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PÍŠKA, M.
Original Title
Advanced knee implants for the third millennium
Type
lecture
Language
English
Original Abstract
This work deals with today’s frequent problem of human joint replacements by applying of advanced radiology techniques (CT, MR, X-ray), application of powder materials and the modern additive (melting of metal powders by electron beam - EBM) and machining technologies. The main attention is devoted to the EBM used by the ARCAM Q10plus machine. A special attention is then paid to the data processing, optimization of design, technological parameters, quality of the produced materials and their post-processing, expressed by 3D topographies of the machined surfaces, machinability, mechanical and tribological properties. The studied technologies include turning, milling, belt grinding and tumbling, in dry conditions. In general, the material exhibits a high resistance to the machining, expressed in terms of specific cutting energies (KISTLER 9575B, Dynoware). Analyses of the samples were made to quantify the production precision and quality (electron microscopy Tescan MIRA 3GM, electron dual microscopy TermoFischer, Alicona IF G6, Mahrvision MM 420) after sintering in different technological modes. The final surface quality results in glossy surfaces (Ra<0.04 um) with high material ratios that enhance the resistance to fatigue crack propagations. The results are very encouraging because this advanced technology (starting at the basic surgical inspections up to the operation with advanced taylor-made implant) can offer an optimized implant that prevails in superior mechanical properties, light mass and excellent mechanical properties. Moreover, a bigger ratio of the original bone can be preserved so a longer life of the implants and reduction of re-operations and after-effects can be expected.
Keywords
implant, knee, EBM, titanium
Authors
Released
30. 7. 2019
Publisher
OMICS International
Location
UK London
ISBN
2169-0022
Periodical
Journal of Material Sciences & Enginering
Year of study
8
Number
2
State
United Kingdom of Great Britain and Northern Ireland
Pages from
1
Pages to
Pages count
URL
https://www.omicsonline.org/proceedings/advanced-knee-implants-for-the-third-millennium-105685.html
BibTex
@misc{BUT157900, author="Miroslav {Píška}", title="Advanced knee implants for the third millennium", year="2019", journal="Journal of Material Sciences & Enginering", volume="8", number="2", pages="1--1", publisher="OMICS International", address="UK London", issn="2169-0022", url="https://www.omicsonline.org/proceedings/advanced-knee-implants-for-the-third-millennium-105685.html", note="lecture" }