Grain Growth Model of Ultra-Fine Grain AZ80 Magnesium Alloy Multi-Directionally Forged During the Isothermal Heating Process

<p>This paper takes the ultra-fine grain AZ80 magnesium alloy multi-directionally forged as the research object. We observe its heating behavior at 673 K with an optical microscope, analyze the grain size distribution, and the change of average grain size and hardness with different heating ti...

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Main Authors: Jinlong ZHANG, Hui XIE, Ying MA, Shiping TAO, Kun ZHAO, Weigang WU
Format: Article
Language:English
Published: Kaunas University of Technology 2019-04-01
Series:Medžiagotyra
Subjects:
Online Access:http://matsc.ktu.lt/index.php/MatSc/article/view/19093
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author Jinlong ZHANG
Hui XIE
Ying MA
Shiping TAO
Kun ZHAO
Weigang WU
author_facet Jinlong ZHANG
Hui XIE
Ying MA
Shiping TAO
Kun ZHAO
Weigang WU
author_sort Jinlong ZHANG
collection DOAJ
description <p>This paper takes the ultra-fine grain AZ80 magnesium alloy multi-directionally forged as the research object. We observe its heating behavior at 673 K with an optical microscope, analyze the grain size distribution, and the change of average grain size and hardness with different heating time, study the effect of heating time on the grain size change of ultra-fine grain AZ80 magnesium alloy, deduce and verify the grain growth model of ultra-fine grain AZ80 magnesium alloy during its heating process. The research results show that the 24-pass multi-directional forging can make ultra-fine grain AZ80 magnesium alloy of an average grain size of 0.73 μm. When ultra-fine grain AZ80 magnesium alloy is isothermally heated at 673K, its average grain size grows continuously as time extends. Its average grain size and hardness fall into two stages as the heating time changes, namely rapid grain growth stage and stable grain growth stage. If the heat preservation time is less than 300 s, the average grain size grows rapidly as temperature rises; When the heat preservation time reaches 300 s, the grain growth speed will be stable. A grain growth model is established for AZ80 magnesium alloy, which is <em>D</em><sup>2.8932</sup> = <em>D<sub>0</sub></em><sup>2.8932</sup> + 4.09086 × 10<sup>-3</sup><em>t</em><sup>1.6284 </sup>under the conditions of isothermal heating, whose computed result well coincides with the measured value.</p>
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spelling doaj.art-86f702d402b4495bb58f82796ed682cc2022-12-21T19:38:52ZengKaunas University of TechnologyMedžiagotyra1392-13202029-72892019-04-0125214114510.5755/j01.ms.25.2.190939697Grain Growth Model of Ultra-Fine Grain AZ80 Magnesium Alloy Multi-Directionally Forged During the Isothermal Heating ProcessJinlong ZHANGHui XIEYing MAShiping TAOKun ZHAOWeigang WU<p>This paper takes the ultra-fine grain AZ80 magnesium alloy multi-directionally forged as the research object. We observe its heating behavior at 673 K with an optical microscope, analyze the grain size distribution, and the change of average grain size and hardness with different heating time, study the effect of heating time on the grain size change of ultra-fine grain AZ80 magnesium alloy, deduce and verify the grain growth model of ultra-fine grain AZ80 magnesium alloy during its heating process. The research results show that the 24-pass multi-directional forging can make ultra-fine grain AZ80 magnesium alloy of an average grain size of 0.73 μm. When ultra-fine grain AZ80 magnesium alloy is isothermally heated at 673K, its average grain size grows continuously as time extends. Its average grain size and hardness fall into two stages as the heating time changes, namely rapid grain growth stage and stable grain growth stage. If the heat preservation time is less than 300 s, the average grain size grows rapidly as temperature rises; When the heat preservation time reaches 300 s, the grain growth speed will be stable. A grain growth model is established for AZ80 magnesium alloy, which is <em>D</em><sup>2.8932</sup> = <em>D<sub>0</sub></em><sup>2.8932</sup> + 4.09086 × 10<sup>-3</sup><em>t</em><sup>1.6284 </sup>under the conditions of isothermal heating, whose computed result well coincides with the measured value.</p>http://matsc.ktu.lt/index.php/MatSc/article/view/19093multi-directional forgingultra-fine grainAZ80 magnesium alloyisothermal heatinggrain growth
spellingShingle Jinlong ZHANG
Hui XIE
Ying MA
Shiping TAO
Kun ZHAO
Weigang WU
Grain Growth Model of Ultra-Fine Grain AZ80 Magnesium Alloy Multi-Directionally Forged During the Isothermal Heating Process
Medžiagotyra
multi-directional forging
ultra-fine grain
AZ80 magnesium alloy
isothermal heating
grain growth
title Grain Growth Model of Ultra-Fine Grain AZ80 Magnesium Alloy Multi-Directionally Forged During the Isothermal Heating Process
title_full Grain Growth Model of Ultra-Fine Grain AZ80 Magnesium Alloy Multi-Directionally Forged During the Isothermal Heating Process
title_fullStr Grain Growth Model of Ultra-Fine Grain AZ80 Magnesium Alloy Multi-Directionally Forged During the Isothermal Heating Process
title_full_unstemmed Grain Growth Model of Ultra-Fine Grain AZ80 Magnesium Alloy Multi-Directionally Forged During the Isothermal Heating Process
title_short Grain Growth Model of Ultra-Fine Grain AZ80 Magnesium Alloy Multi-Directionally Forged During the Isothermal Heating Process
title_sort grain growth model of ultra fine grain az80 magnesium alloy multi directionally forged during the isothermal heating process
topic multi-directional forging
ultra-fine grain
AZ80 magnesium alloy
isothermal heating
grain growth
url http://matsc.ktu.lt/index.php/MatSc/article/view/19093
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AT huixie graingrowthmodelofultrafinegrainaz80magnesiumalloymultidirectionallyforgedduringtheisothermalheatingprocess
AT yingma graingrowthmodelofultrafinegrainaz80magnesiumalloymultidirectionallyforgedduringtheisothermalheatingprocess
AT shipingtao graingrowthmodelofultrafinegrainaz80magnesiumalloymultidirectionallyforgedduringtheisothermalheatingprocess
AT kunzhao graingrowthmodelofultrafinegrainaz80magnesiumalloymultidirectionallyforgedduringtheisothermalheatingprocess
AT weigangwu graingrowthmodelofultrafinegrainaz80magnesiumalloymultidirectionallyforgedduringtheisothermalheatingprocess