Modeling of cavity coalescence during tensile deformation

被引:16
|
作者
Nicolaou, PD
Semiatin, SL
机构
[1] Silver & Baryte Ores Min Co SA, Athens 10672, Greece
[2] USAF, Res Lab, Mat & Mfg Directorate, MLLM, Wright Patterson AFB, OH 45433 USA
关键词
cavitation; growth; coalescence; plastic deformation;
D O I
10.1016/S1359-6454(99)00237-2
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The effect of material properties such as the cavity growth rate and initial cavity population on cavity coalescence during uniaxial tensile deformation was determined. To this end, a two-dimensional model that treats the growth of a random array of spherical cavities inside a deforming tension specimen was developed. Simulation results included predictions of the conditions under which cavity coalescence occurs, the variation of average cavity radius and fraction of cavities which have coalesced as a function of strain, and the evolution of cavity size distribution as a function of strain, cavity growth rate, and cavity population. For a given cavity density, it was found that the fraction of cavities which has coalesced is independent of the cavity growth rate and varies linearly with the cavity volume fraction; a relationship between the fraction of coalesced cavities and the cavity volume fraction was established from the simulation results. In addition, simulation predictions of average cavity radius as a function of strain were compared to previous relations for cavitation under conditions involving growth and coalescence. Predictions of average cavity size as a function of strain from the present work gave good agreement with previous experimental and theoretical work of Stowell and Filling. (C) 1999 Acta Metallurgica Inc. Published by Elsevier Science Ltd. AN rights reserved.
引用
收藏
页码:3679 / 3686
页数:8
相关论文
共 50 条
  • [21] Measurement of Strain Distribution of Lath Martensite Microstructure during Tensile Deformation
    Ishimoto, Y.
    Michiuchi, M.
    Nambu, S.
    Asakura, K.
    Inoue, J.
    Koseki, T.
    JOURNAL OF THE JAPAN INSTITUTE OF METALS, 2009, 73 (09) : 720 - 727
  • [22] Reaction stresses among the grains during tensile deformation of polycrystalline metals
    Mao, W
    Chen, L
    Yang, P
    Yu, Y
    TEXTURE AND ANISOTROPY OF POLYCRYSTALS II, 2005, 105 : 95 - 100
  • [23] Crystallographic and Microstructural Studies of Lath Martensitic Steel During Tensile Deformation
    Na, Hyuntaek
    Nambu, Shoichi
    Ojima, Mayumi
    Inoue, Junya
    Koseki, Toshihiko
    METALLURGICAL AND MATERIALS TRANSACTIONS A-PHYSICAL METALLURGY AND MATERIALS SCIENCE, 2014, 45A (11): : 5029 - 5043
  • [24] Deformation and texture evolution of OFHC copper during dynamic tensile extrusion
    Hoernqvist, M.
    Mortazavi, N.
    Halvarsson, M.
    Ruggiero, A.
    Iannitti, G.
    Bonora, N.
    ACTA MATERIALIA, 2015, 89 : 163 - 180
  • [25] Initiation, Development and Stabilization of Cavities during Tensile Deformation of Semicrystalline Polymers
    Ying Lu
    Yong-Feng Men
    Chinese Journal of Polymer Science, 2018, 36 : 1195 - 1199
  • [26] Initiation, Development and Stabilization of Cavities during Tensile Deformation of Semicrystalline Polymers
    Ying Lu
    Yong-Feng Men
    Chinese Journal of Polymer Science, 2018, (10) : 1195 - 1199
  • [27] In Situ Analysis of Plastic Deformation of Lath Martensite During Tensile Process
    Shi Zengmin
    Liang Jingyu
    Li Jian
    Wang Maoqiu
    Fang Zifan
    ACTA METALLURGICA SINICA, 2021, 57 (05) : 595 - 604
  • [28] Heat transfer during condensing droplet coalescence
    Adhikari, Sanjay
    Rattner, Alexander S.
    INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 2018, 127 : 1159 - 1169
  • [29] Computational Modeling of Nanoparticle Coalescence
    Grammatikopoulos, Panagiotis
    Sowwan, Mukhles
    Kioseoglou, Joseph
    ADVANCED THEORY AND SIMULATIONS, 2019, 2 (06)
  • [30] Micro Plastic Deformation Behavior of Carbide-Free Bainitic Steel during Tensile Deformation Process
    Zhang, Ming
    Yang, Xiaowu
    Kang, Jie
    Zhang, Fucheng
    Yang, Zhinan
    MATERIALS, 2020, 13 (21) : 1 - 11