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Flux for Hardfacing by Submerged Arc Welding from Ferrochrome-manganese and Slag from the Simultaneous Reduction of Chromite and Pyrolusite

机译:通过从Cherrochrome-锰和渣的同时减少铬铁格和吡咯岩的浸没弧焊来处理焊剂

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Abstract The obtaining of a flux for hardfacing by Submerged Arc Welding (SAW), using ferrochrome-manganese and slag obtained from the simultaneous carbothermal reduction of chromite and pyrolusite is addressed. The ferrochrome-manganese and the slag were obtained, conceiving that both products satisfy the requirements of the components (alloy system and matrix) of an agglomerated flux for hardfacing. The fusion-reduction process to obtain the alloy and the slag was carried out in a direct current electric arc furnace. The pouring was carried out into water to facilitate the separation and grinding of the cast products. An experimental flux was manufactured, using the obtained alloy and slag. Deposits were obtained by SAW, which were characterized in terms of: chemical composition, microstructure and hardness. It was concluded that the flux obtained from ferrochrome-manganese and slag from the simultaneous carbothermal reduction of chromite and pyrolusite, allows to deposit an appropriate metal for work under abrasion conditions, characterized by significant carbon and chromium contents and a martensitic microstructure predominantly, with hardness of 63 HRc.
机译:摘要解决了使用从铬铁格和热溶胶同时碳热还原中获得的铬弧焊(SAW)来获得用于硬焊的通量(SAW)。获得铬铁锰和炉渣,认为两种产品都满足了对硬坯的凝聚通量的组分(合金系统和基质)的要求。在直流电弧炉中进行融合还原过程,以获得合金和炉渣。将浇注进入水中以促进铸造产品的分离和研磨。使用所得合金和炉渣制造实验焊剂。通过锯获得沉积物,其特征在于:化学成分,微观结构和硬度。得出结论是,从铬铁格和热沸石同时碳热还原的铬铁和渣中获得的通量允许在磨损条件下沉积合适的金属,其特征在于,主要是具有硬度的马氏体和铬含量和马氏体微观结构。 63 HRC。

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