Processing math: 100%
XUE Gang. Mathematical Model of the Specimen Shape During the Necking Stage in the Uniaxial Tensile Test[J]. Development and Application of Materials, 2023, 38(3): 1-11,16.
Citation: XUE Gang. Mathematical Model of the Specimen Shape During the Necking Stage in the Uniaxial Tensile Test[J]. Development and Application of Materials, 2023, 38(3): 1-11,16.

Mathematical Model of the Specimen Shape During the Necking Stage in the Uniaxial Tensile Test

More Information
  • Received Date: June 22, 2022
  • Available Online: July 09, 2023
  • The mathematical model of the necking shape is built based on the analysis of the shape characteristics during the necking stage in the uniaxial tensile test. It is that the radius r of the section vertical to the central axis is the function about the distance z(z≥0) from this section to the minimal section. This function is r=rn+rcrn1+(zz1)p1+(zz2)p2. The function of the necking sample's surface is √x2+y2= rn+rcrn1+(zz1)p1+(zz2)p2 in the coordinate system with the origin at the center of the minimal sec[JP4]tion of the necking specimen and the central axis as the z-axis. The necking shape can be attributed with the six characteristic parameters of rcrnz1z2p1p2 in this mathematical model. The availability of the necking shape's mathematical model is verified by the curves' fitting with the test data of the low alloy steel and the simulation data with three sets of the stress-strain relationship's parameters.
  • [1]
    CALLISTER W D. Materials science and engineering:anintroduction[M]. 7th ed. New York: John Wiley& Sons, 2007.
    [2]
    MEYERS M A, CHAWLA K K. Mechanical behavior of materials[M]. 2nd ed. Cambridge: Cambridge University Press, 2009.
    [3]
    陈篪. 金属断裂研究文集[M]. 北京: 冶金工业出版社, 1978.
    [4]
    薛钢. 各向同性均质弹塑性材料圆棒试样单向拉伸试验变形特性与应力应变本构关系的相关性分析[J]. 材料开发与应用, 2022, 37(2): 24-36.
  • Related Articles

    [1]GUO Xiang, WANG Min, ZHAO Liming. Research on Elastic Material Parameter Inversion and Prediction Model Based on Dynamic and Static Tests of Rubber Isolator[J]. Development and Application of Materials, 2023, 38(1): 73-80.
    [2]ZHANG Baowei, GAO Zhenpeng, CHEN Xuelong, ZHANG Youjing, GONG Xuhui, DONG Xing. Dynamic Mechanical Characteristics and Constitutive Model of the 10Ni8CrMoV Steel HAZ[J]. Development and Application of Materials, 2022, 37(5): 68-72.
    [3]TONG Zhiyuan, GONG Xuhui. Physical Constitutive Model of Tensile Plastic Strain for 10CrNi8MoV Steel[J]. Development and Application of Materials, 2022, 37(5): 11-15.
    [4]XUE Gang. Correlation Analysis of Deformation Characteristics and Stress-strain Constitutive Relationship of Round-bar Specimens with Isotropic Homogenous Elasto-plastic Materials by Unidirectional Tensile Test[J]. Development and Application of Materials, 2022, 37(2): 24-36.
    [5]ZHANG Yajun, ZHANG Xinyao, ZHANG Yunhao. Analysis on Application of Different Models for Fatigue Crack Propagation Rate of Metallic Materials[J]. Development and Application of Materials, 2021, 36(2): 88-92.
    [6]GAO Zhenpeng, XUE Gang, GONG Xuhui, Wang Tao. I1 Distribution Function in Necking Process of Tensile Specimen[J]. Development and Application of Materials, 2019, 34(4): 9-12,20. DOI: 10.19515/j.cnki.1003-1545.2019.04.003
    [7]HE Lei, XUE Gang, ZHU Bingkun. Calculating Model on the Melting Point of CaO-SiO2-CaF2 Slag System[J]. Development and Application of Materials, 2017, 32(2): 7-10. DOI: 10.19515/j.cnki.1003-1545.2017.02.002
    [8]KONG Fanjin, CHEN Yongdang, YUAN Zhenyi, WANG Yongjun. A Numerical Model on Cure Process-induced Deformation of Thermoset Composite Parts[J]. Development and Application of Materials, 2016, 31(2): 42-48. DOI: 10.19515/j.cnki.1003-1545.2016.02.009
    [9]XUE Gang, WANG Tao, YANG Huan. Mathematical Model of Diffusible Hydrogen Escape Velocity with Residual Hydrogen Content as Its Argument[J]. Development and Application of Materials, 2015, 30(2): 1-3. DOI: 10.19515/j.cnki.1003-1545.2015.02.001
    [10]YAO Hong-ying, LIU Xiang-ru. Model of Deformation Rolling Resistance of Steel 195 for Lower Temperature Rolling[J]. Development and Application of Materials, 2009, 24(1): 36-38. DOI: 10.19515/j.cnki.1003-1545.2009.01.011

Catalog

    Article Metrics

    Article views (129) PDF downloads (90) Cited by()
    Related

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return