Motevalli, Mehran; Uhlemann, Jörg; Stranghöner, Natalie; Balzani, Daniel:
The elastic share of inelastic stress-strain paths of woven fabrics
In: Materials, Jg. 13 (2020), Heft 19, S. 4243
2020Artikel/Aufsatz in ZeitschriftOA Gold
BauwissenschaftenFakultät für Ingenieurwissenschaften » Bauwissenschaften » Bauingenieurwesen » Metall- und Leichtbau
Damit verbunden: 1 Publikation(en)
Titel in Englisch:
The elastic share of inelastic stress-strain paths of woven fabrics
Autor*in:
Motevalli, Mehran
ORCID
0000-0001-7585-5079ORCID iD
;
Uhlemann, JörgUDE
GND
1093217618
LSF ID
49817
ORCID
0000-0001-9542-7055ORCID iD
Sonstiges
der Hochschule zugeordnete*r Autor*in
;
Stranghöner, NatalieUDE
GND
132426447
LSF ID
49533
ORCID
0000-0002-1160-7989ORCID iD
Sonstiges
der Hochschule zugeordnete*r Autor*in
;
Balzani, DanielUDE
LSF ID
14642
ORCID
0000-0002-1422-4262ORCID iD
Sonstiges
der Hochschule zugeordnete*r Autor*in
Erscheinungsjahr:
2020
Open Access?:
OA Gold
Web of Science ID
Scopus ID
Notiz:
CA extern
Sprache des Textes:
Englisch
Schlagwort, Thema:
Elastic modeling ; Stress-strain behavior ; Structural analysis ; Structural fabric ; Viscoelastic material response

Abstract in Englisch:

Manifold variations of the mechanical behavior of structural woven fabrics appear in the first load cycles. Nevertheless, invariable states, i.e., mechanically saturated states, can be approached by multiple monotonous load cycle biaxial tests. In a state acceptably close to the ideal saturated state, the stress-strain paths reveal the elastic share of the initially inelastic stress-strain paths of woven fabrics. In this paper, the mechanical saturation behavior of two types of PTFE-coated woven glass fiber fabrics is examined and compared to the recently reported saturation behavior of a PVC-coated polyester fabric. With the help of the saturation test data, an extrapolation function is developed that facilitates an estimation of late cycle stiffness behavior based on measured early cycle behavior. Furthermore, the considerable impact of late cycle properties on structural analyses is shown exemplarily in the numerical simulation of a prestressed fabric structure by comparing results achieved from late and early load cycle stiffness parameters.