of stress intensity factors, Key Engineering Materials, Vol.145-149, pp89-94, 1998.

[27]  Y. J. Xie, H. G. Yan and Z. M. Liu, Buckling optimization of hybrid-fiber multilayer-sandwich cylindrical shells under external lateral pressure, Composites Science and Technology, Vol.56, pp1349-1353, 1996.

[28]  H. Xu, P. N. Li, Y. J. Xie, Analytical and experimental fracture assessment of carbon steel piping with circumferencially through-cracks under bending, International Journal of Pressure Vessels and Piping, Vol.69, pp207-212, 1996.

[29]  H. Xu, P. N. Li, Y. J. Xie, Z. W. Wang, J-Integral estimation fracture analysis for circumferencially cracked carbon steel piping, Nuclear Engineering and Design, Vol.167, pp7-10, 1996.

 

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