Radial basis point interpolation for strain field calculation in digital image correlation

被引:0
|
作者
Du, Jiayi [1 ]
Zhao, Jian [1 ,2 ,3 ]
Liu, Jiahui [1 ,2 ]
Zhao, Dong [1 ,2 ]
机构
[1] Beijing Forestry Univ, Sch Technol, Beijing 100083, Peoples R China
[2] Beijing Forestry Univ, Key Lab State Forestry Adm Forestry Equipment & Au, Beijing 100083, Peoples R China
[3] State Key Lab Efficient Prod Forest Resources, Beijing 100083, Peoples R China
关键词
DISPLACEMENT; DEFORMATION;
D O I
10.1364/AO.520232
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
In order to extract smooth and accurate strain fields from the noisy displacement fields obtained by digital image correlation (DIC), a point interpolation meshless (PIM) method with a radial basis function (RBF) is introduced for full -field strain calculation, which overcomes the problems of slow calculation speed and unstable matrix inverse calculation of the element -free Galerkin method (EFG). The radial basis point interpolation method (RPIM) with three different radial basis functions and the moving least squares (MLS) and pointwise least squares (PLS) methods are compared by analyzing and validating the strain fields with high -strain gradients in simulation experiments. The results indicate that the RPIM is nearly 80% more computationally efficient than the MLS method when a larger support domain is used, and the efficiency of the RPIM is nearly 26% higher than that of the MLS method when a smaller support domain is used; the strain calculation accuracy is slightly lower than that of the MLS method by 0.3-0.5%, but the stability of the calculation is significantly improved. In contrast with the PLS method, which is easily affected by the noise and the size of the strain calculation window, the RPIM is insensitive to the displacement noise and the size of the support domain and can obtain a similar calculation accuracy. The RPIM with multiquadric (MQ) radial basis functions performs well in balancing the computational accuracy and efficiency and is insensitive to shape parameters. The application cases show that the method can effectively compute the strain field at the crack tip, validating its applicability to the study of the plastic region at the crack tip. In conclusion, the proposed RPIM-based method provides an accurate, practical, and robust approach for full -field strain measurements. (c) 2024 Optica Publishing Group
引用
收藏
页码:3929 / 3943
页数:15
相关论文
共 50 条
  • [41] Theoretical estimation of interpolation bias error in digital image correlation
    Su Y.
    Zhang Q.
    Xu X.
    Gao Z.
    Cheng T.
    Lixue Xuebao, 2 (495-510): : 495 - 510
  • [42] Random Error in Strain Calculation using Regularized Polynomial Smoothing (RPS) and Point-wise Least Squares (PLS) in Digital Image Correlation
    Li, Xin
    Fang, Gang
    Zhao, Jiaqing
    Zhang, Zhengming
    Sun, Libin
    Wang, Haitao
    Wu, Xinxin
    OPTICS AND LASERS IN ENGINEERING, 2021, 142
  • [43] Strain Field of Reinforced Concrete under Accelerated Corrosion by Digital Image Correlation Technique
    Jiang, Yudan
    Jin, Zuquan
    Zhao, Tiejun
    Chen, Yongfeng
    Chen, Fanxiu
    JOURNAL OF ADVANCED CONCRETE TECHNOLOGY, 2017, 15 (07) : 290 - 299
  • [44] Full-Field Strain Measurement of Rotating Object Using Digital Image Correlation
    Wu Rong
    Liu Yi
    Zhou Jianmin
    Zhang Shuiqiang
    ACTA OPTICA SINICA, 2020, 40 (13)
  • [45] Strain field denoising for digital image correlation using a regularized cost-function
    Pan, Bing
    Yuan, Jieyu
    Xia, Yong
    OPTICS AND LASERS IN ENGINEERING, 2015, 65 : 9 - 17
  • [46] RADIAL BASIS FUNCTION INTERPOLATION OF NON-MATCHING GRIDS SURFACES FOR VOLUME CALCULATION
    Prada, Marcela
    Teusdea, Alin Cristian
    Fetea, Ioana
    Suba, Stefan
    ANNALS OF DAAAM FOR 2009 & PROCEEDINGS OF THE 20TH INTERNATIONAL DAAAM SYMPOSIUM, 2009, 20 : 1043 - 1044
  • [47] Least Squares Compactly Supported Radial Basis Function for Digital Terrain Model Interpolation from Airborne Lidar Point Clouds
    Chen, Chuanfa
    Li, Yanyan
    Zhao, Na
    Guo, Bin
    Mou, Naixia
    REMOTE SENSING, 2018, 10 (04):
  • [48] Identification of local cyclic stress-strain curves at material inhomogeneities on the basis of digital image correlation
    Lang, E.
    MATERIALWISSENSCHAFT UND WERKSTOFFTECHNIK, 2016, 47 (10) : 958 - 968
  • [49] Point interpolation method based on local residual formulation using radial basis functions
    Liu, GR
    Yan, L
    Wang, JG
    Gu, YT
    STRUCTURAL ENGINEERING AND MECHANICS, 2002, 14 (06) : 713 - 732
  • [50] ARBF: adaptive radial basis function interpolation algorithm for irregularly scattered point sets
    Gao, Kaifeng
    Mei, Gang
    Cuomo, Salvatore
    Piccialli, Francesco
    Xu, Nengxiong
    SOFT COMPUTING, 2020, 24 (23) : 17693 - 17704