[1]
F. Chen*, J.L.S. Llamazares
*, C.F. Sánchez-Valdés, P. Müllner, Y.X. Tong, L. Li, Wide Structural and Magnetic Successive Transitions and Related Magnetocaloric Properties in a Directionally Solidified Polycrystalline Ni-Co-Mn-In Alloy, Shape Memory and Superelasticity, 2020,6: 54-60
[2]
F. Chen*, J.L.S. Llamazares
*, C.F. Sánchez-Valdés, F.H. Chen, Z.B. Li, Y.X. Tong, L. Li, Large magnetic entropy change and refrigeration capacity around room temperature in quinary Ni41Co9-xFexMn40Sn10 alloys (x=2.0 and 2.5), Journal of Alloys and Compounds, 2020, 825: 154053
[3]
F. Chen*, J.L.S. Llamazares
*, C.F. Sánchez-Valdés, F.H. Chen, Y.X. Tong, L. Li, Ni-Co-Mn-Sn quaternary alloys: Magnetic hysteresis loss reduction and ductility enhancement by iron alloying, Journal of Magnetism and Magnetic Materials, 2019, 485:351-357
[4]
F. Chen*, J.L.S. Llamazares
*, C.F. Sánchez-Valdés, P. Müllner, Y.G. Shi, Y.X. Tong, L. Li, High Temperature Martensitic Transformation and Giant Magnetocaloric Effect in Ni40Co10Mn41Sn9 Melt-spun Ribbons, Journal of Alloys and Compounds, 2018, 744: 493-501
[5]
F. Chen*, Y.X. Tong, L. Li, J.L.S. Llamazares
*, C.F. Sánchez-Valdés, P. Müllner, The effect of step-like martensitic transformation on the magnetic entropy change of Ni40.6Co8.5Mn40.9Sn10 unidirectional crystal grown with the Bridgman-Stockbarger technique, Journal of Alloys and Compounds, 2017, 691: 269-274
[6]
F. Chen*, Y.X. Tong, L. Li, J.L.S. Llamazares
*, C.F. Sánchez-Valdés, P. Müllner, Broad first-order magnetic entropy change curve in directionally solidified polycrystalline Ni-Co-Mn-In, Journal of Alloys and Compounds, 2017, 727: 603-609
[7]
F. Chen*, W. L. Liu, Y.G. Shi, and P. Müllner, Influence of Annealing on Martensitic Transformation and Magnetic Entropy Change in Ni37.7Co12.7Mn40.8Sn8.8 Magnetic Shape Memory Alloy Ribbon, Journal of Magnetism and Magnetic Materials, 2015, 377:137-141
[8] Xili LU, Dexi SU,
Feng CHEN*, Weili LIU, Yangguang SHI, Yunxiang TONG and Li LI, Martensitic transformation and its thermal cycling stability in Ni56Mn21Cu4Ga19 high temperature shape memory ribbon,
Acta Metallurgica Sinica (Engl. Lett.), 2015, 28: 243-248
[9]
F. Chen*, Y. X. Tong, B. Tian, Y.F. Zheng, Martensitic transformation and magnetic properties of Ti-doped NiCoMnSn shape memory alloy, Rare Metals, 2014, 33(5):511–515
[10]
F. Chen*, Y. X. Tong, B. Tian, L. Li, Y.F. Zheng, Y.Liu, Magnetic-field-induced Reverse Transformation in a NiCoMnSn High Temperature Ferromagnetic Shape Memory Alloy, Journal of Magnetism and Magnetic Materials, 2013, 347: 72-74
[11]
F. Chen*, Y. X. Tong, Y.J. Huang, B. Tian, Y.F. Zheng, Suppression of γ Phase in Ni38Co12Mn41Sn9 Alloy by Melt Spinning and Its Effect on Martensitic Transformation and Magnetic Properties, Intermetallics, 2013, 36: 81-85
[12]
陈枫*, 苏德喜, 佟运祥, 牛立群(研究生), 王海波, 李莉, Ni43Co7Mn41Sn9 高温形状记忆合金薄带的结构和相变,
金属学报, 2013, 49:976-980