Atae Raougui, Ion Grecu, Volkan Murat Yilmaz, K. Yıldız
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引用次数: 0

摘要

本研究采用差示扫描量热法(DSC)研究了产自ASAŞ铝(产地:Akyazı-Sakarya)的AA3105和AA5005铝合金冷轧板的非等温再结晶动力学。采用Kissenger, Boswell, Ozawa和Starink方法进行了非等温动力学研究,称为无模型方法。推导了不同升温速率(β)下DSC图上的再结晶温度,并根据Y - 1/T图的斜率计算了活化能。Y是ln(β/T2)为Kissenger, ln(β/T)为Boswell, ln(β)为Ozawa和ln(β/T1.92)为Starink。结果表明:冷轧AA5005板的再结晶活化能在194 ~ 206 kJ/mol之间,冷轧AA3105板的再结晶活化能在235 ~ 257 kJ/mol之间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
SOĞUK HADDELENMİŞ AA3105 VE AA5005 LEVHALARIN DSC ANALİZİ İLE YENİDEN KRİSTALLENME KİNETİĞİ
In this study, the non-isothermal recrystallization kinetics of cold rolled AA3105 and AA5005 aluminum alloy sheets obtained from ASAŞ Aluminum located in Akyazı-Sakarya was studied by using differential scanning calorimetry (DSC). The non – isothermal kinetics was performed by using Kissenger, Boswell, Ozawa and Starink methods known as model – free methods. The recrystallization temperatures on DSC graphics at different heating rates (β) were deduced and the activation energies were calculated from the slopes from Y – 1/T diagrams. Y is ln(β/T2) for Kissenger, ln(β/T) for Boswell, ln(β) for Ozawa and ln(β/T1.92) for Starink. The results showed that the activation energies of recrystallization are in the range of 194 – 206 kJ/mol for cold rolled AA5005 sheet and in the range of 235 – 257 kJ/mol for cold rolled AA3105 sheet, according to four non-isothermal kinetics model.
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