溫志勛

溫志勛,男,博士,西北工業大學力學與土木建築學院教授。

基本介紹

  • 中文名:溫志勛
  • 職業:教師
  • 學位/學歷:博士
  • 專業方向:力學
  • 任職院校:西北工業大學
個人經歷,主講課程,榮譽獎項,研究方向,學術成果,

個人經歷

工作經歷 Work Experience
· 2009年3月-2010年12月,西北工業大學,航空學院,航空宇航科學與技術,博士後
· 2010年12月-2011年4月,槳詢轎西北工業大學,力學與土木建築學院,講師
· 2011年4月-2018年7月 ,西北工業大學,力學與土木建築學院,副教授
· 2013年11月-2013年12月,德國波鴻魯爾大學,訪問學者
· 2017年6月-至今,陝西省航空發動機結構強度與可靠性重點實驗室,副主任
· 2017年8月-至今,西北工業大學,力學與土木建築學院,博導
· 2018年7月-至今,西北工業大學,力學與土木建築學院,教授
教育經歷 Education Experience
· 2000年9月-2004年7月,西北工業大學,力學與土木建築學院,本科,工程力學專業
· 2004年9月-2007年4月,西北工業大學,力學與土木建築學院,碩去套士,固體力學專業
· 2006年9月-2009年3月,西北工業大學,力學與土木建築學院,博士,固體力學專業

主講課程

主講本科生課程《材料力學》,研究生課程《蠕變力學》《細觀力學》及《熱端結構與強度壽命》。

榮譽獎項

· 國防科學技術進步獎:單晶葉片強度壽命及可靠性分析與最佳化設計技術,二等獎,工業和信息化部,2012,排名第二
· 陝西省科學技術獎:晶體各向異性彈塑性理論及其套用研究,一等獎,陝西省人們政府,2017,排名第三
· 2017年度西北工業大學優秀青年教師(吳亞軍獎),一等獎
· 2018年度西北工業大學翱翔新星
· 2018年度陝西省青年科技新陵櫃立員星

研究方向

主要從事航空發動機單晶渦輪葉片結構強度、壽命與可充良婚靠性研究。主持項目包括國家自然科學基金2項、目標導向類科技部863計畫1項、技術基礎科研項目1項、航空科學基金(重點實驗煉墓邀剃室類)2項、博士後基金及特別資助各1項、省自然科學基礎研究2項、中央高校基礎研究基金2項及西北工業大學新人新方向1項等。參與多項國家自然科學基金、“兩機”重大科技專項、航空推進驗證技術計畫、背厚束民機專項科研以及型號預研等項目。

