A Numerical Model for Tracing Structural Response of Ultra-High Performance Concrete Beams

R. Solhmirzaei, V. Kodur
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引用次数: 4

Abstract

This paper presents a finite element-based numerical model for tracing the behavior of ultra-high performance concrete (UHPC) beams. The model developed in ABAQUS can account for stress–strain response of UHPC and reinforcing bar in both tension and compression, bond between concrete and reinforcing steel, and strain hardening effects in bars and UHPC and can trace the detailed response of UHPC beams in the entire range of loading. This model is validated by comparing predicted response parameters including load-strain, load-deflection, and crack propagation against experimental data governed from tests on UHPC beams with different reinforcement ratios, fiber volume fractions, and loading configurations (shear and flexural loading). The validated model is applied to quantify the contribution of stirrups and concrete to shear strength of beams so as to explore the feasibility of removing shear reinforcement in UHPC beams.
超高性能混凝土梁结构响应跟踪的数值模型
本文提出了一种基于有限元的超高性能混凝土(UHPC)梁性能跟踪数值模型。在ABAQUS中建立的模型可以考虑UHPC和钢筋在拉压过程中的应力应变响应、混凝土与钢筋之间的粘结以及钢筋和UHPC的应变硬化效应,并可以跟踪UHPC梁在整个加载范围内的详细响应。通过将预测的响应参数(包括荷载-应变、荷载-挠度和裂纹扩展)与不同配筋率、纤维体积分数和加载配置(剪切和弯曲加载)的UHPC梁的试验数据进行比较,验证了该模型。应用验证的模型量化了箍筋和混凝土对梁抗剪强度的贡献,从而探讨了UHPC梁去除抗剪钢筋的可行性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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