Relationship between the cell structure and mechanical properties of chemically crosslinked polyethylene foams

Взаимосвязь между структурой ячеек и механическими свойствами химически сшитых пенопластов полиэтилена
Mir Karim Razavi Aghjeh, M. Davari, Seyed Mohsen Seraji
2011-11-03

Dicumyl peroxide (DCP)azodicarbonamide (ADCA)cell size distributioncompression and creep recoveryperoxide crosslinked low-density polyethylene
Abstract The main objective of this work was to study the effect of the controlling parameters on the morphology and mechanical properties of the peroxide crosslinked low‐density polyethylene foams. The relationship between the morphology and mechanical properties was also considered. Using different Dicumyl peroxide (DCP) and azodicrbonamide (ADCA) concentrations, various foams with different cell structures were prepared. Gel content and density of the foams were measured according to the standard methods. The morphology was examined using SEM technique. The mechanical properties of the foams were evaluated by means of compression and creep recovery tests. The results showed that the gel content and the density are mainly controlled by DCP and ADCA concentration, respectively. The results also showed that the cell size distribution is mainly controlled by DCP concentration. Increasing of DCP increased the gel content and decreased the cell size and cell size distribution. Foam density was mainly controlled by ADCA concentration, whereas the morphology was less affected with ADCA concentration. The foams with small cell size and narrow cell size distribution showed higher mechanical strength and lower plastic strain. © 2011 Wiley Periodicals, Inc. J Appl Polym Sci, 2012
1
ADCA concentration has little effect on foam morphology (cell structure) despite controlling density.
2
DCP concentration primarily controls cell size and cell size distribution; increasing DCP raises gel content and decreases cell size and its distribution.
3
Foam density is mainly controlled by azodicarbonamide (ADCA) concentration.
4
Foams with smaller cell size and narrower cell size distribution exhibit higher mechanical strength and lower plastic strain (improved compression and creep recovery behavior).
5
Gel content of peroxide-crosslinked low-density polyethylene foams is mainly controlled by Dicumyl peroxide (DCP) concentration.

Peroxide (Dicumyl peroxide) crosslinked low-density polyethylene foams produced with varying DCP and azodicarbonamide concentrations

Relationship between cellular morphology (cell size, cell size distribution, density, gel content) and mechanical properties (compression strength, creep recovery, plastic strain) as controlled by DCP and ADCA concentrations

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2011-11-03
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Mir Karim Razavi Aghjeh
M. Davari
Seyed Mohsen Seraji
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