A New Approach to Modeling the Ductile Cast Iron Microstructure for a Finite Element Analysis

被引:4
|
作者
Basurto-Hurtado, Jesus A. [1 ]
Perez-Soto, G. I. [2 ]
Osornio-Rios, Roque A. [1 ]
Dominguez-Gonzalez, Aurelio [2 ]
Morales-Hernandez, L. A. [1 ]
机构
[1] UAQ, CA Mecatron, Fac Ingn, Ave Rio Moctezuma 249, San Juan Del Rio 76807, Queretaro, Mexico
[2] UAQ, Fac Ingn, Cerro Campanas S-N, Santiago De Queretaro 76010, Queretaro, Mexico
关键词
Bezier curves; Geometric modeling; Finite element analysis; Circularity; Ductile cast iron; Image processing; MECHANICAL-PROPERTIES; MORPHOLOGY; STRENGTH;
D O I
10.1007/s13369-018-3465-y
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
In this article, a methodology for the generation of geometric models representing the microstructure of a ductile cast iron (DCI) is presented. This methodology is based on a series of image processing algorithms to extract the graphite nodules contours and the utilization of the Bezier curves to smooth the geometric models curves. For the contours obtained by the image processing stage and generated geometric models, the circularity is calculated using the circular shape factor index, in order to analyze the induced error through the discretization process by the image processing stage and the variation of the circularity as the design parameters of the geometric modeling change. On the other hand, the design parameters effect of the geometric models on the stress behavior in the microstructure, through a finite element analysis, is also analyzed. It is shown that as the Bezier curve degree increases, the circularity of the geometric models decreases, thus increasing the maximum stresses produced in the DCI microstructure. Further, it is also found that the number of interpolation points has a significant effect on the mechanical properties when the Bezier curves degrees are equal to 10 and 12 than for the lower degrees.
引用
收藏
页码:1221 / 1231
页数:11
相关论文
共 50 条
  • [31] Efficient cast iron microstructure for anode - Collars in gray or ductile irons
    Barstow, M
    Riposan, J
    Chisamera, M
    LIGHT METALS 1997, 1997, : 619 - 623
  • [32] Effect of Mold Hardness on Microstructure and Contraction Porosity in Ductile Cast Iron
    Jafar Khalil-Allafi
    Behnam Amin-Ahmadi
    Journal of Iron and Steel Research International, 2011, 18 : 44 - 47
  • [33] Microstructure and properties of austempered ductile cast iron with refined graphite nodules
    Osafune, Y.
    Yuyama, M.
    INTERNATIONAL JOURNAL OF CAST METALS RESEARCH, 2008, 21 (1-4) : 90 - 95
  • [34] INTERRELATION OF MECHANICAL PROPERTIES, CASTING SIZE, AND MICROSTRUCTURE OF DUCTILE CAST IRON
    KRAFT, RW
    FLINN, RA
    TRANSACTIONS OF THE AMERICAN SOCIETY FOR METALS, 1952, 44 : 282 - 309
  • [35] Synchrotron measurements of local microstructure and residual strains in ductile cast iron
    Zhang, Y. B.
    Andriollo, T.
    Faester, S.
    Liu, W.
    Sturlason, A.
    Barabash, R.
    38TH RISO INTERNATIONAL SYMPOSIUM ON MATERIALS SCIENCE, 2017, 219
  • [36] Microstructure-level modeling of ductile iron machining
    Chuzhoy, L
    DeVor, RE
    Kapoor, SG
    Bammann, DJ
    JOURNAL OF MANUFACTURING SCIENCE AND ENGINEERING-TRANSACTIONS OF THE ASME, 2002, 124 (02): : 162 - 169
  • [37] Effect of cast wall thickness, composition and austempering temperature on microstructure and properties of ductile cast iron
    Ibrahim, K. M.
    Fouad, Y.
    INTERNATIONAL JOURNAL OF CAST METALS RESEARCH, 2013, 26 (03) : 184 - 191
  • [38] FINITE-ELEMENT ANALYSIS OF CAST-IRON SPILLWAY GATE WHEELS
    POLYZOIS, D
    MUZYCZKA, WJ
    GARRONI, JD
    COMPUTERS & STRUCTURES, 1995, 55 (04) : 741 - 748
  • [39] Quantitative phase analysis of austempered ductile cast iron
    Psoda, M
    Bucki, JJ
    APPLIED CRYSTALLIGRAPHY, 2004, : 216 - 220
  • [40] IN-MOLD THERMAL ANALYSIS OF DUCTILE CAST IRON
    Onsoien, Morten I.
    SHAPE CASTING: 4TH INTERNATIONAL SYMPOSIUM 2011 IN HONOR OF PROF. JOHN T. BERRY, 2011, : 95 - 102