基本信息
杨正茂  男  硕导  中国科学院力学研究所
电子邮件: zmyang@imech.ac.cn
通信地址: 北京市海淀区北西环西路15号
邮政编码: 100190

研究领域

长期从事空天领域结构完整性技术中的关键力学问题研究,重点聚焦于高温复合材料的本构理论、破坏理论、多尺度力学行为、数据驱动的力学计算方法、高温试验与测试方法、新型结构的热-力学设计与分析、复合材料制造工艺力学、安全寿命评估以及多功能驱动的设计方法等。

具体工作包括:

(1)极端热力环境下陶瓷基复合材料损伤力学与失效机理;

(2)陶瓷基/碳基复合材料的高温强度理论、损伤、疲劳与断裂力学;

(3)极端耦合环境下多功能结构的协同设计理论与性能调控方法;

(4)极端热力环境下复合材料与结构的测试与试验技术;

(5)人工智能驱动的复合材料与结构描述、表征与定量建模;

期刊论文出版信息

2026

杨正茂等(2026). 航空发动机环境障涂层热-力-化耦合衰退机理与力学建模. 力学学报. (Accepted for publication).

J. Wang,  Z. Yang# , et. al. (2026). Dynamic Roughness Evolution and Vortex-Induced Shear-Accelerated Failure in CMCs Subjected to Cyclic Supersonic Aerothermal Shocks. Extreme Mechanics Letters. 86, 102494.

Z. Wang, H. Yan, Y. Liu, and Z. Yang#(2026). A quasi-3D reduced-order model with improved complex potentials for interfacial shear stress in scarf-repaired composites. International Journal of Solids and Structures. 337, 114064.

X. Guan, H. Yan, Y. Zhang, J. Jiao and Z. Yang#(2026). A Unified Framework for Interface-Controlled Matrix Cracking in Ceramic Matrix Composites. Engineering Fracture Mechanics, 340: 112157.

Z. Wang, Y. Liu, X. Yao and Z. Yang# (2026). Progressive damage framework for interface-controlled load-transfer and shear-coupled failure in composites. Engineering Fracture Mechanics, 339: 112060.

X. Guan, H. Yan, Z. Zhang, Z. Wang and Z. Yang#(2026). Process-induced deformation prediction in CMCs based on a coupled thermo-mechanical-chemical model. Composites Part A: Applied Science and Manufacturing. 205, 109721.

W. Qian, H. Qin, A. Rack, Z. Yang*, B. Lukic, T. Xiao*, T. Paul, S. Dong*, S. Wu* (2026). Ultrahigh-temperature fatigue origin of SiC/SiC composites. https://ssrn.com/abstract=5706325 or http://dx.doi.org/10.2139/ssrn.5706325

2025

X. Chen, Z. Yang # (2026). Synergistic Heat Transfer Modeling of Actively Cooled Lattice Structures under Thermal GradientsInternational Journal of Heat and Mass Transfer. 255(1), 127674.

Z. Niu, C. He#Z. Yang #, and Z. He(2026). Review: Dynamics of molten droplet/pool fusion in additive manufacturing. Acta Mechanica Sinica, 41, 325020 DOI: 10.1007/s10409-025-25020-x

X. Guan, Y. Wang, J. Jiao, and Z. Yang #(2025). Hierarchical modelling of Strain-concentrating effect in notched ceramic matrix composite laminates.    International Journal of Mechanical Sciences , 304, 110641.

J. Xue, S. Wang, Z. Chen and Z. Yang #(2025).  A Multiscale Model for the Thermomechanical Behavior of SiC Composite Cladding Subjected to Thermo-mechanical Irradiation Coupling. Journal of Nuclear Materials. 615, 155948. 

杨正茂(2025). 纤维增强陶瓷基复合材料热结构可重复使用分析、设计和评价中的关键力学问题.  力学学报, 57(6): 1-15.

2024

Z. Yang#, J. Wang, et. al.  (2024). Thermomechanical-induced cracking model for ceramic matrix composite laminates subjected to thermal gradients and transientsInternational  Journal of Solids and Structures , 300, 112927.

J. Wang,  Z. Yang# , et. al. (2024). Representation of Thermomechanical Damage in Fiber-Reinforced Ceramic Composites at High Thermal Gradients in Supersonic FlowAIAA Jounal. 62(6): 2331-2341.

J. Wang,  Z. Yang# , et. al. (2024). High-temperature transient-induced thermomechanical damage of fiber-reinforced ceramic-matrix composites under supersonic wind tunnel testsComposites Part A: Applied Science and Manufacturing. 184, 108243.

S. Yang, L. Shen, W. Li, Z. Zhang#Z. Yang # . (2024).   Multiscale modelling for the thermal transport behaviour of ceramic matrix composites with hierarchical structuresComposites Communications. 46, 101848.

