材料科学技术(英文版)2021,Vol.65Issue(6) :99-107.

Three-dimensional visualization and quantification of microporosity in aluminum castings by X-ray micro-computed tomography

Cheng Gu Yan Lu Alan A.Luo
材料科学技术(英文版)2021,Vol.65Issue(6) :99-107.

Three-dimensional visualization and quantification of microporosity in aluminum castings by X-ray micro-computed tomography

Cheng Gu 1Yan Lu 1Alan A.Luo2
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作者信息

  • 1. Department of Materials Science and Engineering, The Ohio State University, 2041 College Rd N., Columbus, Ohio 43210, USA
  • 2. Department of Materials Science and Engineering, The Ohio State University, 2041 College Rd N., Columbus, Ohio 43210, USA;Department of Integrated Systems Engineering, The Ohio State University, 1971 Neil Ave., Columbus, Ohio 43210, USA
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Abstract

Porosity is a major issue in solidification processing of metallic materials.In this work,wedge die casting experiments were designed to investigate the effect of cooling rate on microporosity in an aluminum alloy A356.Microstructure information including dendrites and porosity were measured and observed by optical microscopy and X-ray micro-computed tomography (XMCT).The effects of cooling rate on secondary dendrite arm spacing (SDAS) and porosity were discussed.The relationship between SDAS and cooling rate was established and validated using a mathematical model.Three-dimensional (3-D) porosity information,including porosity percentage,pore volume,and pore number,was determined by XMCT.With the cooling rate decreasing from a lower to a higher position of the wedge die,the observed pore number decreases,the porosity percentage increases,and the equivalent pore radius increases.Sphericity of the pores was discussed as an empirical criterion to distinguish the types of porosity.For different cooling rates,the larger the equivalent pore radius is,the lower the sphericity of the pores.This research suggests that XMCT is a useful tool to provide critical 3-D porosity information for integrated computational materials engineering (ICME) design and process optimization of solidification products.

Key words

X-ray computed tomography/Casting micropore/Quantitative evaluation/Al alloy

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基金项目

出版年

2021
材料科学技术(英文版)
中国金属学会 中国材料研究学会 中国科学院金属研究所

材料科学技术(英文版)

CSTPCDCSCDSCI
影响因子:0.657
ISSN:1005-0302
被引量1
参考文献量29
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