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STATIC STRENGTH ESTIMATE OF STRUCTURAL ELEMENTS OF IMPLANT SYSTEMS LIKO 4 × 10 OF VARIOUS DESIGNS

https://doi.org/10.33667/2782-4101-2023-1-10-14

Abstract

Introduction. The creation of effective, reliable, safe, technologically advanced and competitive products is the main task of medical device engineering. The most important requirement to modern medical devices is to guarantee patients’ safety during their lifetime. Today the use of modern computer-aided engineering analysis packages is the most effective calculation method for evaluating the strength and reliability of unique medical devices that can lead to serious consequences if their operation is disturbed. One of the most suitable and efficient systems for computer-aided engineering (CAE) system is the ANSYS software.
The purpose of this study was the comparative assessment of the elastic and elastoplastic formation of 4x10 dental implants of different designs on the abutment-pin and screw-body interface, using the computer simulation of the stress-strain state.
Materials and methods. Two kinds of dental implants were chosen for this study: a Liko-M 4 × 10 implant with the cylindrical body shape and a Liko-M DG 4 × 10 implant with a tapered body shape. The contact between the abutment and screw as well as the implant body and screw is frictional. The pre-tensioning of the screw from the initial tightening was 400 N. The load was applied to the cylindrical surface of the abutment at a percentage of its height.
Results. Elastic and elasto-plastic calculations of the stress-strain state of Liko-M 4 × 10 and Liko-M DG 4 × 10 implants were performed. Besides the results of the main calculations of the stress-strain state of the implants Liko-M 4x10 and Liko-M DG 4 × 10, necessary to assess their static strength, we have also calculated the strength coefficients of implant bodies. Comparative analysis of the static strength of the Liko-M 4 × 10 and Liko-M DG 4 × 10 implants provides conclusions, which are significant for practical application of the implants.

About the Authors

A. A. Sarkisov
Astrakhan State Medical University of the Ministry of Health of the Russian Federation
Russian Federation

Sarkisov Armen Akopovich, Candidate of Medical Sciences, Associate Professor, Head of the Department of Pediatric Dentistry, Prevention of Dental Diseases

Tel. +7‑903‑348‑7277



V. M. Avanisyan
Stavropol State Medical University of the Ministry of Health of the Russian Federation
Russian Federation

Avanisyan Vazgen Mikhailovich, 1-st year resident at the Department of Therapeutic Dentistry

Tel. +7‑928‑633‑89‑95



A. A. Dolgalev
Stavropol State Medical University of the Ministry of Health of the Russian Federation
Russian Federation

Dolgalev Alexander Alexandrovich, MD, Head of the Center for Innovation and Technology Transfer, Professor of the Department of General Practice Dentistry and Pediatric Dentistry, Professor of the Department of Clinical Dentistry with a course of OS and MFS of the Pyatigorsk Medical and Pharmaceutical as Institute-branch of the Volgograd State Medical University Stavropol

Tel. +7‑962‑440‑48‑61



Yu. A. Sergeev
Stavropol State Medical University of the Ministry of Health of the Russian Federation
Russian Federation

Sergeev Yuriy Andreevich, Postgraduate Student, Department of General Practice and Pediatric Dentistry

Tel. +7‑906‑440‑18‑89



References

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2. Theory Reference for ANSYS and Workbench. – Canonsburg: ANSYS Inc.

3. Structural Analysis Guide. – Canonsburg: ANSYS Inc, 2019.

4. Bragin E. A., El’kanov A. A., Dolgalev A. A., Sergeev Y. A., Avanisyan V. M. Comparative assessment of static strength of implant-abutment connections of various implant shapes // Actual problems in dentistry. 2023. no. 1. pp. 121–125. DOI: https://doi.org/10.18481/2077–7566–2023–19–1–121–125


Review

For citations:


Sarkisov A.A., Avanisyan V.M., Dolgalev A.A., Sergeev Yu.A. STATIC STRENGTH ESTIMATE OF STRUCTURAL ELEMENTS OF IMPLANT SYSTEMS LIKO 4 × 10 OF VARIOUS DESIGNS. International journal of Innovative Medicine. 2023;(1):10-14. https://doi.org/10.33667/2782-4101-2023-1-10-14

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ISSN 2782-4101 (Online)