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Dynamic Tensile Behavior of Fiber Laser Welds of Medium Manganese Transformation-Induced Plasticity Steel

机译:中锰转化诱导塑性钢光纤激光焊缝的动态拉伸行为

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摘要

During a crash situation, tailor-welded blanks (TWBs) are subjected to local high strain rate (HSR) deformations. Hence, understanding the effects of fiber laser welding on the microstructure and subsequent dynamic (1 to 100s(-1)) tensile properties of the recently developed medium-Mn transformation-induced plasticity (TRIP) steel is essential. Electron backscatter diffraction (EBSD) analysis indicated that Mn segregation during rapid solidification of the FZ resulted in retention of austenite within interdendritic regions. Moreover, it was found that the lower stability of retained austenite within the intercritical heat-affected zone (HAZ) resulted in double yielding behavior of the welds due to discontinuous yielding (Luders banding). However, by increasing the strain rate, the second yield point decreased and shifted to higher strains. In the dynamic loading range, the ultimate tensile strength (UTS) and elongation of welds showed positive strain rate sensitivity (SRS). In addition, high-speed thermal camera results indicated that the average temperature decreased with increasing strain rate as a consequence of the balance between TRIP effect suppression and HSR adiabatic heating. The overall increase in elongation of the welds at higher strain rates was attributed to the higher localized softening during pre-failure nonuniform deformation.
机译:在碰撞情况下,焊接焊接坯料(TWB)受到局部高应变率(HSR)变形。因此,了解光纤激光焊接对微观结构和随后的动态(1至100s(-1))的效果(1至100s(-1))的拉伸性能,其钢的抗拉性特性是必不可少的。电子反向散射衍射(EBSD)分析表明,在FZ的快速凝固过程中Mn偏析导致在日语区域内保留奥氏体。此外,发现由于不连续的产量(偏离带状),焊缝的焊接的较低稳定性导致焊缝的双重产生行为。然而,通过增加应变率,第二屈服点降低并移至更高的菌株。在动态装载范围内,极限拉伸强度(UTS)和焊缝伸长率显示出阳性应变率灵敏度(SRS)。此外,高速热摄像头结果表明,由于跳闸效果抑制和HSR绝热加热之间的平衡,平均温度随着应变率的增加而降低。耐焊伸长率较高的伸长率的总体增加归因于预衰竭非均匀变形期间较高的局部软化。

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