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Cluster formation and two-step aging behaviors of Al-Mg-Si alloys

机译:Al-Mg-Si合金的团簇形成和两步时效行为

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The duster formation and two-step aging behavior of Al-1.4 percent Mg_2Si and Al-1.4 percent Mg_2Si-0.3 percent Si alloys were investigated using low-temperature adiabatic calorimetry, hardness measurement, electrical resistivity measurement and transmission electron microscopy. The specific heat changes in the alloys aged at low temperatures clearly demonstrated the existence of two exothermic peaks at temperatures between 273 and 343 K and higher than 343 K. These exothermic peaks were attributed to the formation of two types of pre-precipitates; i.e. Si-rich clusters and GP zones. The formation of these pre-precipitates was also detected by the electrical resistivity and hardness changes. The complicated two-step aging behavior of the present Al-Mg-Si alloys were well understood by taking into account the stability at higher temperatures and the effectiveness on the nucleation sites for the #beta#" phase of Si-rich clusters and GP zones during the final aging. The Si-rich clusters give a negative effect on the two-step aging phenomena is proposed. As the both pre-precipitates are formed competitively, such heat treatments as to give priority to the GP zone formation are effective to control the negative effect of the two-step aging and to increase age-hardening of Al-Mg-Si alloys.
机译:利用低温绝热量热法,硬度测量,电阻率测量和透射电子显微镜研究了Al-1.4%Mg_2Si和Al-1.4%Mg_2Si-0.3%Si合金的喷粉形成和两步时效行为。低温时效合金的比热变化清楚地表明,在273至343 K和高于343 K的温度下,存在两个放热峰。这些放热峰归因于两种类型的沉淀物的形成。即富硅集群和GP区域。这些预沉淀物的形成还通过电阻率和硬度变化来检测。考虑到高温下的稳定性以及富硅团簇和GP区“β”相的成核位点的有效性,本发明的Al-Mg-Si合金复杂的两步时效行为得到了很好的理解。提出了富硅团簇对两步时效现象产生不利影响的机制,由于两种沉淀物竞争形成,因此优先考虑GP区形成的热处理可以有效控制两步时效的不利影响以及增加Al-Mg-Si合金的时效硬化。

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