- 国家自然科学基金面上项目,12372076,“高锰TWIP钢空间环境下的疲劳损伤机理及本构模型研究”,2024.1-2027.12,53万,主持
- 国家自然科学基金青年项目,11702060,“NiTiHf高温形状记忆合金热-力耦合循环变形行为的宏微观实验及本构模型研究”,2018.1-2020.12,25万,主持。
- 四川省科技计划省院省校合作重点项目,2020YFSY0015,“双程形状记忆合金空间展开结构及主动振动控制研究”,2020.1-2021.12,39万,主持。
- 四川省面上项目,2025ZNSFSC0087,镍钛形状记忆合金极端条件下功能性/结构性疲劳的耦合失效机理研究,2025.1-2026.12,20万。主持。
- 国家重点实验室基金,61429050203110,“高温形状记忆合金材料热-力耦合疲劳失效表征方法研究”,2021.1-2022.12,20万,主持。
- 广东省自然科学基金面上项目,2019A1515011319,“NiTi形状记忆合金多尺度疲劳失效机理及耦合损伤模型的有限元实现”,2019.10-2022.9, 10万,主持。
- 机械结构强度与振动国家重点实验室开放基金,SV2018-KF-14,“NiTi 形状记忆合金基于微观机理的耦合损伤本构模型研究”,2018.1-2019.12,10万,主持。
- Humboldt Research Fellowship,德国洪堡基金会,“Multi-scale cyclic deformation and fatigue failure of high-Mn TRIP/TWIP steels",2020.11-2022.4。
- Endeavour Research Fellowship ,澳大利亚政府教育与培训部,“The plastic deformation and fatigue failure of rail welds in heavy haul railways",2018。
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- 宋迪,杨泊钊,鲁友均. 中国发明专利:一种基于NiTi形状记忆合金的减振缓冲器,专利授权:CN202211055765.6
- 宋迪,鲁友均,刘犇,张德明,贺中中. 中国发明专利:一种SMA电励式双程旋转驱动器,CN202010972945.5,专利公开,2020.10.10.
- 宋迪,鲁友均,刘犇,贺中中,张德明. 中国发明专利:一种基于SMA的锁紧释放装置,CN202010973291.8,专利授权,2022.3.1.
- Di Song*, Michael Vormwald, Heinz Thomas Beier, Low-cycle fatigue behavior and life-prediction model of high-manganese twinning-induced plasticity steels with different loading orientations, pre-strains, and ambient temperatures, International Journal of Fatigue, 2025, 200, 109123
- Di Song, Shan Gong, Bo Xu*, Chao Yu, Cyclic functional degradation of NiTi shape memory alloy wires in wide ranges of strain rate and ambient temperature, International Journal of Fatigue, 2025, 191, 108683
- Di Song, Wenxiang Shi, Bo Xu, Chao Yu* . A thermo-mechanically coupled constitutive model for temperature- and rate-dependent cyclic functional degradation of NiTi shape memory alloys. Acta Mechanica Sinica, 2026, 42, 425060.
- Ronghai Wu, Yuxin Zhang, Zichao Peng, Di Song*, Heng Li. Predicting multiple fatigue properties of twinning-induced plasticity steels by black-box and white-box machine learning. Mechanics of Materials, 2025, 105307.
- Bo Xu, Xu Xiao, Qixing Zhang, Chao Yu*, Di Song, Qianhua Kan, Chong Wang*, Qingyuan Wang, Guozheng Kang*, Enhanced cyclic stability of NiTi shape memory alloy elastocaloric materials with Ni4Ti3 nanoprecipitates: Experiment and phase field modeling, Journal of the Mechanics and Physics of Solids, 2025, 196, 106011
- Jiaxin Cui, Jianqiu Zhou, Di Song, Zhixin Shi, Changqing Miao* ,A stress state-dependent phase-field model of ductile fracture for visco-elastic–plastic materials,Engineering Fracture Mechanics, 2025, 326, 111409
- L Liu, J Shi, D Song, C Miao*, Machine-learning molecular dynamics simulations of shock response and spallation behavior in PPTA crystals, Physical Chemistry Chemical Physics, 2025, 27 (22), 11684-11699
- X Cao, J Zhou, H Xu, D Song, C Miao*, An SPH model reconstruction framework with fragment mapping method for multiplate structure hypervelocity impact simulation, Advances in Space Research, 2025
- Z Shi, J Zhou, D Song, J Cui, M Yuan, C Miao*. The viscoelastic stress wave propagation model based on fractional derivative constitutive, International Journal of Impact Engineering 2025, 202, 105330
- Di Song, Chao Yu*, Chuanzeng Zhang, Guozheng Kang, Superelasticity degradation of NiTi shape memory alloy in wide ranges of temperature and loading level: Experimental observation and micromechanical constitutive model, International Journal of Plasticity, 2023, 161,103487
- Song, D.,* Beier, H.T., Vormward, M. (2023): The effect of loading direction and pre-deformation on the low-cycle fatigue behavior of high-Manganese twinning-induced plasticity steels. International Journal of Fatigue, (174), 107737.
- Zhang, Y., Yu, C.*, Song, D., Zhu, Y., Kan, Q.*, Kang, G. (2023): Solid-state cooling with high elastocaloric strength and low driving force via NiTi shape memory alloy helical springs: Experiment and theoretical model. Mechanics of Materials, (178), 104575.
- Yu, C., Zhou T., Song, D., Kan, Q.*, Kang, G. (2023): A two-scale thermo-mechanically coupled constitutive model for grain size- and rate-dependent deformation of nano-crystalline NiTi shape memory alloy. International Journal of Engineering Science, (187), 103843.
- Kan, Q., Shi, W., Song, D., Yu, C.*, Kang, G. (2023): A micromechanical constitutive model of high-temperature shape memory alloys. International Journal of Mechanical Sciences, (251), 108328.
- Yu, C., Jiang H.M., Song, D., Zhu Y., Kang, G.* (2023): A multi-scale diffusional-mechanically coupled model for super-elastic NiTi shape memory alloy wires in hydrogen-rich environment. International Journal of Plasticity, (165), 103614.
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