Generalised component method for bolted bearing type connections

Author:

Zhou Jingsheng1,Yan Shen2,Zhang Hao3,Rasmussen Kim J. R.1,Deierlein Gregory G.4

Affiliation:

1. University of Sydney School of Civil Engineering Camperdown Sydney NSW Australia

2. Tongji University College of Civil Engineering 1239, Siping Road, Shanghai, China

3. University of Sydney School of Civil Engineering Camperdown Sydney NSW Australia

4. Stanford University Department of Civil and Environmental Engineering 450, Jane Stanford Way Stanford CA United States

Abstract

AbstractThis paper develops a new generalised component method (GCM) model for bolted bearing type connections that predicts their full‐range response and all relevant strength limit states, including the bolt shear, bearing, shear‐out, net section fracture and block shear limit states. The proposed model divides a bolted bearing type connection into components that significantly contribute to its deformation and/or strength limit states. For each component, the force‐deformation curve is derived, including the post‐ultimate response, and expressed as a trilinear relationship. By assembling all components (springs) into the connection model, the multi‐linear force‐displacement response of the connection can be predicted, including the ultimate strength and ultimate deformation capacities. The proposed GCM can consider the interaction of adjacent bolts in modelling multi‐bolt connections. The new GCM is shown to accurately predict force‐displacement responses obtained from experimental tests and non‐linear finite element analyses. It is also shown to predict experimental responses significantly more accurately than the current component method implemented in Eurocode 3‐1.8.

Publisher

Wiley

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