Detail publikace
Studium materiálů vyrobených klasickou a moderní aditivní laserovou technologií práškové metalurgie
SEDLÁK, J. ŘÍČAN, D. PÍŠKA, M. ROZKOŠNÝ, L.
Český název
Studium materiálů vyrobených klasickou a moderní aditivní laserovou technologií práškové metalurgie
Anglický název
Study of materials produced by powder metallurgy using classical and modern additive laser technology
Typ
článek v časopise ve Web of Science, Jimp
Jazyk
en
Originální abstrakt
The paper focuses on an analysis of materials produced by modern classic additive method direct metal laser sintering (i.e. powder metallurgy). Direct metal laser sintering belongs to file of additive technologies of rapid prototyping. Rapid prototyping technology is a progressive group of methods used for fast creating of models, prototypes and components directly from 3D data. According to a used technology photopolymers, thermoplastics, specially modified paper or metal powders are used in rapid prototyping machines. Nowadays those production machines creates not only models and prototypes, but they are used to manufacture tools, forms and components for small series production. The purpose of the theoretical part is to gain in depth understanding of exactly what is the principle of direct metal laser sintering and what are properties of explored materials. The practical part analyses structures of materials used by classic and powder metallurgy. It concentrates on samples preparation, their analysis (using light and electron microscopy) and testing. Samples are analysed by mechanical tensile test and Vickers hardness test. The paper also compares sintered samples with steel equivalents produced by classic metallurgy giving final recommendation. (C) 2015 The Authors. Published by Elsevier Ltd.
Český abstrakt
Příspěvek se zabývá studiem materiálů vyrobených klasickou a moderní aditivní metodou Direct Metal Laser Sintering (prášková metalurgie). Výrobní metoda Direct Metal Laser Sintering spadá do souboru aditivních technologií Rapid Prototyping. Technologie Rapid Prototyping je progresivní skupina metod, které slouží k co nejrychlejší tvorbě modelů, prototypů a komponentů přímo na základě 3D dat. Podle použité technologie se v zařízeních Rapid Prototyping používají fotopolymery, termoplasty, speciálně upravený papír nebo kovové prášky. V současnosti tato výrobní zařízení vytváří nejen modely a prototypy, ale také slouží k výrobě nářadí, forem a součástí pro malosériovou výrobu.
Anglický abstrakt
The paper focuses on an analysis of materials produced by modern classic additive method direct metal laser sintering (i.e. powder metallurgy). Direct metal laser sintering belongs to file of additive technologies of rapid prototyping. Rapid prototyping technology is a progressive group of methods used for fast creating of models, prototypes and components directly from 3D data. According to a used technology photopolymers, thermoplastics, specially modified paper or metal powders are used in rapid prototyping machines. Nowadays those production machines creates not only models and prototypes, but they are used to manufacture tools, forms and components for small series production. The purpose of the theoretical part is to gain in depth understanding of exactly what is the principle of direct metal laser sintering and what are properties of explored materials. The practical part analyses structures of materials used by classic and powder metallurgy. It concentrates on samples preparation, their analysis (using light and electron microscopy) and testing. Samples are analysed by mechanical tensile test and Vickers hardness test. The paper also compares sintered samples with steel equivalents produced by classic metallurgy giving final recommendation. (C) 2015 The Authors. Published by Elsevier Ltd.
Klíčová slova česky
Rapid Prototyping; Direct Metal Laser Sintering; výrobní zařízení; metalografická analýza; mechanické vlastnosti
Klíčová slova anglicky
Rapid Prototyping; Direct Metal Laser Sintering; Manufacturing Machine; Metallographic Analysis; Mechanical Properties
Rok RIV
2015
Vydáno
24.02.2015
Nakladatel
Elsevier
Místo
Austria
ISSN
1877-7058
Ročník
100
Číslo
1
Strany od–do
1232–1241
Počet stran
10
BIBTEX
@article{BUT113100,
author="Josef {Sedlák} and Daniel {Říčan} and Miroslav {Píška} and Luboš {Rozkošný},
title="Study of materials produced by powder metallurgy using classical and modern additive laser technology",
year="2015",
volume="100",
number="1",
month="February",
pages="1232--1241",
publisher="Elsevier",
address="Austria",
issn="1877-7058"
}