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Numerical Model of Thermal Field Developed in Fe_(67)Cr_4Mo_4Ga_4P_(12)B_5C_4 Bulk Amorphous Alloy Processing

机译:FE_(67)CR_4MO_4GA_4P_(12)B_5C_4散装非晶合金处理的热场的数值模型

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Metallic amorphous materials were developed during the 1980's as new materials, with very interesting industrial properties (heat conductivity, magnetic properties, fusion temperature, corrosion resistance, etc.). The technology required to obtain these materials (based on very rapid cooling of a melted alloy with glass forming ability), has limitations because of the dimensions of the products that can be obtained with amorphous structure (thickness has to be very small), which can be overpassed by the development of bulk amorphous alloys with high glass forming ability and good control of the cooling speed. The numerical modeling of thermal field during ultra-high cooling, presented in this paper, allows researchers to estimate the results of applying certain cooling conditions during experiments. This model will help developers of bulk amorphous alloys in checking if conditions to obtain an amorphous alloy are ensured, with fewer experimental tests, less time and low expenses.
机译:金属非晶材料在20世纪80年代作为新材料中开发,具有非常有趣的产业性质(导热性,磁性,熔化温度,耐腐蚀性等)。获得这些材料所需的技术(基于具有玻璃成型能力的熔化合金的非常快速的冷却),由于可以用非晶结构(厚度非常小)可以获得的产品的尺寸通过高玻璃形成能力的散装非晶合金的发展超支,良好控制冷却速度。本文提出的超高冷却期间热场的数值建模允许研究人员估计在实验期间施加某些冷却条件的结果。该模型将帮助散装非晶合金的开发人员检查是否确保了获得非晶合金的条件,具有更少的实验测试,更少的时间和低费用。

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