Novel CFRP Adhesive Joints and Structures for Offshore Application

Novel wind-lens turbine designs can augment power output. Vacuum-Assisted Resin Transfer Molding (VARTM) is used to form large and complex structures from a Carbon Fiber Reinforced Polymer (CFRP) composite. Typically, wind-lens turbine structures are fabricated in segments, and then bonded to form the final structure. This paper introduces five new adhesive joints, divided into two groups: one is constructed between dry carbon and CFRP fabrics, and the other is constructed with two dry carbon fibers. All joints and CFRP fabrics were made in our laboratory using VARTM manufacturing techniques. Specimens were prepared for tensile testing to measure joint performance. The results showed that the second group of joints achieved a higher tensile strength than the first group. On the other hand, the tensile fracture behavior of the two groups showed the same pattern of crack originating near the joint ends followed by crack propagation until fracture.




References:
[1] Chen D.D., Arakawa K, Jiang S.Y. Novel Joints Developed from Partially
Un-Moulded Carbon-Fibre-Reinforced Laminates. Journal of Composite
Materials, 2015, Vol. 49(14) 1777–1786.
[2] Lee D. G., Jeong K. S., Kim K. S., et al. Development of the
Anthropomorphic Robot with Carbon Fiber Epoxy Composite Materials.
Compos. Struct. 1993; 25: 313–324.
[3] Niu M. Airframe Structural Design. 9th Printing. Hong Kong: Conmilit.
Press Ltd.; 1997.
[4] Wang Z. Y., Wang L, Guo W, et al. An Investigation on Strain/Stress
Distribution around the Overlap End of Laminated Composite Single-Lap
Joints. Compos Struct. 2009; 89: 589–595. 3.
[5] Liu F, Zhao L, Mehmood S, et al. A Modified Failure Envelope Method
for Failure Prediction of Multi-Bolt Composite Joints. Compos Sci.
Technol. 2013; 83: 54–63.
[6] Quaresimin M and Ricotta M. Stress Intensity Factors and Strain Energy
Release Rates in Single Lap Bonded Joints in Composite Materials.
Compos Sci Technol 2006; 66: 647–656.
[7] Al-Zubaidy H, Al-Mahaidi R and Zhao X-L. Experimental Investigation
of Bond Characteristics between CFRP Fabrics and Steel Plate Joints
under Impact Tensile Loads. Compos Struct 2012; 94: 510-518.
[8] Fawzia S, Al-Mahaidi R and Zhao X-L. Experimental and Finite Element
Analysis of a Double Strap Joint between Steel Plates and Normal
Modulus CFRP. Compos Struct 2006; 75: 156–162.
[9] Fawzia S, Zhao XL, Al-Mahaidi R, et al. Bond Characteristics between
CFRP and Steel Plates in Double Strap Joints. Int J Adv Steel Constr
2005; 1: 17–27.
[10] LÖbel T., Kolesnikov B, Scheffler S, et al. Enhanced Tensile Strength of
Composite Joints by Using Staple-Like Pins: Working Principles and
Experimental Validation. Compos. Struct. 2013; 106: 453–460.
[11] Banea M. D., Da Silva L. F. Adhesively Bonded Joints in Composite
Material: an Overview. J. Mater Des Appl. 2009; 223:1–18.
[12] Wen-Xue W., Yoshiro T., Terutake M. Galvanic Corrosion-Resistant
Carbon Fiber Metal Laminates. 16th Int. Conf. on Composite Materials.
[13] Katnam KB, Comer AJ, Stanley WF, et al. Characterising Pre-Preg and
Non-Crimp-Fabric Composite Single Lap Bonded Joints. Int J Adhes
Adhes 2011; 31: 679–686.