2023

J. Chen, M. Li, Kailun Li, W. Zhang#, Z. Yang#, C. Zhao, J. Ma, W. Liu#. (2023). Cracking mechanisms in additively manufactured pure tungsten from printing single tracks, thin walls and cubes.   Materials & Design . 234, 112363.

Z. Yang# , W. Li, Y. Chen et. al. (2023).  Life Assessment of Thermomechanical Fatigue in a Woven SiC/SiC Ceramic Matrix Composite with an Environmental Barrier Coating at Elevated Temperature.  International Journal of Fatigue, 172, 107584.  

Z. Yang# , K. Pang, X. Lei et. al. (2023).  A quantitative representation of damage and failure response of 3D textile SiC/SiC ceramics matrix composites subjected to flexural loading .   Journal of Engineering Materials and Technology: Transactions of the ASME , 145(3): 031001. 

2022

Z. Yang# , J. Sun,  J. Yang et. al. (2022). Mechanical behavior of woven CMCs under non-uniform  stress and strain fieldsComposite Structures , 299,  116097

Z. Yang# , H. Yan, J. Yang and X. Li#. (2022). A micromechanical damage model for oxide/oxide ceramic matrix composites with hierarchical porosity under thermomechanical loading. Ceramics International,  46(9): 14045-14052. 

X. Li#, M. Zhang, J. Qi, Z. Yang#, and Z. Jiao (2022). A Simulation Study on the effect of residual stress on the multi-Layer selective laser melting processes considering solid-state phase transformation.  Materials , 15(20): 7175. 

J. Li, Z. Yang#, G. Qian# et. al. (2022). Machine learning based very-high-cycle fatigue life prediction of Ti-6Al-4V alloy fabricated by selective laser meltingInternational Journal of Fatigue , 158, 106764. 

2021

J. Yang, and F. Jing#, and Z. Yang# K. Jiang et. al. (2021). Thermomechanical fatigue damage mechanism and life assessment of a single crystal Ni-based superalloyJournal of Alloys and Compounds , 872,159578. 

2020

Z. Yang# , and H. Yan and G. Qianet. al. (2020). Influence of hierarchical porosity on the mechanical properties of porous woven composites under thermomechanical loadingInternational Journal of Solids and Structures , 200-201, 13-22.

Z. Yang# , and H. Yan (2020). Multiscale modeling and progressive failure analysis of 8-harness satin woven compositesComposite Structures , 242C, 112186.

Z. Yang# , and H. Liu (2020). An elastic-plastic constitutive model for thermal shocked oxide/oxide ceramic-matrix compositesInternational Journal of Mechanical Sciences , 175C, 105528. 

H. Liu, and C. Pei, and J. Yang and Z. Yang#.  (2020). Influence of long-term thermal aging on the microstructural and tensile properties of all-oxide ceramic matrix compositesCeramics International , 46(9): 14045-14052. 

Z. Yang# , and H. Liu (2020). A continuum fatigue damage model for the cyclic thermal shocked ceramic-matrix compositesInternational Journal of Fatigue , 134C, 105507.  

F. Jing, and J. Yang# and Z. Yanget. al. (2020). Critical compressive strain and interfacial damage evolution of EB-PVD thermal barrier coatingMaterials Science and Engineering: A , 776C, 139038. 

Z. Yang# , and J. Yang (2020). Investigation of long-term thermal aging-induced damage in oxide/oxide ceramic matrix compositesJournal of the European Ceramic Society , 40(4): 1549-1556. 

Z. Yang# , and H. Liu (2020). A continuum damage mechanics model for 2-D woven oxide/oxide ceramic matrix composites under cyclic thermal shocksCeramics International , 46(5): 6029-6037. 

H. Liu, H. Yuan# and Z. Yang (2020). Damage modeling of oxide/oxide ceramic matrix composites under cyclic loading conditionsCeramics International , 46(15): 23379-23389. 

Z. Yang# , and H. Liu (2020). Effects of thermal aging on the cyclic thermal shock behavior of oxide/oxide ceramic matrix compositesMaterials Science and Engineering: A , 769C: 138494.

2019

Z. Yang , H. Liu and H. Yuan# (2019). Micro-porosity as damage indicator for characterizing cyclic thermal shock-induced anisotropic damage in oxide/oxide ceramic matrix composites.  Engineering Fracture Mechanics , 220: 106669.

H. Liu, Z. Yang and H. Yuan# (2019). A novel elastoplastic constitutive model for woven oxide/oxide ceramic matrix composites with anisotropic hardeningComposite Structures , 229, 111420.  (26) 

Z. Yang , H. Yuan# and B. Markert (2019). Representation of micro-structural evolution and thermo-mechanical damage in thermal shocked oxide/oxide ceramic matrix compositesInternational Journal of Fatigue , 126: 122-129. 

Z. Yang , H. Yuan# and H. Liu (2019). Evolution and characterization of cyclic thermal shock-induced thermomechanical damage in oxide/oxide ceramics matrix compositesInternational Journal of Fatigue , 120: 150-161.