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Effect of flux constituents and basicity index on mechanical properties and microstructural evolution of submerged arc welded high strength low alloy steel

机译:焊剂成分和碱性指标对浸没电弧焊接高强度低合金钢力学性能和微观结构演化的影响

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The application of high strength low alloy (HSLA) steels has been limited by unavailability of suitable joining and filler metals in submerged arc welding (SAW) processes. The present work aims at the design and development of flux for Submerged Arc Welding of HSLA steel. In the work L8 array of Taguchi Design is used to formulate eight types of fluxes to vary basicity index (BI) from 1.26 to 2.81 and to study the effect of flux constituents and basicity index on tensile strength, microhardness and microstructure of the weld metal. Empirical models for ultimate tensile strength and microhardness at the centre of weld versus flux constituents and basicity index have been developed. From the experiments it is found that ultimate tensile strength increase with increase of basicity index with minimum at 1.26 increases upto 2.33 and then further decreases whereas opposite in case of microhardness which is highest at 1.26 and minimum at 1.9. Increase of CaO in the flux increases ultimate tensile strength but microhardness remains unaffected whereas increase of SiO2 decreases ultimate tensile strength but microhardness remains constant. Microhardness decreases critically with increase of CaF_2.
机译:高强度低合金(HSLA)钢的应用受到浸没电弧焊接(SAW)工艺的合适连接和填充金属的不可用。目前的工作旨在实现HSLA钢淹没电弧焊的磁通的设计和开发。在工作L8阵列中,用于制定八种类型的助焊剂,从1.26到2.81改变碱性指数(BI),并研究助焊剂成分和碱性指数对焊接金属的抗拉强度,显微硬度和微观结构的影响。已经开发出焊缝中心与焊剂成分和碱性指数的极限拉伸强度和微硬度的实证模型。从实验来看,发现最大的抗拉强度随着碱性指数的增加而增加,最小在1.26增加到2.33,然后进一步降低,而在1.26的微硬度下相反,在1.26的情况下最高,最小。磁通量中CaO的增加会增加最终拉伸强度,但显微硬度保持不受影响,而SiO 2的增加降低了极限拉伸强度,但微硬度保持恒定。微硬度随着CAF_2的增加而严重降低。

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