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Analysis of deformation characteristics and microstructure variation of thick plate during asymmetric shear rolling

机译:不对称剪切轧制期间厚板变形特性及微观结构变化分析

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Aluminium alloy thick plate is widely used in field of aerospace and automobile industry for its light weight, high strength, good corrosion resistance and formability. Hot rolling is the key process of preparation for thick plates, however, the conventional symmetrical rolling process causes large deformation on the surface and small deformation in the central portion of the thick plate, resulting in inhomogeneous deformation, microstructure and property distributions through the thickness direction of the plate. Asynchronous rolling is beneficial for deformation permeation into the central part of thick plate with introduction of strong shear strain due to velocity asymmetry of two work rolls. However, the plate will bend towards the slower roll due to deformation asymmetry at upper and lower surface of the plate and serious bending is bad for multi-pass rolling process. Asymmetrical shear rolling with velocity asymmetry and geometry asymmetry is adopted in this study. Compared to asynchronous rolling, there is a horizontal offset distance of upper roll in outlet direction. A moment will be applied to the plate in the opposite direction of bending towards the slower roll by an offset distance of the slower roll. The comparisons of distributions of equivalent strain, temperature, DRX fraction and average grain size between symmetrical rolling and asymmetrical shear rolling are studied. The effects of velocity asymmetry and offset distance on microstructure variation and microstructure distribution at different positions of the plate are studied. Due to larger velocity of lower work roll, larger equivalent strain and higher temperature appear at lower layer of the plate, which results in higher DRX fraction and finer grain size. The speed ratio contributes greatly to sufficient DRX process and finer grain size; while the ascending offset distance decreases the DRX fraction. Therefore, speed ratio plays significant role in deformation permeation and grain refinement in asymmetrical shear rolling and the offset distance is mainly used to decrease the bending behaviour of the plate. This study can provide guidance to thick plate preparation with good properties in asymmetrical rolling process.
机译:铝合金厚板广泛用于航空航天和汽车工业领域,重量轻,强度高,耐腐蚀性良好和成型性。热轧是厚板的制备的关键方法,然而,传统的对称轧制过程在厚板的中心部分的表面上和小变形导致大变形,导致通过厚度方向的不均匀变形,微观结构和性能分布。板块。异步轧制是有利于变形渗透到厚板中央部分,引入强剪切应变,由于两种工作辊的速度不对称。然而,由于板的上下表面和下表面的变形不对称,板将朝向较慢的辊弯曲,并且严重的弯曲对于多遍轧制工艺不好。本研究采用具有速度不对称和几何不对称的不对称剪切轧制。与异步滚动相比,出口方向上有上辊的水平偏移距离。通过较慢辊的偏移距离将片刻沿弯曲弯曲的相反方向施加到较慢的方向上。研究了对称轧制和不对称剪切轧制之间的等效应变,温度,DRX分数和平均晶粒尺寸的分布的比较。研究了速度不对称性与偏移距离对板不同位置的微结构变化和微观结构分布的影响。由于较大的工作辊速度较大,较大的等效应变和更高的温度出现在板的下层,这导致更高的DRX分数和更细粒尺寸。速度比为足够的DRX过程和更精细的粒度有贡献;虽然上升偏移距离会降低DRX分数。因此,速比在变形渗透中发挥着重要作用,并且不对称剪切轧制的晶粒细化,并且偏移距离主要用于降低板的弯曲行为。该研究可以为厚板制剂提供指导,在不对称的轧制过程中具有良好的性能。

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