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Microstructure and Mechanical Properties of Pulsed Laser Beam Welded Ti-2Al-1.5Mn Titanium Alloy Joints

机译:脉冲激光束焊接Ti-2Al-1.5Mn钛合金接头的组织和力学性能

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摘要

The microstructure and mechanical properties in the pulsed laser beam welded joints of Ti-2Al-1.5Mn titanium alloy thin sheet were investigated in this study. The results show that the original α + β-phases and the transformed α + α'-phases are found in the partially transformed heat-affected zone (HAZ) together with the remaining β-phase, and the microhardness gradually enhances in the region as the result of the increase of α'-phase. The martensitic α'-phase and the remaining β-phase are detected in the fully transformed HAZ and the fusion zone (FZ), and the highest microhardness is found in these regions in virtue of the dominant α'-phase structure. The fine α'-phase appeared in the FZ results in higher average microhardness at high welding speed. Moreover, similar to the results of microhardness test, the tensile test results mean that the HAZ and FZ are stronger than the base metal (BM). Therefore, pulsed laser beam welding is feasible for joining thin sheet of Ti-2Al-1.5Mn titanium alloy.
机译:研究了Ti-2Al-1.5Mn钛合金薄板脉冲激光束焊接接头的组织和力学性能。结果表明,在部分相变的热影响区(HAZ)中发现了原始的α+β相和相变的α+α'相,以及其余的β相,并且随着温度的升高,该区域的显微硬度逐渐提高。 α'相增加的结果。在完全转变的热影响区和融合区(FZ)中检测到马氏体α'相和剩余的β相,并且由于占主导地位的α'相结构而在这些区域中发现了最高的显微硬度。在FZ中出现的细微的α'相导致在高焊接速度下具有更高的平均显微硬度。而且,类似于显微硬度测试的结果,拉伸测试结果意味着HAZ和FZ比贱金属(BM)强。因此,脉冲激光束焊接对于接合Ti-2Al-1.5Mn钛合金薄板是可行的。

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