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Featured researches published by Nicolas Maier.


Advances in Science and Technology | 2010

Corrosion of Single Crystal Cordierite by Model Diesel Particulate Filter Ashes: Mechanisms and Orientation Dependence

Nicolas Maier; Klaus G. Nickel; Christine Engel; Andreas Mattern

Cordierite Mg2Al4Si5O18 is a material for diesel particulate filters (DPF) with high potential. Its resistance to a simplified model ash has been tested on single crystals at temperatures up to 1050°C, which are realistic for use under ‘worst case’ conditions. A mixture of Ca, Mg and Zn phosphates, which are typical main constituents of many DPF ashes, was used as model ash. Single crystals were examined in order to investigate the orientation dependence of attack due to the strongly anisotropic nature of the Cordierite crystal lattice. Strong corrosion by the ash occurs at 1050 °C, connected to excessive ash melting. The molten ash attacks Cordierite by fast dissolution of the substrate with melt (super)saturation within minutes. Anisotropy of the dissolution process could not be detected. The initial kinetics are dominated by saturation effects, which slow down corrosion. The saturated melt attacks Cordierite by reaction processes leading to the formation of new crystalline phases. This process is much slower than the initial dissolution process but may significantly contribute to the destruction of Cordierite substrates if large contact areas between ash melt and Cordierite exist.


Journal of Solid State Chemistry | 2006

Formation and stability of Gd, Y, Yb and Lu disilicates and their solid solutions

Nicolas Maier; Georg Rixecker; Klaus G. Nickel


Journal of The European Ceramic Society | 2010

Mechanisms and orientation dependence of the corrosion of single crystal Cordierite by model diesel particulate ashes

Nicolas Maier; Klaus G. Nickel; Christine Engel; Andreas Mattern


Archive | 2008

Method for operating sensor element for determining property of gas in measuring gas chamber, particularly for determining oxygen portion in gas, involves using sensor element with pump cell

Martin Buchholz; Berndt Cramer; Lothar Diehl; Harald Guenschel; Detlef Heimann; Robert Kikowatz; Nicolas Maier; Thomas Moser; Astrid Netsch; Marco Niemitz; Goetz Reinhardt; Marcus Scheffel; Thomas Seiler


Archive | 2016

Verfahren zur Bestimmung der Haftfestigkeit von Schichten eines keramischen Sensorelements zur Erfassung mindestens einer Eigenschaft eines Messgases in einem Messgasraum

Jens Schneider; Nicolas Maier; Peter Scharschmidt; Sarah Richter


Archive | 2016

Keramisches Sensorelement für einen Abgassensor

Ingrid Gerner; Hans-Joerg Renz; Uwe Glanz; Jens Schneider; Michael Piwonski; Nicolas Maier; Harald Guenschel; Petra Kuschel


Archive | 2015

Verfahren zur herstellung eines keramischen sensorelements für einen abgassensor

Ingrid Gerner; Hans-Joerg Renz; Uwe Glanz; Jens Schneider; Michael Piwonski; Nicolas Maier; Harald Guenschel; Petra Kuschel


Archive | 2015

Ceramic sensor element for a waste gas sensor

Ingrid Gerner; Hans-Joerg Renz; Uwe Glanz; Harald Guenschel; Petra Kuschel; Jens Schneider; Michael Piwonski; Nicolas Maier


Archive | 2009

Structural element, preferably particle filter, particle sensor or waste gas catalyst for reducing penetration of ash melting during thermal loading of component, comprises coating contactable with burn exhaust gases

Christine Engel; Nicolas Maier; Andreas Mattern


Archive | 2009

Bauelement, insbesondere Dieselpartikelfilter, mit einer oxidischen Beschichtung

Christine Engel; Nicolas Maier; Andreas Mattern

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