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Approach for predicting formation of fine grain layers in metal forming

机译:金属成形中细粒层形成预测方法

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This paper examines the possibility to use the strain rate intensity factor for describing the formation of fine grain layers in the vicinity of frictional interfaces in metal forming processes. This factor controls the intensity of the equivalent plastic strain rate in a narrow zone near such interfaces. The layer of intensive plastic deformation is identified with the layer of fine grains. Dimensional analysis is carried out based on the assumption that the increase in the thickness of the layer of intensive plastic deformation at a point of the friction surface depends on the strain rate intensity factor and its thickness at this point. An approximate value of the strain rate intensity factor in the process of plane strain extrusion is determined from a semi-analytic solution. Preliminary experiment is carried out on a copper sheet. As a result, a specific relation for calculating the thickness of intensive plastic deformation in the copper is found.
机译:本文研究了使用应变速率强度因子的可能性,以描述金属成形过程中摩擦界面附近的细晶片层的形成。该因子控制在此界面附近的窄区域中等效塑性应变速率的强度。密集塑性变形层用细粒层鉴定。基于摩擦表面点处的强度塑性变形层的厚度的增加来进行尺寸分析取决于在此时的应变速率强度因子及其厚度。从半分析溶液确定平面应变挤出过程中应变率强度因子的近似值。初步实验在铜板上进行。结果,发现了用于计算铜中强化塑性变形厚度的具体关系。

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