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The experimental study of the Bi-Sn, Bi-Zn and Bi-Sn-Zn systems

机译:Bi-Sn,Bi-Zn和Bi-Sn-Zn系统的实验研究

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摘要

The binary Bi¿Sn was studied by means of SEM (Scanning Electron Microscopy)/EDS (Energy-Dispersive solid state Spectrometry), DTA(Differential Thermal Analysis)/DSC (Differential Scanning Calorimetry) and RT-XRD (Room Temperature X-Ray Diffraction) in order to clarifydiscrepancies concerning the Bi reported solubility in (Sn). It was found that (Sn) dissolves approximately 10 wt% of Bi at the eutectic temperature.The experimental effort for the Bi¿Zn system was limited to the investigation of the discrepancies concerning the solubility limit of Zn in (Bi)and the solubility of Bi in (Zn). Results indicate that the solubility of both elements in the respective solid solution is approximately 0.3 wt% at200 C.Three different features were studied within the Bi¿Sn¿Zn system. Although there are enough data to establish the liquid miscibility gapoccurring in the phase diagram of binary Bi¿Zn, no data could be found for the ternary. Samples belonging to the isopleths with w(Bi) 10%and w(Sn) 5%, 13% and 19% were measured by DTA/DSC. The aim was to characterize the miscibility gap in the liquid phase. Samplesbelonging to the isopleths with w(Sn) 40%, 58%, 77/81% and w(Zn) 12% were also measured by DTA/DSC to complement the study ofBi¿Sn¿Zn. Solubilities in the solid terminal solutions were determined by SEM/EDS. Samples were also analyzed by RT-XRD and HT-XRD(High Temperature X-Ray Diffraction) confirming the DTA/DSC results for solid state phase equilibria.
机译:通过SEM(扫描电子显微镜)/ EDS(能量分散固态光谱法),DTA(差热分析)/ DSC(差示扫描量热法)和RT-XRD(室温X射线)研究了二元BiSn为了澄清关于Bi报告的在(Sn)中溶解度的差异。发现(Sn)在低共熔温度下溶解了约10 wt%的Bi.Zn的系统研究仅限于研究Zn在(Bi)中的溶解度极限和Bi(Zn)。结果表明,两种元素在各自的固溶体中的溶解度在200°C时约为0.3 wt%。在Bi?Sn¿Zn体系中研究了三种不同的特征。尽管有足够的数据来建立二元Bi-Zn相图中发生的液体混溶性缺口,但找不到三元数据。通过DTA / DSC测量了具有w(Bi)10%和w(Sn)5%,13%和19%的等高的样品。目的是表征液相中的混溶性间隙。还通过DTA / DSC测量了w(Sn)为40%,58%,77/81%和w(Zn)为12%的等值样品,以补充Bi?Sn¿Zn的研究。固体末端溶液中的溶解度通过SEM / EDS确定。还通过RT-XRD和HT-XRD(高温X射线衍射)对样品进行了分析,从而确定了固相平衡的DTA / DSC结果。

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