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Uniform equiaxed grain structure throughout thickness of a hot-rolled 5083 Al-Mg-Mn alloy thick plate after a tempering treatment at 350 degrees C

机译:在350℃回火处理后,热轧5083 al-mg-mn合金厚板的整个厚度均匀的等轴晶粒结构

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摘要

In a conventional hot-rolled 5083 Al-alloy thick plate, the crystalline structure at the central part in the thickness direction comprises primarily slender grains. However, the grain structure is always equiaxed near the surface of the rolling plate. In this experiment, the shape of the slab before hot rolling was changed to a trapezoid. The main goal is to increase the amount of plastic strain and increase the dislocation density in the central part of the plate hot-rolled from the trapezoidal aluminum slab. TEM observations indicated that the center of the plate of hot-rolled trapezoidal slab had a higher dislocation density than the center of the rectangular slab. Subsequent heat treatment caused the treated grains to become equiaxed. Therefore, an equiaxed grain structure that was uniform in the thickness direction of a hot-rolled thick plate could be obtained because the hot rolling of the trapezoidal slab caused profound lateral strain. in addition to extensive deformation in the rolling direction. The excess deformation resulted in a high dislocation density in the central region of the as-hot rolled plate, increasing the strain energy that was stored for recrystallization.
机译:在常规的热轧5083铝合金厚板中,在厚度方向上的中央部分的晶体结构主要包括细长晶粒。但是,晶粒结构总是在轧板表面附近等轴。在该实验中,将热轧之前的板坯形状改变为梯形。主要目的是增加塑性应变的量并增加从梯形铝板热轧的板中心部分的位错密度。 TEM观察表明,热轧梯形板的中心的位错密度高于矩形板的中心。随后的热处理导致处理后的晶粒等轴化。因此,由于梯形板坯的热轧引起较大的横向应变,因此可以获得在热轧厚板的厚度方向上均匀的等轴晶组织。除了在轧制方向上的大变形之外。过度的变形导致热轧板中心区域的位错密度高,从而增加了为再结晶而储存的应变能。

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