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首页> 外文期刊>Journal of Materials Engineering and Performance >Thermomechanical and Metallurgical Study of Laser-Welded AISI 1018 Steel
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Thermomechanical and Metallurgical Study of Laser-Welded AISI 1018 Steel

机译:激光焊接AISI 1018钢的热机械和冶金研究

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摘要

Non-conventional welding processes such as laser welding are being widely used by several industries. The great advantages they provide such as high welding speeds, lower thermal affectation and reduced discontinuities in the fusion zone allow its application in different materials. On the other hand, mild-/low-carbon steels such as AISI 1018 are being used by the automotive industry to manufacture different components. However, the properties of these materials are influenced by heat inputs. The softening of the heat-affected zones is the most important problem. Therefore, the aim of this study was to weld 12 coupons by laser beam of AISI 1018 steel of 8 and 16 mm thickness to analyze the mechanical and microstructural properties. The formation of a softening zone in heat-affected zone was determined. The softening zone caused cracking in this area during tensile tests. The cause of cracking in this zone was determined by phase quantification. Tensile and microhardness tests were performed to determine the mechanical properties of the welding joints. Microhardness increased in fusion zone and decreased in heat-affected zone. Tensile tests showed ductile fracture in heat-affected zone of the welding joints. The experimental results were verified with simulations showing a reasonable agreement.
机译:几种行业广泛使用诸如激光焊接的非传统焊接工艺。它们提供的诸如高焊接速度,较低的热效应和融合区中的不连续性降低的优点允许其应用于不同材料。另一方面,汽车行业正在使用诸如AISI 1018的温和/低碳钢来制造不同的部件。然而,这些材料的性质受热量输入的影响。热影响区域的软化是最重要的问题。因此,本研究的目的是通过8和16mm厚的AISI 1018钢的激光束焊接12杯,以分析机械和微观结构性质。确定了在热影响区中的软化区的形成。软化区在拉伸试验期间在该区域中引起裂缝。该区裂化的原因是通过相位量化确定的。进行拉伸和显微硬度测试以确定焊接接头的机械性能。微硬度在融合区中增加并减少热影响区域。拉伸试验在焊接接头的热影响区域中显示出延性骨折。实验结果用模拟来验证,显示合理协议。

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