An Investigation of the Shell Nosing Process by the Finite-Element Method. Part 2: Nosing at Elevated Temperatures (Hot Nosing)

Author:

Tang Ming-Ching1,Kobayashi Shiro2

Affiliation:

1. IBM Corporation, General Product Division, San Jose, Calif.

2. Department of Mechanical Engineering, University of California, Berkeley, Calif.

Abstract

The metal-forming processes of shell nosing at elevated temperatures were analyzed by the finite-element method. The strain-rate effects on materials properties and the flow stress dependence on temperatures were included in the finite-element analysis. A thermodynamic theory of visco-plasticity based on rational mechanics was adapted to a rigid-plastic material idealization. An implicit scheme is used for the time integration of heat transfer equations, which is coupled to the plasticity equations. The nine-node quadrilateral elements with quadratic velocity distribution were used for the workpiece, and four-node quadrilateral elements were used for the die in the heat transfer analysis and temperature calculations. The coupled analysis of heat transfer and deformation was applied to the forming of AISI 1045 steel shells. Correlation between simulation and experimental results are good.

Publisher

ASME International

Subject

General Medicine

Cited by 11 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Numerical investigation of the effects of process parameters on forming load and failure in hot nosing process;Materials Research Proceedings;2024-05-15

2. Single-stage nosing of thin-walled tubes into hollow spheres using a die;The Journal of Strain Analysis for Engineering Design;2008-04-01

3. Nosing of thin-walled hollow spheres using a die: experimental and theoretical investigation;International Journal of Mechanics and Materials in Design;2007-08-01

4. Compression beading and nosing of thin-walled tubes using a die: experimental and theoretical investigation;International Journal of Mechanics and Materials in Design;2006-10-26

5. Study of preform and loading rate in the tube nosing process by spherical die;Computer Methods in Applied Mechanics and Engineering;2005-07

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