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Optimization of fiber volume fraction to enhance reinforcing efficiency in hybrid fiber reinforced strain hardening cementitious composite

机译:纤维体积分数的优化,提高杂交纤维增强菌株硬化胶凝复合材料的增强效率

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摘要

The steel fibers were generally used to improve the compressive strength of hybrid fiber reinforced strain hardening cementitious composite (SHCC) due to its higher strength and modulus. It is crucial to rationally design the volume fraction of fibers to maximize the role of different fibers in hybrid fiber reinforced SHCC. In this study, a design philosophy was proposed to guide the synthesis of hybrid fibers reinforced SHCC with saturated multiple cracking. The practical design criteria were determined by the joint use of cracking saturation index and pseudo strain hardening (PSH) performance indices. Finally, the design criteria were used to determine the volume fraction of steel fiber in hybrid fiber reinforced SHCC. Based on the proposed method, the optimum steel fiber volume fraction of 0.68% in hybrid fiber reinforced SHCC with 1.5% volume fraction of PE fibers was obtained for a designated matrix.
机译:通常用于改善杂化纤维增强菌株硬化复合材料(SHCC)的抗压强度由于其较高的强度和模量而导致的抗压强度。 至关重要的是,合理设计纤维的体积分数,以最大限度地提高不同纤维在杂交纤维增强SHCC中的作用。 在这项研究中,提出了一种设计理念,以指导杂种纤维的合成增强SHCC,饱和多裂解。 通过开裂饱和指数和伪应变硬化(PSH)性能指标的关节使用来确定实际的设计标准。 最后,设计标准用于确定杂交纤维增强SHCC中钢纤维的体积分数。 基于所提出的方法,获得杂交纤维增强SHCC的最佳钢纤维体积分数为1.5%PE纤维的1.5%体积分数的PE纤维。

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