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首页> 外文期刊>Journal of Laser Applications >Experimental investigation on the weldability and forming behavior of aluminum alloy tailor-welded blanks
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Experimental investigation on the weldability and forming behavior of aluminum alloy tailor-welded blanks

机译:铝合金拼焊板焊接性能及成形行为的实验研究

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摘要

Aluminum alloy tailor-welded blanks (TWBs) have developed rapidly due to increasing interest and market pressure [J. M. Story, S. Heinemann, and S. Naegeler, Light Metal Age 56, 40-47 (1998). R. W. Davies, H. E. Oliver, M. T. Smith, and G. J. Grant, J. Minerals, Metals Mater. Soc. 51, 46- 50 (1999)] from the automotive industry to further reduce the weight and cost of automotive components. In this study, a 5754-O aluminum alloy with a thickness of 1 mm was laser-welded by a 2 kW Nd: yttritium-aluminum-garnet (YAG) laser to produce a total of approximately 120 samples of TWBs with a similar thickness combination of 1 mm/1 mm. From the knowledge of the weld surfaces, weld profiles and tensile properties of the specimens of TWBs, the optimal welding parameters were identified and used to produce TWBs of varying widths and welding orientations for the Swift forming test. Thus, it was possible to measure and analyze the forming behavior, including the failure mode and the forming limit diagram (FLD), of the TWBs. Despite the limiled power output of the Nd:YAG laser used in this study, a systematic study was undertaken to achieve welding the integrative aluminium alloy TWBs. In this study, applying a pulsed laser beam with an average power of 1100 W and a welding speed of 35 mm/s produced satisfactory TWBs. Despite some failures of the specimens at the welds during the tensile test, it was found that all TWBs yielded almost the same yield strength and ultimate tensile strength as those of their parent melal. TWBs with transverse welds also retained over 94% of their original ductility. Irrespective of the major loading direction during the forming test, the failures appeared somewhere away from the welds and heat-affected zones on the TWBs, with transverse welds such that the TWBs provided the same formability as the original 5754-O sheets. For TWBs with longitudinal welds, the failures were found to have initiated at the weld propagating perpendicularly to the major loading direction. This resulted in a lower level of FLD.
机译:由于人们的兴趣和市场压力的增加,铝合金拼焊板(TWB)得到了迅速的发展[J. M.Story,S.Heinemann和S.Naegeler,《轻金属年龄56》,第40-47页(1998年)。 R.W.Davies,H.E.Oliver,M.T.Smith和G.J.Grant,J.Minerals,Metals Mater。 Soc。 51,46-50(1999)]进一步降低了汽车零部件的重量和成本。在这项研究中,用2 kW Nd:钇铝石榴石(YAG)激光焊接了厚度为1 mm的5754-O铝合金,以产生总共约120个厚度相似的TWB样品1毫米/ 1毫米。根据对TWB样品的焊接表面,焊接轮廓和拉伸性能的了解,确定了最佳焊接参数,并将其用于生产宽度和焊接方向不同的TWB,以进行快速成型测试。因此,可以测量和分析TWB的成形行为,包括破坏模式和成形极限图(FLD)。尽管本研究中使用了Nd:YAG激光器的功率输出有限,但仍进行了系统的研究以实现整体铝合金TWB的焊接。在这项研究中,施加平均功率为1100 W且焊接速度为35 mm / s的脉冲激光束可产生令人满意的TWB。尽管在拉伸试验过程中样品在焊缝上出现了一些故障,但发现所有TWB的屈服强度和极限抗拉强度均与其母体的屈服强度和极限抗拉强度几乎相同。带有横向焊缝的TWB还保留了其原始延展性的94%以上。不管成形测试期间的主要载荷方向如何,故障都出现在远离TWB上的焊缝和热影响区的地方,而横向焊缝使TWB提供了与原始5754-O板材相同的可成形性。对于具有纵向焊缝的TWB,发现故障是在垂直于主载荷方向传播的焊缝处引发的。这导致FLD降低。

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