Effects of Coating Aggregates on Dynamic Properties of Concrete by Impact Resonance Method

Yisihak Gebre TAREKEGN, Tom LAHMER, Matthias MULLER, Abrham Gebre TAREKEGN, Esayas FİTWİ
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Abstract

Concrete structures may be subjected to dynamic loadings like earthquakes, impact, and vehicular loads. These loads may cause considerable damage to infrastructures and shorten their life span. To reduce the effects, improving concrete’s dynamic properties is important. This can be done using granular elastic components and fibers in the production of concrete. This research explores the influence of using coated aggregates on the physical, mechanical, and dynamic properties of concrete. Experimental investigation on concrete with epoxy, epoxy-sand, and epoxy-crumb rubber as a partial replacement of coarse aggregates at different volume fractions ranging from 5% to 20% was conducted. Furthermore, the dynamic modulus of elasticity of concrete with coated aggregate was determined by measuring the resonant frequencies of flexural vibrations in a prismatic beam using an impactor (hammer). Results indicate that partial replacement of epoxy-crumb rubber coated aggregates in concrete shows a reduction in mechanical proprieties. However, significant improvements in the mechanical and dynamic properties of concrete were observed by the partial replacement of coarse aggregates with epoxy and epoxy-sand coated aggregates. Compressive strength and dynamic elastic modulus were enhanced by 12% and 10%, respectively, when concrete with 15% epoxy-sand coated was used. The results showed that concrete specimens using epoxy and epoxy-sand coated as a partial replacement for coarse aggregate have higher mechanical properties as compared to those of concrete specimens with epoxy-crumb rubber-coated aggregates. Moreover, the results showed that the calculated values of the dynamic modulus of concrete using the empirical relations proposed by Popovics and Hansen were overestimated as compared to the experimental values.
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冲击共振法研究涂层集料对混凝土动力性能的影响
混凝土结构可能会受到地震、冲击和车辆荷载等动态载荷的影响。这些负载可能对基础设施造成相当大的破坏,并缩短其使用寿命。为了减少这种影响,改善混凝土的动力性能是很重要的。这可以在混凝土生产中使用颗粒弹性成分和纤维来完成。本研究探讨了使用包覆骨料对混凝土物理、机械和动力性能的影响。对环氧树脂、环氧砂和环氧橡胶颗粒部分替代5% ~ 20%不同体积分数的粗骨料混凝土进行了试验研究。此外,通过使用冲击器(锤)测量棱柱梁弯曲振动的共振频率,确定了涂覆骨料混凝土的动态弹性模量。结果表明,环氧屑橡胶包覆骨料在混凝土中部分替代会降低其力学性能。然而,用环氧树脂和环氧砂包覆骨料部分取代粗骨料,可以显著改善混凝土的力学和动力性能。包覆15%环氧砂的混凝土抗压强度和动弹性模量分别提高12%和10%。结果表明:采用环氧树脂和环氧砂包覆部分替代粗骨料的混凝土试件,其力学性能优于采用环氧橡胶包覆骨料的混凝土试件;此外,研究结果表明,采用Popovics和Hansen提出的经验关系计算的混凝土动模量值与实验值相比被高估了。
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