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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Effect of CaF2, FeMn and NiO additions on impact strength and hardness in submerged arc welding using developed agglomerated fluxes
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Effect of CaF2, FeMn and NiO additions on impact strength and hardness in submerged arc welding using developed agglomerated fluxes

机译:CaF2,FeMn和NiO的添加对发达集聚焊剂在埋弧焊中冲击强度和硬度的影响

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摘要

This experimental study was conducted to evaluate the effects of CaF2, FeMn and NiO additives on impact strength and hardness of low carbon steel plate welds using submerged arc welding. Fluxes containing CaO, SiO2 and Al2O3 as base fluxes were designed and developed through agglomeration technique. CaF2, FeMn and NiO were added to these fluxes in the varying amounts of (2-8) %. Mathematical models were developed using design expert and these models were correlated with the Mn, Ni and C transfer to the bead. The mechanical properties also have been correlated with the microstructure developed and the oxygen content in the welds. CaF2 and FeMn are found significant factors for the impact strength while the interaction of CaF2 and NiO is significant for hardness of the weld. The optimum ranges for Mn and Ni contents that produce optimum impact strength and hardness also have been suggested. The basicity index of flux and the carbon equivalent of the welds also have been correlated with the mechanical properties of the welds. The impact strength was found minimum for those welds which were welded by fluxes having CaF2, FeMn and NiO each at mid-level of 5%, though the Delta Mn quantities for these welds were low. (c) 2016 Elsevier B.V. All rights reserved.
机译:进行本实验研究以评估CaF2,FeMn和NiO添加剂对埋弧焊低碳钢板焊缝的冲击强度和硬度的影响。通过团聚技术设计开发了以CaO,SiO2和Al2O3为基本助熔剂的助焊剂。将CaF2,FeMn和NiO以不同的(2-8)%的量添加到这些焊剂中。使用设计专家开发了数学模型,并将这些模型与Mn,Ni和C转移至磁珠相关。机械性能也与所开发的微结构和焊缝中的氧含量相关。发现CaF2和FeMn是影响冲击强度的重要因素,而CaF2和NiO的相互作用对焊缝的硬度也很重要。还建议了产生最佳冲击强度和硬度的Mn和Ni含量的最佳范围。焊剂的碱度指数和焊缝的碳当量也已与焊缝的机械性能相关。对于用CaF2,FeMn和NiO分别在5%的中间水平焊接的焊缝,发现这些焊接的冲击强度最小,尽管这些焊缝的Mn含量很低。 (c)2016 Elsevier B.V.保留所有权利。

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