Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
6740461 | Engineering Structures | 2015 | 10 Pages |
Abstract
This paper reports the results of a recent experimental programme on reinforced concrete (without any shear reinforcement, PC) and Polypropylene Fibre Reinforced Concrete (PFRC) Wide-Shallow Beams (WSBs) subjected to shear, focusing on the role of the width-to-effective depth ratio (b/d) and on the beneficial influence of newly developed PP fibres. Fourteen WSBs with different widths and depths, fibre content and, also, minimum amount of classical shear reinforcement, were tested. Results show that PC WSBs having width-to-effective depth ratio from 2 to 3 reach a higher ultimate shear stress (compared to the corresponding not-wide PC beams), generally disregarded by most of standards. Moreover, the ability of PP fibres in promoting a substantially more stable shear behaviour was experimentally observed, as well as the possibility of using PP fibres as minimum shear reinforcement.
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Authors
Antonio Conforti, Fausto Minelli, Andrea Tinini, Giovanni A. Plizzari,