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Featured researches published by N. Stiegler.


Materials Science and Engineering: C | 2014

Suspension thermal spraying of hydroxyapatite: microstructure and in vitro behaviour.

Giovanni Bolelli; Devis Bellucci; Luca Lusvarghi; Antonella Sola; N. Stiegler; Philipp Müller; Andreas Killinger; Rainer Gadow; Lina Altomare; Luigi De Nardo

In cementless fixation of metallic prostheses, bony ingrowth onto the implant surface is often promoted by osteoconductive plasma-sprayed hydroxyapatite coatings. The present work explores the use of the innovative High Velocity Suspension Flame Spraying (HVSFS) process to coat Ti substrates with thin homogeneous hydroxyapatite coatings. The HVSFS hydroxyapatite coatings studied were dense, 27-37μm thick, with some transverse microcracks. Lamellae were sintered together and nearly unidentifiable, unlike conventional plasma-sprayed hydroxyapatite. Crystallinities of 10%-70% were obtained, depending on the deposition parameters and the use of a TiO2 bond coat. The average hardness of layers with low (<24%) and high (70%) crystallinity was ≈3.5GPa and ≈4.5GPa respectively. The distributions of hardness values, all characterised by Weibull modulus in the 5-7 range, were narrower than that of conventional plasma-sprayed hydroxyapatite, with a Weibull modulus of ≈3.3. During soaking in simulated body fluid, glassy coatings were progressively resorbed and replaced by a new, precipitated hydroxyapatite layer, whereas coatings with 70% crystallinity were stable up to 14days of immersion. The interpretation of the precipitation behaviour was also assisted by surface charge assessments, performed through Z-potential measurements. During in vitro tests, HA coatings showed no cytotoxicity towards the SAOS-2 osteoblast cell line, and surface cell proliferation was comparable with proliferation on reference polystyrene culture plates.


Surface & Coatings Technology | 2010

Hydroxyapatite coatings for biomedical applications deposited by different thermal spray techniques

Rainer Gadow; Andreas Killinger; N. Stiegler


Journal of Materials Science: Materials in Medicine | 2011

Microstructure and in vitro behaviour of 45S5 bioglass coatings deposited by high velocity suspension flame spraying (HVSFS)

Lina Altomare; Devis Bellucci; Giovanni Bolelli; Benedetta Bonferroni; L. De Nardo; Rainer Gadow; Andreas Killinger; Luca Lusvarghi; Antonella Sola; N. Stiegler


Journal of Thermal Spray Technology | 2012

High-Velocity Suspension Flame Sprayed (HVSFS) Hydroxyapatite Coatings for Biomedical Applications

N. Stiegler; Devis Bellucci; Giovanni Bolelli; Rainer Gadow; Andreas Killinger; Luca Lusvarghi; Antonella Sola


Surface & Coatings Technology | 2010

Wear behaviour of high velocity suspension flame sprayed (HVSFS) Al2O3 coatings produced using micron- and nano-sized powder suspensions

Giovanni Bolelli; Benedetta Bonferroni; Rainer Gadow; Andreas Killinger; Luca Lusvarghi; Johannes Rauch; N. Stiegler


Surface & Coatings Technology | 2012

High velocity suspension flame sprayed (HVSFS) potassium-based bioactive glass coatings with and without TiO2 bond coat

Devis Bellucci; Giovanni Bolelli; Rainer Gadow; Andreas Killinger; Luca Lusvarghi; Antonella Sola; N. Stiegler


Surface & Coatings Technology | 2012

Deposition mechanisms in high velocity suspension spraying: Case study for two bioactive materials

Giovanni Bolelli; N. Stiegler; Devis Bellucci; Rainer Gadow; Andreas Killinger; Luca Lusvarghi; Antonella Sola


Surface & Coatings Technology | 2010

Microstructure and in-vitro behaviour of a novel High Velocity Suspension Flame Sprayed (HVSFS) bioactive glass coating

Giovanni Bolelli; Rainer Gadow; Andreas Killinger; Luca Lusvarghi; Antonella Sola; N. Stiegler


12th European Inter-Regional Conference on Ceramics | 2010

Influence of heat treatments on YSZ electrolyte for sofc manufactured by HVSFS

Gemma Fargas Ribas; N. Stiegler; Andreas Killinger; Rainer Gadow; Marcos Juan Anglada Gomila


La Metallurgia Italiana | 2011

Deposizione di rivestimenti in Al2O3 mediante High Velocity Suspension Flame Spraying (HVSFS): caratteristiche dei riporti ed effetto dei parametri operativi

Giovanni Bolelli; Benedetta Bonferroni; Rainer Gadow; Andreas Killinger; Luca Lusvarghi; Johannes Rauch; N. Stiegler

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Rainer Gadow

University of Stuttgart

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Giovanni Bolelli

University of Modena and Reggio Emilia

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Luca Lusvarghi

University of Modena and Reggio Emilia

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Antonella Sola

University of Modena and Reggio Emilia

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Devis Bellucci

University of Modena and Reggio Emilia

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Benedetta Bonferroni

University of Modena and Reggio Emilia

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Marcos Juan Anglada Gomila

Polytechnic University of Catalonia

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