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In this paper a comprehensive approach is presented for the consideration of the interactions between process, tool and machine during the design of cold forging tools and processes by simulation.
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This study provides a route how to proceed with experiments and optimize the process by simulation: small scale experiments should be conducted first and followed by scale up.
The determination of periodic states of cyclic chemical processes by standard simulation techniques is computationally inefficient due to the long transient phase.
This paper summarizes some of our experiences of tube and sheet hydroforming process design by simulation technique through actual tryout.
The main purpose of this study aims to investigate the warping problems during forging process by FEM simulation and experiments.
The purpose of the present work was to investigate the nanoindentation process by numerical simulation with ABAQUS of thin film and bulk materials as pure copper, titanium and iron, considering hardening law.
Lin and Huang [18] studied nano-cutting process by MD simulation and proposed the innovative 'combined Morse potential function and rigid tool space restrictions criterion' as the chip separation criterion.
A case study was undertaken for the construction of a pipeline, where real data were collected in the field, fitted to a statistical distribution, and processed by a simulation package that took into account uncertainty using Monte Carlo sampling.
The reason of this HE-DEP process is explained by simulation work and ascribed to the heating-enhanced convection process, and the "convection force" induced by the heating effect is assessed in a novel way.
Such modelling and simulation often requires rapid implementation of model changes by the process engineer followed by simulation runs.
This project aims at introducing a new approach to process hazard identification by simulation and analysis.
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