MIXED MODE FRACTURE OF THE GEOPOLYMER COMPOSITES REINFORCED WITH RECYCLED STEEL FIBERS

Muhammed Gümüş, Hakan Bayrak
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Abstract

For the fiber-reinforced composites, strength-based criteria alone may fail to evaluate the bending response due to the long tail of the load-displacement curve. Hence, the fracture characterization of fibered composites has gained great attention worldwide. In this study, the mixed-mode fracture performance of the recycled steel fiber-reinforced geopolymer concrete was examined experimentally. The main test parameters were the amount of steel fibers (0 and 2% by mass) and the offset ratios of the edge notch (β = 0, 0.2, and 0.4). Several notched prisms were produced and tested under a deformation-controlled three-point bending test. Deformation maps on the surface of the specimens were derived through the digital image correlation method. Experimental results were discussed concerning the first cracking load, ultimate load, critical crack mouth opening displacement, critical crack mouth sliding displacement, and fracture energy. Based on the experimental findings, it can be stated that the peak flexural loads were increased by 666%, 1327%, and 400%, respectively for the 0, 0.2, and 0.4 notch offset ratios due to the use of recycled steel fiber. The fracture energies of the plain specimens were proportional to the notch offset ratio, but they fluctuated for the fiber-reinforced specimens because of the uneven distribution of fibers.
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用回收钢纤维增强的土工聚合物复合材料的混合模式断裂
对于纤维增强复合材料而言,由于载荷-位移曲线的尾部较长,仅凭基于强度的标准可能无法评估弯曲响应。因此,纤维复合材料的断裂特性研究在全球范围内受到了广泛关注。本研究通过实验研究了再生钢纤维增强土工聚合物混凝土的混合模式断裂性能。主要试验参数为钢纤维的含量(0% 和 2%)以及边缘缺口的偏移比(β = 0、0.2 和 0.4)。在变形控制的三点弯曲试验下,制作并测试了多个缺口棱柱。通过数字图像相关方法得出了试样表面的变形图。实验结果涉及首次开裂载荷、极限载荷、临界裂口张开位移、临界裂口滑动位移和断裂能量。根据实验结果可知,由于使用了再生钢纤维,缺口偏移比为 0、0.2 和 0.4 时的峰值抗弯载荷分别增加了 666%、1327% 和 400%。普通试样的断裂能与缺口偏移比成正比,而纤维增强试样由于纤维分布不均,断裂能有所波动。
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