1. Ma L., Luo Y., Wang Y. et al. (2017) Constitutive and Damage Modelling of H11 Subjected to Low Cycle Fatigue at High Temperature, Fatigue & Fracture of Engineering Materials & Structures, Vol.40, No.12, p.2107-2117.
2. Ma L., Luo Y., Wang Y. et al. (2018) Fatigue and Ratcheting Assessment of AISI H11 at 500 ℃ Using Constitutive Theory Coupled with Damage, Fatigue & Fracture of Engineering Materials & Structures, Vol.41, No.3, p.642-652.
3. Ma L., Luo Y., Wang Y. et al. (2017) Visco-Plastic Constitutive Model for Cyclic Responses Simulation and Lifetime Prediction of Hot-Work Tool Steel H13 at Elevated Temperature, Steel Research Internatioanl, Vol.88, No.11, p.1-12.
4. 马玲,罗远新,王勇勤等.(2017)疲劳蠕变交互作用下挤压筒设计理论及寿命预测模型,机械工程学报,Vol.53, No.16, p.163-172.
5. Ma L., Wang Y., Luo Y. et al. (2016) Determination of Self-excited Vibration Criterion for Strip Rolling mill, WSEAS Transactions on Applied And Theoretical Mechanics, Vol.11, p.97-106.
6. Ma L. , Wang Y. , Luo Y. (2020) A method for assessing lifetime of an extrusion container subjected to fatigue-creep interaction[J]. Engineering Failure Analysis, 118:1-9.
7. Ma L. , Wang Y. , Luo Y. (2020) Influence of shrinkage loss on failure of an extrusion container associated with creep deformation[J]. Mechanics Based Design of Structures and Machines, 1-14.
8. Ma L. , Zhang L. , Guo F. et al. (2021) High-Temperature Mechanical Behavior Assessment based on a Developed Constitutive Model of Inconel 718 Fabricated by Selective Laser Melting[J]. Advanced Engineering Materials, 23 (8):1-10.