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交叉学科

陈辉

作者: 来源:  日期:2026年04月30日 16:03 人气:

长沙理工大学机械与运载工程学院研究生导师基本信息表

1、基本信息

    名:陈 辉

    别:

       

出生年月:1990年9月

    称:副教授

毕业院校:西南交通大学

学历学位:研究生/博士

手机号码:19976967738

电子邮箱:chen_hui5352@163.com

所在学科:力学

研究方向:先进材料力学性能表征方法

2、个人简介

湖南省力学学会理事。主要从事先进材料力学性能表征与失效机理分析等研究。先后主持国家自然科学基金、湖南省自然科学基金、湖南省教育厅科研项目、省部级重点实验室开放基金以及双一流建设项目等,并参与国家自然科学基金重点项目、面上项目等国家级课题多项。在《Acta Mater》、《Appl Math Model》、《Int J Mech Sci》、《中国科学》及《机械工程学报》等国内外权威期刊上发表论文50余篇,授权发明专利8项,参与制定国家标准2项。担任智利国家研究与发展署(ANID)国家基础科研基金项目评审专家,《Int J Mech Sci》、《Measurement》等期刊审稿人及国家标准评审专家。获“湖南省优秀硕士论文指导教师”、“校年度优秀教师”等荣誉,主持湖南省普通高校教学研究与改革项目1项,指导本科生省级大创项目2项。

3、教育背景

2012.09-2019.06

西南交通大学力学与工程学院

固体力学,博士

2008.09-2012.06

西南交通大学力学与工程学院

工程力学,本科

4、主讲课程

主要承担《材料力学》、《理论力学》及《实验力学》等本科、研究生课程教学工作。


5、主要课题

[1]国家自然科学基金青年项目, 激光增材制造金属损伤机理及非均匀断裂性能的原位压痕研究, 2025-01 至 2027-12, 在研, 主持;

[2]国家自然科学基金重点项目, 面向服役安全的热端结构损伤容限可靠性设计理论与方法研究, 2023-01 至 2027-12, 在研, 主要参与;

[3]湖南省自然科学基面上项目, 选区激光熔化合金高温后力学性能的高通量压痕测试研究, 2025-01 至 2027-12, 在研, 主持;

[4]湖南省自然科学基金青年项目, 延性材料模量、强度与硬度的一体化压痕测试方法, 2021-01 至 2023-12,结题, 主持;

[5]教育厅优秀青年项目,钢结构焊接残余应力的微压痕数值模拟与测试方法,2020/09- 2023/8,结题,主持

6、主要论文

[1].Chen H, Xiao J, Peng H, et al. A new method for predicting residual stress in light alloys using truncated conical indentation. International Journal of Pressure Vessels and Piping, 2025, 214: 105427.

[2]Chen H, Ou J, et al. Composite dual-conical indentation model for obtaining the hyperelastic constitutive curves of rubber-like materials[J]. Polymer Testing, 2025: 108968.

[3]Fu Z, Chen H*, Yang K,et al.A novel semi-analytical sharp indentation model for inverse identifying metallic plastic properties[J]. Measurement, 2026,269, 120731.

[4]Meng Z, Chen H*, Peng H, et al. Evaluation method of uniaxial residual stress in metallic materials by spherical indentation[J]. Materials Today Communications, 2025, 42: 111370.

[5]Meng Z, Chen H*, Peng H, et al. A novel model to obtain equi-biaxial residual stress of metallic materials via instrumented spherical indentation[J]. Nondestructive Testing and Evaluation, 2024: 1-20.

[6]Chen H, Peng H, Cai L, et al. A novel combined dual-conical indentation model for determining plastic properties of metallic materials[J]. Journal of Materials Research and Technology, 2022, 20: 3241-3254.

[7]Fu Z, Chen H*, Peng H, et al. A novel model for obtaining both equi-biaxial and uniaxial residual stress of metallic materials by instrumented sharp indentation[J]. International Journal of Pressure Vessels and Piping, 2023, 203: 104942.

[8]Chen H, Fu Z, Chen D, et al. A unified sharp indentation method for obtaining stress-strain relations, strength and Vickers hardness of ductile metallic materials[J]. Materials Today Communications, 2022, 33: 104652.

[9]Chen H, Cai L X. An elastoplastic energy model for predicting the deformation behaviors of various structural components[J]. Applied Mathematical Modelling, 2019, 68:405-421.

[10]Chen H, Cai L X, Bao C. Equivalent-energy indentation method to predict the tensile properties of light alloys[J]. Materials & Design, 2019, 162:322-330.

[11]Chen H, Cai L X. Theoretical model for predicting uniaxial stress-strain relation by dual conical indentation based on equivalent energy principle[J]. Acta Materialia, 2016, 121: 181-189.

