论文

连铸法Gasar工艺中抽拉速率对多孔金属结构影响的理论分析

  • 刘源
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  • 1.清华大学机械工程系先进成形制造教育部重点实验室; 北京 100084
    2.昆明理工大学机电工程学院; 昆明 650093
刘源, 男, 1974年生, 副教授, 博士

收稿日期: 2009-07-31

  修回日期: 2009-10-19

  网络出版日期: 2010-02-10

基金资助

国家自然科学基金委员会-云南省人民政府联合基金重点项目u0837603, 北京市自然科学基金项目2092017及教育部留学回国人员科研启动基金项目20091020471和清华大学骨干人才支持计划项目资助

THEORETICAL ANALYSIS ON EFFECT OF TRANSFERENCE VELOCITY ON STRUCTURE OF POROUS METALS FABRICATED BY CONTINUOUS CASTING GASAR PROCESS

  • LIU Yuan
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  • 1.Key Laboratory for Advanced Materials Processing Technology; Ministry of Education; Department of Mechanical Engineering; Tsinghua University; Beijing 100084
    2.Faculty of Mechanical and Electrical Engineering; Kunming University of Science and Technology; Kunming 650093

Received date: 2009-07-31

  Revised date: 2009-10-19

  Online published: 2010-02-10

Supported by

Supported by National Natural Science Foundation of China and Yunnan Provincial Government (No.u0837603), Natural Science Foundation of Beijing (No.2092017), Scientific Research Foundation for the Returned Overseas Chinese Scholars, State Education Ministry (No.20091020471) and Key Talents Foundation of Tsinghua University

摘要

通过求解凝固界面前沿熔体中的溶质浓度场方程, 从理论上建立了一个用于描述连铸法Gasar工艺中的工艺参数对藕状多孔金属结构平均孔径、孔间距以及气孔率影响的理论模型, 并将抽拉速率对多孔金属结构的影响的理论预测结果与文献中相应实验结果进行比较, 结果表明, 理论预测结果与实验结果吻合较好. 预测结果显示, 平均孔径rg和孔间距L随抽拉速率v的升高不断降低, 但气孔率变化较小, 它们之间存在着简单关系为:rg1.72·v=AL1.72 ·v=B (其中, AB都是取决于气体压力pH2pAr以及熔体温度T的常数).

本文引用格式

刘源 . 连铸法Gasar工艺中抽拉速率对多孔金属结构影响的理论分析[J]. 金属学报, 2010 , 46(2) : 129 -134 . DOI: 10.3724/SP.J.1037.2009.00527

Abstract

Transference velocity is an important processing parameter to influence the final lotus–type porous structure fabricaed by continuus casting Gasar process. Via solving the solute diffusion equation, a theoretical model was developed to predict the effect of the transference velocity on the porosity, the pore diameter and the inter–pore spacing. The predicted values at different transference velocities have a good agreement with the corresponding experimental results obtained by Japanese esearcher. The average pore diameter and the inter–pore spacing L both have a prominent decrease with the increase of transference velocity v, but the porosity only has a slight decrease. The theoretical relationships between the pore radius rg, the inter–pore spacing and the transference velocity can be described by the two simple equations as r1.72g ·v = A and L1.72 ·v = B, where A and B are all constants depending on the used gas presures and the melt temperature.

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