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TC18鈦合金絕熱剪切帶晶粒細化機制
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楚雄師范學院學術(shù)骨干資助項目(09YJGG02)


Refining Mechanisms of Grains in the Adiabatic Shear Band of TC18 Titanium Alloy
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    摘要:

    采用分離式霍普金森壓桿,對TC18鈦合金試樣進行室溫高應變率(103s-1)剪切試驗,通過光學顯微鏡、掃描電鏡及透射電鏡觀察絕熱剪切帶微結(jié)構(gòu),研究高應變率變形條件下TC18鈦合金中所形成絕熱剪切帶的晶粒細化機制。TEM觀察表明:絕熱剪切帶中晶粒細化是由3種機制共同作用的結(jié)果。第1種機制是由于變形晶粒中位錯快速增殖、快速運動、塞積,塞積處產(chǎn)生巨大應力集中,導致形成裂紋并最終斷裂形成細小晶粒;第2種機制為本研究提出的細小晶粒由拉長晶粒的“內(nèi)頸縮”方式形成;第3種機制——細小晶粒由動態(tài)再結(jié)晶形成。

    Abstract:

    Dynamic shearing experiment on TC18 titanium alloy was carried out by using a split Hopkinson bar process. Refining mechanism of grains in the adiabatic shear band of TC18 titanium alloy deformed under the conditions of high strain-rate were investigated by means of OM, SEM and TEM. The results of TEM observation show that the grains in the adiabatic shear band of TC18 titanium alloy are refined due to the combined action of three mechanisms. The first mechanism is that dislocations were rapidly reproduced, moved and clogged at the obstacles such as grain boundary, second-phase particles, and so on; then, cracks were generated in the head of clogging of dislocation due to huge stress resulted from the clogging of dislocation; finally, smaller grains were formed due to breakdown of elongation grain. The second refining mechanism of grains, which is presented by us first, is inner-necking mode. The third one is dynamic recrystallization.

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徐 媛,孫 坤,楊永安. TC18鈦合金絕熱剪切帶晶粒細化機制[J].稀有金屬材料與工程,2011,40(8):1454~1457.[Xu Yuan, Sun Kun, Yang Yongan. Refining Mechanisms of Grains in the Adiabatic Shear Band of TC18 Titanium Alloy[J]. Rare Metal Materials and Engineering,2011,40(8):1454~1457.]
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  • 收稿日期:2010-08-26
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