常冬梅-机械工程学院

硕士生导师简介

常冬梅

日期:2022年08月20日 17:30 来源: 作者:

姓名:

常冬梅

系别:

基础教学部

职称:

教授/硕导

职务:

 

办公室:

逸夫楼339

电话:

 

Email

dm_chang@hotmail.com

通讯地址:

天津市河西区大沽南路1310

 

教育背景:

201210 哈尔滨工业大学 工程力学专业 博士学位

研究方向:

1. 热冲击断裂力学

2. ---磁耦合力学

3. 非傅里叶热传导理论

课程教学:

工程力学,材料力学,理论力学

学术兼职:

天津市力学学会会员

 

奖励及荣誉:

[1] 2016年获得天津市“131”创新型人才培养工程第三层次人选

[2] 2018年获评毕业生最喜爱的教师

 

 

 

 

 

 

 

代表性

科研项目:

 

[1] 国家自然科学基金青年项目:基于非局部和非傅里叶理论的微纳米材料热冲击断裂力学理论研究,2017.1-2019.12,主持,结题

[2] 天津市自然科学基金青年项目非局部压电纳米材料的热冲击断裂力学分析2018.9-2021.9,主持,结题

[3] 国家自然科学基金青年项目:基于非线性理论的静电驱动微梁系统静动态设计与参数优化,2018.1-2020.12,参与,结题

[4] 国家自然科学基金青年项目:粘弹性层状半空间中瑞雷波多模式耦合及传播特性研究,2013.1-2015.12,参与,结题

[5] 国家自然科学基金面上项目:泡沫材料的高温本构及泡沫夹芯结构的热冲击阻力,2012.1-2015.12,参与,结题

[6] 国家自然科学基金面上项目:非均匀材料中的非经典热传导相关的机电耦合力学,2010.1-2012.12,参与,结题

 

 

 

 

 

 

 

 

 

代表性论文

[1] Chang D M,Liu X F. Total stress intensity factor of a ceramic plate with semi-elliptical surface defects based on non-Fourier heat conduction. Archive of Applied Mechanics, 2025, 96(1): 3  (SCI期刊, JCR影响因子:2.5, 检索号:A0348)

[2] Chang D M,Liu X F,Jin G,Han J X. Non-Fourier thermal shock resistance of the ceramic plate with an embedded elliptical crack. Archive of Applied Mechanics, 2023, 93: 773-784 (SCI期刊, JCR影响因子:2.5, 检索号:8H0MI)

[3] Chang D M, Wang B L, Liu X F, Wang T G, Jin G, Han J X. Non-Fourier thermal shock resistance and transient thermal fracture of magneto-electro-elastic composite with a penny-shaped crack. Engineering Fracture Mechanics, 2021, 253: 107871 (SCI期刊, JCR影响因子:5.3, 检索号:UA2EK)  

[4] Chang D M, Liu X F, Wang B L, Wang Q, Wang T G, Han J X. Thermal shock resistance and thermal fracture of a thermopiezoelectric cylinder based on hyperbolic heat conduction. Engineering Fracture Mechanics, 2020, 230: 107003 (SCI期刊, JCR影响因子:5.3, 检索号:KZ5EU)

[5] Chang D M, Liu X F, Wang B L, Liu L, Wang T G, Wang Q, Han J X. Exact solutions to magneto-electro-thermo-elastic fields for a cracked cylinder composite during thermal shock. International Journal of Mechanics and Materials in Design, 2020, 16: 3–18 (SCI期刊, JCR影响因子:3.6, 检索号:KV2VH)

[6] Chang D M, Liu X F, Wang B L, Wang T G, Wang Q. Non-Fourier thermal shock fracture of solids with shallow semi-elliptical surface crack. Theoretical and Applied Fracture Mechanics, 2018, 96: 160-167 (SCI期刊, JCR影响因子:5.6, 检索号:GQ2LC)

[7] Liu X F, Chang D M, Wang B L, Cai L R. Effect of temperature-dependency of material properties on thermal shock fracture of solids associated with non-Fourier heat conduction. Theoretical and Applied Fracture Mechanics, 2018, 93: 195-201 (SCI期刊, JCR影响因子:5.6, 检索号:FT2UX)  

[8] Chang D M, Wang B L. Surface thermal shock cracking of a semi-infinite medium: a nonlocal analysis. Acta Mechanica, 2015, 226(12): 4139-4147 (SCI期刊, JCR影响因子:2.9, 检索号:CX2GB)

[9] Chang D M, Wang B L. Strength evaluation of brittle ceramics with surface defects subjected to thermal shock. Philosophical Magazine, 2014, 94(23): 2633-2646 (SCI期刊, JCR影响因子:1.5, 检索号:AM7ML)

[10]Chang D M, Liu X F. Transient Thermal Cracking of a Brittle Half Space Medium with a Semi-Elliptical Surface Crack. Theoretical and Applied Fracture Mechanics, 2013, 66: 37-40 (SCI期刊, JCR影响因子:5.6, 检索号:AE3EF)

[11]Chang D M, Wang B L. Transient Thermal Elastic Fracture of a Piezoelectric Cylinder Specimen. Archive of Applied Mechanics, 2013, 80(5): 709-721 (SCI期刊, JCR影响因子:2.5, 检索号:115NA)

[12]Chang D M, Wang B L. Transient Thermal Fracture and Crack Growth Behavior in Brittle Media Based on Non-Fourier Heat Conduction. Engineering Fracture Mechanics, 2012, 94: 29-36. (SCI期刊, JCR影响因子:5.3, 检索号:036GU)

[13]Chang D M, Wang B L, Thermal Shock Resistance of Brittle Ceramic Materials with Embedded Elliptical Cracks. Philosophical Magazine Letters, 2011, 91(10): 648-655 (SCI期刊, JCR影响因子:1.1, 检索号:820EU)  

[14]Chang D. M, Liu X F. Eigenfunctions of Rayleigh Wave in Viscoelastic Halfspace. Applied Mechanics and Materials, 2014, 598: 486-489 (EI检索: 20143218027930)

[15]Chang D M, Wang B L, Fan Y H, Wang X Y. The Character of Piezoelectric Layer bonded to an Elastic Substrate under Static Anti-Plane Electromechanical Impacts. 2008 Symposium on Piezoelectricity. Acoustic Waves, and Device Applications, SPAWDA 2008, Nanjin, 2008: 509-512(EI检索: 20092812178287)

[16]刘雪峰, 凡友华, 常冬梅. 黏弹性层状介质中瑞雷波的本征值求解. 哈尔滨工业大学学报, 2017, 49(4): 122-125 (EI检索: 20172603849773)

[17]刘雪峰, 凡友华, 常冬梅. 含低速层层状介质中Rayleigh波频散曲线“交叉”点频率的计算, 科学技术与工程. 2016, 16(12): 7-19

[18]常冬梅,刘雪峰. 粘弹性介质中瑞雷波频散曲线和衰减曲线的反演. 地震工程学报,2015, 37(3): 739-742

[19]常冬梅, 王保林, 李金娥. 含半椭圆型表面缺陷陶瓷材料的热冲击阻力分析. 固体力学学报, 2011, 32(S1): 23-30

[20]李金娥, 王保林, 常冬梅. 层合材料的非傅里叶热传导及热应力. 固体力学学报, 2011, 32(S1): 248-253