Javascript must be enabled to continue!
Evaluation of material properties and vibration analysis of a co‐cure single‐lap composite plate joint with graphene‐reinforced adhesive
View through CrossRef
Abstract
Composite materials made of fiber‐reinforced polymer (FRP) are utilized in various structural works such as aircraft, wind turbine blades, marine, and automobile industries. The purpose of this research is to investigate the elastic properties of graphene nanoparticles (GNP) added to epoxy (GNP/epoxy) adhesive and glass fiber reinforced polymer (GFRP) using the impulse excitation of vibration technique and also Co‐cure single lap composite plate joint (CC‐SLCPJ) reinforced with GNP/epoxy adhesive to improve elastic properties and stiffness significantly. The results revealed that adding GNP to the epoxy enhances the elastic properties of the GNP/Epoxy. The experimental findings showed that the most significant enhancements in the elastic properties of GNP/epoxy were observed when adding 0.75 wt% of GNP, and the CC‐SLCPJ strengthened with 0.75 wt% GNP/epoxy adhesive showed excellent dynamic behavior.
Highlights
Graphene/epoxy adhesive was prepared using the sonication method.
The 0.75 GNP/Epoxy properties were higher compared to other GNP/Epoxy.
The excitation technique was used to find the properties of GFRP.
The single‐lap joint plate is fabricated using the hand layup method.
The dynamic behavior of SLJ with the addition of 0.75 wt% GNP was higher.
Title: Evaluation of material properties and vibration analysis of a co‐cure single‐lap composite plate joint with graphene‐reinforced adhesive
Description:
Abstract
Composite materials made of fiber‐reinforced polymer (FRP) are utilized in various structural works such as aircraft, wind turbine blades, marine, and automobile industries.
The purpose of this research is to investigate the elastic properties of graphene nanoparticles (GNP) added to epoxy (GNP/epoxy) adhesive and glass fiber reinforced polymer (GFRP) using the impulse excitation of vibration technique and also Co‐cure single lap composite plate joint (CC‐SLCPJ) reinforced with GNP/epoxy adhesive to improve elastic properties and stiffness significantly.
The results revealed that adding GNP to the epoxy enhances the elastic properties of the GNP/Epoxy.
The experimental findings showed that the most significant enhancements in the elastic properties of GNP/epoxy were observed when adding 0.
75 wt% of GNP, and the CC‐SLCPJ strengthened with 0.
75 wt% GNP/epoxy adhesive showed excellent dynamic behavior.
Highlights
Graphene/epoxy adhesive was prepared using the sonication method.
The 0.
75 GNP/Epoxy properties were higher compared to other GNP/Epoxy.
The excitation technique was used to find the properties of GFRP.
The single‐lap joint plate is fabricated using the hand layup method.
The dynamic behavior of SLJ with the addition of 0.
75 wt% GNP was higher.
Related Results
NONLINEAR STATIC ANALYSIS OF COMPOSITE SHELLS USING ANALYSIS OF COMPOSITE SHELLS USING ANALYSIS OF COMPOSITE SHELLS USING ANALYSIS OF COMPOSITE SHELLS USING ANALYSIS OF COMPOSITE SHELLS USING ANALYSIS OF COMPOSITE SHELLS USING ANALYSIS OF COMPOSITE SHELLS
NONLINEAR STATIC ANALYSIS OF COMPOSITE SHELLS USING ANALYSIS OF COMPOSITE SHELLS USING ANALYSIS OF COMPOSITE SHELLS USING ANALYSIS OF COMPOSITE SHELLS USING ANALYSIS OF COMPOSITE SHELLS USING ANALYSIS OF COMPOSITE SHELLS USING ANALYSIS OF COMPOSITE SHELLS
This paper presents the results of the geometric nonlinear analysis of composite shell subjected to static load by using an edge-based smoothed finite elements (ES) and the mixed i...
NGHIÊN CỨU ĐẶC ĐIỂM SINH TRƯỞNG, SINH KHỐI VÀ CARBON RỪNG NGẬP MẶN TỰ NHIÊN TẠI CẦN GIỜ , TP. HỒ CHÍ MINH
NGHIÊN CỨU ĐẶC ĐIỂM SINH TRƯỞNG, SINH KHỐI VÀ CARBON RỪNG NGẬP MẶN TỰ NHIÊN TẠI CẦN GIỜ , TP. HỒ CHÍ MINH
Nghiên cứu được thực hiện tại các tiểu khu 4A, 24, 6B, 15A, 14 và 21 thuộc Ban quản lý rừng phòng hộ huyện Cần Giờ, thời gian từ tháng 1 – 12 năm 2024, bằng cách thiết lập 18 tuyến...
Preparation of Graphene Fibers
Preparation of Graphene Fibers
Graphene owns intriguing properties in electronic, thermal, and mechanic with unique two-dimension (2D) monolayer structure. The new member of carbon family has not only attracted ...
Raman Spectroscopy Imaging of Exceptional Electronic Properties in Epitaxial Graphene Grown on SiC
Raman Spectroscopy Imaging of Exceptional Electronic Properties in Epitaxial Graphene Grown on SiC
Graphene distinctive electronic and optical properties have sparked intense interest throughout the scientific community bringing innovation and progress to many sectors of academi...
Scalable techniques for graphene on glass
Scalable techniques for graphene on glass
The combination of unique properties -high electrical mobility, thermal conductivity, transparency and mechanical flexibility- make graphene promising for a wide variety of applica...
Characterization and preliminary application of top-gated graphene ion-sensitive field effect transistors
Characterization and preliminary application of top-gated graphene ion-sensitive field effect transistors
Graphene, a 2-dimensional material, has received increasing attention due to its unique physicochemical properties (high surface area, excellent conductivity, and high mechanical s...
Effect of Adhesive Type on the Adhesively Bonded Stepped Joint: A Numerical Investigation
Effect of Adhesive Type on the Adhesively Bonded Stepped Joint: A Numerical Investigation
Single-lap joints are by far the most widely used adhesive joints and have been the subject of considerable research over the years. It is used in the automobile and aerospace indu...
Influence of carbon and glass fiber reinforced composite adhesive on the strength of adhesively bonded joints
Influence of carbon and glass fiber reinforced composite adhesive on the strength of adhesively bonded joints
Abstract
Today, due to the frequent use of composite materials used in the aerospace and automotive industries, an intensive study is carried out on the joining meth...

