Axial Shear Modulus of A Fiber-Reinforced Composite with Random Fiber Cross-Sections
- ECU Author/Contributor (non-ECU co-authors, if there are any, appear on document)
- S.K,Debnath,L Bose (Creator)
- Institution
- East Carolina University (ECU )
- Web Site: http://www.ecu.edu/lib/
Abstract: A study is made of the effective axial shear modulus of a fiber reinforced material with random fiber cross-sections so that the micromechanics is governed by stochastic differential equations. A coarse-graining procedure is adopted to investigate the macroscopic behavior of the material. This analysis leads to the formula for the effective axial shear modulus μ∗=μ1/{1−2c(μ2−μ1)/(μ2+μ1)},where μ1 and μ2 are the shear modulus of the matrix and fibers respectively and c is the concentration of the fibers less that 0.5. For c>0.5, the fiber and matrix moduli are to be interchanged and c is to be replaced by 1−c. The results of this study are compared with those of the theory of fibre reinforced materials. Finally, a numerical example is presented with graphical representation.
Additional Information
- Publication
- Other
- Language: English
- Date: 1981
- Keywords
- Fiber, axial shear, shear modules, matrix moduli, reinforced materials
Title | Location & Link | Type of Relationship |
Axial Shear Modulus of A Fiber-Reinforced Composite with Random Fiber Cross-Sections | http://hdl.handle.net/10342/8849 | The described resource references, cites, or otherwise points to the related resource. |