首页> 外文会议>International Conference on Advances in Solidification Processes >Cellular-to-Dendritic and Dendritic-to-Cellular Morphological Transitions in a Ternary Al-Mg-Si Alloy
【24h】

Cellular-to-Dendritic and Dendritic-to-Cellular Morphological Transitions in a Ternary Al-Mg-Si Alloy

机译:三元Al-Mg-Si合金中的细胞对树突和树突状细胞形态转变

获取原文

摘要

The study is focused on the influence of solidification thermal parameters upon the evolution of the microstructure (either cells or dendrites) of an Al-3wt%Mg-lwt%Si ternary alloy. It is well known that the application properties of metallic alloys will greatly depend on the final morphology of the microstructure. As a consequence, various studies have been carried out in order to determine the ranges of cooling rates associated with dendritic-cellular transitions in multicomponent alloys. In the present research work, directional solidification experiments were conducted using either a Bridgman (steady-state) device or another device that allows the solidification under transient conditions (unsteady-state). Thus, a broad range of cooling rates (t), varying from 0.003K/s to 40K/s could be achieved. This led to the identification of a complete series of cellular/dendritic/cellular transitions. For low cooling rate experiments, low cooling rate cells to dendrites transition happens. Moreover, at a high cooling rate, a novel transition from dendrites to high cooling rate cells could be observed for the Al-3wt%Mg-lwt%Si alloy. Additionally, cell spacing λ_C and primary dendritic spacing λ1 are related to the cooling rate by power function growth laws characterized by the same exponent (-0.55) for both steady-state and unsteady-state solidification conditions.
机译:该研究集中于的凝固热参数在所述微结构的演化的影响(无论是细胞或树突)的Al-3重量%的Mg-1%重量的Si三元合金。它公知的是金属合金的应用特性将在很大程度上取决于微结构的最终形态。因此,各种研究已经以确定与在多元合金树突状细胞的细胞转变相关联的冷却速率的范围下进行。在本研究工作中,定向凝固实验使用一个布里奇曼(稳态)装置或另一装置,其允许瞬态条件(非稳定状态)下的固化进行的。因此,宽范围的冷却速率(t)的,从0.003K变化/ s至40K / s的可以实现的。这导致了一个完整的系列蜂窝/树突/蜂窝过渡的鉴定。对于低冷却速度的实验中,低冷却速度细胞树突过渡发生。此外,在高冷却速度,从枝晶到高冷却速率的细胞的新颖的过渡可以被用于在Al-3重量%的Mg-1%重量Si合金观察。另外,信元间隔λ_C和初级枝晶间距λ1是与由特征在于相同指数(-0.55)两个稳态和非稳态凝固条件幂函数生长法的冷却速率。

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