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Application of Non-destructive Technology in Evaluating Concrete to Sulfate Attack

机译:非破坏性技术在硫酸盐攻击中评价中的应用

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The deterioration on sulfate attack was investigated both in physical crystallization and the chemical erosion. Specimens that suffered long-term immersion and dry-wet cycles in saturated sodium sulfate solution are compared to trace the physical attack. And the chemical erosion was conducted by comparing specimens which have been suffered long-term immersion in saturated sodium sulfate solution and saturated limestone solution. In the investigation, the non-destructive detecting indexes, such as the ultrasonic velocity, and the dynamic modulus of elasticity were measured. The permeability, the porosity and mechanical strength at 28-day age were measured. The flexural/compressive strength was measured after 90 wet-dry cycles. And then all the specimens were cut into cubes to take the measure of compressive strength. Based on the experiments, feasibility of various parameters, such permeability, relative dynamic modulus of elasticity, ultrasonic velocity and relative flexural/compressive strength, were investigated to evaluate the concrete deterioration. The results indicate that there is a close relationship between the deterioration by sulfate attack and concrete permeability, so the reduction of permeability is effective in promoting the resistance. The index of the resistance expressed by the dynamic modulus of elasticity ratio is comparable to that expressed by the relative flexural strength. A novel method was suggested in evaluating concrete by sulfate attack, namely, combined with some mechanical tests, the parameter of relative dynamic modulus of elasticity can be used to evaluate the deterioration;;the permeability denoted as the amount of transporting charges within 6 hours can be used to evaluate the properties to sulfate attack.
机译:在物理结晶和化学侵蚀中研究了对硫酸盐发作的劣化。比较饱和硫酸钠溶液中长期浸没和干湿循环的标本,以追踪物理攻击。通过比较在饱和硫酸钠溶液和饱和石灰石溶液中遭受长期浸渍的标本进行的样本进行化学腐蚀。在研究中,测量了非破坏性检测指标,例如超声波速度和动态弹性模量。测量渗透率,孔隙率和机械强度为28天。在90次湿干循环后测量弯曲/抗压强度。然后将所有标本都切成立方体,以衡量抗压强度。基于实验,研究各种参数的可行性,这种渗透性,相对动态的弹性模量,超声波速度和相对弯曲/抗压强度,以评估混凝土劣化。结果表明,硫酸盐攻击和混凝土渗透性的恶化之间存在密切的关系,因此渗透性的降低是有效促进抗性。由动态弹性模量表示的电阻指数与由相对弯曲强度表示的相当。在通过硫酸盐攻击评估混凝土中提出了一种新方法,即结合一些机械测试,可以使用相对动态弹性模量的参数来评估劣化;渗透性为6小时内运输收费量的渗透率用于评估硫酸盐攻击的性质。

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