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首页> 外文期刊>St. Petersburg Polytechnic University Journal: Physics and Mathematics >Modeling of the plasticity of microstructured and nanostructured materials
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Modeling of the plasticity of microstructured and nanostructured materials

机译:显微结构和纳米结构材料的可塑性建模

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A new approach to modeling of the plasticity of materials with nanostructure and ultrafine one has been proposed. Its main advantage is the minimum number of physical parameters in use. In the context of the proposed model, we calculated the volumetric density of the energy of surface tension of the material grains. This energy is a significant part of the internal energy during deformation. The size dependence of the melting temperature of nanoparticles was compared with experimental data. We obtained size dependence of the yield point on its basis. Yield point was interpreted as the result of changes of grains surface energy during the deformation. The obtained yield point dependence on the grain size was related to the Hall-Petch law, and this resulted in confirmation of the hypothesis on the crucial role of surface tension forces in the initial stage of plastic deformation of ultrafine materials.
机译:提出了一种新的纳米结构和超细塑性建模材料的建模方法。其主要优势是使用中的最小物理参数数。在所提出的模型的背景下,我们计算了材料晶粒的表面张力能量的容积密度。这种能量是变形过程中内部能量的重要组成部分。将纳米颗粒熔化温度的尺寸依赖性与实验数据进行比较。我们在其基础上获得了屈服点的大小依赖。由于在变形期间,作为谷物表面能的变化的结果解释了屈服点。所得屈服点对晶粒尺寸的依赖性与大厅 - 竖起法律有关,这导致了对表面张力在超细材料的塑性变形初始阶段在表面张力中的关键作用的假设。

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