學術成果

專著:淚葛蘭
(1) 溫志勛,張冬旭,張志金,等,鎳基單晶渦輪葉片冷卻氣膜孔結構強度,科學出版社,2017.
(2) 岳珠峰,於慶民,溫志勛,等,鎳基單晶渦輪葉片結構強度設計,科學出版社,2008.
論文:
(1) ZhiXun Wen, JianWei Liang, ChenYu Liu, HaiQing Pei , ShiFeng Wen , ZhuFeng Yue. Prediction method for creep life of thin-wall specimen with film cooling holes in Ni-based single-crystal superalloy. International Journal of Mechanical Sciences, 141 (2018) 276–289.
(2) Zhixun Wen, Haiqing Pei, Huan Yang, Yunwu Wu, Zhufeng Yue, A combined CP theory and TCD for predicting fatigue lifetime in single-crystal superalloy plates with film cooling holes, International Journal of Fatigue, 2018, 111: 243~255.
(3) Zhixun Wen, Zhenwei Li, Yamin Zhang, Shifeng Wen, Zhufeng Yue, Surface slip deformation characteristics for perforated Ni-based single crystal thin plates with square and triangular penetration patterns. Materials Science & Engineering A, 723(2018)56-69.
(4) Z.X. Wen, J.P. Wang, Y.W. Wu, K.J. Zhou, Z.F. Yue. Atomistic simulation analysis of the effects of void interaction on void growth and coalescence in a metallic system. Current Applied Physics, 18 (2018) 744-751.
(5) Zhixun Wen, Dongxu Zhang, Songwei Li, et al. Anisotropic creep damage and fracture mechanism of nickel-base single crystal superalloy under multiaxial stress. Journal of Alloys and Compounds. 2017, 692:301-312.
(6) Wen, Zhixun, Huang Shan, Gao Hangshan, Yue Zhufeng. Experimental investigation on low cycle fatigue properties of GH3536 alloy with film cooling holes in different drilling processes. Engineering Failure Analysis, 2017,82: 190–197.
(7) Wen Zhixun,Pei Haiqing,Liu Hai,Yuezhufeng,A Sequential Kriging reliability analysis method with characteristics of adaptive sampling regions and parallelizability,Reliability Engineering & System Safety,2016,153:170~179.
(8) Z.X. Wen,H.Q. Pei,C.J. Zhang,Analysis of surface quality of multi-film cooling holes in nickel-based single crystal superalloy,Materials Science and Technology,2016,32(18):1845~1854.
(9) Wen Zhixun,Pei Haiqing,Wang Baizhi,Zhang Dongxu,Yue Zhufeng,The tension/compression asymmetry of a high γ′ volume fraction Nickel-based single-crystal superalloy,Materials at High Temperatures,2016,33:68~74.
(10) Zhixun Wen,Haiqing Pei,Dongfan Li,Zhufeng Yue,Jingyun Gao,Thickness influence on the creep response of DD6 Ni-based single-crystal superalloy,High Temperature Materials and Processes,2015,35(9):871~880.
(11) Wen Zhixun,Pei Haiqing,Wang Shaofei,Li Zhenwei,Yue Zhufeng,Effects of Long-Term Aging on the Microstructures and Tensile Propertiesof Ni-Based Single Crystal Superalloy,Rare Metal Materials and Engineering,2015,44(8):1873~1878.
(12) Z.X. Wen ,H.Z. Mao,Z.F. Yue,B.Z. Wang,The Influence of Crystal Orientation on Vibration Characteristics of DD6 Nickel-Base Single Crystal superalloy Turbine Blade,Journal of Materials Engineering and Performance,2014,23(2):372~377.
(13) Z.X. Wen,N.X. Hou,B.Z. Wang,Z.F. Yue,Crystallographic life model for single crystal turbine blade and validation by the miniature specimens cut from the turbine blades,Multidiscipline Modeling in Materials and Structures,2010,6(4):508~529.
(14) ZX Wen ,NX Hou,ZF Yue,Numerical Simulation on Creep Damage and Crack Initiation Behaviour of Nickel-Based Single Crystal Superalloys Containing a Casting Void,Rare Metal Materials and Engineering,2010,39(11):1912~1917.
(15) Z.X. Wen,N.X. Hou,Z.F. Yue,Creep damage and crack initiation behaviour of nickel-base single crystalline superalloys compact tension specimen with a void ahead of crack tip,Materials Science and Engineering: A,2009,510-511:284-288
(16) Z.X. Wen,N.X. Hou,Z.X. Dou,Z.F. Yue,Fracture toughness analysis of anisotropic nickel-based single crystal superalloys at high temperature,Journal of Materials Science,2008,43(17):5878~5883.
(17) Wen ZX,Yue Z. F,Fracture behaviour of the compact tension specimens of nickel-based single crystal superalloys at high temperatures,Materials Science and Engineering A,2007,456:189~201.
