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Quality of weld seams produced with flux based on silicomanganese slag

机译:基于Silicomanganese Slag的焊缝生产的焊缝质量

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摘要

AbstractThe use of metallurgical wastes in welding fluxes is considered. A new welding flux based on slag from silicomanganese production is proposed, along with the corresponding manufacturing technology. The quality of the weld seams is studied by metallographic analysis. The grain size and content of nonmetallic inclusions are determined. An Olympus GX-51 optical microscope is used for metallographic analysis (magnification ×100–1000). The influence of the fractional composition on the performance of the fluxes is studied. The optimal fraction is chosen, ensuring low content of nonmetallic inclusions (in particular, nondeforming silicates and oxides) in the weld seam. If 30–40% of the small fraction of welding flux is employed, the content of nonmetallic oxide inclusions in the weld seam is reduced. Metallographic analysis shows that introducing the small fraction has no effect on the structural components of the weld seam. The seam is characterized by ferrite–pearlite structure. The ferrite is present in the form of grains extended in the direction of heat transfer. The optimal content of the <0.45 mm fraction in the welding flux is 30–40%. To improve flux performance, the small fraction may be mixed with liquid glass. The use of ceramic flux produced from the dust of silicomanganese slag (<0.45 mm fraction) bound by liquid glass reduces the content of nonmetallic inclusions in the weld seam. However, increase in the content of liquid glass from 15 to 40% has little effect on the content of nonmetallic oxide inclusions in the weld seam or on the microstructure. The microstructure in the weld seam consists of pearlite and ferrite. The optimal flux consists of the small fraction with 15–20% liquid glass.]]>
机译:<![CDATA [<标题>抽象 ara>在焊接通量中使用冶金废物的使用。提出了一种基于Silicomanganese生产的炉渣的新型焊剂,以及相应的制造技术。通过金相分析研究了焊缝的质量。确定非金属夹杂物的晶粒尺寸和含量。奥林巴斯GX-51光学显微镜用于金相分析(放大倍率×100-1000)。研究了分数组合物对助焊剂性能的影响。选择最佳部分,确保焊缝中的非金属夹杂物(特别是非格式硅酸盐和氧化物)的低含量。如果采用了焊剂的小数部分的30-40%,则焊缝中的非金属氧化物夹杂物的含量减小。金相分析表明,引入小馏分对焊缝的结构部件没有影响。接缝的特征在于铁氧体 - 珠光体结构。铁氧体以热传递方向延伸的颗粒形式存在。焊剂焊剂中<0.45mm分数的最佳含量为30-40%。为了改善助焊剂性能,可以用液体玻璃混合小馏分。使用由液体玻璃结合的硅芳渣(<0.45mm级分)的灰尘产生的陶瓷通量降低了焊缝中的非金属夹杂物的含量。然而,从15-40%的液体玻璃含量的增加对焊缝或微结构上的非金属氧化物夹杂物的含量没有效果。焊缝中的微观结构由珠光体和铁氧体组成。最佳助焊剂由15-20%液体玻璃的小馏分组成。]>

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