Abstract

In this paper, on the basis of the new mathematical method formerly proposed, i.e., strain analysis method, (Chen et al., 2013), the criterion for multiple void closure was presented by mathematical derivation of the strain function. It indicates that the closure of each void is independent, but not accumulated in the porous model. Therefore, the criterion for single void closure formerly proposed can be completely applied on the porous model. Also, the criterion for two-dimensional void closure was derived from the elastic theory in the present paper. On this basis, the criterion for three-dimensional void closure applied on the practical process was discussed. It is shown that the deviation between them is less than 18%. Finally, this criterion for three-dimensional void closure was validated by numerical simulations for a typical steel ingot. It illuminates that with the criterion for void closure in the porous model, not only comparatively accurate results but also simplified model with voids are obtained in terms of prediction for void closure. It provides a new method with extensive application prospect for the optimization of the forging process.

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