A method for reducing the impurity element iron in complex multi-element brass alloys
A brass alloy and impurity element technology is applied in the field of reducing the impurity element iron of complex multi-element brass alloys to achieve the effect of improving competitiveness
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Embodiment 1
[0023] After the pretreatment of waste miscellaneous copper raw materials, they are melted and sampled in an induction furnace, and the Fe content is measured by a direct-reading spectrometer at 0.63%. Copper-boron alloy coated with brass foil and a slag-removing agent (the main components of the slag-removing agent are dolomite and calcium carbonate) are added. , calcium hydroxide, its proportioning is 6:2:1) and the additive sodium carbonate after the heat preservation is finished and cast, take the upper and lower ends of the ingot sample and measure the direct-reading spectrometer to get the average value, wherein the Fe content is 0.41%, and the comparison result calculation shows that, Iron content dropped by 34.9%.
Embodiment 2
[0025] After the pretreatment of waste miscellaneous copper raw materials, they were melted and sampled in an induction furnace, and the Fe content was measured by a direct reading spectrometer at 0.89%, and mixed elemental boron and a slag-removing agent wrapped with brass foil were added (the main components of the slag-removing agent were dolomite, calcium carbonate , Calcium Hydroxide, its proportion is 6:2:1) pouring after the heat preservation finishes, take the upper and lower ends of the ingot and measure the direct-reading spectrometer to get the average value, wherein the Fe content is 0.52%, and the comparison results show that the iron content has decreased 41.2%.
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