Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Research on compression properties of unidirectional carbon fiber reinforced epoxy resin composite (UCFREP)

View through CrossRef
To research the axial compression properties of unidirectional carbon fiber reinforced epoxy resin composite (UCFREP), the compression experiments at different strain rates were carried out by using the MTS universal electronic testing machine and the equipment of split Hopkinson pressure bar (SHPB). Furthermore, the finite element analysis (FEA) was also used to study the compression properties of UCFREP with different conditions. The true stress-strain curves in quasi-static and dynamic compression were obtained, and the relationship between yield limit and strain rate was coupled. The microstructure of the failure area was observed by scanning electron microscope (SEM). A formula for predicting compression strength of combined buckling under the quasi-static condition was presented. The application range of Chang-Chang failure criterion was discussed by FEA, and the compression failure of UCFREP with different fiber directions was predicted. The results show that UCFREP has the obvious strain rate effect, the mechanical properties at dynamic compression are nonlinear. Shear is the main compression failure mode, which includes the shear cracking of matrix between fibers and the shear buckling of fiber. The direction of the fiber is the main factor that causes the shear cracking, such as the shear cracking shows the feature of 45° when the direction of the fiber is 45°. As a conclusion, increasing the shear strength of matrix and fiber will be a way to increase the compression strength of UCFREP. This paper could be used as a reference to develop the new constitutive model, especially considering the nonlinear effect.
Title: Research on compression properties of unidirectional carbon fiber reinforced epoxy resin composite (UCFREP)
Description:
To research the axial compression properties of unidirectional carbon fiber reinforced epoxy resin composite (UCFREP), the compression experiments at different strain rates were carried out by using the MTS universal electronic testing machine and the equipment of split Hopkinson pressure bar (SHPB).
Furthermore, the finite element analysis (FEA) was also used to study the compression properties of UCFREP with different conditions.
The true stress-strain curves in quasi-static and dynamic compression were obtained, and the relationship between yield limit and strain rate was coupled.
The microstructure of the failure area was observed by scanning electron microscope (SEM).
A formula for predicting compression strength of combined buckling under the quasi-static condition was presented.
The application range of Chang-Chang failure criterion was discussed by FEA, and the compression failure of UCFREP with different fiber directions was predicted.
The results show that UCFREP has the obvious strain rate effect, the mechanical properties at dynamic compression are nonlinear.
Shear is the main compression failure mode, which includes the shear cracking of matrix between fibers and the shear buckling of fiber.
The direction of the fiber is the main factor that causes the shear cracking, such as the shear cracking shows the feature of 45° when the direction of the fiber is 45°.
As a conclusion, increasing the shear strength of matrix and fiber will be a way to increase the compression strength of UCFREP.
This paper could be used as a reference to develop the new constitutive model, especially considering the nonlinear effect.

Related Results

Hybrid syntactic foam core cased natural-glass fibre sandwich composite
Hybrid syntactic foam core cased natural-glass fibre sandwich composite
Composite materials comprised of two separates with different properties to form a single material that reflect the properties of the combined materials. Syntactic foam composites ...
Adhesion of Resin-Resin and Resin–Lithium Disilicate Ceramic: A Methodological Assessment
Adhesion of Resin-Resin and Resin–Lithium Disilicate Ceramic: A Methodological Assessment
The aim of this study was to evaluate four test methods on the adhesion of resin composite to resin composite, and resin composite to glass ceramic. Resin composite specimens (N = ...
Practical Technology of Toughening Epoxy Resin (II): Modification Effects of Special Engineering Plastics on Epoxy Resin
Practical Technology of Toughening Epoxy Resin (II): Modification Effects of Special Engineering Plastics on Epoxy Resin
The effects of Special engineering plastics (SEP) such as polyether ether ketone (PEEK), polyimide (PI), thermoplastic polyimide (TPI), polyphenylene sulfide (PPS), polysulfone (PS...
Li1.4Al0.4Ti1.6(PO4)3 high lithium ion conducting solid electrolyte prepared by tape casting and modified with epoxy resin
Li1.4Al0.4Ti1.6(PO4)3 high lithium ion conducting solid electrolyte prepared by tape casting and modified with epoxy resin
The Li1.4Al0.4Ti1.6(PO4)3(LATP) nanocrystal powder is synthesized by citric acid assisted sol-gel method.The LATP powder is crystalized at 850℃ for 4 h,and the X-ray diffraction pa...
Epoxy Resin Consolidation System Improves Worker Safety, Chemical Compatibility, and Performance
Epoxy Resin Consolidation System Improves Worker Safety, Chemical Compatibility, and Performance
Abstract This paper describes the development and field-testing of a new high-temperature epoxy resin system (new HT epoxy) that effectively consolidates sand and...
Temperature dependence of longitudinal tensile strength in unidirectional carbon fiber-reinforced plastic
Temperature dependence of longitudinal tensile strength in unidirectional carbon fiber-reinforced plastic
This paper is concerned with the characteristics of the temperature-dependent tensile strength along the longitudinal direction of the unidirectional carbon fiber-reinforced plasti...

Back to Top