Detail publikace
Získání teplotních vlastností v závislosti na teplotě u licí hmoty
POHANKA, M.
Český název
Získání teplotních vlastností v závislosti na teplotě u licí hmoty
Anglický název
Obtaining Temperature Dependent Thermal Properties of Investment Casting Mold
Typ
článek ve sborníku ve WoS nebo Scopus
Jazyk
en
Originální abstrakt
An experiment is conducted to determine the temperature dependent thermal properties of a fused silica shell conmmonly used as a mold amterial for investment castings. The mold is constructed by building up alternating layers of binder and silica. Different binder and siulica are used for the inner layer, resulting in a thin region with different thermal properties that the rest of the shell.
Český abstrakt
An experiment is conducted to determine the temperature dependent thermal properties of a fused silica shell conmmonly used as a mold amterial for investment castings. The mold is constructed by building up alternating layers of binder and silica. Different binder and siulica are used for the inner layer, resulting in a thin region with different thermal properties that the rest of the shell.
Anglický abstrakt
An experiment is conducted to determine the temperature dependent thermal properties of a fused silica shell conmmonly used as a mold amterial for investment castings. The mold is constructed by building up alternating layers of binder and silica. Different binder and siulica are used for the inner layer, resulting in a thin region with different thermal properties that the rest of the shell.
Klíčová slova anglicky
thermal, casting,conductivity
Vydáno
15.11.2002
Nakladatel
ASME
Místo
New Orleans, LA
ISBN
0791836509
Kniha
Proceedings of IMECE 2002
Číslo edice
1
Strany od–do
1–6
Počet stran
6
BIBTEX
@inproceedings{BUT7292,
author="Michal {Pohanka},
title="Obtaining Temperature Dependent Thermal Properties of Investment Casting Mold",
booktitle="Proceedings of IMECE 2002",
year="2002",
month="November",
pages="1--6",
publisher="ASME",
address="New Orleans, LA",
isbn="0791836509"
}