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丁悦

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所在单位:航天航空学院
办公地点:兴庆校区教一楼
性别:女
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学位:博士
职称:副教授
博士生导师:否
硕士生导师:是
学科:力学
学术论文
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论文期刊

[1]      Ding Y*, Yuan WK, Liang XM and Wang GF*. A simple and robust method for characterizing the power‑law rheology behavior of biological cells through indentations. Biomechanics and Modeling in Mechanobiology, 2026, 25, 16.

[2]      Ding Y*, Liang XM, Yuan WK and Wang GF*. Effects of surface tension on spherical indentation of viscoelastic materials during loading and unloading. International Journal of Solids and Structures, 2026, 325, 113707.

[3]      Ding Y*, Yuan WK, Liang XM, Niu XR and Wang GF*. Power-law rheology behavior of soft matter with surface tension under spherical relaxation and creep indentations. Journal of Applied Mechanics, 2026,.

[4]      Liang XM, Yuan WK, Ding Y and Wang GF. Adhesive Contact of Rough Elastic Solids Based on an Incremental Model. Tribology Letters, 2026, 7421.

[5]      Wang JJ, Yuan WK, Ding Y and Wang GF. On the interface stresses and local-slip evolution in the frictional contact between rigid cylinder and single-crystal copper. Scientia Sinica Physica Mechanica & Astronomica, 2026,

[6]      Bian JJ, Yuan WK, Ding Y, SHAO ZS and Wang GF. Crystal Dislocation Generator (CryDisGen): A versatile toolkit to create general dislocation structures in crystals. Computer Physics Communications, 2026, 327, 110287.

[7]      Li CY, Liang XM, Yuan WK, Ding Y and Wang GF. Size-dependent effects and surface roughness in contact mechanics. Applied Mechanics Reviews, 2026, 78 010801.

[8]      Ding Y*, Yuan WK, Liang XM, Niu XR and Wang GF*. Relaxation and creep of biological materials under spherical indentation considering surface tension. Mechanics of Materials, 2025, 202, 105257.

[9]      Ding Y*, Yuan WK, Chen SW, Niu XR and Wang GF*. The effects of surface tension on spherical oscillatory indentation of biological material. Journal of Applied Mechanics, 2025, 92, 031004.

[10]  Wang SC, Ding Y*, Zhou YL and Wang GF*. Temperature Rise in Frictional Sliding Contact of Elastic-Plastic Solids with Fractal Surface. Tribology Letters, 2025, 73, 2.

[11]  Yuan WK, Ding Y, Bian JJ and Wang GF. General load-depth relations for spherical, conical, and flat-ended cylindrical indentations of soft elastic layers: From ultra-thin-film to half-space. Mechanics of Materials, 2025, 211, 105502.

[12]  Bian JJ, Yuan WK, Yang L, Ding Y, Yu XH, Shao ZS, Zhang H and Wang GF. Influence of planar defects on the mechanical behaviors of spherical metallic nanoparticles. Physica Scripta, 2025, 100, 015921.

[13]  Ding Y*, Li CY, Niu XR and Wang GF*. Effects of surface energy and substrate on modulus determination of biological films by conical indentation. SCIENCE CHINA Technological Sciences, 2024, 67(6), 1757–1764.

[14]  Yuan WK, Ding Y, Wang GF and Niu XR. Analytical expression for the atomic friction of a single asperity based on the prandtl–tomlinson model. Acta Mechanica Solida Sinica, 2024, 37, 416.

[15]  Yuan WK, Ding Y, Niu XR and Wang GF. Adhesion of a Rigid Sphere to a Freestanding Elastic Membrane With Pre-Tension. Journal of Applied Mechanics, 2024, 91(12), 121008.

[16]  Ding Y, Liang XM, Li CY and Wang GF. Surface effects on the spherical indentation of biological film/substrate structures. Journal of Physics D: Applied Physics, 2023, 56, 385307.

[17]  Liang XM, Ding Y, Li CY, Wang GF. An Incremental Contact Model for Rough Viscoelastic Solids. International Journal of Mechanical Sciences, 2023, 255, 108483.