(18) Z.X. Wen,Z.F. Yue,On the crystallographic study of growth characterization of isolated void in the grain boundary,Computational Materials Science,2007,40(1):140~146.
(2) Zhixun Wen, Haiqing Pei, Huan Yang, Yunwu Wu, Zhufeng Yue, A combined CP theory and TCD for predicting fatigue lifetime in single-crystal superalloy plates with film cooling holes, International Journal of Fatigue, 2018, 111: 243~255.
(3) Zhixun Wen, Zhenwei Li, Yamin Zhang, Shifeng Wen, Zhufeng Yue, Surface slip deformation characteristics for perforated Ni-based single crystal thin plates with square and triangular penetration patterns. Materials Science & Engineering A, 723(2018)56-69.
(4) Z.X. Wen, J.P. Wang, Y.W. Wu, K.J. Zhou, Z.F. Yue. Atomistic simulation analysis of the effects of void interaction on void growth and coalescence in a metallic system. Current Applied Physics, 18 (2018) 744-751.
(5) Zhixun Wen, Dongxu Zhang, Songwei Li, et al. Anisotropic creep damage and fracture mechanism of nickel-base single crystal superalloy under multiaxial stress. Journal of Alloys and Compounds. 2017, 692:301-312.
(6) Wen, Zhixun, Huang Shan, Gao Hangshan, Yue Zhufeng. Experimental investigation on low cycle fatigue properties of GH3536 alloy with film cooling holes in different drilling processes. Engineering Failure Analysis, 2017,82: 190–197.
(7) Wen Zhixun,Pei Haiqing,Liu Hai,Yuezhufeng,A Sequential Kriging reliability analysis method with characteristics of adaptive sampling regions and parallelizability,Reliability Engineering & System Safety,2016,153:170~179.
(8) Z.X. Wen,H.Q. Pei,C.J. Zhang,Analysis of surface quality of multi-film cooling holes in nickel-based single crystal superalloy,Materials Science and Technology,2016,32(18):1845~1854.
(9) Wen Zhixun,Pei Haiqing,Wang Baizhi,Zhang Dongxu,Yue Zhufeng,The tension/compression asymmetry of a high γ′ volume fraction Nickel-based single-crystal superalloy,Materials at High Temperatures,2016,33:68~74.
(10) Zhixun Wen,Haiqing Pei,Dongfan Li,Zhufeng Yue,Jingyun Gao,Thickness influence on the creep response of DD6 Ni-based single-crystal superalloy,High Temperature Materials and Processes,2015,35(9):871~880.
(11) Wen Zhixun,Pei Haiqing,Wang Shaofei,Li Zhenwei,Yue Zhufeng,Effects of Long-Term Aging on the Microstructures and Tensile Propertiesof Ni-Based Single Crystal Superalloy,Rare Metal Materials and Engineering,2015,44(8):1873~1878.
(12) Z.X. Wen ,H.Z. Mao,Z.F. Yue,B.Z. Wang,The Influence of Crystal Orientation on Vibration Characteristics of DD6 Nickel-Base Single Crystal superalloy Turbine Blade,Journal of Materials Engineering and Performance,2014,23(2):372~377.
(13) Z.X. Wen,N.X. Hou,B.Z. Wang,Z.F. Yue,Crystallographic life model for single crystal turbine blade and validation by the miniature specimens cut from the turbine blades,Multidiscipline Modeling in Materials and Structures,2010,6(4):508~529.
(14) ZX Wen ,NX Hou,ZF Yue,Numerical Simulation on Creep Damage and Crack Initiation Behaviour of Nickel-Based Single Crystal Superalloys Containing a Casting Void,Rare Metal Materials and Engineering,2010,39(11):1912~1917.
(15) Z.X. Wen,N.X. Hou,Z.F. Yue,Creep damage and crack initiation behaviour of nickel-base single crystalline superalloys compact tension specimen with a void ahead of crack tip,Materials Science and Engineering: A,2009,510-511:284-288
(16) Z.X. Wen,N.X. Hou,Z.X. Dou,Z.F. Yue,Fracture toughness analysis of anisotropic nickel-based single crystal superalloys at high temperature,Journal of Materials Science,2008,43(17):5878~5883.
(17) Wen ZX,Yue Z. F,Fracture behaviour of the compact tension specimens of nickel-based single crystal superalloys at high temperatures,Materials Science and Engineering A,2007,456:189~201.
(18) Z.X. Wen,Z.F. Yue,On the crystallographic study of growth characterization of isolated void in the grain boundary,Computational Materials Science,2007,40(1):140~146.

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