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Structural Transformations in Metallic Materials During Plastic Deformation

机译:塑性变形期间金属材料的结构变换

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In this paper, the structure formation during the plastic deformation of polycrystalline nickel and aluminum based alloy 2024-T3 is investigated. The possibility of the relaxation and synergetic structure formation is examined. It is shown the deformation softening to be due to the crystallization of the amorphous structure of hydrodynamics flow channels (synergetic structure) HC as micrograins and their subsequent growth. The possible mechanism of micrograins' growth is proposed. The deformation processes change the phase composition of the multiphase alloy 2024-T3. It is shown by the quantitative analysis of the structures which were deformed in different regimes of the alloy samples. A method for increasing of the fatigue life through a dynamic pre-deformation is suggested.
机译:本文研究了多晶镍和铝基合金2024-T3的塑性变形期间的结构形成。 检查了放松和协同结构的可能性。 结果示出了变形软化,这是由于流体动力学流动通道(协同结构)HC作为微林的无定形结构的结晶及其随后的生长。 提出了MicroGrains的增长的可能机制。 变形过程改变多相合金2024-T3的相组合物。 通过在合金样品的不同方案中变形的结构的定量分析所示。 提出了一种通过动态预变形来增加疲劳寿命的方法。

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