朱一林 :成都大学特聘副研究员

更新时间:2024-09-20 20:26

朱一林,男,1988年3月生,博士,成都大学特聘副研究员,分别于2009年7月和2015年7月在西南交通大学工程力学固体力学专业获学士和博士学位(硕博连读),毕业时均荣获“四川省优秀毕业生”称号,2015年9月作为人才引进被特聘副研究员进入成都大学建筑与工程学院工作。2011年,曾荣获西南交通大学“轨道交通行业拔尖创新人才”培育资格。主持西南交通大学博士生创新基金1项,主研国家杰出青年基金和重点项目各1项。主要从事材料循环本构关系、多场耦合问题、生物力学、拉胀结构材料以及疲劳损伤方面的研究。在《International Journal of Plasticity》、《International Journal of Mechanical Sciences》、《Journal of the Mechanical Behavior of Biomedical Materials》、《Journal of Biomechanics》以及《ASME-Journal of Applied Mechanics》等国际固体力学、材料科学期刊上发表SCI论文15篇,谷歌 Scholar引用100余次。

正文

主要研究方向

(1)金属材料大变形循环本构模型。

(2)金属材料热-力耦合循环本构模型。

(3)生物材料循环本构模型。

(4)高分子材料循环本构模型。

(5)拉胀材料力学行为。

教育研究经历

2005.09~2009.07 西南交通大学 力学与工程学院 工程力学 本科

2009.09~2015.7 西南交通大学 力学与工程学院 固体力学 博士(硕博连读)

2015.09~2018.09 成都大学 建筑与土木工程学院 特聘副研究员

2015.10~2015.12 香港理工大学 工业与系统控制工程系 助理研究员

2016.03~2017.07 新加坡国立大学 土木与环境工程系 博士后研究员

学术论文 代表性论文:

1. Wang, Z. P., Poh, L. H., Dirrenberger, J.,Zhu, Y., \u0026 Forest, S. (2017). Isogeometric shape optimization of smoothed petal auxetic structures via computational periodic homogenization. Computer Methods in Applied Mechanics and Engineering, 323, 250-271.

2.Zhu, Y., Kang, G., Yu, C. (2017). A finite cyclic elasto-plastic constitutive model to improve the description of cyclic stress-strain hysteresis loops. International Journal of Plasticity, 95, 191-215.

3.Zhu, Y. (2017). Cyclic torsion behavior and the related thermal response of 316L stainless steel tube: Experiments and FE simulations. International Journal of Mechanical Sciences, 128, 17-22.

4.Zhu, Y., \u0026 Poh, L. H. (2017). On an energetic or dissipative isotropic hardening mechanism for thermo-mechanical models in cyclic loading. International Journal of Mechanical Sciences, 122, 297-307.

5.Zhu, Y., Lu, F., Yu, C., Kang, G. (2016). A rate-type nonlinear viscoelastic-viscoplastic cyclic constitutive model for polymers: Theory and application. Polymer Engineering \u0026 Science, 56: 1375-1381.

6.Zhu, Y., Poh, L. H. (2016). A finite deformation elasto-plastic cyclic constitutive model for ratchetting of metallic materials. International Journal of Mechanical Sciences, 117, 265-274.

7.Zhu, Y., Kang, G., Yu, C., Poh, L. H. (2016). Logarithmic rate based elasto-viscoplastic cyclic constitutive model for soft biological tissues. Journal of the Mechanical Behavior of Biomedical Materials, 61, 397-409.

8.Zhu, Y., Kang, G., Kan, Q., Bruhns, O. T., Liu, Y. (2016). Thermo-mechanically coupled cyclic elasto-viscoplastic constitutive model of metals: Theory and application. International Journal of Plasticity, 79, 111152.

9. Lu, F., Kang, G.,Zhu, Y., Xi, C., Jiang, H. (2016). Experimental observation on multiaxial ratchetting of polycarbonate polymer at room 温度. Polymer Testing, 50, 135-144.

10. Yu, C., Kang, G., Lu, F.,Zhu, Y., Chen, K. (2016). Viscoelastic-Viscoplastic Cyclic Deformation of Polycarbonate Polymer: Experiment and Constitutive Model. Journal of Applied Mechanics, 83(4), 041002.

11. Yu, C., Kang, G., Kan, Q.,Zhu, Y. (2015). Rate-dependent cyclic deformation of super-elastic NiTi shape memory alloy: Thermo-mechanical coupled and physical mechanism-based constitutive model. International Journal of Plasticity, 72, 60-90.

12. Ding, J., Kang, G.,Zhu, Y., Zhu, M. (2014). Finite element analysis on bending fretting fatigue of 316L stainless steel considering ratchetting and cyclic hardening. International Journal of Mechanical Sciences, 86, 26-33.

13.Zhu, Y., Kang, G., Kan, Q., Bruhns, O. T. (2014). Logarithmic stress rate based constitutive model for cyclic loading in finite plasticity. International Journal of Plasticity, 54, 34-55.

14.Zhu, Y., Kang, G., Kan, Q., Yu, C. (2014). A finite viscoelastic–plastic model for describing the uniaxial ratchetting of soft biological tissues. Journal of biomechanics, 47(5), 996-1003.

15.Zhu, Y., Kang, G., Ding, J., Zhu, M. (2013). Study on bending fretting fatigue of LZ50 axle steel considering ratchetting by finite element method. Fatigue \u0026 Fracture of Engineering Materials \u0026 Structures, 36(2), 127-138.

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