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The Effect of Short Metallic and Polymeric Fiber on the Fracture Behavior of Cement Mortar

机译:短金属和聚合物纤维对水泥砂浆骨折行为的影响

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A study has been made concerning the influence of short randomly oriented steel and polypropylene fibers on the fracture of cement mortar. With regard to the steel fibers, different fiber volume fractions were considered and the results obtained indicated an increase in the J-integral values, at the onset of mortar cracking and at maximum load, as the fiber content was increased. This improvement in the toughness level was attributed to the fiber bridging effect which enhances the capacity of the reinforced mortar to deform and hence to sustain higher load than that sustained by plain mortar. Compressive strength and modulus of elasticity also were improved due to the presence of steel fibers whose elastic modulus is much higher than that of the mortar. The use of short polypropylene fibers reinforcing elements was also associated with an appreciable improvement in the mortar's toughness as well as in its flexural strength. However, consistent with their low elastic modulus, the polypropylene fibers resulted in reducing the mortar's compressive strength.
机译:关于短暂随机取向钢和聚丙烯纤维对水泥砂浆骨折的影响的研究。关于钢纤维,考虑了不同的纤维体积分数,并且所得到的结果表明砂浆裂化的发作和最大载荷时的J-积分值的增加,因为纤维含量增加。韧性水平的这种改善归因于纤维桥接效果,其增强了增强砂浆变形的容量,从而维持了比普通砂浆持续的负荷更高的负荷。由于存在钢纤维的存在,其弹性模量远高于砂浆的抗压强度和弹性模量也得到了改善。使用短聚丙烯纤维增强元件也与砂浆的韧性的明显改善以及其弯曲强度有关。然而,与它们的低弹性模量一致,聚丙烯纤维导致砂浆的抗压强度降低。

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