首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Effect of Sn addition on morphology evolution of secondary phase in hypomonotectic Cu-Pb-Sn alloy during solidification
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Effect of Sn addition on morphology evolution of secondary phase in hypomonotectic Cu-Pb-Sn alloy during solidification

机译:SN添加对凝固期间脱癌Cu-Pb-Sn-Sn-Sn-X-Sn合金二次相的形态演化的影响

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In the present study, the Cu-24Pb-xSn (wt.%) alloys with Pb-rich secondary phase particles (SPPs) in different morphology were prepared by intermediate frequency induction heating technology. The experimental results show that the SPPs transform from network to rod-like morphology with Sn content increasing from 0 wt% to 6 wt%. The relevant function mechanism of Sn addition was revealed through synchrotron X-ray radiography and thermodynamic analysis. It is indicated from the thermodynamic calculation that Sn addition can weaken the demixing tendency in Cu-Pb system. This can also lead to intensity drop of the monotectic reaction which was characterized by differential scanning calorimetry (DSC). Simultaneously, a triple-phase-coexistence (TRPC) region is introduced with Sn addition during solidification, which contains a Cu-rich liquid (L-1), a Pb-rich liquid (L-2) and a solid a-Cu (S). Benefitted from the mobility of these two immiscible liquids, L-2 tends to show regular rod-like morphology and finally transform to rod-like SPPs, which is similar to some immiscible alloys containing an immiscibility gap, such as Al-Pb, Al-Bi and Ti-Ag alloys. The width of TRPC region in the pseudobinary phase diagram of Cu-Pb-Sn alloy increases with increasing Sn content. This is attributed to the fact that increasing Sn content can lead to the drop of interfacial tension between L-1 and L-2. Simultaneously, the interfacial tension drop will decrease the Marangoni migration velocity of the SPPs, and the Marangoni migration serves as the main driven force of SPPs' collision and coagulation in this case. Therefore, Sn addition is helpful to obtain fine and dispersed SPPs in this case. This work possesses guiding significance to the composition design and production of relevant hypomonotectic alloy with homogeneous and refined microstructure. (C) 2019 Elsevier B.V. All rights reserved.
机译:在本研究中,通过中频感应加热技术制备不同形态学的Cu-24pb-xsn(wt.%)与不同形态的Pb的二次相颗粒(Spps)的合金。实验结果表明,SPP从网络转换为棒状形态,SN含量从0wt%增加到6wt%。通过同步X射线放射线照相和热力学分析揭示了SN添加的相关功能机制。从热力学计算中表示,SN添加可以削弱Cu-Pb系统中的解剖趋势。这也可以导致单透明反应的强度下降,其特征在于差示扫描量热法(DSC)。同时,在凝固过程中用Sn加法引入三相共存(TRPC)区域,其含有富含Cu的液体(L-1),富含PB的液体(L-2)和固体A-Cu( s)。受益于这两个不混溶的液体的迁移率,L-2倾向于显示常规的杆状形态,最终转化为棒状SPP,其类似于一些含有不混溶性间隙的不混溶合金,例如Al-Pb,Al- Bi和Ti-Ag合金。 Cu-PB-Sn合金伪相图中的TRPC区域的宽度随着SN含量的增加而增加。这归因于增加SN含量可能导致L-1和L-2之间的界面张力下降的事实。同时,界面张力降将减小SPP的马兰戈尼迁移速度和马兰戈尼迁移用作在这种情况下的SPP碰撞的主从动力和凝结。因此,在这种情况下,Sn添加是有助于获得精细和分散的SPP。这项工作对组合物设计和具有均匀和精细组织的组成设计和生产具有指导显着性。 (c)2019 Elsevier B.v.保留所有权利。

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