Modeling of Hygro-Mechanical Behaviour through Raffia vinifera Fiber during the Water Diffusion Phenomenon

被引:0
|
作者
Takoudjou H.N. [1 ,2 ]
Sikame Tagne N.R. [1 ,2 ,3 ,4 ]
Nwagoum Tuwa P.R. [1 ,5 ]
Fogue M. [1 ,2 ]
Njeugna E. [3 ,4 ]
机构
[1] Research Unit, Engineering of Industrial Systems and the Environment (UR-ISIE), IUT/FV Bandjoun-University of Dschang, P.O. Box. 134, Dschang, Bandjoun
[2] Research Unit, in Mechanics and Modelling of Physical Systems (UR-2MSP), Faculty of Science-University of Dschang, Dschang
[3] Mechanics and Adapted Materials Laboratory (LAMMA), ENSET-University of Douala, P.O. Box. 1872 Douala, Douala
[4] Mechanics Laboratory (LM), ENSET-University of Douala, P.O. Box. 1872 Douala, Douala
[5] Lab. on Modelling and Simulation in Engineering, Biomimetics and Prototypes, and Twas Research Unit, Faculty of Science, University of Yaounde I, P.O. Box. 812 Yaounde, Yaounde
关键词
Finite difference method;
D O I
10.1155/2021/9354878
中图分类号
学科分类号
摘要
In an industrial context where the use of friendly materials is encouraged, natural fibers of vegetable origin become more solicited for the reinforcement of composite materials. This work deals with the modeling of the hygro-mechanical behavior through raffia vinifera fiber during the diffusion phenomenon. The modeling of water diffusion through the raffia vinifera fiber is described by Fick's second law and taking into account the swelling phenomenon of the fiber. The equation obtained is solved numerically by the finite difference method, and the evolution of the fiber radius as a function of time is obtained. By applying the Leibniz integration rule, a mathematical expression to predict the evolution of this radius as a function of time is proposed. It is observed numerically and analytically an increase of the dimensionless fiber radius with time up to a critical value after what one observes the saturation. This model allowed us to propose a mathematical model describing the absorption kinetics of the raffia vinifera fiber through its absorption ratio. By comparing the results of this model with the experimental results from the literature, one observes a good agreement. Moreover, the induced stresses in the fiber during the water diffusion can also be estimated with the proposed mathematical model expression of fiber. These stresses increase with time and can reach between 5 and 7 GPa. The results of this work can be used to predict the behavior of the raffia vinifera fiber inside a composite material during its development. © 2021 Harrond Nimjieu Takoudjou et al.
引用
收藏
相关论文
共 4 条
  • [1] Hygro-mechanical behaviour of cement paste and mortar during drying
    Yurtdas, I.
    MECHANICS OF TIME-DEPENDENT MATERIALS, 2024, 28 (04) : 2205 - 2219
  • [2] Analytical and numerical investigation of water diffusion through Raffia vinifera pith
    Nimjieu, Harrond Takoudjou
    Rodrigue, Sikame Tagne Nicodeme
    Roussel, Nwagoum Tuwa Peguy
    William, Huisken Mejouyo Paul
    Stanislas, Tido Tiwa
    Medard, Fogue
    Ebenezer, Njeugna
    JOURNAL OF NATURAL FIBERS, 2023, 20 (01)
  • [3] Whole field vapor pressure modeling of QFN during reflow with coupled hygro-mechanical and thermo-mechanical stresses
    Tee, TY
    Ng, HS
    52ND ELECTRONIC COMPONENTS & TECHNOLOGY CONFERENCE, 2002 PROCEEDINGS, 2002, : 1552 - 1559
  • [4] A method to assess the hygro-mechanical behaviour of original panel paintings, through in situ non-invasive continuous monitoring, to improve their conservation: a long-term study on the Mona Lisa
    Uzielli, Luca
    Dionisi-Vici, Paolo
    Mazzanti, Paola
    Riparbelli, Lorenzo
    Goli, Giacomo
    Mandron, Patrick
    Togni, Marco
    Gril, Joseph
    JOURNAL OF CULTURAL HERITAGE, 2022, 58 : 146 - 155