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首页> 外文期刊>Continuum mechanics and thermodynamics >A physico-mechanical approach to modeling of metal forming processes - Part II: damage analysis in processes with plastic flow of metals
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A physico-mechanical approach to modeling of metal forming processes - Part II: damage analysis in processes with plastic flow of metals

机译:金属成型过程建模的物理机械方法-第II部分:金属塑性流动过程中的损伤分析

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摘要

A damage analysis is presented for the extrusion of a case-shaped cylindrical part by using a physico-mechanical approach for modeling metal forming processes. Two integral measures related to the hydrostatic and deviatoric parts of the damage tensor are used for the calculation of strain damage. The combined use of two damage measures in contrast to only one allows us to assess not only a risk of macro-fracture of the deformed material but also the stage of formation of large cavernous defects due to coalescence of ellipsoidal voids. Such a refined prediction of the actual quality of the material's micro-structure is important when producing metalware that is supposed to operate under intense loading and thermal conditions. In case study of this paper the kinetic equations of damage are solved by using mutually consistent fields of stresses, flow velocities, and strains. It is shown that the predicted damage is less than its permissible value since a high hydrostatic pressure in the plastic zone heals the micro-defects, prevents their growth, and, thereby, increases the processing ductility of deformed metals during extrusion.
机译:通过使用物理-机械方法对金属成型过程进行建模,提出了用于挤压壳形圆柱零件的损伤分析。与损伤张量的静水和偏斜部分有关的两个积分量度用于计算应变损伤。与仅一种相比,两种损坏措施的组合使用不仅使我们能够评估变形材料的宏观破裂风险,而且还可以评估由于椭圆形空隙的聚结而形成大的海绵状缺陷的阶段。当生产应该在高负荷和热条件下运行的金属器皿时,对材料的微观结构的实际质量进行如此精确的预测非常重要。在本文的案例研究中,通过使用相互一致的应力,流速和应变场来求解损伤的动力学方程。结果表明,由于塑料区中的高静水压力可治愈微缺陷,防止其生长并因此提高了变形过程中变形金属在挤压过程中的加工延展性,因此预计的破坏小于其允许值。

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