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Property Anisotropy in Magnesium Containing Aluminium Alloys

机译:含铝合金镁的性能各向异性

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Property anisotropy has been investigated in a range of both model and commercial 5xxx series Al-Mg alloys, in the annealed temper. The term property anisotropy includes the whole range of mechanical tensile properties, but in this paper we are particularly concerned with anisotropy in the tensile elongation to fracture. The tensile elongation in these alloys typically achieves a maximum value in the 45 deg direction to the rolling direction, and a minimum when the sheet is deformed in a direction parallel to the rolling direction. Both microstructural anisotropy and crystallographic texture have been considered in analysing the results. It is shown that microstructural anisotropy and global parameters, such as the work hardening exponent, n, and the plastic strain ratio, r-value, cannot explain the ductility anisotropy. However, the anisotropy can be understood in terms of the influence of crystallographic texture on the work hardening rate. The behaviour of the work hardening rate with stress and strain controls the onset of plastic instability, and subsequent failure.
机译:在退火的脾气中,已经在两种模型和商业5XXX系列Al-Mg合金中进行了各向异性。术语性各向异性包括整个机械拉伸性能,但在本文中,我们特别关注裂缝的拉伸伸长伸长率的各向异性。这些合金中的拉伸伸长率通常在45°的方向上实现最大值,以及当片材在平行于滚动方向的方向上变形时的最小值。在分析结果时已经考虑了微结构各向异性和晶体纹理。结果表明,微观结构各向异性和全局参数,例如工作硬化指数,N和塑性应变比,R值不能解释延展性各向异性。然而,在晶体纹理对工作化硬化率的影响方面可以理解各向异性。应力和应变的工作硬化率的行为控制塑料不稳定的发作,随后的故障。

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