[18]  Li CY, Ding Y, Liang XM, Wang GF. An improved elastic-plastic contact model with asperity interactions based on Greenwood-Williamson theory. Acta Mechanica, 2023, 234 (11), 5187.

[19]  Yuan WK, Ding Y and Wang GF. Universal contact stiffness of elastic solids covered with tensed membranes and its application in indentation tests of biological materials. Acta Biomaterialia, 2023, 171, 202.

[20]  Ding Y, Yuan WK, Liang XM, Wang GF and Niu XR. Identification of Plastic Properties through Spherical Indentation. Advanced Engineering Materials, 2022, 24 (11), 2200379.

[21]  Ding Y, Liang XM and Wang GF. An Incremental Contact Model for Rough Surfaces of Strain-Hardening Solids. International Journal of Applied Mechanics, 2022, 14 (8), 2250088.

[22]  Liang XM, Ding Y, Duo Y, Yuan WK, Wang GF. Elastic-Perfectly Plastic Contact of Rough Surfaces: An Incremental Equivalent Circular Model. Journal of Tribology, 2022, 144, 051501.

[23]  Ding Y, Apostolidou D and Marszalek P. Mechanical Stability of a Small, Highly-Luminescent Engineered Protein NanoLuc. International Journal of Molecular Sciences, 2021, 22, 55.

[24]  Ding Y and Wang GF. Size-dependent yield hardness induced by surface energy. Extreme Mechanics Letters, 2020, 38, 100736.

[25]  Ding Y, Yuan WK and Wang GF. Spherical indentation on biological films with surface energy. Journal of Physics D: Applied Physics, 2018, 51 (48), 295401.

[26]  Ding Y, Wang J, Xu GK and Wang GF. Are elastic moduli of biological cells indent depth dependent? A clarification by a new contact model with surface tension. Soft Matter, 2018, 14, 7534.

[27]  Ding Y, Wang GF, Feng XQ and Yu SW. Micropipette aspiration method for characterizing biological materials with surface energy. Journal of Biomechanics, 2018, 80, 32.

[28]  Yuan WK, Long JM, Ding Y and Wang GF. Statistical contact model of rough surfaces: The role of surface tension. International Journal of Solids and Structures, 2018, 138, 217.

[29]  Li SH, Yuan WK., Ding Y and Wang GF. Indentation load–depth relation for an elastic layer with surface tension. Mathematics and Mechanics of Solids, 2018, 24, 1147.

[30]  Ding Y, Xu GK and Wang GF. On the determination of elastic moduli of cells by AFM based indentation. Scientific Reports, 2017, 7, 45575.

[31]  Long JM, Ding Y, Yuan WK, Chen W and Wang GF. General relations of indentations on solids with surface tension. Journal of Applied Mechanics, 2017, 84 (5), 051007.

[32]  Long JM, Ding Y and Wang GF. Contact problems at micro/nano scale with surface tension. Procedia IUTAM, 2017.

[33]  Ding Y, Niu XR, Wang GF, Feng XQ and Yu SW. Surface effects on nanoindentation of soft solids by different indenters. Materials Research Express, 2016, 3 (11), 115021.

[34]  Yuan WK, Long JM., Ding Y and Wang GF. Micro/Nanocontact Between a Rigid Ellipsoid and an Elastic Substrate With Surface Tension. Journal of Applied Mechanics, 2016, 84 (1), 011012.

[35]  Yang L, Feng J, Ding Y, Bian JJ and Wang GF. An analytical description for the elastic compression of metallic polyhedral nanoparticles. Aip Advances, 2016, 6 (8), 085113.

[36]  Ding Y, Niu XR and Wang GF. Compression of Hyperelastic Cells at Finite Deformation with Surface Energy. International Journal of Applied Mechanics, 2016, 8 (6), 1650080.

[37]  Ding Y, Niu XR and Wang GF. Elastic compression of nanoparticles with surface energy. Journal of Physics D: Applied Physics, 2015, 48 (48), 485303.