[12]Chen H, Cai L X. Unified elastoplastic model based on a strain energy equivalence principle[J]. Applied Mathematical Modelling, 2017, 52: 664-671.

[13]Peng Y., Cai L X, Chen H*, et al. A new method based on energy principle to predict uniaxial stress-strain relations of ductile materials by small punch testing[J]. International Journal of Mechanical Sciences, 2018, 138: 244-249.

[14]Peng Y, Cai L X, Chen H*, et al. A novel semi-analytical method based on equivalent energy principle to obtain J resistance curves of ductile materials[J]. International Journal of Mechanical Sciences, 2018, 148: 31-38.

[15]Chen H, Cai L X. Theoretical conversions of different hardness and tensile strength for ductile materials based on stress–strain curves[J]. Metallurgical and Materials Transactions A, 2018, 49(4): 1090-1101.

[16]Chen H, Cai L. A universal elastic-plastic model correlating load-displacement relation and constitutive parameters for typical testing components[J]. Results in Physics, 2019: 102230.

[17]Chen H, Cai L X. Unified ring-compression model for determining tensile properties of tubular materials [J]. Materials Today Communications, 2017, 13: 210-220.

[18]Chen H, Cai L X, Bao C. A novel model for determining tensile properties and hardness of steels by spherical indentations[J]. Strain, 2020: 12365.

[19]Chen H, Cai L X, Li C X. An elastic-plastic indentation model for different geometric indenters and its applications[J]. Materials Today Communications, 2020:101440.

[20]Peng Y, Cai L, Yao D, Chen H*, et al. A novel method to predict the stress-strain curves and J resistance curves of ductile materials by small samples[J]. International Journal of Pressure Vessels and Piping, 2019:172:48-55.

[21]Peng Y, Cai L X, Chen H*, et al. A theoretical model for predicting uniaxial stress-strain relations of ductile materials by small disk experiments based on equivalent energy method[J]. Transactions of the Indian Institute of Metals, 2019, 72(1): 133-141.

[22]Peng Y, Cai L X, Chen H*, et al. Application of a semi-analytical method that accounts for constraint effects in the determination of resistance curves of mode I cracked specimens[J]. Theoretical and Applied Fracture Mechanics, 2020,107: 102560.

[23]陈辉,范中天,彭晖,等.预测金属材料拉伸性能的圆台形平面压入方法[J].工程力学,2024,41(11):207-216.

[24]陈辉,蔡力勋,彭晖,等.幂硬化材料圆锥压入完整塑性区的应力分布模型[J].中国科学:物理学 力学 天文学,2023,53(01):95-104.

[25]陈辉,傅作华,陈得良,等.基于维氏压入理论模型的材料塑性参数与硬度一体化预测方法[J].机械工程学报,2023,59(08):132-141.

[26]陈辉,蔡力勋,彭晖.预测铝合金单轴力学性能的复合型双锥压入法[J].机械工程学报,2021,57(20):79-88.

[27]李虎, 陈辉*, 彭晖, 等.TC17钛合金表面残余应力的点阵式维氏压痕测试[J].机械工程材料,2024,48(07):93-99.

[28]陈辉, 蔡力勋, 包陈.双锥度压入的FAT迭代法获取材料的力学性能[J].核动力工程, 2015, 36(5): 101-104.

7、主要专利

[1]蔡力勋, 陈辉, 刘晓坤,  包陈, 张志杰. 基于球、锥一体压头的材料等效应力-应变关系预测方法, 中国, 201810677841.4 [P]. 2022-4-29,

[2]陈辉 ,蔡力勋, 包陈,尹涛. 圆环径向压缩能量预测材料单轴本构关系测定方法: 中国, 201510309391.X [P].2017-12-19.

[3]蔡力勋,陈辉,包陈,刘晓坤. 圆球形压入预测材料单轴应力-应变关系测定方法: 中国, 201610023696.9 [P].2018-07-31.

[4]蔡力勋,陈辉,彭云强. 双锥形压入预测材料单轴本构关系测定方法: 中国, 201610024076.7 [P].2018-05-22.

[5]蔡力勋,陈辉. 圆柱形平头压入预测材料单轴本构关系的测定方法: 中国, 201610023839.6 [P].2018-07-31.

[6]蔡力勋,陈辉. 一种基于圆锥形压头的已知材料残余应力测定方法, 201810706088.7 [P]. 2020-09-08.

8、获奖情况

.陈辉(10/15); 在役公路桥梁服役性能不中断交通精准诊评与快速提升关键技术, 中国公路学会科学技术一等奖, 2023.

9、联系方式

办公地址:新能源大楼3A 203

邮政编码410114

电话号码19976967738

Email: chen_hui5352@163.com