Machinability of Nano-Structured Biomaterials for Dental Implants

High quality materials are characterized by increased wear resistance, high strength and hardness, abrasive wear resistance, heat and creep resistance. Due to these properties some materials are considered as hard to machine. This group of materials includes biocompatible materials used for manufact...

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Main Authors: Dana Stancekova, Jan Semcer, Jozef Holubjak, Mario Drbul
Format: Article
Language:English
Published: University of Žilina 2014-10-01
Series:Communications
Subjects:
Online Access:https://komunikacie.uniza.sk/artkey/csl-201411-0014_machinability-of-nano-structured-biomaterials-for-dental-implants.php
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author Dana Stancekova
Jan Semcer
Jozef Holubjak
Mario Drbul
author_facet Dana Stancekova
Jan Semcer
Jozef Holubjak
Mario Drbul
author_sort Dana Stancekova
collection DOAJ
description High quality materials are characterized by increased wear resistance, high strength and hardness, abrasive wear resistance, heat and creep resistance. Due to these properties some materials are considered as hard to machine. This group of materials includes biocompatible materials used for manufacturing implants from commercially pure titanium TiGr2, TiGr5, nano-structured commercially pure titanium nTi and volume-formed titanium alloy TiNbTa. Materials were tested by milling operations with different cutting parameters and force of cutting monitoring.
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spelling doaj.art-37150bd434f24093a6ed54171cd6370d2023-04-14T06:31:10ZengUniversity of ŽilinaCommunications1335-42052585-78782014-10-01163A9610010.26552/com.C.2014.3A.96-100csl-201411-0014Machinability of Nano-Structured Biomaterials for Dental ImplantsDana Stancekova0Jan Semcer1Jozef Holubjak2Mario Drbul3Department of Applied Mechanics, Faculty of Mechanical Engineering, University of Zilina, SlovakiaDepartment of Applied Mechanics, Faculty of Mechanical Engineering, University of Zilina, SlovakiaDepartment of Applied Mechanics, Faculty of Mechanical Engineering, University of Zilina, SlovakiaDepartment of Applied Mechanics, Faculty of Mechanical Engineering, University of Zilina, SlovakiaHigh quality materials are characterized by increased wear resistance, high strength and hardness, abrasive wear resistance, heat and creep resistance. Due to these properties some materials are considered as hard to machine. This group of materials includes biocompatible materials used for manufacturing implants from commercially pure titanium TiGr2, TiGr5, nano-structured commercially pure titanium nTi and volume-formed titanium alloy TiNbTa. Materials were tested by milling operations with different cutting parameters and force of cutting monitoring.https://komunikacie.uniza.sk/artkey/csl-201411-0014_machinability-of-nano-structured-biomaterials-for-dental-implants.phpbiocompatible materialnano-structured titaniummachining
spellingShingle Dana Stancekova
Jan Semcer
Jozef Holubjak
Mario Drbul
Machinability of Nano-Structured Biomaterials for Dental Implants
Communications
biocompatible material
nano-structured titanium
machining
title Machinability of Nano-Structured Biomaterials for Dental Implants
title_full Machinability of Nano-Structured Biomaterials for Dental Implants
title_fullStr Machinability of Nano-Structured Biomaterials for Dental Implants
title_full_unstemmed Machinability of Nano-Structured Biomaterials for Dental Implants
title_short Machinability of Nano-Structured Biomaterials for Dental Implants
title_sort machinability of nano structured biomaterials for dental implants
topic biocompatible material
nano-structured titanium
machining
url https://komunikacie.uniza.sk/artkey/csl-201411-0014_machinability-of-nano-structured-biomaterials-for-dental-implants.php
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AT jozefholubjak machinabilityofnanostructuredbiomaterialsfordentalimplants
AT mariodrbul machinabilityofnanostructuredbiomaterialsfordentalimplants