Void Consolidation during Open-Die Forging for Ultralarge Rotor Shafts. 3rd Report. Satisfaction of Criterion for Void Consolidation by Precooling Ingot Forging Method.

Bibliographic Information

Other Title
  • 超大形軸材の鍛造における内部空げき圧着に関する研究 第3報 表面冷却鍛錬法の改善による空げき圧着条件の達成
  • チョウ オオガタジクザイ ノ タンゾウ ニ オケル ナイブ クウゲキ アッチャ

Search this article

Abstract

A hydrostatic stress ratio of greater than 0.9 was proposed as one of the most significant criterion for void consolidation after closing during open die forging, on the basis of some physical modeling tests on 3.5NiCrMoV-rotor steel billet with a hole at the centerline and numerical simulation using the three-dimensional rigid-plastic finite-element method. To satisfy the criterion for void consolidation in a forging process of large rotor shafts, it was found that the use of a precooling ingot forging method for a rectangular cross-section-ingot is highly effective since the hydrostatic stress ratio at the center of the ingot remarkably increases with the increase of aspect ratio in the cross section from 1.0 to 1.8. The enlargement of width in the rectangular cross section enabled the development of the optimum maufacturing process of an ultralarge low-pressure turbine rotor shaft with 2800 mm and over diameter.

Journal

Citations (6)*help

See more

References(14)*help

See more

Details 詳細情報について

Report a problem

Back to top