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Al-Zn-Mg-Cu合金第二相粒子及其無析出區(qū)與晶界的作用過程研究
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國家重大基礎(chǔ)研究項目(2005CB623706)


Study on Interaction Course between Second Phase Particle and Its Precipitate Free Zone and Grain Boundary for Al-Zn-Mg-Cu Alloy
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    摘要:

    制備一種含Sc和一種含Cr、Mn、Ti、Zr的Al-Zn-Mg-Cu合金,采用透射電鏡研究合金中第二相粒子周圍的無析出微區(qū)和晶界上的無沉淀析出帶及其相互的作用過程,給出單個第二相粒子對晶界作用力的方程。當(dāng)驅(qū)使晶界遷移的動力大于粒子及其周圍的無析出微區(qū)對晶界的阻礙作用時,晶界被粒子穿透而形成孔洞。在晶界掃過粒子的過程中,經(jīng)歷了先加速后減速兩個階段。晶界位于粒子直徑區(qū)位置時所受的阻力最小、運(yùn)動速度最大。當(dāng)晶界能與相界能增量之和等于晶界運(yùn)動的驅(qū)動力時,晶界被粒子釘扎而停止運(yùn)動。在晶界遷移的過程中,溶質(zhì)原子傾向于由高濃度區(qū)域向低濃度區(qū)域擴(kuò)散,晶界和粒子周圍的無析出區(qū)對晶界的遷移過程有明顯的影響。

    Abstract:

    Two kinds of Al-Zn-Mg-Cu alloys containing Sc and Cr, Mn, Ti as well as Zr were prepared. The precipitation free zone (PFZ) around the second phase particle and the precipitation free band at grain boundary as well as the interaction between them were studied by transmitting electron microscopy (TEM). The equation for pinning force of single second phase particle to grain boundary was presented. Results show that when driving force for grain boundary migration exceeds the encumbrance force of particles and their circumference PFZs against the boundaries, grain boundaries are penetrated by particles to form holes. During grain boundaries sweep particles, their movement, e.g. acceleration stage and deceleration stage, undergoes two different stages. When the hole diameter is equal to the particle size, the encumbrance force is the least and the velocity of boundary migration is the highest. When the sum of grain boundary energy and surface phase boundary energy is equal to driving force, grain boundary is pinned by the particle and stops moving. Solute atoms diffusion takes on the trend from high-concentration zone to low-concentration zone; PFZ around grain boundaries and particles have great effect on migration of grain boundary.

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賀永東,陳明安,張新明. Al-Zn-Mg-Cu合金第二相粒子及其無析出區(qū)與晶界的作用過程研究[J].稀有金屬材料與工程,2009,38(12):2093~2099.[He Yongdong, Chen Ming’an, Zhang Xinming. Study on Interaction Course between Second Phase Particle and Its Precipitate Free Zone and Grain Boundary for Al-Zn-Mg-Cu Alloy[J]. Rare Metal Materials and Engineering,2009,38(12):2093~2099.]
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  • 收稿日期:2008-11-28
  • 最后修改日期:2009-07-24
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