[1]     Hu J, Zhao G, Xiao W,   Li R. AR-based deep learning for real-time inspection of cable brackets in   aircraft. Robotics and Computer-Integrated Manufacturing. 2023,83:102574. [2]     Chen Q, Du X, Wang W,   Chatzigeorgiou G, Meraghni F, Zhao G. Isogeometric homogenization of   viscoelastic polymer composites via correspondence principle. Composite   Structures. 2023,323:117475. [3]     Zhao G, Wei Z, Jing X,   Shen B, Zhang C, Chen S, Xie F. An analytical local tool path smoothing   method with curvature control. The International Journal of Advanced   Manufacturing Technology. 2023, 1-21. [4]     Xu Z, Wang A, Hou F,   Zhao G. Defect detection of gear parts in virtual manufacturing. Visual   Computing for Industry, Biomedicine, and Art. 2023, 6(1):1-2. [5]     Wang A, He C, Zheng J,   Zhao G. 3D Class A Bézier curves with monotone curvature. Computer-Aided   Design. 2023, 159:103501. [6]     Li Z, Li X, Han Y,   Zhang P, Zhang Z, Zhang M, Zhao G. A Review of Aeroengines’ Bolt Preload   Formation Mechanism and Control Technology. Aerospace. 2023, 10(3):307. [7]     Guo M, Wang W, Zhao G,   Du X, Zhang R, Yang J. T-Splines for Isogeometric Analysis of the Large   Deformation of Elastoplastic Kirchhoff–Love Shells. Applied Sciences. 2023, 13(3):1709. [8]     Yang J, Zhao G, Wang   W, Du X, Zuo C. Non-uniform C1 patches around extraordinary points with   applications to analysis-suitable unstructured T-splines. Computer Methods in   Applied Mechanics and Engineering. 2023, 405:115849. [9]     Zhang R, Zhao G, Wang   W, Du X. Large deformation frictional contact formulations for isogeometric   Kirchhoff–Love shell. International Journal of Mechanical Sciences. 2023, 249:108253. [10]  Du X, Zhao G, Zhang R, Wang W,   Yang J. Numerical implementation for isogeometric analysis of thin-walled   structures based on a Bézier extraction framework: nligaStruct. Thin-Walled   Structures. 2022, 180:109844. [11]  Cheng K, Zhao G, Wang W, Liu Y.   An estimation methodology of energy consumption for the intelligent CNC   machining using STEP-NC. The International Journal of Advanced Manufacturing   Technology. 2022, 123(1-2):627-44. [12]  Bao Q, Zhao G, Yu Y, Dai S, Wang   W. Ontology-based modeling of part digital twin oriented to assembly.   Proceedings of the Institution of Mechanical Engineers, Part B: Journal of   Engineering Manufacture. 2022, 236(1-2):16-28. [13]  Cao X, Zhao G, Xiao W. Digital   Twin–oriented real-time cutting simulation for intelligent computer numerical   control machining. Proceedings of the Institution of Mechanical Engineers,   Part B: Journal of Engineering Manufacture. 2022, 236(1-2):5-15. [14]  Yang J, Zhao G, Wang W, Du X, Guo   M, Zhang R. Surface blending using T-splines in semi-NURBS form.   Computer-Aided Design. 2022, 146:103210. [15]  Zhao G, Cheng K, Wang W, Liu Y,   Dan Z. A milling cutting tool selection method for machining features   considering energy consumption in the STEP-NC framework. The International   Journal of Advanced Manufacturing Technology. 2022, 120(5-6):3963-81. [16]  Zhao G, Zhang R, Wang W, Du X.   Two-dimensional frictionless large deformation contact problems using   isogeometric analysis and Nitsche’s method. Journal of Computational Design   and Engineering. 2022, 9(1):82-99. [17]  Du X, Wang W, Zhao G, Yang J, Guo   M, Zhang R. Virtual element method with adaptive refinement for problems of   two-dimensional complex topology models from an engineering perspective. Computational   Mechanics. 2022, 70(3):581-606. [18]  Bao Q, Zhao G, Yu Y, Zheng P. A   node2vec-based graph embedding approach for unified assembly process   information modeling and workstep execution time prediction. Computers &   Industrial Engineering. 2022, 163:107864. [19]  Gang ZH, Jingyu HU, Wenlei XI,   Jie ZO. A mask R-CNN based method for inspecting cable brackets in aircraft.   Chinese Journal of Aeronautics. 2021, 34(12):214-26. [20]  Bao Q, Zhao G, Yu Y, Dai S, Wang   W. The ontology-based modeling and evolution of digital twin for assembly   workshop. The International Journal of Advanced Manufacturing Technology.   2021, 117:395-411. [21]  Dai S, Zhao G, Yu Y, Zheng P, Bao   Q, Wang W. Ontology-based information modeling method for digital twin   creation of as-fabricated machining parts. Robotics and Computer-Integrated   Manufacturing. 2021, 72:102173. [22]  Su S, Zhao G, Xiao W, Yang Y, Cao   X. An image-based approach to predict instantaneous cutting forces using   convolutional neural networks in end milling operation. The International   Journal of Advanced Manufacturing Technology. 2021, 115:1657-69. [23]  Xiao W, Liu G, Zhao G. Generating   the tool path directly with point cloud for aero-engine blades repair.   Proceedings of the Institution of Mechanical Engineers, Part B: Journal of   Engineering Manufacture. 2021,  235(5):877-86. [24]  Liu Y, Zhao G, Han P. T-Spline   Surface Toolpath Generation Using Watershed-Based Feature Recognition.   Applied Sciences. 2020, 10(19):6790. [25]  Wang A, He C, Hou F, Cai Z, Zhao   G. Designing planar cubic B-spline curves with monotonic curvature for curve   interpolation. Computational Visual Media. 2020, 6:349-54. [26]  Du X, Zhao G, Wang W, Guo M,   Zhang R, Yang J. NLIGA: A MATLAB framework for nonlinear isogeometric   analysis. Computer Aided Geometric Design. 2020, 80:101869. [27]  Du X, Zhao G, Wang W, Fang H.   Nitsche’s method for non-conforming multipatch coupling in hyperelastic   isogeometric analysis. Computational Mechanics. 2020, 65:687-710. [28]  Zhao G, Cao X, Xiao W, Liu Q, Jun   MB. STEP-NC feature-oriented high-efficient CNC machining simulation. The   International Journal of Advanced Manufacturing Technology. 2020, 106:2363-75. [29]  Zhao G, Yang J, Wang W, Zhang Y,   Du X, Guo M. T-Splines Based Isogeometric Topology Optimization with   Arbitrarily Shaped Design Domains. CMES-Computer Modeling in Engineering   & Sciences. 2020, 123(3). [30]  Guo M, Zhao G, Wang W, Du X,   Zhang R, Yang J. T-Splines for Isogeometric Analysis of Two-Dimensional   Nonlinear Problems. CMES-Computer Modeling in Engineering & Sciences.   2020, 123(2).    |