Modeling and simulation of the decohesion of particulate aggregates in a binding matrix

Publikation: Beitrag in FachzeitschriftArtikelForschungPeer-Review

Autoren

Forschungs-netzwerk anzeigen

Details

OriginalspracheEnglisch
Seiten (von - bis)79-95
Seitenumfang17
FachzeitschriftEngineering Computations (Swansea, Wales)
Jahrgang18
Ausgabenummer1-2
PublikationsstatusVeröffentlicht - 1 Feb. 2001

Abstract

A model for the decohesion of aggregates of suspended particulate material in a binding matrix is developed. In the model cohesive zones which envelop each particle individually are introduced at the particulate/binder interface. During progressive loading, the deterioration of the cohesive zones is initiated if constraints placed on the microstress fields are violated. In order for the material behavior to be energetically admissible, the deterioration of the material at a point is in the form of a reduction of the elasticity tensor's eigenvalues at that point. The material within the cohesive zones deteriorates until the constraints are met. In order to isolate and study the effects of interfacial deterioration, outside of the cohesive zones, the material is unaltered. Mathematical properties of the model, as well as physical restrictions, are discussed. Numerical simulations are performed employing the finite element method to illustrate the approach in three-dimensional applications.

ASJC Scopus Sachgebiete

Zitieren

Modeling and simulation of the decohesion of particulate aggregates in a binding matrix. / Zohdi, T. I.; Wriggers, Peter.
in: Engineering Computations (Swansea, Wales), Jahrgang 18, Nr. 1-2, 01.02.2001, S. 79-95.

Publikation: Beitrag in FachzeitschriftArtikelForschungPeer-Review

Download
@article{839dc27ff3e04b2598913d3aece4fb71,
title = "Modeling and simulation of the decohesion of particulate aggregates in a binding matrix",
abstract = "A model for the decohesion of aggregates of suspended particulate material in a binding matrix is developed. In the model cohesive zones which envelop each particle individually are introduced at the particulate/binder interface. During progressive loading, the deterioration of the cohesive zones is initiated if constraints placed on the microstress fields are violated. In order for the material behavior to be energetically admissible, the deterioration of the material at a point is in the form of a reduction of the elasticity tensor's eigenvalues at that point. The material within the cohesive zones deteriorates until the constraints are met. In order to isolate and study the effects of interfacial deterioration, outside of the cohesive zones, the material is unaltered. Mathematical properties of the model, as well as physical restrictions, are discussed. Numerical simulations are performed employing the finite element method to illustrate the approach in three-dimensional applications.",
keywords = "Aggregates, Cohesion",
author = "Zohdi, {T. I.} and Peter Wriggers",
year = "2001",
month = feb,
day = "1",
doi = "10.1108/02644400110365824",
language = "English",
volume = "18",
pages = "79--95",
journal = "Engineering Computations (Swansea, Wales)",
issn = "0264-4401",
publisher = "Emerald Group Publishing Ltd.",
number = "1-2",

}

Download

TY - JOUR

T1 - Modeling and simulation of the decohesion of particulate aggregates in a binding matrix

AU - Zohdi, T. I.

AU - Wriggers, Peter

PY - 2001/2/1

Y1 - 2001/2/1

N2 - A model for the decohesion of aggregates of suspended particulate material in a binding matrix is developed. In the model cohesive zones which envelop each particle individually are introduced at the particulate/binder interface. During progressive loading, the deterioration of the cohesive zones is initiated if constraints placed on the microstress fields are violated. In order for the material behavior to be energetically admissible, the deterioration of the material at a point is in the form of a reduction of the elasticity tensor's eigenvalues at that point. The material within the cohesive zones deteriorates until the constraints are met. In order to isolate and study the effects of interfacial deterioration, outside of the cohesive zones, the material is unaltered. Mathematical properties of the model, as well as physical restrictions, are discussed. Numerical simulations are performed employing the finite element method to illustrate the approach in three-dimensional applications.

AB - A model for the decohesion of aggregates of suspended particulate material in a binding matrix is developed. In the model cohesive zones which envelop each particle individually are introduced at the particulate/binder interface. During progressive loading, the deterioration of the cohesive zones is initiated if constraints placed on the microstress fields are violated. In order for the material behavior to be energetically admissible, the deterioration of the material at a point is in the form of a reduction of the elasticity tensor's eigenvalues at that point. The material within the cohesive zones deteriorates until the constraints are met. In order to isolate and study the effects of interfacial deterioration, outside of the cohesive zones, the material is unaltered. Mathematical properties of the model, as well as physical restrictions, are discussed. Numerical simulations are performed employing the finite element method to illustrate the approach in three-dimensional applications.

KW - Aggregates

KW - Cohesion

UR - http://www.scopus.com/inward/record.url?scp=0034928577&partnerID=8YFLogxK

U2 - 10.1108/02644400110365824

DO - 10.1108/02644400110365824

M3 - Article

AN - SCOPUS:0034928577

VL - 18

SP - 79

EP - 95

JO - Engineering Computations (Swansea, Wales)

JF - Engineering Computations (Swansea, Wales)

SN - 0264-4401

IS - 1-2

ER -

Von denselben Autoren