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INTERPHASE EVOLUTION AND DEFECT FORMATION DURING HORIZONTALLY DIRECTIONAL SOLIDIFICATION PROCESS OF Sn-Zn ALLOYS

机译:Sn-Zn合金水平定向凝固过程中的相变及缺陷形成

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In the present research, commercially pure Sn and Zn, and Sn-Zn alloys (Sn-1wt.%Zn, Sn-2wt.%Zn, Sn-4wt.%Zn, Sn-8wt.%Zn and Sn-8.9wt.%Zn, weight percent) were obtained by a horizontal directional solidification process with two opposite senses and heat extraction. The solidification process was realized using a horizontal furnace with two heat extraction systems at both ends. The temperature was measured using eight K-type thermocouples and an electronic recorder of temperature data. The resulting structures were analyzed using optical microscopy. From the solidification process the thermal and metallographic parameters were determined in all samples. The presence of defects in the solidified pieces was observed. Internal defects pretended to be dependent not only on the composition of the alloys under consideration but also on the size of the structures formed, also, on the velocities and accelerations of interphases, and on the variation of thermal gradients. A model of the phenomenon from the first principles is presented.
机译:在本研究中,商业上纯的Sn和Zn以及Sn-Zn合金(Sn-1wt。%Zn,Sn-2wt。%Zn,Sn-4wt。%Zn,Sn-8wt。%Zn和Sn-8.9wt。 %Zn,重量%)是通过具有两个相反方向的水平定向凝固过程和热量提取而获得的。固化过程是通过在两端均具有两个吸热系统的卧式炉实现的。使用八个K型热电偶和温度数据电子记录仪测量温度。使用光学显微镜分析所得结构。在凝固过程中,确定了所有样品的热和金相参数。观察到固化片中存在缺陷。内部缺陷假装不仅取决于所考虑合金的成分,还取决于所形成组织的尺寸,还取决于相间的速度和加速度以及热梯度的变化。提出了从第一个原理开始的现象模型。

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