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Characteristics of Nd:YAG Laser Welded 600MPa Grade TRIP and DP Steels

机译:Nd:YAG激光焊接600MPa级TRIP和DP钢的特性

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The characteristics of Nd:YAG laser welded 600MPa grade TRIP(transformation induced plasticity) and DP(dual phase) steels with respect to hardness, microstructures, mechanical properties and formability was investigated. A shielding gas was not used, and bead-on-plate welding was performed using various welding speeds at a power of 3.5kW. In the case of TRIP steel, the hardness was the highest at the fusion zone(FZ) and HAZ near the FZ and decreased as the base metal was approached. The maximum hardness increased with increasing welding speed to 3.6m/min and then remained. The microstructures of FZ and HAZ near the FZ consisted of ferrite and bainite for all welding speeds. In the case of DP steel, the maximum hardness was obtained at the HAZ near the FZ. It increased rapidly to 2.1m/min and then showed nearly the same value. The difference between the maximum hardness of HAZ and that of FZ increased with decreasing welding speed. The microstructure of FZ was composed of acicular ferrite but the HAZ near the FZ contained bainite and ferrite at a low welding speed. Both steels had similar tensile properties and formabilities. In a perpendicular tensile test to the weld line, all specimens were fractured at the base metal, and the strengths were somewhat higher than those of raw metals. In a parallel tensile test, the strengths of the joints were higher than those of raw materials but the elongations were lower. Formability was determined to be approximately 80% as compared with raw material at the optimum conditions. Differences in hardness near the welded zone was dependant on the relative contents of ferrite.
机译:研究了Nd:YAG激光焊接600MPa级TRIP(相变诱导塑性)和DP(双相)钢在硬度,显微组织,力学性能和可成形性方面的特性。不使用保护气体,以3.5kW的功率使用各种焊接速度进行板对焊。在TRIP钢的情况下,硬度在熔合区(FZ)和FZ附近的HAZ最高,并随着接近贱金属而降低。随着焊接速度的增加,最大硬度增加到3.6m / min,然后保持不变。在所有焊接速度下,FZ和FZ附近的HAZ的显微组织均由铁素体和贝氏体组成。对于DP钢,在FZ附近的HAZ可获得最大硬度。它迅速增加到2.1m / min,然后显示几乎相同的值。 HAZ和FZ的最大硬度之间的差异随着焊接速度的降低而增加。 FZ的显微组织由针状铁素体组成,但在FZ附近的HAZ以低焊接速度包含贝氏体和铁素体。两种钢都具有相似的拉伸性能和可成形性。在垂直于焊缝的拉伸试验中,所有试样均在母材处断裂,强度略高于未加工金属。在平行拉伸试验中,接头的强度高于原材料,但伸长率较低。在最佳条件下,与原材料相比,成型性被确定为大约80%。焊接区附近的硬度差异取决于铁素体的相对含量。

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