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Tensile Behavior of Steel-Polypropylene Hybrid Fiber-Reinforced Concrete

机译:钢-聚丙烯混杂纤维增强混凝土的拉伸行为

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摘要

The present study deals with the uniaxial tensile behavior of steel-polypropylene hybrid fiber-reinforced concrete (HFRC). The tensile strengths and complete stress-strain responses of HFRC were measured in terms of different volume fraction and aspect ratio. It was observed that the uniaxial tensile behavior of plain concrete can be significantly improved upon with the addition of hybrid fibers. The steel fiber primarily increases the peak tensile strength, while the polypropylene fiber mainly contributes to increasing residual strength in post-peak response. Subsequently, predictive equations for both the tensile strength and complete stress-strain relation of HFRC were developed, and the results were found in satisfactory agreement with experimental results. Furthermore, a simple elliptic-cap model in tension region was also proposed for the tensile meridian of HFRC within the framework of elastoplasticity, representing a three-dimensional scenario of strength criterion capable of predicting the multiaxial stress state of HFRC in tension region.
机译:本研究涉及钢-聚丙烯混合纤维增强混凝土(HFRC)的单轴拉伸性能。根据不同的体积分数和纵横比,测量了HFRC的拉伸强度和完整的应力应变响应。观察到,添加杂化纤维可以显着改善普通混凝土的单轴拉伸性能。钢纤维主要增加峰值抗拉强度,而聚丙烯纤维主要有助于增加峰后响应中的残余强度。随后,建立了HFRC的抗拉强度和完全应力-应变关系的预测方程,结果与实验结果令人满意。此外,还针对弹塑性框架内的HFRC拉伸子午线,提出了一个简单的受拉区域椭圆帽模型,代表了能够预测受拉区域HFRC多轴应力状态的强度准则的三维场景。

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