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带孔和不带孔的混合纤维增强高性能混凝土深梁的破坏力学分析

Analysis of Failure Mechanics in Hybrid Fibre-Reinforced High-Performance Concrete Deep Beams with and without Openings.

作者信息

Smarzewski Piotr

机构信息

Department of Structural Engineering, Faculty of Civil Engineering and Architecture, Lublin University of Technology, 20-618 Lublin, Poland.

出版信息

Materials (Basel). 2018 Dec 29;12(1):101. doi: 10.3390/ma12010101.

Abstract

The article presents the results of experimental- and analytical investigations of the behaviour and the load-carrying capacity of deep beams with openings (DBO) and without openings (DB) made of hybrid steel-polypropylene fibre-reinforced high-performance concrete (HFRHPC) subjected to three-point bending tests. Six deep beams 100 mm × 500 mm × 1000 mm were tested with a gradually increasing load until failure. All the specimens were tested in the same simply supported conditions. The research focused on the quantity and kind of concrete reinforcement. The deep beams with steel and polypropylene (PP) fibres were characterised by variously arranged steel bar reinforcement: vertically, horizontally, orthogonally and diagonally. The DB1, DBO1 deep beams were conventionally made with steel rod reinforcement but without fibres. The steel wire mesh reinforcement was replaced by fibre reinforcement of varying volume percentages in the remaining deep beams. The influence of the hybrid fibre content in the specimens was studied by marking the development and propagation of cracks, by recording the failure modes, and by monitoring the deflections at the bottom of the deep beam, at the mid-span and at the support. Three-dimensional measurements of strain and displacement of the deep beams without openings (DB) were performed by the non-contact optical 3D deformation measuring system ARAMIS. The experimental results were compared with the studied methods of predicting the shear strength of deep beams reinforced with hybrid fibre. The conducted study demonstrates that hybrid fibres as web reinforcement have a favourable impact on deep beam crack widths and raise the load carrying capacity of deep beams with openings.

摘要

本文介绍了对由混杂钢-聚丙烯纤维增强高性能混凝土(HFRHPC)制成的有孔深梁(DBO)和无孔深梁(DB)在三点弯曲试验下的性能和承载能力进行试验研究与分析研究的结果。对6根100毫米×500毫米×1000毫米的深梁进行了试验,施加逐渐增加的荷载直至破坏。所有试件均在相同的简支条件下进行试验。研究重点在于混凝土配筋的数量和种类。含钢纤维和聚丙烯(PP)纤维的深梁具有不同布置方式的钢筋:竖向、水平、正交和斜向。DB1、DBO1深梁采用传统的钢筋配筋但无纤维。其余深梁中,钢丝网配筋被不同体积百分比的纤维配筋所取代。通过标记裂缝的发展和扩展、记录破坏模式以及监测深梁底部、跨中和支座处的挠度,研究了试件中混杂纤维含量的影响。利用非接触式光学三维变形测量系统ARAMIS对无孔深梁(DB)进行了应变和位移的三维测量。将试验结果与所研究的混杂纤维增强深梁抗剪强度预测方法进行了比较。所进行的研究表明,作为腹板配筋的混杂纤维对深梁裂缝宽度有有利影响,并提高了有孔深梁 的承载能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6acc/6337172/632114502b9a/materials-12-00101-g001.jpg

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