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Dive into the research topics where Katarzyna Cesarz-Andraczke is active.

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Featured researches published by Katarzyna Cesarz-Andraczke.


Solid State Phenomena | 2015

Structure and Corrosion Behavior of Mg-Cu-Y-(Zn,Ni) Bulk Metallic Glasses

R. Babilas; Katarzyna Cesarz-Andraczke; Dorota Babilas; Wojciech Simka

The work presents a structural and corrosion resistance analysis of Mg-based bulk metallic glasses in “as-cast” state. The studies were performed on bulk glassy samples in the form of plates. The structure analysis of the samples in “as-cast” state was carried out by the XRD and DSC methods. The corrosion behavior of the bulk glassy alloys and pure magnesium samples was studied by electrochemical measurements and immersion tests in 5% NaCl solution at room temperature. For the amorphous alloys the highest corrosion potential was achieved, indicating the formation of protective surface layers with Mg and Cu oxides. The corrosion behavior of the alloys with Zn and Ni addition was found to be better than pure magnesium.


Solid State Phenomena | 2015

Corrosion Study of Amorphous Mg67Zn29Ca4 Alloy

R. Nowosielski; Katarzyna Cesarz-Andraczke; R. Babilas; A. Maciej; G. Nawrat

The aim of this paper was investigating the corrosion resistance of Mg67Zn29Ca4 metallic glass and evaluating the ability of use studied amorphous alloy for medical applications as biodegradable implants. For comparative purposes the corrosion studies of the amorphous Mg67Zn29Ca4 samples were performed in a few simulated body fluids at 37°C. The immersion tests were performed in Ringer’s solution, PWE (multielectrolyte physiological fluid) and 3%NaCl water solution. The amount of evolved hydrogen[ml/cm2] and a corrosion rate Vcorr [g/(day·m2)] of studied Mg67Zn29Ca4 alloy were compared. Surface morphology of metallic glass after corrosion study was performed using the scanning electron microscopy.In aim determination dissolution rate and amount of evolved hydrogen was simulated the environment of human body fluids during immersion tests. The work presents structure characterization and corrosion properties analysis of Mg67Zn29Ca4 bulk metallic glasses in the form of plates. Samples structure was analyzed by means of X-ray diffraction. Fractographic study a cross section of the sample in plates form was performed using scanning electron microscopy


Journal of Materials Engineering and Performance | 2014

Structure, Properties, and Crystallization of Mg-Cu-Y-Zn Bulk Metallic Glasses

R. Babilas; Katarzyna Cesarz-Andraczke; R. Nowosielski; A. Burian


Journal of Materials Engineering and Performance | 2015

Structure and Corrosion Resistance of Ca50Mg20Cu30 Bulk Metallic Glasses

R. Babilas; Katarzyna Cesarz-Andraczke; Dorota Babilas; Wojciech Simka


Archives of Civil and Mechanical Engineering | 2018

Impact of Zn and Ca on dissolution rate, mechanical properties and GFA of resorbable Mg–Zn–Ca metallic glasses

R. Nowosielski; Katarzyna Cesarz-Andraczke


Advanced Materials Letters | 2017

Impact of 1% gold’s and copper’s addition on mechanical and corrosion properties of resorbable Mg-based metallic glasses

Ryszard T. Nowosielski; Katarzyna Cesarz-Andraczke


Solid State Phenomena | 2015

Corrosion Study of Amorphous Mg 67 Zn 29 Ca 4 Alloy

R. Nowosielski; Katarzyna Cesarz-Andraczke; R. Babilas; A. Maciej; G. Nawrat


Selected Engineering Problems | 2014

Weeecontainingnanowaste –riskforenvironment and health&safety

P. Sakiewicz; R. Nowosielski; R. Babilas; W. Pilarczyk; Katarzyna Cesarz-Andraczke


Journal of Materials Engineering and Performance | 2014

Structure and Corrosion Resistance of Ca 50 Mg 20 Cu 30 Bulk Metallic Glasses

R. Babilas; Katarzyna Cesarz-Andraczke; Dorota Babilas; Wojciech Simka


Journal of Materials Engineering and Performance | 2014

Structure and Corrosion Resistance of Ca50

R. Babilas; Katarzyna Cesarz-Andraczke; Dorota Babilas; Wojciech Simka

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R. Babilas

Silesian University of Technology

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R. Nowosielski

Silesian University of Technology

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Dorota Babilas

Silesian University of Technology

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Wojciech Simka

Silesian University of Technology

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P. Sakiewicz

Silesian University of Technology

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A. Maciej

Silesian University of Technology

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G. Nawrat

Silesian University of Technology

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A. Burian

University of Silesia in Katowice

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W. Pilarczyk

Silesian University of Technology

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