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TC17鈦合金自表面納米化機制及組織演化
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國家自然科學(xué)基金(50775187,59075235)


Mechanism and Nanostructure Evolution of Surface Self-Nanocrystallization of TC17
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    摘要:

    借助X射線衍射儀、透射電鏡及顯微硬度儀等先進(jìn)儀器,研究經(jīng)超音速微粒轟擊(SFPB)處理TC17合金表面自身納米化晶粒尺寸演化及納米化機理。結(jié)果表明:超音速微粒轟擊使TC17合金表面獲得了納米組織,并發(fā)生顯著的加工硬化,表面顯微硬度比基體硬度提高了1倍左右;隨著SFPB處理時間的延長,納米結(jié)構(gòu)層厚度不斷增加,晶粒逐步細(xì)化,當(dāng)SFPB處理30 min后晶粒尺寸趨于穩(wěn)定,在最表層形成了晶粒尺寸約為16.3 nm具有隨機取向的等軸納米晶粒。TC17合金表面自身納米化主要是位錯滑移、位錯分割的結(jié)果;由于外界多方向載荷的重復(fù)作用而產(chǎn)生大量的位錯,位錯的滑移、積累、交互作用而產(chǎn)生位錯墻和位錯糾結(jié),位錯繼續(xù)運動進(jìn)而產(chǎn)生亞晶界、亞晶;隨著應(yīng)變的增加,更多的位錯在亞晶界處產(chǎn)生和湮滅,從而使亞晶界、亞晶轉(zhuǎn)變?yōu)榫Ы?、晶粒;?dāng)位錯的產(chǎn)生和湮滅速率達(dá)到平衡時,晶粒達(dá)到納米量級。

    Abstract:

    The mechanism of surface self-nanocrystallization and the evolution of grain size for TC17 were investigated by means of X-ray diffraction (XRD), micro-hardness testing and transmission electron microscope (TEM). The results show that the nanostructures are obtained by the supersonic fine particles bombarding (SFPB), and have obvious working-hardening on the surface layer of TC17 alloy. Compared with the matrix material, the surface microhardness is increased by one time. The thickness of the nanostructured layer increases with the extension of SFPB treatment time and finally is stabilized when the SFPB treatment time is more than 30 min. The size of equiaxed nano-crystallites is approximately 16.3 nm, which exhibits a random crystallographic orientation on the top surface layer. The surface self-nanocrystallization could be attributed to dislocation glide and division. Under the multidirectional loads of repeating actions, a large number of dislocations are formed. The dislocation slippage, dislocation accumulation and interaction of dislocation form the dislocation cells or walls. The dislocations continue to slip, and then form subboundary or subgrain. With increasing the strain, more and more dislocations are born and annihilated in the subboundary, so that the subboundary and subgrain transform into grain boundary and grain. When the forming and annihilating rate of the dislocations achieve the balance, the grains achieve to nanometer level.

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趙 坤,王 敏,藺成效,拓 川. TC17鈦合金自表面納米化機制及組織演化[J].稀有金屬材料與工程,2013,42(10):2048~2052.[Zhao Kun, Wang Min, Lin Chengxiao, Tuo Chuan. Mechanism and Nanostructure Evolution of Surface Self-Nanocrystallization of TC17[J]. Rare Metal Materials and Engineering,2013,42(10):2048~2052.]
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  • 收稿日期:2012-10-28
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