J
Jianguo Lin
Researcher at Imperial College London
Publications - 326
Citations - 8617
Jianguo Lin is an academic researcher from Imperial College London. The author has contributed to research in topics: Creep & Hot stamping. The author has an hindex of 41, co-authored 319 publications receiving 6679 citations. Previous affiliations of Jianguo Lin include Coventry Health Care & University of Birmingham.
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Modelling of the performance of leather in a uni-axial shoe-last simulator
TL;DR: In this paper, an energy potential function has been established using total Lagrangian strains for computer modelling of finite deformation of leather in shoe lasting, and a practical last simulator, composed of a cylindrical last and uni-axial leather strip, has been developed to model a one-dimensional simulation of the lasting process.
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The process parameters effect of ovality in cross wedge rolling for hollow valve without mandril
TL;DR: In this paper, the experimental and numerical results of the effect process parameters on ovality in cross wedge rolling (CWR) for hollow engine valve without mandrel have been presented.
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A novel manufacturing process and validated predictive model for high-strength and low-residual stresses in extra-large 7xxx panels
TL;DR: In this paper, a novel manufacturing process, enabling the production of high quality (i.e. with low and controllable residual stress (RS) distributions and good mechanical properties) T-section 7xxx panels, has been established.
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Review of recent developments in manufacturing lightweight multi-metal gears
TL;DR: A review of recent developments in the manufacturing of lightweight multi-metal components, and in particular gears, is provided in this article, where the main concentration is on the main stages of multilayer gear production, and specifically on pre-form production, multimetal heating, intermetallic bonding, and modelling of essential forming parameters.
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Comparative Study of Creep and Stress Relaxation Behavior for 7055 Aluminum Alloy
TL;DR: In this article, a set of unified creep ageing constitutive equations has been developed and calibrated from creep experimental data, which can be used to predict the creep strain under age forming conditions perfectly.