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Influence of applied pressures and casting section thicknesses on interfacial heat transfer in squeeze casting of magnesium alloy AZ91

机译:应用压力和铸件截面厚度对镁合金AZ91挤压铸造界面传热的影响

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摘要

The estimation for interfacial heat transfer coefficient (IHTC) between casting and mold is paramount to predict solidification phenomena. In this study, three hydraulic pressures of 30, 60, and 90 MPa were applied to indirectly squeeze cast magnesium alloy AZ91 in a P20 steel mold with five casting section thicknesses of 2,4, 8, 12, and 20 mm, named steps 1,2, 3,4 and 5, by using a 75-ton hydraulic press machine. For comparison, the AZ91 alloy was also cast without the applied pressure (0 MPa). K-type thermocouples were utilized to measure temperatures simultaneously on the casting surface and at three different depths from the mold surface inward. Based on the temperature measurements, the IHTCs at the five steps were calculated by the inverse method. Despite of the differences in their peak values, the IHTC variation for the three applied pressures at the five steps during the squeeze casting process was similar to that of 0 MPa, in which the IHTC values abruptly rose to an apex first, and then declined slowly. The overall IHTC values of step 5 were higher than those of the other four steps, while the lowest peak IHTC value was present at step 1. When the applied pressure was increased, the IHTC peak value of each step became large accordingly. The empirical equations relating the IHTCs to the pressures, section thicknesses, and temperatures at the casting/mold interface were derived based on the multivariate linear and polynomial regression.
机译:铸造和模具之间的界面传热系数(IHTC)的估计至关重要预测凝固现象。在本研究中,将三个液压为30,60和90MPa的液压压力在P20钢模中间接挤压铸造镁合金AZ91,其中5个铸件截面厚度为2,4,8,12和20mm,命名为步骤1 ,2,3,4和5,通过使用75吨液压机。为了比较,在没有施加的压力(0MPa)的情况下也浇铸AZ91合金。利用K型热电偶在铸造表面上同时测量温度,并从模具表面向内三个不同的深度测量温度。基于温度测量,通过逆方法计算五个步骤的IHTC。尽管它们的峰值差异存在差异,但在挤压铸造过程中五个步骤的三个施加压力的IHTC变化与0MPa的峰值相似,其中IHTC值首先突然向顶点升至顶点,然后缓慢下降。步骤5的总体IHTC值高于其他四个步骤的总值,而最低峰值IHTC值在步骤1.当施加的压力增加时,每个步骤的IHTC峰值相应地变大。基于多变量线性和多项式回归,推导出与铸造/模具界面处的压力,截面厚度和温度相关的经验方程。

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  • 来源
    《Heat and mass transfer》 |2021年第7期|1107-1120|共14页
  • 作者单位

    Department of Mechanical Automotive and Materials Engineering University of Windsor 401 Sunset Ave Windsor ON N9B 3P4 Canada;

    Department of Mechanical Automotive and Materials Engineering University of Windsor 401 Sunset Ave Windsor ON N9B 3P4 Canada;

    Department of Mechanical Automotive and Materials Engineering University of Windsor 401 Sunset Ave Windsor ON N9B 3P4 Canada;

    Department of Mechanical Automotive and Materials Engineering University of Windsor 401 Sunset Ave Windsor ON N9B 3P4 Canada;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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