Effect of Selective Z-Pinning on the Static and Fatigue Strength of Step Joints between Composite Adherends

Author:

Loi Gabriela1,Buonadonna Pasquale1ORCID,El Mohtadi Rayane1ORCID,Carta Mauro1ORCID,Lai Daniele1,El Mehtedi Mohamad1ORCID,Aymerich Francesco1ORCID

Affiliation:

1. Department of Mechanical, Chemical and Materials Engineering, University of Cagliari, 09123 Cagliari, Italy

Abstract

The z-pinning reinforcement technique, which involves inserting thin pins through the body of a laminate, has proven highly effective in enhancing the strength of various composite joint configurations. This investigation aims to explore the enhancements achievable through selective z-pinning at very low pin contents on both the static and fatigue performance of composite joints. Single-step joints between carbon/epoxy adherends were reinforced using steel pins arranged in two, three, or four rows of pins parallel to the edges of the overlap, resulting in pin contents ranging from 0.2% to 0.4%. Joint panels were manufactured through co-curing, and coupons were extracted from the panels for static and fatigue tensile testing. The experimental tests show that z-pinning improves the static strength (by about 15%) and extends the fatigue lives of the joints. The ultimate failure of both unpinned and pinned joints is due to the unstable propagation of a crack at the bond line. The superior performances of pinned joints are mainly due to the bridging tractions imposed between the crack faces by z-pins, which delay the growth of the debonding crack. The enhancements in static and fatigue strength achieved by z-pinning were essentially independent of the number of pin rows, and the pins positioned near the joint edges were found to play a dominant role in controlling the structural performance of pinned joints.

Funder

eINS- Ecosystem of Innovation for Next Generation Sardinia

Italian Ministry for Research and Education (MUR) under the National Recovery and Resilience Plan

Publisher

MDPI AG

Reference40 articles.

1. Adhesively bonded joints in composite materials: An overview;Banea;Proc. Inst. Mech. Eng. Part L J. Mater. Des. Appl.,2009

2. Mechanics of mechanically fastened joints in polymer–matrix composite structures—A review;Thoppul;Compos. Sci. Technol.,2009

3. An updated review of adhesively bonded joints in composite materials;Budhe;Int. J. Adhes. Adhes.,2017

4. The role of delamination in failure of fibre-reinforced composites;Wisnom;Philos. Trans. R. Soc. A,2012

5. Review on techniques to improve the strength of adhesive joints with composite adherends;Shang;Compos. B Eng.,2019

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