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Experimental investigation of tensile properties and anisotropy of 1420, 8090 and 2060 Al-Li alloys sheet undergoing different strain rates and fibre orientation: a comparative study

机译:抗拉性抗拉性特性的实验研究和1420,8090和2060 Al-Li合金板的不同应变率和纤维取向:比较研究

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Al-Li alloys have gained great attention for military, aerospace, and commercial applications because of their outstanding properties compared to commercial Al alloys. However, the tensile properties of former Al-Li alloys cannot fulfil most of the design and manufacturing characteristics because of their poor formability, and anisotropy in tensile properties. Therefore, the third generation of Al-Li alloys was developed to overcome the shortcoming of the former Al-Li alloys. The sensitivity of tensile properties and anisotropy behavior of Al-Li alloys to fibre orientation (sample orientation) and strain rate is vitally important from the aspects of formability improvements and developing material models for formability prediction. Therefore, this paper aims at investigating the influence of sample orientation and strain rates on the tensile properties and anisotropy behavior of Al-Li alloys sheet through quasi-static and dynamic uniaxial tensile tests. AA1420 and AA8090 sheets were selected from first and second generations of Al-Li alloys respectively because of their outstanding properties. Moreover, AA2060 is a new third generation Al-Li a alloys, at 2011 by Alcao Inc. The results showed that AA2060 alloy offers superior tensile properties compared with former Al-Li alloys, notably along the rolling direction and at high rates of deformation. For instance, the elongation to fracture of AA2060 was increased to 21.9 % at a strain rate of 2000 s-1. However, it's formability at room temperature and quasi-static strain rate is very poor. Additionally, AA2060 is still suffering from anisotropic tensile properties, but the degree of anisotropy in less than show a Al-Li alloy. It is concluded that the quasi-static and dynamic tensile properties and formability for Al-Li. alloy sheets show a dependable tendency in reference to sample orientation and don't display the constant trend with the increasing of the strain rate.
机译:由于与商业AL合金相比,Al-Li合金对军事,航空航天和商业应用产生了很大的关注。然而,由于其可差的成形性和抗拉性性能,以前的Al-Li合金的拉伸性能不能满足大部分设计和制造特性。因此,开发了第三代Al-Li合金以克服前阿里-LI合金的缺点。从可成形性预测的成形性改进和开发材料模型的方面,抗锂合金对纤维取向(样品取向)和应变速率的敏感性和菌株的敏感性。因此,本文旨在通过准静态和动态单轴拉伸试验来研究样品取向和应变率对Al-Li合金片的拉伸性能和各向异性行为的影响。由于其优异的性质,分别选自第一和第二代AA1420和AA8090片材。此外,AA2060是新的第三代Al-Li A合金,2011年通过Alcao Inc。结果表明,与以前的Al-Li合金相比,AA2060合金与前铝合金相比,特别是沿着滚动方向和高变形速率相比,具有卓越的拉伸性能。例如,在2000S-1的应变率下,AA2060的断裂伸长率增加到21.9%。然而,它在室温下的可成形性和准静态应变率非常差。另外,AA2060仍患有各向异性拉伸性能,但各向异性的程度小于显示Al-Li合金。结论是,对施氮的准静态和动态拉伸性能及其成形性。合金薄片表明,参考样品取向可靠趋势,并且不随着应变率的增加而显示恒定趋势。

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