数值分析了多孔毛坯模锻在模具内配合实施主动摩擦力

G. Bagliuk, S. Kyryliuk
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引用次数: 1

摘要

本文给出了利用模料系统内黏聚作用在可变形坯料侧面施加主动摩擦力的多孔粉末预制件热模锻的模拟结果。通过改变施加在弹性元件上的初始压缩力来防止模具发生位移,从而改变加载边界条件,研究了在不同变形阶段、应力-应变状态和总应变力下坯料截面上相对密度分布的演变。结果表明,与坯料体积中心的变形相比,作用在靠近模具内侧的锻件外围的主动摩擦力产生的变形强度要高得多。同时,高变形强度区域的体积和变形最大值随着弹簧初始压缩力的减小而增大,相应地随着变形过程中模具位移值的增大而增大。由于模具可变形材料系统内部的凝聚作用,模具自动位移导致总变形力减小,变形时随着模具位移值的减小,变形力增大。
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Numerical analysis of porous blank die forging in the die with the implementation of active friction forces
The paper provides the results of simulating the hot die forging of porous powder preforms with active friction forces applied along the lateral surface of the deformable blank by means of internal cohesion in the die-material system. The study covers the evolution of relative density distribution over the blank cross section at different stages of deformation, stress-strain state and total strain force while varying the loading boundary conditions by changing the initial compression force applied to elastic elements that prevent the die from displacement. It is shown that active friction forces acting on the periphery of the forging adjacent to the die inner side result in areas with a significantly higher deformation intensity compared to deformations in the center of the blank volume. At the same time, the volume of the high deformation intensity area and maximum values of deformation increase with a decrease in the spring initial compression force and, accordingly, with an increase in the die displacement value during deformation. Automatic die displacement due to internal cohesion in the die-deformable material system leads to a decrease in the total deformation force, and with a decrease in the die displacement value during deformation, the deformation force increases.
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