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PĚNČÍK, J. MATĚJKA, L. MATĚJKA, L.
Original Title
Thermal and Static Analysis of an Insulation Block from Recycled Thermal and Static Analysis of an Insulation Block from Recycled Thermal and Static Analysis of an Insulation Block from Recycled Polymer HDPE for Solution of Thermal Bridges in Wall-footing Detail
Type
journal article - other
Language
English
Original Abstract
With the sustainable construction the emphasis is placed on saving energy, reducing of consumption of natural resources, extending the life cycle of recycling, etc. One of the important groups of materials that can be reused are polymers. Polymers and waste polymers can be used as a base material for products used in civil engineering. One of these products, which were developed, is an insulation block from modified recycled polymer HDPE for direct solution of thermal bridges in wall footing detail. Design of the insulation block has been done using the MAP method together with long-time experimental testing of specimens and in a testing wall in scale 1:1. In the mathematic modeling the installation block was assessed in terms of statics and thermal technology. Static assessment was performed using Standard Solid rheological model, which represents the most accurate approximation of long-time behaviour.
Keywords
material recycling, FEA, thermal bridge, HDPE, viscoelastic
Authors
PĚNČÍK, J.; MATĚJKA, L.; MATĚJKA, L.
RIV year
2013
Released
1. 1. 2013
Publisher
Trans Tech Publications, Switzerland
Location
Switzerland
ISBN
1013-9826
Periodical
Key Engineering Materials (print)
Year of study
525-526
Number
State
Swiss Confederation
Pages from
473
Pages to
476
Pages count
4
BibTex
@article{BUT93212, author="Jan {Pěnčík} and Libor {Matějka} and Lukáš {Matějka}", title="Thermal and Static Analysis of an Insulation Block from Recycled Thermal and Static Analysis of an Insulation Block from Recycled Thermal and Static Analysis of an Insulation Block from Recycled Polymer HDPE for Solution of Thermal Bridges in Wall-footing Detail", journal="Key Engineering Materials (print)", year="2013", volume="525-526", number="2013", pages="473--476", issn="1013-9826" }