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Dive into the research topics where D.T.A. Matthews is active.

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Featured researches published by D.T.A. Matthews.


Key Engineering Materials | 2018

An insight in friction and wear mechanisms during hot stamping

Jenny Venema; Javad Hazrati; D.T.A. Matthews; Ton van den Boogaard

Hot stamping is often used in the automotive industry to combine formability and strength. However, during forming process at high temperatures, friction and tool wear are determining factors that can affect the efficiency of the whole process. The goal of this paper is to investigate the effects of temperature on the local coefficient of friction and tool wear and to provide an insight in the phenomena which take place at the tool-sheet metal interface during hot stamping processes. For this purpose, hot friction draw tests between uncoated tool steel and Al-Si coated press hardening steel were carried out at several temperatures between 500-700°C. Consecutive tests were performed to mimic industrial hot stamping process and to investigate the effect of tool wear on the friction phenomenon. Finally, tool-sheet metal tribological behavior and the interaction between the friction and tool wear mechanisms were analyzed using different imaging and chemical characterization techniques. The results show that several stages can be distinguished at the interface between tool and sheet metal coating during hot stamping: flattening due to initial normal contact, ploughing of tool asperities through coating, secondary ploughing in the coating by adhered material on the tooling, and abrasive wear in the tool by embedded particles in the sheet metal coating. Furthermore, tool wear shows some major differences in the temperature range of 500-700°C. At high temperature a larger abrasive area and more severe compaction galling occurs that can be explained by material properties of Al-Si coating at elevated temperatures. The results of this study can be used for more efficient process design and a more realistic modelling of the hot stamping process.


Friction | 2016

Selection of micro-fabrication techniques on stainless steel sheet for skin friction

Sheng Zhang; Xiangqiong Zeng; D.T.A. Matthews; A. Igartua; E. Rodriguez-Vidal; J. Contreras Fortes; V. Saenz de Viteri; F. Pagano; B. Wadman; E. D. Wiklund; E. van der Heide


Wear | 2015

A generic model for surface texture development, wear and roughness transfer in skin pass rolling

D.J. Wentink; D.T.A. Matthews; N.M. Appelman; E.M. Toose


Friction | 2017

Finger pad friction and tactile perception of laser treated, stamped and cold rolled micro-structured stainless steel sheet surfaces

Sheng Zhang; Xiangqiong Zeng; D.T.A. Matthews; A. Igartua; E. Rodriguez–Vidal; J. Contreras Fortes; E. van der Heide


Biosurface and Biotribology | 2017

Texture design for light touch perception

Sheng Zhang; Xiangqiong Zeng; D.T.A. Matthews; A. Igartua; E. Rodriguez–Vidal; J. Contreras Fortes; E. van der Heide


Wear | 2017

Friction and wear mechanisms during hot stamping of AlSi coated press hardening steel

J. Venema; D.T.A. Matthews; Javad Hazrati; J. Wörmann; A.H. van den Boogaard


Wear | 2018

The effects of temperature on friction and wear mechanisms during direct press hardening of Al-Si coated ultra-high strength steel

J. Venema; Javad Hazrati; D.T.A. Matthews; R.A. Stegeman; A.H. van den Boogaard


Surface & Coatings Technology | 2018

Cladding of Tribaloy T400 on Steel Substrates using a High Power Nd:YAG Laser

Wei Ya; B. Pathiraj; D.T.A. Matthews; Mark Bright; Stefan Melzer


Optics Express | 2018

Picosecond-pulsed laser ablation of zinc : crater morphology and comparison of methods to determine ablation threshold

Hasib Mustafa; R. Pohl; Teunis Cornelis Bor; B. Pathiraj; D.T.A. Matthews; G.R.B.E. Römer


11th International Conference on Photo-Excited Processes and Applications (ICPEPA 2018) | 2018

Effect of surface roughness on the ultrashort pulsed laser ablation fluence threshold of zinc and steel

Hasib Mustafa; Marek Mezera; D.T.A. Matthews; G.R.B.E. Römer

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Xiangqiong Zeng

Chinese Academy of Sciences

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