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20MnSiVⅢ级钢筋焊缝和热影响区拉伸脆性断裂的分析 被引量:2

An Analysis on Tensile Brittle Fracture of Welding Seam and Heat Affected Area of Steel 20MnSiV Ⅲ Grade Reinforced Bar
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摘要 分析了Φ32mm 2 0MnSiVⅢ级钢筋搭接焊试样拉力试验断口—焊缝和热影响区脆性断裂。断口处HV硬度试验和扫描电镜观察表明 ,焊缝和热影响区存在大量魏氏组织和贝氏体 马氏体是拉伸脆性断裂的主要原因 ,夹杂物向晶界偏聚导致沿晶脆性断裂 。 The fracture of steel 20MnSiV Φ32 mm III grade reinforced bar bundle welding sample tensile testing - brittle fracture of welding seam and heat affected area has been analyzed. The HV hardness test and SEM observation on fracture show that large amount of Widmannstatten structure and bainite\|martensite in welding seam and heat affected area are main causes of tensile brittle fracture, and mass inclusion segregated at grain boundary lead to intercrystalline brittle fracture. The small heat input multipass welding are available to improve the structure and toughness of heat affected area.
出处 《特殊钢》 北大核心 2003年第6期59-61,共3页 Special Steel
关键词 钢筋 搭接焊 拉伸脆性断裂 热影响区 扫描电镜 焊缝 魏氏组织 贝氏体 夹杂物 建筑工程 Reinforced Bar, Bundle Welding, Tensile Brittle Fracture
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  • 2[3]Bhadeshia H, et al. The Mechanism of Banite Tormation in Steel, Acta Metall. 1980,28(3):1265
  • 3[4]Lee J L, et al. Transformation Processes and Products for C-Mn Steesls during Continuous Cooling. Mater. Sci. Tech., 1989, 5(7):674
  • 4GB1499 1998,1998年
  • 5张永权,杨才福,柳书平.经济型建筑用Ⅲ级钢筋的研究[J].钢铁,2000,35(1):43-46. 被引量:13

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