Identification of the Cause of the Stem Neck Fracture in the Hip Joint Endoprosthesis
Endoprosthesis stem fractures are among the rarest complications that occur after hip joint arthroplasty. The aim of this paper is to evaluate the causes of the fractures of the Aura II stem neck, which is an element of an endoprosthesis implanted in a patient. In order to achieve it, a radiogram wa...
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Online Access: | https://doi.org/10.1515/ijame-2018-0013 |
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doaj-9ff1f753c7b64616a87e700a9d4d454e2021-09-05T20:51:07ZengSciendoInternational Journal of Applied Mechanics and Engineering1734-44922353-90032018-02-0123122323410.1515/ijame-2018-0013ijame-2018-0013Identification of the Cause of the Stem Neck Fracture in the Hip Joint EndoprosthesisRyniewicz A.M.0Bojko Ł.1Ryniewicz A.2Pałka P.3Ryniewicz W.4AGH University of Science and Technology Faculty of Mechanical Engineering and Robotics 30 Mickiewicz Ave., 30-059 Cracow, PolandAGH University of Science and Technology Faculty of Mechanical Engineering and Robotics 30 Mickiewicz Ave., 30-059 Cracow, PolandCracow University of Technology, Faculty of Mechanical Laboratory of Coordinate Metrology 37 John Paul II Ave., 31-864 Cracow, PolandAGH University of Science and Technology Faculty of Non-Ferrous Metals 30 Mickiewicz Ave., 30-059 Cracow, PolandJagiellonian University Medical College Faculty of Medicine, Dental Institute, Department of Dental Prosthodontics ul. Montelupich 4, 31-155 Cracow, PolandEndoprosthesis stem fractures are among the rarest complications that occur after hip joint arthroplasty. The aim of this paper is to evaluate the causes of the fractures of the Aura II stem neck, which is an element of an endoprosthesis implanted in a patient. In order to achieve it, a radiogram was evaluated, the FEM analysis was carried out for the hip joint replaced using the Aura II prosthesis and scanning tests as well as a chemical analysis were performed for the focus of fatigue. The tests performed indicate that the most probable causes leading to the fatigue fracture of the Aura II stem under examination were material defects in the process of casting and forging (forging the material with delamination and the presence of brittle oxides and carbides) that resulted in a significant reduction of strength and resistance to corrosion. In the light of an unprecedented stem neck fracture, this information should be an indication for non-destructive tests of ready-made stems aiming to discover the material and technological defects that may arise in the process of casting and drop forging.https://doi.org/10.1515/ijame-2018-0013prosthetic arthroplastystem constructionfatigue fracturefem (finite element method)sem (scanning electron microscopy) |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Ryniewicz A.M. Bojko Ł. Ryniewicz A. Pałka P. Ryniewicz W. |
spellingShingle |
Ryniewicz A.M. Bojko Ł. Ryniewicz A. Pałka P. Ryniewicz W. Identification of the Cause of the Stem Neck Fracture in the Hip Joint Endoprosthesis International Journal of Applied Mechanics and Engineering prosthetic arthroplasty stem construction fatigue fracture fem (finite element method) sem (scanning electron microscopy) |
author_facet |
Ryniewicz A.M. Bojko Ł. Ryniewicz A. Pałka P. Ryniewicz W. |
author_sort |
Ryniewicz A.M. |
title |
Identification of the Cause of the Stem Neck Fracture in the Hip Joint Endoprosthesis |
title_short |
Identification of the Cause of the Stem Neck Fracture in the Hip Joint Endoprosthesis |
title_full |
Identification of the Cause of the Stem Neck Fracture in the Hip Joint Endoprosthesis |
title_fullStr |
Identification of the Cause of the Stem Neck Fracture in the Hip Joint Endoprosthesis |
title_full_unstemmed |
Identification of the Cause of the Stem Neck Fracture in the Hip Joint Endoprosthesis |
title_sort |
identification of the cause of the stem neck fracture in the hip joint endoprosthesis |
publisher |
Sciendo |
series |
International Journal of Applied Mechanics and Engineering |
issn |
1734-4492 2353-9003 |
publishDate |
2018-02-01 |
description |
Endoprosthesis stem fractures are among the rarest complications that occur after hip joint arthroplasty. The aim of this paper is to evaluate the causes of the fractures of the Aura II stem neck, which is an element of an endoprosthesis implanted in a patient. In order to achieve it, a radiogram was evaluated, the FEM analysis was carried out for the hip joint replaced using the Aura II prosthesis and scanning tests as well as a chemical analysis were performed for the focus of fatigue. The tests performed indicate that the most probable causes leading to the fatigue fracture of the Aura II stem under examination were material defects in the process of casting and forging (forging the material with delamination and the presence of brittle oxides and carbides) that resulted in a significant reduction of strength and resistance to corrosion. In the light of an unprecedented stem neck fracture, this information should be an indication for non-destructive tests of ready-made stems aiming to discover the material and technological defects that may arise in the process of casting and drop forging. |
topic |
prosthetic arthroplasty stem construction fatigue fracture fem (finite element method) sem (scanning electron microscopy) |
url |
https://doi.org/10.1515/ijame-2018-0013 |
work_keys_str_mv |
AT ryniewiczam identificationofthecauseofthestemneckfractureinthehipjointendoprosthesis AT bojkoł identificationofthecauseofthestemneckfractureinthehipjointendoprosthesis AT ryniewicza identificationofthecauseofthestemneckfractureinthehipjointendoprosthesis AT pałkap identificationofthecauseofthestemneckfractureinthehipjointendoprosthesis AT ryniewiczw identificationofthecauseofthestemneckfractureinthehipjointendoprosthesis |
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1717784253661446144 |