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Phase transformations in Si-based alloy powder mixtures induced by microwave heating in a 2.45 GHz single-mode applicator

机译:在2.45 GHz单模施加器中通过微波加热引起的硅基合金粉末混合物的相变

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摘要

Microwave radiation was used to heat Si and Fe blend powders as well as Si-based alloy powders in a single-mode microwave applicator. The heating behavior and phase transformation of these powders in a separated electric (E)- and magnetic (H)-field were investigated. The increase of Fe content in the mixture of Si and Fe powder enhanced its microwave absorption capability in both the E- and H-fields. Si_(90)Zr_(10) and Si_(95)Y_5 alloy powders could be heated up more easily in the H-field than E-field. Microwave heating of Si and Fe blend powders induced the formation of FeSi_2 and FeSi phases in the E- and H-field under a flowing nitrogen gas. When Si_(70)Fe_(30) blend powders were heated by microwaves in air, crystalline Fe_3O_4 phase could be detected. SiY phase was formed by microwave heating of Si_(95)Y_5 alloy powder in the H-field.
机译:微波辐射用于在单模微波施加器中加热Si和Fe混合粉末以及Si基合金粉末。研究了这些粉末在分开的电场和磁场中的加热行为和相变。硅和铁粉混合物中铁含量的增加增强了其在电场和磁场中的微波吸收能力。 Si_(90)Zr_(10)和Si_(95)Y_5合金粉末在H场中比E场更容易加热。微波加热Si和Fe混合粉末会在流动的氮气下在E和H场中形成FeSi_2和FeSi相。当Si_(70)Fe_(30)混合粉末在空气中通过微波加热时,可以检测到结晶的Fe_3O_4相。通过在H场中微波加热Si_(95)Y_5合金粉末形成SiY相。

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