首页> 外文会议>Encontro da Sociedade Portuguesa de Materials SPM >Heat Transfer Characteristics of Inward, Outward and Upward Solidification of an AI-1.5wtFe Alloy in Cylindrical Chill Molds
【24h】

Heat Transfer Characteristics of Inward, Outward and Upward Solidification of an AI-1.5wtFe Alloy in Cylindrical Chill Molds

机译:圆柱形冷却模具中AI-1.5wt%Fe合金的向内,向外和向上凝固的传热特性

获取原文

摘要

In this work, three water-cooled experimental solidification devices were developed, and experiments were carried out with an Al-1.5wt%Fe alloy.The three experimental setups consist of vertical cylindrical steel molds with each of them having different zones cooled by water.For the inward solidification, a cooled tube is used having its upper and bottom part thermally insulated.For the outward solidification, a cooled tube, forming an inner part, is concentrically placed inside a cylindrical mold, which is thermally insulated from the environment, by using insulating materials.For the upward solidification, the bottom part of the mold is water-cooled and consists of a thin (3 mm) disc of carbon steel, whilst the cylindrical surface is covered with insulating material to avoid lateral heat losses.A numerical solidification model based on the finite difference method is applied for the simulation of the three aforementioned cases of solidification from the chilled surface considering transient heat flow conditions.Experimental thermal readings in the castings have been used for the determination of the transient overall metal/coolant heat transfer coefficient, h, through a numerical-experimental fit of casting thermal profiles based on inverse heat transfer calculations.It was found a significant variation of h as a function of time during solidification in the three cylindrical set-ups experimentally examined, including a remarkable increase in h during the outward solidification.
机译:在这项工作中,开发了三种水冷的实验凝固装置,并用Al-1.5wt%Fe合金进行了实验。三种实验设置包括垂直圆柱形钢模组成,其中每一个具有水中冷却的不同区域。为了向内凝固,使用其上部和底部的冷却管热绝缘。向外凝固,形成内部部分的冷却管同心放置在圆柱形模具内,该模具与环境热绝热。使用绝缘材料。对于向上凝固,模具的底部是水冷的,由薄(3mm)的碳钢盘组成,同时圆柱形表面覆盖有绝缘材料,以避免横向热损失。数值基于有限差分法的凝固模型应用于考虑TRA的冷冻表面上上述凝固情况的模拟NSIENT热流条件。铸件中的实验热读数已经用于通过基于逆传热计算的浇铸热型材的数值实验拟合来确定瞬态整体金属/冷却剂传热系数H. H在实验检查的三个圆柱组中的凝固过程中H作为时间的显着变化,包括在外部凝固期间H的显着增加。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号