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首页> 外文期刊>Materials Science and Engineering. A, Structural Materials >Mathematical modeling of residual stress formation in electron beam remelting and refining of scrap silicon for the production of solar-grade silicon
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Mathematical modeling of residual stress formation in electron beam remelting and refining of scrap silicon for the production of solar-grade silicon

机译:电子束重熔和精制用于生产太阳能级硅的废硅中残余应力形成的数学模型

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摘要

A technique based on electron beam melting and refining has been used to refine N-type scrap silicon for the purpose of producing material suitable for photovoltaic applications. In this paper, the experimental setup and methodology are described and are presented together with the experimental results for three experiments. Temperature data obtained from embedded thermocouples for one of the experiments is presented. Neutron diffraction analysis was employed to measure the residual strain in the three castings. Finite element thermal and stress mathematical models are employed to predict the residual stress distribution.
机译:为了生产适用于光伏应用的材料,已经使用基于电子束熔化和精炼的技术来精炼N型废硅。在本文中,描述了实验设置和方法,并与三个实验的实验结果一起提出。给出了从其中一项实验的嵌入式热电偶获得的温度数据。中子衍射分析用于测量三个铸件中的残余应变。使用有限元热应力模型来预测残余应力分布。

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