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Plane strain compression of aluminium alloy sheets

机译:铝合金板的平面应变压缩

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The theory of plane strain compression is applied to rolled aluminium alloy sheet. Two contrasting grades of the alloy are tested: naturally aged AC 120 and half-hard HE 30. While AC 120 displays a smooth stress-strain curve under homogenous straining, HE30 shows a serrated stress-strain curve due to its banded plastic strain behaviour. It is shown that, provided the r-values can be established reliably to characterise each sheet's orthotropy, a flow curve to large strain (≈2) is provided by the plane strain test. Certain modifications to the original test procedure are made to achieve this. Equivalence in flow curves, as required of orthotropic plasticity theory, is examined from plane strain, bulge forming and tension tests conducted at various orientations to the roll. Despite the contrasting limiting strains between the three tests (tension ≈ 0.1, bulge forming ≈ 0.8) an acceptable correlation has been found between their equivalent flow curves across three decades of strain. The dependence of equivalent plastic strain upon equivalent stress for each material conforms to the Hollomon law. The Ramberg-Osgood law allows for the addition of elastic strain.
机译:平面应变压缩理论适用于轧制铝合金板。测试了两种对比等级的合金:自然时效的AC 120和半硬质HE30。虽然AC 120在均匀应变下显示出平滑的应力-应变曲线,但由于其带状塑性应变特性,HE30显示出锯齿形的应力-应变曲线。结果表明,只要可以可靠地建立r值来表征每个片材的正交性,通过平面应变测试就可以得出大应变(≈2)的流动曲线。为了达到此目的,对原始测试程序进行了某些修改。根据正交各向异性塑性理论的要求,从平面应变,凸出成形和在不同方向对轧辊进行的拉伸试验中检查了流动曲线的等效性。尽管这三个测试之间的极限应变是相反的(张力≈0.1,凸起形成≈0.8),但在三十个应变的等效流量曲线之间发现了可接受的相关性。每种材料的等效塑性应变对等效应力的依赖性符合Hollomon定律。 Ramberg-Osgood定律允许增加弹性应变。

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