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Liliang Wang

Researcher at Imperial College London

Publications -  137
Citations -  1896

Liliang Wang is an academic researcher from Imperial College London. The author has contributed to research in topics: Hot stamping & Formability. The author has an hindex of 19, co-authored 118 publications receiving 1348 citations. Previous affiliations of Liliang Wang include Delft University of Technology & Harbin Institute of Technology.

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A review on forming techniques for manufacturing lightweight complex—shaped aluminium panel components

TL;DR: In this paper, a comprehensive review of widely used forming processes for aluminium alloys, under cold, warm and hot forming conditions, and the material characteristics and equipment used for each process are presented.
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Numerical study of the solution heat treatment, forming, and in-die quenching (HFQ) process on AA5754

TL;DR: In this article, an FE model of the solution heat treatment, forming and in-die quenching (HFQ) process was developed and a good correlation with a deviation of less than 5% was achieved between the thickness distribution of the simulated and experimentally formed parts.
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The friction coefficient evolution of a TiN coated contact during sliding wear

TL;DR: In this paper, a hard TiN coating was prepared on a bearing steel substrate by applying the composite method of cathode arc and magnetron sputtering, and a novel friction-wear interactive friction model was developed to represent the evolution of friction coefficient and to predict coating breakdown.
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Friction in aluminium extrusion—Part 1: A review of friction testing techniques for aluminium extrusion

TL;DR: In this paper, the authors summarized the recent development of the friction testing techniques for aluminium extrusion processes and detailed comparisons of these techniques are presented, and the combination of extrusion friction tests and short sliding distance ball-on-disc tests is recommended.
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Effect of temperature on the frictional behaviour of an aluminium alloy sliding against steel during ball-on-disc tests

TL;DR: In this paper, the effect of temperature on the stress and strain distributions at the ball/disc interface was revealed by means of three-dimensional finite-element (3D FE) simulation.